Mechanical Properties and Anti-Spalling Behavior of Ultra-High Performance Concrete with Recycled and Industrial Steel Fibers

Experimental investigations on the mechanical properties of ultra-high performance concrete (UHPC) incorporating two types of recycled steel fiber processed from waste tires and three types of industrial steel fiber were carried out for comparison. Mechanical properties of UHPC include compressive s...

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Main Authors: Juan Yang, Gai-Fei Peng, Guo-Shuang Shui, Gui Zhang
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/12/5/783
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spelling doaj-ce4115c70c954a219b885aff0276e9202020-11-25T03:26:22ZengMDPI AGMaterials1996-19442019-03-0112578310.3390/ma12050783ma12050783Mechanical Properties and Anti-Spalling Behavior of Ultra-High Performance Concrete with Recycled and Industrial Steel FibersJuan Yang0Gai-Fei Peng1Guo-Shuang Shui2Gui Zhang3Faculty of Civil Engineering, Beijing Jiaotong University, Beijing 100044, ChinaFaculty of Civil Engineering, Beijing Jiaotong University, Beijing 100044, ChinaFaculty of Civil Engineering, Beijing Jiaotong University, Beijing 100044, ChinaFaculty of Civil Engineering, Beijing Jiaotong University, Beijing 100044, ChinaExperimental investigations on the mechanical properties of ultra-high performance concrete (UHPC) incorporating two types of recycled steel fiber processed from waste tires and three types of industrial steel fiber were carried out for comparison. Mechanical properties of UHPC include compressive strength, splitting tensile strength, fracture energy, and elastic modulus. Their explosive spalling behaviors under high temperatures were also investigated. The results show that all types of steel fiber exhibit a beneficial effect on the mechanical properties and the anti-spalling behavior of UHPC, except that recycled steel fiber with rubber attached (RSFR) has a slightly negative effect on the compressive strength of UHPC. Compared to industrial steel fibers, recycled steel fibers have a more significant influence on improving the splitting tensile strength and fracture energy of UHPC, and the improvement of RSFR was much higher than that of recycled steel fiber without rubber (RSF). UHPC that incorporates industrial hooked-end steel fiber (35 mm in length and 0.55 mm in diameter) exhibits the best resistance to explosive spalling, and the second is the RSF reinforced UHPC. The positive relationship between the fracture energy and the anti-spalling behavior of steel fiber reinforced UHPC can be presented. These results suggest that recycled steel fiber can be a toughening material and substitute for industrial steel fibers to be used in ultra-high performance concrete, especially RSFR.http://www.mdpi.com/1996-1944/12/5/783ultra-high performance concreterecycled steel fiberindustrial steel fibermechanical propertiesexplosive spalling
collection DOAJ
language English
format Article
sources DOAJ
author Juan Yang
Gai-Fei Peng
Guo-Shuang Shui
Gui Zhang
spellingShingle Juan Yang
Gai-Fei Peng
Guo-Shuang Shui
Gui Zhang
Mechanical Properties and Anti-Spalling Behavior of Ultra-High Performance Concrete with Recycled and Industrial Steel Fibers
Materials
ultra-high performance concrete
recycled steel fiber
industrial steel fiber
mechanical properties
explosive spalling
author_facet Juan Yang
Gai-Fei Peng
Guo-Shuang Shui
Gui Zhang
author_sort Juan Yang
title Mechanical Properties and Anti-Spalling Behavior of Ultra-High Performance Concrete with Recycled and Industrial Steel Fibers
title_short Mechanical Properties and Anti-Spalling Behavior of Ultra-High Performance Concrete with Recycled and Industrial Steel Fibers
title_full Mechanical Properties and Anti-Spalling Behavior of Ultra-High Performance Concrete with Recycled and Industrial Steel Fibers
title_fullStr Mechanical Properties and Anti-Spalling Behavior of Ultra-High Performance Concrete with Recycled and Industrial Steel Fibers
title_full_unstemmed Mechanical Properties and Anti-Spalling Behavior of Ultra-High Performance Concrete with Recycled and Industrial Steel Fibers
title_sort mechanical properties and anti-spalling behavior of ultra-high performance concrete with recycled and industrial steel fibers
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2019-03-01
description Experimental investigations on the mechanical properties of ultra-high performance concrete (UHPC) incorporating two types of recycled steel fiber processed from waste tires and three types of industrial steel fiber were carried out for comparison. Mechanical properties of UHPC include compressive strength, splitting tensile strength, fracture energy, and elastic modulus. Their explosive spalling behaviors under high temperatures were also investigated. The results show that all types of steel fiber exhibit a beneficial effect on the mechanical properties and the anti-spalling behavior of UHPC, except that recycled steel fiber with rubber attached (RSFR) has a slightly negative effect on the compressive strength of UHPC. Compared to industrial steel fibers, recycled steel fibers have a more significant influence on improving the splitting tensile strength and fracture energy of UHPC, and the improvement of RSFR was much higher than that of recycled steel fiber without rubber (RSF). UHPC that incorporates industrial hooked-end steel fiber (35 mm in length and 0.55 mm in diameter) exhibits the best resistance to explosive spalling, and the second is the RSF reinforced UHPC. The positive relationship between the fracture energy and the anti-spalling behavior of steel fiber reinforced UHPC can be presented. These results suggest that recycled steel fiber can be a toughening material and substitute for industrial steel fibers to be used in ultra-high performance concrete, especially RSFR.
topic ultra-high performance concrete
recycled steel fiber
industrial steel fiber
mechanical properties
explosive spalling
url http://www.mdpi.com/1996-1944/12/5/783
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