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Surface friction of polymer gels 1. Effect of interfacial interaction

机译:聚合物凝胶的表面摩擦1.界面相互作用的影响

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The sliding friction of various kinds of hydrogels has been studied and it was found that the frictional behaviors of the hydrogels do not conform to Amontons' law, F = μW, that well describes the friction of many solids. The frictional force and its dependencies of on load are quite different depending on the chemical structures of the gels, surface properties of the opposing substrates, and the measurement condition. The gel friction is explained in terms of interfacial interaction, either attractive or repulsive, between the polymer chain and the solid surface. According to this model, friction is ascribed to the viscous flow of solvent at the interface in the repulsive case. In the attractive case, the force to detach the adsorbing chain from the substrate appears as friction. Surface adhesion between glass particles and gels measured by AFM showed a good correlation with the friction, which support the repulsion-adsorption mode] proposed by the authors.
机译:研究了各种水凝胶的滑动摩擦,发现水凝胶的摩擦行为不符合Amontons定律F =μW,该定律很好地描述了许多固体的摩擦。摩擦力及其对载荷的依赖性非常不同,这取决于凝胶的化学结构,相对的基材的表面性质以及测量条件。凝胶摩擦是根据聚合物链与固体表面之间的界面相互作用(有吸引力或排斥的)来解释的。根据该模型,在排斥情况下,摩擦归因于界面处溶剂的粘性流动。在有吸引力的情况下,将吸附链与基材分离的力表现为摩擦。用原子力显微镜测量的玻璃颗粒和凝胶之间的表面粘附力与摩擦力具有良好的相关性,这支持了作者提出的排斥-吸附模式。

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