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Adhesion and friction of an isolated gecko setal array: The effects of substrates and relative humidity

机译:隔离壁虎固定阵列的附着力和摩擦力:基材和相对湿度的影响

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Geckos can climb steadily and quickly on different surfaces under various environmental conditions. Extensive experiments have been conducted using gecko toe, setal array, single seta and single spatula to explore the physical principles of gecko adhesion and friction. This work focuses on the effect of environment (i.e. substrate materials and relative humidity [RH]) and experimental conditions (i.e. preload, sliding velocity, and sliding direction) on gecko adhesion and friction through an isolated gecko setal array. Experimental results show that when sliding a setal array in gripping direction, adhesion and friction can be enhanced by more than 200% by increasing surface energy, 60% by increasing relative humidity, and only slightly by increasing sliding velocity; an appropriate preload increase can also cause an enhancement. When RH >40%, adhesion and friction become saturated, and higher sliding velocity and preload can realize the saturation at a lower RH. When a preload is oversized in gripping direction or when sliding a setal array against substrates in releasing direction, the setal array deforms severely and always exhibits a preload-dominated repulsion. A strong anisotropic property is revealed when sliding a setal array in gripping and releasing direction. These results help understand the remarkable abilities of gecko swiftly controlling strong attachment and easy detachment, which inspire the design and fabrication of gecko-inspired reversible dry adhesives.
机译:壁虎可以在各种环境条件下稳定,快速地爬在不同的表面上。已经使用壁虎脚趾,setal array,单个seta和单个铲刀进行了广泛的实验,以探索壁虎粘附和摩擦的物理原理。这项工作着重于环境(即基材材料和相对湿度[RH])和实验条件(即预紧力,滑动速度和滑动方向)对壁虎附着力和通过隔离壁虎固定阵列摩擦的影响。实验结果表明,当沿握紧方向滑动一组牙龈时,通过增加表面能可将粘附力和摩擦力提高200%以上,通过增加相对湿度可将粘附力和摩擦力提高60%,而通过增加滑动速度仅能使粘附力和摩擦力提高一点;适当的预紧力增加也会导致增强。当RH> 40%时,附着力和摩擦力达到饱和,而较高的滑动速度和预紧力可以在较低的RH下实现饱和。当预紧力在抓取方向上过大时,或者当固定阵列在释放方向上相对于基板滑动时,固定阵列会严重变形,并始终表现出以预紧力为主的排斥力。当沿握紧和释放方向滑动固定阵列时,会显示出很强的各向异性。这些结果有助于理解壁虎快速控制牢固的附着力和易于分离的非凡能力,这激发了壁虎启发的可逆干胶的设计和制造。

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