Analisa pengaruh kuat arus hasil pengelasan GMAW terhadap kekerasan material ASTM A 36

Juwanda Juwanda, Saifuddin Saifuddin, Marzuki Marzuki

Abstract


GMAW welding is a welding process that uses CO2 gas as a protective medium for weld metal from the influence of outside air. This welding uses a heat source from electrical energy which is converted or converted into heat energy. While ASTM A 36 steel plate is steel that has a carbon content of 0.30% so it is classified as low carbon steel. This steel is widely used in the market because it has many advantages, one of which has good welding properties (machinability), good wear resistance (wear) and good mechanical properties as well. This study aims to determine the hardness value of the welding results using the hardness test method in the GMAW welding process to ASTM A 36 steel with a 60̊ V angle seam. The variations of the currents used in this welding process are 80,100 and 120 Amper. From the tests that have been done, it is known that the lowest hardness strength at current 80 produces a hardness value of 65.60 Hrc. Meanwhile, the highest hardness value at 100 Amper flow obtained a hardness value of 80.40 HRC

Keywords


GMAW welding, ASTM A 36 steel, hardness, current variation, CO2

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References


I. A. Ibrahim, S. A. Mohamat, A. Amir, and A. Ghalib, “The Effect of Gas Metal Arc Welding (GMAW) processes on different welding parameters,” Procedia Eng., vol. 41, pp. 1502–1506, 2012.

A. Muhyiddin, “PENGARUH VARIASI ARUS LAS SMAW (Shielding Metal Arc Welding) TERHADAP DISTORSI DAN KUAT TARIK SAMBUNGAN STAINLESS STEEL 304.” University of Muhammadiyah Malang, 2019.

A. Azwinur, S. A. Jalil, and A. Husna, “PENGARUH VARIASI ARUS PENGELASAN TERHADAP SIFAT MEKANIK PADA PROSES PENGELASAN SMAW,” J. POLIMESIN, vol. 15, no. 2, p. 36, Sep. 2017, doi: 10.30811/jpl.v15i2.372.

B. Mvola and P. Kah, “Effects of shielding gas control: welded joint properties in GMAW process optimization,” Int. J. Adv. Manuf. Technol., vol. 88, no. 9–12, pp. 2369–2387, 2017.

M. Siddiq, N. Nurdin, and I. Amalia, “Pengaruh jenis kampuh terhadap ketangguhan sambungan pengelasan material St37 dengan AISI 1050 menggunakan proses SMAW,” J. Weld. Technol., vol. 1, no. 1, pp. 11–16, Jun. 2019.

M. F. Kumayasari and A. I. Sultoni, “Studi Uji Kekerasan Rockwell Superficial VS Micro Vickers Comparation Study Of Hardness Testing By Using Rockwell Superficial VS Microvickers,” vol. 2, no. 2, pp. 85–89, 2017.

A. Duniawan, “PENGARUH KECEPATAN ARUS PENGELASAN DAN PANAS MASUK TERHADAP SIFAT MEKANIS LOGAM LAS PADA PENGELASAN SAW BAJA KARBON ASTM A 29,” J. Teknol. Technoscientia, pp. 1–9, 2014.

Y. N. I. Saputro, “PENGARUH ARUS PENGELASAN TERHADAP KEKUATAN TARIK SAMBUNGAN LAS SMAW DENGAN ELEKTRODA E 7018,” RESULTAN J. Kaji. Teknol., vol. 13, no. 2, pp. 24–31, 2011.

A. E. Ikpe, O. Ikechukwu, and E. Ikpe, “Effects of arc voltage and welding current on the arc length of tungsten inert gas welding (TIG),” 2017.

T. Endramawan, E. Haris, F. Dionisius, and Y. Prinka, “Aplikasi Non Destructive Test Penetrant Testing (Ndt-Pt) Untuk Analisis Hasil Pengelasan Smaw 3g Butt Joint,” JTT (Jurnal Teknol. Ter., vol. 3, no. 2, pp. 44–48, 2017




DOI: http://dx.doi.org/10.30811/jowt.v3i1.2027

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