Fastening tab
Abstract
Disclosed is a fastening tab (22) including a manufacturer's bond end (24), attached to a disposable absorbent product (10), and a user's end (26). The user's end (26) includes a mechanical fastener component (32) and is configured to have a disengagement ratio of at least 1.5:1.
Term
No projected expiry on record.
- Priority
- Filed
- Published
- Today
14 claims: 8 independent, 6 dependent
- 1Upevňovací člen (22, 36, 58, 72), vyznačujúci sa tým, že obsahuje výrobný spojovací koniec (24) pripojený k raz použiteľnému absorpčnému výrobku (10) a užívateľský koniec (26) prispôsobený pre upevnenie uvedeného raz použiteľného absorpčného výrobku (10) na užívateľovi, pričom tento užívateľský koniec (26) obsahuje súčasť (32, 40, 64, 76) mechanického upevňovacieho člena a usporiadaný tak, aby mal oddeľovací pomer aspoň 1,5 :First A fastening member (22, 36, 58, 72) comprising a manufacturing connection end (24) attached to the disposable absorbent article (10) and a user end (26) adapted to secure said disposable absorbent article (10) a user, the user end (26) comprising a mechanical fastener member (32, 40, 64, 76) and arranged to have a separation ratio of at least 1.5: 1. 1.
- 6Upevňovací člen podľa aspoň jedného z nárokov 1 až 5, vyznačujúci sa tým, že súčasť (32, 40, 64, 76) mechanického upevňovacieho člena je háčiková súčasť háčikového a očkového upínadla. 6th Fastening member according to at least one of claims 1 to 5, characterized in that the part (32, 40, 64, 76) of the mechanical fastening member is a hook part of a hook and loop fastener.
- 9Upevňovací člen podľa aspoň jedného z nárokov 7 a 8, vyznačujúci sa tým, že uvedené vetvy (42, 44, 46) vymedzujú v uvedenej súčasti (32, 40, 64, 76) mechanického upevňovacieho člena uhol s veľkosťou od 10° do 55°. 9th Fastening member according to at least one of claims 7 and 8, characterized in that said branches (42, 44, 46) define an angle of 10 ° to 55 ° in said mechanical fastener member (32, 40, 64, 76). .
- 10Upevňovací člen podľa aspoň jedného z nárokov 1 až 9, vyznačujúci sa tým, že užívateľský koniec (26) vymedzuje tri vetvy (42, 44, 46), pričom každá z vetiev (42, 44, 46) má povrchovú oblasť, povrchová oblasť jednej z uvedených vetiev (42, 44, 46) je aspoň o 50 % väčšia ako aspoň jedna zo zvyšných vetiev. 10th Fastening member according to at least one of claims 1 to 9, characterized in that the user end (26) defines three branches (42, 44, 46), each of the branches (42, 44, 46) having a surface area, a surface area of one of said branches (42, 44, 46) is at least 50% larger than at least one of the remaining branches.
- 11Upevňovací člen podľa aspoň jedného z nárokov 1 až 10, vyznačujúci sa tým, že uvedený upevňovací člen (22, 36, 58, 72) vymedzuje šmykový kanál (66) v uvedenej súčasti (32, 40, 64, 76) uvedeného mechanického upevňovacieho člena. 11th Fastening member according to at least one of claims 1 to 10, characterized in that said fastening member (22, 36, 58, 72) defines a shear channel (66) in said component (32, 40, 64, 76) of said mechanical fastening member .
- 12Upevňovací člen podľa aspoň jedného z nárokov 1 až 11, vyznačujúci sa tým, že súčasť (32, 40, 64, 76) vymedzuje nepripojený okraj (80) s dĺžkou aspoň 2 mm. 12th Fastening member according to at least one of claims 1 to 11, characterized in that the component (32, 40, 64, 76) defines an unattached edge (80) with a length of at least 2 mm.
- 13Upevňovací člen podľa aspoň jedného z nárokov 1 až 12, vyznačujúci sa tým, že upevňovací člen (22, 36, 58, 72) vymedzuje dva šmykové kanály (66). 13th Fastening member according to at least one of claims 1 to 12, characterized in that the fastening member (22, 36, 58, 72) defines two shear channels (66).
- 14Raz použiteľný absorpčný výrobok, vyznačujúci sa tým, že obsahuje vonkajší povlak (12), telovú vložku (14), absorpčné jadro (16) uložené medzi uvedenou telovou vložkou (14) a uvedeným vonkajším povlakom (12) a upevňovací člen podľa aspoň jedného z nárokov 1 až 13. 14th A disposable absorbent article comprising an outer coating (12), a body insert (14), an absorbent core (16) disposed between said body insert (14) and said outer coating (12), and a fastener according to at least one of claims 1 to 13.
