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Deformation Characteristics and Sealing Performance of Metallic O-rings for a Reactor Pressure Vessel

机译:反应堆压力容器用金属O形圈的变形特性和密封性能

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摘要

This paper provides a reference to determine the seal performance of metallic O-rings for a reactor pressure vessel (RPV). A nonlinear elastic-plastic model of an O-ring was constructed by the finite element method to analyze its intrinsic properties. It is also validated by experiments on scaled samples. The effects of the compression ratio, the geometrical parameters of the O-ring, and the structure parameters of the groove on the flange are discussed in detail. The results showed that the numerical analysis of the O-ring agrees well with the experimental data, the compression ratio has an important role in the distribution and magnitude of contact stress, and a suitable gap between the sidewall and groove can improve the sealing capability of the O-ring. After the optimization of the sealing structure, some key parameters of the O-ring (i.e., compression ratio, cross-section diameter, wall thickness, sidewall gap) have been recommended for application in megakilowatt class nuclear power plants. Furthermore, air tightness and thermal cycling tests were performed to verify the rationality of the finite element method and to reliably evaluate the sealing performance of a RPV.
机译:本文为确定反应堆压力容器(RPV)的金属O型圈的密封性能提供了参考。利用有限元方法建立了O形圈的非线性弹塑性模型,对其内在特性进行了分析。还可以通过对按比例缩放的样本进行实验来验证。详细讨论了压缩比,O形圈的几何参数以及法兰上凹槽的结构参数的影响。结果表明,O型圈的数值分析与实验数据吻合很好,压缩比对接触应力的分布和大小起着重要作用,侧壁与沟槽之间的适当间隙可以提高密封性能。 O形圈。在优化密封结构之后,已建议将O形圈的一些关键参数(即压缩比,横截面直径,壁厚,侧壁间隙)推荐用于兆千瓦级核电站。此外,进行了气密性和热循环测试,以验证有限元方法的合理性并可靠地评估RPV的密封性能。

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