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Interfacial microstructures and mechanical properties of Mg/Al bimetal produced by a novel liquid-liquid compound casting process

机译:一种新型液 - 液复合铸造工艺生产的Mg / Al双金属的界面微观结构和机械性能

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摘要

In the present work, a novel method was proposed to produce Mg/Al bimetal using the lost foam casting (LFC) liquid-liquid compound process with a Zn interlayer, and the interfacial microstructures and mechanical properties of the Mg/Al bimetal were investigated for the first time. Obtained results reveal that a compact metallurgical interface was formed between the AZ91D magnesium alloy substrate and the A356 aluminum alloy substrate. The metallurgical interface included two reaction layers. The reaction layer adjacent to the AZ91D substrate was composed of alpha-Mg, Al5Mg11Zn4 and MgZn phases, and the reaction layer adjacent to the A356 substrate consisted of alpha-Al, Mg-32(Al, Zn)(49) and Mg2Si phases. The addition of the Zn interlayer not only prevented different liquid metals from directly mixing, but also restrained the formation of Mg-Al intermetallics. The microhardnesses of the reaction layers were much higher than those of the substrates, and the reaction layer close to the A356 substrate had the highest microhardness. The shear strength of the Mg/Al bimetal was about 10.91 MPa, and the fracture surface of the Mg/Al bimetal exhibited a brittle fracture nature.
机译:在本作工作中,提出了一种新方法,用于使用损失的泡沫铸件(LFC)液 - 液复合方法用Zn中间层生产Mg / Al双金属,研究了Mg / Al双金属的界面微观结构和机械性能第一次。得到的结果表明,在AZ91D镁合金基板和A356铝合金基板之间形成紧凑的冶金界面。冶金界面包括两个反应层。与AZ91D衬底相邻的反应层由α-Mg,Al5mg11zN4和MgZN相组成,与A356底物相邻的反应层由α-Al,Mg-32(Al,Zn)(49)和Mg2Si相组成。添加Zn中间层不仅防止了不同的液态金属直接混合,而且抑制了Mg-Al金属间金属间的形成。反应层的显微硬度远高于底物的微硬度,并且靠近A356底物的反应层具有最高的微硬度。 Mg / Al双金属的剪切强度为约10.91MPa,Mg / Al双金属的裂缝表面表现出脆性骨折性质。

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