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Contribution of friction and adhesion to the reliable attachment of a gecko to smooth inclines

机译:摩擦力和附着力有助于壁虎平滑附着的可靠附着

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Geckos’ ability to move on steep surfaces depends on their excellent adhesive structure, timely adjustments on locomotor behaviors, and elaborates control on reaction forces. However, it is still unclear how they can generate a sufficient driving force that is necessary for locomotion, while ensuring reliable adhesion on steep inclines. We measured the forces acting on each foot and recorded the contact states between feet and substrates when geckos encountered smooth inclination challenges ranging from 0° to 180°. The critical angles of the resultant force vectors of the front and hind-feet increased with respect to the incline angles. When the incline angle became greater than 120°, the critical angles of the front- and hind-feet were similar, and the averages of the critical angles of the front- and hind-feet were both smaller than 120°, indicating that the complicated and accurate synergy among toes endows gecko’s foot an obvious characteristic of “frictional adhesion” during locomotion. Additionally, we established a contact mechanical model for gecko’s foot in order to quantify the contribution of the frictional forces generated by the heel, and the adhesion forces generated by the toes on various inclines. The synergy between multiple contact mechanisms (friction or adhesion) is critical for the reliable attachment on an inclined surface, which is impossible to achieve by using a single-contact mechanism, thereby increasing the animal’s ability to adapt to its environment.
机译:壁虎在陡峭表面上移动的能力取决于其出色的粘合结​​构,对运动行为的及时调整以及对反作用力的控制。然而,仍然不清楚它们如何产生运动所需的足够的驱动力,同时确保在陡坡上的可靠粘附。我们测量了作用在每只脚上的力,并记录了当壁虎遇到0°至180°的平滑倾斜挑战时,脚与底物之间的接触状态。前脚和后脚的合力矢量的临界角相对于倾斜角增加。当倾斜角大于120°时,前脚和后脚的临界角相似,并且前脚和后脚的临界角的平均值均小于120°,表明复杂脚趾之间准确的协同作用使壁虎的脚在运动过程中具有“摩擦粘连”的明显特征。此外,我们建立了壁虎脚接触机械模型,以量化脚跟产生的摩擦力和脚趾在各种坡度上产生的附着力的贡献。多种接触机制(摩擦或粘附)之间的协同作用对于在倾斜表面上可靠地附着至关重要,而使用单接触机制无法实现这种附着,从而提高了动物适应环境的能力。

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