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分级表面的静摩擦力和动摩擦力。

Static and dynamic friction of hierarchical surfaces.

作者信息

Costagliola Gianluca, Bosia Federico, Pugno Nicola M

机构信息

Department of Physics and Nanostructured Interfaces and Surfaces inter-departmental Center, University of Torino, Via Pietro Giuria 1, 10125, Torino, Italy.

Laboratory of Bio-Inspired & Graphene Nanomechanics, Department of Civil, Environmental and Mechanical Engineering, University of Trento, Via Mesiano 77, 38123 Trento, Italy.

出版信息

Phys Rev E. 2016 Dec;94(6-1):063003. doi: 10.1103/PhysRevE.94.063003. Epub 2016 Dec 20.

Abstract

Hierarchical structures are very common in nature, but only recently have they been systematically studied in materials science, in order to understand the specific effects they can have on the mechanical properties of various systems. Structural hierarchy provides a way to tune and optimize macroscopic mechanical properties starting from simple base constituents and new materials are nowadays designed exploiting this possibility. This can be true also in the field of tribology. In this paper we study the effect of hierarchical patterned surfaces on the static and dynamic friction coefficients of an elastic material. Our results are obtained by means of numerical simulations using a one-dimensional spring-block model, which has previously been used to investigate various aspects of friction. Despite the simplicity of the model, we highlight some possible mechanisms that explain how hierarchical structures can significantly modify the friction coefficients of a material, providing a means to achieve tunability.

摘要

层次结构在自然界中非常普遍,但直到最近才在材料科学中对其进行系统研究,以便了解它们对各种系统力学性能可能产生的特定影响。结构层次提供了一种从简单的基础成分开始调整和优化宏观力学性能的方法,如今新型材料正是利用这种可能性进行设计的。这在摩擦学领域也可能是成立的。在本文中,我们研究了具有层次图案化表面对弹性材料静摩擦系数和动摩擦系数的影响。我们的结果是通过使用一维弹簧 - 块模型进行数值模拟获得的,该模型此前已被用于研究摩擦的各个方面。尽管模型简单,但我们强调了一些可能的机制,这些机制解释了层次结构如何能够显著改变材料的摩擦系数,从而提供了一种实现可调性的手段。

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