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Grain Size-Related Strengthening and Softening of a Precompressed and Heat-Treated Mg–Zn–Ca Alloy

机译:预压缩和热处理的Mg-Zn-Ca合金的晶粒尺寸相关的强化和软化

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摘要

The impact of precompression, thermal treatment and its combination on the deformation behaviour of an extruded Mg–Zn–Ca (ZX10) alloy was studied with respect to a varied average grain size. The Hall–Petch plot was used to highlight the impact in a wide grain size interval. The initial texture of the wrought alloy was characterized by X-ray diffraction. Moreover, the evolution of microstructure and texture was provided by the electron backscatter diffraction (EBSD) technique. The obtained results indicate the strong contribution of deformation-thermal treatment on the resulting deformation behaviour. Particularly, after precompression and heat treatment, higher strengthening effect was observed in the reversed tensile loaded compared to compressed samples without any change in the Hall–Petch slope throughout the grain size interval. Unlike this strengthening effect, a reversed tension–compression yield asymmetry with higher strength values in compression has been obtained.
机译:研究了预压缩,热处理及其组合对挤出的Mg-Zn-Ca(ZX10)合金变形行为的影响,涉及平均晶粒尺寸的变化。 Hall-Petch图用于突出显示宽粒度范围内的影响。通过X射线衍射表征了变形合金的初始织构。此外,通过电子背散射衍射(EBSD)技术提供了微观结构和织构的演变。所得结果表明,变形热处理对所得的变形行为有很大的贡献。特别是,在预压缩和热处理后,与压缩样品相比,反向拉伸载荷下观察到了更高的强化效果,而在整个晶粒尺寸区间中,霍尔-普奇斜率没有任何变化。与这种加强效果不同,已获得具有较高强度压缩强度的反向拉伸-压缩屈服不对称性。

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