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Rehabilitation and retrofitting of structures through external bonding of thin carbon fiber sheets
Meier, U. (1996). Rehabilitation and retrofitting of structures through external bonding of thin carbon fiber sheets. In ECCM-7. Seventh European conference on composite materials. Realising their commercial potential. Volume 2. Composites: testing and standarisation -3, designing with composites, fibres and textiles for composites, biocomposites (p. 301). Woodhead Publishing.
CFRP finds use in cable support for bridge
Meier, U., & Meier, H. (1996). CFRP finds use in cable support for bridge. Modern Plastics, 73(4), 87-88.
Membranes for the future
Meier, U. (2012). Membranes for the future. In M. Spina & M. Gow (Eds.), Material beyond materials. Composite tectonics (pp. 50-53). SCI-Arc Publications.
Non finito: challenges in rehabilitation
Meier, U. (2012). Non finito: challenges in rehabilitation. In M. N. Fardis (Ed.), Innovative materials and techniques in concrete construction. ACES workshop (pp. 1-16). https://doi.org/10.1007/978-94-007-1997-2_1
Proposal for a carbon fibre reinforced composite bridge across the Strait of Gibraltar at its narrowest site
Meier, U. (1987). Proposal for a carbon fibre reinforced composite bridge across the Strait of Gibraltar at its narrowest site. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 201(2), 73-78. https://doi.org/10.1243/PIME_PROC_1987_201_048_02
Topic 2 designing and producing materials by combination
Meier, U. (1988). Topic 2 designing and producing materials by combination. Materials and Structures, 21(2), 85-89. https://doi.org/10.1007/BF02472839
Câbles à base de fibres de carbone pour les ponts
Meier, U. (2006). Câbles à base de fibres de carbone pour les ponts. Textiles à usages techniques, 63, 26-33.
Architecture et ingénierie des ponts. Architecture and bridge engineering.
Meier, U. (2006). Architecture et ingénierie des ponts. Architecture and bridge engineering. Textiles à usages techniques, 62, 19-25.
Experimental study of fatigue and fracture behavior of carbon fiber-reinforced polymer (CFRP) straps
Gao, J., Xu, P., Fan, L., Li, J., Terrasi, G. P., & Meier, U. (2022). Experimental study of fatigue and fracture behavior of carbon fiber-reinforced polymer (CFRP) straps. Polymers, 14(10), 2129 (17 pp.). https://doi.org/10.3390/polym14102129
World's first large bridge fully relying on carbon fiber reinforced polymer hangers
Meier, U. O., Winistörfer, A. U., & Haspel, L. (2021). World's first large bridge fully relying on carbon fiber reinforced polymer hangers. SAMPE journal, 57(1), 22-30.
Carbon fiber reinforced polymer cables: why? why not? what if?
Meier, U. (2012). Carbon fiber reinforced polymer cables: why? why not? what if? Arabian Journal for Science and Engineering, 37(2), 399-411. https://doi.org/10.1007/s13369-012-0185-6
World's first large bridge fully relying on carbon fiber rein-forced polymer hangers
Meier, U. O., Winistörfer, A. U., & Haspel, L. (2020). World's first large bridge fully relying on carbon fiber rein-forced polymer hangers. In Conference 2020 Amsterdam (p. (10 pp.). SAMPE Europe.
Sustainability of carbon fiber-reinforced polymers in construction
Meier, U. (2020). Sustainability of carbon fiber-reinforced polymers in construction. In A. Bumajdad, W. Bouhamra, O. A. Alsayegh, H. A. Kamal, & S. F. Alhajraf (Eds.), Gulf conference on sustainable built environment (pp. 57-75). https://doi.org/10.1007/978-3-030-39734-0_4
Long-term-monitoring of CFRP-cables over almost a quarter of a century
Anderegg, P., Broennimann, R., & Meier, U. (2019). Long-term-monitoring of CFRP-cables over almost a quarter of a century. In SMAR proceedings. Proceedings of SMAR 2019, fifth conference on smart monitoring, assessment and rehabilitation of civil structures (p. (8 pp.).
An update of past visions of fiber reinforced megastructures
Meier, U. (2018). An update of past visions of fiber reinforced megastructures. In IABSE symposium report. 40th IABSE symposium - Tomorrow's megastructures (pp. S8-1-S8-8). International Association for Bridge and Structural Engineering.
Large structures of advanced composites in civil engineering?
Meier, U. O. (2018). Large structures of advanced composites in civil engineering? (pp. 1-8). Presented at the SAMPE Europe Conference 18. .
Fatigue and durability of laminated carbon fibre reinforced polymer straps for bridge suspenders
Baschnagel, F., Terrasi, G. P., Triantafyllidis, Z., & Meier, U. (2018). Fatigue and durability of laminated carbon fibre reinforced polymer straps for bridge suspenders. In Proceedings of the ninth international conference on fibre-reinforced polymer (FRP) composites in civil engineering (CICE 2018) (p. (8 pp.).
Fatigue and durability of laminated carbon fibre reinforced polymer straps for bridge suspenders
Baschnagel, F., Härdi, R., Triantafyllidis, Z., Meier, U., & Terrasi, G. P. (2018). Fatigue and durability of laminated carbon fibre reinforced polymer straps for bridge suspenders. Polymers, 10(2), 169 (14 pp.). https://doi.org/10.3390/polym10020169
EBR strengthening technique for concrete, long-term behaviour and historical survey
Czaderski, C., & Meier, U. (2018). EBR strengthening technique for concrete, long-term behaviour and historical survey. Polymers, 10(1), 77 (17 pp.). https://doi.org/10.3390/polym10010077
Kohlenstofffaserverstärkte thermoplastische Lamellen für die Verstärkung von Betontragwerken
Ulaga, T., & Meier, U. (2002). Kohlenstofffaserverstärkte thermoplastische Lamellen für die Verstärkung von Betontragwerken. Empa-Berichte: Vol. 260. Dübendorf: Empa.
 

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