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首页> 外文期刊>Journal of Physics. Condensed Matter >Interfacial stiffness and adhesion of randomly rough contacts probed by elastomer colloidal AFM probes
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Interfacial stiffness and adhesion of randomly rough contacts probed by elastomer colloidal AFM probes

机译:弹性体胶体原子力显微镜探针探测随机粗糙接触的界面刚度和附着力

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摘要

We report on contact mechanics experiments addressing the role of surface roughness on interfacial stiffness and adhesion. Colloidal atomic force microscopy probes, based on poly( dimethylsiloxane) microparticles, are pressed against ceramic substrates with different roughnesses; the applied load, deformation rate and dwell time being separately controlled. We observe a clear dependence of load - deformation curves and pull- off forces on roughness values, likely arising from morphological modulation of the contact area; remarkably this affects the contact stiffness, which is found to decrease for rougher junctions. The emergence of purely geometrical effects for poly( dimethylsiloxane) rough contacts extends previous findings on plastically deformed self- affine surfaces and demonstrates the efficient tuning of contact response through a proper design of surface morphology.
机译:我们报道了接触力学实验,以处理表面粗糙度对界面刚度和附着力的作用。基于聚(二甲基硅氧烷)微粒的胶体原子力显微镜探针被压在具有不同粗糙度的陶瓷基板上;施加的载荷,变形率和停留时间分别控制。我们观察到载荷-变形曲线和拉拔力对粗糙度值的明显依赖性,这可能是由于接触区域的形态调制引起的。显然,这会影响接触刚度,发现接触刚度会降低。聚(二甲基硅氧烷)粗糙接触的纯粹几何效应的出现扩展了塑性变形自仿射表面上的先前发现,并证明通过适当设计表面形态可以有效地调整接触响应。

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