李龙彪
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Modeling the Monotonic and Cyclic Tensile Stress-Strain Behavior of 2D and 2.5D Woven C/SiC Ceramic-Matrix Composites
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Affiliation of Author(s):民航学院

Journal:MECHANICS OF COMPOSITE MATERIALS

Key Words:woven ceramic-matrix composites tension matrix multicracking interface debonding fiber failure

Abstract:The deformation of 2D and 2.5 C/SiC woven ceramic-matrix composites (CMCs) in monotonic and cyclic loadings has been investigated. Statistical matrix multicracking and fiber failure models and the fracture mechanics interface debonding approach are used to determine the spacing of matrix cracks, the debonded length of interface, and the fraction of broken fibers. The effects of fiber volume fraction and fiber Weibull modulus on the damage evolution in the composites and on their tensile stress-strain curves are analyzed. When matrix multicracking and fiber/matrix interface debonding occur, the fiber slippage relative to the matrix in the debonded interface region of the 0A degrees warp yarns is the main reason for the emergance of stress-strain hysteresis loops for 2D and 2.5D woven CMCs. A model of these loops is developed, and histeresis loops for the composites in cyclic loadings/unloadings are predicted.

ISSN No.:0191-5665

Translation or Not:no

Date of Publication:2018-05-01

Correspondence Author:llb

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Lecturer

Education Level:南京航空航天大学

Degree:Doctoral Degree in Engineering

School/Department:College of Civil Aviation

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