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Modelling of the frictional behaviour of the snake skin covered by anisotropic surface nanostructures

机译:各向异性表面纳米结构覆盖的蛇皮摩擦行为的建模

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Previous experimental data clearly revealed anisotropic friction on the ventral scale surface of snakes. However, it is known that frictional properties of the ventral surface of the snake skin range in a very broad range and the degree of anisotropy ranges as well to a quite strong extent. This might be due to the variety of species studied, diversity of approaches used for the friction characterization, and/or due to the variety of substrates used as a counterpart in the experiments. In order to understand the interactions between the nanostructure arrays of the ventral surface of the snake skin, this study was undertaken, which is aimed at numerical modeling of frictional properties of the structurally anisotropic surfaces in contact with various size of asperities. The model shows that frictional anisotropy appears on the snake skin only on the substrates with a characteristic range of roughness, which is less or comparable with dimensions of the skin microstructure. In other words, scale of the skin relief should reflect an adaptation to the particular range of surfaces asperities of the substrate.
机译:以前的实验数据清楚地揭示了蛇腹部表面的各向异性摩擦。然而,已知蛇形皮肤的腹部表面的摩擦性质在非常广泛的范围内和各向异性范围内以及相当强度的程度。这可能是由于所研究的各种物种,用于摩擦表征的方法的多样性,和/或由于在实验中使用的基材的各种基材。为了了解蛇皮腹表面的纳米结构阵列之间的相互作用,该研究进行了该研究,其旨在旨在与各个粗糙度接触的结构各向异性表面的摩擦性质的数值模拟。该模型表明,摩擦各向异性仅在具有特征范围的粗糙度范围内的蛇形皮上出现在粗糙范围内,这与皮肤微观结构的尺寸较少或比较。换句话说,皮肤浮雕的规模应该反映对基板粗糙的特定表面的适应性。

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