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熱處理對超高強鋁合金沉積坯微觀組織的影響

Effects of heat treatment on the microstructure of as-deposited ultrahigh strength aluminium alloys

  • 摘要: 以噴射沉積技術制備的Al-12Zn-2.4Mg-1.1Cu-0.20Zr-0.30Sc-0.30Ni合金沉積坯為研究對象,采用DSC、XRD、SEM和TEM等分析手段對沉積坯在不同溫度下熱處理后的微觀組織演變進行了研究.結果表明:室溫沉積坯基體中有大量η相粒子;在不同熱處理制度下溶質元素會發生回溶或脫溶,從而影響合金組織與性能;在460℃/8h熱處理時,依附于富Cu初始η相粒子形成了亞穩態T((Al,Zn)49Mg32)相,該相在490℃/8h熱處理后消失;490℃/8h熱處理時Al3(Sc,Zr)粒子從沉積坯二次析出,其"釘扎效應"與Cu回溶造成的"晶格畸變"是490℃/8h時沉積坯硬度達到最高值(192HV)的重要影響因素.

     

    Abstract: Billets of Al-12Zn-2.4Mg-1.1Cu-0.20Zr-0.30Sc-0.30Ni alloys were fabricated by spray deposition (the Osprey process),and the effects of heat treatment at different temperatures on the microstructural evolution were investigated by DSC,XRD,SEM,and TEM.The results show that many η-phase particles disperse in the as-deposited alloy base at room temperature.The re-dissolution and precipitation effect of solute elements occurred at different heating temperatures can affect the microstructure and mechanical properties of the alloys.The metastable T phase ((Al,Zn)49Mg32) forms around η-phase particles with a high Cu content after a heat treatment at 460℃ for 8h,and disappears at 490℃ for 8h.Al3(Sc,Zr) dispersoids are precipitated at 490℃/8h,the highest hardness (192 HV) of the as-deposited alloys after treatment at 490℃/8h is attributed to the precipitation hardening of Al3(Sc,Zr) dispersoids and the solution hardening effect caused by Cu.

     

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