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The evaluation of redundant deformation factors in axi-symmetric bar drawing of austenitic stainless steel

机译:奥氏体不锈钢轴对称棒材拉伸过程中多余变形因子的评估

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摘要

The strain distributions in the cross-section of austenitic 304 stainless steel bars, caused by axi-symmetric drawing under various conditions, were obtained using finite element method (FEM) simulations. Also, the effective tensile stress-strain curves of the initially annealed and of the drawn bars were determined. The FEM analysis and the tensile testing allowed the evaluation of redundant deformation factors for each drawing condition. The former involved an averaging of the strain distribution over the cross-section of the drawn bars, whereas the latter was based on the superposition of the stress-strain curves for the annealed and drawn material. The results from the FEM analysis are higher than those from the superposition technique, when △ values are above 2. This is associated with the differing strain averaging procedures in the two methods. The superposition method reflects the hardening characteristics of the material and its consequent final mechanical properties. On the other hand, FEM simulations depend on these hardening characteristics only in as much the FEM codes are initially fed with tensile stress-strain curves for the material.
机译:使用有限元方法(FEM)模拟获得了在各种条件下由轴对称拉伸引起的奥氏体304不锈钢棒材横截面中的应变分布。此外,确定了初始退火和拉制钢筋的有效拉伸应力-应变曲线。有限元分析和拉伸测试可以评估每种拉伸条件下的多余变形因子。前者涉及拉制钢筋横截面的平均应变分布,而后者则基于退火和拉制材料的应力-应变曲线的叠加。当△值大于2时,FEM分析的结果要高于叠加技术的结果。这与两种方法中不同的应变平均程序相关。叠加方法反映了材料的硬化特性及其最终的最终机械性能。另一方面,FEM仿真仅取决于这些硬化特性,因为FEM编码最初是用材料的拉伸应力-应变曲线提供的。

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