Effect of process parameters on weld geometry and mechanical properties in friction stir welding of AA2024 and AA7075 alloys

C. Rathinasuriyan , M. Puviyarasan , R. Sankar , V. Selvakumar
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Abstract

FSW joints are promising because they have a minimal heat input in welding and can limit the amount of intermetallic compound formation in dissimilar metals. Solid-state welding processes, particularly friction stir welding (FSW), are preferred for welding aluminium alloys due to their low heat input and ability to minimize intermetallic compound formation. This study conducted FSW trials on AA7075 and AA2024 alloys, each 4 mm thick. Parameters such as axial force, rotational speed, and traverse feed were adjusted while keeping other factors constant. The study analyzed weld geometry characteristics, including bead width and penetration depth. Angle distortions during FSW of thin plates in a butt joint were investigated. Additionally, the study examined the effects of FSW parameters on mechanical properties such as tensile strength and hardness immediately after welding. Microstructures of the welds were observed using optical microscopy (OM). The optimal mechanical properties are achieved at a rotational speed of 1000 rpm, a traverse feed of 30 mm/min, and an axial force of 10 kN. This optimal condition facilitates material flow around the pin at an ideal speed, ensuring adequate material filling and preventing tunnel formation. The stir zone's microstructure under these parameters exhibits a finely recrystallized structure with a significantly smaller grain size than the base material. Consequently, this enhances the joint's microhardness and tensile strength.

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工艺参数对 AA2024 和 AA7075 合金搅拌摩擦焊焊缝几何形状和机械性能的影响
FSW 焊接接头具有良好的前景,因为它在焊接过程中输入的热量极低,并能限制异种金属中金属间化合物的形成量。固态焊接工艺,尤其是搅拌摩擦焊(FSW),因其输入热量低且能最大限度地减少金属间化合物的形成而成为铝合金焊接的首选。本研究对 AA7075 和 AA2024 合金进行了 FSW 试验,每种合金的厚度均为 4 毫米。在保持其他因素不变的情况下,对轴向力、旋转速度和横向进给等参数进行了调整。研究分析了焊接几何特征,包括焊缝宽度和熔深。研究了对接薄板的 FSW 焊接过程中的角度变形。此外,研究还考察了焊接后FSW参数对拉伸强度和硬度等机械性能的影响。使用光学显微镜(OM)观察了焊缝的微观结构。在转速为 1000 rpm、横向进给速度为 30 mm/min、轴向力为 10 kN 的条件下,可获得最佳机械性能。这种最佳条件有利于材料以理想的速度围绕销钉流动,确保材料充分填充,防止形成隧道。在这些参数下,搅拌区的微观结构呈现出精细的再结晶结构,晶粒尺寸明显小于基体材料。因此,这提高了接头的微硬度和抗拉强度。
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