Dispenser having variable-volume storage chamber and depressible one-way valve assembly for dispensing cream or other substances
Abstract
Dispenser (10) comprising: a frame (12); a storage chamber (14) formed within the framework (12) and defining a substantially impermeable closure between the storage chamber (14) and the exterior of the framework (12) for storing a substance to be dispensed; a plunger (18) mounted inside the frame (12); a unidirectional valve (20) mounted inside the frame (12) characterized in that - the storage chamber (14) is designed as a variable volume storage chamber (14), - the unidirectional valve (29) is coupled in communication of fluid with the variable volume storage chamber (14), - a compression chamber (22) is coupled in fluid communication between the plunger (18) and the unidirectional valve (20), and - at least one between the piston (18) and the valve (20) is oppressive in relation to the other between a first and a second position by means of a manually activatable surface (64) that is manually activatable and depressable to depress the minus one between the piston (18) and the valve (20) in relation to the other between (i) a first position in which the piston (18) is located at least partially outside the compression chamber (22) to allow a substance flowing from the chamber of variable volume storage (14) inside the compression chamber (22), and (ii) a second position in which the piston (18) is located at least partially inside the compression chamber (22) to pressurize a substance inside the compression chamber (22) above an opening pressure of the valve and, in turn, dispensing a substance through the unidirectional valve (20) to the outside of the dispenser (10), wherein the movement of the at least one between the piston (18) and the unidirectional valve (20) between the first and second positions causes the pressurization of the substance of the compression chamber (22).
Term
Term ended
Projected expiry passed 27 January 2025, 1.7 years ago.
- Priority
- Filed
- Published
- Projected expiry
- Today
14 claims: 9 independent, 5 dependent
- 1imagen1 Reivindicaciones 1. Dispensador (10) que comprende:un armazón (12);una cámara de almacenamiento (14) conformada dentro del armazón (12) y que define un cierre 5 sustancialmente impermeable entre la cámara de almacenamiento (14) y el exterior del armazón (12) para almacenar una sustancia que va a dispensarse;un émbolo (18) montado dentro del armazón (12);una válvula unidireccional (20) montada dentro del armazón (12) caracterizado porque 10 -la cámara de almacenamiento (14) está diseñada a modo de cámara de almacenamiento de volumen variable (14), -la válvula unidireccional (29) está acoplada en comunicación de fluido con la cámara de almacenamiento de volumen variable (14), 15 -una cámara de compresión (22) está acoplada en comunicación de fluido entre el émbolo (18) y la válvula unidireccional (20), y -al menos uno entre el émbolo (18) y la válvula (20) es oprimible en relación con el otro entre una primera y una segunda posición por medio de una superficie activable manualmente (64) que es activable manualmente y oprimible para oprimir al menos uno entre el émbolo (18) y la válvula (20) 20 en relación con el otro entre (i) una primera posición en la que el émbolo (18) está situado al menos parcialmente fuera de la cámara de compresión (22) para permitir que una sustancia fluya de la cámara de almacenamiento de volumen variable (14) al interior de la cámara de compresión (22), y (ii) una segunda posición en la que el émbolo (18) está situado al menos parcialmente dentro de la cámara de compresión (22) para presurizar una sustancia dentro de la cámara de compresión (22) 25 por encima de una presión de apertura de la válvula y, a su vez, dispensar una sustancia a través de la válvula unidireccional (20) hacia el exterior del dispensador (10), en el que el movimiento del al menos uno entre el émbolo (18) y la válvula unidireccional (20) entre las posiciones primera y segunda provoca la presurización de la sustancia de la cámara de compresión (22). 30 2. Dispensador (10) según la reivindicación 1, que comprende además un elemento de desviación para desviar al menos uno entre el émbolo (18) y la válvula (20) en dirección de la segunda posición hacia la primera posición.
- 3Dispensador (10) según la reivindicación 2, en el que el elemento de desviación es al menos uno entre un 35 muelle helicoidal (24) y un muelle elástico y elastomérico.
- 4Dispensador (10) según la reivindicación 3, en el que el muelle elástico y elastomérico presenta una forma de cúpula aproximadamente. 40 5. Dispensador (10) según cualquiera de las reivindicaciones precedentes, en el que la válvula unidireccional (20) incluye un asiento de válvula (28) que se extiende de manera axial, una tapa de válvula (30) flexible que se extiende de manera axial asentada sobre el asiento de válvula (28) y que define una junta (32) normalmente cerrada que se extiende de manera axial entre ellos que forma un cierre impermeable entre la tapa de válvula (30) y el asiento de válvula (28), y al menos una abertura de salida (38) acoplada en 45 comunicación de fluido entre la cámara de compresión (22) y la junta (32), en el que la tapa de válvula (30) flexible es móvil en relación con el asiento de válvula (28) y la junta (32) se conecta en comunicación de fluido con la abertura de salida (38) para permitir el paso de sustancia de la cámara de compresión (22) a través de la junta (32) hacia el exterior del dispensador (10). 50 6. Dispensador (10) según la reivindicación 5, en el que la tapa de válvula (30) flexible responde ante un flujo de sustancia en la abertura de salida (38) que sobrepasa una presión de apertura de la válvula para que se mueva entre (i) un estado normalmente cerrado y (ii) un estado abierto en el que partes de la tapa de válvula (30) separadas axialmente en relación las unas con las otras se mueven sustancialmente de manera secuencial en relación sustancialmente radial con el asiento de válvula (28) para permitir el paso de 55 sustancia a través de la junta (32) hacia el exterior del dispensador (10). 12 imagen2
- 7Dispensador (10) según cualquiera de las reivindicaciones precedentes, que comprende además uno entre (i) una vejiga (66) flexible montada dentro del armazón (12) y que define la cámara de almacenamiento de volumen variable (14) entre la vejiga (66) y el armazón (12) y (ii) una pared deslizable montada dentro del armazón (12) y que define la cámara de almacenamiento de volumen variable (14) entre la pared deslizable 5 y el armazón (12).
- 8Dispensador (10) según cualquiera de las reivindicaciones precedentes, en el que el émbolo (18) está fijo en relación con la válvula, y la válvula es oprimible manualmente en relación con el émbolo (18) entre las posiciones primera y segunda. 10
- 9Dispensador (10) según cualquiera de las reivindicaciones precedentes, en el que la válvula incluye un cuerpo de válvula (26) que define la cámara de compresión (22) para recibir en esta el émbolo (18), un asiento de válvula (28) que se extiende de manera axial y una tapa de válvula (30) flexible que se extiende de manera axial asentada sobre el asiento de válvula (28) y que define una junta (32) normalmente cerrada 15 que se extiende de manera axial entre la tapa de válvula (30) y el asiento de válvula (28), y en el que el cuerpo de válvula (26) define un primer orificio (34) para recibir el émbolo (18) en la primera posición y un pasadizo (36) entre el primer orificio (34) y el émbolo (18) para permitir el flujo de sustancia a través de este de la cámara de almacenamiento de volumen variable (14) al interior de la cámara de compresión (22). 20 10. Dispensador (10) según la reivindicación 9, en el que el cuerpo de válvula (26) define además al menos una abertura de salida (38) acoplada en comunicación de fluido entre la cámara de compresión (22) y la junta (32), y un segundo orificio conformado entre el primer orificio (34) y la abertura de salida (38) y que define dentro de este la cámara de compresión (22). 25 11. Dispensador (10) según cualquiera de las reivindicaciones 9 o 10, en el que el cuerpo de válvula (26) define además una superficie anular que se estrecha radialmente hacia dentro entre los orificios primero (34) y segundo (40).
