Sequential versus Simultaneous Aging of EPDM Nuclear Cable Insulation Subjected to Elevated Temperature and Gamma Radiation

Mychal P. Spencer, Andy Zwoster, Tucker T. Bisel, M. Murphy, L. Fifield
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Abstract

Electrical cables are integral to power, control, and instrumentation systems within nuclear power plants (NPPs). Exposure of cable systems within nuclear containment to elevated temperatures and gamma radiation during decades-long operation of NPPs can lead to degradation of the cables' polymeric insulation. Prediction of nuclear cable insulation degradation is complicated because thermal and radiation stress are not additive. In this work, we explore the relative effects of simultaneous and sequential thermal and gamma irradiation on the aging of ethylene-propylene-diene (EPDM) elastomer insulation to better understand realistic scenarios of cable insulation degradation. Cable insulation samples of EPDM were subjected to up to 320 kGy of gamma radiation at a dose rate of 300 Gy/hr in two heating scenarios: (1) simultaneously aged samples were heated at 150°C during irradiation and (2) sequentially aged samples were heated at 150°C for designated durations followed by corresponding periods of irradiation at ambient temperature. The mass, tensile elongation at break, and the carbonyl index were assessed to quantify the aging of the polymers. The simultaneous aging scenario was found to be the more severe of the two for EPDM insulation degradation.
高温和伽马辐射下EPDM核电缆绝缘的顺序老化与同步老化
电缆是核电厂(NPPs)电力、控制和仪表系统不可或缺的一部分。在核电站长达数十年的运行过程中,核安全壳内的电缆系统暴露在高温和伽马辐射中,可能导致电缆的聚合物绝缘降解。由于热应力和辐射应力不是相加性的,因此核电缆绝缘退化的预测比较复杂。在这项工作中,我们探讨了同时和连续的热辐射和伽马辐射对EPDM弹性体绝缘老化的相对影响,以更好地了解电缆绝缘老化的实际情况。在两种加热情况下,EPDM电缆绝缘样品受到300 Gy/hr剂量率高达320 kGy的伽马辐射:(1)同时老化样品在辐照期间在150°C下加热;(2)依次老化样品在150°C下加热指定时间,然后在环境温度下进行相应时间的辐照。通过对质量、断裂伸长率和羰基指数的评估来量化聚合物的老化。同时老化情况对EPDM绝缘性能的影响更为严重。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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