Integration of FMEA method and overall equipment effectiveness to increase effectiveness of TS analyzer machine

Welly Atikno, L. H. Kusumah
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引用次数: 0

Abstract

Total Sulfur Analyzer (TS Analyzer) is one of the machines in the laboratory to test the total sulfur content contained in coal samples. Technically, specifications and use are regulated by international standards. In 2020, the downtime of these tools was very high, causing the productivity of surveyors to decrease. Low productivity will have an impact on the company's losses. The productivity of this equipment and machines is crucial to maintaining the company's success in its business processes. This study aims to measure the effectiveness of the operational performance of the TS Analyzer machine in the laboratory, analyze the causative factors and make improvements. This research uses the integration method of Failure Mode And Effect Analysis (FMEA) and Overall Equipment Effectiveness (OEE). Based on the analysis of the causes of the problem, the low OEE value is caused by the high breakdown loss. Based on the FMEA analysis, it was found that the operator was wrong in operating the machine with RPN 343, electrical instability with RPN 343, unstable temperature with RPN 343 and improper thermocouple installation. The results showed that the OEE value of the TS Analyzer machine has increased after the improvement.
将FMEA方法与整体设备效能相结合,提高TS分析机效能
总硫分析仪(TS分析仪)是实验室检测煤样中总硫含量的仪器之一。技术上,规格和使用均按国际标准进行规范。在2020年,这些工具的停机时间非常高,导致测量师的生产力下降。低生产率将对公司的亏损产生影响。这些设备和机器的生产率对于维持公司在业务流程中的成功至关重要。本研究旨在测量实验室TS分析仪机器运行性能的有效性,分析其产生的原因并进行改进。本研究采用失效模式与影响分析(FMEA)与整体设备有效性(OEE)相结合的方法。通过对问题原因的分析,OEE值低是由击穿损耗高造成的。通过FMEA分析,发现使用RPN 343的操作人员操作错误,RPN 343的电气不稳定,RPN 343的温度不稳定以及热电偶安装不当。结果表明,改进后的TS分析仪整机OEE值有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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