首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Simulation of machined surface topography in end-milling processes using a shear-plane-based cutting force model
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Simulation of machined surface topography in end-milling processes using a shear-plane-based cutting force model

机译:使用基于剪切面的切削力模型模拟立铣削中的加工表面形貌

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The purpose of this paper is to extend the theoretical understanding of the dynamic milling process and to derive a computational model to predict machined surface topography using, as the foundation, a newly developed shear-plane-based rather than the customary chip-thickness-based cutting force model. The machined surface is synthesized by concatenating two-parameter bicubic surface patches generated by discretized cutting edge segments as they follow their respective trajectories. To maintain positional and tangential continuity, both the coordinates of nodal points on the cutting edges and the associated instantaneous velocities are used to construct the surface patches. A computer simulation program that incorporates the shear-plane-based cutting force model and geometric, kinematic and surface topography prediction models is developed. Computer simulations and cutting tests confirm the validity of the computational models.
机译:本文的目的是扩展对动态铣削过程的理论理解,并以新开发的基于剪切面而不是基于常规切屑厚度为基础,推导计算模型来预测加工的表面形貌切削力模型。加工后的表面是通过将离散化的刀沿片段沿其各自的轨迹生成的两参数双三次曲面片进行级联而合成的。为了保持位置和切向连续性,在切削刃上的节点坐标和相关的瞬时速度都用于构造表面斑块。开发了一个计算机模拟程序,该程序结合了基于剪切面的切削力模型以及几何,运动学和表面形貌预测模型。计算机仿真和切削测试证实了计算模型的有效性。

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