CN103943217B - Parallel cable - Google Patents

Parallel cable Download PDF

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Publication number
CN103943217B
CN103943217B CN201410175223.1A CN201410175223A CN103943217B CN 103943217 B CN103943217 B CN 103943217B CN 201410175223 A CN201410175223 A CN 201410175223A CN 103943217 B CN103943217 B CN 103943217B
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China
Prior art keywords
cable
sheath
mineral filler
surrounding
center cable
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CN201410175223.1A
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Chinese (zh)
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CN103943217A (en
Inventor
何成龙
佘晨
何源
杨趁芬
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Guangdong Jiqing Cable Industrial Co., Ltd.
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Wuhu Spaceflight Special Cable Factory Co Ltd
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Abstract

The invention discloses a kind of parallel cable, include center cable and Duo Gen surrounding cables, many surrounding cables are centered around the surrounding of center cable, the sheath of center cable is connected with the sheath one of many surrounding cables, is respectively equipped with steel wire between inherent adjacent two surrounding cables of the sheath of center cable. Present configuration is simple, the sheath of center cable and the sheath one of Duo Gen surrounding cables connect, greatly facilitate multi-cable entirety to bury underground, time saving and energy saving, and relative position is fixed between the sheath of center cable and Duo Gen surrounding cables, will not producing to interfere, good fixing effect, the steel wire in sheath improves bulk strength.

