Analisis pengendalian kualitas produk keripik tempe Deny menggunakan pendekatan six sigma DMAIC terintegrasi fuzzy FMEA [Analysis of the quality control of Deny's tempe chips using a six sigma DMAIC-integrated fuzzy FMEA approach]

Authors

  • Siti Asmaul Mustaniroh Universitas Brawijaya
  • Nadya Prabaningtias

DOI:

https://doi.org/10.23960/jtihp.v27i1.12-23
Abstract View: 2656

Keywords:

minimization of defect, tempe chips, quality control

Abstract

Deny Tempe Chips is one of the leading MSME chips products in Malang City. The tighter business competition encourages MSMEs to increase their competitive advantage through increasing production quality and minimizing production defects. The purpose of the study was to identify and analyze the factors causing defects in the production of tempeh chips. The research uses the six sigma DMAIC (define, measure, improve, analyze, control) method with fuzzy FMEA integration. The results showed that highest defect percentage as the main priority for improving the production process (CTQ) was oily tempe chips (82.04%). The processing capability of frying tempeh chips has a final yield value of 64.87%. The frying process sigma value of 1.88 was very uncompetitive  level and required process improvement. The sources of the problems in the frying process  were human factors, methods, and production facilities. The value of FRPN as the highest risk priority for tempe chips product defects was the limited number of skilled workers in the frying process that affected the number of defects in tempeh products. The corrective action strategy proposed was human resource planning to meet the needs of the SME workforce, including the provision of training, scheduling production supervision, and adding skilled workers in the production process.

Keywords: product defects, Deny tempe chips, six sigma DMAIC method, quality control.

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Author Biography

Siti Asmaul Mustaniroh, Universitas Brawijaya

Manajemen Agroindustri

References

Agustina, Y., Mulyo, J. H., & Waluyati, L. R. (2020). Analisis pengendalian mutu bahan baku utama susu kambing bubuk di bumiku hijau yogyakarta. Jurnal Teknosains, 9(2), 127–138.

Almansur, A. M., Sukardi, S., & Machfud, M. (2017). Improving performance of biscuit production process through lean six-sigma at pt xyz. Indonesian Journal of Business and Entrepreneurship, 3(2), 77–89. https://doi.org/10.17358/ijbe.3.2.77

Arsyad, A. G., Ferdinant, P. F., & Ekawati, R. (2017). Analisis peta kendali p yang distandarisasi dalam proses produksi regulator set fujiyama (studi kasus : pt . xyz). Jurnal Teknik Industri, 5(1), 86–92.

Bianti, G. N., & Retnaningsih, S. M. (2016). Analisis kapabilitas proses produk transformator hermetically sealed 100 kva di pt. “x.” Jurnal Sains Dan Seni ITS, 5(2), 384–389.

Blaga, P. (2020). The Importance of human resources in the continuous improvement of the production quality. Procedia Manufacturing, 46, 287–293. https://doi.org/10.1016/j.promfg.2020.03.042

Devani, V., & Wahyuni, F. (2016). Pengendalian kualitas kertas dengan menggunakan statistical process control di paper machine 3. Jurnal Ilmiah Teknik Industri, 15(2), 87–93.

Gaikwad, K. Y., & Athmaselvi, K. A. (2016). Effect of soaking pre-treatments on different characteristics of fried potato chips. Biosciences Biotechnology Research Asia, 13(2), 1133–1136. https://doi.org/10.13005/bbra/2142

Hairiyah, N., Amalia, R. R., & Nugroho, I. K. (2020). Penerapan six sigma dan kaizen untuk memperbaiki kualitas roti di ud cj bakery. Jurnal Teknologi & Industri Hasil Pertanian, 25(1), 35–43.

Herlina, Astriyaningsih, E., Windarti, W. S., & Nurhayati. (2017). Tingkat kerusakan minyak kelapa selama penggorengan vakum berulang pada pembuatan ripe banana chips (rbc). Jurnal Agroteknologi, 11(02), 186–193.

