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Influence of the material anisotropy in the estimation of the yield strength with the Small Punch Test

机译:物质各向异性对小冲击试验估计屈服强度的影响

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The Small Punch Test (SPT) was developed in the 80's as an alternative miniature test for the characterization of mechanical properties in the nuclear industry. One of the key aspects that materials must fulfill to be used with this miniature test is that of homogeneity and isotropy. The origin of the isotropy requirement comes from the fact that the estimation of mechanical properties using the SPT requires empirical correlations with standard tests, which generally show uniaxial stress fields. By contrast, the SPT shows a multiaxial stress field. There are few publications related with the influence of material anisotropy in the yield strength estimation using the SPT, and most of them are empirical studies. This research was intended to address, with a systematic finite element analysis, the influence that different anisotropy combinations could show in the yield strength estimation using the SPT. Thirty-six anisotropic hypothetical materials were evaluated with SPT simulations using the Hill'48 yield criterion. The yield strength of each material was estimated with the SPT using four correlation methods: Mao's, CEN's, the t/10 offset, and the optimized t/10. This study concluded that the SPT was not an appropriate test to evaluate or quantify the material anisotropy, but it was a valuable experimental test to estimate a mean yield strength of the six yielding stress components of the anisotropic material.
机译:小冲击试验(SPT)是在80年代开发的作为核工业机械性能的替代微型测试。材料必须满足于使用这种微型测试的关键方面的一个关键方面是均匀性和各向同性。各向同性要求的起源来自:使用SPT的机械性能估计需要与标准测试的经验相关性,这通常显示单轴应力场。相比之下,SPT显示多轴应力场。利用SPT的屈服强度估计的材料各向异性的影响很少有问题,其中大多数是实证研究。该研究旨在解决,具有系统有限元分析,不同各向异性组合可以在使用SPT屈服强度估计中显示不同各向异性组合的影响。使用HILL'48产量标准使用SPT模拟评估了三十六个各向异性假想材料。使用四种相关方法用SPT估计每种材料的屈服强度:Mao,Cen,T / 10偏移,以及优化的T / 10。该研究得出结论,SPT不是适当的测试,以评估或量化材料各向异性,但是估计各向异性材料的六个产生应激成分的平均屈服强度是有价值的实验试验。

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