By William Lau (Ed.)
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Extra info for Advanced Structural and Functional Materials for Protection
D. -S. -S. -H. Shin, "Effects of relative humidity on tribological properties of boron carbide coating against steel," Surface and Coatings Technology, vol. 201, pp. 4230-4235, 2006. Solid State Phenomena Vol. 136  J. E. Doring, R. Vaen, J. Linke, and D. Stover, "Properties of plasma sprayed boron carbide protective coatings for the first wall in fusion experiments," Journal of Nuclear Materials, vol. 307-311, pp. 121-125, 2002.  A. O. Sezer and J. I. Brand, "Chemical vapor deposition of boron carbide," Materials Science and Engineering B, vol.
Doring, R. Vaen, J. Linke, and D. Stover, "Properties of plasma sprayed boron carbide protective coatings for the first wall in fusion experiments," Journal of Nuclear Materials, vol. 307-311, pp. 121-125, 2002.  A. O. Sezer and J. I. Brand, "Chemical vapor deposition of boron carbide," Materials Science and Engineering B, vol. 79, pp. 191-202, 2001.  W. Ensinger, G. Kraft, F. Sittner, K. Volz, K. Baba, and R. Hatada, "Silicon carbide and boron carbide thin films formed by plasma immersion ion implantation of hydrocarbon gases," Surface and Coatings Technology, vol.
The results from the flexural strength have shown that a significant fraction of mechanical strength is restored by the self healing effect of a repair agent stored within the hollow capillaries. The mechanical restored strength of the simple “ self healing” composite gave us confidence that there is a great potential to adopt such self healing mechanism on actual composite parts like in aircraft’s composite structures. Future work is currently ongoing to refine the self healing processes using a different healing agent of a higher environmental stability and longer shelf life, which is equivalent to the working life of an aircraft.
Advanced Structural and Functional Materials for Protection by William Lau (Ed.)