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Influence from Extrusion Parameters on High Strain Rate and Low Temperature Superplasticity of AZ Series Mg-Based Alloys

机译:挤出参数对高应变率和低温超塑性的挤出参数及αz系列Mg基合金的影响

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The most simple and feasible one-step hot-extrusion method with high extrusion ratio from 40 to 166 was applied to process fine-grained AZ series Mg alloys into bar, sheet and tube products. The stable grain size d refined by dynamic recrystallization (DRX) during hot-extrusion process can be described quantitatively by the Zener-Holloman parameter (Z-parameter). For AZ31, the relationship between d and Z is represented by lnd=27-0.951nZ. The yield stress (YS) and ultimate tensile stress (UTS) at room temperature and the superplastic elongation at elevated temperature in AZ series alloys basically show an increasing trend with decreasing grain size. For example, the superior HSRSP up to ~1000% at 10~(-2) s~(-1), as well as LTSP up to ~600% at 200-300°C, can be achieved in the AZ31 bars (~2 μm) or AZ91 sheets (~2.5μm). Fine-grained microstructures and high fractions (~88%) of high angle boundary (HAB, >15°) are mainly responsible for the superior HSRSP or LTSP.
机译:采用40至166的高挤出率的最简单且可行的一步热挤出方法,将细粒AZ系列Mg合金加工成杆,板材和管材。通过ZENER-HOLLOMAN参数(Z-参数)可以定量地描述通过热挤出过程中的动态再结晶(DRX)改进的稳定晶粒尺寸D。对于AZ31,D和Z之间的关系由LND = 27-0.951Nz表示。室温下的屈服应力(Ys)和极限拉伸应力(UTS)和AZ系列合金升高的温度下的超塑性伸长基本上显示出粒径下降的趋势。例如,10〜(-2)S〜(-1)的高级HSRSP高达约1000%,也可以在AZ31条中实现高达约600%的LTSP(〜 2μm)或AZ91片(〜2.5μm)。高角度边界(HAB,> 15°)的细粒微观结构和高级分(〜88%)主要负责高级HSRSP或LTSP。

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