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首页> 外文期刊>Indian journal of engineering and materials sciences >Investigation on the effect of auxiliary vibrations on microstructure and mechanical properties of SMAW butt welded joints
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Investigation on the effect of auxiliary vibrations on microstructure and mechanical properties of SMAW butt welded joints

机译:辅助振动对Smaw对焊接接头微观结构和力学性能影响的研究

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摘要

In this study, an attempt has been made to investigate the effect of inducing auxiliary vibration into the weld pool during welding and aimed to understand the fundamental role of vibration in controlling the weld pool microstructure and mechanical properties. A vibratory set-up has been used to transfer the mechanical vibration in the molten weld pool during shielded metal arc welding (SMAW) process. Vibratory welding is performed on 6 mm thick mild steel plate with various material combinations using bead on plate technique. A comparative investigation between conventional welding and vibratory welding technique is conducted. The mechanical strength is evaluated using micro-hardness and transverse tensile tests. The result shows the enhancement in yield strength by 28%, 25% and 48% for the combination of WBMS/MS, WBSS/MS and WBST/MS, respectively. The metallographical studies show that induced vibration during welding increased the nucleation rate and steeper thermal gradients across the heat affected zone (HAZ) is found. Comparatively finer grain microstructures are observed in the vibratory welding condition.
机译:在这项研究中,已经尝试研究焊接过程中诱导辅助振动在焊接池中的效果,并旨在了解振动控制焊接池微观结构和机械性能的基本作用。在屏蔽金属弧焊(SMAW)工艺期间,振动设置用于在熔融焊接池中转移机械振动。在6毫米厚的温和钢板上进行振动焊接,在板技术上使用珠子具有各种材料组合。传统焊接与振动焊接技术之间的比较研究。使用微硬度和横向拉伸试验评估机械强度。结果表明,对于WBMS / MS,WBSS / MS和WBST / MS的组合,屈服强度的增强分别为28%,25%和48%。金属化学研究表明,在焊接过程中诱导振动增加了在热影响区域(HAZ)上增加了成核速率和陡峭的热梯度。在振动焊接条件下观察到比较细粒微观结构。

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