ANALISIS VARIASI KUAT ARUS LAS PADA PROSES PENGELASAN SMAW TERHADAP SIFAT MEKANIK SAMBUNGAN LAS BAJA SS400

MUHAMMAD RIZAL NURDIANSYAH, . (2026) ANALISIS VARIASI KUAT ARUS LAS PADA PROSES PENGELASAN SMAW TERHADAP SIFAT MEKANIK SAMBUNGAN LAS BAJA SS400. Sarjana thesis, UNIVERSITAS NEGERI JAKARTA.

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Abstract

Baja karbon rendah SS400 banyak digunakan dalam konstruksi bangunan karena memiliki kekuatan, keuletan, dan kemampuan las yang baik. Pada proses Shielded Metal Arc Welding (SMAW), kuat arus merupakan salah satu parameter penting yang memengaruhi heat input, laju pendinginan, pembentukan mikrostruktur, dan sifat mekanik sambungan las. Penelitian ini bertujuan menganalisis pengaruh variasi kuat arus terhadap kekuatan tarik, kekerasan Vickers, dan karakteristik mikrostruktur sambungan las baja SS400. Penelitian menggunakan metode eksperimen dengan variasi arus 90 A, 100 A, dan 110 A, elektroda E7018 berdiameter 3,2 mm, sambungan kampuh V tunggal sudut 60° pada posisi 1G. Pengujian meliputi uji tarik berdasarkan ASTM E8/E8M, uji kekerasan Vickers berdasarkan ASTM E384, serta pengamatan mikrostruktur menggunakan mikroskop optik setelah preparasi metalografi dan etsa Nital 2%. Hasil penelitian menunjukkan bahwa arus 100 A menghasilkan nilai Ultimate Tensile Strength (UTS) tertinggi dengan rata-rata 522,15 MPa. Nilai kekerasan tertinggi diperoleh pada daerah Heat Affected Zone (HAZ) pada arus 90 A sebesar 209,9 HV dan menurun seiring peningkatan arus. Mikrostruktur pada daerah Weld Metal (WM) dan HAZ didominasi fasa ferrite dan pearlite. Peningkatan arus meningkatkan heat input dan memperlambat laju pendinginan sehingga memicu pertumbuhan butir (grain growth) yang berkontribusi terhadap penurunan kekerasan. Seluruh spesimen patah pada Base Metal (BM), menunjukkan kualitas ikatan metalurgi sambungan las yang baik. Berdasarkan hasil tersebut, arus 100 A merupakan parameter paling optimum karena memberikan keseimbangan terbaik antara kekuatan tarik, karakteristik mikrostruktur, dan kualitas sambungan las baja SS400 untuk aplikasi konstruksi bangunan.***** Low-carbon SS400 steel is widely used in building construction because of its strength, ductility, and weldability. In the Shielded Metal Arc Welding (SMAW) process, welding current is an important parameter that affects heat input, cooling rate, microstructure formation, and the mechanical properties of welded joints. This study aims to analyze the effect of welding current variations on the tensile strength, Vickers hardness, and microstructural characteristics of SS400 steel welded joints. An experimental method was conducted using welding currents of 90 A, 100 A, and 110 A, a 3.2 mm E7018 electrode, a 60° single-V groove joint, and a 1G welding position. Testing included tensile testing based on ASTM E8/E8M, Vickers hardness testing based on ASTM E384, and microstructural observation using an optical microscope after metallographic preparation and 2% Nital etching. The results showed that 100 A produced the highest Ultimate Tensile Strength (UTS), averaging 522.15 MPa. The highest hardness was obtained in the Heat Affected Zone (HAZ) at 90 A, reaching 209.9 HV, and decreased as welding current increased. The microstructures in the Weld Metal (WM) and HAZ were predominantly ferrite and pearlite. Increasing welding current increased heat input and slowed cooling, promoting grain growth and contributing to decreased hardness. All specimens fractured in the Base Metal (BM), indicating metallurgical bonding. Therefore, 100 A was determined as the optimum parameter, providing the balance between tensile strength, microstructural characteristics, and welded joint quality for SS400 steel in construction applications.

Item Type: Thesis (Sarjana)
Additional Information: 1). Dr. Wardoyo, S.T., M.T. 2). Drs. Syamsuir, M.T.
Subjects: Teknologi dan Ilmu Terapan > Konstruksi Bangunan
Teknologi dan Ilmu Terapan > Teknik Mesin, Mekanika Teknik
Teknologi dan Ilmu Terapan > Teknik Energi
Divisions: FT > D IV Teknologi Rekayasa Manufaktur
Depositing User: Muhammad Rizal Nurdiansyah .
Date Deposited: 07 Aug 2026 03:22
Last Modified: 07 Aug 2026 03:22
URI: http://repository.unj.ac.id/id/eprint/68494

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