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Influence of Die Surface Textures during Metal Forming—A Study Using Experiments and Simulation

机译:模具表面纹理在金属成形过程中的影响-基于实验和模拟的研究

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摘要

Friction plays an important role in metal forming processes, and the surface texture of the die is a major factor that influences friction. In the present investigation, experiments were conducted to understand the role of surface texture of the harder die surface and load on coefficient of friction. The data analysis showed that the coefficient of friction is highly dependent on the surface texture of the die surface. Assigning different magnitude of coefficients of friction, obtained in the experiments, at different regions between the die and the workpiece, Finite element (FE) simulation of a compression test was carried out to understand the effect of friction on deformation and stress/strain-rate distribution. Simulation results revealed that, owing to the difference in coefficient of friction, there is a change in metal flow pattern. Both experimental and simulation results confirmed that the surface texture of the die surface and thus coefficient of friction directly affects the strain rate and flow pattern of the workpiece.
机译:摩擦在金属成形过程中起着重要作用,而模具的表面纹理是影响摩擦的主要因素。在本研究中,进行了实验以了解较硬模具表面的表面纹理和载荷对摩擦系数的作用。数据分析表明,摩擦系数高度依赖于模具表面的表面纹理。在模具和工件之间的不同区域,分配在实验中获得的不同大小的摩擦系数,进行了压缩试验的有限元(FE)模拟,以了解摩擦对变形和应力/应变率的影响分配。仿真结果表明,由于摩擦系数的差异,金属流型发生了变化。实验和仿真结果均证实,模具表面的表面纹理以及因此的摩擦系数直接影响工件的应变速率和流动模式。

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