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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Predicting the remaining useful life of a cutting tool during turning titanium metal matrix composites
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Predicting the remaining useful life of a cutting tool during turning titanium metal matrix composites

机译:在转动钛金属基质复合材料期间预测切削工具的剩余使用寿命

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A cutting tool’s remaining useful life is what is left for a tool, at a particular working age, in order to reach a pre-specified level of acceptable performance. The prediction of remaining useful life is crucial in order to decrease the scrapped products or the unnecessary interruption of the machining process in order to replace the tool. Consequently, the accuracy of its estimation affects the cost of machining, particularly when the product’s material is very expensive. In this article, the remaining useful lifes of 25 identical tools are estimated during turning titanium metal matrix composites. These composites are extensively used in aerospace and aviation industries. Accurate estimation of the remaining useful life has positive impact on product quality in terms of producing the required specifications. In this article, experimental data are gathered, and the proportional hazard model are used in order to model the tool’s reliability and hazard functions with EXAKT software and then the remaining useful life curves are developed for different machining conditions, namely, the cutting speed and the feed rate. The use of the proportional hazard model is validated using a normalization process and Kolmogorov–Smirnov test. The proportionality assumption is verified using log minus log plot. The final result is the development of the curves that represent the tools’ reliability and the remaining useful life for different machining conditions of the titanium metal matrix composites.
机译:切割工具剩余的使用寿命是在特定工作年龄的工具中留下的,以达到预先指定的可接受性能水平。剩余使用寿命的预测是至关重要的,以减少报废产品或不必要的加工过程中断以便更换工具。因此,其估计的准确性会影响加工成本,特别是当产品的材料非常昂贵时。在本文中,在转动钛金属基质复合材料期间估计了25个相同工具的剩余有用的生命。这些复合材料广泛用于航空航天和航空行业。在生产所需规格方面,准确估计剩余的使用寿命对产品质量产生正影响。在本文中,收集了实验数据,使用比例危险模型来利用exakt软件来模拟工具的可靠性和危险功能,然后为不同的加工条件开发剩余的使用寿命曲线,即切割速度和切割速度进料速率。使用规范化过程和Kolmogorov-Smirnov测试验证了比例危险模型的使用。使用log减去日志图验证了比例假设。最终结果是开发代表工具可靠性的曲线和钛金属基质复合材料的不同加工条件的剩余使用寿命。

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