Scinovex
review Open AccessTop 1% cited

Recent Progress on Wear‐Resistant Materials: Designs, Properties, and Applications

Advanced Science · 2021 · Vol. 8(11) · pp. e2003739–e2003739
Wenzheng ZhaiLichun BaiRunhua ZhouXueling FanGuozheng KangYong LiuKun Zhou

Abstract

There has been tremendous interest in the development of different innovative wear-resistant materials, which can help to reduce energy losses resulted from friction and wear by ≈40% over the next 10-15 years. This paper provides a comprehensive review of the recent progress on designs, properties, and applications of wear-resistant materials, starting with an introduction of various advanced technologies for the fabrication of wear-resistant materials and anti-wear structures with their wear mechanisms. Typical strategies of surface engineering and matrix strengthening for the development of wear-resistant materials are then analyzed, focusing on the development of coatings, surface texturing, surface hardening, architecture, and the exploration of matrix compositions, microstructures, and reinforcements. Afterward, the relationship between the wear resistance of a material and its intrinsic properties including hardness, stiffness, strength, and cyclic plasticity is discussed with underlying mechanisms, such as the lattice distortion effect, bonding strength effect, grain size effect, precipitation effect, grain boundary effect, dislocation or twinning effect. A wide range of fundamental applications, specifically in aerospace components, automobile parts, wind turbines, micro-/nano-electromechanical systems, atomic force microscopes, and biomedical devices are highlighted. This review is concluded with prospects on challenges and future directions in this critical field.

Tribology and Wear AnalysisLubricants and Their AdditivesMetal and Thin Film MechanicsNanotechnologyMaterials scienceEngineering physicsEngineering

Funding

  • Nanyang Technological University
  • National Natural Science Foundation of China
  • Fundamental Research Funds for the Central Universities
Citations
559
FWCI
47.63
field-weighted impact
References
450
Percentile
100%
vs. same field & year
Citations per year
References
Wear resistance investigation of titanium nitride-based coatings
Ceramics International · 2015 · 297 citations
Single layer and multilayer wear resistant coatings of (Ti,Al)N: a review
Materials Science and Engineering A · 2002 · 1,366 citations
Metal ion release from metal implants
Materials Science and Engineering C · 2004 · 505 citations
Contact and Rubbing of Flat Surfaces
Journal of Applied Physics · 1953 · 7,456 citations
A concept for the design of novel superhard coatings
Thin Solid Films · 1995 · 951 citations
Electroless nickel, alloy, composite and nano coatings – A critical review
Journal of Alloys and Compounds · 2013 · 897 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.