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Modelling and Simulation of Mechanical Loads and Residual Stresses in Deep Rolling at Elevated Temperature

机译:高温下深轧机械载荷和残余应力的建模和仿真

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摘要

Based on the concept of Process Signatures, the deep rolling process is analyzed, aiming at functional relationships between material modifications and internal material loads during the process. The focus of this work is to investigate the influence of the workpiece temperature on the generated residual stress components. For this purpose, extensive finite element simulations of deep rolling were conducted, taking into account the effect of neighboring tool paths on the internal material loads and residual stress. A kinematic strain hardening model was parameterized and utilized and the simulations were validated experimentally. Simulated residual stresses agree qualitatively well with measurements and show a strong influence of the workpiece temperature as expected. Process Signature Components were generated, taking into account the maximal and minimal residual stress as well as their respective positions beneath the workpiece surface.
机译:基于工艺特征的概念,分析了深轧过程,针对工艺过程中材料改性与内部材料负载之间的功能关系。本工作的重点是研究工件温度对产生的残余应力分量的影响。为此,对深轧进行了广泛的有限元模拟,同时考虑了相邻刀具路径对内部材料载荷和残余应力的影响。对运动学应变硬化模型进行参数化和利用,并通过实验验证了仿真结果。模拟的残余应力在质量上与测量结果吻合良好,并显示出工件温度的强烈影响,正如预期的那样。生成工艺特征组件时,考虑了最大和最小残余应力以及它们在工件表面下的各自位置。

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