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EXPERIMENTAL EVALUATION OF WEAR FEATURES OF W-25RE PIN TOOL USED IN FRICTION STIR WELDING MILD STEEL

机译:摩擦搅拌焊接温和钢材W-25%Re Pin工具磨损特征的实验评价

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This paper presents the results of studying butt welding of 4 mm thick mild steel plate with a W-25% Re pin tool using the relatively new friction stir welding (FSW) process. The study includes investigating the wear behavior of the pin tool and the effects of process conditions such as rotational speed on the quality of the weld, microstructures and hardness of mild steel. The results reveal that the traverse (welding) force increases with the increase in the traveled distance of the pin tool, whereas torque decreases with the increase in the travelled distance of the pin tool. The tool has shown wear resistance at lower rotational speed, but with the increase of the rotational speed, wear of the tool became prominent. All welded samples revealed grain size refining. Furthermore, at high rotational speed martensitic structure phase developed due to phase transformation. Different distinct regions of stir zones, thermomechanical heat affected zones and heat affected zones were present in the weld.
机译:本文采用了使用相对新的摩擦搅拌焊接(FSW)工艺的W-25%RE PIN工具研究了4毫米厚的温和钢板的对接焊接的结果。该研究包括调查销工具的磨损行为和工艺条件的效果,例如焊接质量,微钢的微观结构和硬度等旋转速度。结果表明,横向(焊接)力随着销工具的行驶距离的增加而增加,而扭矩随着销工具的行驶距离的增加而降低。该工具以较低的转速显示耐磨性,但随着旋转速度的增加,工具的磨损变得突出。所有焊接样品都显示出晶粒尺寸精制。此外,在高转速马氏体结构阶段,由于相变产生。焊接中存在不同的搅拌区,热机械热影响区域和热影响区域的不同区别。

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