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Adhesion and friction behavior of positively or negatively patterned polymer surfaces measured by AFM

机译:通过AFM测量的正向或负向图案化的聚合物表面的附着力和摩擦行为

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摘要

Adhesion and friction behavior of the positively (micropillar) or negatively (microhole) patterned polydimethylsiloxane surfaces were comparatively investigated. The patterned surfaces were fabricated by replica molding technique and the surface morphologies of the patterned surfaces with different spacing between pillars/holes were characterized by atomic force microscope (AFM). The AFM with a colloidal probe was utilized to examine the adhesion and friction behavior of positively and negatively patterned surfaces. The results show that the positive patterning is more effective in reducing the adhesion than the negative patterning due to the smaller contact area between the positively patterned surfaces and colloidal probe. The friction of patterned surface was depended on the contact area between the contact pairs and the friction increments caused by the 'collision effect'. The 'collision effect' is closely associated with the spacing between the pillars and the radius of the colloidal probe. The studied approach should be applicable to most patterned surfaces and open numerous opportunities for reducing the adhesive force and friction force between contact materials.
机译:对正(微柱)或负(微孔)图案化的聚二甲基硅氧烷表面的粘附和摩擦行为进行了比较研究。图案化的表面通过复制模制技术制造,并且通过原子力显微镜(AFM)表征了在柱/孔之间具有不同间隔的图案化的表面的表面形态。带有胶体探针的原子力显微镜用于检查正负图案表面的粘附和摩擦行为。结果表明,由于正构图的表面与胶体探针之间的接触面积较小,因此,与负构图相比,正构图在降低附着力方面更为有效。构图表面的摩擦取决于触点对之间的接触面积和“碰撞效应”引起的摩擦增量。 “碰撞效应”与柱子之间的间距和胶体探针的半径密切相关。研究的方法应适用于大多数带图案的表面,并为减少接触材料之间的粘合力和摩擦力开辟了许多机会。

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