Analisa Kecelakaan Kerja Menggunakan Metode Fuzzy FMEA pada Proses Produksi UD Selebriti Gresik

Authors

  • Dias Mahardhika Universitas Muhammadiyah Malang
  • Dian Palupi Restuputri Teknik Industri Universitas Muhammadiyah Malang
  • Shanty Kusuma Dewi Teknik Industri Universitas Muhammadiyah Malang

DOI:

https://doi.org/10.26905/jiv.v5i2.9563

Keywords:

Occupational health and safety, FMEA, Fuzzy, Fuzzy FMEA

Abstract

Occupational safety is something that needs to be considered in a production process because it can affect worker performance. This is related to increased costs and decreased health conditions of workers. Work accidents are caused by a bad working atmosphere, inadequate training, low employee awareness, or lack of attention. In this study an analysis of work accidents at UD. Celebrities use the Fuzzy FMEA method. Based on the calculation results, there are 2 work accidents with the highest FRPN value.

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Author Biographies

Dian Palupi Restuputri, Teknik Industri Universitas Muhammadiyah Malang

Teknik Industri
Universitas Muhammadiyah Malang

Shanty Kusuma Dewi, Teknik Industri Universitas Muhammadiyah Malang

Teknik Industri
Universitas Muhammadiyah Malang

References

C. M. La Fata, A. Giallanza, R. Micale, and G. La Scalia, "Ranking of occupational health and safety risks by a multi-criteria perspective: Inclusion of human factors and application of VIKOR," Safety Science, vol. 138, 2021.

R. Liu, Z. Liu, H.-C. Liu, and H. Shi, "An improved alternative queuing method for occupational health and safety risk assessment and its application to construction excavation," Automation in Construction, vol. 126, 2021.

P. Kardos, P. Lahuta, and M. J. T. R. P. Hudakova, "Risk Assessment Using the FMEA method in the Organization of Running Events," vol. 55, pp. 1538-1546, 2021.

A. Parracho Sant'Anna, "Probabilistic priority numbers for failure modes and effects analysis," International Journal of Quality & Reliability Management, vol. 29, no. 3, pp. 349-362, 2012.

K. Xu, L. C. Tang, M. Xie, S. L. Ho, M. J. R. E. Zhu, and S. Safety, "Fuzzy assessment of FMEA for engine systems," vol. 75, no. 1, pp. 17-29, 2002.

W. A. J. J. P. T. E. Setiono, "Analisis Keselamatan dan Kesehatan Kerja dengan Metode Hazard and Operability (HAZOP)," vol. 7, no. 5, 2017.

I. Jati Kusuma and I. Darmastuti, "Pelaksanaan program keselamatan dan kesehatan kerja karyawan PT. Bitratex Industries Semarang," UNIVERSITAS DIPONEGORO, 2011.

E. J. D. I. J. T. d. M. I. Rusmiati, "Penerapan fuzzy failure mode and effect analysis (FUZZY FMEA) dalam mengidentifikasi kegagalan pada proses produksi di PT. Daesol Indonesia," 2014.

R. E. McDermott, R. J. Mikulak, and M. R. Beauregard, "FMEA," ed: New York: Taylor & Francis Group, 2009.

Y.-M. Wang, K.-S. Chin, G. K. K. Poon, and J.-B. Yang, "Risk evaluation in failure mode and effects analysis using fuzzy weighted geometric mean," Expert Systems with Applications, vol. 36, no. 2, pp. 1195-1207, 2009.

T. Widianti and H. Firdaus, "Penilaian risiko instansi pemerintah dengan fuzzy-failure mode and effect analysis," 2020.

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Published

2023-12-07