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Monotonic tensile behavior analysis of three-dimensional needle-punched woven C/SiC composites by acoustic emission 被引量:1

Monotonic tensile behavior analysis of three-dimensional needle-punched woven C/SiC composites by acoustic emission
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摘要 High toughness and reliable three-dimensional needled C/SiC composites were fabricated by chemical vapor infiltration (CVI). An approach to analyze the tensile behaviors at room temperature and the damage accumulation of the composites by means of acoustic emission was researched. Also the fracture morphology was examined by S-4700 SEM after tensile tests to prove the damage mechanism. The results indicate that the cumulative energy of acoustic emission (AE) signals can be used to monitor and evaluate the damage evolution in ceramic-matrix composites. The initiation of room-temperature tensile damage in C/SiC composites occurred with the growth of micro-cracks in the matrix at the stress level about 40% of the ultimate fracture stress. The level 70% of the fracture stress could be defined as the critical damage strength. High toughness and reliable three-dimensional needled C/SiC composites were fabricated by chemical vapor infiltration (CVI). An approach to analyze the tensile behaviors at room temperature and the damage accumulation of the composites by means of acoustic emission was researched. Also the fracture morphology was examined by S-4700 SEM after tensile tests to prove the damage mechanism. The results indicate that the cumulative energy of acoustic emission (AE) signals can be used to monitor and evaluate the damage evolution in ceramic-matrix composites. The initiation of room-temperature tensile damage in C/SiC composites occurred with the growth of micro-cracks in the matrix at the stress level about 40% of the ultimate fracture stress. The level 70% of the fracture stress could be defined as the critical damage strength.
出处 《Journal of University of Science and Technology Beijing》 CSCD 2008年第3期302-306,共5页 北京科技大学学报(英文版)
基金 the National Natural Science Foundation of China(No.90405015) the National Young Elitist Foundation of China(No.50425208) the Doctorate Foundation of Northwestern Polytechnical University(No.CX200406)
关键词 C/SiC composites tensile behavior DAMAGE damage mechanism acoustic emission C/SiC composites tensile behavior damage damage mechanism acoustic emission
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