PENGARUH TEMPERATUR PEMANASAN DAN MEDIA PENDINGINAN PADA PROSES FLAME HARDENING TERHADAP NILAI KEKERASAN PADA BAJA S45C

Authors

  • Talifatim Machfuroh Politeknik Negeri Malang
  • Aini Lostari Teknik Mesin Universitas Qomaruddin
  • Miftahul Ulum Teknik Mesin Universitas Qomaruddin
  • Ellys Kumala Pramartaningthyas Teknik Mesin Universitas Qomaruddin

DOI:

https://doi.org/10.26740/otopro.v20n1.p1-6

Keywords:

Flame hardening, hardness, cooling water, turalic oil

Abstract

Sprocket is one of the main components in two-wheeled vehicles that transfer the rotary force from the engine to the rear wheels of the motorcycle. Because of this main function, the sprocket wears out faster due to friction between the chain and the sprocket. Therefore, a heat treatment process is needed to improve the mechanical properties of steel to make it more resistant to friction. Based on this background, this research focuses on the effect of temperature and cooling media on the hardness level of the material that receiving heat treatment in the form of flame hardening. The material used is S45C steel. The heat treatment process is carried out on steel with heating temperatures of 750º C and 850º C. After being heated, the steel will be quenched quickly with cooling media in the form of fresh water and turalic oil 48 ISO VG 46. Next, the hardness analysis process is carried out on the test object. From the results of the hardness test, it was found that the highest average hardness value was produced by the test object which underwent a flame hardening process at a temperature of 850 oC with fresh water cooling medium, which was 335.333 HB. Fresh water cooling media tends to produce higher hardness values ​​than turalic oil. This is because the cooling rate of fresh water is faster than oil.

References

M. Owais, M. Mehdi, M. A. Hassan, M. H. Jokhio and G. Raza, "The Synergetic Effect of Hot Rolling and Heat Treatment on Mechanical Properties: AISI-1045 and JIS-SUP 9 Steel," ASTM International, vol. 48, no. 4, p. 12, 2019.

B. B. P, The complete book on production of automobile components & allied products NIIR Project Consultancy Services, New Delhi India: NIIR Project Consultancy Services, 2014.

L. S. H and S. D. S, J. of the Korean Society for Heat Treatment, 2004.

E. Sundari, Taufikurrahman and R. Fahlevi, "Analisa Pengaruh Pack Carburizing Terhadap Sifat Mekanis Sprocket Imitasi Sepeda Motor Menggunakan Arang Kayu Gelam Dan Serbuk Cangkang Remis Sebagai Katalisator," AUSTENIT, vol. 10, no. 2, pp. 72-78, 2018.

D. Prayitno and R. Sugiarto, "Effect of aluminizing on hardenability of steel (S45C)," in IOP Conference Series: Earth and Environmental Science, canada, 2018.

G. Arianzas and D. Prayitno, "Pengaruh Media Pendingin Pada Proses Hardening Terhadap Ketangguhan Baja S45c," Mechanical Engineering and Mechatronics , vol. 4, no. 1, pp. 1-6, 2019.

H. C. Prasetyo and T. H. Ningsih, "Analisa Pengaruh Heat Treatment Terhadap Kekerasan Material Baja S45c untuk Aplikasi Poros Roda Sepeda Motor," JTM, vol. 6, no. 2, pp. 29-34, 2018.

E. Nugroho, S. D. Handono, Asroni and Wahidin, "Pengaruh Temperatur dan Media Pendingin pada Proses Heat Treatment Baja AISI 1045 terhadap Kekerasan dan Laju Korosi," TURBO, vol. 8, no. 1, pp. 99-110, 2019.

ASM Metal Handbook Volume 4 Heat Treating, 1991.

J. Budiman and R. Safutra, "Pembuatan dan Pengujian Alat Bantu Flame Hardening untuk Meningkatkan Kekerasan Permukaan Poros dengan Media Quenching Air," STEMAN, pp. 1-7, 2016.

A. Schonmetz and K. Gruber, Pengetahuan Bahan Dalam Pengerjaan Logam, Bandung: Angkasa, 1985.

K.-E. Thelning, Steel and Its Heat Treatment, London: Butterworths, 1975.

Ahmadin, "Analisa Pengaruh Media Pendingin Air Garam terhadap Kekerasan Hasil Kerajinan Pandai Besi," Simes, vol. 9, no. 2, pp. 6-9, 2015.

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Published

2024-11-26

How to Cite

Machfuroh, T., Lostari, A., Ulum, M., & Pramartaningthyas, E. K. (2024). PENGARUH TEMPERATUR PEMANASAN DAN MEDIA PENDINGINAN PADA PROSES FLAME HARDENING TERHADAP NILAI KEKERASAN PADA BAJA S45C. Otopro, 20(1), 1–6. https://doi.org/10.26740/otopro.v20n1.p1-6

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