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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Texture dedicated grain size dependence of normal anisotropy in low-carbon steel strips
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Texture dedicated grain size dependence of normal anisotropy in low-carbon steel strips

机译:低碳钢带中各向异性的织构专用晶粒尺寸依赖性

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摘要

Ferrite microstructures and plastic anisotropy of low-carbon steel strips with and without evident differences in crystallographic textures were investigated. The steel strips with weak texture variation show a weaker linear dependence of normal anisotropy on the logarithm of the mean grain size of γ-fiber oriented ferrite than those with strong texture variation. The far deviation between the measured normal anisotropy and the corresponding calculated value only from the crystallographic texture by using the relaxed constraint model also reveals that the grain size dependence should be taken into account, especially for the steel strips with weak textures. Based on the different deformation behaviors between grain internal region and grain boundary region, the concept "effective texture intensity" is proposed in this paper to explain the texture-dedicated grain size dependence of normal anisotropy.
机译:研究了低碳钢带材的铁素体组织和塑性各向异性。具有较弱纹理变化的钢条对γ纤维取向铁素体的平均晶粒直径对数的正态各向异性对线性的依赖性较弱。通过使用松弛约束模型,仅从晶体织构测得的法向各向异性与相应的计算值之间的远偏差还表明,应考虑晶粒尺寸依赖性,特别是对于质地较弱的钢带。基于晶粒内部区域和晶界区域之间不同的变形行为,本文提出了“有效纹理强度”的概念,以解释法向各向异性的纹理专用晶粒尺寸依赖性。

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