Claims
- 1. A moldable and extrudable polyether-ester-amide block copolymer having the formula: ##STR3## wherein A is a linear saturated aliphatic polyamide sequence formed from a lactam or amino acid having a hydrocarbon chain containing 4 to 14 carbon atoms or from an aliphatic C.sub.6 -C.sub.12 dicarboxylic acid and a C.sub.6 -C.sub.9 diamine, in the presence of chain-limiting aliphatic carboxylic diacid having 4 to 20 carbon atoms; said polyamide sequence having an average molecular weight of between about 300 and about 15000; and B is a polyether sequence formed from linear or branched aliphatic polyoxyalkylene glycols or mixtures thereof, said polyoxyalkylene glycol having an average molecular weight of from about 200 to about 6000; wherein the proportion by weight of polyoxyalkylene glycol with respect to the total weight of polyether-ester-amide is from about 5 to about 85%; and n indicates a sufficient number of repeating units so that said polyether-ester-amide has an intrinsic viscosity of from 0.8 to 2.05.
- 2. The moldable and extrudable polyether-ester-amide block copolymer as defined in claim 1 which exhibits a melting point in the range of from about 140.degree. to about 180.degree. C., a Vicat point in the range of from about 98.degree. to about 157.degree. C. and an elongation under tension at yield point in the range of from about 12.5% to about 18%.
- 3. The moldable and extrudable polyether-ester-amide copolymer as defined in claim 2 which exhibits a torsional modulus at 0.degree. C. in the range of from about 147 to about 2400 kg/cm.sup.2.
- 4. The polyether-ester-amide copolymer of claim 1 wherein the lactam or amino acid having a hydrocarbon chain of 4 to 14 carbon atoms is selected from the group consisting of caprolactam, oenantholactam, dodecalactam, undecanolactam, dodecanolactam, 11-amino-undecanoic acid, and 12-aminododecanoic acid.
- 5. The polyether-ester-amide copolymer of claim 1 wherein the polyamide is formed from a dicarboxylic acid and a diamine wherein the diamine is hexamethylene diamine or nonamethylene diamine and the acid is adipic acid, azelaic acid, sebacic acid, or 1,12-dodecanedioic acid.
- 6. The polyether-ester-amide copolymer of claim 1 wherein the chain-limiting carboxylic aliphatic diacid is acid selected from the group consisting of succinic acid, adipic acid, suberic acid, azelaic acid, sebacic acid, undecanedioic acid and dodecanedioic acid.
- 7. The polyether-ester-amide copolymer of claim 1 wherein the polyoxyalkylene glycol is selected from the group consisting of polyoxyethylene glycol, polyoxypropylene glycol, polyoxytetramethylene glycol, mixtures thereof and a copolyether derived therefrom.
- 8. The polyether-ester-amide copolymer of claim 1 wherein the proportion by weight of polyoxyalkylene glycol is from about 5 to about 50%.
- 9. The polyether-ester-amide copolymer of claim 8 wherein the proportion by weight of polyoxyalkylene glycol is from about 10 to about 50%.
- 10. The polyether-ester-amide copolymer of claim 1 wherein the polyoxyalkylene glycol has an average molecular weight of from about 200 to about 3000.
- 11. The polyether-ester-amide copolymer of claim 10 wherein the polyoxyalkylene glycol has an average molecular weight of from about 400 to about 3000.
- 12. The polyether-ester-amide copolymer of claim 10 wherein the polyoxyalkylene glycol has an average molecular weight of from about 200 to about 400.
- 13. The polyether-ester-amide copolymer of claim 1 wherein the polyamide sequence is formed from a 11-dicarboxylic polyamide prepared by the polycondensation of 11-aminoundecanoic acid and adipic acid and the polyoxyalkylene glycol is polyoxyethylene glycol.
