kw.\*:("Crack")
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Experimental investigation of crack growth direction in multiple cracksGOPE, P. C; THAKUR, A.Fatigue & fracture of engineering materials & structures (Print). 2011, Vol 34, Num 10, pp 804-815, issn 8756-758X, 12 p.Article
Crack initiation and growth in contact problemsGDOUTOS, E. E; DRAKOS, G.Theoretical and applied fracture mechanics. 1985, Vol 3, Num 3, pp 227-232, issn 0167-8442Article
Une approche pour l'étude du mécanisme de la production et de la propagation des fissuresSTRUZHANOV, V. V.Prikladnaâ mehanika i tehničeskaâ fizika. 1986, Num 6, pp 118-123, issn 0869-5032Article
Stable growth of a central crackGDOUTOS, E. E.Theoretical and applied fracture mechanics. 1984, Vol 1, Num 2, pp 139-144, issn 0167-8442Article
Crack opening and closure in fatigueSEHITOGLU, H.Engineering fracture mechanics. 1985, Vol 21, Num 2, pp 329-339, issn 0013-7944Article
Experimental investigation of the effects of artificial wedges on fatigue crack growth and crack closing behavior in annealed SAE1045 steelOKAYASU, Mitsuhiro; ZHIRUI WANG.International journal of fatigue. 2007, Vol 29, Num 5, pp 962-976, issn 0142-1123, 15 p.Article
The effect of shallow cracks on crak tip opening displacementMATSOUKAS, G; COTTERELL, B; MAI, Y.-W et al.Engineering fracture mechanics. 1986, Vol 24, Num 6, pp 837-842, issn 0013-7944Article
Crack propagation under constant amplitude loadingSATISH CHAND; GARG, S. B. L.Engineering fracture mechanics. 1985, Vol 21, Num 1, pp 1-30, issn 0013-7944Article
Determination of through crack opening using geometric functionFETT, T; CASPERS, M; MUNZ, D et al.Theoretical and applied fracture mechanics. 1988, Vol 9, Num 3, pp 249-254, issn 0167-8442Article
Stress-fringe signatures for propagating cracksSMITH, C. W; WIERSMA, S. J.Engineering fracture mechanics. 1986, Vol 23, Num 1, pp 229-236, issn 0013-7944Article
Short crack opening and prediction of fatigue notch factorKHAZHINSKY, G. M.Engineering fracture mechanics. 1994, Vol 47, Num 3, pp 417-422, issn 0013-7944Article
Effect of specimen geometry on ductile initiation CTODi using a direct methodLUO, L. G; QUARRINGTON, A. I; EMBURY, J. D et al.Engineering fracture mechanics. 1988, Vol 31, Num 2, pp 349-356, issn 0013-7944Article
The dependence of mode III fracture initiation toughness on strength and microstructureTSANGARAKIS, N.Engineering fracture mechanics. 1984, Vol 19, Num 5, pp 903-909, issn 0013-7944Article
Initiation, propagation, and kinking of an in-plane crackCHIEN-CHING MA.Journal of applied mechanics. 1988, Vol 55, Num 3, pp 587-595, issn 0021-8936Article
DIFFERENT R-CURVES FOR TWO-AND THREE-DIMENSIONAL CRACKSFETT, Theo; FÜNFSCHILLING, Stefan; HOFFMANN, Michael J et al.International journal of fracture. 2008, Vol 153, Num 2, pp 153-159, issn 0376-9429, 7 p.Article
Griffith's criterion for mixed mode crack propagationZHAO YISHU.Engineering fracture mechanics. 1987, Vol 26, Num 5, pp 683-689, issn 0013-7944Article
Local crack-tip strain approach to fatigue crack propagationFURUYA, Y; SHIMADA, H.Engineering fracture mechanics. 1987, Vol 26, Num 3, pp 349-356, issn 0013-7944Article
An analysis for crack layer stabilitySEHANOBISH, K; BOTSIS, J; MOET, A et al.International journal of fracture. 1986, Vol 32, Num 1, pp 21-33, issn 0376-9429Article
Fatigue crack growth from the standpoint of crack energy densityWATANABE, K.Bulletin of the JSME. 1985, Vol 28, Num 245, pp 2511-2518, issn 0021-3764Article
On some spacecraft fatigue-crack propagation problemsGEDEON, J.Acta astronautica. 1985, Vol 12, Num 4, pp 251-256, issn 0094-5765Article
Study on crack growth behavior in impact fatigue. III: Fatigue crack growth behaviors of 2017-T3 aluminium alloyNAKAYAMA, H; KANAYAMA, Y; SHIKIDA, M et al.Bulletin of the JSME. 1984, Vol 27, Num 234, pp 2599-2604, issn 0021-3764Article
Crack bridging and trapping mechanisms used to toughen brittle matrix compositeKOTOUL, M; VRBKA, J.Theoretical and applied fracture mechanics. 2003, Vol 40, Num 1, pp 23-44, issn 0167-8442, 22 p.Article
Zur gesetzmässigen Einteilung des Rissweges bei Risslängenmessungen unter dynamischer Belastung = Loi analytique pour les subdivisions de parcours de fissures sans équidistance dans les expériences de propagation de fissures = An analytical law for non-equidistance crack path subdivisions in crack propagation experimentsMAKRIS, P. A.Materialprüfung. 1987, Vol 29, Num 1-2, pp 17-18, issn 0025-5300Article
Dynamic photoelastic investigation of two pressurized cracks approaching one anotherSIMHA, K. R. Y; FOURNEY, W. L; BARKER, D. B et al.Engineering fracture mechanics. 1986, Vol 23, Num 1, pp 237-249, issn 0013-7944Article
Estimates of the creep parameter C* in terms of reference stressHYDE, T. H.Journal of strain analysis for engineering design. 1986, Vol 21, Num 2, pp 117-119, issn 0309-3247Article