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Formation mechanism of typical onion ring structures and void defects in friction stir lap welded dissimilar aluminum alloys

机译:搅拌摩擦焊接不同铝合金中典型洋葱圈结构的形成机理和空隙缺陷。

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摘要

The formation mechanism for typical onion ring structure and void defect with heat input during FSLW was continuously visualized by an exit-hole continuous observation technique. Based on this result, the compatibility between microstructure, microtexture, element maps and strain maps using electron backscattered diffraction (EBSD) with the chemical indexing assisted by EDS analysis was simultaneously investigated. The results revealed that the threaded probe was significantly correlated to typical onion ring structure and the onion structure formed as soon as it touched the probe. This result is different from the results so far. On the other hand, the remnant of original interface between top and bottom plates after FSLW and asymmetrical flow around rotating tool were significantly correlated to the formation of void defect in low heat input condition.
机译:通过出口连续观测技术,连续观察到典型的洋葱环结构的形成机理和在FSLW期间输入热量引起的空隙缺陷。基于此结果,同时研究了使用电子后向散射衍射(EBSD)和EDS分析辅助化学分度的微观结构,微观纹理,元素图和应变图之间的兼容性。结果表明,带螺纹的探针与典型的洋葱环结构显着相关,并且一旦与探针接触,洋葱结构就会形成。此结果与到目前为止的结果不同。另一方面,在低热量输入条件下,FSLW和旋转工具周围的不对称流动之后,顶板和底板之间的原始界面的残留量与空隙缺陷的形成显着相关。

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