- 12Dispensador (10) según cualquiera de las reivindicaciones 9 o 10, en el que la tapa de válvula (30) flexible 30 incluye una primera parte (52) conectada al cuerpo de válvula (26) en un lado de la junta (32), y una segunda parte (54) conectada al armazón (12) en un lado opuesto de la junta (32) en relación con la primera parte (52) y una parte móvil (56) que se extiende entre la segunda parte (54) y la junta (32) para permitir el movimiento de la válvula entre las posiciones primera y segunda. 35 13. Dispensador (10) según cualquiera de las reivindicaciones precedentes, en el que la válvula unidireccional (20) es oprimible manualmente en relación con el émbolo (18) entre las posiciones primera y segunda.
- 14Dispensador (10) según cualquiera de las reivindicaciones de la 9 a la 13, en el que el cuerpo de válvula (26) incluye una superficie activable manualmente y la junta (32) se extiende alrededor de una parte periférica de 40 la superficie activable manualmente.
- 15Dispensador (10) según cualquiera de las reivindicaciones precedentes, que comprende además una guía que se extiende entre la válvula y el armazón (12) para guiar el movimiento de la válvula entre las posiciones primera y segunda, y un muelle acoplado entre la guía y el armazón (12) para desviar la válvula en dirección 45 de la segunda a la primera posición.
- 16Dispensador (10) según cualquiera de las reivindicaciones precedentes, en el que la válvula y el émbolo (18) están alineados axialmente y la cámara de almacenamiento de volumen variable (14) está separada radialmente en relación con la válvula y el émbolo (18). 50
- 17Dispensador según cualquiera de las reivindicaciones precedentes, en el que la cámara de almacenamiento de volumen variable (14) está sustancialmente sin aire.
- 18Dispensador (10) según cualquiera de las reivindicaciones precedentes, que comprende además un pistón 55 que se recibe dentro del armazón (12) y que forma un cierre sustancialmente hermético entre ellos, en el que la cámara de almacenamiento de volumen variable (14) está conformada entre el pistón y el émbolo (18) y el pistón es móvil axialmente al dispensar una dosis de la cámara de almacenamiento (14) para reducir el volumen de la cámara de almacenamiento (14) en una cantidad aproximadamente igual al volumen de la dosis dispensada. 60
- 19Dispensador (10) según cualquiera de las reivindicaciones precedentes, que comprende además un orificio de llenado montado sobre el armazón (12) y una segunda válvula unidireccional (20) acoplada en comunicación de fluido entre el orificio de llenado y la cámara de almacenamiento de volumen variable (14) para llenar la cámara de almacenamiento (14) a través de este.
- 20Dispensador (10) según la reivindicación 19, en el que la segunda válvula unidireccional (20) incluye un asiento de válvula (28) que se extiende de manera axial y una tapa de válvula (30) flexible que se extiende de manera axial asentada sobre el asiento de válvula (28) y que define una junta (32) normalmente cerrada que se extiende de manera axial entre ellos que forma un cierre impermeable entre la tapa de válvula (30) y el asiento de válvula (28), y la tapa de válvula (30) flexible es móvil en relación con el asiento de válvula (28) y la junta se conecta en comunicación de fluido con la cámara de almacenamiento de volumen variable (14) para permitir el paso de sustancia a través de la junta (32) al interior de la cámara de almacenamiento (14). 13 14 imagen3
Independent claims14
167 paragraphs in 1 section, as filed
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DESCRIPTION
p00001Dispenser featuring a variable volume storage chamber and an unidirectional valve assembly that can be used to dispense creams and other substances
Cross reference to related requests
p000025 [0001] This patent application claims the benefit of the provisional United States patent application n. Serial No. 60 / 539,603, filed on January 27, 2004, the United States provisional patent application n. Serial No. 60 / 613,612, filed on September 27, 2004 and Daniel Py's United States patent application, entitled "Dispenser Having Variable-Volume Storage Chamber and Depressible One-Way Valve Assembly for Dispensing Creams and Other Substances" filed on January 26, 2005
p0000310 with express shipping label n. No. EV567834760US and patent attorney file n. No. 97818.00181 (serial number pending).
Field of the Invention
p00004[0002] The present invention relates to dispensers for containing and dispensing fluids such as creams, gels and other substances and, more specifically, to dispensers that include volume storage chambers.
p00005fifteen variable to accommodate multiple doses of said substances, unidirectional valves to hermetically close the substances inside the dispensers and dispense the substances thereof, actuation mechanisms for operating pumps within the dispensers and dispensing dosed quantities of substances through the unidirectional valves.
Background Information
p00006twenty [0003] Prior art dispensers for storing and dispensing multiple doses of creams, gels and other fluids or substances, such as cosmetic dispensers for dispensing, for example, creams or gels to be applied to the skin, do not usually store the product in a storage chamber tightly closed. In addition, such dispensers may be exposed to, or applied to the skin of a user that may contain, dirt, germs, bacteria and / or other unwanted contaminants.
p0000725 Such contaminants can penetrate the dispensing openings of the dispensers and, in turn, contaminate most of the product, such as a cream or gel, stored inside the dispensers. Consequently, pollutants can pass from one user to another or otherwise cause unhealthy conditions if the dispensers continue to be used. Also, as the products stored inside the dispensers are exposed to the air, the products may degrade or deteriorate and / or need
p0000830 preservatives to prevent such degradation and / or deterioration from occurring. In some circumstances, preservatives can cause allergic and / or other undesirable or negative reactions, such as unwanted dermatological reactions.
p00009[0004] EP 0 733 559 A1 describes a dispenser for fluids, gels or creams. In a frame, a chamber is closed by means of two valves, while a volume storage chamber
p0001035 variable is placed between the two valves. A piston mounted inside a frame can be pressed against a deflection element to pump the fluid from the chamber into the storage chamber of varying volume and from there to the outside of the frame through the second valve. The chamber is placed under the plunger and the two valves, so the dispenser is quite long and bulky.
p0001140 [0005] Therefore, an object of the present invention is to avoid one or more of the disadvantages and / or disadvantages described above of the prior art.
