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Design for Lifecycle Cost and Preventive Maintenance Using Time-Dependent Reliability

机译:使用时间依赖可靠性设计生命周期成本和预防性维护

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Reliability is an important engineering requirement for consistently delivering acceptable product performance through time. As time progresses, the product may fail due to time phenomena such as time-dependent operating conditions, component degradation, etc. The degradation of reliability with time may increase the lifecycle cost due to potential warranty costs, repairs and loss of market share. In design for lifecycle cost and preventive maintenance, we must account for product quality, and time-dependent reliability. Quality is a measure of our confidence that the product conforms to specifications as it leaves the factory. Reliability depends on 1) the probability that the system will perform its intended function successfully for a specified interval of time, and 2) on the probability that the system response will not exceed an objectionable by the customer or operator, threshold for a certain time period. Quality is time-independent, and reliability is time-dependent. This paper presents a methodology to determine the optimal design and preventive maintenance of time-dependent, multi-response systems, by minimizing the cost during the life of the product. The lifecycle cost includes a production, an inspection, and an expected variable cost. All costs depend on quality and/or reliability. A roller clutch example highlights the design methodology for lifecycle cost.
机译:可靠性是一种重要的工程要求,可以通过时间始终如一地提供可接受的产品性能。随着时间的推移,产品可能由于时间现象而失败,例如时间依赖的操作条件,组分降级等。随着时间的推移,可靠性的降低可能会增加由于潜在的保修费用,维修和市场份额损失而增加生命周期成本。在设计的生命周期成本和预防性维护方面,我们必须考虑产品质量和时间依赖的可靠性。质量是我们信心的衡量标准,即产品符合规格,因为它离开了工厂。可靠性取决于1)系统将成功地执行其预期函数的概率为指定的时间间隔,以及2)在客户或运算符不超过令人反感的概率上,阈值一段时间段。质量是时间无关的,可靠性是时间依赖的。本文通过最大限度地降低产品寿命期间的成本,提出了一种确定时间依赖性多响应系统的最佳设计和预防性维护的方法。生命周期成本包括生产,检查和预期的可变成本。所有费用取决于质量和/或可靠性。滚轮离合器示例突出了生命周期成本的设计方法。

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