Independent claims8
89 paragraphs in 4 sections, as filed
The present invention relates to a disposable absorbent article with an improved fastener. Specifically, the present invention relates to a disposable absorbent article such as a diaper comprising a fastener with improved ability to attach the absorbent article about the body of the wearer.
BACKGROUND OF THE INVENTION
Disposable absorbent articles are known in the art. Such articles are diapers, elderly incontinence articles and the like, and are typically fastened around the wearer's belt using fasteners. Most commercially available absorbent articles use an adhesive fastener to secure the article around the wearer's belt. Mechanical fasteners, such as hook and loop fasteners, are known in the art for use in conjunction with fasteners for fastening disposable absorbent articles about a user's belt. Such mechanical fasteners have not been widely used in commercial applications. There are many reasons for this. Such mechanical fasteners are typically more expensive than adhesive fixtures. Since absorbent articles are believed to be reusable, such mechanical fasteners have been very expensive.
Efforts have been made to investigate in order to reduce the cost of such mechanical fasteners to make them more suitable for use on fasteners of disposable absorbent articles. Cheaper mechanical fasteners have been developed. Unfortunately, in many cases, these cheap mechanical fasteners are not suitable to provide the level of attachment necessary to securely fasten the disposable absorbent articles around the wearer's belt.
Thus, there is a need to provide fasteners for use on disposable absorbent articles that are arranged or designed to allow the use of cheaper materials for mechanical fasteners that provide an acceptable level of attachment. This is an object of the present invention.
It is an object of the present invention to overcome the above problems.
SUMMARY OF THE INVENTION
The invention solves the problem by providing a fastening member as defined in independent claim 1 and a disposable absorbent article according to independent claim 14.
Other advantages, embodiments, ideas and details of the invention will be apparent from the appended claims, the description and the accompanying drawings. The claims are to be understood as the first non-limiting approach to the definition of the invention in general terms.
In a first aspect, the present invention is directed to a fastening strap. The fastening tape includes a manufacturing binding end that is attached to a disposable absorbent article and a user end. The user's end is adapted to secure the disposable absorbent article to the user's body. The user end of the fastener comprises a mechanical fastener member and is configured to have a separation ratio of at least 1.5: 1.
According to another idea, the present invention relates to a disposable absorbent article. The disposable absorbent article comprises an outer coating, a body lining and an absorbent core positioned between the body lining and the outer lining. The disposable absorbent article further comprises a fastener having a manufacturing bonding end that is attached to the disposable absorbent article and the wearer end. The user's end is adapted to secure the disposable absorbent article to ο
user. The user end comprises a mechanical fastener member and is configured to have a separation ratio of at least 1.5: 1.
According to another idea, the present invention relates to a fastener comprising a manufacturing binding end that is attached to a disposable absorbent article and a user end. The user's end is adapted to secure the disposable absorbent article to the user. The user's end includes a mechanical fastener member and has several branches. The branches define a notch in said mechanical fastener member at least 5 mm deep and an angle in said mechanical fastener member having a size of from 0 ° to 60 °.
According to a further idea of the invention, the invention relates to a fastening member comprising a manufacturing binding end that is attached to a disposable absorbent article and a user end. The user's end is adapted to attach the disposable absorbent article to the user. The user end includes a mechanical fastener member and is cut to define a shear channel in said mechanical fastener member.
BRIEF DESCRIPTION OF THE DRAWINGS
The invention is illustrated in the drawings, wherein FIG. 1 shows a plan view of a partially cut diaper according to the present invention, FIG. 2 is a cross-section along line 2-2 of FIG. 1, FIG. 3 shows one embodiment of a fastener according to the present invention, FIG. 4 shows an alternative embodiment of a fastener according to the present invention, FIG. 5 shows an alternative embodiment of a fastener according to the invention, FIG. 6 shows an alternative embodiment of a fastener according to the present invention; Figure 7 shows an alternative embodiment of a fastener according to the present invention provided with a loop material; 8 shows the fastener shown in FIG. 7 during the separation of the hook material deposited on the fastener from the loop material; FIG. Figure 9 shows an alternative embodiment of a fastener according to the present invention provided with a loop material; 10 shows a cross-section of the fastening member shown in FIG. 9 according to line 10-10 of FIG. 9, FIG. 11 shows an alternative embodiment of a fastener according to the present invention. br. 12 shows an alternative embodiment of a fastener according to the present invention; and FIG. 13 illustrates an alternative embodiment of a fastener according to the present invention.
