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- W2587246012 abstract "This chapter discusses how ceramic matrix composites are ideal candidates to replace the super-alloys that line the hot-section of aero engines due to their high-temperature capabilities, environmental stability, low density, and good creep and rupture resistance. Non-destructive evaluation (NDE) techniques, such as electrical resistance (ER) and micro-CT, were used to evaluate damage in CMCs due to foreign object impact. Understanding how curvature affects FOD is important as curved components such as rotating airfoils make their way into turbine engines. ER was measured before and after impact, and the change in electrical resistance was compared to the energy absorbed by the system. Micro-CT was also performed and compared to the optical images obtained from the polished cross-sections of the damaged regions. The damage morphology of each specimen was analyzed using Micro-CT images taken at the National Polymer Innovation Center using a SkyScan 1172 located at the University of Akron. The optical images of the polished specimens allow for greater resolution in order to see the interaction of the crack with the fibers, matrix, and existing porosity." @default.
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- W2587246012 date "2017-02-01" @default.
- W2587246012 modified "2023-09-23" @default.
- W2587246012 title "Influence of Curvature on High Velocity Impact of SIC/SIC Composites" @default.
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- W2587246012 doi "https://doi.org/10.1002/9781119320104.ch12" @default.
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