Claims
- 1. An esteramide copolymer produced by the process which comprises the steps of:
- reacting (a) a diester compound of an aromatic diaminodicarboxylic acid of the formula: ##STR3## with (b) a poly(alkylene oxide) glycol having a number average molecular weight of about 250-10,000 in the presence of an organic solvent so as to form a prepolymer having a number average molecular weight of less than 12,000, said solvent having a boiling point of about 140.degree.-290.degree. C. at atmospheric pressure and being capable of dissolving said (a) diester compound of said aromatic diaminodicarboxylic acid, said prepolymer resulting from said reaction between said (a) diester compound of said aromatic diaminodicarboxylic acid, and said (b) glycol or said diester compound of said aromatic diaminodicarboxylic acid and said prepolymer to an extent of at least about 0.01 g per ml at 25.degree. C.;
- removing the solvent from the reacted mixture to form a residue; and
- subjecting the thus recovered residue to bulk polymerization in the molten phase to thereby form an esteramide copolymer having a number average molecular weight of 61,000-500,000 and which consists of units represented by the general formula: ##STR4## wherein R and R' each independently represent an aliphatic alkyl group having 1-13 carbon atoms, R.sub.2 represents a divalent aromatic group, G represents a residue of said (b) poly(alkylene oxide) glycol having a number average molecular weight of about 250-10,000 and n is a whole number.
- 2. The esteramide copolymer as claimed in claim 1 wherein the reacting to form the prepolymer is at a temperature of about 140.degree.-220.degree. C. and at or near atmospheric pressure for about 0.5-6 hours in the presence of a polymerization catalyst and, after the removing of the solvent which is conducted under vacuum, the resulting residue is further subjected to the bulk polymerization at a temperature of about 210.degree.-270.degree. C. and at a reduced pressure of about 0.1-2 mm Hg for a period of about 1-6 hours to give a desired copolymer product.
- 3. The esteramide copolymer as claimed in claim 1 wherein the solvent comprises an organic amide solvent.
- 4. The esteramide copolymer as claimed in claim 1 wherein said (a) diester compound is selected from the group consisting of ##STR5## and said (b) poly(alkylene oxide) glycol is selected from the group consisting of poly(ethylene oxide) glycol, poly(propylene oxide) glycol, poly(tetramethylene oxide) glycol, poly(hexamethylene oxide) glycol, ethylene oxide/propylene oxide copolymer, ethylene oxide/tetrahydrofuran copolymer, polypropylene oxide) glycol/ethylene oxide adduct polymer, poly(ethylene oxide)-poly (tetramethylene oxide) diblock copolymer, poly (ethylene oxide)-poly (tetramethylene oxide)-poly (ethylene oxide) triblock copolymer, and mixtures thereof.
Priority Claims (3)
Number |
Date |
Country |
Kind |
002055 |
Jan 1993 |
JPX |
|
002056 |
Jan 1993 |
JPX |
|
066716 |
Mar 1993 |
JPX |
|
Parent Case Info
This application is a continuation of Ser. No. 08/178,885 filed Jan. 7, 1994.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4810770 |
Greene et al. |
Mar 1989 |
|
Foreign Referenced Citations (4)
Number |
Date |
Country |
A-0399415 |
Nov 1990 |
EPX |
A-0506495 |
Sep 1992 |
EPX |
A-0504058 |
Sep 1992 |
EPX |
4430751 |
Dec 1969 |
JPX |
Non-Patent Literature Citations (3)
Entry |
Patent Abstracts of Japan, Abstract of JP-A 4 293 923 Mar. 1993. |
Patent Abstracts of Japan, Abstract of JP-A 59 217 726 Apr. 1985. |
Kobayashi et al., translation of JP 44-30751, Dec. 1969. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
178885 |
Jan 1994 |
|