IP Library Granted Patent US 8,268,444
Granted Patent B2
US 8,268,444 · App. 12/444,096 · Granted Sep 18, 2012

Crimping composite fiber and fibrous mass comprising the same

Assignees: Daiwabo Holdings Co., Ltd.; Daiwabo Polytec Co., Ltd.
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Quick Facts
Patent No.
US 8,268,444
App. No.
12/444,096
Granted
Sep 18, 2012
Kind
B2
Abstract

The present invention is directed to a crimping conjugate fiber, comprising a first component and a second component, wherein the first component comprises a polybutene-1; the second component comprises a polymer having a melting point higher than that of the polybutene-1 by at least 20° C., or a polymer having a melting initiation temperature (extrapolated melting initiation temperature measured using differential scanning calorimetry (DSC) as defined in JIS-K-7121) of at least 120° C.; in a cross section of the fiber, the first component occupies at least 20% of the surface of the conjugate fiber, and the centroid position of the second component is shifted from the centroid position of the conjugate fiber; and the conjugate fiber is an actualized crimping conjugate fiber in which three-dimensional crimps have been developed or a latently crimpable conjugate fiber in which three-dimensional crimps are developed by heating. Accordingly, a crimping conjugate fiber and a fiber assembly comprising the same are provided in which the elasticity, the bulk recovery property, and the durability are high.

Claims (34)

1. A crimping conjugate fiber, comprising a first component and a second component,

wherein the first component comprises a polymer blend containing at least 60 mass % and no greater than 95 mass % of polybutene-1 with at least 5 mass % and no greater than 40 mass % of olefin-based polymer different from the polybutene-1, the second component comprises a polymer having a melting peak temperature higher than that of the polybutene-1 by at least 20° C., or a polymer having a melting initiation temperature of at least 120° C.,

in a cross section of the fiber, the first component occupies at least 20% of the surface of the conjugate fiber, and the centroid position of the second component is shifted from the centroid position of the conjugate fiber,

the conjugate fiber is an actualized crimping conjugate fiber in which three-dimensional crimps have been developed or a latently crimpable conjugate fiber in which three-dimensional crimps are developed by heating, and

the three-dimensional crimps are at least one type of crimps selected from the group consisting of wavy crimps and spiral crimps.

2. The crimping conjugate fiber according to claim 1 , wherein the second component is a polyester.

3. The crimping conjugate fiber according to claim 2 , wherein the polyester is a polytrimethylene terephthalate.

4. The crimping conjugate fiber according to claim 1 , wherein the polybutene-1 has a melting peak temperature measured using DSC as defined in JIS-K-7121 of 115 to 130° C., and a melt flow rate (MFR; measurement temperature 190° C., load 21.18 N (2.16 kgf)) measured as defined in JIS-K-7210 of 1 to 30 g/10 min.

5. The crimping conjugate fiber according to claim 1 , wherein the olefin-based polymer different from the polybutene-1 of the first component is at least one selected from a polypropylene and a propylene copolymer.

6. The crimping conjugate fiber according to claim 5 , wherein the conjugate fiber is an actualized crimping conjugate fiber.

7. The crimping conjugate fiber according to claim 6 , wherein the polypropylene has a ratio (Q value) between a weight-average molecular weight (Mw) and a number-average molecular weight (Mn) of not greater than 6, and a melt flow rate (MFR; measurement temperature 230° C., load 21.18 N (2.16 kgf)) as defined in JIS-K-7210 of 5 to 30 g/10 min.

8. The crimping conjugate fiber according to claim 1 , wherein the conjugate fiber is an actualized crimping conjugate fiber, and the number of crimps is 5 per 25 mm to 25 per 25 mm.

9. The crimping conjugate fiber according to claim 1 , wherein the conjugate fiber is the latently crimpable conjugate fiber, and a dry thermal shrinkage ratio at 120° C. measured as defined in JIS-L-1015 is:

(1) at least 50% measured at an initial load of 0.018 mN/dtex (2 mg/de); and

(2) at least 5% measured at an initial load of 0.45 mN/dtex (50 mg/de).

10. The crimping conjugate fiber according to claim 9 , wherein the first component comprises the polybutene-1 and a propylene copolymer.

11. The crimping conjugate fiber according to claim 10 , wherein the propylene copolymer is at least one type selected from an ethylene-propylene copolymer and an ethylene-butene-1-propylene terpolymer.

12. The crimping conjugate fiber according to claim 11 , wherein the propylene copolymer is an ethylene-propylene copolymer having a ratio (Q value) between a weight-average molecular weight (Mw) and a number-average molecular weight (Mn) of at least 3.

13. A nonwoven fabric comprising at least 30 mass % of a crimping conjugate fiber,

wherein the crimping conjugate fiber comprises a first component and a second component,

the first component comprises a polymer blend containing at least 60 mass % and no greater than 95 mass % of polybutene-1 with at least 5 mass % and no greater than 40 mass % of olefin-based polymer different from the polybutene-1,

the second component comprises a polymer having a melting peak temperature higher than that of the polybutene-1 by at least 20° C., or a polymer having a melting initiation temperature of at least 120° C.,

in a cross section of the fiber, the first component occupies at least 20% of the surface of the conjugate fiber, and the centroid position of the second component is shifted from the centroid position of the conjugate fiber,

the conjugate fiber is an actualized crimping conjugate fiber in which three-dimensional crimps have been developed or a latently crimpable conjugate fiber in which three-dimensional crimps are developed by heating, and

the three-dimensional crimps are at least one type of crimps selected from the group consisting of wavy crimps and spiral crimps.

14. The nonwoven fabric according to claim 13 , wherein at least the polybutene-1 of the crimping conjugate fiber is melted so that fiber portions are thermally fused.

15. A nonwoven fabric product formed of the nonwoven fabric according to claim 13 , wherein the nonwoven fabric product is shaped to be a cushioning material, a hard stuffing, a hygienic material, a packaging material, a filter, a material for cosmetics, a pad for a brassiere, a shoulder pad, a cushioning material for vehicle, or a backing material for flooring.

16. The crimping conjugate fiber according to claim 1 , wherein a combination ratio of the second component to the first component is 8/2 to 3/7 as a volume ratio.

17. The crimping conjugate fiber according to claim 1 , wherein the cross-section of the conjugate fiber is an eccentric sheath-core type, and an eccentricity expressed by following equation (2) is 5 to 50%:

Eccentricity(%)=[| Cf−C 1 |/rf]× 100  (2),

where C1 represents the centroid position of the second component, Cf represents the centroid position of the conjugate fiber, and rf represents a radius of the conjugate fiber.

18. The crimping conjugate fiber according to claim 1 , wherein the polybutene-1 is a polymer having substantially no polar group.

19. The crimping conjugate fiber according to claim 1 , wherein the olefin-based polymer different from the polybutene-1 is a polymer having substantially no polar group.

20. The crimping conjugate fiber according to claim 1 , wherein the polybutene-1 and the olefin-based polymer different from the polybutene-1 are polymers having substantially no polar group.

Assignments (2)
CHANGE OF NAME Recorded Aug 10, 2012
From: DAIWABO CO., LTD.
To: DAIWABO HOLDINGS CO., LTD.
Reel/Frame 028769/0455 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2009
From: OKAYA, HIROSHI
To: DAIWABO CO., LTD.; DAIWABO POLYTEC CO., LTD.
Reel/Frame 022488/0012 →
Priority Claims (2)
JP 2006-272180 · Oct 3, 2006 · national
JP 2007-090104 · Mar 30, 2007 · national
Continuity (1)
Related Publication 20090318050A1 · Dec 24, 2009