Improving Die Casting Machine Reliability through FMEA-Based Failure Analysis and Repair Optimization

dc.contributor.advisorRika, Widya
dc.contributor.authorTambunan, Reinhard Isral
dc.date.accessioned2026-07-27T07:53:55Z
dc.date.issued2026-01-31
dc.descriptionFullpage paper=18 pages The analysis and improvement process carried out on the die casting machine has resulted in significant positive developments, both in terms of machine performance and overall operational efficiency. Based on the evaluation, the implementation of systematic repair and maintenance procedures has effectively reduced the frequency and severity of mechanical failures. This indicates that the proposed improvements were successful in addressing the root causes of machine malfunctions, which previously contributed to production delays and unplanned downtime. The reduced occurrence of damage not only improves the reliability of the die casting machine but also supports the continuity of the production process, ensuring that targets can be achieved more consistently without unnecessary interruptions.
dc.description.abstractThis research focuses on enhancing the reliability of die casting machines by applying the Failure Mode and Effect Analysis (FMEA) method to detect, assess, and mitigate potential sources of failure. Through the calculation of the Risk Priority Number (RPN), the most critical failure modes can be prioritized, forming the foundation for developing more accurate and effective corrective strategies. Data for this study was gathered through field observations, discussions with maintenance technicians, and evaluation of historical machine failure records. Findings indicate that the use of FMEA successfully highlighted the three most influential failure modes affecting machine performance, and after implementing the recommended improvements, machine uptime increased significantly with a 35% reduction in breakdown occurrences. The study confirms that combining FMEA with a systematic improvement approach can strengthen machine reliability and contribute to a more consistent and efficient production flow. Die casting is utilized due to its high production speed, cost efficiency, and suitability for manufacturing aluminum automotive components with excellent dimensional precision, ultimately reducing failures and maintenance expenses
dc.identifier.citationJAEE
dc.identifier.kodeprodiKODEPRODI20406#Teknik Elektronika Manufaktur
dc.identifier.nidnNIDN0029079105
dc.identifier.nimNIM3222211051
dc.identifier.urihttps://repository.polibatam.ac.id//handle/PL29/4821
dc.language.isoen_US
dc.publisherPoliteknik Negeri Batam
dc.subjectFMEA
dc.subjectMACHINE REABILITY
dc.subjectFAILURE ANALYSIS
dc.subjectREPAIR OPTIMIZATION
dc.titleImproving Die Casting Machine Reliability through FMEA-Based Failure Analysis and Repair Optimization
dc.typeWorking Paper

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