Issue |
E3S Web Conf.
Volume 455, 2023
First International Conference on Green Energy, Environmental Engineering and Sustainable Technologies 2023 (ICGEST 2023)
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Article Number | 03019 | |
Number of page(s) | 13 | |
Section | Sustainable Technology in Construction | |
DOI | https://doi.org/10.1051/e3sconf/202345503019 | |
Published online | 05 December 2023 |
Implementation of Cement-based nano composite Energy Absorption Damper to improve the damping properties of concrete and monitoring applications
1 School of Civil Engineering, KLE Technological University Hubballi, Karnataka, India
2 Centre for Material Science Department, KLE Technological University Hubballi, Karnataka, India
3 KLE Institute of Technology, Hubballi, Karnataka, India
The energy from the moving seismic waves through a building structure is dispersed by means of dampers. Dampers work by converting the kinetic energy into heat energy, dissipating it into the hydraulic fluid. Damper systems are designed and manufactured to protect structural integrity, reduce structural damage, and prevent injury to people by absorbing energy from earthquakes and minimizing structural deformations. The most effective way to achieve good vibration damping is by tailoring the construction materials such as cement with nanomaterials like Silica, Alumina, Graphene, CNTs, etc. This paper focuses on developing a vibration damper, prepared by cement nanocomposite containing MWCNTs and Carbon fibers. The tests, such as the Impact, Flexural, and Compressive strength tests, are conducted to investigate their energy-absorbing capacity, strength, and durability. The microstructural analysis SEM is performed to know the morphology of concrete mix with MWCNTs and Carbon fibers on damping mechanism. Impact test results indicate that the beams without MWCNTs and CFs exhibited an average energy absorption of 248 J, while those with MWCNTs and CFs absorbed an average energy of 262 J which shows almost 15% more energy absorption. Adding nanomaterials in a cement matrix improves concrete’s frictional damping energy consumption ability and increases structures’ energy-absorbing properties, flexural strength, and compressive strength.
Key words: dampers / energy absorbing / vibration / damping ability / morphology
© The Authors, published by EDP Sciences, 2023
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