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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Importance of loading and unloading procedures for gecko-inspired controllable adhesives
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Importance of loading and unloading procedures for gecko-inspired controllable adhesives

机译:壁虎启发型可控粘合剂的装卸程序的重要性

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摘要

The importance of loading and unloading procedures has been shown in a variety of different methods for biological dry adhesives, such as the fibers on the feet of the Tokay gecko, but biomimetic dry adhesives have yet to be explored in a similar manner. To date, little work has systematically varied multiple parameters to discern the influence of the testing procedure, and the effect of the approach angle remains uncertain. In this study, a synthetic adhesive is moved in 13 individual approach and retraction angles relative to a flat substrate as well as 9 different shear lengths to discern how loading and unloading procedures influence the preload, adhesion, and shear/friction forces supported. The synthetic adhesive, composed of vertical 10 μm diameter semicircular poly(dimethylsiloxane) fibers, is tested against a 4 mm diameter flat glass puck on a home-built microtribometer using both vertical approach and retraction tests and angled approach and retraction tests. The results show that near maximum adhesion and friction can be obtained for most approach and retraction angles, provided that a sufficient shear length is performed. The results also show that the reaction forces during adhesive placement can be significantly reduced by using specific approach angles, resulting for the vertical fibers in a 38-fold increase in the ratio of adhesion force to preload force, μ′, when compared to that when using a vertical approach. These results can be of use to those currently researching gecko-inspired adhesives when designing their testing procedures and control algorithms for climbing and perching robots.
机译:装载和卸载程序的重要性已在多种不同的生物干粘合剂方法中得到了证明,例如Tokay壁虎脚上的纤维,但仿生干粘合剂尚待以类似方式进行研究。迄今为止,几乎没有工作有系统地改变多个参数来识别测试程序的影响,并且接近角的影响仍然不确定。在这项研究中,合成胶粘剂相对于平坦的基材以13种单独的进给角和缩回角以及9种不同的剪切长度移动,以识别加载和卸载过程如何影响所支持的预加载,粘合和剪切/摩擦力。合成粘合剂由垂直直径为10μm的半圆形聚(二甲基硅氧烷)纤维组成,使用垂直进近和回缩测试以及成角度的进近和回缩测试,在自制微摩擦计上针对直径4 mm的平板玻璃圆盘进行测试。结果表明,只要执行足够的剪切长度,就可以在大多数接近角和缩回角获得接近最大的附着力和摩擦力。结果还表明,通过使用特定的接近角度,可以显着降低粘合剂放置过程中的反作用力,从而使垂直纤维的粘合力与预载力之比μ'相比增加了38倍。使用垂直方法。这些结果对于那些正在研究壁虎启发的胶粘剂的测试程序和控制攀爬和栖息机器人的控制算法的研究人员可能有用。

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