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Aging State Analysis of Safety-related Cables for Nuclear Power Plants Exposed to Simulated Accident Conditions

机译:核电站安全相关电缆的老化状态分析,暴露于模拟事故条件

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Several cables in safety-related systems in nuclear power plants are required to maintain their intended electrical insulating function while they are exposed to harsh environmental conditions in the primary containment vessel during assumed accidents. This must be satisfied even after the cables are operated for their full service period. For such cables, the behavior of their insulation under accidents is a matter of concern. In this research, after silicone rubber insulated cables were pre-aged by simultaneous thermal and radiation exposure, they were irradiated or exposed to high temperature steam to simulate the environmental conditions during the accident, or subjected to the combination of these conditions. The resultant changes in various properties were analyzed by instrumental analyses. As a result, it has been confirmed that the pre-aging and radiation exposure induce cross-linking and depolymerization of siloxane chains to produce cyclic siloxanes, whereas the steam exposure causes significant depolymerization and the generation of low-molecular cyclic siloxanes.
机译:需要在核电站安全相关系统中的几个电缆维持其预期的电绝缘函数,同时在假定的事故期间暴露于主要容器血管中的苛刻环境条件。即使在电缆运营的全部服务期间后,必须满足。对于这样的电缆,他们在事故中的绝缘行为是一个关注的问题。在本研究中,通过同时热和辐射暴露预先老化硅橡胶绝缘电缆,它们被照射或暴露于高温蒸汽以模拟事故期间的环境条件,或者对这些条件的组合进行。通过仪器分析分析了各种性质的所得到的变化。结果,已经证实,预衰老和辐射暴露诱导硅氧烷链的交联和解聚以产生环硅氧烷,而蒸汽暴露导致显着的解聚和产生低分子环硅氧烷的产生。

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