Locking aerosol dispenser
8 claims: 3 independent, 5 dependent
- 1REIVINDICAÇÕES 1) Atuador de aerossol para acionar uma válvula de aerossol no topo de um recipiente de aerossol, o referido atuador caracterizado pelo fato de que compreende, em combinação, uma porção superior e uma porção inferior, a porção inferior sendo montável em um recipiente aerossol, o porção superior sendo montada na porção inferior, e a porção superior sendo girável em relação à porção inferior entre uma primeira posição para o acionamento da válvula e uma segunda posição em que a válvula não pode ser acionada;a referida porção inferior incluindo um de uma posição de clique e uma armação de clique flexível, e a referida porção superior incluindo a outra da referida posição de clique e referida armação de clique flexível;a referida posição de clique tendo uma primeira superfície para acoplar e defletir a referida armação de clique para dentro para passar sobre a face interna da posição de clique em um primeiro sentido de rotação da referida porção superior, e uma segunda superfície para acoplar e defletir a referida armação de clique para fora para passar sobre a face exterior da posição de clique em um segundo sentido de rotação da referida porção superior;a referida armação de clique estalando de volta de sua posição defletida para criar um ruído de clique audível em cada sentido de rotação da referida porção superior, quando a referida posição de clique e a referida armação de clique passam uma pelas outras. atuador tem uma única posição de clique e uma única armação de clique como o único indicador de posição de clique a partir da rotação da referida porção superior, proporcionando, assim, um único ruído de clique audível em cada sentido de rotação.
- 24) Atuador de aerossol, de acordo com a reivindicação 1, caracterizado pelo fato de que a referida porção superior e a referida porção inferior têm respectivos flanges de parada que interagem para definir o limite de rotação em cada direção da referida porção superior, os referidos flanges de parada cessam a rotação em ambos os sentidos em posições onde a referida armação de clique e a referida posição de clique passaram uma pela outra.
- 35) Atuador de aerossol, de acordo com a reivindicação 1, caracterizado pelo fato de que a referida porção superior do atuador é um membro único e em que a referida primeira posição é compressível como um todo em uma direção vertical para acionar a válvula.
- 46) Atuador de aerossol para acionar uma válvula de aerossol no topo de um recipiente de aerossol, o referido atuador caracterizado pelo fato de que compreende, em combinação, uma porção superior e uma porção inferior, a porção inferior sendo montável em um recipiente de aerossol, a porção superior sendo montada sobre a porção inferior e a porção superior sendo girável em relação à porção inferior entre uma primeira posição para o acionamento da válvula e uma segunda posição em que a válvula de aerossol não pode ser acionada;a referida porção superior do atuador sendo um membro único e na primeira posição a sendo compressível como um todo em uma direção vertical para acionar a válvula de aerossol;a referida porção inferior, incluindo um canal de produto integral conectável em uma extremidade à haste da válvula do aerossol e com um bocal para expelir o produto na outra extremidade;a referida porção superior do atuador quando verticalmente comprimida agindo para diminuir o canal do produto para acionar a válvula de aerossol;o referido canal de produto com uma pluralidade de membros de mola flexíveis que se estendem lateralmente associados a ele, e a referida porção superior do atuador com uma pluralidade correspondente de membros de polarização de mola que sobrepõem, entram em contato e comprimem ligeiramente a referida pluralidade de membros de mola somente quando a porção superior do atuador é girada para a sua primeira posição de acionamento de válvula;os referidos membros de mola impulsionando os referidos membros de polarização de mola e, consequentemente, a referida porção superior do atuador para cima quando a referida porção superior do atuador está, em sua primeira posição rotacional, mesmo quando o referido membro de canal de canal retornou à sua posição não comprimida após a dispersão do produto.
