Claims
- 1. A method for producing a composite web, the method comprising:
providing a forming tool comprising an exterior surface that comprises one or more depressions formed therein; delivering a molten thermoplastic composition onto the exterior surface of the forming tool; maintaining the exterior surface of the forming tool at a roll temperature that is below a melt processing temperature of the thermoplastic composition; wiping the molten thermoplastic composition on the exterior surface of the forming tool, wherein at least some of the molten thermoplastic composition enters the one or more depressions; transferring the thermoplastic composition in the one or more depressions to a substrate by contacting a first major surface of the substrate to the thermoplastic composition in the one or more depressions; and separating the substrate and the thermoplastic composition in the one or more depressions from the forming tool after the transferring, wherein a composite web is formed that comprises one or more polymeric structures of the thermoplastic composition located on the first major surface of the substrate, wherein the area occupied by at least one polymeric structure of the one or more polymeric structures comprises a bonded area in which the thermoplastic composition of the polymeric structure is attached to the first major surface of the substrate and at least one detached area in which the polymeric structure is not attached to the first major surface of the substrate.
- 2. A method according to claim 1, wherein the at least one detached area comprises a stem comprising a free end supported above the first major surface of the substrate, wherein the free end is adapted to engage fibers of a loop material.
- 3. A method according to claim 1, wherein a portion of the thermoplastic composition in the one or more depressions that is distal from surfaces of the one or more depressions remains at or above the melt processing temperature at least until the thermoplastic composition in the one or more depressions contacts the first major surface of the substrate.
- 4. A method according to claim 3, wherein a portion of the thermoplastic composition in the one or more depressions that is distal from surfaces of the one or more depressions falls below the melt processing temperature after the depositing and before contacting the first major surface of the substrate.
- 5. A method according to claim 1, further comprising deforming the detached areas on the one or more polymeric structures after separating the substrate from the forming tool
- 6. A method according to claim 5, wherein the detached areas are not aligned with the first major surface of the substrate after the deforming.
- 7. A method according to claim 1, wherein a portion of the thermoplastic composition in the one or more depressions that is proximate surfaces of the one or more depressions falls below the melt processing temperature of the thermoplastic composition after the depositing and before the thermoplastic composition in the one or more depressions contacts the first major surface of the substrate.
- 8. A method according to claim 1, wherein the roll temperature is 20 degrees Celsius or more below a molten thermoplastic composition temperature at which the molten thermoplastic composition is delivered to the exterior surface of the forming tool.
- 9. A method according to claim 1, wherein delivering the molten thermoplastic composition onto the exterior surface of the forming tool comprises extruding the molten thermoplastic composition into an interface between the exterior surface of the forming tool and a doctor blade.
- 10. A method according to claim 1, wherein delivering the molten thermoplastic composition onto the exterior surface of the forming tool comprises extruding the molten thermoplastic composition onto a doctor blade, wherein the molten thermoplastic composition flows down a surface of the doctor blade to an interface between the doctor blade and the exterior surface of the roll.
- 11. A method according to claim 1, wherein the first major surface of the substrate comprises a porous surface, and wherein the transferring further comprises forcing a portion of the first major surface of the substrate against the thermoplastic composition in the one or more depressions, wherein a portion of the thermoplastic composition in at least some depressions of the one or more depressions infiltrates the porous surface.
- 12. A method according to claim 1, wherein the first major surface of the substrate comprises fibers, and further wherein the transferring further comprises encapsulating at least a portion of at least some of the fibers in the thermoplastic composition in the one or more depressions by forcing the first major surface of the substrate against the thermoplastic composition in the one or more depressions.
- 13. A method according to claim 1, wherein the substrate comprises polymeric material with a melt processing temperature at or below the melt processing temperature of the thermoplastic composition in the one or more depressions.
- 14. A method according to claim 1, wherein the thermoplastic composition comprises one or more elastomeric polymeric components such that the one or more polymeric structures on the substrate exhibit elastic behavior.
- 15. A method according to claim 1, wherein the thermoplastic composition comprises one or more elastomeric polymeric components such that the one or more polymeric structures on the substrate exhibit elastic behavior, and wherein the method further comprises stretching the composite web with the one or more polymeric structures located thereon such that the substrate exhibits permanent elongation after the stretching.
