Claims
- 1. As a composition of matter, an injection moldable amide-imide copolymer containing about 0.5 to 1.5 percent by weight of titanate esters selected from the group consisting essentially of isopropyl tri(dioctylprophosphato)titanate, isopropyl tri(N-ethylamino-ethylamino)titanate, di(dioctylprophosphato)ethylene titanate, isopropyl tri(isostearoyl)titanate, titanium di(dioctylpyrophosphato)oxyacetate, isopropyl triacryl titanate and isopropyl tri(2-aminobenzoyl)titanate, the copolymer comprising units of: ##STR5## wherein the free carboxyl groups are ortho to one amide group, Z is a trivalent benzene ring or lower-alkyl-substituted trivalent benzene ring, R.sub.1 and R.sub.2 are the same or are different and are divalent aromatic hydrocarbon radicals of from 6 to about 10 carbon atoms or two divalent aromatic hydrocarbon radicals of from 6 to about 10 carbon atoms joined directly or by stable linkages selected from the group consisting of --O--, methylene, --CO--, --SO.sub.2 -- and --S--radicals and wherein said R.sub.1 and R.sub.2 containing units run from about 10 mole percent R.sub.1 containing unit and about 90 mole percent R.sub.2 containing unit to about 90 mole percent R.sub.1 containing unit to about 10 mole percent R.sub.2 containing unit.
- 2. As a composition of matter, an injection moldable amide-imide copolymer containing about 0.5 to 1.5 percent by weight of titanate esters selected from the group consisting essentially of isopropyl tri(dioctylprophosphato)titanate, isopropyl tri(N-ethylamino-ethylamino)titanate, di(dioctylprophosphato)ethylene titanate, isopropyl tri(isostearoyl)titanate, titanium di(dioctylpyrophosphato)oxyacetate, isopropyl triacryl titanate and isopropyl tri(2-aminobenzoyl)titanate, the copolymer comprising units of: ##STR6## wherein one carbonyl group is meta to and one carbonyl group is para to each amide group and wherein Z is a trivalent benzene ring or lower-alkyl-substituted trivalent benzene ring, R.sub.1 and R.sub.2 are different and are divalent aromatic hydrocarbon radicals of from 6 to about 10 carbon atoms or two divalent aromatic hydrocarbon radicals of from 6 to about 10 carbon atoms joined directly or by stable linkages selected from the group consisting of --O--, methylene, --CO--, --SO.sub.2 --, and --S-- radicals and wherein said R.sub.1 and R.sub.2 containing units run from about 10 mole percent R.sub.1 containing unit and about 90 mole percent R.sub.2 containing unit to about 90 mole percent R.sub.1 containing unit and about 10 mole percent R.sub.2 containing unit.
- 3. As a composition of matter, an injection moldable copolymer containing about 0.5 to 1.5 percent by weight of titanate esters, selected from the group consisting essentially of isopropyl tri(dioctylprophosphato)titanate, isopropyl tri(N-ethylamino-ethylamino)titanate, di(dioctylprophosphato)ethylene titanate, isopropyl tri(isostearoyl)titanate, titanium di(dioctylpyrophosphato)oxyacetate, isopropyl triacryl titanate and isopropyl tri(2-aminobenzoyl)titanate, the copolymer comprising A units of: ##STR7## wherein the free carboxyl groups are ortho to one amide group and B units of: ##STR8## wherein one carbonyl group is meta to and one carbonyl group is para to each amide group and wherein Z is a trivalent benzene ring or lower-alkyl-substituted trivalent benzene ring, R.sub.1 and R.sub.2 are the same or are different and are divalent aromatic hydrocarbon radicals of from 6 to about 10 carbon atoms or two divalent aromatic hydrocarbon radicals of from 6 to about 10 carbon atoms joined directly or by stable linkages selected from the group consisting of --O--, methylene, --CO--, --SO.sub.2 -- and --S-- radicals and wherein the proportions of A and B units run from about 1 mole percent A units and about 99 mole percent B units to about 99 mole percent A units and about 1 mole percent B units and wherein the R.sub.1 and R.sub.2 containing components of the A and B units run from about 10 mole percent R.sub.1 containing components and about 90 mole percent R.sub.2 containing components to about 90 mole percent R.sub.1 containing components and about 10 mole percent R.sub.2 containing components.
- 4. The copolymer of claim 1 wherein R.sub.1 is ##STR9##
- 5. The copolymer of claim 2 wherein R.sub.1 is ##STR10##
- 6. The copolymer of claim 3 wherein R.sub.1 is ##STR11##
- 7. The copolymer of claim 1 wherein Z is a trivalent benzene ring, R.sub.1 is ##STR12## and wherein the concentration range runs from about 30 mole percent of the R.sub.1 containing units and about 70 mole percent of the R.sub.2 containing units to about 70 mole percent of the R.sub.1 containing units and about 30 mole percent of the R.sub.2 containing units.
- 8. The copolymer of claim 2 wherein Z is a trivalent benzene ring, R.sub.1 is ##STR13## and wherein the concentration range runs from about 30 mole percent of the R.sub.1 containing units and about 70 mole percent of the R.sub.2 containing units to about 70 mole percent of the R.sub.1 containing units and about 30 mole percent of the R.sub.2 containing units.
- 9. The copolymer of claim 3 wherein Z is a trivalent benzene ring, R.sub.1 is ##STR14## and wherein the concentration range runs from about 30 mole percent of the R.sub.1 containing units and about 70 mole percent of the R.sub.2 containing units to about 70 mole percent of the R.sub.1 containing units and about 30 mole percent of the R.sub.2 containing units.
BACKGROUND OF THE INVENTION
This is a continuation-in-part of Ser. No. 283,438 filed July 15, 1981.
US Referenced Citations (17)
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
283438 |
Jul 1981 |
|