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Comparison of Voltage-time to Surface Failure of Various Insulation Material for Space Aerial Cables

机译:航天航空电缆各种绝缘材料的电压时间对表面破坏的比较

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This paper aims to represents the investigation of surface tracking resistance of various types of cable insulations. Five kinds of cable material i.e. non carbon filled crosslink polyethylene (XLPE), carbon filled XLPE, low density polyethylene (LDPE), medium density polyethylene (MDPE), and high density polyethylene (HDPE) were examined. The test specimen has a dimension of 10 mm in width, 50.8 mm in length and 1.52 mm in thickness. The test samples were classified into two groups for investigation. The former group was the new test samples, whereas the latter test samples were stressed by thermal ageing with 120 o C for 168 hours. Then both specimens were examined. One side of the specimen was contacted with high voltage electrode terminal made of 1 mm diameter Nichrome wire. Another side of the test specimen was dipped into 0.1 percent solution of ammonium chloride as grounded electrode. The spacing between electrodes at dry area was determined for 25.4 mm. After completion of the test set up, AC high voltage was applied to the test specimen. The dip rate of the specimen into the solution was set up as 4 times per minute. The test voltage level was in the range of 1-3.5 kV. The experiment was performed in accordance with ICEA S-66-524 (Method B). The test voltage was applied to the test specimen until the insulation failure could be observed. Then, the insulation failure voltage and failure time were recorded. The test results illustrated that both unaged and aged HDPE and non carbon filled XLPE provided the higher surface tracking resistance than carbon filled XLPE, LDPE and MDPE respectively. Besides, the thermal stress aging had not much effect on the surface tracking resistance characteristic of tested material. It can be summarized that the material structure much more influenced the surface tracking characteristic of the cable material.
机译:本文旨在代表对各种类型的电缆绝缘层的表面耐跟踪性能的研究。检查了五种电缆材料,即非碳填充交联聚乙烯(XLPE),碳填充XLPE,低密度聚乙烯(LDPE),中密度聚乙烯(MDPE)和高密度聚乙烯(HDPE)。试样的尺寸为宽10mm,长50.8mm,厚1.52mm。将测试样品分为两组进行调查。前一组是新的测试样品,而后一组样品则在120 o C下热老化168小时而受到压力。然后检查了两个标本。样品的一侧与由1毫米直径的镍铬合金线制成的高压电极端子接触。将试样的另一面浸入0.1%的氯化铵溶液中作为接地电极。确定在干燥区域的电极之间的间隔为25.4mm。测试设置完成后,将交流高压施加到测试样品上。将样品浸入溶液的浸入速率设置为每分钟4次。测试电压水平在1-3.5 kV的范围内。根据ICEA S-66-524(方法B)进行实验。将测试电压施加到试样上,直到观察到绝缘破坏为止。然后,记录绝缘破坏电压和破坏时间。测试结果表明,未老化和老化的HDPE和未填充碳的XLPE分别提供了比填充碳的XLPE,LDPE和MDPE更高的表面耐痕迹性。此外,热应力时效对被测材料的表面耐痕迹性没有太大影响。可以总结出,材料结构对电缆材料的表面跟踪特性的影响更大。

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