Produksi Ring Baut Diameter 16 x 4 mm Kepala Silinder, Bahan SS308, Kapasitas 12 Biji/Jam

Authors

  • Fitrah Bisma Taimullah Al Jahfal Politeknik Negeri Malang
  • Syamsul Hadi Politeknik Negeri Malang
  • Muhammad Farhad Sholeh Politeknik Negeri Malang
  • Abdullah Hakim Ubaidillah Politeknik Negeri Malang
  • Muhammad Bintang Ramadhan Sukamto Politeknik Negeri Malang

DOI:

https://doi.org/10.61132/jupiter.v4i3.1393

Keywords:

2013 Motorcycle, Bolt Ring, Cylinder Head, Cylinder Volume 250 cm³, SS308

Abstract

Bolt ring diameter 16 x 4 mm cylinder head, SS308 material on the cylinder head of a 250 cm³ motorcycle in 2013 is no longer produced by the factory, so its availability in the market is limited and difficult to obtain as a problem faced. The production objective is to obtain a bolt ring diameter 16 x 4 mm cylinder head, SS308 material on the cylinder head of a 250 cm³ motorcycle with a surface smoothness level of N7 in accordance with the standard component specifications. The production method includes: component design according to standards, selection of SS308 material with a diameter of 19.05 mm and a length of 1 m, turning to a diameter of 16 mm and a length of 200 mm, drilling with a diameter of 8 mm using a loose head to a depth of 50 mm, surface smoothing to a smoothness level of N7, cutting the material into 4 mm thick rings, and quality and dimension inspection. The production results are in the form of a bolt ring with an outer diameter of 16 mm, an inner diameter of 8 mm, a thickness of 4 mm which is installed on the cylinder head, SS308 material with a surface smoothness level of N7, a total production cost of IDR 9,500/piece, a production process duration of 5 minutes/piece which implies that the bolt ring is suitable for use on 250 cm³ motorcycles produced in 2013.

References

Abdulah, A., Sukarman, J., Rajab, D. A., Shieddique, A. D., Anwar, C., Heryana, G., Irawan, A. C., Setiawan, Y., Faisal, M., Bachtiar, & Riswandi, M. A. (2021). Diseminasi Teknologi Metal Forming untuk Pemberdayaan Ekonomi Usaha Kecil dan Menengah. Community Empowerment, 6(6), 978-986.

Aiwa, T. & Kurniawan, Z. (2025). Optimization of Surface Roughness in CNC Turning of SS 304 Stainless Steel Using Respon Surface Methodology. Jurnal Rekayasa Mesin, 20(3), 393-400. https://jurnal.polines.ac.id/index.php/rekayasa

Alifiana, Y. & Fahruddin, A. (2024). Impact of Coolant and Speed on Stainless Steel with Opening Machining Efficiency. Indonesian Journal of Innovation Studies, 25(3) 1-13. https://doi.org/10.21070/ijins.v25i3.1161

Ariyanto, N. (2018). Optimasi Parameter Permesinan Pemrograman CNC Milling terhadap Waktu Proses untuk Meningkatkan Efisiensi Di PT. Mekar Armada Jaya (Skripsi, Universitas Muhammadiyah Magelang). 1-44.

Ardhana, K. C. Y. (2022). Pengencangan Baut dengan Torsi dan Sudut pada Beberapa Variasi Treatment Baut. Tugas Akhir, Jurusan Teknik Mesin, Fakultas Teknologi Industri, Universitas Islam Indonesia, 1-27. https://dspace.uii.ac.id/handle/123456789/41948

Chaudhari, R. (2024). Arc Welding for Additive Manufacturing of SS308. International Journal for Research in Applied Science and Engineering Technology, 12(12), 65-73. https://doi.org/10.22214/ijraset.2024.65707

Davis, J. R. (Ed.). (1994). Stainless Steels. ASM international.

