Static Performances of Timber- and Bamboo-Concrete Composite Beams: A Critical Review of Experimental Results
Author(s): |
Simret T. Deresa
Jinjun Xu Cristoforo Demartino Giovanni Minafò Gaetano Camarda |
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Medium: | journal article |
Language(s): | English |
Published in: | The Open Construction and Building Technology Journal, 18 March 2021, n. 1, v. 15 |
Page(s): | 17-54 |
DOI: | 10.2174/1874836802115010017 |
Abstract: |
The use of composite beams made with traditional concrete and bio-based materials (such as timber and bamboo) is a valuable solution to reduce the environmental impact of the building sector. Timber-Concrete Composite (TCC) beams have been used for decades in structural applications such as new buildings, refurbishment of old timber structures, and bridges. Recently, different researchers suggested composite beams based on engineered bamboo, commonly named Bamboo-Concrete Composite (BCC) beams. This study presents a systematic comparison of structural performances and connection behavior of TCC and BCC beams under short_term static load. TCCs beams are compared to BCC ones using similar shear connectors. The most important aspects of the two composite systems are compared: mechanical behavior of connectors and structural behaviors of full-scale composite beams (e.g., failure modes, connection stiffness, connection shear strength, ultimate load-carrying capacity, maximum deflection and composite efficiency). This comprehensive review indicates that BCC beams have similar or even better structural performances compared with TCC. |
Copyright: | © 2021 Simret T. Deresa, Jinjun Xu, Cristoforo Demartino, Giovanni Minafò, Gaetano Camarda |
License: | This creative work has been published under the Creative Commons Attribution 4.0 International (CC-BY 4.0) license which allows copying, and redistribution as well as adaptation of the original work provided appropriate credit is given to the original author and the conditions of the license are met. |
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10602851 - Published on:
17/04/2021 - Last updated on:
02/06/2021