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Analysis of chatter in contour grinding of optical materials

机译:光学材料轮廓磨削中的颤动分析

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摘要

Chatter that limits ground surface finish has been observed in the deterministic microgrinding of brittle optical materials. In this article, the classical single degree of freedom model for chatter, accounting for both work and tool regenerative effects, is adapted for contour grinding optical surfaces. A linearized expression for the cutting stiffness is developed for the contour grinding geometry based on Preston's law. Techniques developed to measure the machine frequency response function (PRF) and the Preston coefficient, needed as inputs to the simulations, are described. Numerical simulations based on this model are used to predict the grinding system behavior and to investigate process parameters affecting chatter stability. The stability limits observed during grinding experiments on optical glasses are in good agreement with the simulation results.
机译:在脆性光学材料的确定性微研磨中已经观察到限制地面光洁度的颤动。在本文中,考虑了功和刀具再生效应的颤动的经典单一自由度模型适用于轮廓磨削光学表面。根据普雷斯顿定律,为轮廓磨削几何形状开发了切削刚度的线性表达式。描述了开发用于测量机器频率响应函数(PRF)和普雷斯顿系数(作为模拟输入)的技术。基于该模型的数值模拟可用于预测磨削系统的行为并研究影响颤振稳定性的工艺参数。在光学玻璃上进行研磨实验时观察到的稳定性极限与模拟结果非常吻合。

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