Summary of the invention
p00012[0006] Exemplary embodiments of the invention include a dispenser comprising a framework and a variable volume storage chamber formed within the framework and defining a substantially impermeable closure between the chamber and the exterior of the framework for storing a substance. That will be dispensed. A piston is mounted inside the frame, and a unidirectional valve is mounted inside the frame that is coupled in fluid communication with the variable volume storage chamber. A compression chamber is coupled in fluid communication between the plunger and the unidirectional valve, and at least one between the piston and the valve is manually pressed in relation to the other between (i) a first position in which the piston is located at least partially outside the compression chamber to allow a substance to flow from the variable volume storage chamber inside the compression chamber and (ii) a second position in which the plunger is located at least partially inside the compression chamber to pressurize a substance within the compression chamber above a
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p00013opening pressure of the valve and, in turn, dispensing a substance through the unidirectional valve to the outside of the dispenser.
p00014[0007] In some embodiments of the present invention, the dispenser further comprises a
p000155 deflection element to deflect at least one between the piston and the valve in the direction of the second position towards the first position. In an embodiment of the present invention, the deflection element is at least one between a helical spring and an elastic and elastomeric spring. In one embodiment, the elastic and elastomeric spring has an approximately dome shape.
p0001610 [0008] In some embodiments of the present invention, the unidirectional valve includes an axially extending valve seat and a flexible valve cover that extends axially seated on the valve seat and which defines a joint normally closed that extends axially between them that forms a waterproof seal between the valve cover and the valve seat. At least one outlet opening is coupled in fluid communication between the compression chamber and the joint. Valve cover
p00017fifteen Flexible is mobile in relation to the valve seat and the gasket is connected in fluid communication with the outlet opening to allow the passage of substance from the compression chamber through the gasket to the outside of the dispenser. In an embodiment of the present invention, the valve seat defines at least one narrowed portion that radially narrows outwardly from the inside to the outside of the valve. Preferably, the flexible valve cover forms a tight fit with the valve seat.
p00018twenty Likewise, the flexible valve cover responds to a flow of substance in the outlet opening that exceeds an opening pressure of the valve so that it moves between (i) a normally closed state and (ii) an open state in which parts of the axially separated valve cover in relation to each other move substantially sequentially in substantially radial relationship with the valve seat to allow the passage of substance through the joint towards the outside of the dispenser.
p0001925 [0009] In some embodiments of the present invention, the dispenser further comprises a flexible bladder mounted within the frame and defining the variable volume storage chamber between the bladder and the frame.
p0002030 [0010] Preferably, the compression chamber defines a first radial dimension that is substantially equal to or less than a radial dimension of the plunger to form an impermeable seal between them. In an embodiment of the present invention, the plunger includes at least one annular closure surface that forms said radial dimension and said impermeable closure. Also, in an embodiment of the present invention, the annular closure surface is formed by an elastomeric closure element on the plunger.
p0002135 [0011] In some embodiments of the present invention, the plunger is fixed in relation to the valve, and the valve is manually pressed in relation to the plunger between the first and second positions. In an embodiment of said features, the valve includes a valve body that defines the compression chamber for receiving the piston therein, and an axially extending valve seat. The valve
p0002240 It also includes a flexible valve cover that extends axially seated on the valve seat and defines a normally closed joint that extends axially between them that forms a waterproof seal between the valve cover and the valve seat. In an embodiment of said features, the valve body defines a first orifice to receive the plunger in the first position and a passageway between the first orifice and the plunger to allow the flow of substance through it from the chamber of
p00023Four. Five Variable volume storage inside the compression chamber. In one embodiment, the valve body further defines at least one outlet opening coupled in fluid communication between the compression chamber and the valve seal, and a second hole formed between the first hole and the outlet opening and which define within this the compression chamber. Preferably, the valve body further defines an annular surface that narrows radially inwardly between the first and
p00024fifty second.
p00025[0012] In some embodiments of the present invention, the flexible valve cover includes a first part connected to the valve body on one side of the joint and a second part connected to the frame on an opposite side of the joint in relation to the first part, and a moving part that extends between the second part and the gasket to allow movement of the valve between the first and second positions. In an embodiment of said characteristics, the valve body is manually pressed in relation to the piston between the first and second positions. Preferably, the valve body includes a manually activatable surface and the joint extends around a peripheral part of the manually activatable surface. In an embodiment of said features, the dispenser further comprises a guide that extends
p0002660 between the valve and the frame to guide the movement of the valve between the first and second positions. Preferably, a spring is coupled between the guide and the frame to divert the valve in the direction of the second to the first position.
p00027[0013] In some embodiments of the present invention, the valve and the plunger are axially aligned 65 and the variable volume storage chamber is radially separated relative to the valve and the plunger. Preferably, the variable volume storage chamber is substantially airless.
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p00028[0014] In some embodiments of the present invention, the dispenser further comprises a piston.
p000295 which is slipped inside the frame and forms a substantially impermeable closure between them. The variable volume storage chamber is formed between the piston and the piston and the piston is axially movable by dispensing a dose from the storage chamber to reduce the volume of the storage chamber by an amount approximately equal to the volume of the dispensed dose .
p0003010 [0015] In some embodiments of the present invention, a filling hole is mounted on the frame and a second one-way valve is coupled in fluid communication between the filling hole and the variable volume storage chamber. In an embodiment of the present invention, the second unidirectional valve includes an axially extending valve seat and a flexible valve cover that extends axially seated on the valve seat and which defines a
p00031fifteen Normally closed joint that extends axially between them that forms a waterproof seal between the valve cover and the valve seat. The flexible valve cover is mobile in relation to the valve seat and the gasket is connected in fluid communication with the variable volume storage chamber to allow the passage of substance through the gasket into the storage chamber.
p00032twenty [0016] In some embodiments of the present invention, the plunger defines a flow conduit in this coupling in fluid communication between the variable volume storage chamber and the compression chamber to allow the flow of substance from the chamber of Variable volume storage inside the compression chamber.
p0003325 [0017] In some embodiments of the present invention, the valve cover comprises the area around the periphery of the unidirectional valve at the top of the dispenser. This allows a larger manually activated surface of the valve cover to operate the unidirectional valve used to dispense the cream or other substance. The filling system for the alternative embodiment also comprises an annular flexible valve for the passage of substance from the filling hole into the interior of the
p0003430 variable volume storage chamber.
p00035[0018] An advantage of the present invention is that the dispenser can store multiple doses of substances, such as liquids, creams, gels or other cosmetic or cosmeceutical products in a tightly sealed and sterile state throughout the shelf life and storage. use of the dispenser. Likewise,
p0003635 exemplary embodiments of the dispenser may offer dosed amounts of the liquid, cream, gel or other substance with a simple one-hand drive movement.
p00037[0019] Other objects and advantages of the present invention will become apparent in view of the following detailed description of the presently preferred embodiments and the accompanying drawings.
