MLchartDataset catalogue

Patent · US9358752B2 · B2 · US

In-line shear resistant nonwoven textiles comprised of selectively slit and embossed film

(11) Publication number
US9358752B2
(21) Application number
14/408,844
(22) Filing date
2013-06-18
(30) Priority date
2012-06-18
(43) Publication date
2016-06-07
(45) Date of grant
2016-06-07
(51) IPC
B32B 3/26; B32B 3/30; B32B 5/02; B32B 7/08; D06C 15/00; D06C 23/04; B32B 27/12; B32B 27/28; B32B 27/32; B32B 27/34; B32B 27/36; B32B 3/02; B32B 3/24; B32B 3/28; B32B 5/14; B32B 7/04; B32B 7/06
(52) CPC
  • B32B Layered products, i.e. products built-up of strata of flat or non-flat, e.g. cellular or honeycomb, form: 3/30, 2250/02, 2250/20, 2262/0253, 2262/0261, 2262/0276, 2262/0284, 2307/50, 2307/542, 2307/552, 2307/581, 2433/00, 27/12, 27/285, 27/286, 27/288, 27/32, 27/34, 27/36, 3/02, 3/266, 3/28, 5/022, 5/142, 5/147, 7/045, 7/05, 7/06, 7/08
  • D06C Finishing, dressing, tentering or stretching textile fabrics: 15/00, 23/04
  • Y10T Technical subjects covered by former us classification: 428/15
(73) Assignee
Astenjohnson, Inc.
(72) Inventors
Allan R. Manninen
(54) Title
In-line shear resistant nonwoven textiles comprised of selectively slit and embossed film
(57) Abstract

A nonwoven industrial textile for conveying in an industrial process, seaming elements and methods of manufacture. The textile comprises at least first and second layers of film. Each layer comprises protrusions separated by land areas and each defining an aperture for a flow path through the layer. For at least one of the layers, the protrusions comprise a first set having first and second ends integral with contiguous land areas, and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from a detached free end; and a weakened end portion integral with but detachable from a contiguous land area in response to strain. The construction allows for relative movement of the layers during travel over machine components such as rolls, reducing internal strain and risk of delamination.

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Claims (20)

