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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Mechanical Pinning of Liquids through Inelastic Wetting Ridge Formation on Thermally Stripped Acrylic Polymers
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Mechanical Pinning of Liquids through Inelastic Wetting Ridge Formation on Thermally Stripped Acrylic Polymers

机译:通过在热剥离的丙烯酸类聚合物上形成非弹性的湿润脊形成机械固定液体

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摘要

A film composed of a thermal-stripped, solvent-borne acrylic polymer is shown to completely arrest motion of the three-phase line for water as a result of ridge structure formation. This mechanism produces anomalous wetting behavior including the arbitrary selection of contact angles, formation of quasi-periodic ridge structures on surfaces, and requirement of stick and break motion for wetting line advancement, a novel mechanism reported here. The ridges are retained by the polymer subsequent to wetting, which are 2 scales larger in height than those described previously. This allows for their characterization, which shows significant detail including the hierarchical apex structure where a cutoff area is used in theoretical treatment to avoid a singularity. Results of Wilhelmy plate experiments show a spatial connection between quasi-periodic variation in force—displacement curves and the wetting ridges on plate. These results are consistent with the dominance of the viscoelastic properties of the substrate in determining wetting behavior.
机译:由于形成了脊结构,由热剥离的,溶剂型丙烯酸类聚合物组成的薄膜显示出完全阻止了三相水线的运动。这种机制产生异常的润湿行为,包括任意选择接触角,在表面上形成准周期的脊结构以及对润湿线前进的粘着和断裂运动的要求,这是本文报道的一种新型机理。在润湿之后,脊被聚合物保持,其高度比先前描述的高2倍。这允许对其进行表征,从而显示出重要的细节,包括分层的顶点结构,其中在理论处理中使用了切除区域来避免奇点。 Wilhelmy平板实验的结果表明,力-位移曲线的准周期变化与平板上的润湿脊之间存在空间联系。这些结果与在确定润湿行为中基材的粘弹性质的优势一致。

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