Uneingeschränkter Zugang

Research on the application of information technology modeling based concrete reinforcement construction for bridge projects


Zitieren

Kang, S. B., & Tan, K. H. (2017). Progressive collapse resistance of precast concrete frames with discontinuous reinforcement in the joint. Journal of Structural Engineering, 143(9), 04017090.1-04017090.13. Search in Google Scholar

Elsener, B., Fantauzzi, M., & Rossi, A. (2022). Stainless steels as sustainable solution for concrete reinforcement - from laboratory to practice. Key Engineering Materials, 919. Search in Google Scholar

Raghu, B. U., & Kondraivendhan, B. (2020). Corrosion performance of steel reinforcement in concrete admixed with magnesium chloride and sulphate. Anti-Corrosion Methods and Materials, 67(1), 106-118. Search in Google Scholar

Kopylov, V., & Burenina, O. (2023). Mineral fillers influence on structure formation and properties of asphalt concrete. Materials Science Forum, 1082, 254 - 258. Search in Google Scholar

Wang, Wei, Aiqun, & Xingxing. (2018). Seismic performance of precast concrete shear wall structure with improved assembly horizontal wall connections. BULLETIN OF EARTHQUAKE ENGINEERING. Search in Google Scholar

Yang, K., Wang, H., & Liu, Z. (2021). Evaluation on mechanical properties of high-performance biocomposite bridge deck structure: a review. Polymer Composites. Search in Google Scholar

Shen, L., Soliman, M., & Ahmed, S. A. (2021). A probabilistic framework for life-cycle cost analysis of bridge decks constructed with different reinforcement alternatives. Engineering structures (245-Oct.15). Search in Google Scholar

Liu, Z., Yu, T., & Zhang, L. (2020). Study on the effect of load level and carriageway slab thickness on fatigue performance of concrete t-girder bridges. International Journal of Structural Integrity, ahead-of-print (ahead-of-print). Search in Google Scholar

Rivard, M. S. (2019). Responding--or not--to information technology project risks: an integrative model. MIS Quarterly. Search in Google Scholar

Jeong, S., Hou, R., Lynch, J. P., Sohn, H., & Law, K. H. (2017). An information modeling framework for bridge monitoring. Advances in Engineering Software, 114(dec.), 11-31. Search in Google Scholar

A, X. Z., & C, X. Z. B. (2019). Thoughts on the development of bridge technology in china - sciencedirect. Engineering, 5(6), 1120-1130. Search in Google Scholar

Sun, B., Xiao, R. C., Ruan, W. D., & Wang, P. B. (2020). Corrosion-induced cracking fragility of rc bridge with improved concrete carbonation and steel reinforcement corrosion models. Engineering structures (Apr.1), 208. Search in Google Scholar

Vida, R., & Halvonik, J. (2017). Shear assessment of concrete bridge deck slabs. Key Engineering Materials, 738, 110-119. Search in Google Scholar

Zhang, H. L., & Pei, C. C. (2017). Flexural properties of steel fiber types and reinforcement ratio for high-strength recycled concrete beams. Advances in Structural Engineering, 20(10), 136943321668319. Search in Google Scholar

Marchment, T., & Sanjayan, J. (2022). Lap joint reinforcement for 3d concrete printing. Journal of Structural Engineering (6), 148. Search in Google Scholar

Gebhard, L., Jaime Mata-Falcón, Anton, A., Dillenburger, B., & Kaufmann, W. (2021). Structural behaviour of 3d printed concrete beams with various reinforcement strategies. Engineering Structures, 240, 112380. Search in Google Scholar

Aflakisamani, M., Mousa, S., Mohamed, H. M., Ahmed, E. A., & Benmokrane, B. (2023). Structural behavior of bridge deck slabs made with gfrp-reinforced lightweight self-consolidating concrete. Journal of Bridge Engineering. Search in Google Scholar

eISSN:
2444-8656
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
Volume Open
Fachgebiete der Zeitschrift:
Biologie, andere, Mathematik, Angewandte Mathematik, Allgemeines, Physik