首页> 外文会议>Second International Conference on Light Materials for Transportation Systems (LiMAT-2001) Vol.I: Session III May 6-10, 2001 Pusan, Korea >SUPERPLASTIC FORMABILITY OF FINE-GRAINED AZ61 AND AZ31 MAGNESIUM ALLOY SHEETS AND DEFORMATION MECHANISM MAPS FOR MAGNESIUM ALLOYS
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SUPERPLASTIC FORMABILITY OF FINE-GRAINED AZ61 AND AZ31 MAGNESIUM ALLOY SHEETS AND DEFORMATION MECHANISM MAPS FOR MAGNESIUM ALLOYS

机译:细粒AZ61和AZ31镁合金板的超塑性成形性及镁合金的变形机理图

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Rolling processes of fabricating thin AZ61 and AZ31 alloy sheets adequate for superplastic forming have been developed. Superplastic behavior of the sheets was evaluated in the temperature range of 573K-693K and compared with the initial materials with relatively coarse grains. Existing deformation mechanism maps for f.c.c. and b.c.c. metals were reviewed and found to be deficient in predicting the deformation behavior of Mg alloys with h.c.p crystal structure. Using the experimental data for a number of Mg alloys, which are associated with various deformation mechanisms competing at elevated temperatures, deformation mechanism maps for Mg alloys could be constructed. Excellent prediction capability of the maps was verified at temperatures of 573K-673K. Superplastic formability of the rolled AZ61 alloy was demonstrated by forming a sheet into a hemi-spherical dome using N_2 gas pressure and into an indented plate using mechanical pressure by hot press.
机译:已经开发出制造适于超塑性成形的薄AZ61和AZ31合金板的轧制工艺。在573K-693K的温度范围内评估了板材的超塑性行为,并将其与具有相对粗大晶粒的初始材料进行了比较。 f.c.c.的现有变形机制图和不列颠哥伦比亚省对金属进行了审查,发现不足以预测具有h.c.p晶体结构的Mg合金的变形行为。使用与多种在高温下竞争的变形机制相关的Mg合金的实验数据,可以构建Mg合金的变形机制图。在573K-673K的温度下验证了地图的出色预测能力。轧制AZ61合金的超塑性可成形性是通过使用N_2气压将片材制成半球形圆顶,并利用机械压力通过热压机将其制成压痕板来证明的。

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