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- W2379071717 abstract "In order to investigate the mechanical behavior and damage evolution process of plain woven silicon carbide composites reinforced by carbon fibers, an experimental study of composites under tensile loading, compress loading and shear loading, respectively was performed. Damage evolution models were presented to disclosure damage evolution law. The influence of compress stress on modulus is inconspicuous. The matrix cracking, interfacial debonding, and fiber bundle fracture are the major compress damage mechanisms. The tensile tests show that damage begins at a stress level of about 45 MPa, and the damage process contains three stages: the first is initial damage stage in which the initial micro-cracks of composite develop; the second is accelerating stage that the new micro-cracks appear and open; the last is decelerating stage that the micro-cracks deflect. The tensile damage behavior includes: matrix micro-cracking, transverse bundle cracking, debonding of fiber/matrix interface, ply delamination and fiber fracture. The damage evolution process under shear loading is different from under tensile loading. The damage process under shear loading only contains accelerating stage and decelerating stage. The matrix cracking, debonding of fiber/matrix interface, and fiber fracture are major shear damage mechanisms. Based on experimental results and statistical analysis, the equations about damage evolution under tensile loading and shear loading were provided." @default.
- W2379071717 created "2016-06-24" @default.
- W2379071717 creator A5029695887 @default.
- W2379071717 date "2010-01-01" @default.
- W2379071717 modified "2023-09-23" @default.
- W2379071717 title "MECHANICAL PROPERTY AND DAMAGE BEHAVIOR OF SILICON CARBIDE COMPOSITES TOUGHENED BY CARBON FIBERS PLAIN-WOVEN" @default.
- W2379071717 hasPublicationYear "2010" @default.
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