Influence of tool geometry on mechanical and microstructural characteristics of friction stir welded cast alloys

B. S. Bindhushree, P. Sevvel, S. P. Shanmuganatan, D. Saravanabavan, M. Madhusudan
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Abstract

Cast alloys find suitable applicability in aerospace sector owing to low porosity, high specific strength, corrosion resistance, fluidity and good machinability. The investigation focuses on friction stir welding (FSW) of cast A356 and A2014 alloys with varied range of process parameters, namely tool pin shape (cylinder, threaded cylinder, square, and conical), tool rotation speed (1800–2100 rpm) and welding speed (10–25 mm × min−1). Experimentation on stirwelding was performed based on selected tool pin shape between varied tool rotation and welding speed. The output responses, namely Ultimate tensile strength (UTS) and micro hardness, have been evaluated to study the effect of each tool. The microstructural characteristics of the weld samples were analyzed using optical microscope and scanning electron microscope (SEM) technique. The microstructural observation unveiled that complete fusion prevails between the parent alloys devoid of micro porosities and segregations. The re-crystallization effect resulted in the finer grains. The cylinder-shaped tool with a thread and square shaped tool rendered better strength and hardness properties of 136.6 MPa and 109.4 HV, respectively.
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工具几何形状对搅拌摩擦焊接铸造合金机械和微观结构特征的影响
铸造合金具有气孔率低、比强度高、耐腐蚀、流动性好和良好的机加工性能等特点,非常适合应用于航空航天领域。本研究主要针对 A356 和 A2014 铸造合金的搅拌摩擦焊(FSW),采用了不同范围的工艺参数,即工具销钉形状(圆柱体、螺纹圆柱体、方形和锥形)、工具旋转速度(1800-2100 rpm)和焊接速度(10-25 mm × min-1)。根据所选的工具销钉形状,在不同的工具旋转和焊接速度下进行了搅拌焊接实验。评估了输出响应,即极限拉伸强度(UTS)和显微硬度,以研究每种工具的影响。使用光学显微镜和扫描电子显微镜(SEM)技术分析了焊接样品的微观结构特征。微观结构观察结果表明,母合金之间完全熔合,没有微孔和偏析。再结晶效应产生了更细的晶粒。带螺纹的圆柱形工具和方形工具具有更好的强度和硬度特性,分别达到 136.6 兆帕和 109.4 HV。
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