..Figure 3.8 (a) The fatigue hysteresis loops corresponding to different appli...Figure 3.9 (a) The fatigue hysteresis loops corresponding to different appli...Figure 3.10 (a) The fatigue hysteresis loops corresponding to different appl...Figure 3.11 (a) The fatigue hysteresis loops of different interface slip cas...Figure 3.12 The undamaged state and five damaged modes of cross‐ply ceramic ...Figure 3.13 (a) The fatigue hysteresis loops of different interface cases; (...Figure 3.14 (a) The fatigue hysteresis loops of different interface cases; (...Figure 3.15 (a) The fatigue hysteresis loops of matrix cracking mode 3, mode...Figure 3.16 (a) The fatigue hysteresis loops of different interface cases; (...Figure 3.17 (a) The experimental and predicted fatigue hysteresis loops; (b)...Figure 3.18 (a) The experimental and predicted fatigue hysteresis loops; (b)...Figure 3.19 (a) The experimental and predicted fatigue hysteresis loops; (b)...Figure 3.20 (a) The experimental and predicted fatigue hysteresis loops; (b)...Figure 3.21 (a) The experimental and predicted fatigue hysteresis loops; (b)...Figure 3.22 (a) The experimental and predicted fatigue hysteresis loops; (b)...Figure 3.23 The tensile fatigue life
S –
N curve of 2.5D C/SiC composite at ro...Figure 3.24 (a) The experimental and predicted fatigue hysteresis loops; (b)...Figure 3.25 The tensile fatigue life
S –
N curve of 2.5D C/SiC composite at 80...Figure 3.26 (a) The experimental and predicted fatigue hysteresis loops; (b)...Figure 3.27 (a) The experimental and predicted fatigue hysteresis loops; (b)...
4 Chapter 4Figure 4.1 (a) The experimental fatigue hysteresis dissipated energy versus ...Figure 4.2 (a) The interface shear stress versus cycle number curve; and (b)...Figure 4.3 (a) The experimental fatigue hysteresis dissipated energy versus ...Figure 4.4 (a) The interface shear stress versus cycle number curve; and (b)...Figure 4.5 (a) The fatigue hysteresis dissipated energy versus cycle number ...Figure 4.6 (a) The interface shear stress versus cycle number curve; and (b)...Figure 4.7 (a) The interface shear stress versus cycle number curve; and (b)...Figure 4.8 (a) The interface shear stress versus cycle number curve; and (b)...Figure 4.9 (a) The experimental fatigue hysteresis dissipated energy versus ...Figure 4.10 (a) The interface shear stress versus cycle number curve; and (b...Figure 4.11 (a) The experimental fatigue hysteresis dissipated energy versus...Figure 4.12 (a) The interface shear stress versus cycle number curve; and (b...Figure 4.13 (a) The experimental fatigue hysteresis dissipated energy versus...Figure 4.14 (a) The interface shear stress versus cycle number curve; and (b...Figure 4.15 (a) The experimental fatigue hysteresis dissipated energy versus...Figure 4.16 (a) The interface shear stress versus cycle number curve; and (b...Figure 4.17 (a) The experimental fatigue hysteresis dissipated energy versus...Figure 4.18 (a) The interface shear stress versus cycle number curve; and (b...Figure 4.19 (a) The experimental fatigue hysteresis dissipated energy versus...Figure 4.20 (a) The interface shear stress versus cycle number curve; and (b...Figure 4.21 (a) The experimental fatigue hysteresis dissipated energy versus...Figure 4.22 (a) The interface shear stress versus cycle number curve; and (b...Figure 4.23 (a) The experimental fatigue hysteresis dissipated energy versus...Figure 4.24 (a) The interface shear stress versus cycle number curve; and (b...Figure 4.25 The interface shear stress versus applied cycle number of unidir...Figure 4.26 The interface shear stress versus cycle number curves of C/SiC a...
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2 Table of Contents
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Interfaces of Ceramic-Matrix Composites
Design, Characterization and Damage Effects
Longbiao Li

Author
Prof. Longbiao Li
Nanjing University of Aeronautics and
Astronaut
College of Civil Aviation
No. 29 Yudao St.
210016 Nanjing
China
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