  1. A nonwoven industrial textile for conveying in an industrial process, the industrial textile comprising at least a first layer and a second layer of film, each layer having an upper surface and a lower surface, wherein (i) each layer comprises a plurality of protrusions separated by land areas and each defining an aperture extending from the upper surface to the lower surface, and (ii) for at least one of the first layer and the second layer, the plurality of protrusions comprises a first set of protrusions having first and second ends integral with contiguous land areas and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from (a) a detached free end; and (b) a weakened end portion integral with but constructed and arranged to be detachable from a contiguous land area in response to strain.
  2. A nonwoven industrial textile according to claim 1, wherein each of the first layer and second layer comprises protrusions of the second set.
  3. A nonwoven industrial textile according to claim 1, wherein each of the first layer and the second layer comprises protrusions of the first set having the same configuration on each layer.
  4. A nonwoven industrial textile according to claim 1, wherein for each layer having protrusions of the second set, the protrusions of the second set comprise at least 25% of a total of the protrusions on that layer.
  5. A nonwoven industrial textile according to claim 4, wherein for each layer having protrusions of the second set, a ratio of the number of protrusions of the second set to the number of protrusions of the first set is 1:3.
  6. A nonwoven industrial textile according to claim 1, wherein each of the protrusions of the first set has a body comprising a top member having opposed first and second lateral edges and is supported by opposed compression resistant first and second end walls, at least one of the lateral edges cooperating with the end walls to define an aperture extending from the upper surface to the lower surface, each end wall having a base edge connected to an adjacent land area and having a configuration selected from at least one of (a) the base edge being convexly curved away from the protrusion body; and (b) each end wall extending below at least a part of each of the first and second lateral edges and being connected to each of the first and second lateral edges.
  7. A nonwoven industrial textile according to claim 1, wherein the protrusions of the second set are secured to land areas on the opposing one of the first and second layer.
  8. A nonwoven industrial textile according to claim 7, wherein the protrusions of the second set are welded to land areas on the opposing one of the first and second layer.
  9. A nonwoven industrial textile according to claim 1, constructed of a thermoplastic polymer material, selected from polyethylene terephthalate (PET), polybutylene terephthalate (PBT), polyethylene naphthalate (PEN), polycyclohexane dimethanol terephtalate (PCTA), polypropylene (PP), a polyamide, a polyolefin, polyphenylene sulphide (PPS) and polyether ether ketone (PEEK).
  10. A nonwoven industrial textile according to claim 9, wherein the material is bi-axially oriented and hydrolysis stabilized.
  11. A nonwoven industrial textile according to claim 1, constructed of an oriented multi-layer polymer film comprising at least two thermoplastic polymeric layers, wherein at least one of the layers includes a radiation absorbent material to provide a weldable outer surface of the polymer material and at least one of the layers permits through transmission of laser energy.
  12. A nonwoven industrial textile according to claim 1, further comprising a textile body having a first seamable end and a second seamable end, a first seaming element provided at the first seamable end and a second seaming element provided at the second seamable end, wherein the first and second seaming elements are constructed and arranged to be secured together to form a seam.
  13. A nonwoven industrial textile according to claim 12, wherein each of the first and second seaming elements comprises at least a first layer and a second layer of film, each layer having an upper surface and a lower surface, wherein (i) each layer comprises a plurality of protrusions separated by land areas and each defining an aperture extending from the upper surface to the lower surface, and (ii) for at least one of the first layer and the second layer, the plurality of protrusions comprises a first set of protrusions having first and second ends integral with contiguous land areas and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from (a) a detached free end; and (b) a weakened end portion integral with but constructed and arranged to be detachable from a contiguous land area in response to strain.
  14. A nonwoven industrial textile according to claim 12, wherein at least one of the first seaming element and the second seaming element is integrally constructed with the textile body at the respective seamable end.
  15. A seaming element for a nonwoven industrial textile, the industrial textile being constructed and arranged according to claim 1, the seaming element comprising at least a first layer and a second layer of film, each layer having an upper surface and a lower surface, wherein (i) each layer comprises a plurality of protrusions separated by land areas and each defining an aperture extending from the upper surface to the lower surface, and (ii) for at least one of the first layer and the second layer, the plurality of protrusions comprises a first set of protrusions having first and second ends integral with contiguous land areas and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from (a) a detached free end; and (b) a weakened end portion integral with but constructed and arranged to be detachable from a contiguous land area in response to strain.
  16. A method of making a nonwoven industrial textile for conveying in an industrial process, the method comprising the steps of (i) providing at least a first layer and a second layer of film, each layer having an upper surface and a lower surface; (ii) selectively embossing each of the first layer and second layer of the film to provide a plurality of protrusions separated by land areas and selectively cutting each protrusion to define an aperture extending below the protrusion from the upper surface to the lower surface of the film, wherein for at least one of the first layer and the second layer, the plurality of protrusions comprises a first set of protrusions having first and second ends integral with contiguous land areas and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from (A) a detached free end; and (B) a weakened end portion integral with but constructed and arranged to be detachable from a contiguous land area in response to strain; and (iii) securing the first layer to the second layer.
  17. A method according to claim 16, wherein the selective embossing in step (B) comprises (b.1) selectively cutting each layer of the film to provide a plurality of slits extending from the upper surface through to the lower surface; (b.2) selectively applying pressure to selected portions of each layer to provide the plurality of protrusions separated by land areas; and (b.3) aligning selected protrusions of the first layer with land areas of the second layer, and aligning selected protrusions of the second layer with land areas of the first layer.
  18. A method according to claim 16, wherein step (B) comprises (b.1) selectively applying pressure to selected portions of the film to form protruding embossed areas separated by land areas, creating a contoured profile in the upper surface; (b.2) selectively cutting and removing material from at least one of the sidewalls of at least some of the protruding embossed areas to define the plurality of protrusions; and (b.3) aligning selected protrusions of the first layer with land areas of the second layer, and aligning selected protrusions of the second layer with land areas of the first layer.
  19. A method according to claim 16, wherein protrusions of the second set are provided to each of the first layer and second layer.
  20. A method of making a nonwoven industrial textile for conveying in an industrial process, the method comprising the steps of (i) providing at least a first layer and a second layer of film, each layer having an upper surface and a lower surface; (ii) selectively embossing each of the first layer and second layer of the film to provide a plurality of protrusions separated by land areas wherein for at least one of the first layer and the second layer, the plurality of protrusions comprises a first set of protrusions having first and second ends integral with contiguous land areas and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from (A) a detached free end; and (B) a weakened end portion integral with but constructed and arranged to be detachable from a contiguous land area in response to strain; (iii) aligning selected protrusions of the first layer with land areas of the second layer, and aligning selected protrusions of the second layer with land areas of the first layer, and securing the first layer to the second layer; and (iv) selectively cutting each protrusion to define an aperture extending below the protrusion from the upper surface to the lower surface of the respective layer.

