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Equipment failure characteristics RCM for optimizing maintenance cost

机译:设备故障特征和RCM以优化维护成本

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High reliability (and availability) with low life-cycle costs are general goals for all maintenance programs. An effective Preventative Maintenance (PM) regime balances the cost of maintenance with the elimination of degradation failure mechanisms through preemptive intervention. Failures in operation require corrective maintenance (CM) and are often the most expensive to repair. PM is conducted to reduce the probability of specific failures and hence reduce the CM burden and cost. However, PM actions can themselves introduce additional damage and failure mechanisms. Determining the optimum PM frequency requires these competing factors to be quantified. Too little PM allows sub-systems and components to wear out, decreasing overall system reliability. Conversely, too much PM will introduce an inordinate amount of damage (and failure mechanisms) that decreases system reliability, along with increasing the overall cost. In order to optimize maintenance, the failure modes of the individual components need to be analyzed and the maintenance program matched to how the equipment fails, how predictable the failure is and what the overall impact the failure has to the mission of the system it is a part of.
机译:高可靠性(和可用性)和低生命周期成本是所有维护计划的总体目标。有效的预防性维护(PM)制度通过先发制人的干预,在维护成本与消除降级失败机制之间取得平衡。操作失败需要纠正性维护(CM),并且通常是维修最昂贵的。进行PM是为了减少特定故障的可能性,从而减少CM的负担和成本。但是,PM动作本身可能会引入其他损坏和故障机制。确定最佳PM频率需要对这些竞争因素进行量化。 PM太少会使子系统和组件磨损,从而降低整体系统可靠性。相反,过多的PM将引入过多的损坏(和故障机制),从而降低系统可靠性,并增加总体成本。为了优化维护,需要分析各个组件的故障模式,并根据设备故障,故障的可预测性以及故障对系统任务的总体影响进行匹配的维护计划部分。

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