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受蛇皮启发的弹性体在干燥条件下具有极低的摩擦系数。

Snakeskin-Inspired Elastomers with Extremely Low Coefficient of Friction under Dry Conditions.

作者信息

Wang Mengyuan, Ghosh Sujan K, Stafford Christopher M, Blevins Adrienne K, Huang Sijia, Martinez Jaylene, Long Rong, Bowman Christopher N, Killgore Jason P, Zou Min, Ding Yifu

机构信息

Materials Science and Engineering Program, University of Colorado, Boulder, Colorado 80303, United States.

Department of Mechanical Engineering, University of Colorado, Boulder, Colorado 80309, United States.

出版信息

ACS Appl Mater Interfaces. 2020 Dec 23;12(51):57450-57460. doi: 10.1021/acsami.0c18316. Epub 2020 Dec 11.

Abstract

Soft elastomers are critical to a broad range of existing and emerging technologies. One major limitation of soft elastomers is the large friction of coefficient (COF) due to inherently large adhesion and internal loss. In applications where lubrication is not applicable, such as soft robotics, wearable electronics, and biomedical devices, elastomers with inherently low dry COF are required. Inspired by the low COF of snakeskins atop soft bodies, this study reports the development of elastomers with low dry COF by growing a hybrid skin layer with a strong interface with a large stiffness gradient. Using a solid-liquid interfacial polymerization (SLIP) process, hybrid skin layers are imparted onto elastomers, which reduces the COF of the elastomers from 1.6 to 0.1, without sacrificing the bulk compliance and ductility of elastomer. Compared with existing surface modification methods, the SLIP process offers spatial control and ability to modify flat, prepatterned, curved, and inner surfaces, which is essential to engineer multifunctional skin layers for emerging applications.

摘要

软质弹性体对于广泛的现有和新兴技术至关重要。软质弹性体的一个主要局限性是,由于其固有的大附着力和内部损耗,导致摩擦系数(COF)很大。在润滑不适用的应用中,如软体机器人、可穿戴电子产品和生物医学设备,需要具有固有低干摩擦系数的弹性体。受软体动物体表蛇皮低摩擦系数的启发,本研究报告了通过生长具有大刚度梯度的强界面混合皮层来开发低干摩擦系数弹性体的方法。使用固液界面聚合(SLIP)工艺,将混合皮层赋予弹性体,这将弹性体的摩擦系数从1.6降低到0.1,而不会牺牲弹性体的整体柔顺性和延展性。与现有的表面改性方法相比,SLIP工艺提供了空间控制能力,能够对平坦、预图案化、弯曲和内表面进行改性,这对于为新兴应用设计多功能皮层至关重要。

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