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AZ91 Mg-Al合金中β-(Mg_(17)Al_(12))析出相的形态及其晶体学特征 被引量:60
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作者 肖晓玲 罗承萍 +1 位作者 聂建峰 B.C.Muddle 《金属学报》 SCIE EI CAS CSCD 北大核心 2001年第1期1-7,共7页
应用透射电镜研究了时效AZ91 Mg-Al合金连续析出相的显微组织形态及晶体学特征。发现四种不同形态和晶体学特征的β-(Mg17Al12)析出相,其中占绝大多数的是板条状析出相沿基面(0001)α析出的板条析出相与基... 应用透射电镜研究了时效AZ91 Mg-Al合金连续析出相的显微组织形态及晶体学特征。发现四种不同形态和晶体学特征的β-(Mg17Al12)析出相,其中占绝大多数的是板条状析出相沿基面(0001)α析出的板条析出相与基体保持Burgers位向关系,生长方向为[7, 2,9,0];其晶体学特征与由不变线应变原理预测的完全一致。第二类析出相是以其轴线与基面垂直的六棱柱体,六个棱柱面都是{1100}α//{110}β,与基体保持对称性好的Crawley位向关系。另有少量短棒状析出相与基体保持Porter位向关系。实验中还观察到一种未见报道过的位向关系。讨论了形成不同形态和晶体学特征的机制。 展开更多
关键词 AZ91MG-AL合金 β-(MG17AL12)析出相 透射电镜分析 晶体学特征 镁合金
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A Mixed-control Mechanism Model of Proeutectoid Ferrite Growth under Non-equilibrium Interface Condition in Fe-C Alloys 被引量:2
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作者 RuihengWU XueyuRUAN +1 位作者 HongbingZHANG T.Y.Hsu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第5期561-566,共6页
By combining the α/γ interface migration and the carbon diffusion at the interface in Fe-C alloys, a mathematical model is constructed to describe the mixed-control mechanism for proeutectoid ferrite formation from ... By combining the α/γ interface migration and the carbon diffusion at the interface in Fe-C alloys, a mathematical model is constructed to describe the mixed-control mechanism for proeutectoid ferrite formation from austenite. In this model, the α/γ interface is treated as non-equilibrium interface, i.e., the carbon concentration of austenite at γ/α interface is obtained through theoretical calculation, instead of that assumed as the local equilibrium concentration. For isothermal precipitation of ferrite in Fe-C alloys, the calculated results show that the rate of interface migration decreases monotonically during the whole process, while the rate of carbon diffusion from γ/α interface into austenite increases to a peak value and then decreases. The process of ferrite growth may be considered as composed of three stages: the period of rapid growth, slow growth and finishing stage. The results also show that the carbon concentration of austenite at γ/α interface could not reach the thermodynamic equilibrium value even at the last stage of ferrite growth. 展开更多
关键词 Proeutectoid ferrite precipitation Non-equilibrium interface Phase transformation kinetics Mixed-control mechanism
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