Effect of Intermediate Elastic Support on Vibration of Functionally Graded Euler-Bernoulli Beams Excited by a Moving Point Load

The effect of intermediate elastic support on the vibration of functionally graded Euler-Bernoulli beams excited by a moving point load is studied. The material properties of the beams are assumed to vary in the thickness direction of the beams by a power function. Governing equations of motion that...

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Main Authors: Buntara Sthenly Gan, Nguyen Dinh Kien, Le Thi Ha
Format: Article
Language:English
Published: Taylor & Francis Group 2017-05-01
Series:Journal of Asian Architecture and Building Engineering
Subjects:
Online Access:http://dx.doi.org/10.3130/jaabe.16.363
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author Buntara Sthenly Gan
Nguyen Dinh Kien
Le Thi Ha
author_facet Buntara Sthenly Gan
Nguyen Dinh Kien
Le Thi Ha
author_sort Buntara Sthenly Gan
collection DOAJ
description The effect of intermediate elastic support on the vibration of functionally graded Euler-Bernoulli beams excited by a moving point load is studied. The material properties of the beams are assumed to vary in the thickness direction of the beams by a power function. Governing equations of motion that take into account the shift in the physically neutral surface position, are constructed using Hamilton′s principle. A finite element model is developed and employed in computing the dynamic response of the beams. The influence of the stiffness and position of the elastic support on the dynamic characteristics of the FGM beams is examined and highlighted.
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spelling doaj.art-b606985c7f6d415c999b457286f9034c2023-08-03T09:15:32ZengTaylor & Francis GroupJournal of Asian Architecture and Building Engineering1347-28522017-05-0116236336910.3130/jaabe.16.36312029110Effect of Intermediate Elastic Support on Vibration of Functionally Graded Euler-Bernoulli Beams Excited by a Moving Point LoadBuntara Sthenly Gan0Nguyen Dinh Kien1Le Thi Ha2College of Engineering, Nihon UniversityVietnam Academy of Science and TechnologyTheoretical GroupThe effect of intermediate elastic support on the vibration of functionally graded Euler-Bernoulli beams excited by a moving point load is studied. The material properties of the beams are assumed to vary in the thickness direction of the beams by a power function. Governing equations of motion that take into account the shift in the physically neutral surface position, are constructed using Hamilton′s principle. A finite element model is developed and employed in computing the dynamic response of the beams. The influence of the stiffness and position of the elastic support on the dynamic characteristics of the FGM beams is examined and highlighted.http://dx.doi.org/10.3130/jaabe.16.363functionally graded beamelastic supportphysically neutral surfacemoving forcedynamic response
spellingShingle Buntara Sthenly Gan
Nguyen Dinh Kien
Le Thi Ha
Effect of Intermediate Elastic Support on Vibration of Functionally Graded Euler-Bernoulli Beams Excited by a Moving Point Load
Journal of Asian Architecture and Building Engineering
functionally graded beam
elastic support
physically neutral surface
moving force
dynamic response
title Effect of Intermediate Elastic Support on Vibration of Functionally Graded Euler-Bernoulli Beams Excited by a Moving Point Load
title_full Effect of Intermediate Elastic Support on Vibration of Functionally Graded Euler-Bernoulli Beams Excited by a Moving Point Load
title_fullStr Effect of Intermediate Elastic Support on Vibration of Functionally Graded Euler-Bernoulli Beams Excited by a Moving Point Load
title_full_unstemmed Effect of Intermediate Elastic Support on Vibration of Functionally Graded Euler-Bernoulli Beams Excited by a Moving Point Load
title_short Effect of Intermediate Elastic Support on Vibration of Functionally Graded Euler-Bernoulli Beams Excited by a Moving Point Load
title_sort effect of intermediate elastic support on vibration of functionally graded euler bernoulli beams excited by a moving point load
topic functionally graded beam
elastic support
physically neutral surface
moving force
dynamic response
url http://dx.doi.org/10.3130/jaabe.16.363
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