IP Library Granted Patent US 7,655,714
Granted Patent B2
US 7,655,714 · App. 11/862,573 · Granted Feb 2, 2010

Flame-retardant poly(arylene ether) composition and its use as a covering for coated wire

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Quick Facts
Patent No.
US 7,655,714
App. No.
11/862,573
Granted
Feb 2, 2010
Kind
B2
Abstract

A flame retardant poly(arylene ether) composition is described. In addition to the poly(arylene ether), the composition includes a polyolefin component, and a flame retardant composition that includes a metal dialkyl phosphinate and a nitrogen-containing flame retardant but excludes a liquid triaryl phosphate. The polyolefin component can be a polyolefin polymer and/or the polyolefin block of a poly(alkenyl aromatic)-polyolefin block copolymer. The composition is particularly suitable as a replacement for poly(vinyl chloride) in insulation for wire and cable.

Claims (102)

1. A thermoplastic composition, comprising:

20 to 50 weight percent of a poly(arylene ether);

25 to 57 weight percent of total polyolefin; wherein total polyolefin consists of polyolefins and the polyolefin blocks of block copolymers comprising a poly(alkenyl aromatic) block and a polyolefin block; wherein the block copolymers consist of block copolymers comprising about 20 to 40 weight percent of poly(alkenyl aromatic) content; and

3 to 25 weight percent of a flame retardant composition comprising 1 to 15 weight percent of a metal dialkyl phosphinate; and 1 to 20 weight percent of a nitrogen-containing flame retardant selected from the group consisting of melamine phosphate, melamine pyrophosphate, melamine polyphosphates, and mixtures thereof; wherein the flame retardant composition excludes triaryl phosphates that are liquids at one atmosphere and at least one temperature in the range 25 to 50° C.;

wherein all weight percents are based on the total weight of the thermoplastic composition;

wherein the poly(arylene ether) and total polyolefin are present in a weight ratio of 0.56:1 to 1.2:1;

wherein the nitrogen-containing flame retardant and the metal dialkyl phosphinate are present in a ratio of 0.2:1 to 5:1; and

wherein a test sample coated wire exhibits

a tensile stress at break of at least 10 megapascals, measured at 23° C. according to UL 1581, Section 470,

a tensile elongation at break of at least 100 percent, measured at 23° C. according to UL 1581, Section 470, and

a passing flame test rating according to UL 1581, Section 1080,

wherein the test sample coated wire consists of an AWG 24 conductor having a nominal cross sectional area of 0.205 millimeter 2 , and a tubular covering comprising the thermoplastic composition and having a nominal outer diameter of 2 millimeters.

2. The thermoplastic composition of claim 1 , wherein the test sample coated wire exhibits

a tensile stress at break of 10 to 30 megapascals, measured at 23° C. according to UL1581, Section 470, and

a tensile elongation at break of 100 to 350 percent, measured at 23° C. according to UL1581, Section 470.

3. The thermoplastic composition of claim 1 , wherein the test sample coated wire further exhibits a heat deformation of 5 to 50 percent, measured at 121° C. and a 250 gram load according to UL 1580.

4. The thermoplastic composition of claim 1 , wherein the flame retardant composition consists of the metal dialkyl phosphinate and the nitrogen-containing flame retardant.

5. The thermoplastic composition of claim 1 , wherein the flame retardant composition further comprises 0.05 to 2.5 weight percent zinc borate.

6. The thermoplastic composition of claim 1 , further comprising 3 to 20 weight percent of total poly(alkenyl aromatic); wherein total poly(alkenyl aromatic) consists of poly(alkenyl aromatic)s and the poly(alkenyl aromatic) content of the block copolymers.

7. The thermoplastic composition of claim 1 ,

wherein the thermoplastic composition comprises 37 to 47 weight percent of the poly(arylene ether);

wherein the poly(arylene ether) is a poly(2,6-dimethyl-1,4-phenylene ether) having an intrinsic viscosity of 0.3 to 0.6 deciliter per gram measured in chloroform at 25° C.;

wherein the thermoplastic composition comprises 34 to 43 weight percent of total polyolefin;

wherein the total polyolefin consists of polypropylene, polybutene, ethylene-propylene copolymer, a poly(ethylene-co-propylene) block of a block copolymer comprising a polystyrene block and a poly(ethylene-co-propylene) block, and a poly(ethylene-co-butylene) block of a block copolymer comprising a polystyrene block and a poly(ethylene-co-butylene) block;

wherein the thermoplastic composition comprises 4 to 12 weight percent of the flame retardant composition consisting of

2 to 6 weight percent of aluminum tris(diethyl phosphinate), and

2 to 6 weight percent of melamine polyphosphate;

wherein the poly(arylene ether) and total polyolefin are present in a weight ratio of 0.8 to 1.2; and

wherein the test sample coated wire exhibits

a tensile stress at break of 10 to 25 megapascals, measured at 23° C. according to UL1581, Section 470, and

a tensile elongation at break of 200 to 300 percent, measured at 23° C. according to UL1581, Section 470.

