ABSTRACT

This book walks you through the fundamental deformation and damage mechanisms. It lends the reader the key to open the doors into the maze of deformation/fracture phenomena under various loading conditions. Furthermore it provides the solution method to material engineering design and analysis problems, for those working in the aerospace, automotive or energy industries. The book introduces the integrated creep-fatigue theory (ICFT) that considers holistic damage evolution from surface/subsurface crack nucleation to propagation in coalescence with internally-distributed damage/discontinuities.

chapter Chapter 1|33 pages

Crystal Structure and Dislocation Kinetics

chapter Chapter 2|26 pages

Deformation Mechanisms

chapter Chapter 3|15 pages

Physics of Material Damage

chapter Chapter 4|16 pages

The Integrated Creep-Fatigue Theory

chapter Chapter 5|48 pages

Creep

chapter Chapter 6|50 pages

Low Cycle Fatigue

chapter Chapter 7|23 pages

Thermomechanical Fatigue

chapter Chapter 8|17 pages

High Cycle Fatigue

chapter Chapter 9|29 pages

Microscopic Crack Nucleation and Growth

chapter Chapter 10|42 pages

Macroscopic Crack Growth

chapter Chapter 11|13 pages

Single Crystal Ni-Base Superalloys

chapter Chapter 12|22 pages

Thermal Barrier Coatings

chapter Chapter 13|10 pages

Ceramics Matrix Composites

chapter Chapter 14|27 pages

Component—Level Life Cycle Management