多可修系统不完全维修的渐进式维修策略

IF 1.8 Q3 ENGINEERING, INDUSTRIAL Journal of Quality in Maintenance Engineering Pub Date : 2021-07-26 DOI:10.1108/jqme-08-2019-0075
G. Sharma, R. Rai
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引用次数: 2

摘要

目的可修部件在每次维修活动后的退化程度可能不相同;因此,经典的(传统的基于时间的)维护策略,考虑预防性维护(PM)、基于使用年限的维护和在固定的时间间隔内进行大修,可能无法监控组件的确切状况。因此,渐进式维护策略(PMP)可能更适合于处理大型、复杂和关键的可修复系统(RS)的行业,如航空航天工业、核电站等。设计/方法/方法开发了渐进式维护策略,其中通过调整PM间隔和平均剩余寿命(MRL),在每次服务活动后修改系统的硬寿命、PM计划时间和大修周期,从而不增加故障风险。然后,对经典的PM策略和开发的PMP进行了比较研究,并记录了可用性,平均故障间隔时间和维护成本降低的改进。独创性/价值拟议的PMP比任何其他现有的维护政策更有效地处理设备退化,并且在应用上也很灵活,因为该政策可以根据设备的故障概况不断修改。类似的维护策略假设寿命分布在文献中是可用的,但为了确定所提出的PMP更适合和适用于行业,本文使用了基于木岛的不完全维护模型。通过一个实时数据集实例验证了所提出的PMP。
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Progressive maintenance policy for multiple repairable systems with imperfect maintenance
PurposeDegradation of repairable components may not be similar after each maintenance activity; thus, the classic (traditional-time based) maintenance policies, which consider preventive maintenance (PM), age-based maintenance and overhauls to be done at fixed time interval, may fail to monitor the exact condition of the component. Thus, a progressive maintenance policy (PMP) may be more appropriate for the industries that deal with large, complex and critical repairable systems (RS) such as aerospace industries, nuclear power plants, etc.Design/methodology/approachA progressive maintenance policy is developed, in which hard life, PM scheduled time and overhaul period of the system are revised after each service activity by adjusting PM interval and mean residual life (MRL) such that the risk of failure is not increased.FindingsA comparative study is then carried out between the classic PM policy and developed PMP, and the improvement in availability, mean time between failures and reduction in maintenance cost is registered.Originality/valueThe proposed PMP takes care of the equipment degradation more efficiently than any other existing maintenance policies and is also flexible in its application as the policy can be continuously amended as per the failure profile of the equipment. Similar maintenance policies assuming lifetime distributions are available in the literature, but to ascertain that the proposed PMP is more suitable and applicable to the industries, this paper uses Kijima-based imperfect maintenance models. The proposed PMP is demonstrated through a real-time data set example.
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来源期刊
Journal of Quality in Maintenance Engineering
Journal of Quality in Maintenance Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
4.00
自引率
13.30%
发文量
24
期刊介绍: This exciting journal looks at maintenance engineering from a positive standpoint, and clarifies its recently elevatedstatus as a highly technical, scientific, and complex field. Typical areas examined include: ■Budget and control ■Equipment management ■Maintenance information systems ■Process capability and maintenance ■Process monitoring techniques ■Reliability-based maintenance ■Replacement and life cycle costs ■TQM and maintenance
期刊最新文献
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