Liebe Besucherinnen und Besucher,
aufgrund unseres Sommerfestes sind wir am 03. September 2026 bis 14 Uhr erreichbar. Am 04. September 2026 sind wir wieder wie gewohnt für Sie da. Vielen Dank für Ihr Verständnis.
Ihr Team von Sack Fachmedien
Buch, Englisch, 102 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 320 g
Buch, Englisch, 102 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 320 g
ISBN: 978-3-0364-0955-9
Verlag: Trans Tech Publications
The development of modern engineering and manufacturing relies on materials that meet increasingly demanding performance requirements. Among these materials, steel, alloys and protective coatings of their surfaces remain central to achieving strength, durability, and resistance in extreme environments. The special edition reflects research results that are essential for advancing industrial technologies and aims to provide both technical information and an inspiration for continued innovation in materials engineering.
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
Preface
Chapter 1: Properties and Processing of Alloys and Steel
Weld Cold Cracking Susceptibility in SKD 11 Die Steel during MAG Welding Using Implant Testing
Evaluation of Cold Cracking Susceptibility in Fully Pearlitic Rail Steel during Flux Cored-Arc Welding Using Implant Testing
Study of Weld Cracking Detectability on JIS G4404-SKD 11 Cold Work Steel Using Eddy-Current Testing
Fatigue Properties of Welded Structural Steels Initiated from Long-Term Corroded Surfaces
High Temperature Oxidation of Fe-18Cr-Nano Al2O3 ODS Steel in Humidified Atmospheres
Hot Corrosion, Phase Stability and Compressive Strength of AlCrFeNiCu-Nb High Entropy Alloy Fabricated via Additive Manufacturing
Microstructural Evolution and Mechanical Behaviour of AlCrFeNiCu High Entropy Alloy Doped with Ti
Chapter 2: Protective Coatings
Evaluation of TWAS Coatings Wear Mechanism by Means of SEM
Analysis of Stainless Steel 316L Coatings Prepared by High-Speed and Conventional Laser Cladding
Optimization of Hardness and Adhesion of Al2O3-40%TiO2 Coating Obtained by HVOF Spraying through Process Parameter Control