8. An extruded article, comprising:

the product of extrusion molding a composition comprising

20 to 50 weight percent of a poly(arylene ether);

25 to 57 weight percent of total polyolefin; wherein total polyolefin consists of polyolefins and the polyolefin blocks of block copolymers comprising a poly(alkenyl aromatic) block and a polyolefin block; wherein the block copolymers consist of block copolymers comprising about 20 to 40 weight percent of poly(alkenyl aromatic) content; and

3 to 25 weight percent of a flame retardant composition comprising 1 to 15 weight percent of a metal dialkyl phosphinate; and 1 to 20 weight percent of a nitrogen-containing flame retardant selected from the group consisting of melamine phosphate, melamine pyrophosphate, melamine polyphosphates, and mixtures thereof; wherein the flame retardant composition excludes triaryl phosphates that are liquids at one atmosphere and at least one temperature in the range 25 to 50° C.;

wherein all weight percents are based on the total weight of the thermoplastic composition;

wherein the poly(arylene ether) and total polyolefin are present in a weight ratio of 0.56:1 to 1.2:1;

wherein the nitrogen-containing flame retardant and the metal dialkyl phosphinate are present in a ratio of 0.2:1 to 5:1; and

wherein a test sample coated wire exhibits

a tensile stress at break of at least 10 megapascals, measured at 23° C. according to UL 1581, Section 470,

a tensile elongation at break of at least 100 percent, measured at 23° C. according to UL 1581, Section 470, and

a passing flame test rating according to UL 1581, Section 1080,

wherein the test sample coated wire consists of an AWG 24 conductor having a nominal cross sectional area of 0.205 millimeter 2 , and a tubular covering comprising the thermoplastic composition and having a nominal outer diameter of 2 millimeters.

9. The extruded article of claim 8 , wherein the test sample coated wire exhibits

a tensile stress at break of 10 to 30 megapascals, measured at 23° C. according to UL1581, Section 470, and

a tensile elongation at break of 100 to 350 percent, measured at 23° C. according to UL1581, Section 470.

10. The extruded article of claim 8 , wherein the flame retardant composition consists of the metal dialkyl phosphinate and the nitrogen-containing flame retardant.

11. The extruded article of claim 8 ,

wherein the thermoplastic composition comprises 37 to 47 weight percent of the poly(arylene ether);

wherein the poly(arylene ether) is a poly(2,6-dimethyl-1,4-phenylene ether) having an intrinsic viscosity of 0.3 to 0.6 deciliter per gram measured in chloroform at 25° C.;

wherein the thermoplastic composition comprises 34 to 43 weight percent of total polyolefin;

wherein the total polyolefin consists of polypropylene, polybutene, ethylene-propylene copolymer, a poly(ethylene-co-propylene) block of a block copolymer comprising a polystyrene block and a poly(ethylene-co-propylene) block, and a poly(ethylene-co-butylene) block of a block copolymer comprising a polystyrene block and a poly(ethylene-co-butylene) block;

wherein the thermoplastic composition comprises 4 to 12 weight percent of the flame retardant composition consisting of

2 to 6 weight percent of aluminum tris(diethyl phosphinate), and

2 to 6 weight percent of melamine polyphosphate;

wherein the poly(arylene ether) and total polyolefin are present in a weight ratio of 0.8 to 1.2; and

wherein the test sample coated wire exhibits

a tensile stress at break of 10 to 25 megapascals, measured at 23° C. according to UL1581, Section 470, and

a tensile elongation at break of 200 to 300 percent, measured at 23° C. according to UL1581, Section 470.

12. A coated wire, comprising:

a conductor, and

a covering disposed on the conductor;

wherein the covering comprises a composition comprising

20 to 50 weight percent of a poly(arylene ether);

25 to 57 weight percent of total polyolefin; wherein total polyolefin consists of polyolefins and the polyolefin blocks of block copolymers comprising a poly(alkenyl aromatic) block and a polyolefin block; wherein the block copolymers consist of block copolymers comprising about 20 to 40 weight percent of poly(alkenyl aromatic) content; and

3 to 25 weight percent of a flame retardant composition comprising 1 to 15 weight percent of a metal dialkyl phosphinate; and 1 to 20 weight percent of a nitrogen-containing flame retardant selected from the group consisting of melamine phosphate, melamine pyrophosphate, melamine polyphosphates, and mixtures thereof wherein the flame retardant composition excludes triaryl phosphates that are liquids at one atmosphere and at least one temperature in the range 25 to 50° C.;

wherein all weight percents are based on the total weight of the thermoplastic composition;

wherein the poly(arylene ether) and total polyolefin are present in a weight ratio of 0.56:1 to 1.2:1;

wherein the nitrogen-containing flame retardant and the metal dialkyl phosphinate are present in a ratio of 0.2:1 to 5:1; and

wherein a test sample coated wire exhibits

a tensile stress at break of at least 10 megapascals, measured at 23° C. according to UL1581, Section 470,

a tensile elongation at break of at least 100 percent, measured at 23° C. according to UL1581, Section 470, and

a passing flame test rating according to UL 1581, Section 1080,

wherein the test sample coated wire consists of an AWG 24 conductor having a nominal cross sectional area of 0.205 millimeter 2 , and a tubular covering comprising the thermoplastic composition and having a nominal outer diameter of 2 millimeters.

