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Flame-resistant Ca-containing AZ31 magnesium alloy sheets with good mechanical properties fabricated by a combination of strip casting and high-ratio differential speed rolling methods

机译:薄带连铸与高比差速轧制相结合制备的具有良好机械性能的阻燃含钙AZ31镁合金薄板

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摘要

This study reported that a combination of strip casting and high-ratio differential speed rolling (HRDSR) can produce flame-resistant Mg alloy sheets (0.7 wt%Ca-AZ31: 0.7Ca-AZ31) with good room-temperature mechanical properties and high-temperature formability. HRDSR effectively refined the coarse microstructure of the strip-casting processed 0.7Ca-AZ31 alloy. As the result, the (true) grain size was reduced to as small as 2.7 mu m and the (Mg, Al)(2)Ca phase was broken up to fine particles with an average sizes of 0.5 mu m. Due to the advantage of having such a highly refined microstructure, the HRDSR-processed 0.7Ca-AZ31 alloy sheet exhibited a high yield stress over 300 MPa and good superplasticity at elevated temperatures. The deformation mechanism of the fine-grained 0.7Ca-AZ31 alloy in the superplastic regime was identified to be grainboundary-diffusion or lattice-diffusion controlled grain boundary sliding.
机译:这项研究报告指出,通过带钢铸造和高比率差速轧制(HRDSR)的组合,可以生产出具有良好的室温机械性能和较高的耐候性的镁合金薄板(0.7 wt%Ca-AZ31:0.7Ca-AZ31)温度成形性。 HRDSR有效地改善了经铸造的0.7Ca-AZ31合金的粗组织。结果,(真实)晶粒尺寸减小到小至2.7μm,并且(Mg,Al)(2)Ca相被分解成平均尺寸为0.5μm的细颗粒。由于具有这种高度精细的显微组织的优点,HRDSR处理的0.7Ca-AZ31合金薄板在300 MPa的压力下表现出较高的屈服应力,并在高温下表现出良好的超塑性。确定了0.7Ca-AZ31细晶粒合金在超塑性状态下的变形机制是晶界扩散或晶格扩散控制的晶界滑动。

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