- 14. The polyether-ester-amide copolymer of claim 13 wherein the average molecular weight of the polyamide sequence is about 2000 and the average molecular weight of the polyoxyalkylene glycol is about 1000 and which exhibits an intrinsic viscosity of about 1.2, a Vicat point of about 151.degree. C., an elongation under tension at yield point of about 14% and a torsional modulus at 0.degree. C. of about 560 kg/cm.sup.2.
- 15. The polyether-ester-amide copolymer of claim 13 wherein the average molecular weight of the polyamide sequence is about 3200 and the average molecular weight of the polyoxyalkylene glycol is about 425 and which exhibits an intrinsic viscosity of about 0.8, a Vicat point of about 163.degree. C., an elongation under tension at yield point of about 14% and a torsional modulus at 0.degree. C. of about 1222 kg/cm.sup.2.
- 16. The polyether-ester-amide copolymer of claim 13 wherein the average molecular weight of the polyamide sequence is about 810 and the average molecular weight of the polyoxyalkylene glycol is about 2400 and which exhibits an intrinsic viscosity of about 1.15 and a melting point of about 140.degree. C.
- 17. The polyether-ester-amide copolymer of claim 13 wherein the average molecular weight of the polyamide sequence is about 1135 and the average molecular weight of the polyether sequence is about 970 and which exhibits an intrinsic viscosity of about 1.68, a Vicat point of about 125.degree. C., an elongation under tension at yield point of about 15% and a torsional modulus at 0.degree. C. of about 240 kg/cm.sup.2.
- 18. The polyether-ester-amide copolymer of claim 13 wherein the average molecular weight of the polyamide sequence is about 1035 and the average molecular weight of the polyether sequence is about 1000 and which exhibits an intrinsic viscosity of about 0.9, a Vicat point of about 98.degree. C., an elongation under tension at yield point of about 18% and a torsional modulus at 0.degree. C. of about 147 kg/cm.sup.2.
- 19. The polyether-ester-amide of claim 1 wherein the polyamide sequence is formed by a 11-dicarboxylic polyamide obtained by the condensation of 11-aminoundecanoid acid in the presence of adipic acid and the polyoxyalkylene glycol is copolyoxyethylene polyoxypropylene glycol or polyoxypropylene glycol.
- 20. The polyether-ester-amide copolymer of claim 19 wherein the average molecular weight of the polyamide sequence is about 3420 and the polyether sequence is polyoxypropylene having an average molecular weight of about 1000 and which exhibits an intrinsic viscosity of about 1.5, a Vicat point of about 163.degree. C., an elongation under tension at yield point of about 14% and a torsional modulus at 0.degree. C. of about 884 kg/cm.sup.2.
- 21. The polyether-ester-amide copolymer of claim 19 wherein the average molecular weight of the polyamide sequence is about 2000 and the polyether sequence is copolyoxyethylene-polyoxypropylene glycol having an average molecular weight of about 1000 and which exhibits an intrinsic viscosity of about 1.4.
- 22. The polyether-ester-amide copolymer of claim 1 wherein the polyamide sequence is formed from a 11-dicarboxylic polyamide prepared by the polycondensation of 11-amino decanoic acid in the presence of adipic acid and the polyoxyalkylene glycol is polyoxytetramethylene glycol.
- 23. The polyether-ester-amide copolymer of claim 22 wherein the average molecular weight of the polyamide sequence is about 3100 and the average molecular weight of the polyether sequence is about 1000 and which exhibits an intrinsic viscosity of about 1.10, a Vicat point of about 163.degree. C., an elongation under tension at yield point of about 18% and a torsional modulus at 0.degree. C. of about 1000 kg/cm.sup.2.
- 24. The polyether-ester-amide copolymer of claim 22 wherein the average molecular weight of the polyamide sequence is about 1000 and the average molecular weight of the polyether sequence is about 1000 and which exhibits an intrinsic viscosity of about 1.44, a Vicat point of about 115.degree. C., an elongation under tension at yield point of about 18% and a torsional modulus at 0.degree. C. of about 299 kg/cm.sup.2.
