IP Library Patent Application 11379306
Patent Application
App. No. 11/379,306

FLAME RETARDANT THERMOPLASTIC POLYCARBONATE COMPOSITIONS

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Patent No.
US None
App. No.
11/379,306
Abstract

A flame retardant thermoplastic composition having excellent physical properties comprises about 50 to about 90 wt. % of a polycarbonate resin; from about 5 to about 35 wt. % of an impact modifier; about 0.5 to about 30 wt. % of a polysiloxane-polycarbonate copolymer comprising about 8 to about 30 wt. % polydimethylsiloxane units or the equivalent molar amount of other diorganosiloxane units; and about 0.5 to about 20 wt. % of a phosphorus-containing flame retardant, each based on the total combined weight of the thermoplastic composition, exclusive of any filler. In one embodiment a sample of the thermoplastic composition having a thickness of 2.5 mm (±10%) achieves a UL94 5VA rating. Thinner samples may also achieve this rating. The compositions are useful in forming flame retardant thin-walled articles.

Claims (36)

1 . A thermoplastic composition, comprising:

about 60 to about 80 wt. % of a polycarbonate resin;

about 2 to about 15 wt. % of an impact modifier;

about 7.5 to about 30 wt. % of a polysiloxane-polycarbonate copolymer comprising about 8 to about 30 wt. % polydimethylsiloxane units or the equivalent molar amount of other diorganosiloxane units; and

about 1 to about 15 wt. % of a phosphorus-containing flame retardant, each based on the total combined weight of the thermoplastic composition, exclusive of any filler,

wherein a molded sample of the composition retains at least 50% of its tensile strength (measured according to ASTM D638) and at least 50% of its impact strength (measured according to ISO 8256, Method A) after 8000 hours aging at 90° C.

2 . The composition of claim 1 , wherein a molded sample of the composition retains at least 90% of its tensile strength (measured according to ASTM D638) after 8000 hours aging at 90° C.

3 . The composition of claim 1 , wherein a molded sample of the composition retains at least 90% of its tensile strength (measured according to ASTM D638) after 8000 hours aging at 95° C.

4 . The composition of claim 1 , wherein a sample of the thermoplastic composition having a thickness of 2.5 mm (±10%) achieves a UL94 5VA rating in the absence of a brominated and/or chlorinated flame retardant.

5 . The composition of claim 1 , wherein a sample of the thermoplastic composition having a thickness of 2.5 mm (±10%) achieves a UL94 5VB rating in the absence of a brominated and/or chlorinated flame retardant.

6 . The composition of claim 5 , wherein a sample of the thermoplastic composition having a thickness of 2.0 mm (±10%) achieves a UL94 5VB rating in the absence of a brominated and/or chlorinated flame retardant.

7 . The composition of claim 1 , having a heat deflection temperature about 75 to about 130° C., measured in accordance with ASTM D648 at 0.45 MPa using 6.4 mm (±3%) thick testing bar.

8 . The composition of claim 1 , wherein the impact modifier comprises an acrylic impact modifier, an ASA impact modifier, a diene impact modifier, an organosiloxane impact modifier, an organosiloxane-branched acrylate impact modifier, an EPDM impact modifier, a styrene-butadiene-styrene impact modifier, a styrene-ethylene-butadiene-styrene impact modifier, an ABS impact modifier, an MBS impact modifier, a glycidyl ester impact modifier, or a combination comprising at least one of the foregoing impact modifiers.

9 . The composition of claim 8 , wherein the impact modifier comprises an ABS impact modifier made by a bulk or solution polymerization process.

10 . An article comprising the composition of claim 1 , wherein the article is capable of achieving UL94 V0 rating at a thickness of 1.5 mm (±10%) or less.

11 . A thermoplastic composition, comprising:

about 60 to about 80 wt. % of a polycarbonate resin;

about 2 to about 15 wt. % of an ABS impact modifier made by a bulk or solution polymerization process;

about 7.5 to about 30 wt. % of a polysiloxane-polycarbonate copolymer comprising about 8 to about 30 wt. % polydimethylsiloxane units or the equivalent molar amount of other diorganosiloxane units; and

about 1 to about 15 wt. % of a phosphorus-containing flame retardant, each based on the total combined weight of the thermoplastic composition, exclusive of any filler,

wherein a molded sample of the composition retains at least 50% of its tensile strength (measured according to ASTM D638) and at least 50% of its impact strength (measured according to ISO 8256, Method A) after 8000 hours aging at 90° C.

12 . The composition of claim 11 , wherein a molded sample of the composition retains at least 90% of its tensile strength (measured according to ASTM D638) after 8000 hours aging at 90° C.

13 . The composition of claim 11 , wherein a molded sample of the composition retains at least 90% of its tensile strength (measured according to ASTM D638) after 8000 hours aging at 95° C.

14 . An article comprising the composition of claim 11 , wherein the article is capable of achieving UL94 V0 rating at a thickness of 1.5 mm (±10%) or less.

15 . The composition of claim 11 , wherein a sample of the thermoplastic composition having a thickness of 2.0 mm (±10%) achieves a UL94 5VB rating in the absence of a brominated and/or chlorinated flame retardant.

16 . A thermoplastic composition, comprising:

about 60 to about 80 wt. % of a polycarbonate resin;

about 2 to about 10 wt. % of an ABS impact modifier made by a bulk or solution polymerization process;

about 7.5 to about 30 wt. % of a polysiloxane-polycarbonate copolymer comprising about 8 to about 30 wt. % polydimethylsiloxane units or the equivalent molar amount of other diorganosiloxane units; and

about 1 to about 15 wt. % of a phosphorus-containing flame retardant, each based on the total combined weight of the thermoplastic composition, exclusive of any filler,

wherein a molded sample of the composition retains at least 50% of its tensile strength (measured according to ASTM D638) and at least 50% of its impact strength (measured according to ISO 8256, Method A) after 8000 hours aging at 90° C.

17 . The composition of claim 16 , wherein a molded sample of the composition retains at least 90% of its tensile strength (measured according to ASTM D638) after 8000 hours aging at 90° C.

18 . The composition of claim 16 , wherein a molded sample of the composition retains at least 90% of its tensile strength (measured according to ASTM D638) after 8000 hours aging at 95° C.

19 . An article comprising the composition of claim 16 , wherein the article is capable of achieving UL94 V0 rating at a thickness of 1.5 mm (±10%) or less.

20 . The composition of claim 16 , wherein a sample of the thermoplastic composition having a thickness of 2.0 mm (±10%) achieves a UL94 5VB rating in the absence of a brominated and/or chlorinated flame retardant.

21 . The composition of claim 1 , further comprising from about 0.1 to about 10 wt. % of a filler, an antidrip agent, a heat stabilizer, a light stabilizer, an antioxidant, a plasticizer, an antistat agent, a mold release agent, a UV absorber, a lubricant, a pigment, a dye, a colorant, a low molecular weight hydrocarbon resin, or combinations of two or more of the foregoing.

Assignments (3)
SECURITY AGREEMENT Recorded Aug 18, 2008
From: SABIC INNOVATIVE PLASTICS IP B.V.
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 021423/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 1, 2008
From: GENERAL ELECTRIC COMPANY
To: SABIC INNOVATIVE PLASTICS IP B.V.
Reel/Frame 020985/0551 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2006
From: SIRIPURAPU, SRINIVAS; BASHA, MOHAMMAD IMDAD; PRAVEENRAJ, A.V.B.
To: GENERAL ELECTRIC COMPANY
Reel/Frame 017582/0657 →