回归温度对Al-4.5Zn-1.3Mg合金显微组织及力学性能的影响

Effect of retrogression temperature on microstructure and mechanical properties of Al-4.5Zn-1.3Mg alloys

  • 摘要: 轨道交通车辆用铝合金具有较高的比强度、优异的力学性能等优点,尤其是Al-Zn-Mg合金。本文研究了不同温度参数回归再时效热处理对Al-4.5Zn-1.3Mg合金硬度和力学性能的影响规律,在185 ℃进行回归时效105 min时,Al-4.5Zn-1.3Mg合金可实现优异的力学性能(抗拉强度约为408 MPa,延伸率约为15%)。通过回归热处理,Al-4.5Zn-1.3Mg合金不但可保留足够GP区,避免过度回溶,促进再时效过程中η'相的析出及粗化,而且其晶界析出相断续分布形成适当宽度的无析出带(PFZ),提高了铝合金塑性。因此,合理控制回归温度可以实现Al-4.5Zn-1.3Mg铝合金材料的强塑性。

     

    Abstract: Al-Zn-Mg alloys are widely used in rail vehicles due to their high specific strength and excellent mechanical properties. This paper investigated the effect of different temperature parameters on the hardness and mechanical properties of Al-4.5Zn-1.3Mg alloy after regression reheat treatment. It is found that, when the regression time is 105 min at 185 ℃, Al-4.5Zn-1.3Mg alloy can achieve excellent mechanical properties, such as a tensile strength of approximately 408 MPa and an elongation of about 15%. Through regression heat treatment, Al-4.5Zn-1.3Mg alloy can not only retain sufficient GP zones to avoid excessive dissolution, and promote the precipitation and coarsening of η' phases during re-aging processes, but also the precipitated phases at grain boundaries are discontinuously distributed and form a precipitate-free zone (PFZ) of suitable width, which improves the plasticity of aluminum alloy. Therefore, reasonably controlling the regression temperature can achieve good strength and plasticity of Al-4.5Zn-1.3Mg alloys.

     

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