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AA2024-T351与AA7075-T651异种搅拌摩擦焊接接头底部区域的晶粒结构与织构演变

Grain Structure and Texture Evolution in the Bottom Zone of Dissimilar Friction-Stir-Welded AA2024-T351 and AA7075-T651 Joints.

作者信息

Shou Haoge, Song Yaoyao, Zhang Chenghang, Zhang Pengfei, Zhao Wei, Zhu Xixia, Shi Peng, Xing Shule

机构信息

College of Intelligent Manufacturing, Huanghuai University, Zhumadian 463000, China.

School of Materials Engineering, Jiyuan Vocational and Techncal College, Jiyuan 459000, China.

出版信息

Materials (Basel). 2024 Jul 29;17(15):3750. doi: 10.3390/ma17153750.

Abstract

High-strength dissimilar aluminum alloys are difficult to connect by fusion welding, while they can be successfully joined by friction stir welding (FSW). However, the asymmetrical deformation and heat input that occur during FSW result in the formation of a heterogeneous microstructure in their welded zone. In this work, the grain structure and texture evolution in the bottom zones of dissimilar FSW AA2024-T351 and AA7075-T651 joints at different welding speeds (feeding speeds) were quantitatively investigated. The results indicated that dynamic recrystallization occurs in the bottom zones of dissimilar FSW joints, and equiaxed grains with low grain sizes are formed at the welding speed of 60-240 mm/min. A high fraction of the recrystallized grains were generated in the bottom zones of the joints at a low welding speed, while a high fraction of the substructured grains are produced at a high welding speed. Different types of shear textures are produced in the bottom zones of the joints; the number fraction of shear texture types depends on different welding speeds. This study helps to understand the mechanism of microstructure homogenization in dissimilar FSW joints and provides a basis for further improving the microstructure of the welded zone for engineering applications.

摘要

高强度异种铝合金难以通过熔焊连接,而采用搅拌摩擦焊(FSW)则可成功实现连接。然而,搅拌摩擦焊过程中出现的不对称变形和热输入会导致其焊接区形成不均匀的微观结构。在本研究中,定量研究了不同焊接速度(进给速度)下,异种搅拌摩擦焊AA2024-T351和AA7075-T651接头底部区域的晶粒结构和织构演变。结果表明,异种搅拌摩擦焊接头底部区域发生动态再结晶,在60-240mm/min的焊接速度下形成了低晶粒尺寸的等轴晶粒。在低焊接速度下,接头底部区域产生了高比例的再结晶晶粒,而在高焊接速度下则产生了高比例的亚结构晶粒。接头底部区域产生了不同类型的剪切织构;剪切织构类型的数量分数取决于不同的焊接速度。本研究有助于理解异种搅拌摩擦焊接头微观结构均匀化的机制,并为进一步改善焊接区微观结构以用于工程应用提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d371/11313647/e4fbddcd318a/materials-17-03750-g001.jpg

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