首页> 外文会议>TMS Annual Meeting and Exhibition >EFFECT OF DYNAMIC RECRYSTALLIZATION ON MICROSTRUCTURE EVOLUTION AND TEXTURE WEAKENING DURING ANNEALING OF HIGH SPEED ROLLED AZ31 MAGNESIUM ALLOY SHEETS
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EFFECT OF DYNAMIC RECRYSTALLIZATION ON MICROSTRUCTURE EVOLUTION AND TEXTURE WEAKENING DURING ANNEALING OF HIGH SPEED ROLLED AZ31 MAGNESIUM ALLOY SHEETS

机译:动态重结晶对高速轧AZ31镁合金板材退火期间微观结构演化和纹理弱化的影响

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Magnesium AZ31 (Mg-3 wt. % Al-1 wt. % Zn) alloy sheets were rolled at a high speed of 1000 m/min at 100°C to reductions of 30% and 49%. Annealing was then conducted on the as-rolled specimens at temperatures of 200°C and 350°C for different times. The microstructure was characterized by optical microscopy and the macrotexture was analyzed by X-ray diffraction. The as-rolled microstructure of the specimen subjected to the reduction of 30% was heavily twinned and shear banded, while a partially dynamically recrystallized and twinned microstructure was observed at the reduction of 49%. Effect of the initial microstructure on static recrystallization behavior and texture evolution during annealing was studied at different temperatures. Texture weakening was found during annealing at both reductions. However, the weaker texture can be achieved in the specimen subjected to the reduction of 30% than that of 49%.
机译:镁AZ31(Mg-3重量%Al-1wt。%Zn)合金片在100℃下以100℃的高速轧制,降低30%和49%。然后在200℃和350℃的温度下在不同时间的温度下在卷起的试样上进行退火。通过光学显微镜的特征在于微观结构,通过X射线衍射分析Macrotexture。经受减少30%的试样的卷积微观结构严重孪生和剪切带状,而在减少49%的情况下观察到部分动态再结晶和孪晶微观结构。在不同温度下研究了初始微观结构对退火期间静态再结晶行为和纹理演化的影响。在退火过程中发现纹理弱化。然而,在经过减少30%的试样上可以实现较弱的质地比49%的试样。

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