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Local mechanical properties, microstructure, and microtexture in friction stir welded Ti-6Al-4V alloy

机译:搅拌摩擦焊接Ti-6Al-4V合金的局部力学性能,显微组织和显微组织

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摘要

Local mechanical properties of Ti-6Al-4V butt joints produced by friction stir welding (FSW) were investigated using the shear punch testing and correlated with the global mechanical properties, microstructure, and microtexture evolution of the joint. The conditions for obtaining defect-free joints, under high heat input conditions were determined for the investigated alloy. The shear punch results revealed important differences in yield and ultimate strength between the base material (BM), the heat affected zone close to the BM (HAZ1), the heat affected zone close to the nugget (HAZ2) and two distinct regions in the stirred zone (SZ1 and SZ2). Electron microscopy examination indicated that the microstructure of the BM was converted from equiaxed and elongated a grains with an average size of about 20 mu m and a basal transverse texture to a very fine, less than 1 mu m diameter, equiaxed microstructure at the center of the SZ, while bimodal structures with lamellar and equiaxed grains were found elsewhere. The analysis of the local mechanical properties indicated that HAZ1 had the lowest mechanical properties of the joint and the obtained results are interpreted in terms of transition texture evolution from the BM to the HAZ using misorientation analysis of high resolution EBSD maps.
机译:使用剪切冲头测试研究了搅拌摩擦焊(FSW)产生的Ti-6Al-4V对接接头的局部力学性能,并将其与接头的整体力学性能,微观结构和微观组织演变相关联。确定了在高热输入条件下获得无缺陷接头的条件,用于研究的合金。剪切冲头结果表明,在搅拌下,基础材料(BM),靠近BM的热影响区(HAZ1),靠近熔核的热影响区(HAZ2)和搅拌中的两个不同区域之间存在重要的屈服和极限强度差异区域(SZ1和SZ2)。电子显微镜检查表明,BM的微观结构从等轴伸长的晶粒转变成,该晶粒平均直径约为20μm,具有基本的横向织构,而在中心处具有非常细的,小于1μm直径的等轴微观结构。 SZ,而在其他地方则发现了具有层状和等轴晶粒的双峰结构。对局部机械性能的分析表明,HAZ1具有最低的接头机械性能,并且使用高分辨率EBSD映射图的方向错误分析来解释从BM到HAZ的过渡织构演变所获得的结果。

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