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Factors influencing the flow and hardness of materials with ultrafine grain sizes

机译:影响超细晶粒材料的流动性和硬度的因素

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Ultrafine grain sizes were introduced into an Al-3wt%Mg solid solution alloy and a commercial Al-Mg-Li-Zr alloy through intense plastic straining by equal-channel angular (ECA) pressing at room temperature and at 673 K respectively. Tensile testing of pressed samples at room temperature revealed markedly different stress-strain curves for these two alloys, with the Al-3wt%Mg alloy exhibiting a high yield stress with little subsequent strain hardening and the Al-Mg-Li-Zr alloy exhibiting a lower yield stress and extensive strain hardening after yielding. These and other experimental results are interpreted in terms of the nature of the microstructure introduced by the ECA pressing procedure. It is concluded that significant variations may occur in the mechanical properties of nominally similar ultrafine-grained materials depending upon the pressing conditions and the extent of any relaxation which may occur during the straining process. [References: 35]
机译:通过分别在室温和673 K下通过等通道角压(ECA)进行的强烈塑性应变,将超细晶粒尺寸引入Al-3wt%Mg固溶合金和市售Al-Mg-Li-Zr合金中。室温下对压制样品的拉伸测试表明,这两种合金的应力-应变曲线明显不同,其中Al-3wt%Mg合金表现出高屈服应力,随后几乎没有应变硬化,而Al-Mg-Li-Zr合金表现出高屈服强度。较低的屈服应力和屈服后广泛的应变硬化。这些和其他实验结果是根据ECA压制程序引入的微结构的性质来解释的。结论是,取决于压制条件和在拉伸过程中可能出现的任何松弛程度,名义上相似的超细颗粒材料的机械性能可能发生重大变化。 [参考:35]

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