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Dynamic Recrystallization Microstructure Grain Size Prediction of 7075 Aluminum Alloy Piston Prepared by Isothermal Extrusion

机译:等温挤压制备7075铝合金活塞的动态再结晶微观结构粒度预测

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According to the structure features of the piston, the method of combining application of finite element simulation and theoretical analysis was explored to determine the extrusion process program and the extrusion process parameters. Theoretical calculation shows that a longitudinal extrusion and a lateral extrusion can form piston. The result comparing simulative prediction with theoretical calculation demonstrates that there is a good fit between the two and the theoretical calculation is right. The result of simulative prediction demonstrates that the grain size of piston after extrusion is about 17.8 um and the refining rate reaches 55%. The grain size on both sides of the piston skirt and piston internal floor place is about 27 um, so the refining effect is less obvious than other parts. However, the grain refinement in the piston pin holes is more obvious, the grain is refined to 13 urn and the refining rate is about 67.5%.The result comparing simulative prediction with the experimental analysis demonstrates that there is a good fit in grain refinement between the two.
机译:根据活塞的结构特征,探讨了采用有限元模拟应用和理论分析的应用方法,以确定挤出处理程序和挤出工艺参数。理论计算表明,纵向挤出和侧向挤出可以形成活塞。与理论计算的模拟预测相比的结果表明,两者之间存在良好良好,理论计算是正确的。模拟预测的结果表明,挤出后活塞的晶粒尺寸约为17.8μm,精炼率达到55%。活塞裙和活塞内壁地板两侧的晶粒尺寸约为27℃,因此精炼效果比其他部件不太明显。然而,活塞销孔中的晶粒细化更为明显,晶粒精制到13瓮,精炼速率约为67.5%。结果比较模拟预测与实验分析的结果表明,在晶粒细化方面有很好的含量他们俩。

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