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首页> 外文期刊>Journal of Materials Processing Technology >Stress correction method for flow stress identification by tensile test using notched round bar
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Stress correction method for flow stress identification by tensile test using notched round bar

机译:使用缺口圆形钢筋通过拉伸试验的压力校正方法

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摘要

In this paper, a stress correction method for flow stress identification using notched round bar tensile test is proposed. Flow stress is evaluated in uniform elongation and local elongation until final fracture in a tensile test with circumference notched round bar tensile test specimens. Tensile load and change in the shape of the notch are measured by image analysis. In order to correct the average tensile stress to the flow stress, inverse analysis is applied to the tensile test. For the validation of the inverse analysis, numerical tensile tests are performed by FEM. As a result of applying the inverse analysis for the numerical tensile tests, the corrected flow stress completely reproduces the two types of reference flow stress curves which are determined by Swift's and Voce's law. On the other hand, the flow stress corrected by Bridgman's method, which is a conventional stress correction method, overestimated these reference flow stress curves. In the case of the actual tensile test of low carbon steel SS400 (in JIS), the flow stress corrected by inverse analysis corresponds to Swift's law determined in uniform elongation. As well as numerical tensile test results, the flow stress corrected by Bridgman's method is higher than that of obtained by the inverse analysis.
机译:本文提出了一种利用缺口圆形条拉拉丝试验的用于流应力识别的应力校正方法。在均匀的伸长率和局部伸长中评价流量应力直至与圆周脱纸圆形钢筋拉伸试样的拉伸试验中的最终断裂。通过图像分析测量拉伸载荷和凹口形状的变化。为了校正流量应力的平均拉伸应力,逆分析应用于拉伸试验。为了验证逆分析,数值拉伸试验由FEM进行。作为应用数值拉伸试验的逆分析的结果,校正的流量应力完全再现了由Swift和Voce的定律确定的两种类型的参考流应力曲线。另一方面,Bridgman的方法校正的流量应力是传统的应力校正方法,高估这些参考流应力曲线。在低碳钢SS400(JIS)的实际拉伸试验的情况下,逆分析校正的流量应力对应于在均匀伸长率中确定的Swift的定律。除了数值拉伸试验结果,Bridgman方法校正的流量应力高于通过逆分析获得的流量应力。

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