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Effect of Friction Stir Welding Process Parameters with Interlayer Strip on Microstructural Characterization and Mechanical Properties

机译:搅拌搅拌焊接工艺参数与层间带对微结构表征和机械性能的影响

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摘要

Process parameters of friction stir welding (FSW) with different values of interlayer strip widths have become a very vital research area to reinforce the weak part of the nugget zone in welded joints. So, the objective of this work is to study the effect of different process parameters of FSW such as the tool rotational speed (R), travel velocity (upsilon) and inclination angle (Theta) with different values of interlayer strip widths (W) of compensation material on microstructural characterization and mechanical properties. Optical microscope, scanning electron microscope, energy-dispersive x-ray spectroscopy and x-ray diffraction techniques were used to characterize the microstructural changes after FSW process. Microhardness and tensile tests were also used to characterize the mechanical properties of the produced joints. The results of mechanical properties of FSW process parameters with different values of interlayer strip width showed that when the tool rotational speed is increased till 2000 rpm, the tensile strength has been increased till 321 MPa, while the reduction in tool traverse speed till 20 mm/min led to an increase in the tensile strength till 239 MPa. Moreover, the best inclination angle was 2.5 degrees. The microstructure observations revealed that the use of process parameters of FSW at 2000 rpm rotational speed, 20 mm/min traverse velocity and 2.5 degrees inclination angle with different values of interlayer strip width showed excellent connections of reinforcement clusters of AA7075 compensation material between the matrices of AA2024 base metals.
机译:摩擦搅拌焊接(FSW)的工艺参数具有不同的层间带宽度的值已成为一种非常重要的研究区域,以加强焊接接头中块屑区域的弱部分。因此,这项工作的目的是研究FSW的不同工艺参数,如工具转速(R),行进速度(UPSILON)和倾斜角(θ),具有不同的层间条宽度(W)的不同值微观结构表征的补偿材料和机械性能。光学显微镜,扫描电子显微镜,能量分散X射线光谱和X射线衍射技术用于表征FSW过程后的微观结构变化。显微硬度和拉伸试验还用于表征所产生的关节的机械性能。 FSW工艺参数的机械性能结果与层间带宽度的不同值表明,当刀具转速增加到2000 rpm时,拉伸强度已增加到321MPa,而刀具的减少横向速度至20 mm /最小值导致拉伸强度的增加至239MPa。而且,最佳的倾斜角度为2.5度。微观结构观察显示,使用FSW的工艺参数以2000 rpm旋转速度,20mm / min的横向速度和2.5度倾斜角度,其层间条宽度的不同值显示出矩阵之间的AA7075补偿材料的加强簇优异的连接。 AA2024基础金属。

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