Designing metainterfaces with specified friction laws

成果类型:
Article
署名作者:
Aymard, Antoine; Delplanque, Emilie; Dalmas, Davy; Scheibert, Julien
署名单位:
Centre National de la Recherche Scientifique (CNRS); CNRS - Institute for Engineering & Systems Sciences (INSIS); Ecole Centrale de Lyon
刊物名称:
SCIENCE
ISSN/ISSBN:
0036-12059
DOI:
10.1126/science.adk4234
发表日期:
2024-01-12
页码:
200-204
关键词:
contact MODEL SURFACES lens
摘要:
Many devices, including touchscreens and robotic hands, involve frictional contacts. Optimizing these devices requires fine control of the interface's friction law. We lack systematic methods to create dry contact interfaces whose frictional behavior satisfies preset specifications. We propose a generic surface design strategy to prepare dry rough interfaces that have predefined relationships between normal and friction forces. Such metainterfaces circumvent the usual multiscale challenge of tribology by considering simplified surface topographies as assemblies of spherical asperities. Optimizing the individual asperities' heights enables specific friction laws to be targeted. Through various centimeter-scaled elastomer-glass metainterfaces, we illustrate three types of achievable friction laws, including linear laws with a specified friction coefficient and unusual nonlinear laws. This design strategy represents a scale- and material-independent, chemical-free pathway toward energy-saving and adaptable smart interfaces.