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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Adhesion of nonplanar wrinkled surfaces
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Adhesion of nonplanar wrinkled surfaces

机译:非平面皱纹表面的附着力

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摘要

Topological patterns on polymer surfaces can significantly alter and control adhesion. In this study, the effect of surface wrinkles on a spherical surface on adhesion has been studied. Surface wrinkling induced by swelling of a crosslinked polydimethylsiloxane elastomer constrained by a stiff, thin surface layer (silicate) is used to produce topographic features of various length scales over a large curved area. By controlling the properties of the stiff layer and the applied strain conditions, surface wrinkles of varying amplitude and wavelength are obtained. The effect of wrinkle morphology on adhesion is quantified, and the results display a transition from enhancement of adhesion to decrease depending upon wrinkle dimensions. A simple phenomenological model is proposed that describes the change of adhesion behavior as a function of wrinkle morphology. Our results provide a critical understanding toward tuning the adhesion behavior of nonplanar surfaces consisting of periodic topographic structures.
机译:聚合物表面上的拓扑结构可以显着改变和控制附着力。在这项研究中,已经研究了球形表面上的表面皱纹对粘附的影响。由交联的聚二甲基硅氧烷弹性体的溶胀引起的表面皱纹受硬而薄的表面层(硅酸盐)的束缚,被用来在较大的弯曲区域上产生各种长度尺度的形貌特征。通过控制刚性层的性质和所施加的应变条件,可获得幅度和波长变化的表面皱纹。量化了皱纹形态对粘附的影响,并且结果显示了根据皱纹尺寸从粘附的增强到减少的过渡。提出了一个简单的现象学模型,该模型描述了粘附行为随皱纹形态变化的变化。我们的结果为调整由周期性形貌结构组成的非平面表面的粘附行为提供了关键的认识。

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