IP Library Patent Application 17252148
Patent Application
App. No. 17/252,148

HIGH HEAT RESISTANT IMPACT MODIFIED POLYCARBONATE BLEND

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Patent No.
US None
App. No.
17/252,148
Abstract

High heat resistant impact modified polycarbonate blend for use in the industrial, household and automotive sector comprising (A) 10 to 40 wt.-% ABS graft copolymer; (B) 25 to 50 wt.-% aromatic polycarbonate; (C) 20 to 40 wt.-% omethylstyrene/acrylonitrile copolymer; (D) 10 to 25 wt.-% terpolymer of vinylaromatic monomer, a, 13 ethylenically unsaturated dicarboxylic cyclic anhydride, and Ci-C3-alkyl-(meth)acrylate; and (E) 0.3 to 5 wt.-% further additives and/or processing aids.

Claims (33)

1 - 12 . (canceled)

13 . A thermoplastic molding composition comprising components A, B, C, D, and E:

(A) 10 to 40 wt.-% of at least one graft copolymer (A) consisting of 15 to 60 wt.-% of a graft sheath (A2) and 40 to 85 wt.-% of a graft substrate (A1), wherein (A1) is an agglomerated butadiene rubber latex and wherein (A1) and (A2) sum up to 100 wt.-%, obtained by emulsion polymerization of

styrene and acrylonitrile in a weight ratio of 95:5 to 65:35 to obtain a graft sheath (A2), wherein the styrene and/or acrylonitrile is optionally replaced partially by alpha-methylstyrene, methyl methacrylate, maleic anhydride, or mixtures thereof, in the presence of at least one agglomerated butadiene rubber latex (A1) with a median weight particle diameter D 50 of 150 to 800 nm, where the agglomerated rubber latex (A1) is obtained by agglomeration of at least one starting butadiene rubber latex (S-A1) having a median weight particle diameter D 50 of equal to or less than 120 nm;

(B) 25 to 50 wt.-% of at least one aromatic polycarbonate;

(C) 20 to 40 wt.-% of at least one copolymer (C) of alpha-methylstyrene and acrylonitrile in a weight ratio of from 95:5 to 50:50, wherein the alpha-methylstyrene and/or acrylonitrile is optionally replaced partially by methyl methacrylate, maleic anhydride, and/or 4-phenylstyrene;

(D) 10 to 25 wt.-% of at least one terpolymer (D) of 50 to 84 wt.-% vinylaromatic monomer, 15 to 35 wt.-% a, (3 ethylenically unsaturated dicarboxylic cyclic anhydride, and 1 to 25 wt.-% C 1 -C 3 -alkyl-(meth)acrylate; and

(E) 0.3 to 5 wt.-% of further additives and/or processing aids (E);

where the components A, B, C, D, and E, sum to 100 wt.-%.

14 . The thermoplastic molding composition of claim 13 , comprising:

15 to 35 wt.-% component (A);

28 to 45 wt.-% component (B);

23 to 35 wt.-% component (C);

12 to 22 wt.-% component (D); and

0.4 to 3 wt.-% component (E).

15 . The thermoplastic molding composition of claim 13 , comprising:

18 to 30 wt.-% component (A);

29 to 41 wt.-% component (B);

24 to 32 wt.-% component (C);

13 to 20 wt.-% component (D); and

0.5 to 2 wt.-% component (E).

16 . The thermoplastic molding composition of claim 13 , wherein the terpolymer (D) has a Vicat Softening Temperature (ISO 306, 50N) in the range of from 130 to 150° C.

17 . The thermoplastic molding composition of claim 13 , wherein the terpolymer (D) is a styrene-maleic anhydride-methyl methacrylate terpolymer.

18 . The thermoplastic molding composition of claim 13 , wherein component (C) is a copolymer of alpha-methylstyrene and acrylonitrile in a weight ratio of from 75:25 to 55:45.

19 . The thermoplastic molding composition of claim 13 , wherein component (C) is a copolymer having a molecular weight Mw of from 20,000 to 220,000 g/mol and a melt flow index (MFI) of 5 to 9 g/10 min.

20 . The thermoplastic molding composition of claim 13 , wherein the graft sheath (A2) of graft copolymer (A) is obtained by emulsion polymerization of styrene and acrylonitrile in a weight ratio of 80:20 to 65:35.

21 . The thermoplastic molding composition of claim 13 , wherein the graft copolymer (A) consists of 20 to 50 wt.-% of a graft sheath (A2) and 50 to 80 wt.-% of a graft substrate (A1).

22 . The thermoplastic molding composition of claim 13 , wherein the graft copolymer (A) consists of 30 to 45 wt.-% of a graft sheath (A2) and 55 to 70 wt.-% of a graft substrate (A1).

23 . The thermoplastic molding composition of claim 13 , wherein the polycarbonate (B) is based on 2,2-bis-(4-hydroxyphenyl)-propane.

24 . A process for the preparation of the thermoplastic molding composition of claim 13 by melt mixing the components (A), (B), (C), (D), and (E), at temperatures in the range of from 180° C. to 300° C.

25 . A method of using the thermoplastic molding composition of claim 13 to produce a shaped article.

26 . A shaped article made from the thermoplastic molding composition of claim 13 .

27 . A method of using the thermoplastic molding composition of claim 13 in the industrial, household, and automotive sector.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2022
From: NIESSNER, NORBERT; MICHELS, GISBERT; EISENTRAEGER, FRANK; SONG, HANBOK; MADHAV, SHRIDHAR; GEVARIA, KIRIT; BHARADWAJ, PANKAJ
To: INEOS STYROLUTION GROUP GMBH
Reel/Frame 059100/0071 →
FIRST LIEN INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Apr 30, 2021
From: INEOS STYROLUTION GROUP GMBH
To: HSBC CORPORATE TRUSTEE COMPANY (UK) LIMITED
Reel/Frame 056103/0236 →