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Time-Variant Reliability Assessment and Its Sensitivity Analysis of Cutting Tool under Invariant Machining Condition Based on Gamma Process

机译:基于伽玛过程的切削条件下刀具时变可靠性评估及其敏感性分析

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摘要

The time-variant reliability and its sensitivity of cutting tools under both wear deterioration and an invariant machining condition are analyzed. The wear process is modeled by a Gamma process which is a continuous-state and continuous-time stochastic process with the independent and nonnegative increment. The time-variant reliability and its sensitivity of cutting tools under six cases are considered in this paper. For the first two cases, the compensation for the cutting tool wear is not carried out. For the last four cases, the off-line or real-time compensation method is adopted. While the off-line compensation method is used, the machining error of cutting tool is supposed to be stochastic. Whether the detection of the real-time wear is accurate or not is discussed when the real-time compensation method is adopted. The numerical examples are analyzed to demonstrate the idea of how the reliability of cutting tools under the invariant machining condition could be improved according to the methods described in this paper.
机译:分析了在磨损恶化和加工条件不变的情况下刀具的时变可靠性及其敏感性。磨损过程是通过Gamma过程建模的,该过程是具有独立增量和非负增量的连续状态和连续时间随机过程。考虑了六种情况下刀具的时变可靠性及其敏感性。对于前两种情况,不对切削刀具的磨损进行补偿。对于后四种情况,采用离线或实时补偿方法。当使用离线补偿方法时,切削刀具的加工误差被认为是随机的。当采用实时补偿方法时,讨论了实时磨损的检测是否准确。通过数值例子分析,证明了如何根据本文所述方法提高切削刀具在不变加工条件下的可靠性。

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