13. The coated wire of claim 12 , wherein the test sample coated wire exhibits

a tensile stress at break of 10 to 30 megapascals, measured at 23° C. according to UL1581, Section 470, and

a tensile elongation at break of 100 to 350 percent, measured at 23° C. according to UL1581, Section 470.

14. The coated wire of claim 12 , wherein the flame retardant composition consists of the metal dialkyl phosphinate and the nitrogen-containing flame retardant.

15. The coated wire of claim 12 ,

wherein the thermoplastic composition comprises 37 to 47 weight percent of the poly(arylene ether);

wherein the poly(arylene ether) is a poly(2,6-dimethyl-1,4-phenylene ether) having an intrinsic viscosity of 0.3 to 0.6 deciliter per gram measured in chloroform at 25° C.;

wherein the thermoplastic composition comprises 34 to 43 weight percent of total polyolefin;

wherein the total polyolefin consists of polypropylene, polybutene, ethylene-propylene copolymer, a poly(ethylene-co-propylene) block of a block copolymer comprising a polystyrene block and a poly(ethylene-co-propylene) block, and a poly(ethylene-co-butylene) block of a block copolymer comprising a polystyrene block and a poly(ethylene-co-butylene) block;

wherein the thermoplastic composition comprises 4 to 12 weight percent of the flame retardant composition consisting of

2 to 6 weight percent of aluminum tris(diethyl phosphinate), and

2 to 6 weight percent of melamine polyphosphate;

wherein the poly(arylene ether) and total polyolefin are present in a weight ratio of 0.8 to 1.2; and

wherein the test sample coated wire exhibits

a tensile stress at break of 10 to 25 megapascals, measured at 23° C. according to UL1581, Section 470, and

a tensile elongation at break of 200 to 300 percent, measured at 23° C. according to UL1581, Section 470.

16. A thermoplastic composition, comprising:

20 to 50 weight percent of a poly(arylene ether);

25 to 57 weight percent of total polyolefin; wherein total polyolefin consists of polyolefins and the polyolefin blocks of block copolymers comprising a poly(alkenyl aromatic) block and a polyolefin block; wherein the block copolymers consist of block copolymers comprising about 20 to 40 weight percent of poly(alkenyl aromatic) content; and

6 to 25 weight percent of a flame retardant composition comprising 1 to 15 weight percent of a metal dialkyl phosphinate; and 1 to 20 weight percent of a nitrogen-containing flame retardant selected from the group consisting of melamine phosphate, melamine pyrophosphate, melamine polyphosphates, and mixtures thereof; wherein the flame retardant composition excludes triaryl phosphates that are liquids at one atmosphere and at least one temperature in the range 25 to 50° C.;

wherein all weight percents are based on the total weight of the thermoplastic composition;

wherein the poly(arylene ether) and total polyolefin are present in a weight ratio of 0.68:1 to 1.2:1;

wherein the metal dialkyl phosphinate and the nitrogen-containing flame retardant are present in a weight ratio of at least 5:1; and

wherein the thermoplastic composition exhibits

a UL 94 Vertical Burning Flame Test rating of V-0 or V-1 at a sample thickness less than or equal to 6.4 millimeters,

a tensile stress at break of at least 5 megapascals measured at 23° C. according to ASTM D638, and

a flexural modulus of 10 to 1,000 megapascals measured at 23° C. according to ASTM D790.

Assignments (8)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE THE APPLICATION NUMBER 15039474 PREVIOUSLY RECORDED AT REEL: 054528 FRAME: 0467. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 23, 2021
From: SABIC GLOBAL TECHNOLOGIES B.V.
To: SHPP GLOBAL TECHNOLOGIES B.V.
Reel/Frame 057453/0680 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 26, 2020
From: SABIC GLOBAL TECHNOLOGIES B.V.
To: SHPP GLOBAL TECHNOLOGIES B.V.
Reel/Frame 054528/0467 →
CHANGE OF NAME Recorded Jun 9, 2017
From: SABIC INNOVATIVE PLASTICS IP B.V.
To: SABIC GLOBAL TECHNOLOGIES B.V.
Reel/Frame 042754/0511 →
RELEASE OF SECURITY INTEREST Recorded Mar 17, 2014
From: CITIBANK, N.A.
To: SABIC INNOVATIVE PLASTICS IP B.V.
Reel/Frame 032459/0798 →
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 Sep 27, 2007
From: QU, WEILI; LI, XIUCUO
To: SABIC INNOVATIVE PLASTICS IP BV
Reel/Frame 019890/0091 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2007
From: QIU, WEILI; LI, XIUCUO; GUO, HUA
To: SABIC INNOVATIVE PLASTICS IP BV
Reel/Frame 019890/0072 →