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A FLEXIBLE SIMILARITY BASED ALGORITHM FOR TOOL CONDITION MONITORING

机译:基于柔性相似性的刀具状况监控算法

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To realize smart manufacturing in various machining processes, tool condition monitoring (TC.M) systems are employed to detect the state of the tool in optimizing tool conditions and preventing catastrophic failures. Common types of TCM systems include part-specific methods and generic methods. However, many developed TCM systems lack flexibility and require extensive set-up To address these issues, the proposed algorithm takes advantage of repetitive machining operations in manufacturing settings and adopts similarity analysis to realize tool condition monitoring by comparing the signals collected from the tool with known conditions against the signals generated by the tool to be monitored. To validate the effectiveness of the proposed TCM system, a case study was performed in which the power signal was collected and used in the similarity analysis. According to this case study, it has been proven that the proposed TCM algorithm is able to accurately predict the state of the tool, i.e. tool wear, with a very simple and flexible solution. Furthermore, several tool condition induced machining parameters have been evaluated to satisfy various monitoring requirements. Nearly all evaluated machining parameters validated the performance and flexibility of the TCM algorithm.
机译:为了在各种加工过程中实现智能制造,用于在优化工具条件下检测工具的状态监测(TC.M)系统以检测工具的状态并防止灾难性故障。常用类型的TCM系统包括特定于部分的方法和通用方法。然而,许多发展中的TCM系统缺乏灵活性,需要广泛的设置来解决这些问题,所提出的算法利用了制造设置中的重复加工操作,采用了相似性分析来实现从具有已知工具收集的信号来实现刀具状态监控对由要监视工具生成的信号的条件。为了验证所提出的TCM系统的有效性,进行了案例研究,其中收集功率信号并用于相似性分析。根据这种情况的研究,已证明所提出的TCM算法能够准确地预测工具的状态,即工具磨损,具有非常简单且灵活的解决方案。此外,已经评估了几种工具条件诱导的加工参数以满足各种监测要求。几乎所有评估的加工参数都验证了TCM算法的性能和灵活性。

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