- 57) Atuador de aerossol, de acordo com a reivindicação 6, caracterizado pelo fato de que a referida porção superior inclui um cilindro que dependente para baixo, e a referida porção inferior inclui um cilindro que se estende para baixo que se ajusta dentro do referido cilindro que depende para baixo para estabilizar a porção superior e ajudar na manutenção da verticalidade mediante atuação.
- 68) Atuador de aerossol para acionar uma válvula de aerossol no topo de um recipiente aerossol, o referido atuador compreendendo, em combinação, uma porção superior e uma porção inferior, a porção inferior sendo montável em um recipiente de aerossol, a porção superior sendo montada sobre a porção inferior, e porção superior sendo girável em relação à porção inferior entre uma primeira posição para o acionamento da válvula de aerossol e uma segunda posição em que a válvula de aerossol não pode ser acionada;a referida porção inferior tendo um anel parcial interno com uma borda interior;a referida porção superior tendo pluralidade de flanges de conexão flexíveis que se estendem para baixo com uma armação direcionada para cima e para fora adjacente à extremidade inferior de cada flange de conexão, a referida armação dirigida para cima se estendendo sob a borda interna do anel parcial da porção inferior para conectar as porções superior e inferior do atuador;os referidos flanges de conexão que se estendem para baixo sendo fixados à porção superior do atuador por uma pluralidade de flanges de suporte, um flange de suporte de cada flange de conexão também servindo como uma membro de parada;a referida porção inferior do atuador com um par de flanges de asas verticais que se estendem para cima que também servem como membros de parada;e alguns dos membros de parada da referida porção superior do atuador e da referida porção inferior do atuador agindo para finalizar a rotação da referida porção superior do atuador em sua primeira posição de acionamento e em sua segunda posição de não acionamento.
- 79) Atuador de aerossol, de acordo com a reivindicação 8, caracterizado pelo fato de que porção superior do atuador tem uma periferia inferior com uma pluralidade de endentações que se estendem para cima da mesma, a referida porção inferior do atuador tem uma pluralidade de armações laterais que se estendem para dentro a partir de sua parede inferior, e a referida pluralidade de endentações que sobrepõem a referida pluralidade de armações somente quando a porção superior está na sua posição de acionamento, segundo a qual o acionamento de depressão da referida porção superior localiza as referidas endentações abaixo nas referidas armações para alinhar as porções superior e inferior do atuador para a dispersão.
- 810) Atuador de aerossol, de acordo com a reivindicação 9, caracterizado pelo fato de que as endentações que se estendem para cima têm estreitamento lead-íns de baixo para cima para facilitar o alinhamento das porções superior e inferior do atuador durante a compressão de atuação da referida porção superior. 1/8
Independent claims8
57 paragraphs in 4 sections, as filed
(54) Title: AEROSOL DISPENSER WITH (57) Summary: LOCK (30) Unionist Priority: 04/01/2007 us 11 / 649,625 (73) Holder (s): Precision Valve Corporation (72) Inventor (s): Terry L. Hygema (74) Attorney (s): Di Blasi, Parente, Vaz and Dias & Al.
(86) International Order: pct US2008000128 of 04/01/2008 (87) International Publication: wo 2008 / 085896de 17/07/2008
<img file="BRPI0806499A2_D0001.tif" />
Invention Patent Specification Report for:
'DISPENSER
IN
AEROSOL
WITH
LOCK.
Field of the Invention
The present invention relates to plastic aerosol dispensers of the type often referred to as spray eaters or actuators. More particularly, the present invention relates to a dispenser having a top portion mounted on and rotating with respect to a lower portion between a first operational position for actuating the aerosol valve and a second inoperative position in which the valve cannot be triggered.
Background of the Invention
The prior art locking aerosol dispensers have been around for years and have had different structural designs of related parts. Some of these designs are too complex for the mold, while others require more force than is desirable for the user to operate between inoperative and inoperative positions.
Still other designs in the unlock position cannot, following the valve activation, properly return the upper portion of the actuator upwards to its rotary position when used with aerosol valves with shorter stem heights due to normal variations in the height of the rod, etc. Such designs, when used with shorter stem heights, can also result in rattle between the upper and lower parts of the actuator to imply inconsistency for the consumer.
