首页> 外文会议>ASME Pressure Vessels and Piping Conference >PROPOSAL OF SIMULATION MATERIALS TEST TECHNIQUE AND THEIR CONSTITUTIVE EQUATIONS FOR STRUCTURAL TESTS AND ANALYSES SIMULATING SEVERE ACCIDENT CONDITIONS
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PROPOSAL OF SIMULATION MATERIALS TEST TECHNIQUE AND THEIR CONSTITUTIVE EQUATIONS FOR STRUCTURAL TESTS AND ANALYSES SIMULATING SEVERE ACCIDENT CONDITIONS

机译:模拟材料测试技术的提议及其结构性测试的组成方程及分析模拟严重事故条件

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Suclear structure s integrity must be confirmed under severe accident conditions. However, performing structure tests using actual steels is very difficult and expensive. Therefore, the authors conducted structure tests using the lead alloy to evaluate the structure integrity under severe accident conditions. Because the strength of the lead alloy is considerably less than that of actual steels, structure tests can be conducted under low-pressure, low-temperature conditions. To quantitatively correlate the structural response of the lead alloy to that of actual steels, finite-element analyses (FEAs) must be performed. Because the inelastic constitutive equations, namely, inelastic stress-strain relationship equation, creep rupture equation, and creep strain equation, are required to perform the inelastic FEA, the authors introduced material tests using the lead alloy and, subsequently, proposed the inelastic constitutive equations based on the material test results in a previously conducted PVP conference. However, the proposed inelastic constitutive equations could not successfully express the material characteristic of the lead alloy because of large variations observed in the material tests of the lead alloy. Furthermore, the authors observed that the material characteristic of the lead alloy could be stabilized by aging. In this study, we propose the improved inelastic constitutive equations of the lead alloy on the basis of test results newly obtained from a series of material test performed using aged alloy.
机译:必须在严重的事故条件下确认结构核心的完整性。然而,使用实际钢进行结构测试是非常困难和昂贵的。因此,作者使用铅合金进行了结构试验,以评估严重事故条件下的结构完整性。因为铅合金的强度远小于实际钢的强度,所以结构试验可以在低压,低温条件下进行。为了定量地将铅合金的结构响应与实际钢的结构响应相关,必须进行有限元分析(欺骗)。由于不弹性构成方程,即非弹性应力 - 应变关系方程,蠕变破裂方程和蠕变应变方程,所以作者使用铅合金引入了材料测试,随后提出了非弹性本构方程基于材料测试结果,在先前进行的PVP会议中。然而,由于在铅合金的材料试验中观察到的大变化,所提出的非弹性本构体方程不能成功表达铅合金的材料特性。此外,作者观察到通过老化可以稳定铅合金的材料特性。在这项研究中,我们基于使用老化合金进行的一系列材料试验新获得的测试结果提出了铅合金的改进的非弹性组成方程。

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