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Development of non-filled EPR insulation system for power lead of66 kV-class superconducting fault current limiter

机译:66 kV级超导故障限流器功率引线无填充EPR绝缘系统的开发

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Development of ethylene-propylene rubber (EPR) insulation system has been advanced for a compact power lead of 66 kV-class high temperature superconducting fault current limiter (SCFCL). It is well known that insulation layers of superconducting cables are molded by extruding EPR containing inorganic filler. The power leads are not as long as the superconducting cables, making it difficult to mold their insulation layers by extrusion. When molding EPR by heat treatment, voids tend to remain in the insulation layer because of the low viscosity of filler-containing EPR. Partial discharge will occur and insulation deteriorates if voids exist in the insulation layer. Fluidity of EPR without filler (non-filled) was experimentally investigated to be used for insulating power leads. It was found that the viscosity of non-filled EPR is sufficiently low. It was also found that non-filled EPR has excellent crack resistance. An insulation model was easily constructed with simple dies. No voids were found in the insulation layer of this model, and no cracks occurred by thermal cycling between 333 K and 77 K. Consequently, it was confirmed that non-filled EPR is a suitable material for insulating power leads
机译:对于66 kV级高温超导故障限流器(SCFCL)的紧凑型电源线,已经开发了乙丙橡胶(EPR)绝缘系统。众所周知,超导电缆的绝缘层是通过挤出含有无机填料的EPR来模制的。电源线的长度不如超导电缆长,因此很难通过挤压成型其绝缘层。当通过热处理模制EPR时,由于含填料的EPR的低粘度,在绝缘层中倾向于留有空隙。如果绝缘层中存在空隙,则会发生局部放电,绝缘性能会下降。对不含填料(未填充)的EPR的流动性进行了实验研究,以用于绝缘电源线。发现未填充的EPR的粘度足够低。还发现未填充的EPR具有优异的抗裂性。使用简单的模具即可轻松构建绝缘模型。在该模型的绝缘层中没有发现空隙,并且在333 K和77 K之间的热循环中也没有出现裂纹。因此,证实了非填充EPR是用于绝缘电源引线的合适材料。

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