- 25. The polyether-ester-amide copolymer of claim 1 wherein the polyamide sequence has an average molecular weight of about 1084 and is a 12-dicarboxylic acid polyamide formed by condensation of 12-aminododecanoic acid in the presence of adipic acid and the polyoxyalkylene sequence has an average molecular weight of about 1000 and is formed from polyoxytetramethylene glycol and which exhibits an intrinsic viscosity of about 1.3.
- 26. The polyether-ester-amide copolymer of claim 1 wherein the polyamide sequence has an average molecular weight of about 1886 and is 6.9-dicarboxylic acid polyamide formed by condensation of dihexylammonium azelaate in the presence of adipic acid and the polyoxyalkylene sequence has an average molecular weight of about 1000 and is formed from polyoxytetramethylene glycol and which exhibits an intrinsic viscosity of about 2.05 and a melting point of about 148.degree. C.
- 27. The polyether-ester-amide copolymer of claim 1 wherein the polyamide sequence has an average molecular weight of about 1332 and is a 6,10-dicarboxylic acid polyamide formed by condensation of dihexylammonium sebacate in the presence of adipic acid and the polyoxyalkylene sequence has an average molecular weight of about 1000 and is formed from polyoxytetramethylene glycol and which exhibits an intrinsic viscosity of about 1.40.
- 28. The polyether-ester-amide copolymer of claim 1 wherein the polyamide sequence has an average molecular weight of about 1998 and is a 6.12-dicarboxylic acid polyamide formed by condensation of hexyldiammonium dodecanoic salt in the presence of adipic acid and the polyoxyalkylene sequence has an average molecular weight of about 1000 and is formed from polyoxytetramethylene glycol and which exhibits an intrinsic viscosity of about 1.56.
- 29. The polyether-ester-amide copolymer of claim 1 wherein the polyamide sequence has an average molecular weight of about 1400 and is a 6-dicarboxylic acid polyamide formed by condensation of caprolactam and the polyoxyalkylene sequence has an average molecular weight of about 650 and is formed from polyoxytetramethylene glycol and which exhibits an intrinsic viscosity of about 1.45, a Vicat point of about 162.degree. C., an elongation under tension at yield point of about 12.5% and a torsional modulus at 0.degree. C. of about 1200 kg/cm.sup.2.
- 30. The polyether-ester-amide copolymer of claim 1 wherein the polyamide sequence has an average molecular weight of about 5600 and is a 12-dicarboxylic acid polyamide formed by condensation of 12-lactam in the presence of adipic acid and the polyoxyalkylene sequence has an average molecular weight of about 1020 and is formed from polyoxypropylene glycol and which exhibits an intrinsic viscosity of about 1.4, a Vicat point of about 157.degree. C., and a torsional modulus at 0.degree. C. of about 2400 kg/cm.sup.2.
- 31. A fiber product consisting essentially of the polyether-ester-amide copolymer of claim 1.
- 32. A fiber product consisting essentially of the polyether-ester-amide copolymer of claim 12.
- 33. The moldable and extrudable polyether-ester-amide block copolymer of claim 1 formed in the presence of a titanate-like catalyst.
- 34. The moldable and extrudable polyether-ester-amide block copolymer of claim 1 formed in the presence of a tetra-alkylortho-titanate catalyst.
Priority Claims (1)
Number |
Date |
Country |
Kind |
74 18913 |
May 1974 |
FRX |
|
Parent Case Info
This is a continuation of application Ser. No. 948,297 filed Oct. 3, 1978, now U.S. Pat. No. 4,230,838, which in turn is a continuation of application Ser. No. 784,723, filed Apr. 5, 1977, now abandoned which is in turn a continuation of application Ser. No. 582,428, filed May 30, 1975, now abandoned.
US Referenced Citations (9)
Continuations (3)
|
Number |
Date |
Country |
Parent |
948297 |
Oct 1978 |
|
Parent |
784723 |
Apr 1977 |
|
Parent |
582428 |
May 1975 |
|