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Analytical and numerical study for selecting polymeric matrix composites intended to nuclear applications

机译:选择用于核应用的聚合物基复合材料的分析和数值研究

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This study describes a methodological proposal to select composite materials which are suitable to be employed to manufacture pipes that can properly withstand environments subjected to gamma and neutronic radiation. The methodology is used to select, among many others, the optimal composite material whose properties are used afterwards to simulate several pipe sections by finite element analysis, comparing the results with a well-known nuclear-grade steel, WWER 15Kh2MFAA. The most suitable composite material according to the defined criteria is composed of a phenolic resin matrix reinforced with long boron fibres and exhibit great properties to be used in a nuclear reactor environment: good radiation resistance and mechanical properties with a very low density at low cost. It can be concluded that, in some cases, composite material pipes can be a better option than steel ones. Extending the method to be employed in other industries or with other components could be seen as future works.
机译:这项研究描述了一种方法建议,以选择适合用于制造能够适当承受伽玛和中子辐射环境的复合材料的复合材料。该方法用于选择其他最佳复合材料,其性能随后通过有限元分析来模拟多个管段,并将结果与​​著名的核级钢WWER 15Kh2MFAA进行比较。根据定义的标准,最合适的复合材料由长硼纤维增强的酚醛树脂基体组成,并具有在核反应堆环境中使用的优异性能:良好的抗辐射性和机械性能,且密度低,成本低。可以得出结论,在某些情况下,复合材料管道可能比钢制管道更好。将该方法扩展到其他行业或与其他组件一起使用可以看作是未来的工作。

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