Corrosion and Protection of Materials

Edited by
April 2021
496 pages
  • ISBN978-3-0365-0290-8 (Hardback)
  • ISBN978-3-0365-0291-5 (PDF)

This book is a reprint of the Special Issue Corrosion and Protection of Materials that was published in

Chemistry & Materials Science
Physical Sciences
This book contains thirty articles on various topics related to the corrosion and protection of metallic materials. This topic is of strong actuality both due to the aging of plants and infrastructures that require checks and maintenance, and to the use of traditional materials in increasingly aggressive environments, added to the need of changing the current anti-corrosion systems with less environmental impact methods. Finally, the new development of innovative materials, such as additive manufacturing or high-entropy alloys, needs the characterization of their corrosion behavior. In this issue, there are works on new alloys obtained for additive manufacturing or high entropy, on the study of corrosion and stress corrosion cracking and hydrogen embrittlement mechanisms, through electrochemical and microscopical techniques, studies on low environmental impact inhibitors and biocides, as well as ceramic and metal protective coatings. Finally, there are works on the study of the residual mechanical resistance of corroded infrastructures and on monitoring and non-destructive control. In this way, the book therefore offers a somewhat varied panorama of research trends in the field.
  • Hardback
© 2022 by the authors; CC BY-NC-ND license
corrosion; XPS; J55 steel; carbon dioxide; molecular dynamic simulation; microbial corrosion; sulfate-reducing bacteria; biocides; electrochemical test; confocal laser scanning microscopy; atomic layer deposition; corrosion protection; copper; aluminum oxide; titanium oxide; nanolaminate; electrochemical impedance spectroscopy; barrier coatings; corrosion; bearing steels; martensitic stainless steel; aerospace; atomic force microscopy (AFM); scanning Kelvin probe microscopy (SKPFM); nanoscale; electrochemistry; wear; Pyrowear 675/AMS 5930; corrosion; ductility; mechanical properties; reinforced concrete; tensile strength; equivalent steel; trunk gas pipelines; hydrogen embrittlement; hydrogen adsorption; pipeline inner surface; cathodic protection current; hydrogen distribution; additive manufacturing; corrosion; alloy 625; selective corrosion; oil and gas; materials qualification; kraft lignin; polymer; corrosion resistant; iron; acid inhibition; CrFeCoNiNbx alloys; microstructure; hardness; corrosion property; magnesium alloy; stress corrosion cracking; hydrogen; fractography methods; corrosion resistance; electrochemistry; magnetoelasticity; magnetoelastic sensor; intergranular corrosion; sensitization; austenitic stainless steel; grain boundary; grain boundary structure; corrosion of steel; riveted bridges; degradation; load-carrying capacity; thermal spray; corrosion; zinc; copper; steel; zirconium corrosion; zircalloy clad; Zr hydride; hydrogen; nuclear reactor; Ni-W alloy coating; heat treatment; corrosion resistance; iron corrosion; SEM; Raman spectroscopy; biogenic minerals; bacterial iron reduction; cultural heritage; conservation-restoration; corrosion stabilization; corrosion damage; ultrasonic wave propagation imaging; root mean square; dispersion curves; Rayleigh–Lamb equation; Fourier transform; zinc alloys; Zamak; Zn-Al alloys; heat treatment; corrosion resistance; microstructure; nickel-aluminum bronze; cast defects; electrochemical corrosion; mechanism; microstructure; alternating current; cathodic protection; carbon steel; pipeline; AC interference corrosion; AC corrosion assessment; protection criteria; corrosion mechanism; chitosan; lignosulfonate; sulfate reducing bacteria; biofilm; microbial corrosion; impedance spectroscopy; electropolishing; mechanism; stainless steel; corrosion; surface roughness; microhardness; corrosion; stress-corrosion cracking; friction stir welding (FSW); AA7075; pure iron; groundwater; corrosion behavior; ions; temperature; hot stamping steel; AlSi-based coating; electrodeposited paint; Zn; Mg; corrosion; steel; hydrogen induced cracking; sulfide stress cracking; sour; hydrogen permeation; diffusion; corrosion; high-strength wires; stress corrosion cracking; potentiodynamic polarization; electrochemical impedance spectroscopy; metallography; fracture morphology; metal additive manufacturing; aluminium alloys; corrosion behaviour; microstructure; corrosion protection; Nb-Si based alloy; MoSi2-ZrB2 coating; atmospheric plasma; oxidation