DETAILED DESCRIPTION OF THE INVENTION
Fig. 1 shows a plan view, partially in section, of a diaper according to the present invention. The diaper 10 comprises an outer coating 12, a body insert 14 and an absorbent core 16 positioned between the outer coating 12 and the body insert 14. The diaper 10 may optionally include a resilient web 18 and a leg resilient member 20. The diaper 10 also includes fastening members 22. The fastening members 22 include a manufacturing binding end 24 attached to the diaper 10 and a user end 26 adapted to secure the diaper 10 around the wearer's belt. Suitable diaper components 10 and arrangements are shown, for example, in U.S. Pat. No. 4,798,603, issued Jan. 17, 1989, U.S. Pat. No. 5,176,668, issued Jan. 5, 1993, U.S. Pat. 5,176,672 issued 5. U.S. Pat. No. 5,192,606, issued Mar. 9, 1993, and U.S. Patent Application Ser. no. No. 08 / 096,654, filed July 22, 1993, and U.S. Patent Application Ser. no. No. 08 / 263,201, filed June 21, 1994.
As used herein, the manufacturing bonding end refers to that portion of the fastener that is attached to the diaper 10 by the diaper manufacturer 10 as part of the diaper 10 manufacturing process. That is, the manufacturing end is generally considered to be permanently attached to the diaper 10.
As used herein, the term user end represents that portion of the fastener that is used by the user to fasten the diaper 10 around the child's waist. The user end of the fastener is generally designed to be re-attachable so that the diaper 10 can be fastened and re-fastened around the user's body using the user end of the fastener. Thus, the connection established by the user end of the fastener is generally unstable.
Methods of binding the fastener 22 to the diaper 10 to define the manufacturing end are known to those skilled in the art. For example, the production binding end may be formed by an adhesive bond, an acoustic bond, a combination of adhesive and acoustic bond, a thermal bond, and the like. As mentioned above, the attachment method used to form the production binding end is generally considered to be stable. As shown in FIG. 2, in the embodiment shown, the fastening member is formed by the first substrate 28. The first substrate 28 is attached to the body insert 14 in the region that forms the manufacturing binding end 24 of the fastener. This bond is generally stable and forms the manufacturing bonding end 24 of the fastening member 22.
The user end 26 of the fastening member 22 includes a mechanical fastener such as the hook material 32 shown in FIG. 1 and 2. The mechanical fastener is a material that has the capability of mechanical engagement with the second mechanical fastener. Examples of such mechanical fasteners are hook or hook-like materials (spongy and the like) in combination with eyelets or eyelet-like materials. It is also possible for the mechanical fasteners to have a similar structure which allows interlocking. In the embodiment shown in FIG. 1 and 2, the hook material 32 is adapted for engagement with the loop material 34 positioned at the longitudinal end of the diaper 10 against the fastening members 22.
A variety of different hook or hook-like materials are known to those skilled in the art. Suitable hook materials are available from Velcro® under the trademarks CFM-15, CFM-22-1097, CFM-22-1121, CFM-22-1162, CFM-25-1003, and CFM-29-1003 as well as materials supplied by Minnesota Mining. and Manufacturing Company, Paul, Minnesota under the brand CS-200. A similarly large variety of ring-like and ring-like materials is known to those skilled in the art. Suitable mesh materials are woven or knitted mesh, for example, supplied by Guilford Mills under brand name 34285, as well as nonwoven mesh materials such as those produced by spunbond, melt and blow or weave processes. Suitable nonwoven suture materials are described, for example, in U.S. Patent Nos. 4,720,415, issued January 19, 1988, No. 5,336,545, issued August 9, 1994, No. 5,226,992, issued July 13, 1993, U.S. Pat. 4,663,220 issued 5. May 1987, and U.S. Patent Application Ser. no. No. 07 / 997,800, filed December 29, 1992. In the illustrated embodiment, the hook material 32 is shown as being positioned on the fastening member 22 while the loop material 34 is located on the outer wrapper 12 of the diaper 10. Alternatively, the loop material may comprise an outer coating 12 of the diaper 10. the coating 12 may comprise a material as described in U.S. patent application Ser. no. 07 / 997,800 referred to above. It is also possible to invert the location of the hook and loop material so that the loop material is located on the fastening members and the hook material is on the outer coating 12 of the diaper 10.
The fastening member 22 is configured to provide a release ratio equal to at least 1.5 L. The release ratio is a ratio of the release voltage of the fastener (in grams per unit of length) to the release voltage (in grams per unit of length) of a rectangular fastener formed from the same. materials, but having a rectangular shape. The method by which the release ratio is determined is described in more detail below in connection with the examples.
Many mechanical fasteners have sufficient shear strength to be commercially suitable for use in disposable absorbent articles. As used herein, shear strength represents the force required to separate the components of a mechanical fastener (such as hook and loop material) when the components of the mechanical fastener are subjected to opposing forces in the plane of joining the components.
Conversely, many components of mechanical fasteners have insufficient tear strength to be suitable for successful commercial use on disposable absorbent articles. As used herein, tear strength means the force required to separate the components of a mechanical fastener (such as hook and loop materials) when one component is subjected to tear force.
