Claims
- 1. Resilient polyurethane fibers comprising a thermoplastic polyurethane obtainable by reacting (a) a polyester-polyol that satisfies all the following requirements (1) to (4):
- (1) its ester group content (number of ester bonds/number of all carbon atoms) is from 0.08 to 0.17;
- (2) it has hydroxyl groups of from 2.01 to 2.08 per one molecule;
- (3') it has a number average molecular weight of from 1000 to 5000; and
- (4) it has a crystallization enthalpy (.DELTA.H) of 70 J/g or less,
- (b) an organic diisocyanate and (c) a chain extender at a ratio that satisfies the following numerical formula (i):
- 1.00.ltoreq.b/(a+c).ltoreq.1.10 (i)
- where a indicates the number of mols of the polyester-polyol, b indicates the number of mols of the organic diisocyanate, and c indicates the number of mols of the chain extender.
- 2. A laminate composed of thermoplastic polyurethane layer(s) and fibrous base layer(s), which is characterized in that the thermoplastic polyurethane layer(s) is/are melt-molded layer(s) of a thermoplastic polyurethane obtainable by reacting (a) a polyester-polyol that satisfies all the following requirements (1) to (4):
- (1) its ester group content (number of ester bonds/number of all carbon atoms) is from 0.08 to 0.17;
- (2) it has hydroxyl groups of from 2.01 to 2.08 per one molecule;
- (3") it has a number average molecular weight of from 1000 to 4000; and
- (4) it has a crystallization enthalpy (.DELTA.H) of 70 J/g or less,
- (b) an organic diisocyanate and (c) a chain extender at a ratio that satisfies the following numerical formula (i):
- 1.00.ltoreq.b/(a+c).ltoreq.1.10 (i)
- where a indicates the number of mols of the polyester-polyol, b indicates the number of mols of the organic diisocyanate, and c indicates the number of mols of the chain extender.
- 3. A method for producing resilient polyurethane fibers, which comprises melt-spinning a thermoplastic polyurethane obtainable by reacting (a) a polyester-polyol that satisfies all the following requirements (1) to (4):
- (1) its ester group content (number of ester bonds/number of all carbon atoms) is from 0.08 to 0.17;
- (2) it has hydroxyl groups of from 2.01 to 2.08 per one molecule;
- (3') it has a number average molecular weight of from 1000 to 5000; and
- (4) it has a crystallization enthalpy (.DELTA.H) of 70 J/g or less,
- (b) an organic diisocyanate and (c) a chain extender at a ratio that satisfies the following numerical formula (i):
- 1.00.ltoreq.b/(a+c).ltoreq.1.10 (i)
- where a indicates the number of mols of the polyester-polyol, b indicates the number of mols of the organic diisocyanate, and c indicates the number of mols of the chain extender, or comprises melt-spinning the thermoplastic polyurethane while forming it by reacting the polyester-polyol (a), the organic diisocyanate (b) and the chain extender at the ratio satisfying the above-mentioned numerical formula (i).
Priority Claims (3)
Number |
Date |
Country |
Kind |
6-146042 |
Jun 1995 |
JPX |
|
6-174593 |
Jul 1995 |
JPX |
|
6-219423 |
Aug 1995 |
JPX |
|
Parent Case Info
This application is a Divisional of Ser. No. 08/652,131 May 23, 1996 now U.S. Pat. No. 5,780,573.
Foreign Referenced Citations (5)
Number |
Date |
Country |
0 194 452 |
Sep 1986 |
EPX |
0 572 682 |
Dec 1993 |
EPX |
0 651 017 |
May 1995 |
EPX |
2 080 637 |
Nov 1971 |
FRX |
19 61 996 |
Jul 1970 |
DEX |
Non-Patent Literature Citations (1)
Entry |
Journal of Applied Polymer Science, vol. 51, No. 6, Feb. 7, 1994, pp. 1077-1085, Chang et al, "Role of Functionality in MDI-Based Elastomer Preparation". |
Divisions (1)
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Number |
Date |
Country |
Parent |
652131 |
May 1996 |
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