为可靠性分析和维护策略制定有效精益工具的优先级

Sadia Tamanna, Mohammad Sohel Rahman
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引用次数: 0

摘要

由于新兴的竞争环境和整体的运营和生产成本,资产或设备的可靠性和可用性引起了广泛的关注。本文的主要重点是优先考虑精益工具,并为SIMGA1造船厂维修车间的可修复资产选择适当的维护策略。该维修车间的5台资产,如空压机、500吨压力机、桥式起重机、VDF车床、滚筒机等进行故障维修。由于这些资产的不断退化,应该尝试通过预测每个设备或资产即将发生的故障事件来提高可靠性参数。QFD-AHP是一种快速的工具,它将质量功能部署与AHP相结合,以进行最优选择。首先,采用集成的QFD-AHP方法对维修车间的精益工具进行排序。在10种精益工具中,5S和KPI最适合该商店。非齐次泊松过程(Non - homogeneous Poisson Process, NHPP)是一种代表非齐次泊松过程的模型。在时间(t)之前所经历的故障。利用NHPP和威布尔分析来预测未来的故障事件,并据此分析故障的性质。由威布尔分析和NHPP分析结果可知,所有资产的故障率斜率(β)均大于1。根据设备临界性分析,桥式起重机m/c和500吨压力机m/c是最关键的m/c。最后,基于五(5)个资产的可靠性参数,利用决策图提取最一致的维护策略。本研究采用的方法有助于维修从业人员实现精益维修。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prioritization of Effective Lean Tools for Reliability Analysis & Maintenance Strategy
Asset or equipment reliability and availability have occupied extensive attention because of an emerging competitive environment and the overall operating and production cost. The main focus of this manuscript is to prioritize the lean tool and select an appropriate maintenance strategy for the repairable assets in the maintenance shop of the SIMGA1 shipyard. Five (5) assets of that maintenance shop such as an air compressor machine, 500-ton press machine, overhead crane machine, VDF lathe machine, and Roller machine were under breakdown maintenance. Due to the continuous degradation of those assets, attempts should be taken to enhance the reliability parameters by predicting upcoming failure events for each equipment or asset. QFD-AHP is a rapid tool in which quality function deployment is integrated with AHP to make an optimal selection. Firstly, the integrated QFD-AHP method is employed to prioritize the lean tools for that maintenance shop. 5S and KPI are the best fit for that shop among ten lean tools. Non Homogenous Poisson Process (NHPP) is a model which represents the no. of failure experienced up to time (t). NHPP and Weibull analysis are utilized to predict future failure events and analyzed the nature of the failure accordingly. From the results of the Weibull analysis and NHPP analysis, it is shown that the slope (β) of the failure rate is greater than 1 for all assets. Overhead crane m/c and 500-ton press m/c are the most critical m/c according to equipment criticality analysis. Finally, a decision diagram is utilized to extract the most congruent maintenance strategies based on the reliability parameter of five (5) assets. The approach employed in this study helps maintenance practitioners to achieve lean maintenance.
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