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NUMERICAL PREDICTION OF GRAIN SHAPE EVOLUTION DURING EXTRUSION OF AA6082 ALLOY

机译:AA6082合金挤压过程中晶粒形状演变的数值预测

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Extruded profiles applications require a strict control of the mechanical proprieties of the extrudates, in particular when undergoing severe loading conditions like in the transportation sector. Profile mechanical properties directly depend from its microstructure and texture, which are the result of multiple mechanisms based on precipitation mechanism or on grain shape evolution (grain refinement, recrystallizations, recovery and grain growth), In this direction the opportunity to predict the final profile microstructure under specific process parameters directly in the die design stage is of great relevance. The study involved experimental activity on grain size measurements during interrupted direct extrusion of an AA6082 round profile. The grain size measurements were coupled with the results of the simulation in order to regress analytical models based on effective strain, strain rate and temperature. Finally, the developed model was implemented in the numerical code through user subroutine so as to be used as microstructure prediction tool.
机译:挤压型材的应用要求严格控制挤压型材的机械性能,尤其是在运输等严苛负载条件下。型材的机械性能直接取决于其微观结构和织构,这是基于沉淀机制或晶粒形状演变(晶粒细化,再结晶,恢复和晶粒长大)的多种机理的结果,在这个方向上,可以预测最终轮廓的显微组织在特定工艺参数下直接在模具设计阶段具有重要的意义。这项研究涉及在AA6082圆形轮廓的中断直接挤压过程中进行晶粒尺寸测量的实验活动。晶粒尺寸的测量结果与模拟结果相结合,以便基于有效应变,应变速率和温度回归分析模型。最后,通过用户子程序在数字代码中实现了所开发的模型,以作为微结构预测工具。

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