Other models are not robust enough and are vulnerable to damage to their parts and operation due to excessive top load from misuse, handling, shipping, etc.
Locking actuators also often incorporate click-through mechanisms in various ways to advise the consumer as to whether the actuator has been turned to the locked or unlocked position. Such mechanisms, however, are often overly complex and can provide multiple clicks with multiple click mechanisms when rotating between these positions, so that the consumer may be confused about the status and operation of the actuator. These mechanisms can also involve considerable angular rotation of the actuator parts, which can further confuse the consumer.
Summary of the invention
The present invention is intended to provide an aerosol valve actuator with an upper and lower portion, the upper portion being rotatable with respect to the lower portion between a first position for valve actuation, and a second position in which the valve cannot be triggered.
The aerosol valve is activated by pressing the entire upper portion as a unit in a vertical direction in relation to the lower portion. A click holder and a flexible click rib provide a single click in each direction of rotation of the upper portion, so as to indicate the position of the rotary actuator in a non-confusing way for consumers who could be confused by several clicks in each direction of rotation. The click holder has a configuration and alignment to cause the click rib to pass on opposite sides of the click holder for opposite directions of rotation, and to provide a pronounced click sound.
In addition, stop flanges on the lower portion of the actuator, and the support flanges for connecting flanges on the upper portion of the actuator interact to stop the rotation of the upper portion of the actuator in each of its directions of rotation as soon as the single click in this direction occurred. This also helps to avoid consumer confusion, and ensures alignment of the upper and lower parts for dispensing.
In addition, the lower portion of the actuator has a plurality of plastic spring members that interact with a plurality of spring bias members that extend from the upper portion of the actuator only when the upper portion has been rotated to the first position. In this position, the spring bias members overlap, come into contact and slightly compress the plastic spring members in a non-actuating manner to prevent noise between the upper and lower parts of the actuator, and to ensure, even on presence of an aerosol valve, with height of the short stem the upper portion of the actuator will be returned to its fully up position after dispensing the product so that the upper portion can be rotated to the non-dispensing position.
The upper portion of the actuator has a plurality of flexible connecting flanges that extend downwardly to fit under the structure of the lower portion of the actuator.
These connecting flanges are connected to the upper portion of the actuator by a plurality of support flanges, one supporting flange of each connection flange serving as a stop member mentioned above assisting in the completion of the rotation of the upper portion. The upper portion of the actuator also has a smaller periphery with a plurality of upward extending cavities that overlap a plurality of lateral ribs in the lower portion of the actuator only when the upper portion of the actuator is in its actuation position prior to dispensing . The depression of the upper portion of the actuator then locates the cavities down to the ribs to align the upper and lower parts of the actuator for dispensing. The upper and lower parts of the actuator also have inter-adjustable cylinders to stabilize the upper portion and maintain verticality.
Other features and advantages of the present invention will be apparent from the following description, drawings and claims.
Brief description of the drawings
Figure 1 is a perspective view of the blocking aerosol dispenser of the present invention.
Figure 2 is a side view of the top and bottom portions disconnected from the dispenser of figure 1.
Figures 3A and 3B illustrate various aspects of the top and bottom portions disconnected from the dispenser of figure 1, figure 3A being an overhead view of the top of the lower portion and figure 3B being a bottom view of the bottom of the upper portion.
Figure 4 is a cross-sectional view of the mounted Figure 1 dispenser, taken from front to back along a vertical plane that passes through the vertical central axis of the dispenser and showing the actuator in the unlocked actuation position.
Figure 5 is a cross-sectional view of the mounted dispenser of figure 1, taken along lines 5-5 of figure 3A and with the upper and lower portions of the dispenser mounted together and with the actuator in the actuated position unlocked.
