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Thermal aging property and breakdown property of submarine cable materials

机译:潜艇电缆材料的热老化性能和击穿特性

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As an important high voltage transmission equipment, XLPE cable plays an important role in submarine transmission engineering. In the long run, the performance of cable material is directly related to the overall insulation performance of the cable. In the work, the aging property and breakdown property of submarine cable insulation material and semi-conductive material are studied. Firstly, the semi- conductive layer, insulation layer, and composite structure specimen of the semi-conductive and insulation (S-I) layer were prepared by the plate vulcanizing press. Secondly, specimens were treated in a vacuum aging chamber at 135°C for 600 h. The morphology and groups of the samples before and after thermal aging were studied by SEM and FTIR. Finally, the breakdown strength of the insulation sample and composite sample before and after thermal aging were measured. The experimental results show the chemical bonds and functional groups in insulation samples after aging has little change. By contrast, the C-O bond in the methyl and ester carbonyl group decrease after semi- conductive layer aging. The breakdown strength of insulation samples after thermal aging decreases by 23.66%. The breakdown strength of the composite sample after thermal aging decreases by 26.50%.
机译:作为一个重要的高压传输设备,XLPE电缆在潜艇传输工程中起着重要作用。从长远来看,电缆材料的性能与电缆的整体绝缘性能直接相关。在工作中,研究了潜艇电缆绝缘材料和半导电材料的衰老性能和击穿性能。首先,通过板硫化压力制备半导电和绝缘层(S-I)层的半导体层,绝缘层和复合结构样本。其次,在135℃下在真空老化室中处理样品600小时。通过SEM和FTIR研究了热老化前后样品的形态和组。最后,测量了热老化前后绝缘样品和复合样品的击穿强度。实验结果表明,老化后绝缘样品中的化学键和官能团几乎没有变化。相反,半导电层老化后甲基和酯羰基中的C-O键降低。热老化后绝缘样品的击穿强度降低23.66%。热老化后复合样品的击穿强度降低26.50%。

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