The Applicant of the present invention has proposed fastening members having increased tear strength. The Applicant has proposed a change in the design of the fasteners so that during tear-off separation at least one portion of the fastener is placed in a shear condition before the parts are detached. That is, because certain mechanical fasteners tend to be easier to detach (with less force) in the tear-off condition than in the shear condition, the Applicant has proposed a fastener that, when subjected to force in the tear-off condition, is part of the mechanical fastener before separation brought into a skid state.
Typical fasteners use generally rectangular or square pieces of mechanical fasteners attached generally across their entire surface to the substrate of which the fastener is formed. By repositioning the components of the mechanical fastener, the applicant has been able to increase the release voltage of the fastener. This increase in tear strength is given by the release ratio, which will be described in more detail hereinafter in connection with the examples.
The user end of the fastener according to the present invention is shaped to have a release ratio of at least 1.5: 1, optionally at least 2: 1, optionally at least 5: 1, or at least 10: 1, and optionally at least 15:
1.
Fig. 3-13 illustrate fasteners according to the present invention. Fig. 3-6 illustrate multiple fasteners. Fig. 3 shows the user end 36 of the fastener. The user end 36 of the fastening member comprises a first substrate 38 to which the first mechanical member is attached as a hook material 40. The fastening member 36 has a main middle strand 42 and side strands 44 and 46. The arrangement of the middle strand 42 and the side strands 44 and 46 serves to define notches 48 in the mechanical fastener member (hooks 40).
The Applicant has found that forming the notches 48 in the mechanical fastener components as hooks 40 may result in a release ratio of at least 1.5: 1 when the notches 48 in the mechanical fastener component have a depth of at least 5 mm or at least 8 mm at least 15 mm. The side branches 44 and 46 suitably enclose an angle α in said component 40 of the mechanical fastener relative to the midline 52 and the inner surface of said side branches from 0 ° to 60 °. Alternatively, the side branches 44 and 46 form an angle in the mechanical fastener member of from 10 ° to 55 °. By making the mechanical fastener member 40 to form the notches 48 and the angle α above, separating the mechanical fastener member 40 from the mating mechanical fastener member by separating the middle strand 42 in the peel-off condition has caused the side branches 44 and 46 to be slid regardless of the force in a tear-off condition. As mentioned above, this creates a mechanical fastener having a release ratio of 1.5: 1 or greater. Making the alpha angle greater than about 10 ° helps to separate the components of the mechanical fastener.
Fig. 4 shows an alternative embodiment of a fastener according to the present invention. In FIG. 4 are similar parts of the fastener shown in FIG. 3 with the same reference numerals. As shown in FIG. 4, the presence of the slits 48 at the alpha angle and the alpha angle defined in the mechanical fastener member form a fastening member having a release ratio of 1.5 or greater. The notch 48 shown in FIG. 4 including the bottom 54, which is generally perpendicular to the center line 52, increases the release ratio compared to a similar embodiment as shown in FIG. 3, where no bottom 54 in the notch 48 is formed.
Fig. 5 shows a multi-branch fastener as in FIG. 3 a
4th The fastening member of FIG. 5 has three branches, a middle branch 42 and side branches 44 and 46. The reference numerals used in FIG. 5 relate to similar components as described above with respect to FIG. 3 and 4. The angle alpha defined in FIG. 5 is about 20 °, while the alpha angle defined in FIG. 3 is about 10 °.
In FIG. 3, 4 and 5, the middle leg 42, side leg 44, and side leg 46 define a surface area covered by said mechanical fastener member 40. For the purpose of this use, the branch surface area refers to a portion of said branch covered by said mechanical fastener member, said branch being delimited by a line joining the lowest point of the notch 48 with the nearest adjacent notch or, in the case of a fastener comprising a single notch 48, the line tangent to the lowest a point delimited by the notch 48 and perpendicular to the median line 52. Referring to FIG. 5 The line 56 serves to define the surface area of the middle strand 42 and the side strands 44 and 46 that include the surface area of said strands. Specifically, the region of the branches 42, 44 and 46 is covered by the mechanical fastening member 40 and located on the side of the line 56 furthest from the manufacturing binding end of the fastening member forms the surface area of the branches. In the fasteners shown in FIG. 3, 4 and 5, the central branch 42 has a surface area that is at least 50% larger than the surface area of at least one of the side branches 44 or 46. Because the fastening members shown in FIGS. 3-5 are generally symmetrical about the midline 52, the surface area of the middle branch 42 being at least 100% larger, alternatively 200% larger than the surface area of both side branches 44 and 46.
Fig. 6 illustrates a two-branch fastener in which like numerals for like parts are identical to those of FIG. 3 - 5.
