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The mechanism for the different effects of texture on yield strength and hardness of Mg alloys

机译:织构对镁合金屈服强度和硬度的不同影响机理

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摘要

A study regarding the effect of texture on tensile yield strength and hardness of an extruded Mg-15Gd-0.5Zr rod was performed, with a great emphasis laid on the relevant mechanisms. A 7% pre-tension along the extrusion direction (ED) in the solid solution condition was used to transform the texture from a broad distribution of basal poles with a peak approximately 45° with respect to the ED into a texture with basal poles largely perpendicular to the ED. This texture variation enhances the yield strength of peak aged sample by approximately 103 MPa, while hardly increases the peak hardness. The analysis about the ratio of the critical resolved shear stress (CRSS) to Schmid factor shows that this texture variation results in a larger fraction of grains favoring prismatic slip with a higher activation stress under tension along the ED. In contrast, the complex stress state during hardness test initiates multiple deformation modes, which renders the value of hardness insensitive to the texture variation. This different dependence of deformation modes on texture mainly accounts for the different increments in hardness and tensile yield strength.
机译:进行了关于织构对挤压的Mg-15Gd-0.5Zr棒材的拉伸屈服强度和硬度的影响的研究,重点放在相关机理上。在固溶条件下,沿挤压方向(ED)施加7%的预张力可将纹理从相对于ED约为45°的峰值的基极宽分布转变为基极基本垂直的纹理到急诊室。这种质地变化使峰值时效样品的屈服强度提高了约103 MPa,而几乎没有增加峰值硬度。对临界分辨剪切应力(CRSS)与Schmid因子之比的分析表明,这种织构变化导致沿ED拉伸时,较大比例的晶粒有利于棱柱形滑动,而活化应力较高。相反,硬度测试期间的复杂应力状态会引发多种变形模式,这使硬度值对纹理变化不敏感。变形模式对织构的这种不同依赖性主要说明硬度和拉伸屈服强度的不同增量。

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