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多孔结构及表面浸润性对池沸腾传热影响的研究进展 被引量:16
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作者 陈宏霞 黄林滨 宫逸飞 《化工进展》 EI CAS CSCD 北大核心 2017年第8期2798-2808,共11页
沸腾传热是一种高效换热方式,在多种领域具有广泛应用前景。其中多孔金属表面由于其比表面积大、导热性能好以及汽化核心密度高等突出优点,受到广泛关注;而多孔表面、耦合表面、亲疏水改性能极大地提高临界热流密度,调控沸腾传热,变无... 沸腾传热是一种高效换热方式,在多种领域具有广泛应用前景。其中多孔金属表面由于其比表面积大、导热性能好以及汽化核心密度高等突出优点,受到广泛关注;而多孔表面、耦合表面、亲疏水改性能极大地提高临界热流密度,调控沸腾传热,变无序为可控,正迅速成为强化沸腾相变传热领域的新热点。本文追踪了多孔表面和表面改性强化沸腾传热的最新进展,重点介绍多孔尺度、形状、核化点布局及整体/局部亲疏水性强化沸腾性能及机理;简要分析了以Zuber临界热流密度公式为基础的Kandlikar系列公式;整理近年来不断完善和改进的沸腾传热机理模型,认为微液层蒸发和瞬态热传导是微纳多孔表面强化沸腾的主导机制;进一步指出微纳多孔表面耦合、局部亲疏水性处理是强化沸腾传热新的发展方向。 展开更多
关键词 池沸腾 强化传热 微纳多孔表面 亲疏水性 汽化核心
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Localization and macroscopic instability in nanoporous metals
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作者 Zhangtao Sun Tianfu Guo +3 位作者 Khalil I.Elkhodary Hang Yang Nian Zhou Shan Tan 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第12期15-32,共18页
Ductile fracture generally relates to microscopic voiding and to strain localization in metallic materials.When the void size is reduced to the nanoscale,size effects often lead to a different macroscopic plastic beha... Ductile fracture generally relates to microscopic voiding and to strain localization in metallic materials.When the void size is reduced to the nanoscale,size effects often lead to a different macroscopic plastic behavior from that established for the same material with larger voids.For example,irradiation of metallic materials can generate a large number of voids at the nanoscale,leading to complex deformation behaviors.The present work advances the understanding of strain localization in nanoporous metallic materials,connecting both the microscopic(nano-)and macroscopic scales.To explore the physical mechanisms at the nanoscale,molecular dynamics(MD)simulations were here carried out,capturing multiple nanovoids explicitly.Then,a homogenized continuum theory based in Gurson's constitutive framework is proposed,which enables us to explore how localized behavior at the macroscopic scale evolves.The homogenized model incorporates the surface tension associated with nanosized void.The importance of this surface tension is illustrated by several parametric studies on the conditions of localization,when a specimen is subjected to uniaxial tension.Our parametric studies show that for smaller nanovoid sizes,and for a hardening matrix material,shear localization onset is delayed.Our proposed homogenization model was then used to predict localization behavior captured by our MD simulation.The yield stress and the localization strain predicted by our continuum model are in general agreement with the trends obtained by MD simulation.Moreover,based on our present study,experimental results of shear failure strain vs.dose of irradiation for several metals could be qualitatively explained rather successfully.Our model can therefore help shed light on prolonging the operation limits and the lifetime of irradiated metallic materials under complex loading conditions. 展开更多
关键词 Nanovoids MD simulations LOCALIZATION Surface tension Shear band
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