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Shearing of fibrillar adhesive microstructure: friction and shear-related changes in pull-off force

机译:纤维状胶粘剂微观结构的剪切:与摩擦和剪切有关的拉力变化

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摘要

To characterize the effect of shearing on function of fibrillar adhesive microstructure, friction and shear-related changes in pull-off force of a biomimetic polyvinylsiloxane mushroom-shaped fibrillar adhesive microstructure were studied. In contrast to a control flat surface, which exhibited pronounced stick–slip motion accompanied with high friction, the fibrillar microstructure demonstrated a stable and smooth sliding with a friction coefficient approximately four times lower. The structured contact also manifested zero pull-off force in a sheared state, while the flat surface exhibited highly scattered and unreliable pull-off force when affected by contact shearing. It appears that the fibrillar microstructure can be used in applications where a total attachment force should be generated in a binary on/off state and, most surprisingly, is suitable to stabilize and minimize elastomer friction.
机译:为了表征剪切对原纤维粘合剂微结构功能的影响,研究了仿生聚乙烯基硅氧烷蘑菇形原纤维粘合剂微结构的摩擦力和剪切相关的拉力变化。与控制平面相比,其显示出明显的粘滑运动并伴有高摩擦力,与此相反,原纤维微结构显示出稳定而平滑的滑动,摩擦系数低了四倍。结构化接触在剪切状态下也表现出零拉拔力,而平坦表面在受到接触剪切的影响时表现出高度分散且不可靠的拉拔力。看来,原纤维微结构可用于应以二元开/关状态产生总附着力的应用中,并且最令人惊讶的是,它适用于稳定和最小化弹性体摩擦。

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