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A comparative study of dielectric, mechanical and structural properties of fire-protective insulation based on XLPE

机译:基于XLPE的防火防护绝缘电介质,机械和结构性能的比较研究

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Paper deals with comparing of dielectric, mechanical and structural properties of primary cable insulation based on cross-linked low density polyethylene (XLPE) with different level of cross-linking. Testing material was divided into four groups according to time of exposition to low pressure steam, which initiates cross-linking reaction. The measurement of the degree of cross-linking by chemical extraction in xylene solution at 140 °C according to ASTM D2795–11 followed. Dielectric properties (polarization index, volume resistivity) of the individual samples were then measured according to standards. Dielectric properties were compared with results of tensile strength test at various temperatures (50 °C, 55 °C, 60 °C) measured by dynamic mechanical analysis. The degree of cross-linking represented by the gel content positively influences the tensile strength, the volume resistivity and the change of structural behaviour of the material by differential scanning calorimetry was also observed. But it negatively affects the polarization indexes. Changing measured parameters could be explained by the change of the reaction dynamics in accordance with the time of exposition which initiate cross-linking reactions.
机译:纸张涉及基于交联低密度聚乙烯(XLPE)的初级电缆绝缘介质,机械和结构性能的比较,具有不同水平的交联。将测试材料根据阐述的低压蒸汽分为四组,这引发了交联反应。根据ASTM D2795-11,在140℃下通过二甲苯溶液中的化学提取的交联程度的测量。然后根据标准测量各个样品的介电性质(偏振指数,体积电阻率)。将介电性质与通过动态机械分析测量的各种温度(50℃,55℃,60℃)的拉伸强度试验结果进行比较。的交联通过凝胶含量表示的程度积极地影响拉伸强度,体积电阻率和材料的结构性能用差示扫描量热法的变化,也观察到。但它对极化指数产生负面影响。改变测量参数可以通过根据引发交联反应的阐述时间改变反应动力学来解释。

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