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Simulation of Surface Topography in Diamond Turning under the Effect of Vibration

机译:振动作用下钻石转动表面形貌的仿真

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In this paper, a surface topography simulation model of ultra-precision machining which incorporates the important factors such as tool geometry, cutting parameter ( including feed speed and cutting depth) and relative motion between the cutting tool and the workpiece is established to study the effects of vibration on the surface topography. Trimming phenomenon of cutting edge profile is also analyzed at the radial section of the workpiece by the simulation program. It is experimentally shown that good effect is obtained by using the model to simulate surface topography of ultra-precision face turning. The model can also be used for simulating the traces of tool motion, predicting the three dimension microscopic surface topography and two dimension surface profile, and optimizing the cutting parameters of diamond turning process.
机译:本文采用了超精密加工的表面形貌仿真模型,其结合了工具几何形状,切割参数(包括进给速度和切割深度)和切削工具和工件之间的相对运动的重要因素,以研究效果振动表面形貌。还通过模拟程序在工件的径向部分处分析了切削刃轮廓的修剪现象。实验结果表明,通过使用模型来模拟超精密面转动的表面形貌来获得良好的效果。该模型还可用于模拟刀具运动的痕迹,预测三维微观表面形貌和两个尺寸表面轮廓,以及优化金刚石转动过程的切割参数。

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