Modelling of the yield strength of a heavily wire drawn Cu-20%Nb composite by use of a modified linear rule of mixtures

U. Hangen, D. Raabe
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引用次数: 52

Abstract

The strength of heavily wire drawn Cu-20 mass% Nbin situ composites considerably exceeds the predictions of the linear rule of mixtures (ROM). An analytical model for the calculation of the yield strength of Cu-20 mass% Nb wires is suggested. The approach is a modified linear rule of mixtures (MROM). It regards the yield strength of the composite as the sum of the volumetric weighted average of the experimentally observed yield strengths of the individual pure phases and a Hall-Petch type contribution arising from the impact of the Cu-Nb phase boundaries. The latter term is described in terms of dislocation pile-ups in the Cu matrix and dislocation movement and multiplication in the Nb filaments. The crystallographic texture and filament geometry of both phases is incorporated. The predictions of the model are in very good accordance with experimental data.

用改进的线性混合规则模拟Cu-20%Nb重拉丝复合材料的屈服强度
重拉丝Cu-20质量% Nbin原位复合材料的强度大大超过了混合线性规律(ROM)的预测。提出了一种计算Cu-20质量% Nb丝屈服强度的解析模型。该方法是一种改进的线性混合规则(MROM)。它将复合材料的屈服强度视为实验观察到的单个纯相屈服强度的体积加权平均值和Cu-Nb相边界影响产生的Hall-Petch型贡献的总和。后一项是用Cu基体中的位错堆积和Nb细丝中的位错移动和倍增来描述的。结合了两相的晶体结构和细丝几何结构。模型的预测结果与实验数据吻合得很好。
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