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An Ultrafine-Grained AZ31 Magnesium Alloy Sheet With Enhanced Superplasticity Prepared by Accumulative Roll Bonding

机译:超细晶粒AZ31镁合金板,具有通过累积轧辊粘合制备的增强超塑性

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An ultrafine-grained AZ31 magnesium alloy sheet was produced using three-run accumulative roll bonding (ARB) performed at a rolling temperature of 350 °C and a reduction of 80% for each pass, based on examination of the bond interface influenced by reduction ranged from 10% to 80%. The microstructural change at the different ARB stages was observed and superplasticity of the final AZ31 alloy sheet was examined at a fixed temperature of 300°C and strain rates varied from 10-4 to 10-1 s-1. It is shown that a good AZ31/AZ31 bond formed as a result of dynamic recrystalization (DRX)accumulation at the original separate interface, which is consistent with a high reduction. Moreover, a significant grain refinement was achieved mainly in the first run of ARB process by expanding the DRX reaction from the interface to the mass and gradual uniformity of grain size in the next by the successive DRX occurred in the AZ31 magnesium alloy.Besides, a superplastic tension with a high elongation of 316% was successfully performed at a strain rate of 10-2 s-1indicating a low temperature and high strain rate superplasticity in the AZ31 alloy sheet processed by ARB. The results indicate that ARB is a promising approach to produce the ultrafine-grained magnesium alloy sheet with enhanced superplasticity.
机译:使用在350℃的轧制温度下进行的三次累积辊键合(ARB)制造超细颗粒AZ31镁合金板,并且每个通过的每次通过的减少80%,基于对受减少影响的粘合界面的检查从10%到80%。观察到不同ARB阶段的微观结构变化,并在300℃的固定温度下检查最终AZ31合金板的超塑性,并且应变率从10-4至10-1 S-1变化。结果表明,在原始单独的界面处的动态再串化(DRX)积聚的结果形成的良好AZ31 / AZ31键,这与高减少一致。此外,主要在AZ31镁合金中接下来的晶粒尺寸的裂缝和晶粒尺寸的质量和逐渐均匀性的第一次ARB过程中实现了显着的晶粒细化。基于AZ31镁合金中的粒度。以高温速率为10-2S-1-1的应变速率成功地进行高伸长率为316%的超塑性张力,以AZ31合金板中的AZ31合金板中的低温和高应变速率超增塑性成功进行。结果表明,arb是一种有希望的方法,用于生产具有增强的超塑性的超细粒镁合金板。

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