PSI - Issue 2_B
Chernyatin A.S. et al. / Procedia Structural Integrity 2 (2016) 2650–2658 Author name / Structural Integrity Procedia 00 (2016) 000–000
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Lopez-Crespo P, Shterenlikht A, Patterson EA, Withers PJ, Yates JR., 2008. The stress intensity of mixed mode cracks determined by digital image correlation. Journal of Strain Analysis for Engineering Design 43, 769–780. Abanto-Bueno J, Lambros J., 2006. Experimental study of mixed mode crack initiation growth in functionally graded materials. Experimental Mechanics 46, 179. Pataky GJ, Sangid MD, Sehitoglu H, Hamilton RF, Maier HJ, Sofronis P. Full field measurements of anisotropic stress intensity factor ranges in fatigue. Engineering Fracture Mechanics. 2012. Zanganeh M, Lopez-Crespo P, Ta YH, Yates JR., 2013. Locating the crack tip using displacement field data: a comparative study. Strain 49, 102–115 Zhu M-L, Lu Y-W, Lupton C, Tong J., 2015. Near tip strain evolution of a growing fatigue crack. Frattura ed Integrità Strutturale 33, 67–72. Vasco-Olmo JM, Díaz FA., 2015. Experimental evaluation of plasticity-induced crack shielding from crack tip displacements fields. Frattura ed Integrità Strutturale 33, 191–198. Roux S, Hild F., 2006. Stress intensity factor measurements from digital image correlation: post-processing and integrated approaches. International Journal of Fracture 140, 141–157. Lopez-Crespo P, Shterenlikht A, Yates JR, Patterson EA, Withers PJ., 2009. Some experimental observations on crack closure and crack-tip plasticity. Fatigue and Fracture of Engineering Materials and Structures 32, 418–429. Grégoire D, Maigre H, Morestin F., 2009. New experimental techniques for dynamic crack localization. European Journalof Computational Mechanics 18, 255–283. Zhao J, Zhao D, 2012. Evaluation of mixed-mode stress intensity factor of wood from crack-tip displacement fields utilizing digital image correlation. WSEAS Transactions on Applied and Theoretical Mechanics, 8. Delaplace A, Hild F. Digital image correlation techniques applied to post-process discrete modeling. Garcia-Manrique J, Camas D, Lopez-Crespo P, Gonzalez-Herrera A., 2013.Stress intensity factor analysis of through thickness effects. International Journal of Fatigue 46, 58–66. Matvienko Yu.G., 2013. Safety factors in structural integrity assessment of components with defects. International Journal of Structural Integrity 4(4), 457–476. SINTAP. 1999. Structural Integrity Assessment Procedure for European Industry. Project BE95-1426. Final Procedure, British Steel Report, Rotherham. Nelder, J.A., Mead, R., 1965. A Simplex Method for Function Minimization. Computer Journal 7, 308–313. Poli R., Kennedy J., Blackwell T., 2007. Particle swarm optimization. Swarm intelligence 1(1), 33–35 Razumovskii I.A., Chernyatin A.S., 2009. Experimental numerical method of loading estimation for structures with surface cracks. Journal of Machinery Manufacture and Reliability 38(3), 247–253 Razumovskii I.A., Chernyatin A.S., 2011. An experimental and computational method for investigation of residual stresses in two-layer construction members using hole drilling. Journal of Machinery Manufacture and Reliability 40(4), 386–392 Chernyatin A.S., Razumovskii I.A., 2013. Methodology and software package for assessment of stress-strain state parameters of full-scale structures and its application to a study of loading level, defect rate, and residual stress level in elements of NPP equipment. Strength of materials 45(4), 506–511 Chernyatin A.S., Matvienko Y.G., Razumovsky I.A., 2015. A computational tool for estimating stress fields along a surface crack. Fatigue and Fracture of Engineering Materials and Structures 38, 180–189. Nakamura T., Parks D.M., 1992. Determination of elastic T stress along three_dimensional crack fronts using an interaction integral. Int. J. Solids Struct. 29, 1597–1611.
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