Pitting corrosion poses a significant threat to infrastructure in engineering and there is a lack of comprehensive modeling methodologies to assess the effectiveness of corrosion mitigation strategies specifically designed for various structural systems. This book addresses the need for comprehensive, advanced models that integrate the various stages and factors involved in the process. It covers corrosion fatigue mechanisms and the influence of stress and temperature, and ways to mitigate corrosion induced damage in structural components.

  • Discusses exclusive material on modeling of the pitting corrosion process
  • Provides a brief outline of experimental techniques for pitting corrosion
  • Advanced numerical modeling techniques are explained with a number of examples
  • Presents data on modular form for easy understanding of the modeling techniques
  • Includes equations/flow charts to generate the numerical codes

This book is a reference for scholars, educators, and practitioners interested in exploring the potential of CPS for inclusive rural development.



Autorentext

Srinivasan Gopalakrishnan received his Ph.D from School of Aeronautics and Astronautics from Purdue University, USA in December 1992. In November 1997, he joined the Department of Aerospace Engineering at Indian Institute of Science Bangalore, where currently he is a Senior Professor. His main areas of interest are Wave Propagation in complex media, Computational Material Science, Computational Mechanics, Smart Structures, Structural Health Monitoring, MEMS and Nano Composite Structures.

Ramesh Babu Jangala is a post-doctoral researcher in the Department of Civil and Environmental Engineering at Vanderbilt University with a Ph.D. in Aerospace Engineering from the Indian Institute of Science, Bangalore, and a Master's degree in Aerospace Structural Engineering from IIT Kanpur. His research during his Ph.D. focused on corrosion modeling and fatigue life prediction in metallic structures.

Titel
Advanced Modeling Methods for Pitting Corrosion in Metals
EAN
9781040564370
Format
E-Book (pdf)
Veröffentlichung
31.03.2026
Digitaler Kopierschutz
Adobe-DRM
Dateigrösse
29.11 MB
Anzahl Seiten
322