The Institute of Structural Macromechanics and Materials Science of the Russian Academy of Sciences has improved the technology of manufacturing ceramic parts with silicon carbide. The use of this new material can greatly improve the performance of the engines of automobiles, airplanes and other equipment. Related research reports were published in the "International Ceramics" magazine.
Silicon carbide is widely used in semiconductors, structural materials and abrasives in various industrial fields. Silicon carbide ceramic made of feldspar and quartz sand can withstand huge compressive forces, but it is very sensitive to structural defects, so its tensile strength and bending strength are low, and its crack resistance is not good, which limits its use .
Stepan Volodello, a researcher at the Institute’s Self-Propagating High-Temperature Synthesis Research Center, said: “Silicon carbide ceramics may replace the scarce alloys containing cobalt, nickel and chromium. They can be used to make turbine blades and internal combustion engine parts to improve The operating temperature, power, traction, effective coefficient and ecological nature of the
Stepan Volodello said that it has been possible to improve the performance of silicon carbide ceramic materials by forming reinforced nanofibers. He said that due to the mixed addition of tantalum and polytetrafluoroethylene, a new material has been successfully synthesized with silicon carbide as a matrix and reinforced silicon carbide nanofibers. They activate the sintering of the ceramic and increase the strength of the material because they prevent the propagation of cracks. In addition, due to the formation of nanofibers, the temperature and holding time of the ceramic in the vacuum furnace are significantly reduced.
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