Figure 6 is a bottom view of the mounted dispenser of figure 1 when the dispenser is in the unlocked operating position.
Figure 7 is the bottom view of the mounted dispenser of figure 1 when the dispenser is in the locked non-engaged position.
Figure 8 is an enlarged fragmentary plan view of the click mechanism of the dispenser of figure 1, taken along lines 8-8 of figure 4.
Detailed description of the achievements
Referring to figure 1, the aerosol dispenser 10 of the present invention is illustrated as assembled and in its unlocked trigger position. The actuator 10 has the upper portion 11, which is mounted on and rotatable with respect to the lower portion 12. The lower portion 12 can be mounted on the top of an aerosol container with an upright aerosol valve (not shown). The upper portion of the actuator 11 has a front opening 13, which aligns with the nozzle of the product 14, when the dispenser 10 is in its unlocked actuation position. The entire upper portion 11 can be vertically pressed as a unit with respect to the lower portion 12 to actuate the vertical aerosol valve stem and the valve in the unlocked actuating position of dispenser 10. When the upper portion 11 is rotated with respect to the portion bottom
12, a short rotation distance from the actuation position, the upper portion 11 can no longer be vertically pressed, and the valve stem and the aerosol valve can no longer be actuated.
Figures 2, 3A and 3B show the actuator 10 of figure 1 with its upper portion 11 and the lower portion 12 disconnected. Figure 3B represents the upper portion 11 having been disconnected without the rotation of the lower portion 12 and only inverted. The front opening 13 of figure 3B and the nozzle 14 of figure 3A therefore continue to face in the same direction. The upper portion of the actuator 11 has on its smallest periphery a plurality of spaced curved cavities 20, which define peripheral segments 21 between them (see figures 2 and 3B). The lower portion of the actuator (see figure 3A), in turn, has a plurality of ribs 25 close to, with spaces and extending inwardly from its lower periphery 26. Just as an example, figures 3A and 3B show six of these curved cavities 20, six of these peripheral segments 21 and six reinforcements 25. When the dispensing actuator 10 is mounted and is in its actuation position, the upper portion 11 can be pressed vertically by the consumer's finger in its upper portion, where curved cavities 20 move downwardly along and below the ribs 25, and peripheral segments 21 are between the ribs 25. The curved portions of the cavities 20 guide the ribs 25 and cavities in full alignment with each other to establish the distribution position, and the plurality of each stabilizes the upper portion 11 and the lower portion 12 in the fully depressed position. In that position, the aerosol valve stem was activated to distribute the product. When the mounted dispensing actuator 10 is in its non-actuating position, the peripheral segments 21 are above the ribs 25 and the upper portion 11 cannot be pressed vertically to activate the aerosol valve.
Referring to figures 2 and 3A, the lower portion of the actuator 12 has members of the inner partial ring 30 and curved upright face plate 31 from which the nozzle 14 opens forward. Integrated with the opposite circumferential ends of the face plate 31 are wing flanges 35 and 36 that extend vertically and radially inward (see also figure 5), which are identical to each other. The flange flanges 35 and 36 serve as stops for the rotation of the upper portion of the actuator 11 over the lower portion of the actuator 12 in a manner described below. Also integrally mounted on face plate 31 and extending behind it is the horizontal flexible product channel 40, from the opposite end, on which the vertical product channel 41 depends, having a conventional socket 42, at its base for insertion of the aerosol valve stem, when the lower actuating portion 12 is mounted in the aerosol dispenser. Extending upward but closed from the vertical product channel 41 is cylinder 45, which, when driven downwardly by the upper actuator portion 11 in the actuating position, will flex the horizontal and vertical product channels 40 and 41 downward to drive the aerosol valve and dispense the product through the nozzle 14.
Referring to figures 2 and 3A, extending from opposite sides and behind the vertical product channel 41 are flexible plastic spring members 48, 49 and 50. The function of the spring members is described below and is for ensure that the upper portion of the actuator 11 returns to its complete upper portion when the user of the actuator stops pressing the upper portion 11 for dispensing, even in the presence of a short-stemmed aerosol valve.
