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Draft Bibliography 399, A.: n.d., Standard Test Method for Plane Strain Fracture Toughness of Metallic Materials, E399–74, Annual Book of ASTM Standards. Anon.: 1985, RILEM Draft Recommendation (50–FCM): Determination of the Fracture Energy of Mortar and Concrete by Means of Three–Point Bend Tests on Notched Beams, Materials and Structures 18, 287–290. Baˇzant, Z.: 1996, Is no tension design of concrete or rock structures always safe?-fracture analysis, ASCE J. of Structural Engineering 122(1), 2–10. Baˇzant, Z. and Prat, P.: 1988, Effect of temperature and humidity on fracture energy of concrete, ACI Materials Journal 85(4), 262–271. British Standards Institution, BS 5447, London: 1977. Broek, D.: 1986, Elementary Engineering Fracture Mechanics, 4th Edition, Martinus Nijhoff Publishers. Carol, I., Baˇzant, Z.P. and Prat, P.C.,: 1992, Microplane type constitutive models for distributed damage and localized cracking in concrete structures, Proc. Fracture Mechanics of Concrete Structures, Elsevier, Breckenridge, CO, pp. 299–304. Chen, W. and Zhang, H.: 1990, Structural Plasticity, Springer-Verlag. Cherepanov, G.: 1979, Mechanics of Brittle Fracture, McGraw-Hill. Erdogan, F. and Sih, G.C.: 1963, On the crack extension in plates under plane loading and transverse shear, Journal of Basic Engineering 85, 519–527. Foreman, R., Kearney, V. and Engle, R.: 1967, Numerical analysis of crack propagation in cyclic-loaded structures, J. of Basic Engineering 89, 459–464. Gdoutos, E.: 1993, Fracture Mechanics; An Introduction, Kluwer Academic Press. Griffith, A.: 1921, The phenomena of rupture and flow in solids, Phil. Trans. Roy. Soc. London A221, 163–197. Hodge, P.: 1959, Plastic Analysis of Structures, McGraw-Hill Book Company, New York. Hudson, C. and Seward, S.: 1978, A Compendium of Sources of Fracture Toughness and Fatigue Crack Growth Data for Metallic alloys, Vol. 14, Int. J. of Fracture. Hudson, C. and Seward, S.: 1982, A compendium of sources of fracture toughness and fatigue crack growth data for metallic alloys, Int. J. of Fracture, Part II 20, R59–R117. Hussain, M., Pu, S. and Underwood, J.: 1974, Strain energy release rate for a crack under combined mode i and mode ii, ASTM, STP 560 pp. 2–28. Irwin, G.: 1957, Analysis of stresses and strains near the end of a crack traversing a plate, Transactions ASME, J. Appl. Mech. Draft 2 BIBLIOGRAPHY Irwin, G.: 1962, The crack extension force for a part through crack in a plate, Transactions ASME, J. Appl. Mech. Kelly, A.: 1974, Strong Solids, second edn, Oxford University Press. Miller, M. and Gallagher, J.: 1981, An analysis of several fatigue crack growth rate (fcgr) descriptions, in S. Hudak Jr. and R. Bucci (eds), Fatigue Crack Growth Measurements and Data Analysis, ASTM STP 738, ASTM, Philadelphia, pp. 205–251. Mostovoy, e. a.: 1967, Use of crack-line loaded specimens for measuring plane strain fracture toughness, J. of Materials 2(3), 661–681. Murakami, Y.: 1987, Stress Intensity Factors Handbook, Pergamon Press. (2 Vols). Newman, J.: 1971, An improved method of collocation for the stress analysis of cracked plates with various shaped boundaries, Technical Report NASA TN D-6376, National Aeronautics and Space Administration, Langley Research Center, Hampton, VA. Newman, J. and Raju, I.: 1981, An emperical stress intensity factor equation for surface cracks, Engi- neering Fracture Mechanics 15, 185–192. Ortiz, M. and Popov, E.: 1985, Accuracy and stability of integration algorithms for elastoplastic consti- tutive relations, Int. J. Num. Meth. Eng. 21, 1561–1576. Ouchterlony, F.: 1982, Fracture toughness testing of rock, Technical report, SveDeFo, Swedish Detonic Research Foundation, Stockholm, Sweden. Ouchterlony, F.: 1986, Suggested methods for determining fracture toughness of rock material, Technical report, International Society for Rock Mechanics, Commission on Testing Methods. Paris, P. and Erdogan, F.: 1963, A critical analysis of crack propagation laws, J. of Basic Engineering, ASME. Rooke, D. and Cartwright, D.: 1976, Compendium of Stress Intensity Factors, HMSO, London. Sih, G., Paris, P. and Irwin, G.: 1965, On cracks in rectilinearly anisotropic bodies, International Journal of Fracture Mechanics. Tada, H., Paris, P. and Irwin, G.: 1973, The Stress Analysis of Cracks Handbook, Del Research Corpo- ration, Hellertown, PA. Walker, E.: 1970, The effect of stress ratio during crack propagation and fatigue for 2024-t3 and 7075-t6 aluminum, in M. Rosenfeld (ed.), Effects of Environment and Complex Load History on Fatigue Life, ASTM STP 462. Westergaard, H.: 1939, Bearing pressures and cracks, J. Appl. Mech. Wheeler, O.: 1972, Spectrum loading and crack growth, J. of Basic Engineering 94, 181–186. Willenborg, J., Engle, R. and Wood, R.: 1971, A crack growth retardation model using an effective stress concept, Technical report, Air Force Flight Dynamics Laboratory Report, AFFDL-TM-71-1-FBR. Victor Saouma Mechanics of Materials II . Toughness of Metallic Materials, E399–74, Annual Book of ASTM Standards. Anon.: 1985, RILEM Draft Recommendation (50–FCM): Determination of the Fracture Energy of Mortar and Concrete by Means of Three–Point. Fracture Mechanics 15, 185–192. Ortiz, M. and Popov, E.: 1985, Accuracy and stability of integration algorithms for elastoplastic consti- tutive relations, Int. J. Num. Meth. Eng. 21, 156 1 157 6. Ouchterlony,. alloys, Vol. 14, Int. J. of Fracture. Hudson, C. and Seward, S.: 1982, A compendium of sources of fracture toughness and fatigue crack growth data for metallic alloys, Int. J. of Fracture, Part II

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