Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Numerical Simulations of GFRP-Reinforced Columns Having Polypropylene and Polyvinyl Alcohol Fibers

View through CrossRef
The present investigation aims to propose a numerical model for assessing the complex damaging response of glass fiber-reinforced polymer- (GFRP-) reinforced concrete columns having hybrid fibers and confined with GFRP spirals (GFHF columns) under concentric and eccentric compression. Fiber-reinforced concrete (FRC) consists of polyvinyl alcohol fibers (PVA) and polypropylene fibers (PF). A total of six GFHF circular columns were constructed having a circular cross section of 250 mm and a height of 1200 mm. A commercial package ABAQUS was used for the finite element analysis (FEA) of the GFHF columns by using a modified concrete damage plastic (CDP) model for hybrid fiber-reinforced concrete (HFRC). The damaging response of GFRP bars was defined using a linear elastic model. The results depicted that the failure of GFHF columns occurred either in the upper or in the lower half portion with the rupture of GFRP longitudinal bars and GFRP spirals. The decrease in the pitch of GFRP spirals led to an improvement in the axial strength (AS) of GFHF columns. The eccentric loading caused a significant reduction in the AS of columns. The comparative study solidly substantiates the validity and applicability of the newly developed FEA models for capturing the AS of GFHF columns by considering the axial involvement of longitudinal GFRP bars and the confinement effect of transverse GFRP spirals. So, the suggested numerical model having a complex system of equations for HFRC can be used for the accurate analysis of HFRC members.
Title: Numerical Simulations of GFRP-Reinforced Columns Having Polypropylene and Polyvinyl Alcohol Fibers
Description:
The present investigation aims to propose a numerical model for assessing the complex damaging response of glass fiber-reinforced polymer- (GFRP-) reinforced concrete columns having hybrid fibers and confined with GFRP spirals (GFHF columns) under concentric and eccentric compression.
Fiber-reinforced concrete (FRC) consists of polyvinyl alcohol fibers (PVA) and polypropylene fibers (PF).
A total of six GFHF circular columns were constructed having a circular cross section of 250 mm and a height of 1200 mm.
A commercial package ABAQUS was used for the finite element analysis (FEA) of the GFHF columns by using a modified concrete damage plastic (CDP) model for hybrid fiber-reinforced concrete (HFRC).
The damaging response of GFRP bars was defined using a linear elastic model.
The results depicted that the failure of GFHF columns occurred either in the upper or in the lower half portion with the rupture of GFRP longitudinal bars and GFRP spirals.
The decrease in the pitch of GFRP spirals led to an improvement in the axial strength (AS) of GFHF columns.
The eccentric loading caused a significant reduction in the AS of columns.
The comparative study solidly substantiates the validity and applicability of the newly developed FEA models for capturing the AS of GFHF columns by considering the axial involvement of longitudinal GFRP bars and the confinement effect of transverse GFRP spirals.
So, the suggested numerical model having a complex system of equations for HFRC can be used for the accurate analysis of HFRC members.

Related Results

Polyvinyl Acetate, Alcohol, and Derivatives, Polystyrene, and Acrylics
Polyvinyl Acetate, Alcohol, and Derivatives, Polystyrene, and Acrylics
AbstractPolyvinyl acetate, the most widely used vinyl ester, is noted for its adhesion to substrates and high cold flow. Polyvinyl acetate serves as the precursor for polyvinyl alc...
Problematyka wczesnego alkoholizmu
Problematyka wczesnego alkoholizmu
The Problem of Early Alcoholizm   The group of 50 repeatedly convicted recidivists, dealt with in this article, aged 38 on the average, deserves particular attention, first of all ...
Bending and Bonding Properties of Sandwiched Polymer Concrete Composites
Bending and Bonding Properties of Sandwiched Polymer Concrete Composites
It is foreseen that the properties of Polymer Concrete (PC) can be further enhanced if the PC is bonded to or sandwiched between Glass Fibre Reinforced Plastic (GFRP) laminates, la...
Flexural and Shear Behavior of Beams Reinforced with GFRP Rebars
Flexural and Shear Behavior of Beams Reinforced with GFRP Rebars
A new inexperienced constructing material is glass fibre reinforced polymer (GFRP) rebar. GFRP rebars are non-corrosive, non-conductive, light-weight substances and have an excessi...
Experimental and Numerical Investigation of Flexural Behaviour of GFRP Reinforced Concrete Beams using ANSYS
Experimental and Numerical Investigation of Flexural Behaviour of GFRP Reinforced Concrete Beams using ANSYS
Abstract The construction industry has made extensive use of glass fiber-reinforced polymer (GFRP) rebars to improve structural strength and stop corrosion. High tensile st...
The Effect of Compression Reinforcement on the Shear Behavior of Concrete Beams with Hybrid Reinforcement
The Effect of Compression Reinforcement on the Shear Behavior of Concrete Beams with Hybrid Reinforcement
Abstract This study examines the impact of steel compression reinforcement on the shear behavior of concrete beams reinforced with glass fiber reinforced polymer (GFRP) bar...
Material Characterization of GFRP Bars in Compression Using a New Test Method
Material Characterization of GFRP Bars in Compression Using a New Test Method
Abstract This article presents a new test method for determining the mechanical properties of glass fiber–reinforced polymer (GFRP) composite bars in compression, na...

Back to Top