- 16. A method according to claim 1, wherein the thermoplastic composition comprises one or more elastomeric polymeric components such that the one or more polymeric structures on the substrate exhibit elastic behavior, and wherein the substrate comprises an elastic substrate, and further wherein the method comprises stretching the elastic substrate before contacting the first major surface of the web with the thermoplastic composition in the one or more depressions.
- 17. A method according to claim 1, wherein depositing the molten thermoplastic composition on the exterior surface of the forming tool comprises depositing two or more different molten thermoplastic compositions on the exterior surface of the forming tool.
- 18. A method according to claim 1, wherein at least some of the one or more depressions comprise cavities formed therein, wherein the one or more polymeric structures formed by the one or more depressions comprise surface features located on an upper surface thereof.
- 19. A method for producing a composite web, the method comprising:
providing a forming tool comprising an exterior surface that comprises one or more depressions formed therein; delivering a molten thermoplastic composition onto the exterior surface of the forming tool; maintaining the exterior surface of the forming tool at a roll temperature that is below a melt processing temperature of the thermoplastic composition; wiping the molten thermoplastic composition on the exterior surface of the forming tool, wherein at least some of the molten thermoplastic composition enters the one or more depressions; transferring the thermoplastic composition in the one or more depressions to a substrate by contacting a first major surface of the substrate to the thermoplastic composition in the one or more depressions; and separating the substrate and the thermoplastic composition in the one or more depressions from the forming tool after the transferring, wherein a first portion of the thermoplastic composition in the one or more depressions that is distal from the surfaces of the one or more depressions remains at or above the melt processing temperature of the thermoplastic composition at least until the thermoplastic composition in the one or more depressions contacts the first major surface of the substrate, and wherein a second portion of the thermoplastic composition in the one or more depressions that is distal from surfaces of the one or more depressions falls below the melt processing temperature after the depositing and before contacting the first major surface of the substrate, and further wherein a composite web is formed that comprises one or more polymeric structures of the thermoplastic composition located on the first major surface of the substrate, wherein the area occupied by at least one polymeric structure of the one or more polymeric structures comprises a bonded area attached to the first major surface of the substrate and a detached area that is not bonded to the first major surface of the substrate, wherein the bonded area comprises the first portion of the thermoplastic composition and the detached area comprises the second portion of the thermoplastic composition, and wherein the detached area comprises a stem comprising a free end supported above the first major surface of the substrate, wherein the free end is adapted to engage fibers of a loop material.
- 20. A composite web comprising:
a substrate comprising a first major surface; and one or more polymeric structures of a thermoplastic composition attached to the first major surface of the substrate; wherein each polymeric structure of the one or more polymeric structures occupies an area of the first major surface of the substrate; and wherein the area occupied by at least one polymeric structure of the one or more polymeric structures comprises a bonded area in which the thermoplastic composition of the polymeric structure is attached to the first major surface and at least one detached area in which the polymeric structure is not attached to the first major surface of the substrate, and further wherein, in the detached area, the at least one polymeric structure is cantilevered over and aligned with the first major surface of the substrate.
- 21. A composite web according to claim 20, wherein the detached area comprises a stem comprising a free end supported above the first major surface of the substrate, wherein the free end is adapted to engage fibers of a loop material.
- 22. A composite web according to claim 20, wherein the first major surface of the substrate comprises a porous first major surface, and wherein the thermoplastic composition of the polymeric structure infiltrates the porous first major surface within the bonded area.
- 23. A composite web according to claim 20, wherein the first major surface of the substrate comprises polymeric material with a melt processing temperature at or below a melt processing temperature of the thermoplastic composition of the one or more polymeric structures.
- 24. A composite web according to claim 20, wherein the first major surface of the substrate comprises a polymeric film with a melt processing temperature at or below a melt processing temperature of the thermoplastic composition of the one or more polymeric structures.
- 25. A composite web according to claim 20, wherein the first major surface of the substrate comprises polymeric fibers with a melt processing temperature at or below a melt processing temperature of the thermoplastic composition of the one or more polymeric structures.
- 26. A composite web according to claim 20, wherein the first major surface of the substrate comprises fibers, and further wherein at least a portion of at least some of the fibers are encapsulated in the thermoplastic composition within the bonded area.
