Abstract:
The present invention relates to a poly(arylene ether) resin composition and a cable coated with the same. More particularly, the present invention relates to a poly(arylene ether) resin composition, including 20 to 40 % by weight of a poly (arylene ether) resin, 15 to 35 % by weight of a low-molecular weight styrene-based block copolymer having a weight-average molecular weight of 90, 000 g/mol or less, 10 to 30 % by weight of a high-molecular weight styrene-based block copolymer having a weight-average molecular weight of 95, 000 g/mol or more, 1 to 20 % by weight of a flame retardant, and 0 to 20 % by weight of an additive. In accordance with the present invention, a poly (arylene ether) resin composition having superior flame retardancy, tensile strength, flexibility, extrusion processability, elongation, and appearance characteristics and a cable coated with the same are provided. [Representative Figure] FIG. 1 .
Abstract:
A polycarbonate resin composition which has excellent low-temperature impact resistance and flowability high enough to enable thin molding and provides a coated molded article having a good appearance and high impact resistance. The resin composition comprises 100 parts by weight of a resin component including a polycarbonate resin (component A) and a polycarbonate-polydiorganosiloxane copolymer resin (component B) and 0.5 to 2.5 parts by weight of a polyolefin resin (component C).
Abstract:
The present invention relates to a thermoplastic composition comprising: a) a1) a thermoplastic resin and a2) a silicon containing rubber and/or b) a polysiloxane-polycarbonate copolymer; and c) a metal (oxy)hydroxide with BET surface area of at least 10 as determined by DIN ISO 9277: 2010.
Abstract:
The present invention relates to halogen-free flame retardant compositions essentially comprising polyamide polymers (preferred is PA6), at least an Hypophosphorous acid metal salt (preferred is Aluminium hypophosphite), at least an organic phosphinate metal salt (preferred is Aluminium Di Ethyl Phosphinate), at least a Nitrogen based flame retardant agent (preferred is Melamine Cyanurate), at least an organic polyhydric polymer (preferred is EVOH) and optionally further conventional components. Such compositions are highly flame retarded at low thickness and have high Glow Wire temperature resistance.
Abstract:
A resin composition is provided which is excellent in impact resistance, heat resistance, moldability, and chemical resistance and which is suitable, for example, as a molding material for a portable terminal housing. An aromatic polycarbonate composite resin composition contains, with respect to 100 parts by mass of a resin component formed of 60 to 90 parts by mass of an aromatic polycarbonate resin (A) and 10 to 40 parts by mass of a polyester resin (B), 3 to 20 parts by mass of a graft copolymer (C) formed by graft polymerization of a (meth)acrylic acid ester compound with a diene-based rubber and 0.005 to 0.1 parts by mass of a stabilizer (D). The graft copolymer (C) has a sulfur content of 100 to 1,500 ppm and an average particle diameter of 70 to 240 nm, and the stabilizer (D) is an organic phosphate compound represented by the following general formula (I). O=P(OH) m (OR) 3-m (I) R represents an alkyl group or an aryl group. m represents 0 to 2.
Abstract translation:提供耐冲击性,耐热性,成型性和耐化学性优异的树脂组合物,并且该树脂组合物例如适合作为便携式终端壳体的模制材料。 芳香族聚碳酸酯系复合树脂组合物含有相对于由芳香族聚碳酸酯树脂(A)60〜90质量份和聚酯树脂(B)10〜40质量份形成的树脂成分100质量份, (甲基)丙烯酸酯化合物与二烯系橡胶接枝聚合而形成的接枝共聚物(C)3〜20质量份和稳定剂(D)0.005〜0.1质量份。 接枝共聚物(C)的硫含量为100〜1500ppm,平均粒径为70〜240nm,稳定剂(D)为下述通式(I)所示的有机磷酸酯化合物。 O = P(OH)m(OR)3-m(I)R表示烷基或芳基。 m表示0至2。
Abstract:
Disclosed is a flame-retardant resin composition comprising, as a polymer component: 50 to 95% by mass of copolymer (A) of ethylene and a vinyl ester, 5 to 50% by mass of propylene copolymer (B) wherein the content of an ±-olefin except for propylene is 10 to 60% by mole, and 0 to 40% by mass of polypropylene (C) wherein the content of an ±-olefin except for propylene is less than 10% by mole; wherein the total of components (A), (B), and (C) is 100% by mass; and further comprising, with respect to 100 parts by mass of the total of components (A), (B), and (C): 50 to 350 parts by mass of metal hydroxide (D), 0.1 to 50 parts by mass of zinc borate (E), and 0.1 to 50 parts by mass of powdered silicone (F); wherein the mass ratio [D/(E+F)] of component (D) with respect to the total amount of components (E) and (F) is 15 or less, and is preferably the above-mentioned flame-retardant resin composition comprising 15% by mass or more of component (B), or comprising 10% by mass or more of component (B) and 1% by mass or more of polypropylene (C); further satisfying following conditions (i) and (2): (1) the Shore D hardness measured according to ASTM D2240 is 40 to 65; and (ii) the tensile breaking elongation of a press sheet with a thickness of 2 mm measured according to JIS K7113-2 is 100 % or more.
Abstract:
A surface physical property modifier composition includes (A) a wax, (B) a vinyl (co)polymer, and (C) an aliphatic hydrocarbon having a carbon number of 5 to 14. Component (A) is set to be at least one selected from the group consisting of (a1) paraffin wax, (a2) microcrystalline wax, (a3) Fischer-Tropsch wax, and (a4) polyethylene wax, and component (B) is produced from at least one of (b1) a (meth)acrylonitrile, (b2) a (meth)acrylic acid having a carbon number of 1 to 4, (b3) a hydroxyethyl (meth)acrylate or hydroxypropyl (meth)acrylate, (b4) styrene, and (b5) predetermined (meth)acrylic acid alkyl esters. Component (A) is 50 to 98 parts by mass relative to 100 parts by mass of the total of (A) and (B), and component (C) is 0.001 to 1 percent by mass relative to the total amount of (A).
Abstract:
Provided in the present invention are a halogen-free epoxy resin composition, prepreg and laminate using the same, the halogen-free epoxy resin composition comprising: (A) a halogen-free epoxy resin; (B) a crosslinking agent; and (C) a phosphorous-containing phenolic resin, the phosphorous-containing phenolic resin being formed by a synthesis of phenol and formaldehyde with dicyclopentadiene phenol, and being substituted by 9,10-dihydro-9-oxa-10-phosphapheanthrene-10-oxide or a derivative thereof The prepreg and laminate prepared from the halogen-free epoxy resin composition have a high heat resistance, a low dielectric constant, a low dielectric loss factor and a low water absorption rate, and achieve halogen-free flame retardance.