Still referring to figures 2 and 3A, the inner partial ring member 30 of the lower portion of the actuator 12 has an upright click support 54 opposite the nozzle 14. The click support 54 interacts specifically with a click rib on the upper portion of actuator 11, as described below. Alternatively, the click support can be in the upper portion and the click rib can be in the lower portion. The click holder 54 can be a parallelogram as shown in figures 3A and 8, and can have a thickened base 56 as shown in figure 2 to lend stiffness to the click holder. The click holder 54 can take other shapes, including, for example, an ellipse. Referring to figures 3A and 4, the partial ring member 30 also has a skirt 32 that extends downwardly from its outer periphery, and ribs 25 referenced above extending between said skirt 32 and adjacent to the lower periphery 26 of the portion lower of the actuator 12. The lower portion of the skirt 32 has small flanges 33 projecting into them, which serve to block the outer edge of the aerosol valve holding cup (not shown) mounted on the aerosol dispenser. In this way, the smaller member of the actuator 12 is mounted in the aerosol dispenser.
Having described the structural details of the lower portion of the actuator 12 above, figures 3B, 4, 6 and 7 are referenced in relation to the internal structure of the upper portion of the actuator 11. Extending below the upper wall of the upper portion of the actuator 11 there are two diametrically opposed curvilinear connection flanges 55 and having flexible lower ends to connect the upper portion of the actuator 11 to the lower portion of the actuator
12. The connection flange 55 at its lower end has an outward and upward rib 57, and the connection flange 56 at its lower end has an outward and upward rib 58. The ribs 57 and 58 engage under pressure under the inner edge 30a of the ring member 30, when the upper portion 11 of the actuator is connected to the lower portion of the actuator 12 to thereby lock the two actuator portions together. The downwardly connecting connection flange 55 is also secured in its upper portion to the inner side wall of the actuator portion 11 by the support flanges 63, 64 and 65, the downward connecting connection flange 56 is also attached to the its upper portion to the inner side wall of the actuator portion by the support flanges 60, 61 and 62.
Support flanges 63 and 60 also serve as support members. Referring to figures 2, 3b, 5, 6 and
7, when the upper drive portion 11 is rotated counterclockwise to the unlocked position with respect to the lower portion 12, the support flange / stop member 63 abuts against the wing flange 36 of the lower portion of the actuator 12 to stop counterclockwise rotation.
When the upper portion of the actuator 11 is rotated clockwise from the release to the locked position with respect to the lower portion 12, the support flange / stop member 60 confines against the wing flange 35 of the lower portion of the actuator 12 to stop clockwise rotation.
The peripheral segments 21 of the top portion 11 may also have a plurality of slightly spaced outwardly extending small flanges 27 that fit into a plurality of slightly outwardly extending flanges 28 of the lower portion 12, when the upper and lower portions bottom 11 and 12 are assembled, thus helping to provide a robust set.
Moving now to the single click function and structure of the present invention, figure 3B shows a flexible click rib 70 attached and depending on the upper wall of the actuator portion 11. The click rib 70 interacts with the flexible click holder 54 ( see pictures
2, 3A, 4 and 8), creating a single pronounced click sound, indicating noise each time the rotation of the top portion of the actuator 11 in any direction moves the click rib 70 after the click holder 54. The figure illustrates the click rib 70 in solid line for the unlocked position of the actuator, and the click rib 70 in a dotted line for the lock position of the actuator. 0 bottom of the click rib 70 extends below the top of the click holder 54 and the click rib 70 rotationally aligns with the click holder 54 (see figures 4 and 8). For the direction of rotation indicated by the arrow in figure 8, the click rib first meets the surface
54a of the click holder 54, folds and slides along surfaces 54a and 54b, and straightens to the dotted line position to create, at the same time, the positional click indication. When the direction of rotation is opposite to that indicated by the arrow in figure 8, the click rib 70 (shown on the dotted line) will first find the click surface 54c of the click holder 54, flex and slide along surfaces 54c and 54D bracket
54, and straighten the position of the solid line to create the positional click indication at the same time. In the manner described above, it can be seen that a single click rib 70 and a single click holder 54 serves to create a single click from each actuator lock and unlock. The solid line and dotted line positions of the click rib 70 in figure 8 are unlocked and locked positions where the rib 70 is directly adjacent to the click holder 54, when the stops described above are separate and separate (63, 36 and 60, 35 ) have been found, and the angle of rotation of the upper portion 11 of the actuator is therefore very small between the unlocked and locked positions.
