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Evaluation of Degradation Effect on Fluoroelastomer in Simulated Severe Accident Environment of Nuclear Power Plants

机译:模拟核电站严重事故环境下氟弹性体的降解效果评价

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Polymeric materials widely used in safety-related equipment are relatively vulnerable to severe environments such as high temperature and radiation environment during the severe accident. Therefore, to ensure the integrity and performance of the safety-related equipment, degradation effect of severe accident on polymer must be investigated. In this paper, to evaluate the degradation effect of radiation and heat during normal operating condition and severe accident environment, hardness measurement and tensile test were carried out. And FT-IR analysis was conducted to investigate the molecular structure and bonds. The mechanical properties were not changed significantly in pre-aging. normal operating condition. But radiation of severe accident environment significantly affects the mechanical properties of fluoroelastomer and molecular structure, such as C=O formation.
机译:在严重事故期间,广泛用于安全相关设备中的聚合物材料相对易受严酷环境(例如高温和辐射环境)的影响。因此,为了确保安全相关设备的完整性和性能,必须研究严重事故对聚合物的降解作用。为了评估在正常工作条件和严重事故环境下辐射和热量的降解效果,进行了硬度测量和拉伸试验。并进行了FT-IR分析以研究其分子结构和键。机械性能在预时效中没有显着变化。正常工作状态。但是严重事故环境下的辐射会严重影响含氟弹性体的机械性能和分子结构,例如C = O的形成。

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