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Studies on High Voltage Composite Insulators under very low Temperature

机译:低温下高压复合绝缘子的研究

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With the advancement in material engineering new insulation materials have been developed with enhanced insulating properties and these materials have certain advantages over glass and porcelain insulators in terms of field performance. Since last decade there is an increase in demand of installing polymer/composite insulator as a preferable choice. These have promising features for high voltage transmission and distribution applications. However, long-term environmental and electric stresses could cause surface degradation and in due course reduce the insulation strength of insulators. In the present work, an attempt is made to study the effect of multiple stresses (humidity, low temperature, UV and electric stress) on the composite insulators. The experimental chamber of 2.5 × 2.5 × 2.5 ft is suitably fabricated for the experiment. The leakage current is regularly monitored over the experimental duration of 1000 hours. The surface morphological studies using Fourier transform infrared (FTIR) spectroscopy, Scanning Electron Microscopy (SEM), Energy Dispersive X-Ray Analysis (EDAX), Wettability Class (WC) measurements and performance of tensile strength of the samples are conducted on the samples before and after experimentation.
机译:随着材料工程的进步,新的绝缘材料已经通过增强的绝缘性能而开发,这些材料在玻璃和瓷绝缘体方面具有一定的优势。自上年以来,将聚合物/复合绝缘体的需求增加,作为优选的选择。这些具有高压传输和分配应用的有希望的功能。然而,长期的环境和电力应导致表面降级,在适当情况下降低了绝缘体的绝缘强度。在本作的工作中,尝试研究多重应力(湿度,低温,UV和电应力)对复合绝缘体的影响。实验室为2.5×2.5×2.5英尺的实验适合制造。经常监测漏电流在1000小时的实验持续时间内监测。使用傅里叶变换红外(FTIR)光谱,扫描电子显微镜(SEM),能量分散X射线分析(eDAX),润湿性等级(WC)测量和样品的拉伸强度的性能进行扫描电子显微镜(SEM),在样品上进行经过实验。

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