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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Reliability-Based Dynamic Maintenance Threshold for Failure Pretention of Continuously Monitored Degrading Systems
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Reliability-Based Dynamic Maintenance Threshold for Failure Pretention of Continuously Monitored Degrading Systems

机译:基于可靠性的动态维护阈值,用于持续监控退化系统的故障预防

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摘要

Machine failures in manufacturing systems interrupt production operations and cause production loss. The conventional methods for failure prevention are to perform preventive maintenance before failure occurs. In these methods, a fixed maintenance threshold (FMT) is obtained using the lifetime distribution of each machine. This threshold can then be used to trigger maintenance work-orders. A problem with the conventional technique is that it does not consider the updated state of the system, which continues to change before and after maintenance. Therefore, unnecessarily high costs can be incurred due to unexpected equipment failure (lack of maintenance) or excessive maintenance. In this paper, a reliability-based dynamic maintenance threshold (DMT) is calculated based on the updated equipment status. The benefits of the DMT are demonstrated in a numerical case study on a drilling process. The results illustrate that the maintenance policy using the DMT can reduce unscheduled downtime, increase equipment availability, and utilize the equipment remaining useful life more effectively than a conventional FMT-based maintenance policy.
机译:制造系统中的机器故障会中断生产操作并导致生产损失。预防故障的常规方法是在发生故障之前执行预防性维护。在这些方法中,使用每台机器的寿命分布可获得固定的维护阈值(FMT)。然后可以使用此阈值来触发维护工作订单。常规技术的一个问题是它不考虑系统的更新状态,该状态在维护前后会不断变化。因此,由于意料之外的设备故障(缺乏维护)或过度的维护,可能会导致不必要的高成本。在本文中,基于更新的设备状态来计算基于可靠性的动态维护阈值(DMT)。 DMT的好处在钻井过程的数值案例研究中得到了证明。结果表明,与传统的基于FMT的维护策略相比,使用DMT的维护策略可以减少计划外的停机时间,提高设备的可用性,并更有效地利用设备的剩余使用寿命。

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