首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Improvement of edge crack damage of magnesium alloy by optimizing the edge curve during cross variable thickness rolling
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Improvement of edge crack damage of magnesium alloy by optimizing the edge curve during cross variable thickness rolling

机译:通过优化交叉可变厚度轧制优化边缘曲线的边缘裂纹损伤边缘裂纹损伤

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摘要

According to the MAS rolling and cross rolling theory, the hot rolling experiments were carried out on the AZ31 magnesium alloy specimens at the initial rolling temperature of 350 degrees C, and the grain distribution and edge damage of the strip after rolling by a controlled rolling reduction in different regions were analyzed. Meanwhile, the edge curves were designed to improve the edge crack and grain refinement of magnesium alloy during cross variable thickness rolling. The results indicated that the variable thickness rolling with the edge curve could effectively reduce the edge crack of magnesium alloy. The results also indicated that different edge curves could produce varying degrees of grain refinement at the strip edge and realize the ideal grain refinement in different regions during the rolling process; meanwhile, the optimization of the edge curve during cross variable thickness rolling could provide a theoretical basis for improving the magnesium alloy edge crack.
机译:根据MAS轧制和交叉轧制理论,对AZ31镁合金试件在350℃的初始轧制温度下进行了热轧试验,分析了不同区域控制轧制压下后带材的晶粒分布和边缘损伤。同时,为了改善镁合金在横向变厚度轧制过程中的边缘裂纹和晶粒细化,设计了边缘曲线。结果表明,采用边缘曲线变厚度轧制可以有效地减少镁合金的边缘裂纹。结果还表明,不同的边缘曲线可以在带钢边缘产生不同程度的晶粒细化,实现轧制过程中不同区域的理想晶粒细化;同时,对横向变厚度轧制过程中的边缘曲线进行优化,可以为改善镁合金边缘裂纹提供理论依据。

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