Preparation method of semiconductive shielding material for 110kV and above voltage class cables
A technology of voltage level and shielding material, applied in the direction of power cable with shielding layer/conductive layer, etc., can solve the problems of easy catalytic aging by metal, short service life, product performance far from meeting semi-conductive shielding material, etc., which is not easy to achieve. The effect of blocking, reducing production cost and improving production efficiency
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Embodiment 1
[0033] Embodiment 1 (the following components are parts by weight):
[0034] Step 1, get 66 parts of ethylene-ethyl acrylate resins, 31 parts of 320 mesh conductive carbon blacks (produced in Belgium), antioxidant 4,4'-thiobis(6-tert-butyl-3-methylphenol) and 0.5 parts of a mixture of bis[(phenylmethylene)hydrazide]oxalic acid, (wherein the content of bis[(phenylmethylene)hydrazide]oxalic acid is 0.5% by weight), and the number average molecular weight is 5000 ~7500 polyethylene wax 1.5 parts, 7 # 3.5 parts of industrial white oil, 0.9 parts of ethylene glycol, 0.4 parts of titanate coupling agent and 1 part of zinc stearate were added to the tipping bucket mixer, closed and mixed for 8 minutes, and the mature rubber was mixed. Wherein the melt index of the ethylene-ethyl acrylate resin is 6, and the content of acrylic acid is 15% by weight.
[0035] Step 2: Send the kneaded cooked rubber to a reciprocating stepped extruder for secondary kneading and granulation to make a se...
Embodiment 2
[0041] The difference between this embodiment and Example 1 is: 65 parts of ethylene-ethyl acrylate resin, 32 parts of 300 mesh conductive carbon black, antioxidant 4,4'-thiobis(6-tert-butyl-3-methyl 1 part of mixture of phenol) and bis[(phenylmethylene) hydrazide] oxalic acid, (wherein bis[(phenylmethylene) hydrazide] oxalic acid content weight percent is 0.4%), molecular weight is 1 part of polyethylene wax of 5000~7500, 7 # 3 parts of industrial white oil, 0.8 parts of ethylene glycol, 0.8 parts of titanate coupling agent, 0.5 parts of zinc stearate, and 0.4 parts of dicumyl peroxide.
Embodiment 3
[0043]The difference between this embodiment and Example 1 is: 68 parts of ethylene-ethyl acrylate resin, 30 parts of 320 mesh conductive carbon black, antioxidant 4,4'-thiobis(6-tert-butyl-3-methyl 0.3 part of mixture of phenol) and bis[(phenylmethylene) hydrazide] oxalic acid, (wherein bis[(phenylmethylene) hydrazide] oxalic acid content weight percent is 0.6%), molecular weight is 2 parts of polyethylene wax of 5000~7500, 7 # 4 parts of industrial white oil, 1 part of ethylene glycol, 0.6 parts of titanate coupling agent, 1.5 parts of zinc stearate, and 0.6 parts of dicumyl peroxide.
[0044] The semi-conductive shielding material for cross-linked polyethylene insulated cables obtained by the present invention by adopting the above-mentioned embodiments meets high-strength anti-stripping force applicable to high-voltage or ultra-high-voltage cross-linked insulated cables, has super-smooth shielding effect, and has a service life of 40 to 50 years. , the extrusion process p...
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Abstract
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