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Constitutive Equation for Superplastic Flow in Light Metallic Materials

机译:轻金属材料中超塑性流动的本构方程

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摘要

Two problems in fine-grained superplasticity, whose details are indispensable to understand the nature of superplastic flow, are discussed using light metallic materials. First, the effect of temperature and grain size on superplastic flow was investigated for the inclusive understanding of the dominant diffusion process. The effective diffusion coefficient for superplastic flow involving the lattice diffusion coefficient and the grain boundary diffusion coefficient were precisely determined. It was found that the superplastic flow in pseudo-single phase aluminum and magnesium alloys is best described by a single constitutive equation using the effective diffusion coefficient. Second, the effect of intergranular and intragranular particles was examined. Two critical strain rates for the elimination of the effect of these particles were developed respectively by considering the suitable deformation models. The constitutive equation for superplastic flow under the influence of intragranular particles was proposed.
机译:使用轻金属材料讨论了细粒超塑性中的两个问题,它们的细节对于理解超塑性流动的本质是必不可少的。首先,研究了温度和晶粒尺寸对超塑性流动的影响,以全面理解主要的扩散过程。精确地确定了超塑性流动的有效扩散系数,其中包括晶格扩散系数和晶界扩散系数。发现使用有效扩散系数通过单个本构方程可以最好地描述拟单相铝和镁合金中的超塑性流动。其次,检查了颗粒间和颗粒内颗粒的作用。通过考虑合适的变形模型,分别开发了两种消除这些颗粒影响的临界应变速率。提出了颗粒内颗粒作用下超塑性流动的本构方程。

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