FLAME-RETARDANT HALOGEN-FREE POLY(PHENYLENE ETHER) COMPOSITIONS
Disclosed are polymer compositions, comprising: (a) 10 to 40 weight percent of a poly(phenylene ether)-polysiloxane copolymer; (b) 5 to 25 weight percent of a hydrogenated block copolymer of an alkenyl aromatic compound and a conjugated diene; (c) 0 to 10 weight percent of a polybutene; (d) 30 to 60 weight percent of magnesium hydroxide; (e) 0 to 10 weight percent of an anti-UV agent; (f) 1 to 40 weight percent of a copolymer of ethylene and a C 3 -C 12 alpha-olefin; and (g) 0 to 30 weight percent of a polyolefin homopolymer.
1 . A polymer composition, comprising:
(a) 10 to 40 weight percent of a poly(phenylene ether)-polysiloxane copolymer; wherein the poly(phenylene ether)-polysiloxane copolymer is a mixture of a poly(phenylene ether) homopolymer and a poly(phenylene ether)-poly(phenylene ether)-polysiloxane block copolymer;
(b) 5 to 25 weight percent of a hydrogenated block copolymer of an alkenyl aromatic compound and a conjugated diene;
(c) 0 to 10 weight percent of a polybutene;
(d) 30 to 60 weight percent of magnesium hydroxide;
(e) 0 to 10 weight percent of an anti-UV agent;
(f) 1 to 40 weight percent of a copolymer of ethylene and a C 3 -C 12 alpha-olefin; and
(g) 0 to 30 weight percent of a polyolefin homopolymer.
2 . (canceled)
3 . The composition of claim 1 , wherein the poly(phenylene ether)-polysiloxane copolymer has an intrinsic viscosity of 0.385-0.425 dL/g and 4-6 percent siloxane incorporation.
4 . The composition of claim 3 , wherein the poly(phenylene ether)-poly(phenylene ether)-polysiloxane block copolymer comprises a poly(phenylene ether) block comprising phenylene units having the structure
and a polysiloxane block having the structure
5 . The composition of claim 1 , wherein the anti-UV agent is present and selected from the group consisting of a benzotriazole-type UV absorber, a triazine-type UV absorber, a hindered amine light stabilizer, and combinations thereof.
6 . The composition of claim 1 , wherein the magnesium hydroxide is a high purity magnesium hydroxide that has been surface treated with an amino polysiloxane.
7 . The composition of claim 1 ,
wherein the poly(phenylene ether)-poly(phenylene ether)-polysiloxane block copolymer comprise a poly(phenylene ether) block comprising phenylene units having the structure
and a polysiloxane block having the structure
and wherein the poly(phenylene ether)-poly(phenylene ether)-polysiloxane copolymer has an intrinsic viscosity of 0.385-0.425 dL/g and 4-6 percent siloxane incorporation;
wherein the magnesium hydroxide is a high purity magnesium hydroxide that has been surface treated with an amino polysiloxane; and
wherein the anti-UV agent is present and selected from the group consisting of a benzotriazole-type UV absorber, a triazine-type UV absorber, a hindered amine light stabilizer, and combinations thereof.
8 . The composition of claim 1 ,
wherein the composition comprises 15 to 25 weight percent of the poly(phenylene ether)-polysiloxane copolymer;
wherein the composition comprises 10 to 25 weight percent of the hydrogenated block copolymer of an alkenyl aromatic compound and a conjugated diene;
wherein the composition comprises 3 to 8 weight percent of the polybutene;
wherein the composition comprises 30 to 45 weight percent of the magnesium hydroxide;
wherein the composition comprises 2 to 5 weight percent of the anti-UV agent;
wherein the composition comprises 1 to 10 weight percent of the copolymer of ethylene and a C 3 -C 12 alpha-olefin; and
wherein the composition comprises 1 to 30 weight percent of the polyolefin homopolymer.
9 . The composition of claim 8 , wherein the anti-UV agent is selected from the group consisting of 2-(2H-benzotriazol-2-yl)-4,6-bis(1-methyl-1-phenylethyl)phenol, poly(4-hydroxy-2,2,6,6-tetramethyl-1-piperidine ethanol-alt-1,4-butanedioic acid), 2-[4,6-bis(2,4-dimethylphenyl)-1,3,5-triazin-2-yl]-5-(octyloxy)phenol, and mixtures thereof;
10 . The composition of claim 9 comprising 2 to 6 weight percent of the polyolefin homopolymer,
11 . The composition of claim 10 , further comprising 4 to 8 weight percent of a colorant.
12 . The composition of claim 11 , wherein the colorant comprises TiO 2 .
13 . An extrusion coated article comprising the composition of claim 1
14 . The extrusion coated article of claim 13 , wherein the article is an electrical wire jacketed with the composition of claim 1 .
15 . A process for jacketing an electrical cable or plug, comprising extrusion coating an electrical cable or plug with the composition of claim 1 .
16 . An injection molded article comprising the composition of claim 1 .