PSI - Issue 5

Jesús Toribio et al. / Procedia Structural Integrity 5 (2017) 1446–1453 Jesús Toribio / Structural Integrity Procedia 00 (2017) 000 – 000

1452

7

Fig. 7. Works by Donatello: Penitent Magdalene and Saint John the Baptist .

Acknowledgements

The authors wish to acknowledge the financial support provided by the following Spanish Institutions: Ministry for Science and Technology (MICYT; Grant MAT2002-01831), Ministry for Education and Science (MEC; Grant BIA2005-08965), Ministry for Science and Innovation (MICINN; Grant BIA2008-06810), Ministry for Economy and Competitiveness (MINECO; Grant BIA2011-27870) and Junta de Castilla y León (JCyL; Grants SA067A05, SA111A07 and SA039A08).

References

BOE, 1991. BOE núm. 290. Resolución 29318 de 20 de noviembre de 1991, de la Universidad de La Coruña, por la que se convoca concurso público para la provisión de diversas plazas de los Cuerpos Docentes Universitarios, p. 39396 . BOE, 1992. BOE núm. 180. Resolución 17861 de 7 de julio de 1992, de la Universidad de La Coruña, por la que se nombra Catedrático de Universidad del área de conocimiento de “Ciencia de los Materiales e Ingeniería Metalúrgica” a D. Jesús Andrés Toribio Quevedo, p. 26007. Costa, J.E., Thompson, A.W., 1982. Hydrogen Cracking in Nominally Pearlitic 1045 Steel. Metallurgical Transactions 13A, 1315-1318. Embury, JD., Fisher, RM., 1966. The Structure and Properties of Drawn Pearlite. Acta Metallurgica 14, 147-159. Gil-Sevillano, J., 1986. Cleavage-Limited Maximum Strength of Work-Hardened B.C.C. Polycrystals. Acta Metallurgical 34, 1473-1485. Thompson, A.W., Chesnutt, J.C., 1979. Identification of a fracture mode: The tearing topography surface. Metallurgical Transactions 10A, 1193 1196. Toribio, J., 1992a. Proyecto Docente Presentado al Concurso para la Provisión de la Plaza 34/1991 (Cuerpo: Catedráticos de Universidad; área de conocimiento de “Ciencia de los Materiales e Ingeniería Metalúrgica”) en la Universidad de La Coruña. Toribio, J., 1992b. On the Intrinsic Character of the Stress-Strain Curve of a Prestressing Steel. Journal of Testing and Evaluation 20, 357-362. Toribio, J., 1992c. Fractographic Evidence of Hydrogen Transport by Diffusion in Pearlitic Steel. Journal of Materials Science Letters 11, 1151 1153. Toribio, J., 1993. Role of Hydrostatic Stress in Hydrogen Diffusion in Pearlitic Steel. Journal of Materials Science 28, 2289-2298. Toribio, J., 1996. Hydrogen-Plasticity Interactions in Pearlitic Steel: A Fractographic and Numerical Study. Materials Science and Engineering A219, 180-191. Toribio, J., 1997. Fracture Mechanics Approach to Hydrogen Assisted Microdamage in Eutectoid Steel. Metallurgical and Materials Transactions 28A, 191-197. Toribio, J., 2000. Fracture, Damage Tolerance and Microstructural Integrity: When Hydrogen is the Circumstance. Anales de Mecánica de la Fractura 17, 175-203. Toribio, J., 2004. Relationship Between Microstructure and Strength in Eutectoid Steels. Materials Science and Engineering A387-389, 227-230. Toribio, J., 2006. Cold Drawn Eutectoid Pearlitic Steel Wires as High Performance Materials in Structural Engineering. Structural Integrity and Health Monitoring 2, 239-247. Toribio, J., 2012. Time-dependent Triaxiality Effects on Hydrogen-assisted Micro-damage Evolution in Pearlitic Steel. ISIJ International 52, 228 233.

Made with FlippingBook - Online catalogs