Investigation of buckling modes of sandwich specimens with facing layers from [0°]s fiber-reinforced plastic under axial compression

Analytical solutions to the linearized problems on possible macroscale buckling modes of sandwich specimens made from fiber-reinforced plastics with lay-up sequence [0°]s ( s is the number of laminas) under axial compression were analyzed. Materials characterized by a physically nonlinear dependence...

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Main Authors: V.N. Paimushin, S.A. Kholmogorov, N.V. Polyakova, M.A. Shishov
Format: Article
Language:English
Published: Kazan Federal University 2019-12-01
Series:Учёные записки Казанского университета: Серия Физико-математические науки
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Online Access:https://kpfu.ru/uz-eng-phm-2019-4-8.html
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author V.N. Paimushin
S.A. Kholmogorov
N.V. Polyakova
M.A. Shishov
author_facet V.N. Paimushin
S.A. Kholmogorov
N.V. Polyakova
M.A. Shishov
author_sort V.N. Paimushin
collection DOAJ
description Analytical solutions to the linearized problems on possible macroscale buckling modes of sandwich specimens made from fiber-reinforced plastics with lay-up sequence [0°]s ( s is the number of laminas) under axial compression were analyzed. Materials characterized by a physically nonlinear dependence only between the transverse shear stresses and the corresponding shear strains were considered. Linearized equations of equilibrium in a perturbed state obtained on the basis of the previously constructed geometrically nonlinear equations of the theory of sandwich shells with a transversely flexible core were used. The linearized equations are based on the use of S.P. Timoshenko’s refined model for the facing layers, which takes into account the transverse compression, as well as on the use of three-dimensional equations of the theory of elasticity, which are simplified by the model of the transversely flexible layer, for the core. The latter allow integration over the thickness with the introduction of two unknown functions (transverse tangential stresses). In the linearized equations used, the physical nonlinearity of the material of the facing layers was taken into account in accordance with the Shanley concept based on the introduction of the tangential transverse shear modulus. In the equations used, there are degenerate terms that correspond to the implementation of purely transverse-shear buckling modes during compression of the specimen in the axial direction (along the fibers). The implementation of these buckling modes is possible for specimens with a considerable relative thickness of the layers package. Based on the analysis of the results obtained, it was shown that failure for these specimens is most likely due to the buckling in such a macroscale flexural-shear mode, which is predominantly transverse-shear and is realized when the compressive stress averaged over the thickness of the facing layers is equal to the shear modulus of the transverse shear of the composite in the vicinity of the end section of the working length of the specimen in its unperturbed state.
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institution Kabale University
issn 2541-7746
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language English
publishDate 2019-12-01
publisher Kazan Federal University
record_format Article
series Учёные записки Казанского университета: Серия Физико-математические науки
spelling doaj-art-c83fe4e2c82c4c14b44e0ff62711a63c2024-12-02T08:47:00ZengKazan Federal UniversityУчёные записки Казанского университета: Серия Физико-математические науки2541-77462500-21982019-12-01161456959010.26907/2541-7746.2019.4.569-590Investigation of buckling modes of sandwich specimens with facing layers from [0°]s fiber-reinforced plastic under axial compressionV.N. Paimushin0S.A. Kholmogorov1N.V. Polyakova2M.A. Shishov3Kazan National Research Technical University named after A.N. Tupolev, Kazan, 420111 Russia; Kazan Federal University, Kazan, 420008 RussiaKazan National Research Technical University named after A.N. Tupolev, Kazan, 420111 RussiaKazan National Research Technical University named after A.N. Tupolev, Kazan, 420111 RussiaKazan National Research Technical University named after A.N. Tupolev, Kazan, 420111 RussiaAnalytical solutions to the linearized problems on possible macroscale buckling modes of sandwich specimens made from fiber-reinforced plastics with lay-up sequence [0°]s ( s is the number of laminas) under axial compression were analyzed. Materials characterized by a physically nonlinear dependence only between the transverse shear stresses and the corresponding shear strains were considered. Linearized equations of equilibrium in a perturbed state obtained on the basis of the previously constructed geometrically nonlinear equations of the theory of sandwich shells with a transversely flexible core were used. The linearized equations are based on the use of S.P. Timoshenko’s refined model for the facing layers, which takes into account the transverse compression, as well as on the use of three-dimensional equations of the theory of elasticity, which are simplified by the model of the transversely flexible layer, for the core. The latter allow integration over the thickness with the introduction of two unknown functions (transverse tangential stresses). In the linearized equations used, the physical nonlinearity of the material of the facing layers was taken into account in accordance with the Shanley concept based on the introduction of the tangential transverse shear modulus. In the equations used, there are degenerate terms that correspond to the implementation of purely transverse-shear buckling modes during compression of the specimen in the axial direction (along the fibers). The implementation of these buckling modes is possible for specimens with a considerable relative thickness of the layers package. Based on the analysis of the results obtained, it was shown that failure for these specimens is most likely due to the buckling in such a macroscale flexural-shear mode, which is predominantly transverse-shear and is realized when the compressive stress averaged over the thickness of the facing layers is equal to the shear modulus of the transverse shear of the composite in the vicinity of the end section of the working length of the specimen in its unperturbed state.https://kpfu.ru/uz-eng-phm-2019-4-8.htmlfiber-reinforced plasticsandwich specimentransversely flexible corecompressionlinearized equationsbuckling modesanalytical solution
spellingShingle V.N. Paimushin
S.A. Kholmogorov
N.V. Polyakova
M.A. Shishov
Investigation of buckling modes of sandwich specimens with facing layers from [0°]s fiber-reinforced plastic under axial compression
Учёные записки Казанского университета: Серия Физико-математические науки
fiber-reinforced plastic
sandwich specimen
transversely flexible core
compression
linearized equations
buckling modes
analytical solution
title Investigation of buckling modes of sandwich specimens with facing layers from [0°]s fiber-reinforced plastic under axial compression
title_full Investigation of buckling modes of sandwich specimens with facing layers from [0°]s fiber-reinforced plastic under axial compression
title_fullStr Investigation of buckling modes of sandwich specimens with facing layers from [0°]s fiber-reinforced plastic under axial compression
title_full_unstemmed Investigation of buckling modes of sandwich specimens with facing layers from [0°]s fiber-reinforced plastic under axial compression
title_short Investigation of buckling modes of sandwich specimens with facing layers from [0°]s fiber-reinforced plastic under axial compression
title_sort investigation of buckling modes of sandwich specimens with facing layers from 0° s fiber reinforced plastic under axial compression
topic fiber-reinforced plastic
sandwich specimen
transversely flexible core
compression
linearized equations
buckling modes
analytical solution
url https://kpfu.ru/uz-eng-phm-2019-4-8.html
work_keys_str_mv AT vnpaimushin investigationofbucklingmodesofsandwichspecimenswithfacinglayersfrom0sfiberreinforcedplasticunderaxialcompression
AT sakholmogorov investigationofbucklingmodesofsandwichspecimenswithfacinglayersfrom0sfiberreinforcedplasticunderaxialcompression
AT nvpolyakova investigationofbucklingmodesofsandwichspecimenswithfacinglayersfrom0sfiberreinforcedplasticunderaxialcompression
AT mashishov investigationofbucklingmodesofsandwichspecimenswithfacinglayersfrom0sfiberreinforcedplasticunderaxialcompression