PSI - Issue 64

Carmine Lima et al. / Procedia Structural Integrity 64 (2024) 849–856 Lima et al. / Structural Integrity Procedia 00 (2019) 000 – 000

856

8

EN 1994-1-1, 2004. Eurocode 4: Design of composite steel and concrete structures – Part 1-1: General rules and rules for buildings. European Committee for standardization. ICS 91.010.30; 91.080.10; 91.080.40. EN 197-1, 2011. Cement – Part 1: Composition, specifications and conformity criteria for common cements. European Committee for standardization. ICS 91.100.10. EN 12390-3, 2019. Testing hardened concrete – Part 3: Compressive strength of ther specimens. European Committee for standardization. ICS 91.100.30. EN 12390-5, 2019. Testing hardened concrete – Part 3: Flexural strength of ther specimens. European Committee for standardization. ICS 91.100.30. Farzad, M., 2018. Accelerated retrofit of bridge columns using UHPC shell – Phase I: Feasibility Study. M.Sc. Dissertation, Civil & Environmental Engineering Department, Florida International University. Available online at https://abc-utc.fiu.edu/wp-content/uploads/2018/07/Final Report.pdf (retrieved 15.03.2024). FHWA, 2021.a. Ultra-High Performance Concrete for Bridges. Federal Highway Administration. Available online at https://www.fhwa.dot.gov/bridge/abc/uhpc.cfm (retrieved 15.03.2024). FHWA, 2021.b. UHPC for Bridge Preservation and Repair. Federal Highway Administration, Available online at https://www.fhwa.dot.gov/bridge/abc/uhpc.cfm (retrieved 15.03.2024). General Admixture, 2021. Composite M130, HPFRC – High Performance Fiber Reinforced Concrete. Available on line at https://www.gageneral.com/wp-content/uploads/2021/07/COMPOSITE-M130-Scheda-Tecnica.pdf (retrieved 15.03.2024) General Admixture, 2022. Structure Flow SCC, Legante cementizio espansivo ad elevate prestazioni, per il confezionamento di calcestruzzi e betoncini autocompattanti (SCC) a ritiro compensato, malte fluide e boiacche da riempimento (in Italian). Available on line at https://www.gageneral.com/wp-content/uploads/2022/09/STRUCTURE-FLOW-SCC-Scheda-Tecnica.pdf (retrieved 15.03.2024). Graybeal, B., Brühwiler, E., Kim, B.S., Toutlemonde, F., Voo, Y.L., Zaghi, A., 2020. International Perspective on UHPC in Bridge Engineering. Journal of Bridge Engineering, 25(11):04020094. Haber, Z.B., 2021. Improving Bridge Preservation With UHPC. Federal Highway Administration, FHWA-HRT-21-002. Available online at https://highways.dot.gov/public-roads/winter-2021/improving-bridge-preservation-uhpc (retrieved 15.03.2024). Hu, Y., Meloni, M., Cheng, Z., Wang, J., Xiu, H., 2020. Flexural performance of steel-UHPC composite beams with shear pockets. Structures, 27:570-582. Hung, C.C., El-Tawil, S., Chao, S.Ho, 2021. A Review of Developments and Challenges for UHPC in Structural Engineering: Behavior, Analysis, and Design. Journal of Structural Engineering, 147(9). Kim, J.S., Park, S.H., Joh, C., Kwark, J., Choi, E.S., 2013. Push-Out Test on Shear Connectors Embedded in UHPC. Applied Mechanics and Materials, Vols. 351-352: 50-54. Kothari, A., Rajczakowska, M., Buasiri, T., Habermehl-Cwirzen, K., Cwirzen, A., 2020. Eco-UHPC as Repair Material-Bond Strength, Interfacial Transition Zone and Effects of Formwork Type. Materials, 13(24):5778. https://doi.org/10.3390/ma13245778. Kruszewski, D., Wille, K., Zaghi, A.E., 2018.a. Push-out behavior of headed shear studs welded on thin plates and embedded in UHPC. Engineering Structures, 173:429-441. Kruszewski, D., Wille, K., Zaghi, A.E., 2018.b. Design considerations for headed shear studs embedded in ultra-high performance concrete as part of a novel bridge repair method. Journal of Constructional Steel Research, 149:180-194. Martín-Sanz, H., Tatsis, K., Damjanovic, D., Stipanovic, I., Sajna, A., Duvnjak, I., Bohinc, U., Brühwiler, E., Chatzi, E., 2019. Getting More Out of Existing Structures: Steel Bridge Strengthening via UHPFRC. Frontiers in Built Environment, 5, doi: 10.3389/fbuil.2019.00026. Ollgaard, J.G., Slutter, R.G., Fisher, J.W., 1971. Shear strength of stud connectors in lightweight and normal weight concrete. AISC Eng'g Jr., April 1971 (71-10). Fritz Laboratory Reports. Paper 2010. Qi, J., Hu, Y., Wang, J., 2019. Behavior and strength of headed stud shear connectors in ultra-high performance concrete of composite bridges. Frontiers of Structural and Civil Engineering, 13, 1138–1149, https://doi.org/10.1007/s11709-019-0542-6. UHPC Solutions, 2019, Using UHPC to Repair and Strengthen Steel Girders. UHPC SOLUTIONS, North America. Available online at https://www.uhpcsolutions.com/blog/using-uhpc-to-repair-and-strengthen-steel-girders (retrieved 15.03.2024). Wang, J.Y., Guo, J.Y, Jia, L.J., Chen, S.M., Dong, Y., 2017, Push-out tests of demountable headed stud shear connectors in steel-UHPC composite structures. Composite Structures, 170:69-79. Xu, Q., Sebastian, W., Lu, K., Yao, Y., 2022. Parametric Experimental Study of Ultra-Short Stud Connections for Lightweight Steel–UHPC Composite Bridges. Journal of Bridge Engineering, 27(2). Zhang, Y., Cai, S., Zhu, Y., Fan, L., Shao, X., 2020. Flexural responses of steel-UHPC composite beams under hogging moment. Engineering Structures, 206, 110134. Zhang, Y., Zheng, H., Tang, M., He, Z., 2021. An Enhanced UHPC-Grout Shear Connection for Steel-Concrete Composite Bridges with Precast Decks. Advances in Civil Engineering, Article ID 5595174, https://doi.org/10.1155/2021/5595174. Zhao, Q., Huang, G., Xu, C., Peng, Y., 2021. Push-Out Behavior of Short Headed Stud Connectors in Steel-Ultra High Performance Concrete Composite Deck. KSCE Journal of Civil Engineering, 25(7), 2640–2650. doi:10.1007/s12205-021-1568-6. Zhu, Y., Zhang, Y., Hussein, H.H., Cai, S., 2020. Flexural Study on UHPC–Steel Composite Beams with Joints under Negative Bending Moment. Journal of Bridge Engineering, 25(10): 04020084. Zhu, J., Guo, X., Kang, J., Duan, M., Wang, Y., 2021. Experimental Investigation of Flexural Behavior of Steel–UHPC Composite Beam with Waffle-Slab System. Journal Bridge Engineering, 26(4): 04021011. Zmetra, K.M., McMullen, K.F., Zaghi, A.E., Wille, K., 2017. Experimental Study of UHPC Repair for Corrosion-Damaged Steel Girder Ends. Journal of Bridge Engineering, 22(8): 04017037.

Made with FlippingBook Digital Proposal Maker