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  5. Tests and design of short steel tubes filled with rubberised concrete

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Article
English
2016

Tests and design of short steel tubes filled with rubberised concrete

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English
2016
Engineering Structures
Vol 112
DOI: 10.1016/j.engstruct.2016.01.018

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Nuno Silvestre
Nuno Silvestre

University of Lisbon

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António P. C. Duarte
B.A. Silva
Nuno Silvestre
+3 more

Abstract

An experimental investigation on the strength and ductility of short steel tubes filled with rubberised concrete (RuC), sourced from recycled scrap tyres, is presented in this paper. Firstly, a brief literature review on (i) concrete-filled steel tubes (CFST) and (ii) mechanical characterisation of rubberised concrete is presented. Then, the experimental investigation is described and test results are shown and discussed, namely, the assessment of (i) RuC and steel mechanical properties and (ii) RuCFST column structural properties. The influence of various parameters, such as the cross-section shape (square, rectangular, circular), steel grade, and concrete mix (standard concrete versus RuC), on the short column strength and ductility is analysed and discussed. Eurocode 4 is considered (i) to determine the strength of the tested columns and, in particular, (ii) to assess its applicability to RuCFST columns based on a comparison with the experimental results. The main conclusion of this research is that RuCFST short columns present higher ductility than those made of standard concrete, even though they also show lower strength. This improved ductility is noticeable in columns with circular sections, rather than in square and rectangular sections. From a practical viewpoint, this could be a major benefit for structures in seismic areas where energy dissipation is needed.

How to cite this publication

António P. C. Duarte, B.A. Silva, Nuno Silvestre, Jorge de Brito, Eduardo Júlio, José Miguel Castro (2016). Tests and design of short steel tubes filled with rubberised concrete. Engineering Structures, 112, pp. 274-286, DOI: 10.1016/j.engstruct.2016.01.018.

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Publication Details

Type

Article

Year

2016

Authors

6

Datasets

0

Total Files

0

Language

English

Journal

Engineering Structures

DOI

10.1016/j.engstruct.2016.01.018

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