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Effect of Welding Process on Microstructure, Mechanical and Pitting Corrosion Behaviour of 2205 Duplex Stainless Steel Welds

机译:焊接工艺对2205双相不锈钢焊缝微观结构,机械和蚀腐蚀行为的影响

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An attempt has been made to weld 2205 Duplex stainless steel of 6mm thick plate using conventional gas tungsten arc welding (GTAW) and activated gas tungsten arc welding (A-GTAW) process using silica powder as activated flux. Present work is aimed at studying the effect of welding process on depth of penetration, width of weld zone of 2205 duplex stainless steel. It also aims to observe the microstructural changes and its effect on mechanical properties and pitting corrosion resistance of 2205 duplex stainless steel welds. Metallography is done to observe the microstructural changes of the welds using image analyzer attached to the optical microscopy. Hardness studies, tensile and ductility bend tests were evaluated for mechanical properties. Potentio-dynamic polarization studies were carried out using a basic GillAC electro-chemical system in 3.5% NaCl solution to observe the pitting corrosion behaviour. Results of the present investigation established that increased depth of penetration and reduction of weld width in a single pass by activated GTAW with the application of SiO2 flux was observed when compared with conventional GTAW process. It may be attributed to the arc constriction effect. Microstructure of the weld zones for both the welds is observed to be having combination of austenite and delta ferrite. Grain boundary austenite (GBA) with Widmanstatten-type austenite (WA) of plate-like feature was nucleated from the grain boundaries in the weld zone of A-GTAW process. Mechanical properties are relatively low in activated GTAW process and are attributed to changes in microstructural morphology of austenite. Improved pitting corrosion resistance was observed for the welds made with A-GTAW process.
机译:使用常规气体钨弧焊(GTAW)和使用二氧化硅粉末作为活性通量,已经尝试使用常规气体钨弧焊(GTAW)和活化气体钨弧焊(A-GTAW)工艺来试图焊接6mm厚板的2205双相不锈钢。目前的工作旨在研究焊接过程对渗透深度的影响,2205双相不锈钢焊接区的宽度。它还旨在观察2205双相不锈钢焊缝的微观结构变化及其对机械性能和蚀腐蚀性的影响。使用连接到光学显微镜的图像分析仪观察焊缝的微观结构变化以观察到金相。评估硬度研究,张力和延展性弯曲试验进行机械性能。使用3.5%NaCl溶液中的基础吉尔卡克电化学体系进行电容性 - 动态偏振研究,以观察蚀腐蚀行为。与常规GTAW工艺相比,观察到本发明研究结果确定了通过活化的GTAW在单次通过中,通过激活的GTAW进行焊接宽度的深度和减少。它可能归因于电弧收缩效果。观察到两种焊缝的焊接区域的微观结构具有奥氏体和δ铁素体的组合。晶界奥氏体(GBA)与Widmantatten型奥氏体(WA)的板状特征从A-GTAW工艺的焊接区域中的晶界核。在活性的GTAW过程中,机械性能相对较低,归因于奥氏体微观结构形态的变化。针对用A-GTAW工艺制造的焊缝观察到改善的蚀腐蚀性。

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