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Biomimetic patterned surfaces for controllable friction in micro- and nanoscale devices

机译:仿生图案表面可在微米和纳米级设备中控制摩擦

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摘要

Biomimetics is the study and simulation of biological systems for desired functional properties. It involves the transformation of underlying principles discovered in nature into man-made technologies. In this context, natural surfaces have significantly inspired and motivated new solutions for micro- and nano-scale devices (e.g., Micro/Nano-Electro-Mechanical Systems, MEMS/NEMS) towards controllable friction, during their operation. As a generic solution to reduce friction at small scale, various thin films/coatings have been employed in the last few decades. In recent years, inspiration from ‘Lotus Effect’ has initiated a new research direction for controllable friction with biomimetic patterned surfaces. By exploiting the intrinsic hydrophobicity and ability to reduce contact area, such micro- or nano-patterned surfaces have demonstrated great strength and potential for applications in MEMS/NEMS devices. This review highlights recent advancements on the design, development and performance of these biomimetic patterned surfaces. Also, we present some hybrid approaches to tackle current challenges in biomimetic tribological applications for MEMS/NEMS devices.
机译:仿生物是针对所需功能特性的生物系统的研究和仿真。它涉及将自然界发现的基本原理转化为人造技术。在这种情况下,自然表面极大地启发和激励了用于微米和纳米级设备(例如,微/纳米机电系统,MEMS / NEMS)的新解决方案,使其在操作过程中可控摩擦。作为减少小规模摩擦的通用解决方案,最近几十年来已采用了各种薄膜/涂层。近年来,“莲花效应”的灵感为仿生图案表面的可控摩擦开创了新的研究方向。通过利用固有的疏水性和减小接触面积的能力,这种微米或纳米图案表面已显示出巨大的强度和潜力,可用于MEMS / NEMS器件。这篇综述重点介绍了这些仿生图案表面的设计,开发和性能方面的最新进展。此外,我们提出了一些混合方法来应对MEMS / NEMS器件的仿生摩擦学应用中的当前挑战。

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