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Experiment-based statistical prediction on diamond tool wear in micro grooving Ni-P alloys

机译:基于实验的微槽Ni-P合金金刚石刀具磨损的统计预测

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Diamond tool wear in grooving micro patterns on nickel alloys has caused an increase in the pattern geometry defect rate over time. Therefore, it is important to be able to understand and predict diamond tool wear and tool life. However, as experiments related to diamond micro grooving are extremely expensive and time consuming, the problem of limited data must be faced. In this paper a new method of predicting diamond tool wear which combines experimental equations with statistics is introduced. The wear model shows the relation of cutting condition, safe wear and probability, which was built by the first experiment. The predicted average wear was the same as the measured value of the verification experiment and the probability was a little smaller than the verification experiment due to the bigger standard deviation of the first experiment, which was not stable compared to the verification experiment.
机译:金刚石合金在镍合金上开槽的微图案中的磨损已导致图案几何缺陷率随时间增加。因此,重要的是能够理解和预测金刚石工具的磨损和寿命。然而,由于与金刚石微刻槽相关的实验非常昂贵且耗时,因此必须面对数据有限的问题。本文介绍了一种新的金刚石刀具磨损预测方法,该方法结合了实验方程和统计量。磨损模型显示了切削条件,安全磨损和机率之间的关系,该模型是通过第一个实验建立的。预测的平均磨损与验证实验的测量值相同,并且由于第一个实验的标准偏差较大,因此概率比验证实验小一些,与验证实验相比,该不稳定。

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