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J. A. Alvarez

Die folgende Bibliografie enthält alle in dieser Datenbank indizierten Veröffentlichungen, die mit diesem Namen als Autor, Herausgeber oder anderweitig Beitragenden verbunden sind.

  1. Lacalle, R. / Cicero, S. / Alvarez, J. A. / Cicero, R. / Madrazo, V. (2011): On the analysis of the causes of cracking in a wind tower. In: Engineering Failure Analysis, v. 18, n. 7 (Oktober 2011).

    https://doi.org/10.1016/j.engfailanal.2011.02.012

  2. González, P. / Cicero, S. / Alvarez, J. A. / Arroyo, B. (2018): Analysis of stress corrosion cracking in X80 pipeline steel: An approach from the theory of critical distances. In: Procedia Structural Integrity, v. 13 ( 2018).

    https://doi.org/10.1016/j.prostr.2018.12.002

  3. Arroyo, B. / Alvarez, J. A. / Gutiérrez-Solana, F. / Lacalle, R. / Cicero, S. (2020): The role of the testing rate on Small Punch tests for the estimation of fracture toughness in hydrogen embrittlement. In: Procedia Structural Integrity, v. 28 ( 2020).

    https://doi.org/10.1016/j.prostr.2020.10.024

  4. Cicero, S. / Lambrecht, M. / Swan, H. / Arffman, P. / Altstadt, E. / Petit, T. / Obermeier, F. / Arroyo, B. / Alvarez, J. A. / Lacalle, R. (2020): Fracture mechanics testing of irradiated RPV steels by means of sub-sized specimens: FRACTESUS project. In: Procedia Structural Integrity, v. 28 ( 2020).

    https://doi.org/10.1016/j.prostr.2020.10.008

  5. González, P. / Cicero, S. / Peron, M. / Arroyo, B. / Alvarez, J. A. / Berto, F. (2020): Application of the Theory of the Critical Distances based methodology for the analysis of Environmentally Assisted Cracking processes in biomaterials. In: Procedia Structural Integrity, v. 28 ( 2020).

    https://doi.org/10.1016/j.prostr.2020.11.130

  6. Arroyo, B. / Andrea, L. / González, P. / Alvarez, J. A. / Cicero, S. / Lacalle, R. / Fernandez, A. (2020): Application of the incremental step loading technique to Small Punch Tests on S420 steel in acid environments. In: Procedia Structural Integrity, v. 28 ( 2020).

    https://doi.org/10.1016/j.prostr.2020.10.023

  7. Alvarez, J. A. / Lacalle, R. / Arroyo, B. / Sainz-Aja, J. / Sosa, I. / Alonso, C. (2017): Analysis of the environmental degradation effects on the cables of "La Arena" bridge (Spain). In: Procedia Structural Integrity, v. 5 ( 2017).

    https://doi.org/10.1016/j.prostr.2017.07.062

  8. Cicero, S. / Sanchez, M. / Arroyo, B. / Fuentes, J. D. / Alvarez, J. A. (2021): Estimation of the load-bearing capacity of tubular cantilever beams containing through-thickness circumferential U-notches. In: Engineering Structures, v. 229 (Februar 2021).

    https://doi.org/10.1016/j.engstruct.2020.111598

  9. Cicero, S. / Garcia, T. / Alvarez, J. A. / Klimpel, A. / Bannister, A. / Martín-Meizoso, A. (2017): Fatigue behaviour and BS7608 fatigue classes of steels with thermally cut holes. In: Journal of Constructional Steel Research, v. 128 (Januar 2017).

    https://doi.org/10.1016/j.jcsr.2016.08.012

  10. Cicero, S. / Garcia, T. / Alvarez, J. A. / Martín-Meizoso, A. / Bannister, A. / Klimpel, A. (2016): Definition of BS7608 fatigue classes for structural steels with thermally cut edges. In: Journal of Constructional Steel Research, v. 120 (April 2016).

    https://doi.org/10.1016/j.jcsr.2016.02.004

  11. Valiente, A. / Elices, M. / Ruiz, J. / Alvarez, J. A. / Gutiérrez-Solana, F. / González, J. / Belzunce, F. J. / Rodríguez, C. (1999): Fracture assessment of a high strength structural steel on the basis of Eurocode 3. In: Materials and Structures, v. 32, n. 2 (März 1999).

    https://doi.org/10.1007/bf02479442

  12. Cicero, S. / Garcia, T. / Alvarez, J. A. / Bannister, A. / Klimpel, A. / Martín-Meizoso, A. / Aldazabal, J. (2016): Fatigue behaviour of structural steels with oxy-fuel, plasma and laser cut straight edges. Definition of Eurocode 3 FAT classes. In: Engineering Structures, v. 111 (März 2016).

    https://doi.org/10.1016/j.engstruct.2015.12.004

  13. Terán-Guillén, J. / Cicero, S. / Garcia, T. / Alvarez, J. A. / Martínez-Madrid, M. / Pérez-Quiroz, J. T. (2014): Structural integrity assessment of the cast steel upper anchorage elements used in a cable stayed bridge. In: Engineering Structures, v. 81 (Dezember 2014).

    https://doi.org/10.1016/j.engstruct.2014.10.018

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