Description

The invention concerns selectively slit and embossed film fabrics such as are described by Manninen in WO 2011/069259 (the '259 document). It is particularly concerned with such film fabrics which are constructed and arranged in a manner which allows for a controlled relative movement of the film layers during operation so as to minimize internal in-line stresses and shear created when the fabrics wrap about the peripheries of relatively small diameter rolls.

The '259 document discloses that an industrial textile can be assembled from at least two layers of selectively slit and embossed polymeric film. As disclosed, the initially planar film is slit according to a chosen slitting pattern to provide permeability, and then deformed in a controlled process to form protrusions extending above the plane of the film, and land areas in the plane; two layers of film are joined by means of a chosen bonding process. The order in which these processes of bonding, slitting and deformation are performed can be selected depending on the intended end use properties of the film. The slitting and deformation processes form apertures beneath the protrusions at locations in the film where it is embossed. The '259 document discloses that industrial textiles having utility in industrial conveying and filtration processes such as papermaking and the like can thus be formed; other uses are possible and are within the scope of the invention.

Citations (4)

  • US3162567A
  • US6124015A
  • US20100236740A1
  • US20120244311A1
Record as JSON
{
  "publication_number": "US9358752B2",
  "country": "US",
  "kind": "B2",
  "title": "In-line shear resistant nonwoven textiles comprised of selectively slit and embossed film",
  "abstract": "A nonwoven industrial textile for conveying in an industrial process, seaming elements and methods of manufacture. The textile comprises at least first and second layers of film. Each layer comprises protrusions separated by land areas and each defining an aperture for a flow path through the layer. For at least one of the layers, the protrusions comprise a first set having first and second ends integral with contiguous land areas, and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from a detached free end; and a weakened end portion integral with but detachable from a contiguous land area in response to strain. The construction allows for relative movement of the layers during travel over machine components such as rolls, reducing internal strain and risk of delamination.",
  "claims": [
    "1. A nonwoven industrial textile for conveying in an industrial process, the industrial textile comprising at least a first layer and a second layer of film, each layer having an upper surface and a lower surface, wherein (i) each layer comprises a plurality of protrusions separated by land areas and each defining an aperture extending from the upper surface to the lower surface, and (ii) for at least one of the first layer and the second layer, the plurality of protrusions comprises a first set of protrusions having first and second ends integral with contiguous land areas and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from (a) a detached free end; and (b) a weakened end portion integral with but constructed and arranged to be detachable from a contiguous land area in response to strain.",
    "2. A nonwoven industrial textile according to claim 1, wherein each of the first layer and second layer comprises protrusions of the second set.",
    "3. A nonwoven industrial textile according to claim 1, wherein each of the first layer and the second layer comprises protrusions of the first set having the same configuration on each layer.",
    "4. A nonwoven industrial textile according to claim 1, wherein for each layer having protrusions of the second set, the protrusions of the second set comprise at least 25% of a total of the protrusions on that layer.",
    "5. A nonwoven industrial textile according to claim 4, wherein for each layer having protrusions of the second set, a ratio of the number of protrusions of the second set to the number of protrusions of the first set is 1:3.",
    "6. A nonwoven industrial textile according to claim 1, wherein each of the protrusions of the first set has a body comprising a top member having opposed first and second lateral edges and is supported by opposed compression resistant first and second end walls, at least one of the lateral edges cooperating with the end walls to define an aperture extending from the upper surface to the lower surface, each end wall having a base edge connected to an adjacent land area and having a configuration selected from at least one of (a) the base edge being convexly curved away from the protrusion body; and (b) each end wall extending below at least a part of each of the first and second lateral edges and being connected to each of the first and second lateral edges.",
