Pengaruh Double Chamfer Terhadap Kekuatan Tarik Dan Struktur Mikro Pada Hasil Sambungan Las Gesek Al 6061
DOI:
https://doi.org/10.18196/jqt.v6i1.23039Keywords:
Alumunium 6061, friction welding, microstructure, tensile strength, chamfer angleAbstract
Aluminum, with a thermal conductivity close to 2/3 that of copper, can utilize friction welding effectively. Chamfer angles improve the welding quality by increasing the generated heat, resulting in higher mechanical properties. This study investigates the impact of chamfer angles (15°, 30°, and 45°) on the microstructure and tensile strength of friction-welded Al 6061 under conditions of 1600 rpm rotation, 50 MPa forging pressure, 20 MPa friction pressure, and 45 seconds of welding time. Microstructure and tensile strength tests were conducted on three specimens for each chamfer angle. Results show that increased friction time, friction pressure, and forging pressure lead to greater material loss due to flash formation. Microstructure analysis revealed that chamfer angles of 30° and 45° achieved better welding at the interface due to sufficient heat generation. In the heat-affected zone (HAZ), all angles (15°, 30°, and 45°) showed phase structure changes, with broader and more uniform Mg2Si and Fe3SiAl12 phases, attributed to the cooling process and relatively low heat. Tensile testing showed the highest tensile strength (177.9 MPa) and strain (6.42%) for the 30° chamfer angle, outperforming the 15° and 45° angles. The smallest strain (3.72%) was observed in the 15° chamfer angle, indicating the significant influence of chamfer geometry on friction welding outcomes.
References
Aldolf, jack, C., Irawan, yudy, S., & Suprapto, W. (2018). Sambungan Paduan Aluminium Dan Baja Karbon Pada Pengelasan Gesek Continuous Drive. 9(1), 51–59.
Eka Setyawan, P., Surya Irawan, Y., & Suprapto, W. (2014). Kekuatan Tarik dan Porositas Hasil Sambungan Las Gesek Aluminium 6061 dengan Berbagai Suhu Aging. Jurnal Rekayasa Mesin, 5(2), 141–148.
Faruq, A., & Rasyid, A. (2020). Pengaruh Sudut Chamfer Male – Female Dan Tekanan Gesek Pada Proses Friction Welding Baja Karbon S45c Terhadap Kekuatan Tarik Dan Struktur Mikro. Jurnal Pendidikan Teknik Mesin Unesa, 1(1), 0–216.
Fatkhurrohman, F., Ismail, I., & Yudhanto, F. (2022). Analisis Kekuatan Bending Komposit Lamina Serat Ijuk Anyam dan Serat Ijuk Acak bermatriks Polyester. Quantum Teknika : Jurnal Teknik Mesin Terapan, 4(1), 55–61.
Hakim, Lukman et al., 2018. (2018). Pengaruh Variasi Tekanan Gesek Terhadap Kekuatan Tarik Struktur Mikro Dan Kekerasan Sambungan Las Metode Continuous Drive Friction Welding Bahan Silinder Pejal Logam Stainless Steel 304. 1–10.
Husodo, N., Sanyoto, B. L., Setyawati, S. B., & Mursid, M. (2013). Penerapan Teknologi Las Gesek (Friction Welding) dalam Rangka Penyambungan Dua Buah Logam Baja Karbon St41 pada Produk Back Spring Pin. Jurnal Energi Dan Manufaktur, 6(1), 43–52.
Kasijanto, K., Wahjudi, S., & Listiono, L. (2018). Pengaruh Konfigurasi Sudut Chamfer Male-Female dan Lama Gesek Terhadap Karakteristik Hasil Pengelasan dan Kekuatan Tarik Paduan Alumunium 6061. Jurnal Energi Dan Teknologi Manufaktur (JETM), 1(02), 01–08.
Koesgi, D. P., & Wicaksono, D. (2021). Pengaruh Pemanasan Awal Terhadap Sifat Mekanik Sambungan Spot Friction Stir Welding Dalam Pemasangan Rivet Alumunium 2024. Teknika STTKD: Jurnal Teknik, Elektronik, Engine, 7(1), 140-153.
Kido, M. I., Sugiarto, S., & Darmadi, D. B. (2021). Perubahan Sifat Mekanik Hasil Pengelasan Gesek Aluminium 6061 Akibat Perubahan Temperatur Lingkungan. Jurnal Rekayasa Mesin, 12(1), 95.
Ridono, T. W., Zaenudin, M., & Gamayel, A. (2024). Simulasi Dan Analisis Desain Mold Dengan Software Autodesk Fusion 360 Untuk Produk Aksesoris. Quantum Teknika : Jurnal Teknik Mesin Terapan, 25(1), 11–20.
Solihin, Sukmana, I., & Ummah, K. (2018). Pengaruh waktu kontak terhadap kualitas sambungan hasil las gesek (Friction Welding) Magnesium AZ-31. Jurnal Energi Dan Manufaktur, 10(1), 4–7.
Sugianto, H. (2016). Pengaruh Waktu Gesek Dan Sudut Chamfer Terhadap Sifat Mekanik Hasil Lasan Aluminium 6061 Pada Proses Friction Welding. 1–61.
Tsamroh, D. I., & Riza Fauzy, M. (2022). Peningkatan Sifat Mekanik Al6061 Melalui Heat Treatment Natural-Artificial Aging. G-Tech: Jurnal Teknologi Terapan, 6(1), 8–13.
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