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Effects of low temperature on treeing phenomena of silicone rubber

机译:低温对硅橡胶树形现象的影响

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In this paper, room temperature vulcanized (RTV) silicone rubber (SiR) was employed as test sample to investigate the relationship between electrical tree propagation characteristics and the low experiment temperature. Power frequency voltage was applied on the SiR specimens through the needle-plate electrode with the same radius of needle tips to initiate the electrical tree at different low experiment temperatures. Both the structures and growth characteristics of electrical tree in SiR were observed by using a digital camera and a microscope system. Obtained results show that electrical tree in RTV SiR is white gap tree channel which maybe composed of silicone compounds instead of carbonized channel in XLPE. Electrical tree in SiR all initiate from single branch, and the width of initiative single branch channel varies a lot with the electrical tree structure. The structure of at experiment temperature from 0 °C to −70 °C in RTV SiR can be classified into three categories, which are branch, bush and pine branch tree. The distribution of tree structures changes with the experiment temperature. At the temperature of −70 °C, pine branch tree take up a great proportion, however, bush tree becomes the dominant structure when the temperature rise up to −50 °C and −30 °C. All kinds of electrical tree grow rapidly in the first beginning of the treeing propagation, and this process lasts only a few minutes.
机译:本文以室温硫化(RTV)硅橡胶(SiR)作为测试样品,以研究电树传播特性与低实验温度之间的关系。通过具有相同针尖半径的针板电极在SiR样品上施加工频电压,以在不同的低实验温度下启动电树。使用数码相机和显微镜系统观察了SiR中电树的结构和生长特性。结果表明,RTV SiR中的电树是白隙树通道,它可能是由有机硅化合物组成,而不是XLPE中的碳化通道。 SiR中的电气树都从单分支发起,并且主动单分支通道的宽度随电气树结构变化很大。 RTV SiR在0°C至-70°C的实验温度下的结构可分为三类,即分支树,灌木丛和松树分支树。树结构的分布随实验温度而变化。在−70°C的温度下,松枝树占很大比例,然而,当温度上升到−50°C和−30°C时,灌木树成为主要结构。各种各样的电树在树木繁殖的第一个开始便迅速生长,并且此过程仅持续几分钟。

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