Irawan, J. P., Santoso, I., & Mustaniroh, S. A. (2017). Model analysis and mitigation strategy of risk in tempe chips production. Industria: Jurnal Teknologi Dan Manajemen Agroindustri, 6(2), 88–96. https://doi.org/10.21776/ub.industria.2017.006.02.5

Ishak, A., Siregar, K., Asfriyati, & Naibaho, H. (2019). Quality control with six sigma dmaic and grey failure mode effect analysis (fmea): a review. IOP Conference Series: Materials Science and Engineering, 505, 1–9. https://doi.org/10.1088/1757-899X/505/1/012057

Krishnaiyer, K., Chen, F. F., Burgess, B., & Bouzary, H. (2018). D3s model for sustainable process excellence. Procedia Manufacturing, 26, 1441–1447. https://doi.org/10.1016/j.promfg.2018.07.100

Krisnaningsih, E., & Hadi, F. (2020). Strategi mengurangi produk cacat pada pengecatan boiler steel structure dengan metode six sigma di pt. cigading habeam center. Jurnal InTent: Jurnal Industri Dan Teknologi Terpadu, 3(1), 11–24.

Manurung, M., Suaniti, N. M., & Putrha, K. G. D. (2018). Perubahan kualitas minyak goreng akibat lamanya pemanasan. Jurnal Kimia, 12(1), 59–64.

Pasmawati, Y., & Zahri, A. (2016). Peningkatan kualitas produk dengan pendekatan metode six sigma. Jurnal TEKNO, 13(1), 23–34.

Pereira, A. M. H., Silva, M. R., Domingues, M. A. G., & Sá, J. C. (2019). Lean six sigma approach to improve the production process in the mould industry: a case study. Quality Innovation Prosperity, 23(3), 103–121. https://doi.org/10.12776/QIP.V23I3.1334

Rahman, A., Shaju, S. U. C., Sarkar, S. K., Hashem, M. Z., Hasan, S. M. K., Mandal, R., & Islam, U. (2017). A case study of six sigma define-measure-analyze-improve-control (dmaic) methodology in garment sector. Independent Journal of Management & Production, 8(4), 1309–1323. https://doi.org/10.14807/ijmp.v8i4.650

Rianingsih, L., Amalia, U., Wijayanti, I., & Suharto, S. (2018). Aplikasi mesin spinner berkecepatan rendah untuk menurunkan kadar air dan minyak keripik ikan ukuran besar di ukm berkah. Jurnal Teknologi Hasil Pertanian, XI(2), 69–72.

Rimantho, D., & Athiyah. (2019). Analisis kapabilitas proses untuk pengendalian kualitas air limbah di industri farmasi. Jurnal Teknologi, 11(1), 1–8.

Roesmasari, R. A., Santoso, I., & Sucipto. (2018). Strategi peningkatan kualitas leather dengan metode lean six sigma dan fuzzy fmea (studi kasus di sumber rejeki). Jurnal Teknologi Pertanian, 19(3), 183–192.

Setyawan, Y. P., Handayani, N. U., & Suliantoro, H. (2017). Analisis pemborosan (waste) material pada proses produksi aqua kemasan 240ml di pt. tirta investama klaten. Jurnal Online Engineering Industrial, 6(2), 1–9.

Smętkowska, M., & Mrugalska, B. (2018). Using Six sigma dmaic to improve the quality of the production process: a case study. Procedia - Social and Behavioral Sciences, 238, 590–596. https://doi.org/10.1016/j.sbspro.2018.04.039

Sopianti, D. S., Herlina, & Saputra, H. T. (2017). Penetapan kadar asam lemak bebas pada minyak goreng. Jurnal Katalisator, 2(2), 100–105. https://doi.org/10.1021/j100341a009

Sucipto, S., Ardiyati, I., & Effendi, U. (2018). Evaluasi kualitas keripik buah nangka dengan metode six sigma. Jurnal Teknologi Pertanian Andalas, 22(2), 126–138. https://doi.org/10.25077/jtpa.22.2.126-138.2018

Winanto, E. A., & Santoso, I. (2017). Integrasi metode fuzzy fmea dan ahp dalam analisis dan mitigasi risiko rantai pasok bawang merah. Jurnal Teknologi Industri & Hasil Pertanian, 22(1), 21–32.

Zulyanti, N. R. (2016). Analisis pengaruh kualitas alat produksi, harga bahan baku, pemakaian bahan baku, jumlah tenaga kerja terhadap volume produksi (studi kasus pada industri sarung tenun di desa parenga

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Published

2021-12-22

How to Cite

Mustaniroh, S. A., & Prabaningtias, N. (2021). Analisis pengendalian kualitas produk keripik tempe Deny menggunakan pendekatan six sigma DMAIC terintegrasi fuzzy FMEA [Analysis of the quality control of Deny’s tempe chips using a six sigma DMAIC-integrated fuzzy FMEA approach]. Jurnal Teknologi &Amp; Industri Hasil Pertanian, 27(1), 12–23. https://doi.org/10.23960/jtihp.v27i1.12-23