Description

Parallel cable
Technical field
The present invention relates to field of cables, specifically a kind of parallel cable.
Background technology
Cable has power cable, controls cable, compensating cable, shielded cable, high-temperature cable, computer cable, signal cable, coaxial cable, fire-resisting cable, cable for ship, mine cable, aluminium alloy cable etc. They are all made up of sub-thread or stranded conductor and insulating barrier, are used for connecting circuit, electrical equipment etc.
In prior art, when multi-cable is buried underground together, it is necessary to multi-cable is bound together, not only waste time and energy, and fixed effect is also firm not. The shortcoming that traditional cable jacket material also exists poor water resistance.
Summary of the invention
It is an object of the invention to provide a kind of parallel cable, facilitate multi-cable entirety to bury underground, and will not produce between different types of cable to interfere. The cable jacket material water-tolerant of the present invention.
Technical scheme is as follows:
A kind of parallel cable, include center cable and Duo Gen surrounding cables, it is characterized in that: many described surrounding cables are centered around the surrounding of described center cable, the sheath of described center cable is connected with the sheath one of many surrounding cables, is respectively equipped with steel wire between inherent adjacent two surrounding cables of the sheath of center cable.
Described parallel cable, it is characterised in that: the cable core of described center cable is formed by the many conductors being surrounded by outward insulating barrier respectively are mutually stranded.
Described parallel cable, it is characterised in that: in many described surrounding cables, the cable core of every cable is by a conductor or is surrounded by outward that many conductors of insulating barrier are mutually stranded to be formed.
Described sheath material is made up of the raw material of following weight portion: high density polyethylene (HDPE) 65-85, polyphenylene sulfide 15-25, polyethylene terephthalate 10-20, antimony oxide 12-18, Firebrake ZB 5-10, white carbon black N66020-30, OPE 3-5, calcium-zinc composite stabilizing agent 1-2, titanium dioxide 4-6, precipitated calcium carbonate 10-15, stearic acid 2-3, modified mineral filler 8-16, DOTP 10-15, n-butyl sebacate 5-10, Oleum Ricini 6-12, methyl parahydroxybenzoate 2-4, antioxidant 10351-2,
The preparation method of described modified mineral filler is as follows: a, by weight 5-10:3-6:2-4:1 weigh wollastonite, Kaolin, pyrophillite, bauxite mix homogeneously, pulverize, and cross 200-300 mesh sieve, 650-750 DEG C of calcining 20-30min, naturally cools to room temperature;B, the suspension that concentration is 35-45% is made in the making beating that added water by the complex mineral filler of above-mentioned calcination processing, PH to 4-5 is regulated with the hydrochloric acid solution that concentration is 15-20%, heating in water bath is to 70-80 DEG C, 1500-2000rpm speed lapping 10-15min, then it is neutralized to neutrality with the sodium hydroxide solution that concentration is 10-15%, stand 20-30min, filter, filtering residue distilled water wash 2-3 time, add after drying in mixer, under 500-1000rpm high-speed stirred, take the methoxy poly (ethylene glycol) monomethacrylates being equivalent to complex mineral filler weight 3-5%, the Di(dioctylpyrophosphato) ethylene titanate of 0.5-1%, it is slowly added in complex mineral filler with vaporific or droplet form after the poly mix homogeneously of 2-4%, 10-20min is stirred at 40-60 DEG C of temperature, dry, c, take be equivalent to the ethylene-vinyl acetate copolymer of complex mineral filler weight 30-40%, the PAUR of 25-35%, the Dipentaerythritol Ester of 3-5%, 2-4% 2,4,4 '-three chloro-2 '-dihydroxy diphenyl ethers, 4-6% the complex mineral filler that processes with step b of butyl stearate mix homogeneously after together put into double screw extruder and carry out melt blending, then extruding pelletization, naturally cool to room temperature, be modified complex mineral filler.
The preparation method of sheath material of the present invention, comprises the following steps:
(1) high density polyethylene (HDPE), polyphenylene sulfide, polyethylene terephthalate are put into mix homogeneously in kneader, it is subsequently adding DOTP, n-butyl sebacate stirring for a moment, after plasticizer is by basic absorption, add calcium-zinc composite stabilizing agent, OPE, stearic acid, frictionally heat makes material temperature be raised to 75-85 DEG C, adds remaining raw material, when material temperature rises to 95-105 DEG C, material is discharged in cooling mixing machine and lowers the temperature, discharging during to less than 40-45 DEG C;
(2) above-mentioned kneaded raw material being put into extruding pelletization in double screw extruder, screw speed 40-60r/min, processing temperature is 145-175 DEG C;
(3) pack after metering.
Beneficial effects of the present invention:
Present configuration is simple, the sheath of center cable and the sheath one of Duo Gen surrounding cables connect, greatly facilitate multi-cable entirety to bury underground, time saving and energy saving, and relative position is fixed between the sheath of center cable and Duo Gen surrounding cables, will not producing to interfere, good fixing effect, the steel wire in sheath improves bulk strength. Cable jacket material water absorption rate of the present invention is low, water-tolerant, and shrinkage factor is low, good stability of the dimension, corrosion resistance and good, and has mould-proof function.
Accompanying drawing explanation
Fig. 1 is present configuration schematic diagram.
Detailed description of the invention
Referring to Fig. 1, a kind of parallel cable, include center cable 1 and Duo Gen surrounding cables 2, many surrounding cables 2 are centered around the surrounding of center cable 1, the sheath 3 of center cable 1 is connected with sheath 4 one of many surrounding cables 2, is respectively equipped with steel wire 5 between inherent adjacent two surrounding cables of the sheath 3 of center cable 1.
In the present invention, the cable core of center cable 1 is formed by the many conductors being surrounded by outward insulating barrier respectively are mutually stranded; In many surrounding cables 2, the cable core of every cable is by a conductor or is surrounded by outward that many conductors of insulating barrier are mutually stranded to be formed.
Described sheath 3,4 material is made up of the raw material of following weight (kg): high density polyethylene (HDPE) 75, polyphenylene sulfide 15, polyethylene terephthalate 10, antimony oxide 14, Firebrake ZB 8, white carbon black N66025, OPE 4, calcium-zinc composite stabilizing agent 1.5, titanium dioxide 5, precipitated calcium carbonate 12, stearic acid 2.5, modified mineral filler 12, DOTP 10, n-butyl sebacate 8, Oleum Ricini 9, methyl parahydroxybenzoate 3, antioxidant 10351;
The preparation method of described modified mineral filler is as follows: a, by weight 6:3:2:1 weigh wollastonite, Kaolin, pyrophillite, bauxite mix homogeneously, pulverize, and cross 200 mesh sieves, 650 DEG C of calcining 20min, naturally cools to room temperature, b, the suspension that concentration is 45% is made in the making beating that added water by the complex mineral filler of above-mentioned calcination processing, PH to 4.5 is regulated with the hydrochloric acid solution that concentration is 20%, heating in water bath is to 70 DEG C, 1500rpm speed lapping 15min, then it is neutralized to neutrality with the sodium hydroxide solution that concentration is 15%, stand 20min, filter, filtering residue distilled water wash 3 times, add after drying in mixer, under 1000rpm high-speed stirred, take the methoxy poly (ethylene glycol) monomethacrylates being equivalent to complex mineral filler weight 3%, the Di(dioctylpyrophosphato) ethylene titanate of 0.5%, it is slowly added in complex mineral filler with vaporific or droplet form after the poly mix homogeneously of 2%, 10min is stirred at 60 DEG C of temperature, dry, c, take be equivalent to the ethylene-vinyl acetate copolymer of complex mineral filler weight 35%, 30% PAUR, 4% Dipentaerythritol Ester, 3% 2,4,4 '-three chloro-2 '-dihydroxy diphenyl ethers, 56% the complex mineral filler that processes with step b of butyl stearate mix homogeneously after together put into double screw extruder and carry out melt blending, then extruding pelletization, naturally cool to room temperature, be modified complex mineral filler.
The preparation method of sheath 3,4 material, comprises the following steps:
(1) high density polyethylene (HDPE), polyphenylene sulfide, polyethylene terephthalate are put into mix homogeneously in kneader, it is subsequently adding DOTP, n-butyl sebacate stirring for a moment, after plasticizer is by basic absorption, add calcium-zinc composite stabilizing agent, OPE, stearic acid, frictionally heat makes material temperature be raised to 75-85 DEG C, adds remaining raw material, when material temperature rises to 95-105 DEG C, material is discharged in cooling mixing machine and lowers the temperature, discharging during to less than 40-45 DEG C;
(2) above-mentioned kneaded raw material being put into extruding pelletization in double screw extruder, screw speed 40-60r/min, processing temperature is 145-175 DEG C;
(3) pack after metering.
After testing, the results of property such as following table of sheath 3,4 material prepared:

