Reprint

Surface Topography Effects on Functional Properties of PVD Coatings

Edited by
August 2023
228 pages
  • ISBN978-3-0365-8620-5 (Hardback)
  • ISBN978-3-0365-8621-2 (PDF)

This book is a reprint of the Special Issue Surface Topography Effects on Functional Properties of PVD Coatings that was published in

Chemistry & Materials Science
Engineering
Summary

This reprint provides a comprehensive overview of the surface topography of PVD coatings and their role in different tribological contacts. The authors show how the coating topography depends on the topography of the substrate’s surface, the intrinsic coating morphology, and the growth defects formed during the deposition process. The authors also explain in more detail about how growth defects affect the functional properties of the PVD coatings (e.g. friction, wear, corrosion and oxidation resistance, permeation, wettability). The authors mainly focus on the growth defects in PVD hard coatings for the protection of tools and components, although they also touch on other areas of growth defect studies, particularly in relation to optics and microelectronics.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
PVD hard coating; surface topography; surface roughness; growth defect; nodular defect; pinhole; flake; ion etching; interlayer roughness; substrate-coating interface; focused ion beam (FIB); scanning electron microscopy; scanning transmission electron microscopy 3D stylus profilometry; low voltage electron beam evaporation; unballanced magnetron sputtering; cathodic arc deposition; hardness; tribology;  friction; wear; oxidation; ultrafast laser modification; surface texturing; cell response; Ti/Zr multilayer;aluminium die casting; soldering; ejection test; diffusion wear; tool steel substrate; non-metallic inclusions; fracture toughness; load-carrying capacity; PECVD; HMDSO; deposition rate; uniformity of deposition; plasma polymerization