Fig. 7 shows an alternative shape of a fastener according to the present invention. According to FIG. 7, the fastening member 58 is shown coupled to the eyelet material 60. The fastening member 58 includes a first substrate 62 to which a hook material 64 is attached. The hook material 64 engages the eyelets of the eyelet material 60. The fastening member 58 defines shear channels 66 formed by complete cutting. the fastening member 58. The shear channels 66 form an angle α with respect to the center line 52 of the fastening member 58. The angle α has a suitable size from 0 ° to 60 °, alternatively from 15 ° to 55 °.
Fig. 8 shows the fastening member 58 of FIG. 7 is subjected to a tear force in the direction of the arrow 68. As shown in FIG. 8, when the top 70 of the fastening member 58 is pulled from the fastening state with the loop material 60, the shear channels 66 allow separation of the hook material 64 so that the hook material 64 located between the shear channels 66 is subjected to tear force of the hook material 64 located on the outside to the middle line 52) of the shear channels 66 and is subjected to tear force and shear forces prior to separation from the loop material 60. As a result, the fastening member 58 has a release ratio greater than 1.5: 1.
Fig. 9 shows an alternative embodiment of a fastener according to the present invention. In FIG. 9, the fastening member 72 comprises a first substrate 74 to which a hook material 76 is attached. The hook material 76 is shown in a state of engagement with the loop material 78. The hook material 76 is attached to the substrate 74 such that the region along the width (perpendicular to the midline) 52) is not attached to the first substrate, thus forming an unattached edge 80 of the hook material 76. The unattached edge 80 is delimited by a line 82, so that a region of the hook material 76 located on the side of the line 82 remote from the factory-bound end of the fastening member 72 is not attached to the first substrate 74. This is best seen in FIG. 10 showing a section along line 10-10 in FIG. 9th Thus, when the edge 84 of the first substrate 74 is subjected to a tear force as indicated by the arrow 86, the unattached edge 80 of the hook material 76 remains retained by the loop material 78 until the first substrate 74 separates from the hook material 76 reaching line 82. The hook material 76 will be subjected to shear and tear forces. Desirably, the unattached edge 80 of the hook material 76 has a length in the direction parallel to the median line 52 of at least 2 mm, preferably at least 6 mm, preferably from 2 mm to 10 mm. Such an arrangement provides a fastening member having a release ratio of 1.5: 1 or greater.
Fig. 11 shows another embodiment of a fastener according to the present invention. The middle branch 42 comprises at its upper end peaks 70. The upper end has a width 94 and the base of said middle branch 42 has a width 96. The branches 44 and 46 have a length 90. The total length of the fastening material along the middle line 52 is marked 92. 46 suitably define an angle alpha with respect to the middle limb 52 and the inner surface of said side limbs 44, 46.
The alpha angle is from 0 ° to 60 °, preferably from 10 ° to 55 °.
Fig. 12 and 13 show an alternative embodiment of a fastener according to the present invention. Again, similar parts of the fastening member described above are provided with the same reference numerals in FIG. 12 and 13.
The measures shown in FIG. 3, 4, 5, 11 and others provide the advantage that the user can grip a single branch or member to shield the fastening tape. This makes it easier to use the fastener from the user's point of view. Generally, the middle branch is clamped for separation.
Many of the embodiments shown in the figures have the advantage that they can be manufactured in a compound arrangement, thereby reducing manufacturing waste and reducing the cost of such a fastener.
Test procedures
Separation ratio
A fastener to be tested is prepared. The fastening member comprises a first component of the mechanical fastening member. The first component of the mechanical fastener (a typical hook material) should have a maximum width of 5.08 cm and a maximum length of 2.54 cm. A sample of the second component of the mechanical fastener to which the first component of the mechanical fastener is connected is also prepared. The sample of the second component of the mechanical fastener (typically loop material) is wider by at least 0.635 cm and at least 15.24 cm longer than the fastener being tested.
The following device is used:
Sintech System 2 testing equipment with a computer data processing system such as the Sintech QAD System, supplied by Sintech Inc., Research Triangle Park, North Carolina. The test equipment shall be equipped with a data processing system capable of determining peak load (maximum load measured in grams achieved between the indicated start and end of the measurement) and three peak loads (mean of the three highest load values measured in grams between initial and final measurements). To determine the three load peaks, the computer starts searching for peaks after determining a load value that is 5% higher than the first minimum value. During peak search, the computer searches for the maximum load value preceding the 5% load reduction from the specified maximum load value. This is identified as a vertex. The computer then looks for the minimum value preceding the 5% load increase from the specified minimum value and identifies that value as the new minimum load value. After a 5% increase in load above this new minimum load, the search for another peak will begin. This procedure continues until the end of the measurement is reached.
The rubber-coated cylinder weighs 2.04 kg, supplied by Chemsultants International, Mentor, Ohio under the designation Item 6.2.
All tests shall be carried out in a normal laboratory environment at a temperature of 23 ° C ± 2 ° C and 50% ± 5% relative humidity.
