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Heat activated SMA-CFRP composites for fatigue strengthening of cracked steel plates
Li, L., Chen, T., Gu, X., & Ghafoori, E. (2020). Heat activated SMA-CFRP composites for fatigue strengthening of cracked steel plates. Journal of Composites for Construction, 24(6), 04020060 (13 pp.). https://doi.org/10.1061/(ASCE)CC.1943-5614.0001072
Modeling Bloch waves in prestressed phononic crystal plates
Mazzotti, M., Bartoli, I., & Miniaci, M. (2019). Modeling Bloch waves in prestressed phononic crystal plates. Frontiers in Materials, 6, 74 (9 pp.). https://doi.org/10.3389/fmats.2019.00074
Iron-based shape memory alloy strips for strengthening RC members: Material behavior and characterization
Shahverdi, M., Michels, J., Czaderski, C., & Motavalli, M. (2018). Iron-based shape memory alloy strips for strengthening RC members: Material behavior and characterization. Construction and Building Materials, 173, 586-599. https://doi.org/10.1016/j.conbuildmat.2018.04.057
Short and long-term behaviour of RC slabs strengthened with prestressed CFRP laminate strips
Sena-Cruz, J., Correia, L., França, P., & Michels, J. (2017). Short and long-term behaviour of RC slabs strengthened with prestressed CFRP laminate strips. In IABSE symposium report: Vol. 109. 39th IABSE symposium - engineering the future (pp. 2475-2482). International Association for Bridge and Structural Engineering.
Strengthening of RC beams with iron-based shape memory alloy strips
Shahverdi, M., Czaderski, C., & Motavalli, M. (2015). Strengthening of RC beams with iron-based shape memory alloy strips. In A. Ilki, M. Motavalli, P. Inci, & M. Köhli (Eds.), Proceedings of SMAR 2015 the 3rd conference on smart monitoring, assessment and rehabilitation of civil structures (p. (8 pp.). ITU; Empa.
CFRP-strengthening and long-term performance of fatigue critical welds of a steel box girder
Koller, R. E., Stoecklin, I., Valet, S., & Terrasi, G. P. (2014). CFRP-strengthening and long-term performance of fatigue critical welds of a steel box girder. Polymers, 6(2), 443-463. https://doi.org/10.3390/polym6020443
Optimum piezoelectric patch positioning: a strain energy–based finite element approach
Bachmann, F., Bergamini, A. E., & Ermanni, P. (2012). Optimum piezoelectric patch positioning: a strain energy–based finite element approach. Journal of Intelligent Material Systems and Structures, 23(14), 1575-1591. https://doi.org/10.1177/1045389X12447985
Experiments on the residual load-bearing capacity of prestressed confined concrete columns
Janke, L., Czaderski, C., Ruth, J., & Motavalli, M. (2009). Experiments on the residual load-bearing capacity of prestressed confined concrete columns. Engineering Structures, 31(10), 2247-2256. https://doi.org/10.1016/j.engstruct.2009.04.006
RC beam with variable stiffness and strength
Czaderski, C., Hahnebach, B., & Motavalli, M. (2006). RC beam with variable stiffness and strength. Construction and Building Materials, 20(9), 824-833. https://doi.org/10.1016/j.conbuildmat.2005.01.038