Bandhu Din, Djavanroodi Faramarz, Shaikshavali G, Vora Jay J, Abhishek Kumar, Thakur Ashish, Kumari Soni, Saxena Kuldeep K, Ebrahimi Mahmoud, Attarilar Shokouh
Department of Mechanical Engineering, Indian Institute of Information Technology Design and Manufacturing, Kurnool 518008, Andhra Pradesh, India.
Department of Mechanical Engineering, College of Engineering, Prince Mohammad Bin Fahd University, Al Khobar 31952, Saudi Arabia.
Materials (Basel). 2022 Sep 26;15(19):6661. doi: 10.3390/ma15196661.
Environmental and human-friendly welding is the need of the hour. In this context, this study explores the application of the regulated metal deposition (RMD) technique for ASTM A387-Gr.11-Cl.2 steel plates. To examine the effect of metal-cored filler wire (MCFW), MEGAFIL 237 M was employed during regulated metal deposition (RMD) welding of 6 mm thick ASTM A387-Gr.11-Cl.2 steel plates. The welding was carried out at an optimized current (A) of 100 A, voltage (V) of 13 V, and gas flow rate (GFR) of 21 L/min. Thereafter, the as-welded plates were examined for morphological changes using optical microscopy. Additionally, the micro-hardness of the as-welded plates was measured to make corroboration with the obtained surface morphologies. In addition to this, the as-welded plates were subjected to heat treatment followed by surface morphology and micro-hardness examination. A comparison was made between the as-welded and heat-treated plates for their obtained surface morphologies and microhardness values. During this, it was observed that the weld zone of as-welded plates has a dendritic surface morphology which is very common in fusion-based welding. Similarly, the weld zone of heat-treated plates has a finer and erratic arrangement of martensite. Moreover, the obtained surface morphologies in the weld zone of as-welded and heat-treated plates have been justified by their respective hardness values of 1588.6 HV and 227.3 HV.
环保型焊接是当下的需求。在此背景下,本研究探讨了熔敷率可控(RMD)技术在ASTM A387-Gr.11-Cl.2钢板焊接中的应用。为了研究药芯焊丝(MCFW)的影响,在对6毫米厚的ASTM A387-Gr.11-Cl.2钢板进行熔敷率可控(RMD)焊接时使用了MEGAFIL 237 M焊丝。焊接在优化电流(A)为100 A、电压(V)为13 V、气体流量(GFR)为21升/分钟的条件下进行。此后,使用光学显微镜检查焊后板材的形态变化。此外,测量了焊后板材的显微硬度,以与获得的表面形态进行印证。除此之外,对焊后板材进行热处理,然后检查表面形态和显微硬度。对焊后板材和热处理板材的表面形态及显微硬度值进行了比较。在此过程中,观察到焊后板材的焊缝区具有树枝状表面形态,这在熔焊中很常见。同样,热处理板材的焊缝区有更细小且不规则排列的马氏体。此外,焊后板材和热处理板材焊缝区获得的表面形态通过它们各自1588.6 HV和227.3 HV的硬度值得到了验证。