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首页> 外文期刊>Journal of Materials Engineering and Performance >Dislocation Density-Based Model for Flow Behavior of a Near- Titanium Alloy Considering Effects of Initial Lamellar Thickness
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Dislocation Density-Based Model for Flow Behavior of a Near- Titanium Alloy Considering Effects of Initial Lamellar Thickness

机译:基于位错的基于近钛合金的流动性能考虑初始层层厚度的影响

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摘要

A dislocation density-based constitutive model that considered the effects of initial lamellar thickness was proposed to predict the flow behavior of a near- high-temperature Ti-5.4Al-3.7Sn-3.3Zr-0.5Mo-0.4Si alloy. The evolution equations of dislocation density were improved by introducing the influence of the dynamic globularization of lamellar microstructure with different initial thicknesses. The evolution equations and Hall-Petch behavior were coupled into the constitutive model, which was composed of athermal and thermal stresses. According to the established constitutive equations, the variation and contributions of corresponding stress components were analyzed. The calculated dislocation densities were compared with the experimental values obtained by electron backscattered diffraction data to verify the model. Moreover, the flow stresses of the studied alloy with different initial lamellar microstructures under various deformation conditions were predicted. Good agreements between the predicted and experimental results were obtained. Additionally, steady-state flow behavior was further analyzed and the relationship between the calculated steady-state flow stress and the equiaxed -phase size was quantitatively obtained. The results indicated the validity of the proposed constitutive model for predicting the flow behavior of the alloy with different initial lamellar microstructures over a range of deformation temperatures and strain rates.
机译:提出了一种基于脱位密度的本构体模型,其考虑了初始层状厚度的影响,以预测近高温Ti-5.4Al-3.7Sn-3.3 Zr-0.5Mo-0.4Si合金的流动性能。通过引入具有不同初始厚度的层状微观结构的动态球形化的影响,改善了位错密度的进化方程。进化方程和霍尔波格行为耦合到本构体型模型中,该模型由滴管和热应力组成。根据已建立的本构体方程,分析了相应应力分量的变化和贡献。将计算的位错密度与通过电子反向散射衍射数据获得的实验值进行比较,以验证该模型。此外,预测了在各种变形条件下具有不同初始层状微观结构的研究合金的流量应力。获得预测和实验结果之间的良好协议。另外,进一步分析了稳态流动行为,并且定量地获得了计算的稳态流应力与等轴尺寸之间的关系。结果表明了所提出的本构模型的有效性,用于预测不同初始层状微观结构的合金的流动性能在一系列变形温度和应变速率范围内。

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