Test procedure
The other part of the mechanical fastener (typically loop material) is fixed to a hard hard surface, for example by clamping one end of the material with the clamp, smoothing the material along the clamp surface, and clamping the other end of the material with a clamp as supplied by Publix Supplies . 11,240th The first component of the mechanical fastener to be tested is then reduced to the second component of the mechanical fastener so that the first component of the mechanical fastener is fully engaged with the second component of the mechanical fastener in a manner similar to using an absorbent article on which the fastener is used. The mechanical fastener members are connected by rolling a 2.04 kg roller through the mechanical fastener members and back. It shall be ensured that only the cylinder, with a mass of 2,04 kg, is applied to the components of the mechanical fastener and no additional load is transmitted from the cylinder handle to the test person. The 2.04 kg roller rolls across the test sample with the width dimension of the first component of the mechanical fastener.
The joined fastener is then released from the top. The voltage test equipment shall have the following test parameters:
cross head speed 500 mm / min.
sample length 125 mm grams load unit maximum load 5,000 g (sets the load range so that the values are between 20% and 80% of the maximum load measurement start)
2.54 mm end measurement of the sensitivity to fracture criterion peak elongation limit
63.5 mm
110%
5%
69.85 mm
The peak value and the three peak mean values for tear-off shall be obtained between the beginning of the measurement and the end of the measurement.
The measurement start and end values depend on the size of the area in which the first and second components of the mechanical fastener are in contact with each other. The above values were selected for a hook material with a width
12.7 mm (first component of the mechanical fastener).
During the test, the fastener is detached from the material to which it is attached in the direction in which the fastener would normally be detached during use. The end of the portion of the user end of the fastening member opposite the factory bound end is clamped in the upper jaw of the voltage testing machine. If the fastener has two branches, only one branch is clamped in the upper jaw. If the fastener has three branches, the middle or longest branch is clamped in the jaw. The second component of the mechanical fastener (loop material), located below the user end of the fastener in the direction away from the manufacturing end of the fastener, is clamped in the lower jaw of the voltage testing machine. The cross head is set in motion. The data processing system records peak load and mean value of the three largest peaks. Six identical samples are tested and the mean of the three mean peaks for six samples is determined. This mean value shall be normalized by calculating grams per unit of length based on the width of the first component of the mechanical fastener to determine the test value.
To determine the separation ratio, the above test is repeated with a control composition using the same second component of the mechanical fastener as in the above test procedure. The same first component of the mechanical fastener is also tested except that the first component of the mechanical fastener is in the form of a rectangle 44.4 mm wide and 12.7 mm long. The first mechanical fastener member rectangle is glued and ultrasonically bonded to the nonwoven substrate so that the entire surface of the first mechanical fastener member is adhered to the substrate and the 12 mm substrate is laid off one edge of the first mechanical fastener member and at least 50 mm of the substrate is beneath the second edge. mechanical fastener members. In this way, the fastening member is formed. A suitable adhesive is available from Findley Adhesive under the brand H-2096. A suitable nonwoven substrate is the laminate disclosed in U.S. Pat. No. 5,226,902, issued July 13, 1993. The laminate used comprises three layers. The two outer layers are spunbonded polypropylene layers, with a basis weight of 24.1 g per 0.84 m<sup>2</sup> and consist of 2-3 denier fibers. The middle layer is an elastomeric film with a thickness of 0.0381 mm to 0.0508 mm of Kraton ® M G2755, a polymer resin supplied by Shell Chemical Company.
The first and second components of the mechanical fastener are then retained as described above using a 2.04 kg roller. The tear strength of the rectangular member of the mechanical fastener is then determined as described above. This test is repeated six times using new materials for each test to determine the mean of the three peel strength peaks for n = 6. This number is then normalized by dividing the 44.45 mm width of the first component of the mechanical fastener to obtain a control value.
The test value and the control value are then used to calculate the separation ratio according to the formula:
Test value
Control value
This test is similar to the American Society for Testing and Materials Test Designation D5170-91 Tear Strength (T - Method for Hook and Eye Touch Fasteners).
Examples
In the following examples, a hook material supplied by Minnesota Mining and Manufacturing Company, St. Petersburg, is used. Paul, Minnesota under the brand CS-200. The mesh material used is a knitted mesh material supplied by Guilford Mills, Inc. Six different fasteners have been proposed using the above materials. The hook material is bonded by gluing and ultrasound (about 6.25% of the joining area) to a laminate material with a basis weight of about 0.138 kg per 1,000 (described above in the Test Procedures section). The glue used is applied to CS-200. When the CS-200 material is not glued, 3M double-sided tape (948y) can be used. These fasteners were prepared.
