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Analysis of Thermal Characteristics and Insulation Resistance Based on the Installation Year and Accelerated Test by Electrical Socket Outlets

机译:基于安装年度的热特性和绝缘电阻分析电插座插座的加速试验

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Background Electrical socket outlets are used continuously until a failure occurs because they have no indication of manufacturing date or exchange specifications. For this reason, 659 electrical fires related to electrical socket outlets broke out in the Republic of Korea at 2018 only, an increase year on year. To reduce electrical fires from electrical socket outlets, it is necessary to perform an accelerated test and analyze the thermal, insulation resistance, and material properties of electrical socket outlets by installation years. Methods Thermal characteristics were investigated by measured the temperature increase of electrical socket outlets classified according to year with variation of the current level. Insulation resistance characteristics was measured according to temperature for an electrical socket outlets by their years of use. Finally, to investigate the thermal and insulation resistance characteristics in relation to outlet aging, this study analyzed electrical socket outlets’ conductor surface and content, insulator weight, and thermal deformation temperature. Results Analysis showed, regarding the thermal characteristics, that electrical socket outlet temperature rose when the current value increased. Moreover, the longer the time that had elapsed since an accelerated test and installation, the higher the electrical socket outlet temperature was. With respect to the insulation resistance properties, the accelerated test (30 years) showed that insulation resistance decreased from 110 °C. In relation to the installation year (30 years), insulation resistance decreased from 70 °C, which is as much as 40 °C lower than the result found by the accelerated test. Regarding the material properties, the longer the elapsed time since installation, the rougher the surface of conductor contact point was, and cracks increased. Conclusion The 30-year-old electrical socket outlet exceeded the allowable temperature which is 65 °C of the electrical contacts at 10 A, and the insulation resistance began to decrease at 70 °C. It is necessary to manage electrical socket outlets that have been installed for a long time.
机译:背景技术电插座插座连续使用直到发生故障,因为它们没有制造日期或交换规范的指示。出于这个原因,与电气插座网点有关的659次电火灾,仅在2018年在大韩民国爆发,同比增长。为了减少电插座插座的电火,需要通过安装年来执行加速测试和分析电插座插座的热,绝缘电阻和材料特性。方法通过测量根据当前水平的变化进行根据年度分类的电插座插座的温度升高来研究热特性。通过使用多年的电气插座插座的温度测量绝缘电阻特性。最后,研究了与出口老化相关的热和绝缘电阻特性,本研究分析了电插座出口的导体表面和内容,绝缘体重量和热变形温度。结果分析显示,当电流值增加时,电气插座出口温度升高。此外,由于加速测试和安装以来已经越长,电插座出口温度越高。关于绝缘性抗性特性,加速试验(30年)显示绝缘电阻从110℃降低。与安装年份(30年)相关,绝缘电阻从70°C减少,比加速测试的结果低40°C。关于材料特性,在安装以来的经过时间越长,导体接触点的表面变得粗糙,并且裂缝增加。结论,30岁的电插座出口超过了10a的电触点65°C的允许温度,绝缘电阻在70℃下开始降低。有必要管理已安装的电源插座插座很长一段时间。

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