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Low Pressure Hysteresis in Materials with Narrow Slit Pores

机译:具有窄狭缝孔的材料的低压滞后

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摘要

Humidity-dependent closing and reopening slit pores can produce hysteresis loops in sorption diagrams even at low relative vapor pressure. Pore closing is supported by adhesion of the slit wall surfaces. In a macroscopic model for sorption hysteresis in narrow slits, the adhesion energy jumps by a finite value when touching slit walls are separated from each other. We consider a more realistic adhesion model by introducing a smoothly-varying adhesion force, which depends on the distance between the slit walls. The range of the attraction between the slit walls is found to have a pronounced influence on the shape of hysteresis loops at low vapor pressure. A large interaction range avoids an extraordinarily small relative vapor pressure necessary for pore closing, which is a precondition for low pressure hysteresis. Our extended model allows us to describe a discontinuity, which can appear in the desorption branch of swelling/shrinkage diagrams for hardened cement paste.
机译:湿度依赖性关闭和重新开放的狭缝孔可以在低相对蒸气压下产生吸附图中的滞后环。狭缝壁表面的粘附来支持孔隙闭合。在窄狭缝中的吸附滞后的宏观模型中,当触摸狭缝壁彼此分离时,粘合能量通过有限的值跳跃。我们通过引入平稳变化的粘合力来考虑更现实的粘合模型,这取决于狭缝壁之间的距离。发现狭缝壁之间的吸引范围是对低蒸气压下的滞后环的形状具有明显的影响。大的相互作用范围避免了孔隙闭合所必需的非常小的相对蒸气压,这是低压滞后的前提。我们的扩展模型使我们能够描述一种不连续性,可以出现在硬化水泥浆料的膨胀/收缩图的解吸分支中。

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