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Experimental investigation of the effect of vibration on mechanical properties of 304 stainless steel welded parts

机译:振动对304不锈钢焊接零件力学性能影响的实验研究

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摘要

Some of the problems that occur during the welding process include the creation of coarse grains in the weld structure and the hardening of the weld region, which reduce the strength and impact resistance of the welded parts. One technique to improve the mechanical properties of weld is the application of mechanical vibration to the molten pool. In this article, the effect of vibrating the part during welding on the mechanical properties of steel plates has been investigated in the tungsten inert gas (TIG) welding process. The plate is made of stainless steel 304 with 2 mm in thickness. A filler material has also been used for welding so that the effect of vibration can be observed on the weld pool region. The experimental tests have been performed under different welding conditions with respect to voltage, current, welding speed, vibrations amplitude, and frequency. Then, the resultant mechanical properties of the tested parts were measured. Also, the microstructure obtained by applying the vibration has been examined. Based on these experimental results, the effect of mechanical vibration on mechanical properties of the weld was investigated. Moreover, considering the mechanical properties obtained from these experiments, the optimum values of amplitude, frequency, and welding speed were determined.
机译:在焊接过程中发生的一些问题包括在焊接结构中产生粗大晶粒和焊接区域的硬化,这降低了焊接零件的强度和抗冲击性。一种改善焊接机械性能的技术是对熔池施加机械振动。在本文中,已经在钨极惰性气体保护(TIG)焊接工艺中研究了焊接过程中零件振动对钢板机械性能的影响。该板由厚度为2mm的不锈钢304制成。填充材料也已经被用于焊接,从而可以在焊接熔池区域上观察到振动的影响。在电压,电流,焊接速度,振动幅度和频率的不同焊接条件下进行了实验测试。然后,测量了测试零件的最终机械性能。另外,已经研究了通过施加振动获得的微观结构。基于这些实验结果,研究了机械振动对焊缝机械性能的影响。此外,考虑到从这些实验获得的机械性能,确定了振幅,频率和焊接速度的最佳值。

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