Polyolefin Resin Composition For Insulation With High Breakdown Voltage And Article Molded Therefrom
A polyolefin resin composition is provided that is suitable for use in power cables by virtue of excellent insulation characteristics and to an article molded therefrom. The polyolefin resin composition is excellent in thermal resistance, breakdown voltage, DC insulation, and mechanical properties. Accordingly, the polyolefin resin article prepared therefrom can be advantageously used as an insulation layer of a power cable.
1 . A polyolefin resin composition comprising:
(A) 50 to 100% by weight of an ethylene-propylene block copolymer obtained by polymerization of a propylene homopolymer or an ethylene-propylene random copolymer with an ethylene-propylene rubber copolymer in stages in reactors; and
(B) 0 to 50% by weight of an ethylene-α-olefin rubber copolymer, based on the total weight of components (A) and (B),
wherein a content of each metallic catalyst residue in the ethylene-propylene block copolymer (A) is 5 ppm or less,
a total content of metallic catalyst residues is 50 ppm or less,
a melting temperature (Tm) of the polyolefin resin composition is 150° C. or higher, and
a difference (Tm−Tc) between the melting temperature and a crystallization temperature (Tc) of the polyolefin resin composition is 45° C. or less.
2 . The polyolefin resin composition of claim 1 , wherein the metallic catalyst residue comprises at least one selected from the group consisting of Mg, Ti, Si, and Al.
3 . The polyolefin resin composition of claim 1 , wherein a glass transition temperature of the rubber component in the ethylene-propylene block copolymer (A) appears at −60 to −40° C. when measured by a dynamic mechanical analyzer.
4 . The polyolefin resin composition of claim 1 , wherein an α-olefin in the ethylene-α-olefin rubber copolymer (B) has 3 to 8 carbon atoms.
5 . The polyolefin resin composition of claim 4 , wherein the ethylene-α-olefin rubber copolymer (B) comprises at least one selected from the group consisting of an ethylene-propylene rubber, an ethylene-1-butene rubber, an ethylene-butylene rubber, an ethylene-1-pentene rubber, an ethylene-1-hexene rubber, ethylene-1-heptene rubber, ethylene-1-octene rubber, and an ethylene-4-methyl-1-pentene rubber.
6 . The polyolefin resin composition of claim 1 , wherein a content of α-olefin in the ethylene-α-olefin rubber copolymer (B) is 10 to 90% by weight.
7 . The polyolefin resin composition of claim 1 , which has a melting temperature (Tm) of 150 to 165° C.
8 . The polyolefin resin composition of claim 1 , wherein a glass transition temperature of the rubber component in the polyolefin resin composition appears at −60 to −40° C. when measured by a dynamic mechanical analyzer.
9 . The polyolefin resin composition of claim 1 , which further comprises at least one additive selected from the group consisting of an antioxidant, a neutralizer, a UV stabilizer, a long-term thermal stabilizer, a slip agent, an anti-blocking agent, a weathering stabilizer, an antistatic agent, a lubricant, a nucleating agent, a flame retardant, a pigment, and a dye.
10 . The polyolefin resin composition of claim 9 , wherein the additive is added in an amount of 1.0 part by weight or less based on 100 parts by weight of the polyolefin resin composition.
11 . A polyolefin resin article molded from the polyolefin resin composition according to claim 1 .
12 . The polyolefin resin article of claim 11 , which has a flexural modulus of 600 MPa or less and a brittleness temperature of −40° C. or lower.
13 . The polyolefin resin article of claim 11 , which has a volume resistance of 10 16 Ωcm or more when measured at room temperature.
14 . The polyolefin resin article of claim 11 , which has no accumulation of hetero-space charge in the space charge characteristics measured by a pulse electro acoustic method at room temperature to 60° C.
15 . The polyolefin resin article of claim 11 , which is an insulation layer of a power cable.