马广义

个人信息Personal Information

教授

博士生导师

硕士生导师

主要任职:机械工程学院副院长

性别:男

毕业院校:大连理工大学

学位:博士

所在单位:机械工程学院

学科:机械制造及其自动化. 机械电子工程. 机械设计及理论

办公地点:机械知方楼5035

联系方式:0411-84706920

电子邮箱:gyma@dlut.edu.cn

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Al-Cu alloy fabricated by novel laser-tungsten inert gas hybrid additive manufacturing

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论文类型:期刊论文

发表时间:2020-03-01

发表刊物:ADDITIVE MANUFACTURING

收录刊物:EI、SCIE

卷号:32

ISSN号:2214-8604

关键字:Laser-TIG hybrid; Additive manufacturing; Aluminum alloy; Microstructure evaluation; Mechanical properties

摘要:Owing to its high strength to weight ratio, Al-Cu alloy is extensively used in the aeronautic and aerospace industries. However, there are some shortcomings in the additive manufacturing of Al-Cu alloy, such as cracks and poor strength. In this work, Al-Cu (2219-Al) specimens with excellent mechanical properties were fabricated by laser-Tungsten Inert Gas (TIG) hybrid additive manufacturing. From the microstructural studies, the average grain size in the laser zone (LZ) decreased to 14.4 pm, which was approximately 40.3 % smaller than that in the arc zone (AZ). Under the influence of laser stirring, Cu in the LZ was distributed more uniformly than in the AZ. An incoherent theta phase, at the nanoscale, was discovered in both the AZ and the LZ. Its crystal orientation relationship was described as [110](alpha)parallel to[002](theta), (110)(alpha)parallel to(002)(theta) between the alpha-Al matrix and the theta phase. The semi-coherent theta' phase was observed in the LZ. Meanwhile, the theta' phase characterized a good coherent relationship with the alpha-Al matrix, which resulted in low phase boundary energy. Furthermore, the deposited specimens exhibited a yield strength of 155.5 +/- 7.9 MPa and an ultimate tensile strength of 301.5 +/- 16.7 MPa, with an elongation of 12.8 +/- 2.8 %. These mechanical properties were higher than in specimens fabricated by TIG, CMT and SLM methods. The improved properties were predominately related to the smaller size of eutectics, the uniform distribution of Cu and the semi-coherent theta' phases in the LZ. The combined effect of laser and arc can yield components with excellent mechanical properties, promoting the material for an expansive range of applications.