40 Brief description of the drawings
p00038[0020]
p00039FIG. 1 is a top perspective view of a dispenser representing an embodiment of the present invention.
p00040FIG. 2 is a side elevation view of the dispenser of FIG. 1.
p00041FIG. 3 is a bottom plan view of the dispenser of FIG. 1.
p00042FIG. 4 is a top plan view of the dispenser of FIG. 1.
p00043FIG. 5 is another side elevation view of the dispenser of FIG. 1.
p00044fifty FIG. 6 is another side elevation view of the dispenser of FIG. 1.
p00045FIG. 7 is a cross-sectional perspective view of the dispenser of FIG. 1.
p00046FIG. 8 is a cross-sectional view of the dispenser of FIG. 1 showing the empty variable volume storage chamber.
p00047FIG. 9 is a cross-sectional view of the dispenser of FIG. 1 showing the filling of the variable volume storage chamber.
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p00048FIG. 10 is a cross-sectional view of the dispenser of FIG. 1 showing the variable volume storage chamber filled with a substance to be dispensed.
p00049FIG. 11 is another cross-sectional view of the dispenser of FIG. 1.
p00050FIG. 12 is another cross-sectional view of the dispenser of FIG. 1.
p000515 FIG. 13 is a cross-sectional view of an alternative embodiment of the dispenser in the active position.
p00052FIG. 14 is another cross-sectional view of the dispenser of FIG. 13 in the filling position.
p00053FIG. 15 is an alternative embodiment of the dispenser showing the variable volume storage chamber having a sliding wall.
10 Detailed description of the presently preferred embodiments
p00054[0021] With reference to FIGS. 1-12, a dispenser representing an embodiment of the present invention is generally indicated by reference number 10. The dispenser 10 comprises a frame 12, a variable volume storage chamber 14 formed within the frame 12 and which defines a substantially impermeable closure between the chamber 14 and the exterior of the frame to store a substance 15 to be dispensed. A plunger 18 is mounted inside the frame 12 and a unidirectional valve 20 is also mounted inside the frame and coupled in fluid communication with the variable volume storage chamber. A compression chamber 22 is coupled in fluid communication between the plunger 18 and the unidirectional valve 20 to receive a predetermined dose of substance, such as a cream, gel or other substance, from the storage chamber 14 and dispense this through the valve 20. twenty According to the present invention, at least one between the plunger 18 and the valve 20 is manually pressed in relation to the other between (i) a first position that is typically shown in FIG. 8 wherein the plunger 18 is located at least partially outside the compression chamber 22 to allow a substance to flow from the variable volume storage chamber 14 into the compression chamber 22 and (ii) a second position that is typically shown on dashed lines in FIG. 10, in which the plunger 18 is
p0005525 located at least partially inside the compression chamber 22 to pressurize a substance from the storage chamber within the compression chamber above a valve opening pressure and, in turn, dispense a substance through the valve unidirectional 20 towards the outside of the dispenser.
p0005630 [0022] In the illustrated embodiment of the present invention, the plunger 18 is fixed in relation to the unidirectional valve 20, and the valve 20 is manually pressed in relation to the plunger between the first and second positions. However, as experts in the relevant field may recognize based on the teachings contained herein, the unidirectional valve could be fixed in relation to the piston, and the piston could be mobile in relation to the valve, or both the piston and the valve could be
p0005735 mobile in relation to each other.
p00058[0023] A deflection element, such as a coil spring 24, is coupled between the unidirectional valve 20 and the frame 12 to normally deflect the valve in the direction of the second position, as typically shown in broken lines in FIG. 10, towards the second position, as typically shown in the
40 FIG. 8.
p00059[0024] As shown in FIG. 8, the unidirectional valve 20 includes a valve body 26 that defines the compression chamber 22 to receive the piston 18 therein and a valve seat 28 that extends axially. The valve 20 further includes a flexible valve cover 30 that extends axially 45 seated on the valve seat 28 and defines a normally closed joint 32 that extends axially between them that forms an impermeable seal between the gasket valve 30 and valve seat 28. The valve body 26 further defines a first hole 34 for receiving the plunger 18 in the first position, as typically shown in FIG. 10, and a passage 36 between the first hole 34 and the plunger 18 to allow the flow of substance through this of the variable volume storage chamber 14 into the interior 50 of the compression chamber 22, as indicated by the arrows in the FIG. 8. The valve body 26 further defines an outlet opening 38 coupled in fluid communication between the compression chamber 22 and the valve joint 32, and a second hole 40 formed between the first hole 34 and the outlet opening 38 and defining in this the compression chamber 22. As typically shown in FIG. 8, the valve body 26 further defines an annular surface 42 that narrows radially inwardly between the first and second holes
p0006055 34 and 40, respectively.
p00061[0025] The plunger 18 includes a plurality of annular axially spaced apart parts or elements 43 relative to each other on the plunger and which are slidably in contact with the valve body to form an impermeable seal between them. In the illustrated embodiment, the closure elements are formed by o-rings or similar closure elements; however, as experts in the relevant field may recognize based on the teachings contained herein, the closing parts or elements may take any of the many different forms or configurations that may be
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p000625 they know today or that they will meet later.
p00063[0026] As shown in FIG. 8, in the first position or resting position, the upper closure element 43 is radially separated and away from the first hole 34 to allow the cream, gel or other substance to flow through it into the volume storage chamber variable inside the compression chamber 10. On the other hand, the lower closure element 43 always forms an impermeable seal between the piston and the valve body to prevent any fluid from flowing down and between them. As typically shown on dashed lines in FIG. 10, when the tip of the plunger 18 enters the compression chamber, the upper closure element 43 locks with the second hole 40 of the valve body and forms a waterproof seal between them. In turn, this increases the pressure of the cream, gel or other substance inside
p00064fifteen of the compression chamber with an additional downward movement of the valve. Then, when the pressure of the compression chamber exceeds the opening pressure of the valve, the cream, gel or other substance of the compression chamber flows through the joint 32 and is dispensed through the valve.
p00065[0027] As can be seen, the joint 32 extending axially formed between the valve seat 28
p00066twenty which extends axially and the flexible valve cover 30 which extends axially seated thereon is normally closed, and forms a waterproof seal between the valve cover 30 and the valve seat
p0006728. The outlet opening 38 of the valve is coupled in fluid communication between the compression chamber 22 and the seal 32. As described in detail below, the viscoelastic valve cover 30 is movable in relation to the valve seat 28, and the joint 32 is connected in fluid communication with the opening
p0006825 outlet 38 to allow the passage of substance from the compression chamber 22 through the seal out of the dispenser. As the overlapping lines typically show in cross-sectional views (FIGS. 8-10), the viscoelastic valve cover 30 forms a tight fit with the valve seat 28 to facilitate the formation of a waterproof closure.