    "7. A nonwoven industrial textile according to claim 1, wherein the protrusions of the second set are secured to land areas on the opposing one of the first and second layer.",
    "8. A nonwoven industrial textile according to claim 7, wherein the protrusions of the second set are welded to land areas on the opposing one of the first and second layer.",
    "9. A nonwoven industrial textile according to claim 1, constructed of a thermoplastic polymer material, selected from polyethylene terephthalate (PET), polybutylene terephthalate (PBT), polyethylene naphthalate (PEN), polycyclohexane dimethanol terephtalate (PCTA), polypropylene (PP), a polyamide, a polyolefin, polyphenylene sulphide (PPS) and polyether ether ketone (PEEK).",
    "10. A nonwoven industrial textile according to claim 9, wherein the material is bi-axially oriented and hydrolysis stabilized.",
    "11. A nonwoven industrial textile according to claim 1, constructed of an oriented multi-layer polymer film comprising at least two thermoplastic polymeric layers, wherein at least one of the layers includes a radiation absorbent material to provide a weldable outer surface of the polymer material and at least one of the layers permits through transmission of laser energy.",
    "12. A nonwoven industrial textile according to claim 1, further comprising a textile body having a first seamable end and a second seamable end, a first seaming element provided at the first seamable end and a second seaming element provided at the second seamable end, wherein the first and second seaming elements are constructed and arranged to be secured together to form a seam.",
    "13. A nonwoven industrial textile according to claim 12, wherein each of the first and second seaming elements comprises at least a first layer and a second layer of film, each layer having an upper surface and a lower surface, wherein (i) each layer comprises a plurality of protrusions separated by land areas and each defining an aperture extending from the upper surface to the lower surface, and (ii) for at least one of the first layer and the second layer, the plurality of protrusions comprises a first set of protrusions having first and second ends integral with contiguous land areas and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from (a) a detached free end; and (b) a weakened end portion integral with but constructed and arranged to be detachable from a contiguous land area in response to strain.",
    "14. A nonwoven industrial textile according to claim 12, wherein at least one of the first seaming element and the second seaming element is integrally constructed with the textile body at the respective seamable end.",
    "15. A seaming element for a nonwoven industrial textile, the industrial textile being constructed and arranged according to claim 1, the seaming element comprising at least a first layer and a second layer of film, each layer having an upper surface and a lower surface, wherein (i) each layer comprises a plurality of protrusions separated by land areas and each defining an aperture extending from the upper surface to the lower surface, and (ii) for at least one of the first layer and the second layer, the plurality of protrusions comprises a first set of protrusions having first and second ends integral with contiguous land areas and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from (a) a detached free end; and (b) a weakened end portion integral with but constructed and arranged to be detachable from a contiguous land area in response to strain.",
    "16. A method of making a nonwoven industrial textile for conveying in an industrial process, the method comprising the steps of (i) providing at least a first layer and a second layer of film, each layer having an upper surface and a lower surface; (ii) selectively embossing each of the first layer and second layer of the film to provide a plurality of protrusions separated by land areas and selectively cutting each protrusion to define an aperture extending below the protrusion from the upper surface to the lower surface of the film, wherein for at least one of the first layer and the second layer, the plurality of protrusions comprises a first set of protrusions having first and second ends integral with contiguous land areas and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from (A) a detached free end; and (B) a weakened end portion integral with but constructed and arranged to be detachable from a contiguous land area in response to strain; and (iii) securing the first layer to the second layer.",
    "17. A method according to claim 16, wherein the selective embossing in step (B) comprises (b.1) selectively cutting each layer of the film to provide a plurality of slits extending from the upper surface through to the lower surface; (b.2) selectively applying pressure to selected portions of each layer to provide the plurality of protrusions separated by land areas; and (b.3) aligning selected protrusions of the first layer with land areas of the second layer, and aligning selected protrusions of the second layer with land areas of the first layer.",
