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- W4386403992 abstract "In this chapter, the effect of the fiber/matrix interface properties and pre-exposure on the tensile and fatigue behavior of fiber-reinforced ceramic-matrix composites (CMCs) is investigated. The relationships between the interface properties and the composite tensile and fatigue damage are established. The effects of the interface properties and pre-exposure temperature and time on the first matrix cracking stress, matrix cracking evolution, first and complete interface debonding stress, fatigue hysteresis dissipated energy, fatigue hysteresis modulus, and fatigue hysteresis width, and tensile damage and fracture processes are analyzed. The fatigue life of fiber-reinforced CMCs with different fiber preforms, i.e. unidirectional, cross-ply, 2D, 2.5D, and 3D CMCs at room and elevated temperatures in air and oxidative environment, are predicted using the micromechanics approach. The experimental tensile and fatigue damage of different CMCs are predicted for different interface properties. The fatigue life S–N curves and fatigue limit stress of unidirectional C/SiC, SiC/CAS and SiC/1723, cross-ply C/SiC, SiC/CAS and SiC/1723, 2D C/SiC and SiC/SiC, 2.5D C/SiC, and 3D C/SiC composites are predicted." @default.
- W4386403992 created "2023-09-04" @default.
- W4386403992 date "2020-08-28" @default.
- W4386403992 modified "2023-09-29" @default.
- W4386403992 title "Interface Characterization of Ceramic‐Matrix Composites" @default.
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- W4386403992 doi "https://doi.org/10.1002/9783527828043.ch2" @default.
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