Claims (1)

1. a parallel cable, include center cable and Duo Gen surrounding cables, it is characterized in that: many described surrounding cables are centered around the surrounding of described center cable, the sheath of described center cable is connected with the sheath one of many surrounding cables, is respectively equipped with steel wire between inherent adjacent two surrounding cables of the sheath of center cable; The cable core of described center cable is formed by the many conductors being surrounded by outward insulating barrier respectively are mutually stranded;
Described sheath material is made up of the raw material of following weight portion: high density polyethylene (HDPE) 65-85, polyphenylene sulfide 15-25, polyethylene terephthalate 10-20, antimony oxide 12-18, Firebrake ZB 5-10, white carbon black N66020-30, OPE 3-5, calcium-zinc composite stabilizing agent 1-2, titanium dioxide 4-6, precipitated calcium carbonate 10-15, stearic acid 2-3, modified mineral filler 8-16, DOTP 10-15, n-butyl sebacate 5-10, Oleum Ricini 6-12, methyl parahydroxybenzoate 2-4, antioxidant 10351-2,
The preparation method of described modified mineral filler is as follows:
A, by weight 5-10:3-6:2-4:1 weigh wollastonite, Kaolin, pyrophillite, bauxite mix homogeneously, pulverize, and cross 200-300 mesh sieve, 650-750 DEG C of calcining 20-30min, naturally cool to room temperature;
B, the suspension that concentration is 35-45% is made in the making beating that added water by the mineral filler of above-mentioned calcination processing, pH to 4-5 is regulated with the hydrochloric acid solution that concentration is 15-20%, heating in water bath is to 70-80 DEG C, 1500-2000rpm speed lapping 10-15min, then it is neutralized to neutrality with the sodium hydroxide solution that concentration is 10-15%, stand 20-30min, filter, filtering residue distilled water wash 2-3 time, add after drying in mixer, under 500-1000rpm high-speed stirred, take the methoxy poly (ethylene glycol) monomethacrylates being equivalent to mineral filler weight 3-5%, the Di(dioctylpyrophosphato) ethylene titanate of 0.5-1%, it is slowly added in mineral filler with vaporific or droplet form after the poly mix homogeneously of 2-4%, 10-20min is stirred at 40-60 DEG C of temperature, dry,
C, take be equivalent to the ethylene-vinyl acetate copolymer of mineral filler weight 30-40%, the PAUR of 25-35%, the Dipentaerythritol Ester of 3-5%, 2-4% 2,4,4 '-three chloro-2 '-dihydroxy diphenyl ethers, 4-6% butyl stearate mix homogeneously with the step b mineral filler processed after together put into double screw extruder and carry out melt blending, then extruding pelletization, naturally cool to room temperature, be modified mineral filler;
The preparation method of described sheath material, comprises the following steps:
(1) high density polyethylene (HDPE), polyphenylene sulfide, polyethylene terephthalate are put into mix homogeneously in kneader, it is subsequently adding DOTP, n-butyl sebacate stirring for a moment, after plasticizer is by basic absorption, add calcium-zinc composite stabilizing agent, OPE, stearic acid, frictionally heat makes material temperature be raised to 75-85 DEG C, adds remaining raw material, when material temperature rises to 95-105 DEG C, material is discharged in cooling mixing machine and lowers the temperature, discharging during to less than 45 DEG C;
(2) above-mentioned kneaded raw material being put into extruding pelletization in double screw extruder, screw speed 40-60r/min, processing temperature is 145-175 DEG C;
(3) pack after metering.
CN201410175223.1A 2014-04-26 2014-04-26 Parallel cable Active CN103943217B (en)

