首页> 外文期刊>Materials Science and Engineering >Toward unraveling the effects of intermetallic compounds on the microstructure and mechanical properties of Mg-Gd-Al-Zn magnesium alloys in the as-cast, homogenized, and extruded conditions
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Toward unraveling the effects of intermetallic compounds on the microstructure and mechanical properties of Mg-Gd-Al-Zn magnesium alloys in the as-cast, homogenized, and extruded conditions

机译:揭示在铸造,均质和挤压条件下金属间化合物对Mg-Gd-Al-Zn镁合金的组织和力学性能的影响

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摘要

The effects of gadolinium and aluminum intermetallics on the microstructure and mechanical properties of Mg-Gd-Al-Zn alloys in the as-cast, homogenized and extruded conditions were studied. It was revealed that the partial substitution of Gd with Al in the GZ61 alloy enhances the as-cast mechanical properties due to the evolution of intermetallic compound types, their morphology, and grain refinement of the matrix. In this regard, the best alloy was Mg-3Gd-3Al-1Zn due to the magnificent grain refinement from 1250 to 36 μm as a result of the presence of the Al_2Gd compound and there was respectively ~60% and 250% increase in tensile strength and elongation to failure when compared with the as-cast GZ61 alloy. Moreover, increasing Gd toward higher amount of (Mg, Al)_3Gd phase with branched morphology impaired the mechanical properties. Subsequently, the homogenization heat treatment and extrusion process showed significant effects on the shape and size of intermetallics and grain size of the matrix. Regarding the extrusion process, the evolution of the (Mg, Al)_3Gd compound in the Mg-4.8Gd-1.2Al-1Zn alloy combined with the recrystallization of the matrix resulted in the change in grain size from 670 μm for the as-cast alloy to 2.4 μm, which was found to be the key factor to enhance the properties and there was respectively ~34% and 135% increase in tensile strength and elongation to failure when compared with the as-cast alloy. However, it was also found that the microstructural refinement of hot extrusion process can effectively conceal the influences of intermetallic compound types and the chemical composition of the alloy on the tensile properties.
机译:研究了of和铝金属互化物对铸态,均质和挤压条件下Mg-Gd-Al-Zn合金显微组织和力学性能的影响。结果表明,由于金属间化合物类型的演变,它们的形态和基体晶粒的细化,GZ61合金中的Al用Gd取代Gd增强了铸态的机械性能。在这方面,最好的合金是Mg-3Gd-3Al-1Zn,这归因于存在Al_2Gd化合物,晶粒从1250到36μm的晶粒细化,并且抗拉强度分别提高了约60%和250%。与铸态GZ61合金相比,断裂伸长率更高。而且,向具有分支形态的更高的(Mg,Al)_3Gd相的量增加Gd损害了机械性能。随后,均质化热处理和挤压工艺对金属间化合物的形状和尺寸以及基体的晶粒尺寸产生了显着影响。关于挤压工艺,Mg-4.8Gd-1.2Al-1Zn合金中(Mg,Al)_3Gd化合物的演化以及基体的重结晶导致铸态的晶粒尺寸从670μm改变合金达到2.4μm,这是提高性能的关键因素,与铸态合金相比,抗拉强度和断裂伸长率分别增加了〜34%和135%。然而,还发现热挤压过程的微观结构细化可以有效地掩盖金属间化合物类型和合金化学成分对拉伸性能的影响。

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