Erwanto, E., Hidayat, T., Lestari, N. & Waluyo, J. (2021). Perancangan Blanking Compound Dies pada Mesin Press Sinao Kapasitas 250 kN untuk Proses Pembuatan Ring M20. Quantum Teknika : Jurnal Teknik Mesin Terapan, 3(1). https://doi.org/10.18196/jqt.v3i1.12615

Fariz, H. E. (2022). Proses Blanking Gasket dan Perhitungan Blank Dies PT. Mitramas Muda Mandiri. Jurnal Sigmat Teknik Mesin Unsika, 2(2), 53-60. https://doi.org/10.35261/sigmat.v2i02.8217

Fattah, R. N., Istanto, I., Kusharjanta, B., Akbar, H. I., Manurung, Y. H. P., Chamim, M. & Triyono. (2025). Comprehensive Analysis of the Properties of Stainless Steel 308l Tungsten Inert Gas Wire Arc Additive Manufactured. Results in Engineering, 28, 107461. https://doi.org/10.1016/j.rineng.2025.107461

Hadi, S. (2018). Teknologi Bahan Lanjut. Penerbit Andi, Yogyakarta.

Hou, Y., Myung, D., Park, J. K., Min, J., Lee, H. R., El-Aty, A. A. & Lee, M. G. (2023). A Review of Characterization and Modelling Approaches for Sheet Metal Forming of Lightweight Metallic Materials. Materials, 16(2). 1-54. https://doi.org/10.3390/ma16020836

Konstanty, J., Layyous, A. & Furtak, Ł. (2025). Novel Cemented Carbide Inserts for Metal Grooving Applications. Materials, 18(15), 3674. https://doi.org/10.3390/ma18153674

Laurenzo, M., Lubis, S. Y. & Rosehan, R. (2023). Analisis Peningkatan Kinerja dan Umur Pahat Karbida pada Proses Pembubutan Baja AISI 1045 dengan Menggunakan Coating Tialn. Jurnal Teknik Industri Terintegrasi, 6(1), 242-251. https://doi.org/10.31004/jutin.v6i1.16385

Mai, D. S. (2020). Microstructural and Mechanical Characteristics of 308L Stainless Steel Manufactured by Gas Metal Arc Welding-Based Additive Manufacturing. Materials Letters, 271, 127791.

Mulyana, D., Azmy, I., Gabrian, A., Widiatmoko, R. Y. & Londa, P. (2022). Optimasi Parameter Pemotongan CNC Wet Milling terhadap Kekasaran Permukaan Stainless Steel AISI 304. Steam Engineering, 4(1), 1-8.

Nazari, F. & Honarpisheh, M. (2018). Analytical Model to Estimate Force of Constrained Groove Pressing Process. Journal of Manufacturing Processes, 32, 11-19. https://doi.org/10.1016/j.jmapro.2018.01.015

Ratnawati, R., Santoso, T. & Yuono, L. D. (2024). Pengaruh Kecepatan Pemakanan dan Kecepatan Putaran Spindel terhadap Tingkat Kekasaran Permukaan Material Assab 709/SCM 440 pada Proses Bubut. Turbo: Jurnal Program Studi Teknik Mesin, 13(2), 615-623. http://dx.doi.org/10.24127/trb.v13i2.3824

Sunding, A., Husman, H. & Yudo, E. (2023). Perhitungan Waktu Proses Pemesinan Efektif Mesin Bubut. Jurnal Tematis (Teknologi, Manufaktur dan Industri), 5(1), 23-38.

Suroso, F., Rahmah, G. M., AP, D. R. & Gautama, C. A. (2024). Peramalan Kebutuhan Spare Part Bengkel Mobil dengan Metode Weight Moving Average. Jurnal Eksplora Informatika, 13(2), 136-144.

Youssef, H. A., El-Hofy, H. A. & Ahmed, M. H. (2023). Manufacturing Technology: Materials, Processes, and Equipment. CRC Press. Boca Raton. https://doi.org/10.1201/9781003373209

Downloads

Published

2026-06-17

How to Cite

Fitrah Bisma Taimullah Al Jahfal, Syamsul Hadi, Muhammad Farhad Sholeh, Abdullah Hakim Ubaidillah, & Muhammad Bintang Ramadhan Sukamto. (2026). Produksi Ring Baut Diameter 16 x 4 mm Kepala Silinder, Bahan SS308, Kapasitas 12 Biji/Jam. Jupiter: Publikasi Ilmu Keteknikan Industri, Teknik Elektro Dan Informatika, 4(3), 108–121. https://doi.org/10.61132/jupiter.v4i3.1393

Similar Articles

1 2 > >> 

You may also start an advanced similarity search for this article.

Most read articles by the same author(s)