Performability analysis for the SPVC line system of leaf spring production plant using probabilistic approach

IF 1.8 Q3 ENGINEERING, INDUSTRIAL Journal of Quality in Maintenance Engineering Pub Date : 2024-07-17 DOI:10.1108/jqme-07-2023-0062
S. Parkash, P.C. Tewari
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Abstract

PurposeThis work ensures the higher performability of this complex system, which consists of five different subsystems, i.e. shearing machine, V-cutting machine, center hole punch, edge cutting burr and drilling machine. These subsystems are placed in combinations of both series and parallel arrangement. The concerned plant management must be aware of the failures that have the greatest/least impact on the system’s performance.Design/methodology/approachPerformability analysis has been done for the Shearing, Punch and V- Cutting (SPVC) line system by using a probabilistic approach (i.e. Markov method). This system was further divided into five subsystems, and single-order differential equations are derived using the transition diagram. MATLAB software was used to determine the performability of the system for various combinations of repair and failure rates.FindingsIn this research work, performability analysis was done using different combinations of repair and failure rates for these subsystems. Further, a decision matrix (DM) has been developed that indicates that edge cutting burr is the most critical subsystem, which requires the top level of maintenance priorities among the various subsystems. This matrix will facilitate policymaking related to various maintenance activities for the respective system.Originality/valueIn this research work, a mathematical modeling based on a single differential equation using a transition diagram has been developed for the SPVC line system. The novelty of this work is to consider interaction among different subsystem, which generates more realistic situation during modeling. The purposed DM helps make future maintenance planning, which reduces maintenance costs and enhances system's performability.
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采用概率法对板簧生产厂的 SPVC 生产线系统进行性能分析
该系统由五个不同的子系统组成,即剪板机、V 形切割机、中心孔冲床、切边毛刺机和钻孔机。这些子系统以串联和并联的方式组合布置。相关工厂管理层必须了解对系统性能影响最大/最小的故障。设计/方法/途径采用概率方法(即马尔可夫法)对剪切、冲孔和 V 形切割 (SPVC) 生产线系统进行了性能分析。该系统被进一步划分为五个子系统,并利用过渡图推导出单阶微分方程。使用 MATLAB 软件确定了系统在不同维修率和故障率组合下的可执行性。此外,还开发了一个决策矩阵(DM),表明边缘切割毛刺是最关键的子系统,需要在各种子系统中优先进行维护。该矩阵将有助于制定与各系统的各种维护活动相关的政策。 原创性/价值在这项研究工作中,利用过渡图为 SPVC 线路系统建立了一个基于单微分方程的数学模型。这项工作的新颖之处在于考虑到了不同子系统之间的相互作用,从而在建模过程中产生了更加真实的情况。所设计的 DM 有助于制定未来的维护计划,从而降低维护成本并提高系统的性能。
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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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