Effect of microstructural features on the failure behavior of hybrid laser welded AA7020

被引:34
作者
Hu, Y. N. [1 ]
Wu, S. C. [1 ]
Song, Z. [1 ]
Fu, Y. N. [2 ]
Yuan, Q. X. [3 ]
Zhang, L. L. [2 ]
机构
[1] Southwest Jiaotong Univ, State Key Lab Tract Power, Chengdu 610031, Sichuan, Peoples R China
[2] Chinese Acad Sci, Shanghai Inst Appl Phys, SSRF, Shanghai 201204, Peoples R China
[3] Chinese Acad Sci, Inst High Energy Phys, BSRF, Beijing 100049, Peoples R China
基金
中国国家自然科学基金;
关键词
fatigue crack initiation and growth; gas porosity; high-speed railway vehicle; laser-MIG hybrid welding; synchrotron radiation X-ray microtomography; ALUMINUM-ALLOY; MECHANICAL-PROPERTIES; FATIGUE PROPERTIES; STRENGTH; POROSITY; CRACKING; FRACTURE; DENSITY; JOINTS;
D O I
10.1111/ffe.12838
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Detailed investigations of microstructural feature, mechanical property, fatigue strength, and damage mechanism were conducted on hybrid laser welded 7020-T651 aluminum alloys used into high-speed railway vehicles. The results show that the hybrid laser welding process can induce significant changes of microstructures and alloying elements, together with numerous gas pores. Such local modifications degrade the fatigue performance. The tensile strength of welded joints was approximately 74% with respect to the base metal, thus satisfying the design standard. The fatigue property was determined in the low and high cycle regimes. It was found that the fatigue strength of welded joints was fairly inferior to that of the base metal, but far higher than the IIW recommended value. Furthermore, welding defects were well believed to contribute to the shorter fatigue life. The small fatigue crack growth presented highly discontinuous and inhomogeneous due to microstructure and porosity. By contrast, the crack stable growth stage was less sensitive to microstructural features of hybrid welded joints.
引用
收藏
页码:2010 / 2023
页数:14
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