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Flexible Control and Coupling of Adhesion and Friction of Gecko Setal Array During Sliding

机译:壁虎固定阵列在滑动过程中的粘着力和摩擦力的灵活控制和耦合

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Gecko has remarkable ability to control its adhesion and friction during running to realize a swift climbing or running on vertical walls or upside down ceilings. This ability has received considerable interest of researchers. During the recent decade, significant progress has been made in understanding the mechanism and the biomimetic fabrication of gecko-inspired dry adhesives. While people generally desire a strong and reversible adhesion property, this article described the progress in the investigation of the properties of gecko hierarchical structures, and the corresponding theoretical understandings, and then presented our recent progresses on the flexible controlled adhesion and friction of gecko surface and biomimetic surfaces and a demonstration of a hybrid clamp to ascertain the mechanical property of control principles is also involved. Gecko-inspired adhesives with flexibly controlled adhesion and friction performances have been developed. Macroscopic sliding of those adhesive surfaces with anisotropic hierarchical microscopic structures in a desired direction could be carried out and engage or disengage a flexible control of strong adhesion and friction, and acquire an “intelligent” adhesion.
机译:壁虎具有出色的控制跑步过程中的附着力和摩擦力的能力,可以在垂直的墙壁或倒置的天花板上快速爬升或跑步。这种能力引起了研究人员的极大兴趣。在最近的十年中,在理解壁虎启发的干粘合剂的机理和仿生制造方面取得了重大进展。虽然人们通常都希望有强大且可逆的附着力,但本文介绍了壁虎分层结构的特性研究的进展以及相应的理论理解,然后介绍了我们在壁虎表面的柔性控制附着力和摩擦力方面的最新进展。还涉及仿生表面和用于确定控制原理的机械性能的混合夹具的演示。壁虎启发的粘合剂具有可灵活控制的粘合和摩擦性能。可以对具有各向异性层次微观结构的那些粘合剂表面进行宏观滑动,使其沿所需方向滑动,并使强粘性和摩擦力的柔性控制接合或脱离,并获得“智能”粘合。

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