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首页> 外文期刊>The European physical journal, E. Soft matter >Reconsidering the Clapeyron equation in the freezing of colloidal suspensions: From macroscale to the microscale
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Reconsidering the Clapeyron equation in the freezing of colloidal suspensions: From macroscale to the microscale

机译:在胶体悬浮液中重新考虑蛋白质方程:从Macroscale到Microscale

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A long controversy of ice lensing exists in the research of frost heave. By elucidating the mechanical and thermodynamic equilibria at the interface, the thermodynamics of the water/ice interface is revealed from macroscale to microscale for the freezing of colloidal suspensions. The application of the Clapeyron equation is confirmed both at macroscale to microscale via curvature effect. The origin of ice lensing/banding can be initialized from the growth of pore ice in the interpretation of thermodynamics at the interface, even without the traditional mechanical analyses. It is also proposed that the packing status of the porous structure in the particle layer ahead of the water/ice interface determines the ice lensing behaviors. The results presented here show different scenarios compared with previous theoretical investigations of frost heave, and may shed light on the researches of this area.
机译:霜冻升降的研究中存在漫长的冰镜头。 通过阐明界面处的机械和热力学平衡,水/冰界面的热力学从Macroscale揭示到Microscale,用于冷冻胶体悬浮液。 通过曲率效应在Macroscale到Microscale在Macroscale到Microscale的应用。 即使没有传统的机械分析,也可以从孔冰的增长中初始化冰透镜/带的起源。 还提出,在水/冰界面之前的颗粒层中的多孔结构的包装状态决定了冰透镜行为。 此处提出的结果显示了与先前对霜冻的理论调查相比的不同情景,并且可能阐明了该地区的研究。

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