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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimal fixture design in peripheral milling of thin-walled workpiece
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Optimal fixture design in peripheral milling of thin-walled workpiece

机译:薄壁工件外围铣削中的最佳夹具设计

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摘要

In order to optimize the positions of the locators in peripheral milling of a thin-walled workpiece, a finite element model along with an accurate cutting forces model is proposed in this paper. The finite element model takes into account the thickness variations of the workpiece in peripheral milling. The locators on the secondary locating surface directly influence the surface errors in peripheral milling of thin-walled workpiece, so this paper deals with the optimization of the positions of the locators on the secondary locating surface. A method including two steps is presented. In the first step, the initial positions of the locators are determined by adding the locators at the position with the maximum deformation. In the second step, a heuristic algorithm is proposed to optimize the positions of the locators. Finally, a simulation example is used to illustrate the method.
机译:为了优化薄壁工件外圆铣削中的定位器位置,提出了有限元模型和精确的切削力模型。有限元模型考虑了外围铣削中工件的厚度变化。次要定位面上的定位器会直接影响薄壁工件外围铣削中的表面误差,因此本文着重研究了次要定位面上定位器的位置优化。提出了一种包括两个步骤的方法。在第一步中,通过将定位器添加到变形最大的位置来确定定位器的初始位置。第二步,提出一种启发式算法来优化定位器的位置。最后,通过仿真实例对方法进行了说明。

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