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Evaluation of Plastic Flow Properties of Materials Analysis of Indentation Load-Depth Curve

机译:压痕载荷-深度曲线的材料塑性流动特性评估

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In this study, the flow properties of various structural steels were estimated by analyzing the indentation load-depth curve obtained by ball indentation and the pile-up or sink-in phenomenon around indentation. In deriving the true stress-true strain curve, the representative strain #epsilon#_R was obtained by considering the deformation behavior beneath the indenter. And the representative stress #sigma#_R was obtained by using the relation P_m/#sigma#_R=#PSI# for fully plastic stage, where P_m is the mean contact pressure. The constraint factor '1' was then related to the work-hardening characteristics of material in this study. For various steels such as TMCP, SM50, SA508, SA213, SA106, and AlS11025, the results of indentation test were compared to those of tensile test, which shows that the present analysis can predict successfully the plastic flow properties of structural steels.
机译:在这项研究中,通过分析由球头压痕获得的压痕载荷-深度曲线以及压痕周围的堆积或下沉现象,估算了各种结构钢的流动性能。在推导真实应力-真实应变曲线时,通过考虑压头下方的变形行为获得了代表性应变#epsilon#_R。对于全塑性阶段,通过使用关系P_m /#sigma#_R =#PSI#获得代表应力#sigma#_R,其中P_m是平均接触压力。约束因子“ 1”则与本研究中材料的加工硬化特性有关。对于TMCP,SM50,SA508,SA213,SA106和AlS11025等各种钢,将压痕试验的结果与拉伸试验的结果进行了比较,这表明本分析可以成功预测结构钢的塑性流动性能。

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