The effect of friction spot stir welding in double rivet lap joint installation of aluminum 2024-T3 on the strength of shear tests

Ahmad imam Nawawi

Abstract


The process of joining materials is very necessary to facilitate the manufacture of industrial products. Among these connections are rivets, bolts, nails, glue, and welding which is mostly done on metal materials. The aircraft skin is usually connected with rivets through a drilling process. Joining metal materials, especially aluminum, uses many welding techniques. The welding method currently being developed is Friction Stir Welding (FSW). FSW developed the Friction Stir Spot Welding (FSSW) process in joining metals, especially in this study using 2024-T3 aluminum. The purpose of combining the rivet method with FSSW is to see the material’s mechanical characteristics when applied to aluminum material. The FSSW method uses a 2500 RPM engine speed milling machine using a blunt tool holder with a pin dimension of 2.5 mm.  It is carried out using a pneumatic drill using a drill bit with a dimension of 2.5 mm. Aluminum 2024-T3 has of 200×20×2 mm dimensions, a hole spacing of 15 mm with double rivet lap joint installation. The results showed that the FSSW variation had a higher tensile shear strength of 2.8% than the drilling variation. However, the hardness value in the drilling variation is 56.3% higher than the FSSW variation in the Heat Affected Zone (HAZ). Microstructural observations also indicate differences in the HAZ region, where the FSSW is reduced in size and longer. This is due to the heat treatment process due to friction between the pin tool and the aluminum, thus changing the structure.

Keywords


FSW, rivet, FSSW, double rivet lap joint, AA 2024-T3

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References


U. Mulle, Introduction to Structural Aluminium Design. Scotland: Whittles Publishing, 2011. doi: 10.1007/978-1-4614-4003-1_7.

O. Bukit dan H. Hartopo, “Airframe After Bird Strike Pada Airbus A320-200 PK-AXM,” vol. 6, no. 2, hal. 6–6, 2016.

H. Nurdin, “Buku Metalurgi Logam - Hendri Nurdin.pdf,” Buku Metalurgi Logam. Hal. 1–288, 2019.

Armansyah, J. Saedon, Ferdyanto, N. Toding Bunga, dan J. Julian, “Karakteristik Kekerasan Lasan Titik Gesekan dan Pengadukan pada Paduan Aluminium 5052-H112,” J. Asiimetrik J. Ilm. Rekayasa Inov., vol. 4, hal. 143–152, 2022, doi: 10.35814/asiimetrik.v4i1.3183.

Caesarti, A. W. “Pengaruh Aging Dan Cladding Pada Paduan Aluminium 2024 Terhadap Sifat Mekanik, Konduktivitas Listrik Dan Ketahanan Korosi Untuk Aplikasi Skin Wing Pesawat,” final Project Report, Departemen of Engineering, Faculty of Industrial Technology, Sepuluh November Intitute of Technology.

MatWeb, “Aluminum 2024-T3,” http://www.matweb.com/, 2021.

D. Prasetyo Koesgi, Sehono, dan D. Wicaksono, “Pengaruh Pemanasan Awal Terhadap Sifat Mekanik Sambungan Spot Friction Stir Welding Dalam Pemasangan Rivet Alumunium 2024,” Tek. STTKD J. Tek. Elektron. Engine, vol. 7, no. 1, hal. 140–153, 2021, doi: 10.56521/teknika.v7i1.315.

W. Ramadhan N. Muhayat, dan T. Triyono, “Pengaruh Variasi Kecepatan Putar Dan Diameter Tool Terhadap Sifat Mekanik Sambungan FSSW Aluminium Alloy 5052 dan Baja SS400,” Mek. Maj. Ilm. Mek., vol. 17, no. 1, hal. 8–14, 2018.

Z. Edward dan W. Hendroprasetyo, “Pengaruh bentuk probe pada tool shoulder terhadap metallurgy aluminium seri 5083 dengan proses friction stir welding,” J. Tek. pomits, vol. 2, no. 1, hal. 112–115, 2013.

Sehono dan H. Ardianto, “Efek Friction Stir Spot Welding Dalam Pemasangan Rivet Terhadap Sifat Mekanik Material Almunium Seri 2024,” Tek. STTKD J. Tek. Elektron. Engine, vol. 7, no. 2, hal. 184–192, 2021, doi: 10.56521/teknika.v7i2.319.

N. N. Riezki, “Analisa Kekuatan Sambungan Pada Plat Tipis Dengan Menggunakan Paku Keling,” Skripsi, Univ. Muhammadiyah Sumatera Utara, hal. 30–46, 2017.

H. Zhao et al., “A review on solid riveting techniques in aircraft assembling,” Zhao, H., Xi, J., Zheng, K., Shi, Z., Lin, J., Nikbin, K., Duan, S., Wang, B., vol. 7, hal. 1–5, 2020.

A. W. Nugroho, F. H. Purnomo, dan M. B. N. Rahman, “Karakterisasi Sambungan Friction Stir Spot Welding pada Plat Aluminium 5083,” J. Semesta Tek., vol. 24, no. 1, hal. 34–46, 2021.

Sehono dan H. Ardianto, “Efek Friction Stir Spot Welding Dalam Pemasangan Rivet Terhadap Sifat Mekanik Material Almunium Seri 2024,” J. Tek. STTKD, vol. 7, no. 2, hal. 184–192, 2021.

C. Natawiguna, N. Muhayat, dan T. Triyono, “Pengaruh Solution Heat Treatment terhadap Sifat Fisis dan Mekanik Proses Pengelasan FSSW AA6063-T5,” Mek. Maj. Ilm. Mek., vol. 17, no. 1, hal. 15–19, 2018.

‪Gusti R. F. Syahrillah, M. Firman, dan M. A. Sugeng .P, “Analisa Uji Kekerasan pada Poros Baja ST 60 dengan Media Pendingin yang Berbeda,” Al-Jazari J. Ilm. Tek. Mesin, vol. 01, no. 02, hal. 21–26, 2016.‬‬‬‬‬‬‬‬‬‬‬‬‬‬‬‬‬‬

V. A. Fanita S dan I. Aziz, “Penentuan Beban Indentor Ideal Micro Vickers Hardness Tester Matsuzawa Mmt-X7,” Pros. Pertem. DAN Present. Ilm. Penelit. DASAR ILMU Pengetah. DAN Teknol. Nukl. Pus. Sains dan Teknol. Accelerator, hal. 59–62, 2018.

G. Li, L. Zhou, W. Zhou, X. Song, dan Y. Huang, “Influence Of Dwell Time On Microstructure Evolution And Mechanical Properties Of Dissimilar Friction Stir Spot Welded Aluminum-Copper Metals,” J. Mater. Res. Technol., vol. 8, no. 3, hal. 2613–2624, 2019.

American Society for Testing and Materials, “ASTM D638-14, Standard practice for preparation of metallographic specimens,” ASTM Int., vol. 82, no. C, hal. 1–15, 2016, doi: 10.1520/D0638-14.1.

M. F. Kumayasari dan A. I. Sultoni, “Studi Uji kekerasan Rockwell Superficial vs Micro Vickers,” J. Teknol. Proses dan Inov. Ind., vol. 2, no. 2, 2017, doi: 10.36048/jtpii.v2i2.789.




DOI: http://dx.doi.org/10.30811/jpl.v21i5.4112

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