IP Library Granted Patent US 9,127,110
Granted Patent B2
US 9,127,110 · App. 13/474,692 · Granted Sep 8, 2015

Resin composition, and wire and cable using the same

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Quick Facts
Patent No.
US 9,127,110
App. No.
13/474,692
Granted
Sep 8, 2015
Kind
B2
Abstract

A resin composition includes a silane-crosslinked polyethylene as a main component provided by crosslinking a polyethylene in the presence of a silanol condensation catalyst and water, the polyethylene being graft-copolymerized with a silane compound by a free radical generating agent. The polyethylene has a density of 0.87 to 0.91 g/cm3. The silane compound is included not less than 2 parts by mass relative to 100 parts by mass of the polyethylene. The resin composition includes silicon detected by a fluorescence X-ray at a rate of not less than 0.3 mass % and has a gel fraction of not less than 70%. A mass ratio of the silane compound to the free radical generating agent is not less than 35 and not more than 150.

Claims (24)

1. A wire, comprising:

a conductor extrusion-coated with a covering layer, the covering layer comprising a resin composition including a silane-crosslinked polyethylene as a main component provided by crosslinking a polyethylene selected from the group consisting of an ethylene-hexene copolymer and an ethylene-octene copolymer in presence of a silanol condensation catalyst and water, the polyethylene being graft-copolymerized with a silane compound by a free radical generating agent,

wherein the polyethylene has a density of 0.87 to 0.91 g/cm 3 ,

wherein the silane compound is included not less than 2 parts by mass relative to 100 parts by mass of the polyethylene,

wherein the resin composition includes silicon detected by a fluorescence X-ray at a rate of not less than 0.3 mass % and has a gel fraction of not less than 70%,

wherein a mass ratio of the silane compound to the free radical generating agent is not less than 35 and not more than 150,

wherein Gel fraction=(mass of gel remaining after extraction)/(mass of resin composition before extraction)×100(%), and

wherein the covering layer has a load elongation of not more than 175% and a post-cooling permanent elongation of not more than 15% in JIS (Japanese Industrial Standards) C 3660-2-1-9 hot set testing conditions of an air temperature of 200 degrees C., a load of 20 N/cm 2 , and a load time of 15 minutes.

2. A cable, comprising:

an insulating layer coated conductor extrusion-coated with an outer peripheral sheath layer therearound, the sheath layer comprising a resin composition including a silane-crosslinked polyethylene as a main component provided by crosslinking a polyethylene selected from the group consisting of an ethylene-hexene copolymer and an ethylene-octene copolymer in presence of a silanol condensation catalyst and water, the polyethylene being graft-copolymerized with a silane compound by a free radical generating agent,

wherein the polyethylene has a density of 0.87 to 0.91 g/cm 3 ,

wherein the silane compound is included not less than 2 parts by mass relative to 100 parts by mass of the polyethylene,

wherein the resin composition includes silicon detected by a fluorescence X-ray at a rate of not less than 0.3 mass % and has a gel fraction of not less than 70%,

wherein a mass ratio of the silane compound to the free radical generating agent is not less than 35 and not more than 150,

wherein Gel fraction=(mass of gel remaining after extraction)/(mass of resin composition before extraction)×100(%), and

wherein the sheath layer has a load elongation of not more than 175% and a post-cooling permanent elongation of not more than 15% in JIS(Japanese Industrial Standards) C 3660-2-1-9 hot set testing conditions of an air temperature of 200 degrees C., a load of 20 N/cm 2 , and a load time of 15 minutes.

3. The wire according to claim 1 , wherein the silane-crosslinked polyethylene comprises an uncrosslinked polymer with which the silane compound is not graft-copolymerized.

4. The wire according to claim 1 , wherein the silane compound is included not more than 10 parts by mass relative to 100 parts by mass of the polyethylene.

5. The wire according to claim 4 , wherein a content of the free radical generating agent is in a range of not less than 0.015 part by mass and not more than 0.2 part by mass relative to 100 parts by mass of the polyethylene.

6. The wire according to claim 5 , wherein a content of the silanol condensation catalyst content is in a range of 0.001 to 1.0 part by mass relative to 100 parts by mass of the polyethylene.

7. The cable according to claim 2 , wherein the silane-crosslinked polyethylene comprises an uncrosslinked polymer with which the silane compound is not graft-copolymerized.

8. The cable according to claim 2 , wherein the silane compound is included not more than 10 parts by mass relative to 100 parts by mass of the polyethylene.

9. The cable according to claim 8 , wherein a content of the free radical generating agent is in a range of not less than 0.015 part by mass and not more than 0.2 part by mass relative to 100 parts by mass of the polyethylene.

10. The cable according to claim 9 , wherein a content of the silanol condensation catalyst content is in a range of 0.001 to 1.0 part by mass relative to 100 parts by mass of the polyethylene.

Assignments (2)
MERGER Recorded Feb 15, 2014
From: HITACHI CABLE, LTD.
To: HITACHI METALS, LTD.
Reel/Frame 032268/0297 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2012
From: SUGITA, KEISUKE; KIKUCHI, RYUTARO
To: HITACHI CABLE, LTD.
Reel/Frame 028344/0607 →