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首页> 外文期刊>Materials Research >Investigation of Mechanical and Metallurgical Properties of Friction Stir Corner Welded Dissimilar Thickness AA5086-AA6061 Aluminium Alloys
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Investigation of Mechanical and Metallurgical Properties of Friction Stir Corner Welded Dissimilar Thickness AA5086-AA6061 Aluminium Alloys

机译:搅拌摩擦角焊接异种厚度AA5086-AA6061铝合金的力学和冶金性能研究

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In this investigation, an attempt has been made to fabricate dissimilar thickness corner joint using non-heat treatable (AA5086) and heat treatable (AA6061) dissimilar aluminium alloys by friction stir welding process with plate thicknesses of 6mm and 4mm. Three parameters and three levels were considered to conduct the experiments such as welding and rotational speeds of 100, 150 and 190 mm/min and 900, 1000 and 1100 rpm and plunge depth of 0.1, 0.2 and 0.3 mm. The mechanical properties were evaluated using hardness and tensile tests. Taguchi grey relational analysis was carried out to determine the optimum process parameters. The higher value of tensile strength was obtained 192 MPa at rotational and welding speeds of 1000 rpm and 150 mm/min which was 76.80% of parent material and maximum hardness was 157 HV at thermomechanically affected zone for the rotational speed of 1100 rpm and hardness at stir zone was maximum because of refined grain formation. The microstructures of various regions were observed and analyzed by optical and scanning electron microscopes. The tensile samples fractured at the heat affected zone. The spindle motor current consumption, work material temperature distribution, and force generation during friction stir welding were estimated and analyzed.
机译:在这项研究中,已经尝试通过摩擦搅拌焊接工艺,使用厚度为6mm和4mm的非热处理(AA5086)和可热处理(AA6061)异种铝合金来制造厚度不同的角接缝。考虑了三个参数和三个级别来进行实验,例如焊接和100、150和190 mm / min的旋转速度以及900、1000和1100 rpm的旋转速度以及0.1、0.2和0.3 mm的切入深度。使用硬度和拉伸试验评估机械性能。田口进行灰色关联分析,以确定最佳工艺参数。在转速为1100 rpm和温度为1100 rpm的热机械影响区,在1000 rpm和150 mm / min的旋转和焊接速度下,抗张强度值更高,为母材的76.80%,最大硬度为157 HV,为192 MPa。搅拌区最大,因为形成了细颗粒。通过光学和扫描电子显微镜观察并分析了各个区域的微观结构。拉伸样品在热影响区断裂。估算并分析了主轴电机的电流消耗,工件材料的温度分布以及搅拌摩擦焊过程中的力产生。

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