Polyvinyl chloride resin composition for automotive electric wire, and ultrathin-wall low-voltage electric wire for automobile
The polyvinyl chloride resin composition for automotive electric wire of the present invention comprises (A) 100 parts by weight of polyvinyl chloride and, incorporated thereinto, (B) 24.0-26.0 parts by weight of a trimellitic-acid-based ester plasticizer, (C) 5-10 parts by weight of a non-lead stabilizer, (D) 2-10 parts by weight of a reinforcing agent, (E) 2-8 parts by weight of an impact absorber, and (F) 0.3-1.2 parts by weight of a processing aid, and has a Shore D hardness of 68 or higher and a cold resistance, as a property of the material, of −10° C. or below.
1. A polyvinyl chloride resin composition for an automotive electric wire,
which comprises (A) 100 parts by weight of polyvinyl chloride and, incorporated thereinto, (B) 24.0-26.0 parts by weight of a trimellitic-acid-based ester plasticizer, (C) 5-10 parts by weight of a non-lead stabilizer, (D) 2-10 parts by weight of a reinforcing agent including 1-3 parts by weight of synthetic calcium carbonate and 1-7 parts by weight of fine-powder silica, (E) 2-8 parts by weight of methyl methacrylate/butadiene/styrene (MBS) as an impact absorber, and (F) 0.3-1.2 parts by weight of a processing aid including 0.2-0.8 parts by weight of a methyl methacrylate copolymer and 0.1-0.4 parts by weight of a polyethylene wax, and
which has a Shore D hardness of 68 or higher and a cold resistance, as a property of the material, of −10° C. or below.
2. An ultrathin-wall low-voltage electric wire for an automobile, which is obtained by extrusion coating in a thickness of 0.15-0.25 mm using a polyvinyl chloride resin composition which comprises (A) 100 parts by weight of polyvinyl chloride and, incorporated thereinto, (B) 24.0-26.0 parts by weight of a trimellitic-acid-based ester plasticizer, (C) 5-10 parts by weight of a non-lead stabilizer, (D) 2-10 parts by weight of a reinforcing agent including 1-3 parts by weight of synthetic calcium carbonate and 1-7 parts by weight of fine-powder silica, (E) 2-8 parts by weight of methyl methacrylate/butadiene/styrene (MBS) as an impact absorber, and (F) 0.3-1.2 parts by weight of a processing aid including 0.2-0.8 parts by weight a methyl methacrylate copolymer and 0.1-0.4 parts by weight of a polyethylene wax, and
which has a Shore D hardness of 68 or higher and a cold resistance, as a property of the material, of −10° C. or below.
3. A polyvinyl chloride resin composition for an automotive electric wire,
which comprises (A) 100 parts by weight of polyvinyl chloride and, incorporated thereinto, (B) 26.0-28.0 parts by weight of a trimellitic-acid-based ester plasticizer, (C) 5-10 parts by weight of a non-lead stabilizer, (D) 2-10 parts by weight of a reinforcing agent including 1-3 parts by weight of synthetic calcium carbonate and 1-7 parts by weight of fine-powder silica, (E) 2-8 parts by weight of methyl methacrylate/butadiene/styrene (MBS) as an impact absorber, and (F) 0.3-1.2 parts by weight of a processing aid including 0.2-0.8 parts by weight of a methyl methacrylate copolymer and 0.1-0.4 parts by weight of a polyethylene wax, and
which has a Shore D hardness of 63-67 and a cold resistance of −20° C. to −12° C.
4. A ultrathin-wall low-voltage electric wire for an automobile, which is obtained by extrusion coating in a thickness of 0.15-0.25 mm using a polyvinyl chloride resin composition which comprises (A) 100 parts by weight of polyvinyl chloride and, incorporated thereinto, (B) 26.0-28.0 parts by weight of a trimellitic-acid-based ester plasticizer, (C) 5-10 parts by weight of a non-lead stabilizer, (D) 2-10 parts by weight of a reinforcing agent including 1-3 parts by weight of synthetic calcium carbonate and 1-7 parts by weight of fine-powder silica, (E) 2-8 parts by weight of methyl methacrylate/butadiene/styrene (MB S) as an impact absorber, and (F) 0.3-1.2 parts by weight of a processing aid including 0.2-0.8 parts by weight of a methyl methacrylate copolymer and 0.1-0.4 parts by weight of a polyethylene wax, and
which has a Shore D hardness of 63-67 and a cold resistance of −20° C. to −12° C.