    "18. A method according to claim 16, wherein step (B) comprises (b.1) selectively applying pressure to selected portions of the film to form protruding embossed areas separated by land areas, creating a contoured profile in the upper surface; (b.2) selectively cutting and removing material from at least one of the sidewalls of at least some of the protruding embossed areas to define the plurality of protrusions; and (b.3) aligning selected protrusions of the first layer with land areas of the second layer, and aligning selected protrusions of the second layer with land areas of the first layer.",
    "19. A method according to claim 16, wherein protrusions of the second set are provided to each of the first layer and second layer.",
    "20. A method of making a nonwoven industrial textile for conveying in an industrial process, the method comprising the steps of (i) providing at least a first layer and a second layer of film, each layer having an upper surface and a lower surface; (ii) selectively embossing each of the first layer and second layer of the film to provide a plurality of protrusions separated by land areas wherein for at least one of the first layer and the second layer, the plurality of protrusions comprises a first set of protrusions having first and second ends integral with contiguous land areas and at least a second set of protrusions each comprising a first end integral with a contiguous land area and an opposing second end having a configuration selected from (A) a detached free end; and (B) a weakened end portion integral with but constructed and arranged to be detachable from a contiguous land area in response to strain; (iii) aligning selected protrusions of the first layer with land areas of the second layer, and aligning selected protrusions of the second layer with land areas of the first layer, and securing the first layer to the second layer; and (iv) selectively cutting each protrusion to define an aperture extending below the protrusion from the upper surface to the lower surface of the respective layer."
  ],
  "description_excerpt": "The invention concerns selectively slit and embossed film fabrics such as are described by Manninen in WO 2011/069259 (the '259 document). It is particularly concerned with such film fabrics which are constructed and arranged in a manner which allows for a controlled relative movement of the film layers during operation so as to minimize internal in-line stresses and shear created when the fabrics wrap about the peripheries of relatively small diameter rolls.\n\nThe '259 document discloses that an industrial textile can be assembled from at least two layers of selectively slit and embossed polymeric film. As disclosed, the initially planar film is slit according to a chosen slitting pattern to provide permeability, and then deformed in a controlled process to form protrusions extending above the plane of the film, and land areas in the plane; two layers of film are joined by means of a chosen bonding process. The order in which these processes of bonding, slitting and deformation are performed can be selected depending on the intended end use properties of the film. The slitting and deformation processes form apertures beneath the protrusions at locations in the film where it is embossed. The '259 document discloses that industrial textiles having utility in industrial conveying and filtration processes such as papermaking and the like can thus be formed; other uses are possible and are within the scope of the invention.",
  "cpc": [
    "B32B 3/30",
    "B32B 2250/02",
    "B32B 2250/20",
    "B32B 2262/0253",
    "B32B 2262/0261",
    "B32B 2262/0276",
    "B32B 2262/0284",
    "B32B 2307/50",
    "B32B 2307/542",
    "B32B 2307/552",
    "B32B 2307/581",
    "B32B 2433/00",
    "B32B 27/12",
    "B32B 27/285",
    "B32B 27/286",
    "B32B 27/288",
    "B32B 27/32",
    "B32B 27/34",
    "B32B 27/36",
    "B32B 3/02",
    "B32B 3/266",
    "B32B 3/28",
    "B32B 5/022",
    "B32B 5/142",
    "B32B 5/147",
    "B32B 7/045",
    "B32B 7/05",
    "B32B 7/06",
    "B32B 7/08",
    "D06C 15/00",
    "D06C 23/04",
    "Y10T 428/15"
  ],
  "ipc": [
    "B32B 3/26",
    "B32B 3/30",
    "B32B 5/02",
    "B32B 7/08",
    "D06C 15/00",
    "D06C 23/04",
    "B32B 27/12",
    "B32B 27/28",
    "B32B 27/32",
    "B32B 27/34",
    "B32B 27/36",
    "B32B 3/02",
    "B32B 3/24",
    "B32B 3/28",
    "B32B 5/14",
    "B32B 7/04",
    "B32B 7/06"
  ],
  "assignees": [
    "Astenjohnson, Inc."
  ],
  "inventors": [
    "Allan R. Manninen"
  ],
  "filing_date": "2013-06-18",
  "publication_date": "2016-06-07",
  "grant_date": "2016-06-07",
  "priority_date": "2012-06-18",
  "application_number": "US-201314408844-A",
  "family_id": "49767974",
  "cited_by_count": 8,
  "citations": [
    "US3162567A",
    "US6124015A",
    "US20100236740A1",
    "US20120244311A1"
  ]
}

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