- 27. A composite web according to claim 20, wherein the thermoplastic composition of the one or more polymeric structures comprises one or more elastomeric polymeric components such that the one or more polymeric structures exhibit elastic behavior.
- 28. A composite web according to claim 20, wherein at least one of the one or more polymeric structures comprises an upper surface facing away from the first major surface of the substrate, and wherein the upper surface comprises surface features formed thereon.
- 29. A composite web according to claim 20, wherein at least one of the one or more polymeric structures comprises an upper surface facing away from the first major surface of the substrate, and wherein the upper surface comprises stems protruding therefrom.
- 30. A composite web according to claim 20, wherein the detached area comprises a barb.
- 31. A composite web according to claim 20, wherein each of the detached areas comprises a stem comprising a free end supported above the first major surface of the substrate, wherein the free end is adapted to engage fibers of a loop material.
- 32. A composite web according to claim 31, wherein each of the detached areas comprises a barb.
- 33. A composite web according to claim 20, wherein the first major surface of the substrate comprises one or more raised portions and surrounding valleys, wherein the bonded area of the at least one of the one or more polymeric structures is attached to one of the one or more raised portions.
- 34. A composite web comprising:
a substrate comprising a first major surface; and one or more polymeric structures of a thermoplastic composition attached to the first major surface of the substrate; wherein each polymeric structure of the one or more polymeric structures occupies an area of the first major surface of the substrate; and wherein the area occupied by at least one polymeric structure of the one or more polymeric structures comprises a bonded area in which the thermoplastic composition of the polymeric structure is attached to the first major surface and three or more distinct detached areas extending from the bonded area, wherein the three or more distinct detached areas are cantilevered over but not attached to the first major surface of the substrate.
- 35. A composite web according to claim 34, wherein each of the distinct detached areas comprises a stem comprising a free end supported above the first major surface of the substrate, wherein the free end is adapted to engage fibers of a loop material.
- 36. A composite web according to claim 34, wherein the first major surface of the substrate comprises polymeric material with a melt processing temperature at or below a melt processing temperature of the thermoplastic composition of the one or more polymeric structures.
- 37. A composite web according to claim 36, wherein the polymeric material comprises polymeric film.
- 38. A composite web according to claim 34, wherein the first major surface of the substrate comprises a porous surface, and wherein the thermoplastic composition in the bonded areas of the one or more polymeric structures infiltrates into the porous first major surface of the substrate.
- 39. A composite web according to claim 34, wherein the first major surface of the substrate comprises polymeric fibers with a melt processing temperature at or below a melt processing temperature of the thermoplastic composition of the one or more polymeric structures.
- 40. A composite web according to claim 34, wherein the first major surface of the substrate comprises fibers, and further wherein at least a portion of at least some of the fibers are encapsulated in the thermoplastic composition within the bonded area.
- 41. A composite web according to claim 34, wherein the thermoplastic composition of the one or more polymeric structures comprises one or more elastomeric polymeric components such that the one or more polymeric structures exhibit elastic behavior.
- 42. A composite web according to claim 34, wherein at least one of the distinct detached areas comprises a barb.
- 43. A composite web according to claim 34, wherein the first major surface of the substrate comprises one or more raised portions and surrounding valleys, wherein the bonded area of the at least one of the one or more polymeric structures is attached to one of the one or more raised portions.
- 44. A closure system comprising:
a first closure element comprising a thermoplastic polymeric structure attached to a first major surface of a first substrate, wherein the first closure element occupies an area of the first major surface of the first substrate, wherein the area occupied by the first closure element comprises a bonded area in which the thermoplastic polymeric structure is attached to the first major surface of the first substrate and a detached area in which the thermoplastic polymeric structure is not attached to the first major surface of the first substrate, wherein a portion of the thermoplastic polymeric structure in the detached area comprises a first cantilevered tab supported above the first major surface of the first substrate; and wherein the bonded area of the first closure element, the cantilevered tab of the first closure element, and the first major surface of the first substrate form a first pocket; and a second closure element comprising a thermoplastic polymeric structure attached to a first major surface of a second substrate, wherein the second closure element occupies an area of the first major surface of the second substrate, wherein the area occupied by the second closure element comprises a bonded area in which the thermoplastic polymeric structure is attached to the first major surface of the second substrate and a detached area in which the thermoplastic polymeric structure is not attached to the first major surface of the second substrate, wherein a portion of the thermoplastic polymeric structure in the detached area comprises a second cantilevered tab supported above the first major surface of the second substrate, and wherein the bonded area of the second closure element, the cantilevered tab of the second closure element, and the first major surface of the second substrate form a second pocket; wherein the cantilevered tab of the first closure element is located in the second pocket and the cantilevered tab of the second closure element is located in the first pocket when the closure system is in a closed configuration.
