Marine Corrosion of Steels

Mechanisms and AI-Driven Solutions
Artikelnummer: 978-3-527-35593-8
Einband: Fester Einband
Verfügbarkeit: Lieferbar in ca. 10-20 Arbeitstagen
CHF 222.00
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Chapter 1. Stress corrosion behavior of high manganese steel in polluted marine atmospheric environments.
Chapter 2.Corrosion fatigue behavior of high manganese steel in atmospheric environment.
Chapter 3.Effect of Microalloying Elements on The Corrosion Resistance of Low-Density Steel.
Chapter 4. Coupling of Multiple Corrosion in the Corrosion Process of Titanium-Steel Composites .
Chapter 5.Effects of Corrosion Inhibitors and Flow rate on the Corrosion Resistance of Ductile Iron Pipes.
Chapter 6. Application of Novel Big Data Intelligent Corrosion Assessment Approach in Rebar Corrosion Resistance Modulation.
Chapter 7.Application of Novel Big Data Intelligent Corrosion Assessment Approach in blast furnace gas pipe steel corrosion resistance Analysis.
Chapter 8. Application of Novel Big Data Intelligent Corrosion Assessment Approach in Corrosion-Resistant Low Alloy Steel Development.
Chapter 9. Application of Novel Big Data Intelligent Corrosion Assessment Approach in Corrosion Prediction and Data Mining Modeling.
Chapter 10. Perspectives on the Application of Artificial Intelligence in Investigating Corrosion Mechanisms of Steel and Designing Corrosion-Resistant Alloys.

Chapter 1. Stress corrosion behavior of high manganese steel in polluted marine atmospheric environments.
Chapter 2.Corrosion fatigue behavior of high manganese steel in atmospheric environment.
Chapter 3.Effect of Microalloying Elements on The Corrosion Resistance of Low-Density Steel.
Chapter 4. Coupling of Multiple Corrosion in the Corrosion Process of Titanium-Steel Composites .
Chapter 5.Effects of Corrosion Inhibitors and Flow rate on the Corrosion Resistance of Ductile Iron Pipes.
Chapter 6. Application of Novel Big Data Intelligent Corrosion Assessment Approach in Rebar Corrosion Resistance Modulation.
Chapter 7.Application of Novel Big Data Intelligent Corrosion Assessment Approach in blast furnace gas pipe steel corrosion resistance Analysis.
Chapter 8. Application of Novel Big Data Intelligent Corrosion Assessment Approach in Corrosion-Resistant Low Alloy Steel Development.
Chapter 9. Application of Novel Big Data Intelligent Corrosion Assessment Approach in Corrosion Prediction and Data Mining Modeling.
Chapter 10. Perspectives on the Application of Artificial Intelligence in Investigating Corrosion Mechanisms of Steel and Designing Corrosion-Resistant Alloys.

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VerlagWiley-VCH
EinbandFester Einband
Erscheinungsjahr2026
Seitenangabe608 S.
AusgabekennzeichenEnglisch
Abbildungenfarbige Illustrationen
MasseH24.4 cm x B17.0 cm x D1.5 cm 666 g
CoverlagWiley-VCH (Imprint/Brand)
Auflage1. Auflage
AutorLiu, Chao / Wang, Bingqin / Li, Xiaogang / Zhang, Shasha / Li, Zhong

Über den Autor Chao Liu

Chao Liu is a professor at the Institute of Advanced Materials and Technology, University of Science and Technology Beijing, China. His research focuses on localized corrosion mechanisms, corrosion big data, and the development of advanced corrosion-resistant steels. Bingqin Wang is an assistant researcher at the Institute of Advanced Materials and Technology, University of Science and Technology Beijing, China. His work centers on corrosion big data, including predictive modeling of atmospheric corrosion and corrosion image quantification, advancing methodologies for steel performance assessment. Xiaogang Li is a professor at the Institute of Advanced Materials and Technology, University of Science and Technology Beijing, China and a leader in corrosion science. His research includes corrosion theory, new steel development, and performance optimization of weathering steels. Shasha Zhang is an engineer at the School of Advanced Engineering, University of Science and Technology Beijing, China. Her research applies artificial intelligence and IoT technologies to corrosion detection and data-driven corrosion protection strategies. Zhong Li is an associate professor at the Institute of Advanced Materials and Technology, University of Science and Technology Beijing, China. Her expertise lies in microbiologically induced corrosion, stress corrosion cracking, and advanced materials for corrosion resistance.

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