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Grain Orientation and Texture Evolution in Pure Titanium Lap Joint Produced by Friction Stir Welding

机译:搅拌摩擦焊接纯钛搭接接头的晶粒取向和织构演变

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摘要

Pure titanium lap joints were produced by friction stir welding, and the grain orientation and texture evolution were investigated as well as the mechanical property of the lap joint. The grain orientation changes obviously after welding, and the strong P_1 texture formed in the stir zone suggests that the metal flow can be characterized by a simple shear deformation. The shear plane in the center and bottom parts of the stir zone is shown to be a spherical crown surface, which is nearly similar to the bottom shape of the probe. The vertical flow of stirred metal is slight and it may be a reason why the welding condition is narrow. The hardness in the stir zone is distinctly higher than that in the base metal due to the grain refinement after FSW, and the shear tensile strength is so high that the fracture happens at the base metal, resulting from both the hardness increase in the stir zone and the sufficient width of lap zone.
机译:通过摩擦搅拌焊接生产纯钛搭接接头,研究了搭接接头的晶粒取向和织构演变以及机械性能。焊接后晶粒取向发生明显变化,并且在搅拌区中形成的强P_1织构表明,金属流的特征在于简单的剪切变形。搅拌区中心和底部的剪切平面显示为球形冠状表面,几乎类似于探针的底部形状。搅拌金属的垂直流动很小,这可能是焊接条件狭窄的原因。由于FSW后的晶粒细化,搅拌区的硬度明显高于母材,并且剪切抗拉强度很高,以至于母材发生断裂,这是由于搅拌区的硬度均增加以及搭接区的足够宽度。

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