Fastener 1 - This fastener has the arrangement generally shown in FIG. 11, wherein the dimension 90 is 13 mm, the dimension 92 is 20 mm, the dimension 94 is 23 mm, the dimension 96 is 17 mm, the dimension 98 is 45 mm, and the alpha angle is about 45 °.
Fastening member 2 - a fastening member having the general arrangement shown in FIG. 7 and 8, wherein the width of the hook material 64 (in a direction generally perpendicular to the median line 52) is 45 mm, the length of the hook material 64 (in a direction generally parallel to the median line 52) is 13 mm, and the shear channel 66 defines an alpha angle of 30 °. The distance between the apex 70 and the adjacent edge of the hook material 64 is about 13 mm.
Fastener 3 - The fastener is made with the general arrangement shown in FIG. 6, wherein the hook material 40 has a width of about 45 mm, a length of about 13 mm, and defines a notch 48 having a depth 50 equal to 5 mm. The fastening member defines an alpha angle of about 20 °. The ends of the branches not covered with the hook material 40 have a length of about 13 mm.
For the fastening members 4 and 5, the hook material is glued to a spunbond material weighing 34.0 kg per 1,000 m 2, which is then glued to the laminate material. The hook material, the spunbond material and the laminate material are then bonded to each other by ultrasound (about 6.25% of the bonded area).
Fastener 4 - The fastener is provided in the general configuration shown in FIG. 9 and 10. The hook material 76 has a width of 45 mm, a length of 13 mm, and an unattached edge 80 having a length of 10 mm. The distance between the edge 84 and the line 82 is 23 mm.
Fastening member 5 - the fastening member is formed identically to the fastening member 4 except that the unattached edge 80 with a length of 5 mm and a distance between the edge 84 and the line 82 is 18 mm.
Control fastener - a fastener made of the same materials as described above was prepared. The hook material has a width of 44.45 mm and a length of 12.7 mm. The hook material is glued to a spinning material weighing 34.0 g per 1,000 m 2, which is then glued to a rectangular piece of laminate material described above having a width of 44.45 mm and a length of 85 mm. The hook material, the spunbond material and the laminate material are then ultrasonically bonded to each other (about 6.28% of the bonded area). A 13 mm laminate material is placed outside one edge of the hook material to define the finger member. The hook material is adhered to the laminate material over its entire surface.
The aforementioned fasteners were subjected to the tests described above to determine their separation ratio (the individual fasteners 1 to 1 have been compared to the control fastener). The test results are shown in Table 1.
table
<td>Fastening member</td><td>3 vrch. p. tearing (g '</td><td>Standard, deviation</td><td>Norm. tearing down</td><td>Pomer2</td>
<td> 1</td><td> 1389.3</td><td> 413.2</td><td>31.26 (793. J)</td><td> 8.4</td>
<td> 2</td><td> 1602.4</td><td> 207.4</td><td> 36.05 (915.7)</td><td> 9.6</td>
<td> 3</td><td> 580.6</td><td> 295.3</td><td> 13.06 (331.8)</td><td> 3.5</td>
<td> 4</td><td> 3008.8</td><td> 412.6</td><td> 67.69 (1719.3)</td><td> 18.1</td>
<td> 5</td><td> 2087.8</td><td> 212.4</td><td> 46.97 (1193.0)</td><td> 12.6</td>
<td>control</td><td> 166.3</td><td> 73.1</td><td> 3.74 (95)</td><td> 1</td>
* Tests were performed at ambient temperature and humidity (25 ° C, relative humidity less than 50%) in grams per mm separation ratio
As can be seen from the above data, the fastener designs described herein have a separation ratio greater than 1.5: 1.
Although the present invention has been described in detail, it will be apparent to those skilled in the art that various changes and variations can be made without departing from the spirit of the invention. All such changes and variations are within the scope of the present invention defined by the appended claims.
