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Models of Corrosion-Fatigue Crack Growth

Figure 9.13. Comparison of normalized (corrosion) fatigue crack growth rates for solution-treated (ST) and solution-treated plus averages (STOA) Ti-6A1-4V alloy in water vapor with model predictions for pressure dependence at room temperatnre (i = 0.1, / = 5Hz)[6],... Figure 9.13. Comparison of normalized (corrosion) fatigue crack growth rates for solution-treated (ST) and solution-treated plus averages (STOA) Ti-6A1-4V alloy in water vapor with model predictions for pressure dependence at room temperatnre (i = 0.1, / = 5Hz)[6],...
Thomas, J. P., and Wei, R. P., Corrosion Fatigue Crack Growth of Steels in Aqueous Solutions - I. Experimental Results Modeling the Effects of Frequency and Temperature, Matls. Sci. Engr., A159 (1992), 205-221. [Pg.208]

Fig. 16.39 Schematic of the Wei and Landes model for evaluating the crack growth by corrosion-fatigue [42]... Fig. 16.39 Schematic of the Wei and Landes model for evaluating the crack growth by corrosion-fatigue [42]...
The models then propose that the rate of crack growth corresponds either to the sum of pure mechanical fatigue and the rate of stress corrosion cracking or to the... [Pg.462]

The application of microstructural fracture mechanisms (MFMs) has been successfully used to predict the growth of short cracks during fatigue in air [16], These models have been adapted to characterize and predict the uniaxial and multiaxial corrosion fatigue loading [17],... [Pg.463]


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Corrosion Crack Growth Models

Corrosion fatigue

Corrosion fatigue crack

Corrosion fatigue cracking

Crack growth

Cracking modeling

Cracks crack growth

Cracks fatigue cracking

Fatigue cracking

Fatigue cracks

Fatigue growth

Fatigue modeling

Growth modelling

Growth models

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