• Title/Summary/Keyword: warranty

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Optimization of Cost and Downtime for Periodic PM Model Following the Expiration of Warranty

  • Jung, Ki-Mun
    • Journal of the Korean Data and Information Science Society
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    • v.19 no.2
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    • pp.587-596
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    • 2008
  • This paper develops the optimal periodic preventive maintenance policies following the expiration of warranty: renewing warranty and non-renewing warranty. After the warranty period is expired, the system undergoes the PM periodically and is minimally repaired at each failure between two successive PMs. Firstly, we determine the expected cost rate per unit time and the expected downtime per unit time for the periodic PM model. Then the overall value function suggested by Jiang and Ji(2002) is applied to obtain the optimal PM period and the optimal PM number. Finally, the numerical examples are presented for illustrative purpose.

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Optimal Preventive Maintenance Policy for a Repairable System

  • Jung, Ki-Mun
    • Journal of the Korean Data and Information Science Society
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    • v.17 no.2
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    • pp.367-377
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    • 2006
  • This paper develops a periodic preventive maintenance(PM) policy following the expiration of warranty. Two types of warranty are considered: renewing warranty and non-renewing warranty. Also, we consider the situation where each PM cost is an increasing function of the PM effect. We determine the optimal number of PM's before replacing the system by a new one and the optimal length of period for the periodic PM following the expiration of warranty. Explicit solutions to determine the optimal periodic PM are presented for the Weibull distribution case.

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Cost Analysis of a Two-dimensional Warranty Policy with Replacement and Repair Regions (교체와 수리영역을 갖는 이차원 보증정책의 비용분석)

  • Yun, Won-Young;Yoo, Seung-Hyo
    • Journal of Korean Institute of Industrial Engineers
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    • v.22 no.2
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    • pp.247-253
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    • 1996
  • This paper proposes a new two-dimensional warranty policy with replacement and repair regions and analyses the warranty cost under the new warranty policy. The product is sold under a two-dimensional warranty(usage and age) in which two regions exist : the failed product is replaced by the manufacturer in the replacement region or minimally repaired by the manufacturer in the repair region. The formula of the expected warranty cost under some assumptions about usage and failure is obtained. Numerical examples are studied.

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Optimum Free Warranty Interval for Repairable Items (수리가능한 아이템의 최적무상보증기간)

  • 정영배
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.21 no.45
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    • pp.301-307
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    • 1998
  • This paper proposes free warranty interval for repairable items when the failure types of item are considered. Failure types are classified into major failure and minor failure. If major failure occurs during warranty period, the item is replaced and if minor failure occurs during warranty period, the item is minimally repaired. This paper determines the optimum free warranty interval which minimizes total expected cost of the free warranty cost model. Numerical example is shown in which failure time of item has weibull distribution.

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The Cost Analysis of Consumer's View of the Stepdown Warranty Policy (단계별 사후보증제도에서의 소비자비용분석)

  • 김원중;김재중
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.11 no.17
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    • pp.55-65
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    • 1988
  • This article suggests the costs analysis of resumer's view under the stepdown warranty is renewd whenever a failure occurs in the warranty period. And the general warranty policy is showed such as free replacement policy prorata warranty policy, hybrid warranty policy. In this respect case, the cost of consumer is also calculated. In order to study the cost analysis of consumer. "RENEWAL THEORY" is introduced and the cost of consumer is calculated.alculated.

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Optimal Replacement Policy for a Repairable System with Combination Warranty (혼합보증이 있는 수리 가능한 시스템에 대한 최적의 교체정책)

  • 정기문
    • The Korean Journal of Applied Statistics
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    • v.15 no.1
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    • pp.107-117
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    • 2002
  • In this paper we present the optimal replacement policies following the expiration of combination warranty. We consider two types of combination warranty policies: renewing warranty and non-renewing warranty. The criterion used to determine the optimal replacement period is the expected cost rate per unit time from the user'perspective. The optimal maintenance period following the expiration of combination warranty is obtained. Some numerical examples are presented for illustrative purpose.

Warranty Cost Models for a Second-Hand Products

  • Kim, Che-Soong
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.22 no.53
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    • pp.1-12
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    • 1999
  • A warranty cost analysis for new products have received a lot of attention. In contrast, there is hardly any literature on similar analysis for second-hand products. The market of second-hand products has been increasing and along with that the importance of warranties for second-hand products has also been increasing. However, warranty policies similar to new products are not economically acceptable to dealers. One needs to formulate new warranty policies and models to estimate expected warranty costs for second-hand products. This paper proposes one-dimensional cost sharing warranty policies and develops models at system level to analysis warranty cost for second-hand products sold with these policies.

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-A study on Optimal Cost Model of Combined ESS and Burn-in under Warranty Policy- (품질보증정책하에 ESS와 Burn-in을 결합한 최적비 용모형 의 설정$^{1)}$)

  • 송서일;조영찬;박현규
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.24 no.62
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    • pp.1-10
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    • 2001
  • The electronics industry is fast growing segment of manufacturing and service industries. It is important that the manufacturer develops a product with adequate life cycle, high quality, and low failure rate in the specified time period. Environmental Stress Screening(ESS) and burn-in are widely used in the electronic industry to assist in the elimination of early failure. In this research, we construct optimal cost model of combined ESS and burn-in under various warranty policy and establish optimal testing times for given environments. Also we conduct sensitivity analysis on various parameter. The results of this study are summarized as follows. Comparing free warranty policy to rebate warranty policy, optimal ESS time is longer under free warranty policy, and optimal burn-in time is longer under rebate warranty policy. Free warranty policy higher than rebate warranty policy in total cost.

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Two stage maintenance policy under non-renewing warranty (비재생보증 하에서의 이단계 보전정책)

  • Jung, Ki Mun
    • Journal of the Korean Data and Information Science Society
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    • v.27 no.6
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    • pp.1557-1564
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    • 2016
  • Recently, an extended warranty of a system following the expiration of the basic warranty is becoming increasingly popular to the user. In this respect, we suggest a two stage maintenance policy under the non-renewing warranty from the user's point of view in this paper. In the first stage, the user has to decide whether or not to purchase the extended warranty period. And, in the second stage, the optimal replacement period following the expiration of the warranty is determined. Under the extended warranty, the failed system is minimally repaired by the manufacturer at no cost to the user. We utilize the expected cost from the user's perspective to determine the optimal two stage maintenance policy. Finally, a few numerical examples are given for illustrative purpose.

Preventive maintenance model with extended warranty (연장된 보증을 갖는 예방보전모형)

  • Jung, Ki Mun
    • Journal of the Korean Data and Information Science Society
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    • v.24 no.4
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    • pp.773-781
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    • 2013
  • Recently, an extended warranty of the system following the expiration of the basic warranty is becoming increasingly popular to the user. In this respect, we suggest a preventive maintenance model following the expiration of extended warranty with minimal repair warranty from the user's point of view in this paper. Under basic warranty and extended warranty, the failed system is minimally repaired by the manufacturer at no cost to the user. For the preventive maintenance model, we derive the expressions for the expected cycle length, the expected total cost and the expected cost rate per unit time. Also, we determine the optimal preventive maintenance period and the optimal preventive maintenance number by minimizing the expected cost rate per unit time. Finally, the numerical examples are presented to illustrate the purpose when the failure time of the system has a Weibull distribution.