Experiment and FEM Modelling of Bond Behaviors between Pre-stressing Strands and Ultra–High–Performance Concrete
The objective of this paper is to investigate the bond properties of prestressing strands embedded in Ultra–High–Performance Concrete (UHPC).The UHPC was made in laboratory using local materials in Vietnam.Its mixture contains: silica aggregates, portland cement PC40, fly ash, silica fume, polycarbo...
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Mouloud Mammeri University of Tizi-Ouzou
2020-12-01
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doaj-330a4feda0b24b7397caaa3bdd88fa972021-08-05T13:06:35ZengMouloud Mammeri University of Tizi-OuzouJournal of Materials and Engineering Structures2170-127X2020-12-01745675741807Experiment and FEM Modelling of Bond Behaviors between Pre-stressing Strands and Ultra–High–Performance ConcreteDuy Hoa PHAM0Ba Danh LE1Dang Tung KHUC2Thanh Quang VU3Trong Toan KHONG4Van Trinh DO5Quy Tuan NGO6National University of Civil EngineeringNational University of Civil EngineeringNational University of Civil EngineeringDepartment of Bridge and Tunnel Engineering, National University of Civil Engineering,55 Giai Phong, Hai Ba Trung, HanoiHo Chi Minh City University of TechnologyHo Chi Minh City University of TechnologyDepartment of Civil Engineering,University of Agriculture and Forestry, Hue UniversityThe objective of this paper is to investigate the bond properties of prestressing strands embedded in Ultra–High–Performance Concrete (UHPC).The UHPC was made in laboratory using local materials in Vietnam.Its mixture contains: silica aggregates, portland cement PC40, fly ash, silica fume, polycarboxylate superplasticizer and the micro steel fibers.The experimental process is realized on a pull-out test. The volume fraction of micro steel fibers in UHPC was 2%. The prestressing strand with diameters of 15.2mm was considered. The interface shear strength between strand and UHPC is identified based on the results of force and displacement obtained during the pull-out test. The Cohesive Zone Model (CZM) is implemented in finite element model to study this interface behavior. This model described by a piecewise linear elastic law. The CZM’s parameters are identified based on experimental results of pull-out test.The numerical studies are used the CZM in ANSYS software. Two numerical tests are realized and compared with experimental results: pull-out test and other test to verify the deflection of I girder due to prestressing force.http://revue.ummto.dz/index.php/JMES/article/view/2631ultra-high-performance concreteexperimentprestressing strandspull-out testcohesive zone modelbond strengthfinite element method |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Duy Hoa PHAM Ba Danh LE Dang Tung KHUC Thanh Quang VU Trong Toan KHONG Van Trinh DO Quy Tuan NGO |
spellingShingle |
Duy Hoa PHAM Ba Danh LE Dang Tung KHUC Thanh Quang VU Trong Toan KHONG Van Trinh DO Quy Tuan NGO Experiment and FEM Modelling of Bond Behaviors between Pre-stressing Strands and Ultra–High–Performance Concrete Journal of Materials and Engineering Structures ultra-high-performance concrete experiment prestressing strands pull-out test cohesive zone model bond strength finite element method |
author_facet |
Duy Hoa PHAM Ba Danh LE Dang Tung KHUC Thanh Quang VU Trong Toan KHONG Van Trinh DO Quy Tuan NGO |
author_sort |
Duy Hoa PHAM |
title |
Experiment and FEM Modelling of Bond Behaviors between Pre-stressing Strands and Ultra–High–Performance Concrete |
title_short |
Experiment and FEM Modelling of Bond Behaviors between Pre-stressing Strands and Ultra–High–Performance Concrete |
title_full |
Experiment and FEM Modelling of Bond Behaviors between Pre-stressing Strands and Ultra–High–Performance Concrete |
title_fullStr |
Experiment and FEM Modelling of Bond Behaviors between Pre-stressing Strands and Ultra–High–Performance Concrete |
title_full_unstemmed |
Experiment and FEM Modelling of Bond Behaviors between Pre-stressing Strands and Ultra–High–Performance Concrete |
title_sort |
experiment and fem modelling of bond behaviors between pre-stressing strands and ultra–high–performance concrete |
publisher |
Mouloud Mammeri University of Tizi-Ouzou |
series |
Journal of Materials and Engineering Structures |
issn |
2170-127X |
publishDate |
2020-12-01 |
description |
The objective of this paper is to investigate the bond properties of prestressing strands embedded in Ultra–High–Performance Concrete (UHPC).The UHPC was made in laboratory using local materials in Vietnam.Its mixture contains: silica aggregates, portland cement PC40, fly ash, silica fume, polycarboxylate superplasticizer and the micro steel fibers.The experimental process is realized on a pull-out test. The volume fraction of micro steel fibers in UHPC was 2%. The prestressing strand with diameters of 15.2mm was considered. The interface shear strength between strand and UHPC is identified based on the results of force and displacement obtained during the pull-out test. The Cohesive Zone Model (CZM) is implemented in finite element model to study this interface behavior. This model described by a piecewise linear elastic law. The CZM’s parameters are identified based on experimental results of pull-out test.The numerical studies are used the CZM in ANSYS software. Two numerical tests are realized and compared with experimental results: pull-out test and other test to verify the deflection of I girder due to prestressing force. |
topic |
ultra-high-performance concrete experiment prestressing strands pull-out test cohesive zone model bond strength finite element method |
url |
http://revue.ummto.dz/index.php/JMES/article/view/2631 |
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