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Tool geometry, rotation and travel speeds effects on the properties of dissimilar magnesium/aluminum friction stir welded lap joints

机译:刀具的几何形状,转速和行进速度对异种镁/铝摩擦搅拌焊接搭接接头性能的影响

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摘要

Lap joint friction stir welding (FSW) between dissimilar AZ31B and Al 6061 alloys sheets was conducted using various welding parameters including tool geometry, rotation and travel speeds. Tapered threaded pin and tapered pin tools were applied to fabricate FSW joints, using different rotation and travel speeds. Metallurgical investigations including X-ray diffraction pattern (XRD), optical microscopy images (OM), scanning electron microscopy equipped with an energy-dispersive X-ray spectroscopy (SEM-EDS) and electron probe microanalysis (EPMA) were used to characterize joints microstructures made with different welding parameters. Intermetallic phases were detected in the weld zone (WZ). Various microstructures were observed in the stir zone which can be attributed to using different travel and rotation speeds. Mechanical evaluation including lap shear fracture load test and microhardness measurements indicated that by simultaneously increasing the tool rotation and travel speeds, the joint tensile strength and ductility reached a maximum value. Microhardness studies and extracted results from stress-strain curves indicated that mechanical properties were affected by FSW process. Furthermore, phase analyses by XRD indicated the presence of intermetallic compounds in the weld zone. Finally, in the Al/Mg dissimilar weld, fractography studies showed that intermetallic compounds formation in the weld zone had an influence on the failure mode.
机译:使用各种焊接参数(包括刀具几何形状,旋转速度和行进速度)在不同的AZ31B和Al 6061合金薄板之间进行搭接摩擦搅拌焊接(FSW)。使用不同的旋转速度和移动速度,使用锥形螺纹销和锥形销工具制造FSW接头。冶金学研究包括表征X射线衍射图(XRD),光学显微镜图像(OM),配备能量色散X射线光谱仪(SEM-EDS)和电子探针显微分析(EPMA)的扫描电子显微镜用不同的焊接参数制成。在焊接区(WZ)中检测到金属间相。在搅拌区观察到各种微观结构,这可以归因于使用不同的行进速度和旋转速度。包括搭接剪切断裂载荷测试和显微硬度测量在内的机械评估表明,通过同时提高工具的旋转速度和行进速度,接头的抗拉强度和延性达到最大值。显微硬度研究和应力-应变曲线的提取结果表明,机械性能受FSW过程的影响。此外,通过XRD进行的相分析表明在焊接区中存在金属间化合物。最后,在Al / Mg异种焊缝中,断口研究表明,在焊缝区域形成金属间化合物对破坏模式有影响。

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