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Microstructure Evolution and Tensile Mechanical Properties of Thixoformed High Performance Al-Zn-Mg-Cu Alloy

机译:触变性高性能Al-Zn-Mg-Cu合金的组织演变和拉伸力学性能

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摘要

Al-Zn-Mg-Cu alloys are the strongest aluminum alloys which have been widely used for aerospace applications. They are usually machined from the wrought state usually with a high waste percentage. To reduce waste, it is important to thixoform these alloys in near net shape. In this work, the thixoformability of a commercial high performance Al-Zn-Mg-Cu alloy 7075 was studied. A novel multistep reheating regime was developed in recrystallization and partial melting (RAP) route to obtain spheroidal semi-solid microstructures. The as-extruded 7075 alloy was fully recrystallized for a short holding time using the multistep reheating regime. Semi-solid microstructures with fine and spherical solid grains with a grain size of 40-50 mu m embedded in liquid matrix were obtained. The advantage of the multistep reheating regimes over those conventional routes was also discussed. Some wheel-shaped components were thixoformed from the as-received 7075 alloy. The ultimate tensile strength, yield strength and elongation to fracture of the thixoformed component based on multistep reheating regime, are 510 MPa, 446 MPa and 17.5% respectively. These values are superior to those of the products manufactured with the conventional RAP route. As the results indicated, thixoforming could be conducted based on commercial extruded Al-Zn-Mg-Cu alloys, which has important practical significance.
机译:Al-Zn-Mg-Cu合金是最坚固的铝合金,已广泛用于航空航天应用。它们通常是从锻造状态加工而成的,通常浪费率很高。为了减少浪费,重要的是将这些合金触变成接近最终形状。在这项工作中,研究了商业高性能Al-Zn-Mg-Cu合金7075的触变性。在重结晶和部分熔化(RAP)路线中开发了一种新颖的多步骤再加热方案,以获得球状半固态微结构。使用多步再加热机制,可以在很短的保持时间内将刚挤出的7075合金完全重结晶。获得了具有细小且球形的固体晶粒的半固体微观结构,晶粒尺寸为40-50μm,嵌入液体基质中。还讨论了多步加热方案优于那些常规路线的优点。一些轮状零件是由原定的7075合金触变形成的。基于多步加热方案的触变成形部件的极限抗拉强度,屈服强度和断裂伸长率分别为510 MPa,446 MPa和17.5%。这些值优于使用常规RAP路线制造的产品。结果表明,触变成形可以在商业化的挤压铝-锌-镁-铜合金的基础上进行,具有重要的现实意义。

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