Method for predicting high-temperature static fatigue damage evolution of woven ceramic matrix composite material
A technology for composite materials, predictive methods, applied in the direction of analyzing materials, testing material strength using applied stable tension/compression, measuring devices, etc.
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[0082] The static fatigue damage evolution process of braided C / [Si-B-C] ceramic matrix composites under high temperature 1200℃ air environment was predicted.
[0083] Material basic parameters: V f = 40%, r f =3.5μm,E f =220GPa,E m =200GPa,α f =-0.38×10 -6 / °C,α m =-4.6×10 -6 / °C,τ i =15MPa,τ f =3MPa.
[0084] The result is as figure 2 as shown, figure 2 (a) is the high temperature static fatigue hysteresis loop of the composite material, and (b) is the high temperature static fatigue damage evolution curve of the composite material. according to figure 2 It can be seen that the predicted curve obtained by the present invention is very close to the experimental data, indicating that the prediction method provided by the present invention can accurately predict the high temperature static fatigue damage condition of the braided ceramic matrix composite.
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