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Mid-Life Refurbishment Maintenance Strategy to Sustain Performance and Reliability of Train System

机译:中生翻新维护策略,维持火车系统的性能和可靠性

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摘要

Mid-Life Refurbishment (MLR) is a process conducted in many industries to improve or extend the life span of assets such as machines, infrastructures and systems. The objective of MLR works execution is to extend the life span, sustain the train performance and achieve system reliability. Typically, the refurbishment scope consists of overhaul, upgrading and rectification works. The biggest challenge is to determine) the scope of refurbishment works and to create equilibrium between the feasibility and viability of the project. Therefore, the main objective of this paper is to discuss the current practice of performing MLR maintenance through the utilization of Failure Mode and Effect Analysis (FMEA) and to transform the existing FMEA used by the automotive industry to fulfil the needs of Rolling Stock. The use of FMEA is critical in determining) the scope of train refurbishment work. It was carried out at the initial stages of the process in order to determine Risk Priority Number (RPN) to prioritize the type of refurbishment plans and scope. The design of the FMEA Worksheets, De-sign of FMEA severity Evaluation Criteria, Design of Occurrence Evaluation Criteria and Design of FMEA Prevention/Detection Criteria were adopted and adapted from the generic format so that it is coherent with Railway Industries. The results based on the transformation framework, the plan and scope of overhaul, upgrading and rectification were defined using the FMEA. Out of the 80 elements of MLR works that were analyzed using the FMEA approach, it was found that 46 elements needed overhaul, 23 elements needed upgrading and 11 elements needed rectification works. Finally, the application of the FMEA helped determine the MLR scope of work from 13 systems. The case study was taken from the Malaysia LRT Project, and currently the fleet has been in operation for more than 20 years (operated since year 1998).
机译:中生翻新(MLR)是在许多行业进行的过程,以改善或延长机器,基础设施和系统等资产的寿命。 MLR工作执行的目标是延长寿命,维持火车性能并实现系统可靠性。通常,翻新范围包括大修,升级和整流工作。最大的挑战是确定翻新工作的范围,并在项目的可行性和可行性之间创建均衡。因此,本文的主要目的是讨论通过利用故障模式和效果分析(FMEA)进行MLR维护的当前实践,并改变汽车行业使用的现有FMEA以满足滚动股的需求。 FMEA的使用对于确定火车翻新工作的范围至关重要。它是在过程的初始阶段进行,以确定风险优先级(RPN),以优先考虑翻新计划和范围的类型。采用和调整FMEA严重性评估标准,FMEA严重评估标准,发生评估标准的设计和设计的设计的设计,并从通用形式调整,使其与铁路行业连贯。使用FMEA定义了基于转换框架的结果,改革,升级和整流范围。出于使用FMEA方法分析的MLR工作的80个元素,发现需要46个元素,需要升级23个元素,并且需要11个元素整改工作。最后,FMEA的应用有助于确定来自13个系统的工作范围。案例研究来自马来西亚LRT项目,目前舰队已经运作了20多年(自1998年以来经营)。

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