Studi Eksperimental Pengaruh Variasi Parameter Perlakuan Panas terhadap Kekerasan Baja Tulangan Polos BJTP280
DOI:
https://doi.org/10.55123/insologi.v4i5.6485Keywords:
Heat Treatment, Brinell Hardness, BJTP280 Structural Steel, MicrostructureAbstract
The construction and manufacturing industries require materials with optimal mechanical properties, particularly hardness and toughness. BJTP280 structural steel, classified as low-carbon steel, has the potential to enhance its mechanical properties through heat treatment. This study aims to analyze the effect of variations in austenitizing temperature, holding time, and cooling medium on the hardness and microstructure of the steel. Specimens measuring 10 × 8 mm were heated at temperatures of 750°C, 800°C, and 850°C with holding times of 60, 90, and 120 minutes, followed by cooling in air, oil, and water. Hardness tests were conducted using the Brinell method, while the microstructure was observed with an optical microscope. The results showed that the cooling medium had a significant effect. The highest hardness values were obtained with water quenching at 178 HB, oil quenching at 174 HB, and air cooling at 144 HB. Hardness tended to decrease with increasing holding time due to austenite grain growth. An austenitizing temperature of 800°C produced the optimum condition with the highest hardness value, while 850°C resulted in lower hardness because of excessively coarse grain structures. In conclusion, the best heat treatment was achieved at 800°C, water quenching, and a holding time of 60 minutes.
Downloads
References
Adeleke, A. A., Ikubanni, P. P., Orhadahwe, T. A., Aweda, J. O., Odusote, J. K., & Agboola, O. O. (2019). Microstructural assessment of AISI 1021 steel under rapid cyclic heat treatment process. Results in Engineering, 4. https://doi.org/10.1016/j.rineng.2019.100044
Anggoro, S., Lingkar, J., Tamantirto, S., & Bantul, K. (2017). PENGARUH PERLAKUAN PANAS QUENCHING DAN TEMPERING TERHADAP LAJU KOROSI PADA BAJA AISI 420. In Jurnal ENGINE (Vol. 1, Issue 2).
Anzarih, A. M., & Dullah, J. (n.d.). Prosiding Seminar Hasil Penelitian (SNP2M).
Bagul, A. D., & Kumar Dubey, D. (2020). Effects on hardness by various heat treatments processes on HSS tool bit. Materials Today: Proceedings, 43, 694–699. https://doi.org/10.1016/j.matpr.2020.12.619
Haryadi, G. D., Fredy Utomo, A., Made, I., & Ekaputra, W. (2021). Pengaruh Variasi Temperatur Quenching dan Media Pendingin terhadap Tingkat Kekerasan Baja AISI 1045. In Jurnal Rekayasa Mesin (Vol. 16, Issue 2). https://jurnal.polines.ac.id/index.php/rekayasa
Hasil, J., Ilmiah, K., Anggigi, H., Budiarto, U., & Fauzan Zakki, A. (2019). JURNAL TEKNIK PERKAPALAN Analisa Pengaruh Temperatur Normalizing Pada Sambungan Las SMAW (Shielded Metal Arc Welding) Terhadap Kekuatan Tarik , Tekuk dan Mikrografi Baja Karbon Rendah. Jurnal Teknik Perkapalan, 7(4), 504. https://ejournal3.undip.ac.id/index.php/naval
Indah Irmaya, A., & Yunita, L. (n.d.). Analisa Laju Korosi dengan Media Air Laut pada Hasil Pengelasan Logam Baja Karbon Rendah dengan Proses Perlakuan Panas. Jurnal OFFSHORE, 4.
