首页> 外文期刊>International Journal of Machining and Machinability of Materials >Three-dimensional finite element simulation analysis of milling deformation of SiCp/Al composites thin-walled parts
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Three-dimensional finite element simulation analysis of milling deformation of SiCp/Al composites thin-walled parts

机译:SICP / Al复合材料薄壁零件铣削变形的三维有限元仿真分析

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摘要

>In this paper, a three-dimensional simulation analysis by finite element analysis software ABAQUS on the machinability of silicon carbide particle reinforced aluminium matrix (SiCp/Al) composites thin-walled parts with a polycrystalline diamond tool (PCD) has been carried out. It revealed the influence of radial depth, axial depth, feed rate, cutting speed and thin-walled dimensions on machining deformation of the workpiece. The results indicate that the deformation of thin-walled parts at the both ends is larger than in the middle. With an increase in radial depth, axial depth and feed rate, the deformation also increases, but the influence of feed rate is less than axial depth and the influence of axial depth is less than radial depth. Cutting speed has slight influence on the deformation. In addition, the deformation increases with an increase in height of workpiece and decreases with an increase in thickness and length.
机译:在本文中,通过有限元分析软件ABAQUS的三维模拟分析碳化硅颗粒增强铝基矩阵(SICP / Al)复合材料与多晶金刚石工具(PCD)的薄壁部件进行了薄壁部件 出去。 它揭示了径向深度,轴向深度,进料速率,切割速度和薄壁尺寸对工件加工变形的影响。 结果表明,两端薄壁部件的变形大于中间。 随着径向深度,轴向深度和进料速率的增加,变形也增加,但进料速率的影响小于轴向深度,并且轴向深度的影响小于径向深度。 切割速度对变形有影响。 此外,变形随着工件高度的增加而增加,并且随着厚度和长度的增加而降低。

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