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Comparison of Hot Deformation Behavior Characteristics Between As-Cast and Extruded Al-Zn-Mg-Cu (7075) Aluminum Alloys with a Similar Grain Size

机译:相似尺寸的铸态和挤压型Al-Zn-Mg-Cu(7075)铝合金的热变形行为特性比较

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摘要

The hot compressive behavior and processing maps of as-cast and extruded 7075 aluminum alloys with a similar grain size (320–350 μm) were studied and compared, which allows us to directly observe the effect of segregated phases in the as-cast microstructure on the deformation behavior and hot workability of 7075 alloys. In the as-cast alloy, the compound phases segregated along the interdendritic interfaces within the interiors of original grains provided the additional sites for continuous dynamic recrystallization via the particle stimulation nucleation mechanism. As a result, the as-cast alloy exhibited higher fractions of recrystallized grains and smaller grain sizes than the extruded alloy after compression. The stress exponent values of the as-cast alloy were smaller than those of the extruded alloy. In the processing maps, the domain associated with high power dissipation efficiencies (≥35%) occurred in a wider temperature range in the as-cast alloy compared to the extruded alloy. The segregated phases that remained undissolved in the as-cast alloy after compressive deformation could be effectively eliminated during the solid solution treatment (753 K for 2 h) for T6 aging applied after hot compression. The current results suggest the possibility and advantage of omitting the extrusion step when preparing 7xxx aluminum forging or extrusion feedstocks for hot working. The proposed method can be applied to other precipitation hardenable aluminum alloys.
机译:研究并比较了具有相似晶粒尺寸(320-350μm)的铸态和挤压态7075铝合金的热压缩行为和加工图,这使我们可以直接观察铸态组织中的偏析相对合金的影响。 7075合金的变形行为和热加工性能。在铸态合金中,沿着原始晶粒内部的枝晶间界面偏析的化合物相通过粒子刺激成核机制为连续动态重结晶提供了额外的位置。结果,与压缩后的挤压合金相比,铸态合金表现出更高比例的重结晶晶粒和更小的晶粒尺寸。铸态合金的应力指数值小于挤压合金的应力指数值。在加工图中,与挤压合金相比,铸态合金在更高的温度范围内出现了与高功率消耗效率(≥35%)相关的区域。压缩变形后仍未溶解在铸态合金中的偏析相可以在固溶处理(753 K,2小时)中进行热压缩后进行的T6时效处理,从而有效地消除。目前的结果表明,在制备用于热加工的7xxx铝锻件或挤压原料时,省去挤压步骤的可能性和优势。所提出的方法可以应用于其他沉淀硬化铝合金。

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