Optimization of Basket Oven Oil Seal Design For Quality, Productivity and Material Handling

Muhamad Gofur, Sarjono Sarjono, Dafid Mega Saputra, Ades Yulia Apriani

Abstract


In the oil seal production process, one of them is the post-cure oven process as a heat treatment to engineer the rubber material so that it has resistance to friction and has high heat resistance. The post-cure oven process itself uses equipment in the form of an oven basket made of heat-resistant steel material to place the oil seal. However, the Basket oven itself has a maximum limit for placing the oil seal in the oven, so calculations are needed to find the optimization value to find out the maximum value obtained so as to increase work productivity. From the problems found, the existing oven baskets were unable to accommodate 1,442 pcs/lot of products, but were only able to accommodate 1,344 pcs of products. so it is necessary to design a new basket oven to get the optimal value so that the basket oven can accommodate as many as 1,442 pcs/lot of products. From the research results it is known that to save material the most optimum cutting value is if the value of x = 8.5. Meanwhile, to get the maximum volume value, it is cut with a value of x = 11. By using the new oven basket, the product volume that can be accommodated is 1,568 pcs when compared to the use of the old basket which was previously able to accommodate 1,344 pcs of product. The use of a new basket oven can increase basket volume by 16.7%.

Keywords


Basket oven; Oil seal; and Optimization

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References


Ats-Tsauri, M. I., Arrasyid, A., & Wiyatno, T. N. (2022). Optimisasi Non Linear Programming Multivariat pada Perencanaan Produksi Industri Manufaktur Baja Lapis Seng (BjLS). Jurnal Teknik Industri, 3(1), 16–25. https://doi.org/10.37366/jutin0301.1625

Bamidele, A. M., Oke, S. A., Rajan, J., Sawyerr, B. A., Fasina, E., Adedeji, K. A., & Oyetunji, E. O. (2023). Optimization of Friction Stir Welding Parameters of AA5052-H32 Aluminium Alloy using Taguchi and Taguchi-Pareto Methods. IJIEM - Indonesian Journal of Industrial Engineering and Management, 4(1), 61. https://doi.org/10.22441/ijiem.v4i1.18403

Cahyono, A., Prihono, P., & Nurcahyanie, Y. D. (2023). Optimization Through Linear Programming Method Simplex in Umkm Dongkal Awug Kang Cake in Bogor Regency. Jurnal Scientia, 12(02), 982–989. http://infor.seaninstitute.org/index.php/pendidikan/article/view/1324/1068

Finšgar, M., & Rajh, B. (2023). A Factorial

Design and Simplex Optimization of a Bismuth Film Glassy Carbon Electrode for Cd(II) and Pb(II) Determination. Chemosensors, 11(2), 22–29. https://doi.org/10.3390/chemosensors11020129

Harahap, L. H., Nasution, M. K. M., & Sawaluddin, S. (2023). A Mathematical Model of Diet Menu Problem Based on Boolean Linear Programming Approach. Sinkron, 8(3), 1453–1460. https://doi.org/10.33395/sinkron.v8i3.12592

Imanuela Mustamu, L., & Sibaroni, Y. (2023). Fuel Increase Sentiment Analysis Using Support Vector Machine With Particle Swarm Optimization and Genetic Algorithm As Feature Selection. Jurnal Teknik Informatika (Jutif), 4(3), 521–528. https://doi.org/10.52436/1.jutif.2023.4.3.881

Liang, C., Chen, C., Wang, W., Ma, X., Li, Y., & Jiang, T. (2022). Line Loss Interval Algorithm for Distribution Network with DG Based on Linear Optimization under Abnormal or Missing Measurement Data. Energies, 15(11). https://doi.org/10.3390/en15114158

Martins, S. A., & Oke, S. A. (2021). Multi-Response Optimization of Safety Conformity using Taguchi Scheme in a Bottling Process Plant. IJIEM - Indonesian Journal of Industrial Engineering and Management, 2(2), 94. https://doi.org/10.22441/ijiem.v2i2.10947

Ozule, C. P., Oke, S. A., & Nwankiti, U. S. (2022). Optimizing the Process Parameters for Eco-Friendly Minimum Quantity Lubrication-Turning of AISI 4340 Alloy with Nano-Lubricants Using a Grey Wolf Optimization Approach. IJIEM - Indonesian Journal of Industrial Engineering and Management, 3(3), 210. https://doi.org/10.22441/ijiem.v3i3.15519

Paduloh, P., & Mayana, T. (2023). Optimization of Delivery Cost on Reverse Logistic for Product Claim in the Two-Wheel Vehicle Industry. Jurnal Ilmiah Teknik Industri, 22(1), 33–39. https://doi.org/10.23917/jiti.v22i1.21469

Pratama, A. A. (2023). COMMODITIES USING THE SIMPLEX METHOD ( CASE STUDY OF COMPANY. May, 34–42.

Sarjono, J. S. (2021). Meminimasi Waste Pada Proses Pembuatan Oil Seal Dengan Pendekatan Lean Manufacturing (Studi Kasus Proses Produksi Oil Seal Line Sim Di Pt. Nok Indonesia). KOCENIN SERIAL KONFERENSI, Webinar Nasiional PAKAR KE 4, 1(1), 1–6.

Sultana, U., Khairuddin, A., Mokhtar, A. S., Qazi, S. H., & Sultana, B. (2017). An optimization approach for minimizing energy losses of distribution systems based on distributed generation placement. Jurnal Teknologi, 79(4), 87–96. https://doi.org/10.11113/jt.v79.5574

Swilam, A., Tahwia, A. M., & Youssf, O. (2022). Effect of Rubber Heat Treatment on Rubberized-Concrete Mechanical Performance. Journal of Composites Science, 6(10). https://doi.org/10.3390/jcs6100290

Tata, P., Relayout, L., Dan, K., Di, L., & Xyz, P. T. (2023). 16 https://publikasi.kocenin.com/index.php/teksi. 16–23.




DOI: http://dx.doi.org/10.22441/ijiem.v4i3.20303

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