Fang Xuewei, Zhang Lijuan, Li Hui, Li Chaolong, Huang Ke, Lu Bingheng
School of Mechanical Engineering, Xi'an Jiaotong Univeristy, No. 28, Xianning West Road, Xi'an 710049, China.
National Innovation Institute of Additive Manufacturing, Building A, Door of Metropolis, Jinye Road, Gaoxin District, Xi'an 710065, China.
Materials (Basel). 2018 May 16;11(5):812. doi: 10.3390/ma11050812.
In this research, four different welding arc modes including conventional cold metal transfer (CMT), CMT-Pulse (CMT-P), CMT-Advanced (CMT-ADV), and CMT pulse advanced (CMT-PADV) were used to deposit 2219-Al wire. The effects of different arc modes on porosity, pore size distribution, microstructure evolution, and mechanical properties were thoroughly investigated. The statistical analysis of the porosity and its size distribution indicated that the CMT-PADV process gave the smallest pore area percentage and pore aspect ratio, and had almost no larger pores. The results from optical microscopy, scanning electron microscopy, and fractographic morphology proved that uniform and fine equiaxed grains, evenly distributed Al₂Cu second phase particles were formed during the CMT-PADV process. Furthermore, the X-ray diffraction test ascertained that the CMT-PADV sample had the smallest lattice parameter and the highest solute Cu content. Besides, the tensile strength could reach 283 MPa, the data scattering was the smallest, and the strength scattering of the sample in the horizontal direction was the shortest. In addition, the strength properties were nearly isotropic, with only 5 MPa difference in the vertical and horizontal directions. The above mentioned results indicated that the mechanical properties of 2219 aluminum alloy was improved using the CMT-PADV arc mode.
在本研究中,使用了四种不同的焊接电弧模式,包括传统冷金属过渡(CMT)、CMT脉冲(CMT-P)、CMT高级模式(CMT-ADV)和CMT脉冲高级模式(CMT-PADV)来熔敷2219铝焊丝。深入研究了不同电弧模式对气孔率、孔径分布、微观结构演变和力学性能的影响。气孔率及其尺寸分布的统计分析表明,CMT-PADV工艺的气孔面积百分比和气孔纵横比最小,且几乎没有较大的气孔。光学显微镜、扫描电子显微镜和断口形貌分析结果证明,在CMT-PADV工艺过程中形成了均匀细小的等轴晶粒以及均匀分布的Al₂Cu第二相粒子。此外,X射线衍射测试确定CMT-PADV试样的晶格参数最小,溶质Cu含量最高。此外,拉伸强度可达283MPa,数据离散度最小,试样在水平方向的强度离散度最短。另外,强度性能几乎各向同性,垂直和水平方向的差异仅为5MPa。上述结果表明,采用CMT-PADV电弧模式可改善2219铝合金的力学性能。