Moving now to the internal structure of the upper portion of the actuator 11, reference is made to cylinder 80 in figures 3B and 4 centered on the vertical axis of the actuator and depending on the upper wall of portion 11. Pin 81 is internally attached to cylinder 80, of said upper wall, centered inside cylinder 80 with four radii
82. The upright cylinder 45 inside the lower portion of the actuator 12 (see figure 3A) extends inwards and fits inside the cylinder 80 in the upper portion 11 (see figure 4) to assist in aligning and maintaining the verticality of the upper and lower portion of actuator 11 and in assembly, rotation and distribution operations.
Still referring to figures 3B and 4, the top actuator portion 11 has descending, depending on its upper wall a plurality of spring bias members of actuator 87, 88 and 89, each in the form of a cross member . Spring bias member 87 is composed of intersecting radial ribs 91 and curvilinear rib 94, spring bias member 88 is composed of intersecting radial ribs 90 and curvilinear rib 93 and spring bias member 89 is composed intersection of radial ribs 92 and curvilinear rib 95. The radial and curvilinear intersecting ribs forming each of the spring bias members 87, 88 and 89 serve to give structural stability to each spring bias member. When the top portion of the actuator 11 is rotated to the actuation position against the stops described above defining that position, the radial rib 90 and a portion of the curved rib 93 rest on top of the plastic spring 50 and slightly polarize the spring 50 descendants (see figures 6 and 4, and 2 and 3B); the radial ribs 91 and a portion of curvilinear rib 94 sit on top of the plastic spring 48 and slightly polarize the spring downwardly, and the radial rib 92 and a curvilinear portion 95 rest on top of the plastic spring 49 and slightly polarize the downward spring. The polarization members of the spring 87, and 8 9 are dimensioned in a downward direction in relation to the plastic springs 48, 50 and 49 in such a way that the plastic springs will be somewhat compressed, as described above over the entire range of heights. aerosol valve stem. In this way, the upper portion 11 and the lower portion 12 of the actuator will not shake against each other when actuation is not taking place, due to the assured contact between the plastic springs and the spring bias members.
The spring bias members 87, 88 and 89, and the plastic springs 48, 50 and 49 also have a distinct advantage. When the upper portion of the actuator 11 in the actuation position is pressed as a unit vertically downward by the user, the aerosol valve stem is pressed downwards to actuate the aerosol valve and dispense the products in a known manner.
When the user stops pressing the upper portion 11 downwards, the conventional metal spring on the aerosol valve itself will release the actuator portion 11 back upwards, urging the stem of the aerosol valve upwardly, in order to instill the vertical channel of the product 41, the cylinder 45 and thus the upward portion of the actuator 11 upwards. However, if the stem of the aerosol valve is a small stem that extends into socket 42 of the actuator, the valve stem, in the absence of plastic springs 48, 50 and 49, cannot push the top portion of the actuator 11 back up enough that the actuator portion 11 is free to rotate from its unlocked position back to its locked position. In the presence of plastic springs
48, 50 and 49, however, because they were somewhat compressed by spring bias elements 87, 88 and
89, the plastic springs will urge the spring bias elements 87, 88 and 89 (and therefore the actuator portion 11) still upwards, so that portion 11 is free to rotate from the unlock position back to the position of the actuator, even with a small height of the aerosol valve stem.
