首页> 外文会议>2011 1st International Conference on Electric Power Equipment - Switching Technology >Experimental investigation on the DC breakdown of silicone Polymer composites employable to 500kV HVDC insulator
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Experimental investigation on the DC breakdown of silicone Polymer composites employable to 500kV HVDC insulator

机译:500kV HVDC绝缘子用有机硅高分子复合材料直流击穿试验研究。

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HVDC technology has been widely used for the bulk power transmission due to its advantages over the conventional HVAC such as higher efficiency with larger current carrying capability and lower electrical losses for long-distance transmission. In this regards, many research institutes have put their intensive efforts to commercialize relevant components in order to realize better HVDC transmission system. One of the critical components for HVDC transmission systems is HVDC polymer insulators which shows rather severe requirements compared to HVAC ones. It has been perceived uneasy to achieve relevant insulation properties with proper design of power apparatus under HVDC. Especially, there is few research works presented concerning the insulation properties of insulator which is a fundamental power component in HVDC system. In this work, dielectric insulation characteristics of various silicone composites have been experimentally investigated under DC stress, of which the results could supply essential base for developing HVDC polymer insulator. For this purpose, polymer composite samples have been prepared in different ways by mixing silicone and ATH respectively and then have been under DC stress to evaluate breakdown characteristics. For the comparison both in DC and AC environment, withstand voltage test and surface discharge test under AC were also performed.
机译:HVDC技术相对于传统HVAC的优势已被广泛用于大功率输电,例如具有更高的效率,更大的载流能力和更低的长距离输电损耗。在这方面,许多研究机构已经付出了巨大的努力来使相关组件商业化,以实现更好的高压直流输电系统。 HVDC输电系统的关键组件之一是HVDC聚合物绝缘子,与HVAC绝缘子相比显示出相当严格的要求。通过在HVDC下对功率设备进行适当的设计,很难达到相关的绝缘性能。尤其是,很少有关于绝缘子的绝缘性能的研究工作,绝缘子是高压直流输电系统的基本电源组件。在这项工作中,已通过实验研究了各种有机硅复合材料在直流应力下的介电绝缘特性,其结果可为开发HVDC聚合物绝缘子提供必要的基础。为此,已分别通过混合有机硅和ATH以不同方式制备了聚合物复合材料样品,然后将其置于直流应力下以评估击穿特性。为了在直流和交流环境下进行比较,还进行了交流电压下的耐压测试和表面放电测试。

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