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MICROSTRUCTURE AND HARDNESS OF FRICTION STIR WELD BEAD ON STEEL PLATE USING W-25Re PIN TOOL

机译:W-25%Re销钉工具在钢板上摩擦搅拌焊珠的组织和硬度

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One of the challenges that impede the use of the relatively new friction stir welding (FSW) process in joining steels and high temperature alloys, as well as dissimilar materials, is the development of the right pin tool material that can stand the severe welding conditions of these alloys. Recent developments in FSW tool materials include tungsten rhenium (W-Re) alloys. The ductile to brittle transition temperature of pure tungsten is reduced by the addition of rhenium (Re).. The addition of Re also improve fracture toughness of the alloy. The major focus of this paper is studying the process of making a friction stir welding bead on mild steel using a proprietary W-25%Re alloy pin tool and investigating the effects of process parameters (i.e. tool rotational and welding speeds) on microstructure, microhardness as well as tool reaction loads. Grain refining of the steel microstructure was observed in all beads. Certain process conditions produced a bead with needle like microstructure with the highest values of hardness. Reaction forces were found to increase with the increase in the tool welding speed and to decrease with the increase of the tool rotational speed. Although the spectroscopic analysis of the beads confirmed the diffusion wear of the tool, the overall tool has shown excellent resistance to mechanical wear.
机译:阻碍在钢和高温合金以及异种材料的连接中使用相对较新的摩擦搅拌焊接(FSW)工艺的挑战之一是开发可承受严酷焊接条件的正确的销钉工具材料。这些合金。 FSW工具材料的最新发展包括钨rh(W-Re)合金。通过添加((Re)可以降低纯钨的韧性至脆性转变温度。添加Re也可以提高合金的断裂韧性。本文的主要重点是研究使用专有的W-25%Re合金销钉工具在低碳钢上制造搅拌摩擦焊珠的过程,并研究工艺参数(即工具旋转速度和焊接速度)对显微组织,显微硬度的影响以及工具的反作用载荷。在所有珠粒中均观察到钢微结构的晶粒细化。在某些工艺条件下,会产生具有最高硬度值的针状微珠。发现反作用力随着工具焊接速度的增加而增加,并且随着工具旋转速度的增加而减小。尽管对珠子的光谱分析证实了工具的扩散磨损,但整个工具显示出出色的抗机械磨损性。

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