When the top portion of the actuator 11 is in its closed position, the spring bias elements 87, 88 and 8 9 no longer sit on top and slightly press the springs 48, 50 and 49. This position is shown below in the figure 7. In the normal upright position of the actuator (figure 1), the curvilinear ribs 94, 93 and 95 are curved at their opposite ends upwardly towards the top portion of the actuator 11 on which they depend, so that, as the portion of the top of the actuator 11 is rotated (clockwise in figure 7) from its locked position to its unlocked position (figure 6), the curved ends of the curvilinear ribs will begin to maintain contact with the tops of the plastic springs 48, 50 ee contacts the cross center of the spring bias elements 87, 88 and 89 in contact with the plastic springs 48,
50 and 49 to compress a little, said springs when the rotation to the unlocked activation position is completed. The sides of the plastic springs 48, 50 and 49 can be chamfered to help this contact.
It will be appreciated by persons skilled in the art that variations and / or modifications can be made to the present invention, without departing from the spirit and scope of the invention.
The present embodiment, therefore, will be considered as illustrative and not restrictive. It should also be understood that the positional terms used in the specification are used and intended in relation to the positioning indicated in the drawings and are not otherwise intended to be restrictive.
Contents4
9 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6 Sheet 7 Sheet 8 Sheet 9
29 members in 9 offices
Members29
| Document | Office | Kind | |
|---|---|---|---|
| US2008164285A1 | United States of America | A1 | |
| AU2008205394A1 | Australia | A1 | |
| WO2008085896A2 | World Intellectual Property Organization (WIPO) | A2 | |
| WO2008085896A3 | World Intellectual Property Organization (WIPO) | A3 | |
| AR064074A1 | Argentina | A1 | |
| EP2099697A2 | European Patent Office (EPO) | A2 | |
| US7699190B2 | United States of America | B2 | |
| JP2010515626A | Japan | A | |
| US2010155436A1 | United States of America | A1 | |
| ZA200903436B | South Africa | B | |
| RU2009129697A | Russian Federation | A | |
| US7984827B2 | United States of America | B2 | |
| US2011253749A1 | United States of America | A1 | |
| RU2458836C2 | Russian Federation | C2 | |
| US8286830B2 | United States of America | B2 | |
| JP5065414B2 | Japan | B2 | |
| JP2012236653A | Japan | A | |
| AU2013203218A1 | Australia | A1 | |
| AU2013203223A1 | Australia | A1 | |
| EP2099697A4 | European Patent Office (EPO) | A4 | |
| AU2008205394B2 | Australia | B2 | |
| JP5406346B2 | Japan | B2 | |
| BRPI0806499A2This record | Brazil | A2 | |
| AU2013203223B2 | Australia | B2 | |
| AU2013203218B2 | Australia | B2 | |
| AR093429A2 | Argentina | A2 | |
| AR093430A2 | Argentina | A2 | |
| EP2099697B1 | European Patent Office (EPO) | B1 | |
| BRPI0806499A8 | Brazil | A8 |
4 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| Dismissal acc. art. 38, par 2 of ipl - failure to pay fee after grant in timeB11D | B11D | |
| Decision: intention to grant [chapter 9.1 patent gazette]B09A | B09A | |
| Patent application procedure suspended [chapter 6.1 patent gazette]B06A | B06A | |
| Others concerning applications: alteration of classificationB15K | B15K |
Numbers
- Publication
- PI0806499
- Application
- 8064997
Titles2
- Portuguese
- DISPENSADOR DE AEROSSOL COM TRAVAMENTO
- English
- LOCKED AEROSOL DISPENSER
Classification
- CPC, 4
- B65D83/22
- B65D83/16
- B65D83/206
- B65D83/204
- IPC, 1
- B65D83 00
