Mechanical properties and behaviour of concrete reinforced with spiral-shaped steel fibres under dynamic splitting tension

Concrete exhibits excellent resistance to compressive forces, but is brittle and weak in tension. Various types of fibres have been investigated by many researchers to improve the ductility and energy absorption capability of concrete materials and structures under static and blast and impact loadin...

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Main Authors: Hao, Y., Hao, Hong
Format: Journal Article
Published: 2016
Online Access:http://purl.org/au-research/grants/arc/DP130104332
http://hdl.handle.net/20.500.11937/15478
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author Hao, Y.
Hao, Hong
author_facet Hao, Y.
Hao, Hong
author_sort Hao, Y.
building Curtin Institutional Repository
collection Online Access
description Concrete exhibits excellent resistance to compressive forces, but is brittle and weak in tension. Various types of fibres have been investigated by many researchers to improve the ductility and energy absorption capability of concrete materials and structures under static and blast and impact loadings. Spiral-shaped steel fibres were recently proposed as reinforcement in a concrete matrix and it was found that spiral fibre reinforcement can significantly improve the ductility, crack control ability and energy absorption capacity of concrete material under static and impact compressive loads. This paper presents an experimental study of the static and dynamic properties of steel fibre reinforced concrete (SFRC) materials under splitting tension. SFRC materials mixed with spiral-shaped steel fibres of different volume fractions were prepared and tested. A high-speed camera was used to capture the deformation, failure and crack opening process of the tested specimens. The contribution of spiral fibres to the mechanical properties and behaviour of concrete at high strain rate under splitting tension was investigated. Analyses of the test results revealed the effectiveness of spiral fibres in improving the performance of SFRC (e.g. crack control, energy absorption capability and more pronounced rate sensitivity under dynamic splitting loading). Moreover, crack opening and closing (pull-back by spiral fibres) processes were observed, demonstrating the excellent bonding and outstanding performance of spiral steel fibres in maintaining the integrity of the concrete material, thus resulting in significant improvements in impact resistance and energy dissipation.
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spelling curtin-20.500.11937-154782022-10-12T02:36:21Z Mechanical properties and behaviour of concrete reinforced with spiral-shaped steel fibres under dynamic splitting tension Hao, Y. Hao, Hong Concrete exhibits excellent resistance to compressive forces, but is brittle and weak in tension. Various types of fibres have been investigated by many researchers to improve the ductility and energy absorption capability of concrete materials and structures under static and blast and impact loadings. Spiral-shaped steel fibres were recently proposed as reinforcement in a concrete matrix and it was found that spiral fibre reinforcement can significantly improve the ductility, crack control ability and energy absorption capacity of concrete material under static and impact compressive loads. This paper presents an experimental study of the static and dynamic properties of steel fibre reinforced concrete (SFRC) materials under splitting tension. SFRC materials mixed with spiral-shaped steel fibres of different volume fractions were prepared and tested. A high-speed camera was used to capture the deformation, failure and crack opening process of the tested specimens. The contribution of spiral fibres to the mechanical properties and behaviour of concrete at high strain rate under splitting tension was investigated. Analyses of the test results revealed the effectiveness of spiral fibres in improving the performance of SFRC (e.g. crack control, energy absorption capability and more pronounced rate sensitivity under dynamic splitting loading). Moreover, crack opening and closing (pull-back by spiral fibres) processes were observed, demonstrating the excellent bonding and outstanding performance of spiral steel fibres in maintaining the integrity of the concrete material, thus resulting in significant improvements in impact resistance and energy dissipation. 2016 Journal Article http://hdl.handle.net/20.500.11937/15478 10.1680/jmacr.15.00372 http://purl.org/au-research/grants/arc/DP130104332 fulltext
spellingShingle Hao, Y.
Hao, Hong
Mechanical properties and behaviour of concrete reinforced with spiral-shaped steel fibres under dynamic splitting tension
title Mechanical properties and behaviour of concrete reinforced with spiral-shaped steel fibres under dynamic splitting tension
title_full Mechanical properties and behaviour of concrete reinforced with spiral-shaped steel fibres under dynamic splitting tension
title_fullStr Mechanical properties and behaviour of concrete reinforced with spiral-shaped steel fibres under dynamic splitting tension
title_full_unstemmed Mechanical properties and behaviour of concrete reinforced with spiral-shaped steel fibres under dynamic splitting tension
title_short Mechanical properties and behaviour of concrete reinforced with spiral-shaped steel fibres under dynamic splitting tension
title_sort mechanical properties and behaviour of concrete reinforced with spiral-shaped steel fibres under dynamic splitting tension
url http://purl.org/au-research/grants/arc/DP130104332
http://hdl.handle.net/20.500.11937/15478