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Oscillating Friction on Shape-Tunable Wrinkles

机译:可调形皱纹的振荡摩擦

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摘要

Friction on soft materials is strongly correlated with the associated deformation, which may be controlled by the surface topography. We investigate the wearless sliding friction between a rigid hemispherical indenter and a deformable textured surface, which is shape-tunable wrinkles. The size of the indenter is comparable to the wavelength of the wrinkles. We evaluate the effects on the friction of the aspect ratio of the wrinkles, the applied normal load, and the alignment direction of the wrinkles relative to the sliding direction. The factional oscillations are observed during sliding in the direction perpendicular to the alignment using optical images and friction profiles. The correlation of friction force oscillation with deformation of the wrinkles is elucidated using Hertz contact theory. Within a cycle of frictional oscillation, the friction force increases as the front part of the indenter elastically plows the crests. When the normal load is high and/or the aspect ratio of the wrinkles is low, the indenter continues to squash the wrinkles and remains in contact with them during sliding. Consequently, the amplitude of friction force oscillation relative to the averaged friction force decreases.
机译:软材料上的摩擦与相关的变形密切相关,而变形可以通过表面形貌来控制。我们研究了刚性半球形压头和可变形纹理表面(形状可调的皱纹)之间的无磨损滑动摩擦。压头的大小与皱纹的波长相当。我们评估了皱纹的长宽比,施加的法向载荷以及皱纹相对于滑动方向的对齐方向对摩擦的影响。使用光学图像和摩擦轮廓,在垂直于对准的方向上滑动期间观察到派生性振荡。使用赫兹接触理论阐明了摩擦力振荡与皱纹变形之间的关系。在摩擦振荡的周期内,随着压头的前部弹性地犁the,摩擦力会增加。当正常载荷高和/或皱纹的长宽比低时,压头继续挤压皱纹并在滑动过程中保持与它们的接触。因此,摩擦力相对于平均摩擦力的振幅减小。

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