Effect of Cutting Speed of Carbon Steel ST 41 on Cutting Temperature in Turning Process
DOI:
https://doi.org/10.35335/computational.v13i4.197Keywords:
ST41 Steel, Cutting Speed Variations, Chisel TemperatureAbstract
The turning process is one of the most widely used lathe machining techniques in manufacturing, involving the interaction between the machine tool, workpiece, and cutting tool. During cutting, friction between the chisel and the workpiece generates excessive heat, with most cutting energy converted into heat. This study examines the effect of cutting speed on temperature in chisels, chips, and ST41 carbon steel workpieces at various lathe speeds. Using an experimental method, cutting speeds of 260 RPM, 560 RPM, and 800 RPM were tested. Data collected included lathe rotation speed, specimen temperature, chisel temperature, chip temperature, cutting depth, and chip mass. Results show that temperature increases with cutting speed. At 260 RPM, the chisel temperature was 38.46°C, the workpiece 36.83°C, and the chip 36.21°C. At 800 RPM, the highest tool temperature was 65°C, the workpiece reached 62.33°C, and the chip 48.56°C. This indicates that higher cutting speeds generate more heat, making the turning process more thermally intensive.
References
Abbas, H., Jamaluddin, J., Ariyanto, M., & Gaio, A. (2024). Analisa Pengaruh Kecepatan Potong Mesin Bubut Terhadap Tingkat Kekasaran Permukaan Baja ST 60 Menggunakan Pahat Karbida. ILTEK : Jurnal Teknologi, 19(01), 6–11. https://doi.org/10.47398/iltek.v19i01.151
Akbar, M. R., & Widiasih, W. (2022). Analisis Perawatan Mesin Bubut dengan Metode Preventive Maintenance Guna Menghindari Kerusakan Secara Mendadak dan Untuk Menghitung Biaya Perawatan. Jurnal SENOPATI : Sustainability, Ergonomics, Optimization, and Application of Industrial Engineering, 4(1), 32–45. https://doi.org/10.31284/j.senopati.2022.v4i1.3086
Aldio, R. Z., Fadila, M. R. I., Dedikarni, D., Yulianto, D., & Surindra, M. D. (2024). Analisis Jenis Coolant terhadap Temperatur dan Keausan Mata Pahat pada Proses Pengeboran Pegas Daun SUP9. Jurnal Rekayasa Mesin, 19(1), 103–110.
Fachreza, M. I., Fakhriza, & Hamdani. (2017). Analisa Pengaruh Waktu PenahananTerhadap Nilai Kekerasan Baja Aisi 1050Dengan Metode Pack Carburizing. Jurnal Mesin Sains Terapan, 1(1), 52–56.
Firdaus, J., & Oleh. (2023). Analisa Perhitungan Kerja Aktual Mesin Bubut Pada Proses Pembuatan Nozzle Di Cv. Cahaya Abadi. Jurnal Ilmiah Wahana Pendidikan, 9(April), 248–252.
Firstamarsyah, A. A. M. S. (2019). MESIN BUBUT KONVENSIONAL DALAM PROSES BUBUT RATA TERHADAP TINGKAT KEKASARAN PERMUKAAN BENDA KERJA ST 41 Anggi Firstamarsyah Arya Mahendra Sakti Abstrak. 8, 31–36.
Grigoriev, S. N., Migranov, M. S., Melnik, Y. A., Okunkova, A. A., Fedorov, S. V., Gurin, V. D., & Volosova, M. A. (2021). Application of adaptive materials and coatings to increase cutting tool performance: Efficiency in the case of composite powder high speed steel. Coatings, 11(7). https://doi.org/10.3390/coatings11070855
Gunawan, E. (2017). Analisa Pengaruh Temperatur Terhadap Sifat Mekanis Dan Struktur Mikro Pada Baja Karbon Rendah (St41) Dengan Metode Pack Carbirizing. Teknika: Engineering and Sains Journal, 1(2), 117. https://doi.org/10.51804/tesj.v1i2.133.117-124
Ibrahim, G. A., Burhanuddin, Y., Mesin, J. T., Teknik, F., & Lampung, U. (2020). Manutech : Jurnal Teknologi Manufaktur Kajian Simulasi Fem 3D : Keausan Pahat Twist Drill Pada Pemesinan Bor Mikro Material Ti-6Al-4V. 12(02), 0–9.
Li, Y., Lumintang, R., & Poeng, R. (2023). Pengaruh Kecepatan Pemakanan Terhadap Kekasaran Permukaan Benda Kerja Pada Mesin Bubut Kent Usa Rml-1640T. … Poros Teknik Mesin …, 12, 25–36.
Nistelroy, A. R., Lubis, S. Y., & Riza, A. (2024). Pengaruh kecepatan potong terhadap keausan dan panjang pemakanan mata pahat keramik alumina pada pembubutan cast iron The influence of cutting speed on tool wear and feed length of alumina ceramic cutting tool in cast iron turning. 14(2), 152–161.
Patel, H., & Chauhan, I. A. (2020). A Study on Types of Lathe Machine and Operations: Review. International Journal of Advance Research and Innovation, 8(4), 84–92. https://doi.org/10.51976/ijari.842014
Peni Dwi Purnomo, Johan Wayan Dika, dan M. (2021). The Effect Off Coolant Variations On Surface Roughness And Temperature In The Manufacturing Process Off Low Carbon Steel ST 41. JSNu : Journal of Science Nusantara, 1(2), 47–51.
Pervaiz, S., Kannan, S., Deiab, I., & Kishawy, H. (2020). Role of energy consumption, cutting tool and workpiece materials towards environmentally conscious machining: A comprehensive review. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 234(3), 335–354. https://doi.org/10.1177/0954405419875344
Prabowo, A. E., Rarindo, H., Hadi, S., Sujatmiko, A., & Hardjito, A. (2021). Pengaruh Tegangan Dan Waktu Elektroplating Tembaga Dan Nikel Terhadap Laju Korosi Pada Baja Karbon Rendah Effect of Electroplating Voltage and Time of Copper and Nickel on Corrosion Rate in Low Carbon Steel. Jurnal Ilmiah Teknologi FST Undana, 15(2), 14–20.
Retyawan, O. N., Yaningsih, I., & Sukanto, H. (2018). Pengaruh jenis proses pemotongan pada mesin milling terhadap getaran dan kekasaran permukaan dengan material aluminium 6061. Jurnal Teknik Mesin Indonesia, 12(1), 8–13. https://doi.org/10.36289/jtmi.v12i1.63
Rochani, A. (2017). Strategi pengembangan industri kreatif dalam mewujudkan kota cerdas. Inovasi Dalam Pengembangan, 1(1), 81–93.
Utomo, C. W., & Yunus, Y. (2021). Pengaruh posisi pengelasan terhadap kekuatan tarik dan tekuk pada sambungan Las Baja ST 41. Jurnal Teknik Mesin UNESA, 9(2), 1–4.
Zayadi, A., Sungkono, Masyhudi, & Setyawan T, E. (2022). Pengaruh Waktu Tempering terhadap Karakter Baja s45c Pasca Quenching pada 950oc dan Tempering 500 C. Jurnal Teknologi Kedirgantaraan, 7(1), 34–65. https://doi.org/10.35894/jtk.v7i1.53
Zhang, X., Lu, Z., Peng, Z., Sui, H., & Zhang, D. (2018). Development of a tool-workpiece thermocouple system for comparative study of the cutting temperature when high-speed ultrasonic vibration cutting Ti-6Al-4V alloys with and without cutting fluids. 237–246.