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Deviations in yield and ultimate tensile strength estimation with the Small Punch Test: Numerical analysis of pre-straining and Bauschinger effect influence

机译:小冲击试验的产量和最终拉伸强度估计的偏差:预拉伸和Bauschinger效应影响的数值分析

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摘要

There is a growing interest on the Small Punch Test (SPT) and its many applications in a broad range of industries and sectors. The miniature volume of the SPT specimen eases the mechanical characterization of components and structures when standard tests are impracticable. But this miniature test is limited for one of its more constraining requirements: the material isotropy. Since this test subjects the material to triaxial stress and strain fields, isotropy is necessary to compare the resulted data from SPT with the standard tests, which generally show uniaxial stress fields. Another key element of this question is that initially, isotropic material can lose this property due to a cold pre-straining process and the existence of the Bauschinger effect. In this investigation, a numerical study with the finite element method was performed to understand the influence of pre-straining and the Bauschinger effect in yield strength and ultimate tensile strength estimation with the SPT. This study concludes that in the absence of isotropy, generated by a pre-straining, the SPT estimated a mean value of the principal yield strength components of the yield surface. It is also verified that presence of pre-straining in the SPT specimens invalidated their use to calculate the coefficients of the correlation equations for yield strength estimation.
机译:对小冲击试验(SPT)的兴趣日益增长,其许多应用在广泛的行业和部门中。当标准测试不可行时,SPT样本的微型体积可以减轻部件和结构的机械表征。但这种微型测试是限于其更多限制要求的限制:材料各向同性。由于该测试对材料进行了三轴应力和应变场,因此各向同性是将来自SPT的所得数据与标准测试进行比较,这通常表现出单轴应力场。这个问题的另一个关键要素是,由于感冒预压制过程和Bauschinger效应的存在,各向同性材料可能会失去这种特性。在该研究中,进行了具有有限元方法的数值研究,以了解预拉力和Bauschinger效应的影响与SPT的屈服强度和最终拉伸强度估计。该研究得出结论,在没有前在特性的情况下,SPT估计了屈服表面的主屈服强度组分的平均值。还验证了SPT标本中预先紧张的存在使其用于计算屈服强度估计的相关方程的系数。

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