Open Access
Issue |
MATEC Web Conf.
Volume 350, 2021
Research, Design & Cad in Con-struction: Theory and Practice (RDCAD 2021)
|
|
---|---|---|
Article Number | 00001 | |
Number of page(s) | 7 | |
DOI | https://doi.org/10.1051/matecconf/202135000001 | |
Published online | 02 December 2021 |
- M. Yu. Oshchepkov. Union of Science and Production in the Belarusian Composites Industry. 2, 34–41 (2018) [Google Scholar]
- E. Ya. Sadin. Anchoring in concrete of fiberglass reinforcement produced in the Republic of Belarus 3, 68–71 (2016) [Google Scholar]
- V. V. Tur. Reinforced Concrete Structure. Basis of Design. (2018) [Google Scholar]
- V. G. Barsukov, A.R. Volik, A.A. Maruk. Influence of reinforcement made of composite materials on the position of the neutral layer during bending of asymmetrically reinforced concrete beams Vol. 9, № 1,. 117–125 (2019) [Google Scholar]
- A. R. Volik, S. A. Sazon, K. Yu. Churilo. Peculiarities of tensile tests of composite reinforcement Series 6 Technique, Vol 10, № 1, 110–118 (2020) [Google Scholar]
- A. R. Volik, S. A. Sazon Experience and current trends in the production of construction composite reinforcement Series 6Technique, Vol. 11. № 1. 133-141 (2021) [Google Scholar]
- V. F. Stepanova, A.Yu. Stepanov, E.P. Zhirkov. Composite polymer reinforcement (2013) [Google Scholar]
- V. F. Stepanova, D. A. Ilyin, A. V. Buchkin. Hybrid composite reinforcement with increased modulus of elasticity. Natural and technical sciences, No. 9-10, 435-437 (2014) [Google Scholar]
- Ya. A. Pronozin, V. F. Bai, Yu. V. Zazulya, R. V. Melnikov. Application of nonmetallic materials as the main reinforcement of concrete bending elements, 7, 60–61. (2009) [Google Scholar]
- Yi. Cui, Moe M. S. Cheung, B. Noruziaan, S. Lee, Jie Tao Development of ductile composite reinforcement bars for concrete structures, 1509–1518 (2008) [Google Scholar]
- F. Matthews. Composite Materials: Mechanics and Technology, (2004) [Google Scholar]
- O. Chaallal, B. Benmokrane Fiber-reinforced plastic rebars for concrete applications, 245–252 (1996) [Google Scholar]
- H. He, K. Li, F. Gao Improvement of the bonding between carbon fibers and an epoxy matrix using a simple sizing process with a novolac resin., 87–92 (2016). [Google Scholar]
- F. Micelli, A. Nanni, Durability of FRP rods for concrete structures. Constr Build Mater 18, 491–503. (2004) [CrossRef] [Google Scholar]
- M. G. Bader, P. W. Manders The strength of hybrid glass/carbon fiber composites, part 1: failure strain enhancement and failure mode. 16, 2233–2245. (1981) [Google Scholar]
- C. E. Bakis, A. Nanni, J. A. Terosky Self-monitoring, pseudo-ductile, hybrid FRP reinforcement rods for concrete applications. 61, 815–823 (2001) [Google Scholar]
- A. R. Bunsell, B. Harris Hybrid carbon and glass fiber composites. Composites 5, pp. 157–164 (1974) [CrossRef] [Google Scholar]
- G. Kretsis A Review of the tensile, compressive, flexural, and shear properties of hybrid fiber-reinforced plastics. Composites 18, 13–23. (1987) [CrossRef] [Google Scholar]
- A. Nanni, J. S. Nenniger, K. D. Ash, J. Liu. Experimental bond behavior of hybrid rods for concrete reinforcement. 339–353 (1997) [Google Scholar]
- A. Nanni, J. Liu. Modeling of bond behavior of hybrid rods for concrete reinforcement. 5 (4), 355–368. (1997) [Google Scholar]
- V. G. Barsukov, A. R. Volik, S. A. Sazon. Structural and Mechanical Aspect of Composite Reinforcement Strength (ICBTE 2020) October 29-30, 2020, Brest, Belarus E3S Web Conf. Vol. 212, (2020) [Google Scholar]
- B. Jarek, A. Kubik Application of glass fiber reinforcing bars (GFRP) in construction, 12, 21–26 (2015) [Google Scholar]
- V. M. Kenko. Nonmetallic materials and methods of their processing, (1998) [Google Scholar]
- V. G. Barsukov, Yu. M. Dal, R. A. Lubovskaya, V. V. Barsukov. Calculated estimation of thermoelastic stresses in the vicinity of fibrous and dispersed fillers in composites based on fluoroplastics Series 6 Technique, Vol. № 2 (204) 6–13 (2015) [Google Scholar]
- Influence of chemical shrinkage of the binder during curing on the formation of residual stresses in cylindrical shells made of composite. Release. 31 67–72 (2016) [Google Scholar]
- B. V. Minenkov, Strength of plastic parts, (1977) [Google Scholar]
- S. Dong-Woo, K. Park, Y. You, S. Lee. Experimental investigation for tensile performance of FFRP-steel hybridized rebar Advances in materials science and engineering, (2016) [Google Scholar]
- D. A. Hernandez, C. A. Soufen, M. O. Orlandi. Carbon Fiber Reinforced Polymer and Epoxy Adhesive Tensile Test Failure Analysis Using Scanning Electron Microscopy Vol.20 No.4 ( 2017) [Google Scholar]
- V. Carvelli, G. Fava, M. Pisani. Anchor system for tension testing of large diameter GFRP bars 2009, 344–349 (2009) [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.