Design Fatigue Lives of Polypropylene Fibre Reinforced Polymer Concrete Composites

Flexural fatigue behavior of Poly-propylene fibre reinforced polymer concrete composites (PFRPCC) has been investigated at various stress levels and the statistical analysis of the data thus obtained has been carried out. Polymer Concrete Composite (PCC) samples without addition of any type of fibre...

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Main Authors: Raman Bedi, S P Singh, Rakesh Chandra
Format: Article
Language:English
Published: Mouloud Mammeri University of Tizi-Ouzou 2014-09-01
Series:Journal of Materials and Engineering Structures
Online Access:http://revue.ummto.dz/index.php/JMES/article/view/192
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spelling doaj-6f4b378334394785979c2448c02f05482020-11-25T00:33:05ZengMouloud Mammeri University of Tizi-OuzouJournal of Materials and Engineering Structures2170-127X2014-09-011299109226Design Fatigue Lives of Polypropylene Fibre Reinforced Polymer Concrete CompositesRaman Bedi0S P Singh1Rakesh Chandra2Dr B R Ambedkar National Institute of Technology, Jalandhar, IndiaDr B R Ambedkar National Institute of Technology, Jalandhar, IndiaDr B R Ambedkar National Institute of Technology, Jalandhar, IndiaFlexural fatigue behavior of Poly-propylene fibre reinforced polymer concrete composites (PFRPCC) has been investigated at various stress levels and the statistical analysis of the data thus obtained has been carried out. Polymer Concrete Composite (PCC) samples without addition of any type of fibres were also tested for flexural fatigue.  Forty specimens of PCC and One hundred and Forty One specimens of PFRPCC containing 0.5%, 1.0% and 2.0% polypropylene fibres were tested in fatigue using a MTS servo controlled test system. Fatigue life distributions of PCC as well as PFRPCC are observed to approximately follow a two parameter Weibull distribution with correlation coefficient exceeding 0.9. The parameters of the Weibull distribution have been obtained by various methods. Failure probability, which is an important parameter in the fatigue design of materials, has been used to obtain the design fatigue lives for the material. Comparison of design fatigue life of PCC and PFRPCC has been carried out and it is observed that addition of fibres enhances the design fatigue life of PCC.http://revue.ummto.dz/index.php/JMES/article/view/192
collection DOAJ
language English
format Article
sources DOAJ
author Raman Bedi
S P Singh
Rakesh Chandra
spellingShingle Raman Bedi
S P Singh
Rakesh Chandra
Design Fatigue Lives of Polypropylene Fibre Reinforced Polymer Concrete Composites
Journal of Materials and Engineering Structures
author_facet Raman Bedi
S P Singh
Rakesh Chandra
author_sort Raman Bedi
title Design Fatigue Lives of Polypropylene Fibre Reinforced Polymer Concrete Composites
title_short Design Fatigue Lives of Polypropylene Fibre Reinforced Polymer Concrete Composites
title_full Design Fatigue Lives of Polypropylene Fibre Reinforced Polymer Concrete Composites
title_fullStr Design Fatigue Lives of Polypropylene Fibre Reinforced Polymer Concrete Composites
title_full_unstemmed Design Fatigue Lives of Polypropylene Fibre Reinforced Polymer Concrete Composites
title_sort design fatigue lives of polypropylene fibre reinforced polymer concrete composites
publisher Mouloud Mammeri University of Tizi-Ouzou
series Journal of Materials and Engineering Structures
issn 2170-127X
publishDate 2014-09-01
description Flexural fatigue behavior of Poly-propylene fibre reinforced polymer concrete composites (PFRPCC) has been investigated at various stress levels and the statistical analysis of the data thus obtained has been carried out. Polymer Concrete Composite (PCC) samples without addition of any type of fibres were also tested for flexural fatigue.  Forty specimens of PCC and One hundred and Forty One specimens of PFRPCC containing 0.5%, 1.0% and 2.0% polypropylene fibres were tested in fatigue using a MTS servo controlled test system. Fatigue life distributions of PCC as well as PFRPCC are observed to approximately follow a two parameter Weibull distribution with correlation coefficient exceeding 0.9. The parameters of the Weibull distribution have been obtained by various methods. Failure probability, which is an important parameter in the fatigue design of materials, has been used to obtain the design fatigue lives for the material. Comparison of design fatigue life of PCC and PFRPCC has been carried out and it is observed that addition of fibres enhances the design fatigue life of PCC.
url http://revue.ummto.dz/index.php/JMES/article/view/192
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AT spsingh designfatiguelivesofpolypropylenefibrereinforcedpolymerconcretecomposites
AT rakeshchandra designfatiguelivesofpolypropylenefibrereinforcedpolymerconcretecomposites
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