PSI - Issue 37
R. Baptista et al. / Procedia Structural Integrity 37 (2022) 57–64 Author name / Structural Integrity Procedia 00 (2019) 000 – 000
64 8
Baptista, R. et al. (2018) ‘Fatigue behavior and microstructural characterization of a high strength steel for welded railway rails’, International Journal of Fatigue . Elsevier, 117(January), pp. 1 – 8. Baptista, R., Infante, V. and Marques, J. (2019) ‘Algorithm for automatic fatigue crack growth simulation on welded high strength steels’, Frattura ed Integrità Strutturale , 13(48), pp. 257 – 268. Demir, O. et al. (2018) ‘Evaluation of mixed mode - I/II criteria for fatigue crack propagation using experiments and modeling’, Chinese Journal of Aeronautics , 31(7), pp. 1525 – 1534. Desimone, H. and Beretta, S. (2006) ‘Mechanisms of mixed mode fatigue crack propagation at rail butt - welds’, International Journal of Fatigue , 28(5 – 6), pp. 635 – 642. Erdogan, F. and Sih, G. C. (1963) ‘On the Crack Extension in Plates Under Plane Loading and Transverse Shear’, Journal of Basic Engineering , 85(4), p. 519. Floros, D., Ekberg, A. and Larsson, F. (2019) ‘Evaluation of crack growth direction criteria on mixed - mode fatigue crack growth experiments’, International Journal of Fatigue . Elsevier, 129(April), p. 105075. Huang, C., Chen, T. and Feng, S. (2019) ‘Finite element analysis of fatigue crack growth in CFRP -repaired four- point bend specimens’, Engineering Structures . Elsevier, 183(September 2018), pp. 398 – 407. Infante-García, D. et al. (2019) ‘Analysis of the effect of out -of- phase biaxial fatigue loads on crack paths in cruciform specimens using XFEM’, International Journal of Fatigue . Elsevier, 123(December 2018), pp. 87 – 95. Kim, J. K. and Kim, C. S. (2002) ‘Fatique crack growth behavior of rail steel under mode I and mixed mode loadings’, Materials Science and Engineering A , 338(1 – 2), pp. 191 – 201. Lesiuk, G. et al. (2020) ‘Analysis of fatigue crack growth under mixed mode (I + II) loading conditions in rail steel using CTS specimen’, Engineering Failure Analysis , 109(November 2019). Miao, X. T. et al. (2018) ‘Experimental and numerical investigation on fracture behavior of CTS specimen under I - II mixed mode loading’, European Journal of Mechanics, A/Solids . Elsevier, 72(March), pp. 235 – 244. Qian, J. and Fatemi, A. (1996) ‘MIXED MODE FATIGUE CRACK GROWTH: A LITERATURE SURVEY’, Engineering Fracture Mechanics , 55(6), pp. 969 – 990. Rozumek, D. et al. (2018) ‘Experimental and numerical investigation of mixed mode I + II and I + III fatigue crack growth in S355J0 steel’, International Journal of Fatigue . Elsevier, 113(March), pp. 160 – 170. Xiangqiao, Y., Shanyi, D. and Zehua, Z. (1992) ‘Mixed - mode fatigue crack growth prediction in biaxially stretched sheets’, Engineering Fracture Mechanics , 43(3), pp. 471 – 475. Yu, X., Li, L. and Proust, G. (2017) ‘Fatigue crack growth of aluminium alloy 7075 -T651 under proportional and non-proportional mixed mode I and II loads’, Engineering Fracture Mechanics , 174, pp. 155 – 167.
Made with FlippingBook Ebook Creator