Temperature and moisture effect on laminated rhombic hyperbolic paraboloid

The current work presents a hygrothermal analysis of laminated composite rhombic hyperbolic paraboloids. The cubic variation in displacement field together with cross curvature effects of the shell were used to solve the hygrothermal problem. Because of the parabolic variation of the transverse she...

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Main Authors: Abhay Chaubey, Ajay Kumar, Małgorzata Grzegorczyk-Franczak, Małgorzata Szafraniec
Format: Article
Language:English
Published: Lublin University of Technology 2020-03-01
Series:Budownictwo i Architektura
Subjects:
Online Access:https://ph.pollub.pl/index.php/bia/article/view/763
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spelling doaj-51da4616e2684cce9d1e3f243548cb402020-11-25T02:36:59ZengLublin University of TechnologyBudownictwo i Architektura1899-06652544-32752020-03-0118410.35784/bud-arch.763 Temperature and moisture effect on laminated rhombic hyperbolic paraboloid Abhay Chaubey0Ajay Kumar1Małgorzata Grzegorczyk-Franczak2Małgorzata Szafraniec3Department of Civil Engineering; Koneru Lakshmaiah Education FoundationDepartment of Civil Engineering, National Institute of Technology PatnaFaculty of Civil Engineering and Architecture; Lublin University of TechnologyFaculty of Civil Engineering and Architecture, Lublin University of Technology The current work presents a hygrothermal analysis of laminated composite rhombic hyperbolic paraboloids. The cubic variation in displacement field together with cross curvature effects of the shell were used to solve the hygrothermal problem. Because of the parabolic variation of the transverse shear deformation, the shear correction factor was not necessary in this paper. In the mathematical model, the zero conditions of the transverse shear stress at the bottom and top of the shell were applied. The nine-noded curved isoparametric element with seven unknowns in each node was used to implement the present realistic mathematical model. The implementation of the finite element C0 (FE) of the present mathematical model was coded and performed in FORTRAN. The skew hyperbolic paraboloid on which the hygrothermal analysis was conducted had various temperatures, ply orientation, curvatures, moisture concentration, boundary conditions and thickness ratio. The paper shows that with the increase of the skew angle, the non-dimensional deflection decreases, and with the increase of moisture concentration, hygrothermal load and curvature ratio, the deflection increases. The results of the model presented in the paper were compared with other results published in the literature and were found to be consistent with them. https://ph.pollub.pl/index.php/bia/article/view/763temperaturemoisture concentrationlaminatedskew angleply orientation
collection DOAJ
language English
format Article
sources DOAJ
author Abhay Chaubey
Ajay Kumar
Małgorzata Grzegorczyk-Franczak
Małgorzata Szafraniec
spellingShingle Abhay Chaubey
Ajay Kumar
Małgorzata Grzegorczyk-Franczak
Małgorzata Szafraniec
Temperature and moisture effect on laminated rhombic hyperbolic paraboloid
Budownictwo i Architektura
temperature
moisture concentration
laminated
skew angle
ply orientation
author_facet Abhay Chaubey
Ajay Kumar
Małgorzata Grzegorczyk-Franczak
Małgorzata Szafraniec
author_sort Abhay Chaubey
title Temperature and moisture effect on laminated rhombic hyperbolic paraboloid
title_short Temperature and moisture effect on laminated rhombic hyperbolic paraboloid
title_full Temperature and moisture effect on laminated rhombic hyperbolic paraboloid
title_fullStr Temperature and moisture effect on laminated rhombic hyperbolic paraboloid
title_full_unstemmed Temperature and moisture effect on laminated rhombic hyperbolic paraboloid
title_sort temperature and moisture effect on laminated rhombic hyperbolic paraboloid
publisher Lublin University of Technology
series Budownictwo i Architektura
issn 1899-0665
2544-3275
publishDate 2020-03-01
description The current work presents a hygrothermal analysis of laminated composite rhombic hyperbolic paraboloids. The cubic variation in displacement field together with cross curvature effects of the shell were used to solve the hygrothermal problem. Because of the parabolic variation of the transverse shear deformation, the shear correction factor was not necessary in this paper. In the mathematical model, the zero conditions of the transverse shear stress at the bottom and top of the shell were applied. The nine-noded curved isoparametric element with seven unknowns in each node was used to implement the present realistic mathematical model. The implementation of the finite element C0 (FE) of the present mathematical model was coded and performed in FORTRAN. The skew hyperbolic paraboloid on which the hygrothermal analysis was conducted had various temperatures, ply orientation, curvatures, moisture concentration, boundary conditions and thickness ratio. The paper shows that with the increase of the skew angle, the non-dimensional deflection decreases, and with the increase of moisture concentration, hygrothermal load and curvature ratio, the deflection increases. The results of the model presented in the paper were compared with other results published in the literature and were found to be consistent with them.
topic temperature
moisture concentration
laminated
skew angle
ply orientation
url https://ph.pollub.pl/index.php/bia/article/view/763
work_keys_str_mv AT abhaychaubey temperatureandmoistureeffectonlaminatedrhombichyperbolicparaboloid
AT ajaykumar temperatureandmoistureeffectonlaminatedrhombichyperbolicparaboloid
AT małgorzatagrzegorczykfranczak temperatureandmoistureeffectonlaminatedrhombichyperbolicparaboloid
AT małgorzataszafraniec temperatureandmoistureeffectonlaminatedrhombichyperbolicparaboloid
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