Publiora

Menghubungkan ke Publiora...

Publiora

The stress corrosion cracking (SCC) susceptibility of the dissimilar ASTM A36 steels and 316L stainless steels welding in varied temperature of FeCl2

Darmadi, Djarot BangunSaputra, AnggaUtomo, Slamet PrasetyoTalice, Marco
Mechanical Engineering for Society and Industry (Sinta 1)Vol. 0 No. 028 Juni 2025
DOI10.31603/mesi.13161

Abstrak

Obtaining perfect dissimilar welding joints which are exposed to corrosive environments still a problem up to now. The ASTM A36 and 316L stainless steels dissimilar metals were joined by means of Capacitive Discharge Welding (CDW). The welding parameters such as distance between metals, pressure, applied energy, and surface parameter were kept constant. The FeCl2 corrosive solution concentration also kept constant at 0.5M. The temperature of the solution was controlled at varied temperature, those are: 30 °C, 40 °C and 50 °C respectively. The resistance to the Stress Corrosion Cracking (SCC) load, was evaluated by time to fracture for certain dead tensile load and corrosive media. The SEM EDS data were retrieved to have deep insight of the SCC mechanism. The results show that, with 10 °C increasing temperature the SCC Threshold is decreased by 40% which are supported by the data of time to failure for certain load and also the SEM EDS.

Kata Kunci

SCC susceptibilitySCC thresholdDissimilar jointsCapacitive dischargeWelding FeCl2

Cari jurnal yang tepat untuk naskah Anda

MatchMind AI mencocokkan abstrak naskah Anda dengan ribuan jurnal terakreditasi dan menampilkan rekomendasi terbaik beserta alasannya.

Coba MatchMind

Lihat profil lengkap jurnal ini

Waktu review, biaya APC, statistik sitasi, indeksasi Scopus, dan banyak lagi.

Buka Mechanical Engineering for Society and Industry

Artikel ini juga tersedia di situs resmi jurnal.

The stress corrosion cracking (SCC) susceptibility of the dissimilar ASTM A36 steels and 316L stainless steels welding in varied temperature of FeCl2 | Mechanical Engineering for Society and Industry | Publiora