Abstract
Self-healing functionality is an important issue of ceramics or ceramic matrix composites used in high temperature and oxidation environment. In this contribution, we reported the cross significant crack self-healing behaviors and mechanism of SiBCN ceramics derived from hyperbranched polyborosilazanes. The self-healing ability of cracks and indention cross sign are enhanced with the increase of oxidation time. And the temperature also influences the healing self-behaviors. The crack healing and indention sign occurred at 1000 °C in air atmosphere. The ceramics with high content of boron show much more obvious self-healing performance because the silicon and boron atoms can be reacted with the available oxygen at high temperature to form SiO2(l), B2O3(l), and B2O3.SiO2. The liquid-like products will fill the crack and prevents the destructive of substrates. The preceramic precursor-derived SiBCN ceramics show good self-healing performance and possess great potential in aeronautics, aerospace, and nuclear power industries. [Figure not available: see fulltext.]
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Liu, F., Kong, J., Luo, C., Ye, F., Luan, X., Tian, N., … Tang, Y. (2018). High temperature self-healing SiBCN ceramics derived from hyperbranched polyborosilazanes. Advanced Composites and Hybrid Materials, 1(3), 506–517. https://doi.org/10.1007/s42114-018-0044-3
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