Maintenance Cost Analysis Using Cost of Unreliability (COUR) Method with Business Consequence Analysis : A Case Study of Shot Blast Machine
(1) Telkom University
(2) Telkom University
(3) Telkom University
(*) Corresponding Author
DOI: https://doi.org/10.23917/jiti.v19i2.11961
Abstract
Losses caused by unreliable machines in a production line will affect the total cost losses from a manufacturing company's production process. Based on historical data of damage that has been obtained from the maintenance department of XYZ companies, the MACH MWJ 9/10 Shot Blast Machine is the machine that has the highest-level frequency of damage. This machine is useful for cleaning sand or residual production dirt that sticks to workpieces that have been cast in the casting process, especially for E-Clips components. The research's purpose is to determine the value of cost losses due to machine unreliability using the Cost of Unreliability (COUR) method, with Business Consequence analysis (BC) analysis. The cost effects of these costs include Corrective COUR and Downtime COUR. The final calculation of COUR shows that the total cost of COUR Downtime caused by the unreliability of the machine is greater than the total Corrective COUR. After calculating the COUR, an analysis of the business consequences resulting from the machine's unreliability is carried out using a risk matrix. The analysis results show that the shot blast machine's critical components are in the red or high-risk category and have a very high Probability of Failure (PoF). The results of COUR analysis with business consequence analysis will be an input for the company to make a machine maintenance system policy, especially for the MACH MWJ 9/10 Shot Blast machine's critical components. In general, this research's novelty is to combine the application of the Cost of Unreliability method with an analysis of the effects of the Business Consequence caused by the machine's selected critical components.
Keywords
Full Text:
PDFReferences
Aldairi, J., Khan, M.K.,, Munive-Hernandez, J. E. (2017). "Knowledge-based Lean Six Sigma maintenance system for sustainable buildings". International Journal of Lean Six Sigma. https://doi.org/10.1108/IJLSS-09-2015-0035
Alhilman, J. (2017). Cost of unreliability method to estimate loss of revenue based on unreliability data: Case study of Printing Company. IOP Conference Series: Materials Science and Engineering. https://doi.org/10.1088/1757-899X/277/1/012072
Atmaji, F.T.D. (2015). "Optimasi Jadwal Perawatan Pencegahan Pada Mesin Tenun Unit Satu Di PT KSM, Yogyakarta". Jurnal Rekayasa Sistem & Industri (JRSI), 02 (02), 7–11. https://jrsi.sie.telkomuniversity.ac.id/JRSI/article/view/83
Atmaji, F.T.D., Noviyanti, A.A.,, Juliani, W. (2018). "Implementation Of Maintenance Scenario For Critical Subsystem In Aircraft Engine Case study: NTP CT7 engine". International Journal of Innovation in Enterprise System. https://doi.org/10.25124/ijies.v2i01.17
Bokrantz, J., Skoogh, A., Berlin, C., Wuest, T., Stahre, J. (2020). "Smart Maintenance: an empirically grounded conceptualization". International Journal of Production Economics. https://doi.org/10.1016/j.ijpe.2019.107534
Bustinza, O. F., Vendrell-Herrero, F., Baines, T. (2017). "Service implementation in manufacturing: An organisational transformation perspective". International Journal of Production Economics. https://doi.org/10.1016/j.ijpe.2017.08.017
Crespo Márquez, A., Parra Márquez, C., Gómez Fernández, J. F., López Campos, M.,, González-Prida Díaz, V. (2012). "Life cycle cost analysis. In Asset Management: The State of the Art in Europe from a Life Cycle Perspective. https://doi.org/10.1007/978-94-007-2724-3_6
Ibarra, D., Ganzarain, J., Igartua, J. I. (2018). Business model innovation through Industry 4.0: A Review. Procedia Manufacturing. https://doi.org/10.1016/j.promfg.2018.03.002
Joglar, F. (2016). Reliability, availability, and maintainability. In SFPE Handbook of Fire Protection Engineering, Fifth Edition. https://doi.org/10.1007/978-1-4939-2565-0_74
Kumar Sharma, R., Gopal Sharma, R. (2014). "Integrating six sigma culture and TPM framework to improve manufacturing performance in SMEs". Quality and Reliability Engineering International. https://doi.org/10.1002/qre.1525
Landscheidt, S., Kans, M., Winroth, M., Wester, H. (2018). The future of industrial robot business: Product or performance based? Procedia Manufacturing. https://doi.org/10.1016/j.promfg.2018.06.125
Narbaev, T., De Marco, A. (2014). "An Earned Schedule-based regression model to improve cost estimate at completion". International Journal of Project Management. https://doi.org/10.1016/j.ijproman.2013.12.005
Olowosejeje, S., Leahy, P., Morrison, A. (2019). "The economic cost of unreliable grid power in Nigeria". African Journal of Science, Technology, Innovation and Development. https://doi.org/10.1080/20421338.2018.1550931
Pascual, D. G., Kumar, U. (2016). Maintenance Audits Handbook: A Performance Measurement Framework. In Maintenance Audits Handbook: A Performance Measurement Framework.
Patidar, L., Soni, V. K., Soni, P. K. (2017). "Maintenance strategies and their combine impact on manufacturing performance". International Journal of Mechanical and Production Engineering Research and Development.
Prashar, A. (2014). "Adoption of Six Sigma DMAIC to reduce cost of poor quality". International Journal of Productivity and Performance Management. https://doi.org/10.1108/IJPPM-01-2013-0018
Salonen, A., Deleryd, M. (2011). "Cost of poor maintenance: A concept for maintenance performance improvement". Journal of Quality in Maintenance Engineering. https://doi.org/10.1108/13552511111116259
Sheng, S., O’Connor, R. (2017). Reliability of Wind Turbines. In Wind Energy Engineering: A Handbook for Onshore and Offshore Wind Turbines. https://doi.org/10.1016/B978-0-12-809451-8.00015-1
Stenström, C., Norrbin, P., Parida, A., Kumar, U. (2016). "Preventive and corrective maintenance – cost comparison and cost–benefit analysis". Structure and Infrastructure Engineering. https://doi.org/10.1080/15732479.2015.1032983
Talib, M.S.A., Hamid, A.B.A., Thoo, A.C. (2015). "Critical success factors of supply chain management: A literature survey and Pareto analysis". EuroMed Journal of Business. https://doi.org/10.1108/EMJB-09-2014-0028
Turan, O., Lazakis, I., Judah, S., Incecik, A. (2011). "Investigating the reliability and criticality of the maintenance characteristics of a diving support vessel". Quality and Reliability Engineering International. https://doi.org/10.1002/qre.1182
Vicente, F. (2012). "Assessing the cost of unreliability in gas plant to have a sustainable operation". Petroleum and Chemical Industry Conference Europe Conference Proceedings, PCIC EUROPE.
Youssouf, A., Rachid, C., Ion, V. (2014). "Contribution to the Optimization of Strategy of Maintenance by Lean Six Sigma". Physics Procedia. https://doi.org/10.1016/j.phpro.2014.08.001
Article Metrics
Abstract view(s): 854 time(s)PDF: 756 time(s)
Refbacks
- There are currently no refbacks.