p0006930 [0028] In the illustrated embodiment of the present invention, the valve seat 28 defines several parts of the surface that are radially narrowed outwardly from the inside to the outside of the valve. As shown in FIGS. 9 and 11, the valve seat 28 defines a first surface segment 44 that narrows radially outward at a first acute angle relative to the axis of the valve; a second surface segment 46 that is adjacent to the first surface segment 44 and that is in the direction
p0007035 descending with respect to this, and which is oriented substantially parallel to the axis of the valve; a third surface segment 48 that is adjacent to the second surface segment 46 and that is in a downward direction with respect to this, and that narrows radially outward at a second acute angle relative to the axis of the valve; and a fourth surface segment 50 that is adjacent to the third surface element 46 and is substantially parallel to the axis of the valve.
p0007140 [0029] An advantage of the narrow configuration is that less and less energy is needed to open each respective annular part of the valve when it moves axially from the inside to the outside of the valve. Therefore, once the valve base is opened, the pressure is sufficient to cause the respective axial segments of the valve cover 30 to open progressively and then close after the passage
p00072Four. Five of fluid through them when they move in axial direction to dispense a dosed amount. Likewise, when dispensing a dosed amount, preferably a substantially annular segment of the valve cover 30 always substantially locks with the valve seat 28 to maintain the seal on the valve 20 and, thus, prevent the introduction through the valve of germs, bacteria or other unwanted substances inside the storage chamber 14. If desired, the valve cover
p00073fifty it may define a narrow cross-sectional configuration to further facilitate a progressive reduction in the energy required to open the valve when moving in the direction from the inside to the outside of the valve or, alternatively, the valve cover may define the configuration narrowed crosswise and the valve seat may not define any narrow configuration, or it may define another surface contour not shown.
p0007455 [0030] As can be seen, in the illustrated embodiment, the first and second acute angles are approximately equal in relation to each other. Preferably, the acute angles are each within the range of about 15 ° to about 45 ° and, in the illustrated embodiment, each is about 30 °. However, as experts in the field may recognize
p0007560 relevant depending on the teachings contained herein, these angles are only by way of example, and may be modified as desired or as otherwise required.
p00076[0031] In addition, the flexible valve cover 30 includes a first part 52 connected to the valve body 26 on one side of the joint 32 and a second part 54 connected to the frame 12 on an opposite side of the joint 32 in relation to the first part 52. A moving part 56 of the valve cover 30 extends between the second part
<figref>image6</figref>
p0007754 and the gasket 32 to allow the movement of the valve and the valve cover between the first and second positions and in relation to the frame. The first part 52 of the valve cover defines a domed annular protuberance that is received within a corresponding annular groove formed in the valve body 26 and the second part 54 of the valve cover defines a domed annular protuberance that is received within
p000785 a corresponding annular groove formed in the frame 12 to securely fix the ends of the valve cover to the valve body and the frame, respectively.
p00079[0032] An annular guide 58 extends around the periphery of the first part 52 of the valve cover and forms a tight fit with the elastic valve cover to prevent relative movement of the guide and the cover
p0008010 valve. The piston 18 and the valve 20 are received within a hole 60 of the frame 12, and the guide 58 defines a radially extending flange 62 that locks with the surfaces of the hole 60 to guide the movement of the valve within the orifice. Also, the flange 62 is locked with the end of the coil spring 24 to normally deflect the valve in the direction of the second towards the first position.
p00081fifteen [0033] As described in detail below, the valve body 26 is manually pressed in relation to the piston 18 between the first and second positions to dispense dosed amounts of the substance stored in the variable volume storage chamber 14 of this. The valve body 26 includes a manually activatable surface 64 on the exposed side of the valve that is manually activatable and operable to operate the dispenser. The joint 32 extends around a peripheral part
p00082twenty from the manually activatable surface 64 so that the dosed amounts of the substance that are dispensed through the gasket exit to the manually activatable surface and can be easily removed therefrom with the user's finger or fingers. As can be seen, the external surfaces of the manually activatable part 26, the movable part 56 and the adjacent parts of the frame define a smooth and concave contour to facilitate the withdrawal of the dosed and dispensed amounts of substance. Preferably, the surface
p0008325 Manually activatable is formed of an elastic material, such as an elastomeric material, to obtain a desired feel; however, other desired materials may be used. Each dosed amount is approximately equal to the volume of the compression chamber 22 and, thus, the dose volume can be precisely controlled by setting the volume of the compression chamber.
p0008430 [0034] In the illustrated embodiments of the present invention, the frame and the valve body are made of relatively hard plastic materials, such as any of the plastics sold under the Topaz ™, Surlyn ™ and Zeonex ™ brands. The plunger may be made of any of the same materials or, if it is desired to form a tight fit between the plunger and the compression chamber without using o-rings or similar closure elements, the plunger, or at least the tip of this , it may be made of a lesser degree
p0008535 made of hard plastic compared to the valve body, like any of the many different brands of polypropylene, or the plastic marketed under the Alathon ™ brand.
p00086[0035] As experts in the relevant field may recognize based on the teachings contained herein, the illustrated form and the construction materials mentioned above are only by way of example, and many other forms may be used in the same way. and / or building materials. For example, if desired, the tip of the plunger may be formed of an elastic material that is attached to the end of the plunger assembly. However, an advantage of a piston formed in a single piece and of relatively hard plastic as shown in FIG. 6, for example, is that it dispenses with any additional elastic part, thereby reducing the overall cost and offering a design that reliably closes the area of
p00087Four. Five compression from one dispenser to the other.
p00088[0036] As shown in FIGS. 8-10, the outlet opening 38 is oriented at an acute angle in relation to the axis of the valve body and the plunger, and the outlet end of the opening extends through the first segment 44 of the valve seat 28. The Illustrated embodiment of the present invention includes a single outlet opening 38 that extends angularly to deliver the dosed amount. If desired, additional outlet openings may be added (eg, a second outlet opening of the same size or a different one diametrically opposed to the opening 38 shown), or the opening 38 may move to a position other than the position shown (for example, the only outlet opening may be located on the side opposite to that shown on the valve seat). The valve cover 30 is preferably
p0008955 made of an elastomeric material, such as polymeric material marketed under the Kraton ™ brand or vulcanized rubber or other polymeric material. However, as experts in the relevant field may recognize based on the teachings contained herein, these materials are only by way of example, and many other materials that are currently known or that are currently known or used in the same way may be used. They will meet later.
p0009060 [0037] As shown in FIGS. 8-10, the variable volume storage chamber 14 is defined by an axially extending chamber 64 formed within the frame 12, and a flexible bladder 66 mounted within the chamber 64. The flexible bladder 66 defines a peripheral projection received within a corresponding groove formed in the frame 12 to form the waterproof closure 16. As shown
p0009165 in FIGS. 8-10, the flexible bladder 66 is axially movable within the chamber 64 to allow filling of the variable volume storage chamber 14 of the substance to be dispensed, and to reduce the volume of the volume storage chamber variable after dispensing each dosed amount in an amount approximately equal to the volume of the dose dispensed. The frame 12 defines a filling hole 68 in its base wall and the plunger 18 defines a conduit 70 which extends in fluid communication
<figref>image7</figref>
p000925 between the variable volume storage chamber 14 and the passage 36 and the compression chamber 22.
