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  • 先進高強韌Al-Zn-Mg-Cu合金凝固和均勻化組織及相構成

    Microstructure and phase components of as-cast and homogenized advanced Al-Zn-Mg-Cu alloys with high strength and toughness

    • 摘要: 采用熱力學計算與實驗相結合的方法,研究了兩種高強韌Al-Zn-Mg-Cu合金鑄態及均勻化態的顯微組織和相構成.鑄態A合金主要由Mg(Zn,Al,Cu)2相和少量Al2Cu相組成,而鑄態B合金僅含Mg(Zn,Al,Cu)2相.熱力學計算顯示,A和B兩種合金的實際凝固過程介于Lever Rule和Scheil Model兩種模擬結果之間,由于合金成分不同而導致的鑄態A和B合金中各相含量差異與Scheil Model模擬所得到的各相摩爾分數變化規律基本一致.經常規工業均勻化處理(460℃保溫24 h),鑄態A和B合金中存在的Mg(Zn,Al,Cu)2或Al2Cu相均能充分回溶,并得到單相α(Al)基體,這與熱力學計算所得到的AlZn-Mg-Cu四元系統在7.5%Zn條件下460℃等溫相圖相符合.

       

      Abstract: The microstructure and phase components of as-cast and homogenized Al-Zn-Mg-Cu alloys with high strength and toughness were studied by combining thermodynamic calculation with experiments. It is found the secondary phases presented in as-cast alloy A are Mg(Zn,Al,Cu)2 and a small amount of Al2Cu; however, only Mg(Zn,Al,Cu)2 is found in as-cast alloy B. Thermodynamic calculation results show that the real solidification paths of alloys A and B fall between simulations by the Lever rule and the Scheil model, and the differences in content of phases in the two as-cast alloys are consistent with the regularity of the calculated mole fraction of phases formed after solidification in the Scheil model. Mg(Zn,Al,Cu)2 or Al2Cu phase in as-cast alloys A and B can be dissolved completely after conventional homogenization treatment (holding at 460℃ for 24 h), single α(Al) phase can be obtained, and this is consistent with the calculated isothermal section of the Al-Zn-Mg-Cu phase diagram with 7.5% Zn at 460℃.

       

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