- 45. A closure system according to claim 44, wherein the bonded area of the thermoplastic polymeric structure of the first closure element comprises a U-shaped bonded area, and wherein at least a portion of the cantilevered tab of the second closure element is located within the U-shaped bonded area when the closure system is in the closed configuration.
- 46. A closure system according to claim 44, wherein the bonded area of the thermoplastic polymeric structure of the first closure element comprises a U-shaped bonded area, and wherein at least a portion of the cantilevered tab of the second closure element is located within the U-shaped bonded area of the first closure element when the closure system is in the closed configuration;
and wherein the bonded area of the thermoplastic polymeric structure of the second closure element comprises a U-shaped bonded area, and wherein at least a portion of the cantilevered tab of the first closure element is located within the U-shaped bonded area of the second closure element when the closure system is in the closed configuration.
- 47. A closure system comprising:
a substrate comprising a first major surface and one or more polymeric structures attached to the first major surface of the substrate, wherein each polymeric structure of the one or more polymeric structures occupies an area of the first major surface of the substrate, and wherein the area occupied by at least one polymeric structure of the one or more polymeric structures comprises a bonded area in which the thermoplastic composition of the polymeric structure is attached to the first major surface and at least one detached area in which the polymeric structure is not attached to the first major surface of the substrate, and further wherein, in the detached area, the at least one polymeric structure is cantilevered over and aligned with the first major surface of the substrate; and a complementary surface comprising one or more openings capable of receiving the detached areas of the one or more polymeric structures; wherein in a closed configuration, the first major surface of the substrate faces the complementary surface, and further wherein the at least one detached area of the at least one polymeric structure is located within the one or more openings of the complementary surface such that movement of the complementary surface and the substrate relative to each other is restricted.
- 48. A closure system according to claim 47, wherein the one or more openings of the complementary surface comprise fiber loops.
- 49. A closure system according to claim 47, wherein the at least one detached area comprises a stem comprising a free end supported above the first major surface of the substrate, wherein the free end is located within one opening of the one or more openings of the complementary surface when the closure system is in the closed configuration.
- 50. A closure system according to claim 47, wherein the at least one detached area comprises a barb.
- 51. A closure system comprising:
a substrate comprising a first major surface and one or more polymeric structures attached to the first major surface of the substrate, wherein each polymeric structure of the one or more polymeric structures occupies an area of the first major surface of the substrate, and wherein the area occupied by at least one polymeric structure of the one or more polymeric structures comprises a bonded area in which the thermoplastic composition of the polymeric structure is attached to the first major surface and three or more distinct detached areas extending from the bonded area in which the polymeric structure is not attached to the first major surface of the substrate, and further wherein, in the three or more distinct detached areas, the at least one polymeric structure is cantilevered over the first major surface of the substrate; and a complementary surface comprising one or more openings capable of receiving the distinct detached areas of the one or more polymeric structures; wherein in a closed configuration, the first major surface of the substrate faces the complementary surface, and further wherein at least one of the distinct detached areas of the at least one polymeric structure is located within the one or more openings of the complementary surface such that movement of the complementary surface and the substrate relative to each other is restricted.
- 52. A closure system according to claim 51, wherein the one or more openings of the complementary surface comprise fiber loops.
- 53. A closure system according to claim 51, wherein each of the distinct detached areas comprises a stem comprising a free end supported above the first major surface of the substrate, wherein the free end of at least one distinct detached area is located within one opening of the one or more openings of the complementary surface when the closure system is in the closed configuration.
RELATED APPLICATION
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 10/387,699, filed Mar. 13, 2003, which is incorporated herein by reference in its entirety.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10387699 |
Mar 2003 |
US |
Child |
10744141 |
Dec 2003 |
US |