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Effect of rolling speed on deformability and microstructure in rolling of AZ31B magnesium alloy

机译:轧制轧制对AZ31B镁合金轧制变形性和微观结构的影响

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Magnesium alloys are expected to be used widely as structural materials because of their lowest density (1.8g/cm~3) among all practical alloys and superior specific strength. However, magnesium alloys exhibit poor ductility due to its hcp structure and inactiveness of non-basal slip systems below 523K. Accordingly, magnesium alloy sheets had to be rolled at elevated temperature to avoid edge cracking and fracture during rolling. The present authors succeeded in single pass large draught rolling of AZ31 magnesium alloy sheets below 473K without heating rolls by rolling at the speed higher than 1000m/min. The rolled and quenched sheets had fine recrystallized microstructure and exhibited excellent mechanical properties. It was found that the high speed rolling is a promising method not only for increasing productivity but also for controlling microstructures and improving mechanical properties. If the above mentioned advantages of high speed rolling can be drawn from the rolling at the speed lower than 1000m/min, it is possible to mass-produce magnesium alloy sheets having superior mechanical properties at lower cost. In this study, we tried to determine the lower limiting rolling speed at which we can obtain advantages of high speed rolling. We revealed that the thickness could be reduced about 60% by single pass operation even at 250m/min without heating rolls. The rolled and quenched sheets had equiaxed fine recrystallized microstructure. For example, the mean grain size of 2.1μm was obtained in the AZ31B sheet rolled at 250m/min at room temperature to the reduction of 60%.
机译:预计镁合金将被广泛用于结构材料,因为它们在所有实用合金中的最低密度(1.8g / cm〜3)和卓越的比强度。然而,由于其HCP结构,镁合金具有较差的延展性,并且在523K以下的非基底滑动系统的不动发光。因此,必须在升高的温度下轧制镁合金板,以避免在轧制过程中的边缘开裂和断裂。本作者成功地成功地通过了473K低于473K的AZ31镁合金板的大型轧制,无需加热辊,轧制高于1000m / min。轧制和淬火片具有精细的重结晶微观结构,并且表现出优异的机械性能。发现高速轧制是一种有希望的方法,不仅用于增加生产率,而且还用于控制微观结构和改善机械性能。如果可以从低于1000m / min的速度从轧制中提取的高速轧制的上述优点,则可以以较低的成本批量生产具有优异的机械性能的镁合金板。在这项研究中,我们尝试确定我们可以获得高速轧制的优点的较低限制滚动速度。我们透露,即使在250m / min的情况下,厚度也可以通过单通操作减少约60%而无需加热辊。轧制和淬火片具有等式的精细重结晶微观结构。例如,在AZ31B片材中获得平均晶粒尺寸为2.1μm,在室温下在250m / min轧制到减少60%。

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