PSI - Issue 61

Orhun Bulut et al. / Procedia Structural Integrity 61 (2024) 3–11

11

O. Bulut et al. / Structural Integrity Procedia 00 (2024) 000–000

9

Cheng, J., Tu, X., Ghosh, S., 2020. Wavelet-enriched adaptive hierarchical FE model for coupled crystal plasticity-phase field modeling of crack propagation in polycrystalline microstructures. Computer Methods in Applied Mechanics and Engineering 361, 112757. Cuddihy, M.A., Stapleton, A., Williams, S., Dunne, F.P., 2017. On cold dwell facet fatigue in titanium alloy aero-engine components. International Journal of Fatigue 97, 177–189. De Lorenzis, L., McBride, A., Reddy, B.D., 2016. Phase-field modelling of fracture in single crystal plasticity. GAMM-Mitteilungen 39, 7–34. Dunne, F.P., Rugg, D., Walker, A., 2007. Lengthscale-dependent, elastically anisotropic, physically-based hcp crystal plasticity: Application to cold-dwell fatigue in Ti alloys. International Journal of Plasticity 23, 1061–1083. Evans, W.J., Bache, M.R., 1994. Dwell-sensitive fatigue under biaxial loads in the near-alpha titanium alloy IMI685. International Journal of Fatigue 16, 443–452. Evans, W.J., Gostelow, C.R., 1979. The e ff ect of hold time on the fatigue properties of a β -processed titanium alloy. Metallurgical transactions A 10, 1837–1846. Francfort, G.A., Marigo, J.J., 1998. Revisiting brittle fracture as an energy minimization problem. Journal of the Mechanics and Physics of Solids 46, 1319–1342. Ghosh, S., Mills, M., Rokhlin, S., Sinha, V., Soboyejo, W., Williams, J., 2007. The evaluation of cold dwell fatigue in Ti-6242 . Gu¨nay, E., Bulut, O., Yalc¸inkaya, T., 2023. Examination of intrinsic and extrinsic size e ff ect in thin specimens through crystal plasticity frameworks. Materials Research Proceedings 28, 1471–1480. Hasija, V., Ghosh, S., Mills, M.J., Joseph, D., 2003. Modeling deformation and creep in Ti-6Al alloys with experimental validation. Acta Mater 51, 4533–4549. Le Biavant, K., Pommier, S., Prioul, C., 2002. Local texture and fatigue crack initiation in a Ti-6Al-4V titanium alloy. Fatigue & Fracture of Engineering Materials & Structures 25, 527–545. Liu, Y., Adande, S., Britton, T.B., Dunne, F.P., 2021. Cold dwell fatigue analyses integrating crystal-level strain rate sensitivity and microstructural heterogeneity. International Journal of Fatigue 151, 106398. Maloth, T., Ghosh, S., 2023. Coupled crystal plasticity phase-field model for ductile fracture in polycrystalline microstructures. International Journal for Multiscale Computational Engineering 21, 1–19. McBagonluri, F., Akpan, E., Mercer, C., Shen, W., Soboyejo, W.O., 2005. An investigation of the e ff ects of microstructure on dwell fatigue crack growth in Ti-6242. Materials Science and Engineering: A 405, 111–134. Miehe, C., Welschinger, F., Hofacker, M., 2010. Thermodynamically consistent phase-field models of fracture: Variational principles and multi-field FE implementations. International journal for numerical methods in engineering 83, 1273–1311. Navidtehrani, Y., Betego´n, C., Mart´ınez-Pan˜eda, E., 2021. A simple and robust Abaqus implementation of the phase field fracture method. Appli cations in Engineering Science 6, 100050. Ozturk, D., Kotha, S., Pilchak, A.L., Ghosh, S., 2019. Two-way multi-scaling for predicting fatigue crack nucleation in titanium alloys using parametrically homogenized constitutive models. Journal of the Mechanics and Physics of Solids 128, 181–207. Peirce, D., Asaro, R.J., Needleman, A., 1982. An analysis of nonuniform and localized deformation in ductile single crystals. Acta Metallurgica 30, 1087–1119. Sinha, S., Ghosh, S., 2006. Modeling cyclic ratcheting based fatigue life of HSLA steels using crystal plasticity FEM simulations and experiments. International Journal of Fatigue 28, 1690–1704. Teichtmeister, S., Kienle, D., Aldakheel, F., Keip, M.A., 2017. Phase field modeling of fracture in anisotropic brittle solids. International Journal of Non-Linear Mechanics 97, 1–21. Venkatramani, G., Ghosh, S., Mills, M.J., 2007. A size-dependent crystal plasticity finite-element model for creep and load shedding in polycrys talline titanium alloys. Acta Materialia 55, 3971–3986. Waseem, S., Erdogan, C., Yalc¸inkaya, T., 2024. Phase field modeling of fatigue crack growth retardation under single cycle overloads. International Journal of Fatigue 179, 108064. Yalc¸inkaya, T., O¨ zdemir, ˙I., Firat, A.O., 2019. Inter-granular cracking through strain gradient crystal plasticity and cohesive zone modeling approaches. Theoretical and Applied Fracture Mechanics 103, 102306. Yalc¸inkaya, T., Tandog˘an, ˙I.T., O¨ zdemir, ˙I., 2021. Void growth based inter-granular ductile fracture in strain gradient polycrystalline plasticity. International Journal of Plasticity 147, 103123. Zheng, Z., Balint, D.S., Dunne, F.P., 2017. Mechanistic basis of temperature-dependent dwell fatigue in titanium alloys. Journal of the Mechanics and Physics of Solids 107, 185–203.

Made with FlippingBook Digital Publishing Software