p00093[0038] The dispenser 10 is filled by slidingly receiving a probe (not shown) into the filling hole 68. Next, as indicated by the arrows in FIG. 9, a fluid, such as a liquid, cream, gel or other cosmetic or cosmeceutical product, for example, is introduced through the probe, through the conduit 70, into the
p0009410 inside the storage chamber 14. As the storage chamber 14 fills with fluid, the bladder 66 moves accordingly (or axially) within the chamber 64 of the frame to allow the variable volume chamber 14 expand accordingly and receive the fluid. Once the storage chamber 14 is full, the probe is removed from the filling hole 68 and the filling hole is closed with a plug 72 (FIG. 10) to tightly close the fluid inside the dispenser.
p00095fifteen [0039] The bladder 66 is preferably made of an elastomeric material, such as one of the polymeric materials marketed under the brands Kraton ™ or Santoprene ™ (eg, Santoprene 8211-35) or vulcanized rubber or other polymeric material. However, as experts in the relevant field may recognize based on the teachings contained herein, these materials are only by way of
p00096twenty For example, and many other materials that are currently known or that will be known later to perform the functions of the bladder and / or the valve element may be used in the same way.
p00097[0040] As shown in FIG. 8, when the dispenser is empty, the bladder 66 shrinks completely until it joins the base wall of the chamber 64 of the frame so that the storage chamber of
p0009825 Variable volume 14 is in a substantially zero volume. If desired, the bladder 66 may be formed to create a positive pressure gradient over the fluid or other substance in the storage chamber 14.
p00099[0041] If desired, instead of simply including the filling hole 68 and the plug 72, the dispenser can
p0010030 including a second unidirectional valve or filling valve (not shown) mounted inside the filling hole to receive the substance through it to fill the variable volume storage chamber 14 and to keep the substance from within the storage chamber in a tightly closed state and substantially airless. In this embodiment, the second unidirectional valve may include an axially extending valve seat and a flexible valve cover that extends from
p0010135 axial manner seated on the valve seat and defining a normally closed joint that extends axially between them that forms an impermeable seal between the valve cover and the valve seat. The flexible valve cover is mobile in relation to the valve seat and the gasket is connected in fluid communication with the variable volume storage chamber to allow the passage of substance through the gasket into the storage chamber. This type of valve may be substantially filled with the
p0010240 same way as described above when connecting the filling probe to the valve and pumping the substance through the valve into the storage chamber. The valve cover of the filling valve is normally closed to keep the inside of the dispenser tightly sealed. Consequently, before filling, the empty dispenser may be sterilized, such as by applying gamma, electron beam or other radiation. Then the closed, empty and sterilized dispenser may
p00103Four. Five it is transported to a sterile filler or to another filling station without risk of contaminating the sterilized interior parts of the dispenser.
p00104[0042] The frame 12 includes a first or upper frame part 74 and a second or base frame part 76 securely fixed to the first frame part and forming an impermeable closure between them. A
p00105fifty peripheral closure element 78, such as an o-ring or a similar closure element, is compressed between the first and second frame portions to form the impermeable closure between them. As also shown in FIGS. 8-10, the closure portion 16 of the flexible bladder 66 is compressed between the first and second frame portions to form an impermeable closure between the variable volume storage chamber and the ambient atmosphere.
p0010655 [0043] Likewise, the frame includes an annular fastener 80 that extends around the periphery of the second part 54 of the valve cover to securely secure the valve cover to the frame and form a waterproof seal between them. The fastener 80 includes a peripheral groove and the adjacent surfaces of the frame define a peripheral projection that is received within the groove for fixing with
p0010760 security the fastener to the frame. As shown in the drawings, the external surfaces of the clamping element 80, the valve body 26 and its manually operable part 64 and the surface surrounding the upper frame part 74 cooperate to define a substantially smooth surface contour and by usually concave to receive the dosed amounts of substance dispensed through the valve and allow its convenient withdrawal by a user.
<figref>image8</figref>
p00108[0044] The base frame portion 76 includes a base wall 84 that is securely attached thereto and that includes an annular closure element 86 between them, such as an O-ring, to form a waterproof closure. As can be seen, the base wall 84 defines the filling hole 68 and cooperates with the base 76 to form the conduit 70 extending from the variable volume storage chamber 14 and through the plunger
p001095 18. An axially and angularly extending chamber 86 is formed in the base frame portion 76 adjacent its outer surface. In some embodiments of the present invention, the base frame part is transparent or translucent and the chamber 86 is adapted to receive a label or a similar element to identify the substance within the dispenser or otherwise provide the desired information. .
p0011010 [0045] When operating the dispenser 10, the user manually depresses the activatable part 64 of the valve 20. This, in turn, moves the valve from the first position shown in FIGS. 8-10 to the second position, shown in dashed lines in FIG. 10. The movement of the valve 20 between the first and second positions pressurizes the cream, gel or other fluid in the compression chamber until the pressure of
p00111fifteen Inside the compression chamber it reaches the valve opening pressure. Next, a dosed amount substantially equal to the volume of the compression chamber is dispensed through the outlet opening 38 and the joint 32 outwards of the dispenser. The dosed amount is supplied to the contoured surfaces of the outer side of the valve, and the user can withdraw the dose with one or more fingers. When the user releases the manually activated part 64 of the valve, the spring 24 carries the valve of the second
p00112twenty position, as shown in dashed lines in FIG. 10, to the first position, as shown in FIG. 8. The movement of the valve body 26 in the opposite direction to the piston 18 is suctioned out (the closed chambers 14 and 22, and the ducts between them, are preferably airless or substantially airless) another dose of the cream, gel or other substance of the variable volume storage chamber 14 and / or the conduit 70 inside the compression chamber 22 to fill the compression chamber. Flexible bladder 66
p0011325 it moves substantially simultaneously down into the chamber 64 of the frame to reduce the volume of the variable volume storage chamber 14 by an amount approximately equal to the amount of the next dose delivered to the compression chamber 22. The dispenser You are then ready to deliver another dose.
p0011430 [0046] As the experts in the relevant field may recognize based on the teachings contained herein, the spring 24 may take any of the many different shapes and / or configurations, or it may be formed from any of the many different materials , which are currently known or which will be known later to carry out the function of the spring as described herein. For example, the spring may be formed of an elastic material and may define a dome
p0011535 Or another way. The elastomeric spring in the form of a dome or other shape may be located in the same position as the spring 24 (that is, extending between the base of the valve body and the frame). Alternatively, an elastomeric spring of said characteristics may be formed as an integral part with the valve cover in the area of the mobile part 56 of the valve cover, for example. Consequently, the pier may take the form of any of the many different springs that are currently known or that
p0011640 they will be known later, and may be made of metal, plastic or any of the many other materials, to deflect at least one between the plunger and the valve in relation to each other, as described herein. Also, the shape and / or construction material of the spring may be selected to control the strength of the spring. An advantage of the substantially dome-shaped configuration is that the dome shape imparts lateral (or radial) and axial forces to the valve to facilitate the
p00117Four. Five maintaining sufficient force to bring the valve from the fully depressed position to the rest position throughout the storage and use life of the dispenser 10. Another advantage of an elastomeric spring is that it may conform as an integral part with the valve cover, thereby dispensing with the need for an additional part.
