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Effect of Mg Content on Microstructure and Properties of Al–Mg Alloy Produced by the Wire Arc Additive Manufacturing Method

机译:镁含量对电弧添加法生产Al-Mg合金组织和性能的影响

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摘要

In this study, an Al–Mg alloy was fabricated by wire arc additive manufacture (WAAM), and the effect of Mg content on the microstructure and properties of Al–Mg alloy deposits was investigated. The effects on the deposition surface oxidation, geometry, burn out rate of Mg, pores, microstructure, mechanical properties and fracture mechanisms were investigated. The results show that, when the Mg content increased, the surface oxidation degree increased; a “wave”-shaped deposition layer occurred when the Mg content reached 8%. When the Mg content was more than 6%, the burning loss rate of the Mg element increased significantly. With the increase of Mg content, the number of pores first decreased and then increased, and the size first decreased and then increased. When the Mg content reached 7% or above, obvious crystallization hot cracks appeared in the deposit bodies. When the Mg content increased, the precipitated phase (FeMn)Al and β(Mg Al ) increased, and the grain size increased. When the Mg content was 6%, the comprehensive mechanical properties were best. The horizontal tensile strength, yield strength and elongation were 310 MPa, 225 MPa and 17%, respectively. The vertical tensile strength, yield strength and elongation were 300 MPa, 215 MPa and 15%, respectively. The fracture morphology was a ductile fracture.
机译:在这项研究中,通过电弧增材制造(WAAM)制造了Al-Mg合金,并研究了Mg含量对Al-Mg合金镀层的组织和性能的影响。研究了对沉积物表面氧化,Mg的几何形状,燃尽率,孔,微结构,力学性能和断裂机理的影响。结果表明,当Mg含量增加时,表面氧化度增加;当Mg含量增加时,表面氧化度增加。当Mg含量达到8%时,出现“波浪”形沉积层。当Mg含量大于6%时,Mg元素的燃烧损失率显着增加。随着Mg含量的增加,孔的数量先减少然后增加,而尺寸先减少然后增加。当Mg含量达到7%以上时,在沉积物中出现明显的结晶热裂纹。当Mg含量增加时,析出相(FeMn)Al和β(Mg Al)增加,并且晶粒尺寸增加。当Mg含量为6%时,综合机械性能最佳。水平拉伸强度,屈服强度和伸长率分别为310MPa,225MPa和17%。垂直拉伸强度,屈服强度和伸长率分别为300MPa,215MPa和15%。断裂形态为延性断裂。

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