Contents4
139 members in 28 offices
Priority claims6
| Document | Office | Kind | Date |
|---|---|---|---|
| 36239494 | United States of America | A | |
| 9516175 | United States of America | W | |
| 362394 | – | – | – |
| PCTUS9516175 | – | – | – |
| US19940362394 | – | – | – |
| WO1995US16175 | – | – | – |
Members139
| Document | Office | Kind | |
|---|---|---|---|
| CA2005230A1 | Canada | A1 | |
| EP0374730A2 | European Patent Office (EPO) | A2 | |
| AU4675589A | Australia | A | |
| KR900008991A | Republic of Korea | A | |
| ZA899583B | South Africa | B | |
| EP0374730A3 | European Patent Office (EPO) | A3 | |
| MX9102226A | Mexico | A | |
| AU8888591A | Australia | A | |
| CA2053110A1 | Canada | A1 | |
| EP0491347A1 | European Patent Office (EPO) | A1 | |
| AU626174B2 | Australia | B2 | |
| KR920011452A | Republic of Korea | A | |
| BR9105301A | Brazil | A | |
| ZA919004B | South Africa | B | |
| AU1966492A | Australia | A | |
| JPH04276251A | Japan | A | |
| US5176671A | United States of America | A | |
| EP0548050A2 | European Patent Office (EPO) | A2 | |
| AU643391B2 | Australia | B2 | |
| AU4747693A | Australia | A | |
| AU4747793A | Australia | A | |
| AU647215B2 | Australia | B2 | |
| EP0374730B1 | European Patent Office (EPO) | B1 | |
| EP0548050A3 | European Patent Office (EPO) | A3 | |
| AT103795T | Austria | T | |
| ATE103795T1 | Austria | T1 | |
| DE68914422D1 | Germany | D1 | |
| US5318555A | United States of America | A | |
| ES2051975T3 | Spain | T3 | |
| DE68914422T2 | Germany | T2 | |
| GB9416606D0 | United Kingdom | D0 | |
| AU654092B2 | Australia | B2 | |
| UY23820A1 | Uruguay | A1 | |
| CA2119478A1 | Canada | A1 | |
| GB2281100A | United Kingdom | A | |
| CA2169730A1 | Canada | A1 | |
| WO9505140A1 | World Intellectual Property Organization (WIPO) | A1 | |
| FR2709046A1 | France | A1 | |
| ZA945203B | South Africa | B | |
| AU7560494A | Australia | A | |
| US5403302A | United States of America | A | |
| MY106789A | Malaysia | A | |
| CA2144795A1 | Canada | A1 | |
| EP0674315A1 | European Patent Office (EPO) | A1 | |
| TW262381B | Taiwan Province of China | B | |
| FR2709046B1 | France | B1 | |
| CA2149068A1 | Canada | A1 | |
| KR950034155A | Republic of Korea | A | |
| EP0689362A2 | European Patent Office (EPO) | A2 | |
| JPH086182A | Japan | A | |
| JPH0823530A | Japan | A | |
| GB9526404D0 | United Kingdom | D0 | |
| AU666765B2 | Australia | B2 | |
| SV1994000034A | El Salvador | A | |
| EP0704197A2 | European Patent Office (EPO) | A2 | |
| EP0704197A3 | European Patent Office (EPO) | A3 | |
| EP0714273A1 | European Patent Office (EPO) | A1 | |
| UY24122A1 | Uruguay | A1 | |
| EP0689362A3 | European Patent Office (EPO) | A3 | |
| GB2296179A | United Kingdom | A | |
| CA2208886A1 | Canada | A1 | |
| WO9619174A1 | World Intellectual Property Organization (WIPO) | A1 | |
| FR2728461A1 | France | A1 | |
| ZA9510698B | South Africa | B | |
| AU4598296A | Australia | A | |
| TR199501668A2 | Türkiye | A2 | |
| SV1995000090A | El Salvador | A | |
| CN1132472A | China | A | |
| BR9407353A | Brazil | A | |
| GB9619225D0 | United Kingdom | D0 | |
| TR28708A | Türkiye | A | |
| JPH09501590A | Japan | A | |
| EP0491347B1 | European Patent Office (EPO) | B1 | |
| US5608839A | United States of America | A | |
| DE69124787D1 | Germany | D1 | |
| ES2098307T3 | Spain | T3 | |
| PE15597A1 | Peru | A1 | |
| AR000373A1 | Argentina | A1 | |
| US5656111A | United States of America | A | |
| US5660666A | United States of America | A | |
| EP0548050B1 | European Patent Office (EPO) | B1 | |
| DE69124787T2 | Germany | T2 | |
| AT157239T | Austria | T | |
| ATE157239T1 | Austria | T1 | |
| GB2311096A | United Kingdom | A | |
| DE68928282D1 | Germany | D1 | |
| EP0799008A1 | European Patent Office (EPO) | A1 | |
| GB2296179B | United Kingdom | B | |
| MX9704706A | Mexico | A | |
| CZ195597A3 | Czechia | A3 | |
| ES2108148T3 | Spain | T3 | |
| PL321857A1 | Poland | A1 | |
| DE68928282T2 | Germany | T2 | |
| FR2728461B1 | France | B1 | |
| SK78497A3This record | Slovakia | A3 | |
| CN1175204A | China | A | |
| GB2281100B | United Kingdom | B | |
| GB2311096B | United Kingdom | B | |
| AU687867B2 | Australia | B2 | |
| CA2005230C | Canada | C |
Numbers
- Publication, DOCDB
- 78497
- Publication, EPODOC
- SK78497
- Application
- 78497
- Application, DOCDB
- 78497
- Application, EPODOC
- SK19970000784
Titles
- English
- FASTENING TAB
Classification
- CPC, 1
- A61F13/622
- IPC, 5
- A61F13 49
- A61F5 44
- A61F13 15
- A61F13 56
- A61F13 62