Jovičević-Klug, P., Puš, G., Jovičević-Klug, M., Žužek, B., & Podgornik, B. (2022). Influence of heat treatment parameters on effectiveness of deep cryogenic treatment on properties of high-speed steels. Materials Science and Engineering: A, 829. https://doi.org/10.1016/j.msea.2021.142157
Mashhadikarimi, M., Aghayar, Y., Moazzen, P., Masoumi, M., Shamsdini, S., & Mohammadi, M. (2025). Hybrid Additive Manufactured Tool Steels: Microstructural Modifications and Mechanical Enhancements Through Heat Treatments. Materialia, 102552. https://doi.org/10.1016/j.mtla.2025.102552
Mudda, S., Hegde, A., Sharma, S., & Gurumurthy, B. M. (2025). Optimization of various heat treatment parameters for superior combination of hardness and impact energy of AISI 1040 steel. Journal of Materials Research and Technology, 38, 3900–3908. https://doi.org/10.1016/j.jmrt.2025.08.228
Nurlina, N., Pengujian Hardening pada Baja Karbon Rendah Sebagai Solusi Peningkatan Kualitas Material, P., Nurlina Program Studi Perawatan dan Perbaikan Mesin, N., Kediri Jl Mayor Bismo No, P., & Kediri, K. (2019). (elektronik) Fakultas Teknik Universitas Islam Balitar. In Blitar Jurnal Qua Teknika (Vol. 9, Issue 1).
P. S., Rendah, K., Ilyas Nugroho, M., & Sindy Pramesti, Y. (n.d.). Prosiding SEMNAS INOTEK (Seminar Nasional Inovasi Teknologi) 2025 936 (Vol. 9). Online.
Rahman Hakim, A., Nurlaila, Q., & lase, Z. (2023). PENGARUH PERLAKUAN PANAS TERHADAP PROSES PERMESINAN BAJA KARBON RENDAH. Sigma Teknika, 6(2), 436–447.
Ronneberg, T., Davies, C. M., & Hooper, P. A. (2020). Revealing relationships between porosity, microstructure and mechanical properties of laser powder bed fusion 316L stainless steel through heat treatment. Materials and Design, 189. https://doi.org/10.1016/j.matdes.2020.108481
Saktisahdan, T. J., Asahan, U., Yani, J. J. A., Fax, T. /, & Mesin, P. T. (2019). PENGARUH PROSES HEAT TREATMENT TERHADAP PERUBAHAN STRUKTUR MIKRO BAJA KARBON RENDAH. In Jurnal Laminar (Vol. 1, Issue 1).
Satria, D., Setiawan, I., Rosyadi, I., Listijorini, E., Lusiani, R., Jurusan Teknik Mesin, A., Teknik, F., Sultan Ageng Tirtayasa Jl Jenderal Sudirman Km, U., & Purwakarta, K. (2019). Pengaruh Waktu Tahan Proses Pack Carburizing Baja AISI 3115 dengan Menggunakan Calcium Carbonat dan Batubara Sub Bituminous dan Mendapatkan Perlakuan Panas Quenching Media Pendingin Air (Vol. 21, Issue 2).
Sun, S. H., Zhao, A. M., Ding, R., & Li, X. G. (2018). Effect of heat treatment on microstructure and mechanical properties of quenching and partitioning steel. Acta Metallurgica Sinica (English Letters), 31(2), 216–224. https://doi.org/10.1007/s40195-017-0667-3
P., Saefuloh, I., Rohmat, A., Lusiani, R., Jannah, M., & Setiawan, I. (2021). Electroless Ni-P terhadap Laju Korosi dan Kekerasan Permukaan Baja Karbon Rendah ASTM A36. In Jurnal Rekayasa Mesin (Vol. 16, Issue 2). https://jurnal.polines.ac.id/index.php/rekayasa
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Imam Rudi Sugara, Dwi Wahyu Hardiyanto, Faizah Ali, Elvira Wahyu Arum Fanani

This work is licensed under a Creative Commons Attribution 4.0 International License.
Hak cipta pada setiap artikel adalah milik penulis.
Penulis mengakui bahwa INSOLOGI (Jurnal Sains dan Teknologi) sebagai publisher yang mempublikasikan pertama kali dengan lisensi Creative Commons Attribution 4.0 International License.
Penulis dapat memasukan tulisan secara terpisah, mengatur distribusi non-ekskulif dari naskah yang telah terbit di jurnal ini kedalam versi yang lain, seperti: dikirim ke respository institusi penulis, publikasi kedalam buku, dan lain-lain. Dengan mengakui bahwa naskah telah terbit pertama kali pada INSOLOGI (Jurnal Sains dan Teknologi).
























