In this research, to improve the bearing capacity of a soft clay bed, the performance of floating stone columns constructed of recycled aggregates from demolition waste was investigated. For this purpose, a single stone column with three types of materials, including recycled crushed brick (CB), recycled crushed concrete (CC) and gravel as natural aggregates was modelled. Furthermore, the quality of the recycled aggregates used was evaluated by aggregate index tests such as the aggregate crushing value and the aggregate impact value. The results of the recycled aggregate index tests demonstrated a poorer performance of these materials compared to the natural aggregate. Despite this, the bearing capacity of the clay bed reinforced with the floating column, which was filled with CB or CC, was approximately five times the bearing capacity of the unreinforced clay bed. Moreover, the loading results showed that the floating stone columns constructed of a type of aggregate delivered a better performance in comparison with the columns constructed of a combination of several types of recycled aggregates together or a combination of natural and recycled aggregates.
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April 2020
Research Article|
May 31 2019
Use of recycled materials in floating stone columns Available to Purchase
Mohsen Shahverdi;
Mohsen Shahverdi
Graduate student, Faculty of Civil Engineering, Semnan University, Semnan, Iran
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Abdolhosein Haddad
Abdolhosein Haddad
Associate Professor, Faculty of Civil Engineering, Semnan University, Semnan, Iran (corresponding author: haddad@semnan.ac.ir)
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Publisher: Emerald Publishing
Received:
October 27 2018
Accepted:
April 08 2019
Online ISSN: 1747-6518
Print ISSN: 1747-650X
ICE Publishing: All rights reserved
2019
Proceedings of the Institution of Civil Engineers - Construction Materials (2020) 173 (2): 99–108.
Article history
Received:
October 27 2018
Accepted:
April 08 2019
Citation
Shahverdi M, Haddad A (2020), "Use of recycled materials in floating stone columns". Proceedings of the Institution of Civil Engineers - Construction Materials, Vol. 173 No. 2 pp. 99–108, doi: https://doi.org/10.1680/jcoma.18.00086
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