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表面形貌作为一种材料参数。

Surface topography as a material parameter.

作者信息

Jacobs Tevis D B, Pastewka Lars

机构信息

Department of Mechanical Engineering and Materials Science, University of Pittsburgh, Pittsburgh, USA.

Department of Microsystems Engineering, University of Freiburg, Freiburg, Germany.

出版信息

MRS Bull. 2022;47(12):1205-1210. doi: 10.1557/s43577-022-00465-5. Epub 2023 Jan 31.

Abstract

ABSTRACT

Materials science is about understanding the relationship between a material's structure and its properties-in the sphere of mechanical behavior, this includes elastic modulus, yield strength, and other bulk properties. We show in this issue that, analogously, a material's surface structure governs its surface properties-such as adhesion, friction, and surface stiffness. For bulk materials, microstructure is a critical component of structure; for surfaces, the structure is governed largely by surface topography. The articles in this issue cover the latest understanding of these structure-property connections for surfaces. This includes both the theoretical basis for how properties depend on topography, as well as the latest understanding of how surface topography emerges, how to measure and understand topography-dependent properties, and how to engineer surfaces to improve performance. The present article frames the importance of surface topography and its effect on properties; it also outlines some of the critical knowledge gaps that impede progress toward optimally performing surfaces.

摘要

摘要

材料科学旨在理解材料结构与其性能之间的关系——在力学行为领域,这包括弹性模量、屈服强度及其他整体性能。我们在本期中表明,类似地,材料的表面结构决定其表面性能——如附着力、摩擦力和表面刚度。对于块状材料,微观结构是结构的关键组成部分;对于表面,结构很大程度上由表面形貌决定。本期的文章涵盖了对这些表面结构-性能关系的最新理解。这既包括性能如何依赖于形貌的理论基础,也包括对表面形貌如何形成、如何测量和理解与形貌相关的性能,以及如何设计表面以提高性能的最新认识。本文阐述了表面形貌的重要性及其对性能的影响;还概述了一些阻碍实现最佳性能表面发展的关键知识空白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef64/9947057/50167d09d4c5/43577_2022_465_Fig1_HTML.jpg

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