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An Investigation into the Origin and Nature of the Slope and x-axis Intercept of the Shear Punch-Tensile Yield Strength Correlation using Finite Element Analysis

机译:使用有限元分析对剪切冲突屈服强度相关性的斜坡和X轴截距的起源与性质研究

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Recent studies have shown that for a variety of unirradiated and irradiated materials, a slope of approx2 is obtained for a correlation between yield in a shear punch test and yield in a uniaxial tensile test. Application of the von Mises yield criterion would predict a slope of sq root of 3. A finite element model (FEM) of the shear punch test was developed to aid in understanding the experimentally obtained slope of approx2. FEM simulations of the shear punch test were conducted using stress-strain data from uniaxial tensile tests on 316 stainless steel in four initial cold-work conditions. A correlation was developed between the FEM-evaluated effective shear yield strength and the experimentally-evaluated uniaxial yield strength. The slope from this correlation was found to be nearly the same as for the slope from the correlation between the experimentally-evaluated effective shear yiedl strength and the experimentally-evaluated uniaxial yield strength. The finite element model showed that stresses other than pure shear exist in a specimen during a shear punch test, and these other stresses may explain why the slope of the experimental yield strength correlation is different than sq root of 3.
机译:最近的研究表明,对于各种未照射和辐射的材料,获得大约2的斜率,以获得剪切冲击试验的产率与单轴拉伸试验中的产率之间的相关性。 Von MIS屈服标准的应用预测3.剪切冲击试验的有限元模型(FEM)的斜率是有助于理解大约2的实验获得的斜率。在四个初始冷加工条件下使用来自单轴拉伸试验的应力 - 应变数据进行剪切冲击试验的有限元模拟。在有效的有效剪切产量和实验评估的单轴屈服强度之间开发了相关性。发现来自这种相关性的斜率几乎与来自实验评估的有效剪切YiEdl强度和实验评估的单轴屈服强度之间的相关性的斜率几乎相同。有限元模型表明,在剪切冲头测试期间,在样品中存在除纯剪切之外的应力,并且这些其他应力可以解释为什么实验屈服强度相关的斜率不同于3的Sq根。

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