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104282364A (en) * 2014-10-24 2015-01-14 安徽电信器材贸易工业有限责任公司 Detachable connected cable
CN109694576A (en) * 2018-11-28 2019-04-30 江苏欧瑞达新材料科技有限公司 A kind of high density PPS

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2393503A1 (en) * 1977-05-31 1978-12-29 Cables De Lyon Geoffroy Delore Fabrication of sheathed multicore fibre optic cables - welds elements together by contact before their sheaths have cooled
CN2845118Y (en) * 2005-11-20 2006-12-06 江苏亨通电力电缆有限公司 Logging-in distributive comprehensive cable for audio-video data signal transmitting terminal
CN101679653A (en) * 2007-06-21 2010-03-24 帝人株式会社 Insulating film
CN102194547A (en) * 2010-03-09 2011-09-21 江苏新远程电缆股份有限公司 Photoelectric composite cable
CN202711818U (en) * 2012-06-04 2013-01-30 安徽华联电缆集团有限公司 Photoelectric composite transmission cable

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6563990B1 (en) * 1998-06-22 2003-05-13 Corning Cable Systems, Llc Self-supporting cables and an apparatus and methods for making the same

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2393503A1 (en) * 1977-05-31 1978-12-29 Cables De Lyon Geoffroy Delore Fabrication of sheathed multicore fibre optic cables - welds elements together by contact before their sheaths have cooled
CN2845118Y (en) * 2005-11-20 2006-12-06 江苏亨通电力电缆有限公司 Logging-in distributive comprehensive cable for audio-video data signal transmitting terminal
CN101679653A (en) * 2007-06-21 2010-03-24 帝人株式会社 Insulating film
CN102194547A (en) * 2010-03-09 2011-09-21 江苏新远程电缆股份有限公司 Photoelectric composite cable
CN202711818U (en) * 2012-06-04 2013-01-30 安徽华联电缆集团有限公司 Photoelectric composite transmission cable

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Inventor after: Fu Yonghai

Inventor before: He Chenglong

Inventor before: She Chen

Inventor before: He Yuan

Inventor before: Yang Chenfen

CB03 Change of inventor or designer information
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Effective date of registration: 20180109

Address after: 236800 Anhui Bozhou City Qiaocheng Xintiandi WAL-MART International Shopping Plaza, Bozhou Qiaocheng District, Guangming Road, Anhui

Patentee after: Bozhou Jingxing Network Technology Co. Ltd.

Address before: 241002 Zhanghe Road, Yijiang District, Wuhu City, Anhui Province, hi tech Industrial Development Zone, No. 15

Patentee before: Wuhu Aerospace Special Cable Factory

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20191203

Address after: 522000 No.5 Road, Jiedong Economic Development Zone, Jieyang City, Guangdong Province

Patentee after: Guangdong Jiqing Cable Industrial Co., Ltd.

Address before: 236800 Anhui Bozhou City Qiaocheng Xintiandi WAL-MART International Shopping Plaza, Bozhou Qiaocheng District, Guangming Road, Anhui

Patentee before: Bozhou Jingxing Network Technology Co. Ltd.

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Denomination of invention: Parallel cable

Effective date of registration: 20200902

Granted publication date: 20160615

Pledgee: China Co. truction Bank Corp Jieyang branch

Pledgor: GUANGDONG JIQING CABLE Co.,Ltd.

Registration number: Y2020440000240

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