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Residual stress characteristics in a non-circular drawing sequence of pearlitic steel wire

机译:珠光体钢丝非圆形拉伸序列中的残余应力特性

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In this paper, characteristics of residual stress in pearlitic steel wire drawn by a non-circular drawing (NCD) sequence with two processing routes, NCDA and NCDB, were experimentally and numerically investigated up to the 12th pass in comparison with conventional wire drawing (WD). For experimental investigation of the axial residual stress at the surface of the drawn wire, destructive (deflection) and non-destructive methods were employed. According to the experimental results, axial surface residual stress of the drawn wire by the NCD sequence was lower and more homogeneous compared to the conventional WD. Based on the elasto-plastic numerical simulation results from the surface to the center of the drawn wire using a commercial DEFORM-3D, an empirical relationship between residual stress and reduction of area was determined to predict the residual stress evolution in the multi-pass WD, NCDA, and NCDB, in that order. From the results of this investigation, it can be construed that the NCD sequence, especially the NCDB, might be helpful in improving the residual stress characteristics of pearlitic steel wire to improve its mechanical behavior and service life.
机译:在本文中,通过传统的线材拉伸(WD )。为了实验研究绘制线表面的轴向残余应力,采用破坏性(偏转)和非破坏性方法。根据实验结果,与常规WD相比,NCD序列的拉伸线的轴表残余应力较低,更均匀。基于弹性塑料数值模拟,使用商业变形-3D表面由拉伸导线的中心产生的结果,确定残余应力与区域的减少之间的经验关系,以预测多通WD中的残余应力演进,NCDA和NCDB,按此顺序。从本研究结果来看,它可以解释为NCD序列,特别是NCDB,可能有助于提高珠光体钢丝的残余应力特性,以提高其机械行为和使用寿命。

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