p00118fifty [0047] An advantage of the presently preferred embodiments of the present invention is that once a dosed amount is dispensed, the valve 20 returns to its resting position, as typically shown in FIG. 8, and consequently substantially equalizes the pressure in the compression chamber 22 and the storage chamber 14. Consequently, the cream, gel or other substance ceases to flow through the valve. Consequently, residual filtration of cream, gel or other substance through
p0011955 the dispensing valve. A further advantage of the dispenser of the present invention is that most of the cream, gel or other substance that is stored within the variable volume storage chamber 14 remains tightly closed in the storage chamber throughout life. Useful storage and use of the dispenser. Another advantage of the dispensers of the present invention is that the variable volume storage chamber may be maintained in a state without air or
p0012060 substantially without air and the unidirectional valve substantially prevents any germ, bacteria or other unwanted substances from entering the dispenser and contaminating most of the cream, gel or other substance
p00121or product contained within the dispenser. Accordingly, if desired, the dispensers of the present invention may be used to store and dispense multiple doses of sterile substances and / or substances without preservatives.
<figref>image9</figref>
p00122[0048] In FIGS. 13 and 14, another embodiment of a dispenser of the present invention is generally indicated by reference number 100. The dispenser 100 is similar to the dispenser 10 described above in reference to FIGS. 1-12, and therefore similar reference numbers preceded by the number 1 are used to indicate similar elements. FIG. 13 represents the dispenser 100 in the active or ready position 5. FIG. 14 represents the dispenser in the filling or dispensing position. A fundamental difference of the dispenser 100 compared to the dispenser 10 described above in reference to FIGS. 1-12 is that the manually activatable surface 164 is positioned around the periphery of the unidirectional valve 120 instead of within the unidirectional valve. This allows a larger mobile part 156 on the top of the dispenser 100 to operate the unidirectional valve 120 with
p0012310 with respect to the embodiment described above (FIGS. 1-12) and to thereby facilitate dispensing.
p00124[0049] A second difference of the dispenser 100 compared to the dispenser 100 is that the variable volume storage chamber 114 that houses the bladder 166 is annular rather than the non-annular 15 dela14.
p00125[0050] A third difference of the dispenser 100 compared to the dispenser 10 is that the substance passage leading to the compression chamber 122 comprises three holes (134, 136 and 140) of different diameters instead of two holes (34, 40). It should be noted that holes may also be included
p00126twenty additional. When additional holes are included, the substance may be dispensed from the variable volume storage chamber with greater uniformity.
p00127[0051] A fourth difference of the dispenser 100 in comparison to the dispenser 10 is that the joint 132 that extends axially is not comprised of narrowed surface segments (44, 46 and 48) as occurs in the dispenser 10.
p00128[0052] A fifth difference of the dispenser 100 is that the filling system comprises a flexible and unidirectional filling valve 171 and annular to allow the substance to enter the variable volume storage chamber 114. A filling tube (not shown) is placed in the filling hole 168 and exerts a positive pressure through the passage of substance through the ascending filling conduit 170 into the flexible and unidirectional filling valve 171. The pressure positive opens the flexible and unidirectional filling valve 171 so that a substance passes to the descending filling conduit 173. The substance then fills the area around the flexible bladder 166 in the variable volume storage vessel 114. During the filling process, a positive pressure develops in the storage chamber of variable volume 35 derived from the pressing substance. against bladder 166 flexible. As the flexible bladder 166 moves up and compresses the air of the variable volume storage chamber 114, it does not fit the upper surface of the chamber 114, but rather a bubble or air bubbles is created by above the substance of the chamber, which facilitates the dispensing of the substance after actuation of the unidirectional valve 120. Once the positive pressure generated by the passage of substance through the filling tube 40 (not shown) weakens, the flexible and unidirectional filling valve 171 is closed, which prevents the flow of substance from receding from the filling chamber. variable volume dispensing 114 to the filling hole
p00129168. The annular closure elements 143 serve to prevent the flow of substance from the variable volume dispensing chamber and the compression chamber from going through the holes (134, 136, 140) of the unidirectional valve 120.
p00130Four. Five [0053] The filling valve 171 may be the same or similar to any of the filling valves disclosed in, and the filling apparatus and method of filling the dispenser may be the same
p00131or are similar to any of the apparatuses or methods disclosed in, the following patent application being processed together with the present one that is assigned to the Assignee of the present invention and which hereby
p00132fifty It is expressly incorporated by reference as part of this presentation: United States application n. Serial No. 10 / 843,902, filed May 12, 2004, entitled "Dispenser and Apparatus and Method for Filling a Dispenser."
p00133[0054] Referring to FIG. 15, another embodiment of a dispenser of the present invention is indicated
p0013455 usually by reference number 200. The dispenser 200 is similar to the dispensers 10 and 100 described above in reference to FIGS. 1-14, and therefore similar reference numbers preceded by the number 2 are used to indicate similar elements. FIG. fifteen illustrates the variable storage chamber 214 as a sliding wall 290 or sliding piston that is received inside the chamber 264 of the frame 212 (or a chamber that defines a different way of receiving the piston) and that forms a
p0013560 substantially waterproof closure between these. Sliding wall 290 replaces the flexible bladder and works similarly to the flexible bladder. Sliding wall 290 is axially movable (in the downward direction as shown in the figure) after dispensing a dose from the storage chamber to reduce the volume of the storage chamber by an amount approximately equal to the volume of the dispensed dose.
