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Acoustic Emission Characteristic of Ceramic Matrix Composite Under Static Loading

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Advances in Acoustic Emission Technology (WCAE 2017)

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Abstract

The acoustic emission characteristics of ceramic matrix composite under static loading were investigated. The acoustic emission characteristics and the corresponding load ratio were analyzed. The damage mode of the ceramic matrix composite was also analyzed through the AE technology. The experimental results show that lots of AE signals were generated when the ceramic matrix composite is under the action of external load. Besides, it clearly indicated that the AE can be well used as a significant unit for structure health evaluation.

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References

  1. F. Breede, D. Koch, E. Maillet, et al., Modal acoustic emission of damage accumulation in C/C-SiC composites with different fiber architectures. Ceram. Int. 41(9), 12087–12098 (2015)

    Article  Google Scholar 

  2. S. Schmidt, S. Beyer, H. Immich, et al., Ceramic matrix composites: a challenge in space-propulsion technology applications. Int. J. Appl. Ceram. Technol. 2(2), 85–96 (2005)

    Article  Google Scholar 

  3. F. Breede, R. Jemmali, H. Voggenreiter, et al., Design and testing of a C/C-SiC nozzle extension manufactured via filament winding technique and liquid silicon infiltration, in Design, Development, and Applications of Structural Ceramics, Composites, and Nanomaterials: Ceramic Transactions, ed. by D. Singh, vol. 244, (Wiley, Hoboken, NJ, 2014), pp. 1–14

    Google Scholar 

  4. H. Rivers, D. Glass, Advances in hot structure development, in Thermal Protection Systems and Hot Structures, ed. by K. Fletcher, (ResearchGate, Berlin, 2006)

    Google Scholar 

  5. J.D. Corso, B. Cheatwood, et al., Advanced high-temperature flexible TPS for inflatable aerodynamic decelerators, in AIAA Aerodynamic Decelerator Systems Technology Conference and Seminar, ed. by AIAA, (AIAA, Reston, 2011), pp. 139–161

    Google Scholar 

  6. A.R. Brewer, Edgewise Compression Testing of STIPS-0 (Structurally Integrated Thermal Protection System). Technical Report, NASA/CR-2011-217161 (NASA, Hanover, MD, 2011)

    Google Scholar 

  7. D. Zhu, M. Halbig, M. Jaskowiak et al., Property evaluation and damage evolution of environmental barrier coatings and environmental barrier coated SiC/SiC ceramic matrix composite sub-elements, in 38th Annual Conference on Composites, Materials and Structures (2014)

    Google Scholar 

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Acknowledgment

This work was finically supported by the National Science Foundation of China (Grant No. 51605459).

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Correspondence to Denghong Xiao .

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Gao, Y. et al. (2019). Acoustic Emission Characteristic of Ceramic Matrix Composite Under Static Loading. In: Shen, G., Zhang, J., Wu, Z. (eds) Advances in Acoustic Emission Technology. WCAE 2017. Springer Proceedings in Physics, vol 218. Springer, Cham. https://doi.org/10.1007/978-3-030-12111-2_20

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