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Fatigue Crack Growth Rate in SiC Fiber Reinforced Titanium Matrix Composites
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    Abstract:

    SiC fiber reinforced Ti-6Al-4V composites (TMCs) was prepared by the foil-fiber-foil method. The fatigue crack growth rate of the TMCs was investigated under the condition of f=10 Hz, R=0.1 and σmax =300 MPa, and the fracture surface of TMCs was observed by scanning electron microscopy (SEM). Results show that the crack growth rate at the stage Ⅱ of crack propagation is well consistent with Gaussian function. SEM observation indicates that distinct fatigue striations exist in the stable propagation area of the fatigue crack of the Ti-6Al-4V matrix. The failure modes of TMCs include fiber breakage, matrix cracking, fiber/matrix interfacial debonding, et al under the loading condition

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[Wang Haili, Yang Yanqing, Feng Guangha, Luo Xian, Zhang Rongjun, Liu Bin. Fatigue Crack Growth Rate in SiC Fiber Reinforced Titanium Matrix Composites[J]. Rare Metal Materials and Engineering,2012,41(4):635~639.]
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  • Received:April 08,2011
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