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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >{10-12} extension twin variant selection under a high train rate in AZ31 magnesium alloy during the plane strain compression
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{10-12} extension twin variant selection under a high train rate in AZ31 magnesium alloy during the plane strain compression

机译:{10-12}在平面应变压缩期间AZ31镁合金中的高列车速率下的延长双型选择

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摘要

Twin variant selection significantly dictates the local deformation and stress field, strongly influencing the texture evolution and determining the mechanical performances of Mg alloys. In the current study, samples of magnesium alloy AZ31 were compressed in plane strain compression (PSC) at 400 degrees C with a strain rate of 10s(-1). At a high strain rate, substantial twins were detected near the crack boundary. The orientations of selected twins and their host matrix grains were determined by electron backscattered diffraction (EBSD) techniques, and the corresponding Schmid factors (SFs) were calculated. The SF results indicate that some of the selected twins possess pretty low SFs, even negative SFs, which disobeys the SF criterion. The geometrical compatibility factors (m') were applied to study the connected twins, and the accommodation strains were used to study the isolated twins. The connected twins are related to high m'. The selected isolated twins required the onset of 'easy' deformation mode (i.e. basal glide). Finally, the influence of twin variant selection on microstructural and texture evolution is discussed.
机译:双变体选择明显决定了局部变形和应力场,强烈影响纹理演化和确定Mg合金的机械性能。在目前的研究中,镁合金AZ31的样品在400℃下在平面应变压缩(PSC)中被压缩,其应变率为10s(-1)。在高应变率下,在裂缝边界附近检测到大量的双胞胎。通过电子背散射衍射(EBSD)技术确定所选双胞胎的取向及其宿主基质晶体,并计算相应的施胶因子(SFS)。 SF结果表明,一些选定的双胞胎具有相当低的SFS,甚至是负SFS,其违背了SF标准。应用了几何兼容性因子(M')来研究连接的双胞胎,并且使用容纳菌株研究分离的双胞胎。连接的双胞胎与高m'有关。所选分离的双胞胎需要“易”变形模式(即基础滑动)开始。最后,讨论了双变型选择对微观结构和纹理演化的影响。

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