A study of oxidation and water treeing in polyethylene

H. Muto, S. Bamji, A. Bulinski, R. Densley
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引用次数: 3

Abstract

The authors report a study of a possible relationship between oxidation and water tree growth in laboratory-molded polyethylene under controlled conditions. To accelerate the oxidation which might occur during growth, a test series was performed at 75 degrees C in addition to room temperature. After aging for preset times, specimens were removed and microtomed into 0.5-mm slices, and the insulation was checked for water trees with a microscope. The specimens were then dried for 20 h at 40 degrees C under vacuum, and the oxidation level was measured by FTIR (Fourier transform infrared) spectroscopy coupled to an infrared microscope. Similar oxidation levels of treed and nontreed regions of insulation aged at room temperature indicate that oxidation is not required for the water tree growth. However, the tests at 75 degrees C show that treed regions oxidize more rapidly at higher temperatures. This may be due to the contaminants in the trees acting as catalysts for oxidation.<>
聚乙烯的氧化和水树化研究
作者报告了在受控条件下实验室模塑聚乙烯中氧化和水树生长之间可能关系的研究。为了加速生长过程中可能发生的氧化,除室温外,还在75℃下进行了一系列试验。预老化时间后,取出标本,切片0.5 mm,显微镜下检查有无水树。然后将样品在40℃真空下干燥20 h,用红外显微镜耦合傅里叶变换红外光谱(FTIR)测量氧化水平。在室温下老化的保温层的树木和非树木区域的氧化水平相似,表明水树的生长不需要氧化。然而,在75摄氏度下的测试表明,树木区域在更高的温度下氧化得更快。这可能是由于树木中的污染物起到了氧化催化剂的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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