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Evaluation of experimentally observed asymmetric distributions of hardness, strain and residual stress in cold drawn bars by FEM-simulation

机译:通过有限元模拟评估实验观察到的冷拔钢筋中硬度,应变和残余应力的不对称分布

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The purpose of this paper is to investigate the correlation of strain and hardness parameters in a drawing process chain of an SAE 1045 steel bar. The present work discusses the application of the experimental and numerical method of analysis, based on hardness measurements, which allows evaluation of the strain distribution and mechanical properties in drawn products. The influence on the strain, hardness and residual stress distributions of cold drawing parameter variations were investigated by numerical simulation. A misalignment between bar and drawing tool was evaluated in the models, as well as variation of friction at different regions of the bar. Compression tests were carried out at different reductions to determine the flow curve and analyze the material behavior during a cold hardening process. The microstructural analysis has shown a potential influence of material segregation in the characteristics of the final products. Simulation results validate the assumption of die misalignment and inhomogeneous lubrication influences on residual stresses profiles after wire drawing. Taking into account effects of misalignment and friction at the same time, in a so-called combination model, a better agreement between numerical simulation and experimental results for cold drawing process was achieved.
机译:本文的目的是研究SAE 1045钢筋拉拔工艺链中的应变和硬度参数之间的相关性。本工作讨论了基于硬度测量的实验和数值分析方法的应用,该方法可以评估拉伸产品中的应变分布和机械性能。通过数值模拟研究了冷拔参数变化对应变,硬度和残余应力分布的影响。在模型中评估了杆和绘图工具之间的未对准以及杆不同区域的摩擦力变化。在不同的压缩比下进行压缩测试,以确定流动曲线并分析冷硬化过程中的材料性能。微观结构分析显示了材料偏析对最终产品特性的潜在影响。仿真结果验证了拉丝后模具未对准和润滑不均匀对残余应力分布的影响的假设。同时考虑不对准和摩擦的影响,在所谓的组合模型中,在数值模拟与冷拔过程的实验结果之间取得了更好的一致性。

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