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首页> 外文期刊>Journal of Materials Science >Finite element analysis for the geometry effect on strain inhomogeneity during high-pressure torsion
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Finite element analysis for the geometry effect on strain inhomogeneity during high-pressure torsion

机译:几何形状对高压扭转过程中应变不均匀性影响的有限元分析

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The aim of this study is to investigate the geometric effect on the inhomogeneous deformation behavior along the thickness direction as well as the radial direction of the workpiece during high-pressure torsion (HPT) using the finite element method. The simulation results show that the area of the dead metal zone at the corner in the edge of the workpiece decreased with increasing the angle of the lateral wall of the depression in the HPT die, resulting in relatively homogeneous deformation during HPT. Furthermore, the friction force on the lateral surface of the workpiece affecting the deformation inhomogeneity increased with increasing the depth-toradius ratio of depression. Therefore, it was concluded that the strain inhomogeneity along the thickness direction can be minimized by controlling the die geometries.
机译:这项研究的目的是使用有限元方法研究在高压扭转(HPT)期间沿厚度方向以及径向方向对不均匀变形行为的几何影响。仿真结果表明,随着HPT模具中凹陷的侧壁角度的增加,工件边缘拐角处的死金属区域的面积减小,从而导致HPT期间变形相对均匀。此外,随着凹陷的深度-半径比增加,影响变形不均匀性的工件侧面上的摩擦力增加。因此,可以得出结论,通过控制模具的几何形状,可以使沿厚度方向的应变不均匀性最小化。

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