Random replacement policies to sustain the post-warranty reliability

IF 1.8 Q3 ENGINEERING, INDUSTRIAL
Lijun Shang, Qingan Qiu, Cang Wu, Yongjun Du
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引用次数: 5

Abstract

PurposeThe study aims to design the limited number of random working cycle as a warranty term and propose two types of warranties, which can help manufacturers to ensure the product reliability during the warranty period. By extending the proposed warranty to the consumer's post-warranty maintenance model, besides the authors investigate two kinds of random maintenance policies to sustain the post-warranty reliability, i.e. random replacement first and random replacement last. By integrating depreciation expense depending on working time, the cost rate is constructed for each random maintenance policy and some special cases are provided by discussing parameters in cost rates. Finally, sensitivities on both the proposed warranty and random maintenance policies are analyzed in numerical experiments.Design/methodology/approachThe working cycle of products can be monitored by advanced sensors and measuring technologies. By monitoring the working cycle, manufacturers can design warranty policies to ensure product reliability performance and consumers can model the post-warranty maintenance to sustain the post-warranty reliability. In this article, the authors design a limited number of random working cycles as a warranty term and propose two types of warranties, which can help manufacturers to ensure the product reliability performance during the warranty period. By extending a proposed warranty to the consumer's post-warranty maintenance model, the authors investigate two kinds of random replacement policies to sustain the post-warranty reliability, i.e. random replacement first and random replacement last. By integrating a depreciation expense depending on working time, the cost rate is constructed for each random replacement and some special cases are provided by discussing parameters in the cost rate. Finally, sensitivities to both the proposed warranties and random replacements are analyzed in numerical experiments.FindingsIt is shown that the manufacturer can control the warranty cost by limiting number of random working cycle. For the consumer, when the number of random working cycle is designed as a greater warranty limit, the cost rate can be reduced while the post-warranty period can't be lengthened.Originality/valueThe contribution of this article can be highlighted in two key aspects: (1) the authors investigate early warranties to ensure reliability performance of the product which executes successively projects at random working cycles; (2) by integrating random working cycles into the post-warranty period, the authors is the first to investigate random maintenance policy to sustain the post-warranty reliability from the consumer's perspective, which seldom appears in the existing literature.
随机更换政策,保证保修期后的可靠性
目的本研究旨在设计有限数量的随机工作周期作为保修期,并提出两种类型的保修,以帮助制造商确保产品在保修期内的可靠性。通过将建议的保修扩展到消费者的保修后维护模型,此外,作者还研究了两种维持保修后可靠性的随机维护策略,即先随机更换和后随机更换。通过整合取决于工作时间的折旧费用,为每个随机维护策略构建了成本率,并通过讨论成本率中的参数提供了一些特殊情况。最后,在数值实验中分析了所提出的保修和随机维护策略的敏感性。设计/方法/途径产品的工作周期可以通过先进的传感器和测量技术进行监测。通过监测工作周期,制造商可以设计保修政策以确保产品的可靠性性能,消费者可以对保修后维护进行建模以维持保修后的可靠性。在本文中,作者设计了有限数量的随机工作周期作为保修期,并提出了两种类型的保修,这可以帮助制造商确保产品在保修期内的可靠性性能。通过将拟议保修扩展到消费者的保修后维护模型,作者研究了两种维持保修后可靠性的随机更换策略,即先随机更换和后随机更换。通过整合取决于工作时间的折旧费用,构建了每次随机更换的成本率,并通过讨论成本率中的参数提供了一些特殊情况。最后,在数值实验中分析了对所提出的保证和随机替换的敏感性。结果表明,制造商可以通过限制随机工作周期的数量来控制保修成本。对于消费者来说,当随机工作周期的数量被设计为更大的保修限额时,成本率可以降低,而保修期后的时间不能延长。原创性/价值本文的贡献可以突出在两个关键方面:(1)作者调查了早期保修,以确保在随机工作周期内连续执行项目的产品的可靠性性能;(2) 通过将随机工作周期纳入保修期,作者首次从消费者的角度研究了随机维护策略,以维持保修期后的可靠性,这在现有文献中很少出现。
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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
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