The stress intensity of mixed mode cracks determined by digital image correlation

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Abstract

A generalized approach for determining the stress intensity factors (SIFs) KI and KII for any mode mixity directly from displacement fields obtained by digital image correlation is presented using a centre fatigue cracked aluminium plate as an example problem. It was found that the crack-tip position could be determined on average to within 50 per cent of the displacement vector spacing (60 μm). The approach has been shown to be fairly robust, both in terms of the stability of the SIFs thus obtained and their sensitivity (less than 0.07 MPa √m) to the above uncertainty in the crack-tip location. Differences between the nominal and experimentally determined KI and KII values were found to be comparable (around 1.0 MPa √m) for values of KI ranging from 0 to 15 MPa √m and KII from 15 to 0 MPa √m, and may have arisen because the nominal values are not representative of those acting at the real crack tip. © IMechE 2008.

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APA

Lopez-Crespo, P., Shterenlikht, A., Patterson, E. A., Yates, J. R., & Withers, P. J. (2008). The stress intensity of mixed mode cracks determined by digital image correlation. Journal of Strain Analysis for Engineering Design, 43(8), 769–780. https://doi.org/10.1243/03093247JSA419

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