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材料摩擦学中的尺度效应:从宏观到微观尺度

Scaling Effects on Materials Tribology: From Macro to Micro Scale.

作者信息

Stoyanov Pantcho, Chromik Richard R

机构信息

Department of Mining and Materials Engineering, Aluminum Research Centre-REGAL, McGill University, Montreal, QC H3A 0C5, Canada.

出版信息

Materials (Basel). 2017 May 18;10(5):550. doi: 10.3390/ma10050550.

Abstract

The tribological study of materials inherently involves the interaction of surface asperities at the micro to nanoscopic length scales. This is the case for large scale engineering applications with sliding contacts, where the real area of contact is made up of small contacting asperities that make up only a fraction of the apparent area of contact. This is why researchers have sought to create idealized experiments of single asperity contacts in the field of nanotribology. At the same time, small scale engineering structures known as micro- and nano-electromechanical systems (MEMS and NEMS) have been developed, where the apparent area of contact approaches the length scale of the asperities, meaning the real area of contact for these devices may be only a few asperities. This is essentially the field of microtribology, where the contact size and/or forces involved have pushed the nature of the interaction between two surfaces towards the regime where the scale of the interaction approaches that of the natural length scale of the features on the surface. This paper provides a review of microtribology with the purpose to understand how tribological processes are different at the smaller length scales compared to macrotribology. Studies of the interfacial phenomena at the macroscopic length scales (e.g., using in situ tribometry) will be discussed and correlated with new findings and methodologies at the micro-length scale.

摘要

材料的摩擦学研究本质上涉及微观到纳米尺度下表面粗糙度的相互作用。对于存在滑动接触的大规模工程应用来说就是如此,在这种情况下,实际接触面积由小的接触粗糙度组成,这些粗糙度仅占表观接触面积的一小部分。这就是为什么研究人员在纳米摩擦学领域寻求创建单粗糙度接触的理想化实验。与此同时,已经开发出了被称为微机电系统和纳机电系统(MEMS和NEMS)的小规模工程结构,在这些结构中,表观接触面积接近粗糙度的长度尺度,这意味着这些器件的实际接触面积可能只有少数几个粗糙度。这本质上就是微摩擦学领域,其中涉及的接触尺寸和/或力已将两个表面之间相互作用的性质推向相互作用尺度接近表面特征自然长度尺度的状态。本文对微摩擦学进行综述,目的是了解与宏观摩擦学相比,摩擦学过程在较小长度尺度下有何不同。将讨论宏观长度尺度下的界面现象研究(例如使用原位摩擦测量法),并将其与微长度尺度下的新发现和方法相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69df/5459061/f6e3c00b9cbc/materials-10-00550-g001.jpg

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