IP Library Granted Patent US 11,603,605
Granted Patent B2
US 11,603,605 · App. 13/124,437 · Granted Mar 14, 2023

Fusible bicomponent spandex

Inventors: Steven W. Smith (Waynesboro, VA); Hong Liu (Waynesboro, VA); Dong Wang (Davis, CA); Willem Bakker (Divonne, FR)
Assignee: The LYCRA Company LLC
D01F6/70D01F1/10D01F8/16D02G3/326D03D15/56D10B2401/041Y10T428/2929Y10T442/3024Y10T442/413Y10T442/602
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Quick Facts
Patent No.
US 11,603,605
App. No.
13/124,437
Granted
Mar 14, 2023
Kind
B2
Abstract

Included are multiple component elastic fibers prepared by a solution-spinning process such as dry spinning or wet spinner of spandex fibers including polyurethaneurea and polyurethane compositions. These fibers have a cross-section including at least two separate regions with definable boundaries wherein at least one region defined by the boundaries of the cross-section includes a polyurethaneurea or polyurethane composition. One region of the fiber includes a fusibility improvement additive to enhance adhesion to itself or to a substrate.

Claims (18)

1. A fiber comprising an elastic, multiple component fiber having discernable regions in a sheath-core configuration along a cross-section, said fiber spun from first and second polymer solutions , wherein at least a first region of said cross-section is the core spun from a first polymer solution comprising an elastomeric polyurethaneurea with a melting point greater than 240° C.; and including a second region said second region being the sheath spun from a second polymer solution comprising an elastomeric polyurethane, or a polyurethaneurea, or a mixture thereof with a melting point of 190-250° C. and at least one fusibility improvement additive, wherein said first and second regions have different compositions and are continuous along the fiber length; wherein said fusibility improvement additive includes at least one low temperature melting polyurethane with melting point less than 180° C.; and wherein said fiber exhibits a tenacity at break of at least 1 cN/dtex, a break elongation of at least 400%, an M200 of at least 0.2 cN/dtex and increased steam efficiency and fusing strength and decreased laddering after puncture as compared to a fiber prepared from a first polymer solution comprising an elastomeric polyurethaneurea with a melting point greater than 240° C.

2. The fiber of claim 1 , wherein the fiber includes a monofilament structure or a multiple filament structure.

3. The fiber of claim 1 , wherein said low temperature melting polyurethane has a melting point from about 50° C. to about 150° C.

4. The fiber of claim 1 , wherein said low temperature melting polyurethane has a melting point below about 120° C.

5. The fiber of claim 1 , wherein said second region is adjacent to or at least partially surrounds the first region.

6. The fiber of claim 5 , wherein the second region comprises about 11% to about 60% by weight of the fiber.

7. The fiber of claim 5 , wherein the second region comprises about 5% to about 30% by weight of the fiber.

8. The fiber of claim 1 , wherein said elastic multiple component solution-spun fiber has a fusing strength greater than 0.15 cN/dtex.

9. A fabric comprising an elastic, multiple component, fiber having discernable regions in a sheath-core configuration along a cross-section, said fiber spun from first and second polymer solutions , wherein at least a first region of said cross-section is the core spun from a first polymer solution comprising an elastomeric polyurethaneurea with a melting point greater than 240° C.; and including a second region said second region being the sheath spun from a second polymer solution comprising an elastomeric polyurethane, or a polyurethaneurea, or a mixture thereof with a melting point of 190-250° C. and at least one fusibility improvement additive, wherein said first and second regions have different compositions and are continuous along the fiber length; wherein said fusibility improvement additive includes at least one low temperature melting polyurethane with melting point less than 180° C.; and wherein said fiber exhibits a tenacity at break of at least 1 cN/dtex, a break elongation of at least 400%, an M200 of at least 0.2 cN/dtex and increased steam efficiency and fusing strength and decreased laddering after puncture as compared to a fiber prepared from a first polymer solution comprising an elastomeric polyurethaneurea with a melting point greater than 240° C.

10. The fabric of claim 9 , wherein said low temperature melting polyurethane fusibility improvement additive has a melting point from about 50° C. to about 150° C.

11. The fabric of claim 9 , wherein said low temperature melting polyurethane fusibility improvement additive has a melting point below about 120° C.

12. The fabric of claim 9 , wherein said second region is adjacent to or at least partially surrounds the first region.

13. The fabric of claim 9 , wherein said elastic multiple component solution-spun fiber is covered.

14. The fabric of claim 13 , wherein said elastic multiple component solution-spun fiber is covered with polyamide (nylon), cotton, polyester, or combinations thereof.

15. The fabric of claim 9 , wherein said elastic multiple component solution-spun fiber is fusible.

16. The fabric of claim 9 , wherein the fabric includes a knit, woven, or non-woven construction.

17. The fabric of claim 9 , wherein said fabric comprises hosiery, leg wear, shirting, intimate apparel, swim wear, bottoms, and non-woven hygiene structures.

18. A process for preparing a the fusible, elastic, multiple component, solution-spun fiber of claim 1 comprising:(a) providing first and second polymer solutions;(b) combining the solutions through distribution plates and orifices to form filaments having a cross-section;(c) extruding the filaments through a common capillary; and(d) removing solvent from said filaments; wherein said cross-section includes a boundary between said polymer solutions; wherein each of said first and second polymer solutions independently includes an elastomeric polyurethane, a polyurethaneurea, or mixtures thereof; and wherein the second polymer solutions includes a fusibility improvement additive; wherein the fusible, elastic, multiple component, solution-spun fiber includes a multiple region cross-section with the first polymer solution corresponding to a first region of said cross-section and the second polymer solution corresponding to a second region of said cross-section.

Assignments (6)
SECURITY INTEREST Recorded May 21, 2026
From: THE LYCRA COMPANY LLC
To: GLAS AMERICAS LLC
Reel/Frame 075621/0606 →
RELEASE OF SECURITY INTEREST Recorded May 20, 2026
From: WILMINGTON TRUST (LONDON) LIMITED
To: THE LYCRA COMPANY LLC (FORMERLY KNOWN AS A&AT LLC)
Reel/Frame 075587/0490 →
CHANGE OF NAME Recorded Sep 17, 2019
From: A&AT LLC
To: THE LYCRA COMPANY LLC
Reel/Frame 050397/0397 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2019
From: INVISTA NORTH AMERICA S.A R.L.
To: A&AT LLC
Reel/Frame 050075/0645 →
SECURITY INTEREST Recorded Feb 1, 2019
From: A&AT LLC
To: WILMINGTON TRUST (LONDON) LIMITED, AS SECURITY AGENT
Reel/Frame 048208/0120 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2011
From: SMITH, STEVEN W.; LIU, HONG; BAKKER, WILLEM
To: INVISTA NORTH AMERICA S.A R.L.
Reel/Frame 026785/0274 →