An investigation on the behavior of two fixed end beams cast with HPFRCC composite

In this paper, the effect of high-performance fiber reinforced cementious composite (HPFRCC) composite consisting of steel fibers on flexural behavior of two fixed-end concrete beams was investigated. Six beams including two reference and four beams with 1 % and 2 % steel fibers were cast and tested...

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Main Authors: Amir Ghods, Mohammad Kazem Sharbatdar
Format: Article
Language:English
Published: Elsevier 2020-12-01
Series:Case Studies in Construction Materials
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214509520301388
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spelling doaj-5c482525210440219b58feff7208ed2a2020-12-25T05:09:47ZengElsevierCase Studies in Construction Materials2214-50952020-12-0113e00466An investigation on the behavior of two fixed end beams cast with HPFRCC compositeAmir Ghods0Mohammad Kazem Sharbatdar1Faculty of Civil Engineering, Semnan University, Semnan, IranCorresponding author.; Faculty of Civil Engineering, Semnan University, Semnan, IranIn this paper, the effect of high-performance fiber reinforced cementious composite (HPFRCC) composite consisting of steel fibers on flexural behavior of two fixed-end concrete beams was investigated. Six beams including two reference and four beams with 1 % and 2 % steel fibers were cast and tested. The distance between stirrups in the plastic zone was considered as one variable. The mixing design was considered so that the compressive strengths of specimens to be close to each other. The type of loading was statically and in the middle of the span. Two fixed-end beams were arranged with a net span and two rigid columns on the sides connected to the frame by using bolts to prepare rigidity for supports. The results indicated that the ductility and absorption of energy of beams were increased up to 47 and 42 % by replacing conventional concrete by 1 % fibers HPFRCC and these amounts increased up to 66 and 85 % for beams with closed spacing stirrups in plastic zone and HPFRCC concrete, the ductility and absorption of energy of specimens cast with 2 % fibers HPFRCC were increased up to 76 and 174 % with 100 mm spacing stirrup and 89 % and 218 % were increased with 50 mm spacing stirrup in HPFRCC specimens. And also, the plastic lengths were increased up to 35 and 47 % by using of 1 and 2 % HPFRCC concrete, respectively. Moreover, the ultimate loads of specimens were increased from 52 to 76 % in concrete with 1 and 2% fibers. Therefore, the spaced stirrups and fiber percentage were effective on structural and performance parameters beams.http://www.sciencedirect.com/science/article/pii/S2214509520301388Semi rigidHPFRCCDuctilityPlastic hingeAbsorption of energy
collection DOAJ
language English
format Article
sources DOAJ
author Amir Ghods
Mohammad Kazem Sharbatdar
spellingShingle Amir Ghods
Mohammad Kazem Sharbatdar
An investigation on the behavior of two fixed end beams cast with HPFRCC composite
Case Studies in Construction Materials
Semi rigid
HPFRCC
Ductility
Plastic hinge
Absorption of energy
author_facet Amir Ghods
Mohammad Kazem Sharbatdar
author_sort Amir Ghods
title An investigation on the behavior of two fixed end beams cast with HPFRCC composite
title_short An investigation on the behavior of two fixed end beams cast with HPFRCC composite
title_full An investigation on the behavior of two fixed end beams cast with HPFRCC composite
title_fullStr An investigation on the behavior of two fixed end beams cast with HPFRCC composite
title_full_unstemmed An investigation on the behavior of two fixed end beams cast with HPFRCC composite
title_sort investigation on the behavior of two fixed end beams cast with hpfrcc composite
publisher Elsevier
series Case Studies in Construction Materials
issn 2214-5095
publishDate 2020-12-01
description In this paper, the effect of high-performance fiber reinforced cementious composite (HPFRCC) composite consisting of steel fibers on flexural behavior of two fixed-end concrete beams was investigated. Six beams including two reference and four beams with 1 % and 2 % steel fibers were cast and tested. The distance between stirrups in the plastic zone was considered as one variable. The mixing design was considered so that the compressive strengths of specimens to be close to each other. The type of loading was statically and in the middle of the span. Two fixed-end beams were arranged with a net span and two rigid columns on the sides connected to the frame by using bolts to prepare rigidity for supports. The results indicated that the ductility and absorption of energy of beams were increased up to 47 and 42 % by replacing conventional concrete by 1 % fibers HPFRCC and these amounts increased up to 66 and 85 % for beams with closed spacing stirrups in plastic zone and HPFRCC concrete, the ductility and absorption of energy of specimens cast with 2 % fibers HPFRCC were increased up to 76 and 174 % with 100 mm spacing stirrup and 89 % and 218 % were increased with 50 mm spacing stirrup in HPFRCC specimens. And also, the plastic lengths were increased up to 35 and 47 % by using of 1 and 2 % HPFRCC concrete, respectively. Moreover, the ultimate loads of specimens were increased from 52 to 76 % in concrete with 1 and 2% fibers. Therefore, the spaced stirrups and fiber percentage were effective on structural and performance parameters beams.
topic Semi rigid
HPFRCC
Ductility
Plastic hinge
Absorption of energy
url http://www.sciencedirect.com/science/article/pii/S2214509520301388
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