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The role of chain orientation on the propagation of water trees at different temperatures

机译:链取向在不同温度下对水生树木繁殖的作用

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The propagation characteristics of water trees at different temperatures were investigated, and the effect of chain orientation on water tree morphologies was revealed. Accelerated water tree aging experiment was performed respectively at 0°C, 20°C, 40°C and 60°C for XLPE specimens. The morphologies of water trees were observed by an optical microscope, and the sizes of water trees were counted. The results indicate that 40°C is a transition temperature for the changes of water tree morphologies and sizes. Water tree branches are individual and distinctly follow the lines of electric field below 40°C, whereas the branches tend to be dense above 40°C. According to the results, the motion of molecular chains plays an important role in the propagation of water trees. The propagation of water trees below 40°C mainly depends on the behavior of chain orientation. However, above 40°C, because the chain orientation is suppressed by the thermal motion, water tree propagation is mainly determined by the behavior of chain thermal motion.
机译:研究了水树在不同温度下的传播特性,揭示了链取向对水树形态的影响。 XLPE标本分别在0°C,20°C,40°C和60°C下进行了加速的水树老化实验。用光学显微镜观察水树的形态,并计数水树的大小。结果表明40℃是水树形态和大小变化的转变温度。水树分支是单独的,并且在40°C以下明显遵循电场线,而在40°C以上则倾向于密集。根据结果​​,分子链的运动在水生树木的繁殖中起重要作用。 40℃以下的水生树木的繁殖主要取决于链取向的行为。但是,在40℃以上,由于链取向因热运动而受到抑制,因此水树的传播主要由链热运动的行为决定。

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