<figref>image10</figref>
p00136[0055] When operating the dispenser 210, the user manually presses the activatable part 264 of the valve 220. The movement of the valve 220 in a downward direction, as shown in the figure, pressurizes the cream, gel or another fluid in the compression chamber until the pressure inside the compression chamber reaches the valve opening pressure. Next, a dosed amount is dispensed
p001375 substantially equal to the volume of the compression chamber through the outlet opening 238 and the gasket 232 towards the outside of the dispenser. The dosed amount is supplied to the contoured surfaces on the outer side of the valve, and the user can withdraw the dose with one or more fingers.
p00138[0056] When the user releases the manually activated part 264 of the valve, the spring 224, which is illustrated
p0013910 As a dome spring in this embodiment, it carries the valve in the ascending direction. The movement of the valve body 226 in the opposite direction to the piston 218 sucks another dose of the cream, gel or other substance from the variable volume storage chamber 214 and / or the conduit 270 into the compression chamber 22 to remove Fill the compression chamber. Sliding wall 290 moves substantially downwardly within chamber 264 of the frame to reduce the
p00140fifteen volume of the variable volume storage chamber 214 in an amount approximately equal to the amount of the next dose supplied to the compression chamber 222. The dispenser is then ready to deliver another dose.
p00141[0057] Sliding wall 290 may be made of a relatively elastic plastic material, such as one
p00142twenty of plastics marketed under the Santoprene ™ brand (for example, Santoprene 8211-35 (Shore hardness 35) or 8211-55 (Shore hardness 55)). As indicated above, the valve cover and the dome spring (if used in the manner described above) may also be made of a relatively elastic plastic, such as one of the plastics marketed under the Santoprene ™ brand (for example, Santoprene 821135 (Shore hardness 35)). How experts in the relevant field may recognize depending on the
p0014325 The teachings contained herein, these materials are only by way of example, and may be modified as desired or as otherwise required by a specific application. For example, in applications that require low sorption, the sliding wall, the plunger, the frame and / or the valve body may be formed of a relatively low sorption material, such as a relatively hard plastic, which includes one or more of the plastics sold under the Topas brand.
p0014430 [0058] This patent application includes a similar or important object for the object disclosed in the United States patent application being processed along with the present with n. Serial No. 10 / 272,577, filed October 16, 2002, entitled "Dispenser With Sealed Chamber And One-Way Valve For Providing Metered Amounts Of Substances," U.S. Patent Application n. Serial number
p0014535 10 / 843,902, filed May 12, 2004, entitled "Dispenser And Apparatus And Method For Filling A Dispenser", US Patent Application No. Serial No. 10 / 893,686, filed July 16, 2004, entitled "Piston-Type Dispenser With One-Way Valve For Storing And Dispensing Metered Amounts Of Substances", and the United States Industrial Design Registration Application n. Serial No. 29 / 214.038 filed on September 27, 2004 entitled "Dispensing Container".
p0014640 [0059] As the experts in the relevant field may recognize based on the teachings contained herein, many changes and modifications may be made to the previously described or other embodiments of the present invention without departing from the scope of the invention according to The claims. For example, the components of the dispensers may be made of any of the many
p00147Four. Five different materials that are known at present or that will be known later to carry out the function (s) of each component of said characteristics. Similarly, the components of the dispensers may take any of the many different shapes and / or configurations. Also, dispensers may be used to dispense any of the many different types of fluids or other substances for any of the many different applications, including, for example, cosmetic applications,
p00148fifty dermatological or other pharmaceutical, cosmeceutical and / or not subject to medical prescription. In addition, the filler used to fill the dispensers of the present invention may adopt any of the many different configurations that are currently known or will be known later to fill the dispensers. For example, fillers may have any of the many different mechanisms for sterilizing, feeding, emptying and / or filling the dispensers. In addition, if a filling valve is used,
p0014955 it could adopt any of the many different configurations, and it could be located in any of the many different locations, including, for example, a filling valve that extends through a frame wall or is otherwise coupled in fluid communication with the storage chamber to empty and / or fill the storage chamber. Alternatively, the dispenser may include a valve to empty the inside of the dispenser and another valve to fill the storage chamber of the
p0015060 dispenser. In addition, the piston and / or the dispensing valve may each adopt a configuration that is different from that disclosed herein. Consequently, this detailed description of the preferred embodiments currently must be interpreted in an illustrative sense rather than in a limiting sense.
48 members in 13 offices
Priority claims7
| Document | Office | Kind | Date |
|---|---|---|---|
| 539603P | United States of America | – | |
| 53960304 | United States of America | P | |
| 613612P | United States of America | – | |
| 61361204 | United States of America | P | |
| 43635 | United States of America | – | |
| 4363505 | United States of America | A | |
| 2005003035 | United States of America | W |
Members48
| Document | Office | Kind | |
|---|---|---|---|
| WO0250821A1 | World Intellectual Property Organization (WIPO) | A1 | |
| AU2262402A | Australia | A | |
| KR20020079839A | Republic of Korea | A | |
| CN1404604A | China | A | |
| US2003054128A1 | United States of America | A1 | |
| EP1345214A1 | European Patent Office (EPO) | A1 | |
| JPWO2002050821A1 | Japan | A1 | |
| US6852383B2 | United States of America | B2 | |
| AU780800B2 | Australia | B2 | |
| CN1627405A | China | A | |
| US2005128905A1 | United States of America | A1 | |
| CA2554421A1 | Canada | A1 | |
| WO2005072427A2 | World Intellectual Property Organization (WIPO) | A2 | |
| US2005189379A1 | United States of America | A1 | |
| TWI243368B | Taiwan Province of China | B | |
| CN1286092C | China | C | |
| EP1345214A4 | European Patent Office (EPO) | A4 | |
| EP1748939A2 | European Patent Office (EPO) | A2 | |
| WO2005072427A3 | World Intellectual Property Organization (WIPO) | A3 | |
| BRPI0506588A | Brazil | A | |
| CN1972861A | China | A | |
| CN1323396C | China | C | |
| JP2007523015A | Japan | A | |
| US7264142B2 | United States of America | B2 | |
| US2008105712A1 | United States of America | A1 | |
| JP4211395B2 | Japan | B2 | |
| EP1748939A4 | European Patent Office (EPO) | A4 | |
| JP2009219898A | Japan | A | |
| US7644842B2 | United States of America | B2 | |
| JP4398982B2 | Japan | B2 | |
| US2010108719A1 | United States of America | A1 | |
| EP1345214B1 | European Patent Office (EPO) | B1 | |
| AT473506T | Austria | T | |
| ATE473506T1 | Austria | T1 | |
| DE60142523D1 | Germany | D1 | |
| US7886937B2 | United States of America | B2 | |
| CA2554421C | Canada | C | |
| US2012018455A1 | United States of America | A1 | |
| US8125868B2 | United States of America | B2 | |
| US8413854B2 | United States of America | B2 | |
| JP5253307B2 | Japan | B2 | |
| CN1972861B | China | B | |
| US2014034683A1 | United States of America | A1 | |
| EP1748939B1 | European Patent Office (EPO) | B1 | |
| US8919614B2 | United States of America | B2 | |
| ES2526807T3This record | Spain | T3 | |
| US2015108174A1 | United States of America | A1 | |
| US9377338B2 | United States of America | B2 |
Numbers
- Publication
- 2526807
- Application
- 5712468
Titles2
- Spanish
- Dispensador que presenta una cámara de almacenamiento de volumen variable y conjunto de válvula unidireccional oprimible para dispensar cremas y otras sustancias
- English
- Dispenser featuring a variable volume storage chamber and an unidirectional valve assembly that can be used to dispense creams and other substances
Classification
- IPC, 4
- B05B11 00
- A45D40 00
- B05B1 00
- B67D7 58