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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Mechanics of bio-inspired attachment systems contacting with rough surface: effect of spring orientation angle on hierarchical spring model
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Mechanics of bio-inspired attachment systems contacting with rough surface: effect of spring orientation angle on hierarchical spring model

机译:与粗糙表面接触的受生物启发的附件系统的力学:弹簧定向角对分层弹簧模型的影响

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摘要

It is known that due to the asymmetrically designed structure of seta, gecko makes an attachment at 30 degrees and detachment at 90 degrees and achieves its detachment by changing orientation angle of seta from 30 degrees to 90 degrees. In this study, it is shown how pulling orientation affects pull-off force for gecko hierarchy using spring model during detachment from rough surface and then how to achieve easy and quick switch between attachment and detachment. This study adds the change of spring orientation angle to hierarchical spring model and extends it for determining the effect of orientation angle on the pull-off force. One-, two-, and three-level hierarchical models for gecko lamella consisting of seta, branches, and spatula contacting with the rough surface have been used. This study will provide us information about pull-off forces from rough surfaces and help to imitate and produce in particular gecko-like devices, reusable products and in general nanomaterials and nanodevices.
机译:已知由于seta的非对称设计的结构,壁虎以30度的附着和90度的脱离并通过将seta的取向角从30度改变为90度来实现其脱离。在这项研究中,它表明了在弹簧从粗糙表面脱离过程中,拉伸方向如何影响弹簧模型对壁虎层次的脱离力,以及如何在附着与脱离之间实现轻松快速的切换。这项研究将弹簧定向角的变化添加到分层弹簧模型中,并将其扩展来确定定向角对拉力的影响。壁虎薄片的一级,二级和三级分层模型已使用,它们由刚毛,树枝和刮刀与粗糙表面接触组成。这项研究将为我们提供有关粗糙表面上拉力的信息,并有助于模仿和生产特别是壁虎式设备,可重复使用的产品以及一般的纳米材料和纳米设备。

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