Fractal Dimensions of a Propagating Fatigue Crack in Metallic Materials

JOURNAL OF FAILURE ANALYSIS AND PREVENTION(2021)

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摘要
The application of fracture mechanics for fatigue crack propagation is hampered by the unavailability of the crack geometry factor for numerous structural designs. In this respect, an alternative approach correlating the fractal dimension of the propagating crack with the crack tip driving force is examined. The fatigue crack growth rate behavior of the AISI 410 martensitic stainless steel is established, and the fractal dimension is quantified. The Paris crack growth rate region spans between 16 < ΔK_I < 36 MPam. The fractality of the fatigue crack is established, and the fractal dimension at the various crack lengths is quantified using box-counting method. A linear relationship between the stress intensity factor range, ΔK_I and the fractional fractal dimension, d_ff for crack lengths within the Paris crack growth region, is identified as ΔK_I/K_IC=0.54+2.9d_ff . This eliminates the necessity of the crack geometry factor in determining ΔK_I , thus predicting the fatigue crack growth rate of the structure based on the Paris law.
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关键词
Box-counting method,Fatigue crack growth rate,Fractional fractal dimension,Stress intensity factor range
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