Traverse Vibration of Axially Moving Laminated SMA Beam considering Random Perturbation

The nonlinear random vibration of axially moving shape memory alloy (SMA) laminated beam under transverse loads is investigated. Considering the effects of axial movement and random perturbation, the dynamic equation of the SMA laminated beam is established by means of physical equation, force balan...

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Main Authors: Hao Ying, Gao Minglei
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2019/6341289
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author Hao Ying
Gao Minglei
author_facet Hao Ying
Gao Minglei
author_sort Hao Ying
collection DOAJ
description The nonlinear random vibration of axially moving shape memory alloy (SMA) laminated beam under transverse loads is investigated. Considering the effects of axial movement and random perturbation, the dynamic equation of the SMA laminated beam is established by means of physical equation, force balance conditions, deformation compatibility equation, and the constitutive relation by polynomial function. The transverse vibration differential equation of axially moving SMA laminated beam with two simply-supported edges is obtained through the Galerkin method. The amplitude-frequency response equation under primary resonance and the probability density function under random perturbation are derived by using the averaging method and stochastic averaging method, respectively, and the theoretical results are numerically validated. In addition, under the combination of the harmonic excitation and random perturbation, the effects of axial movement velocity and random perturbation intensity on system steady-state response are analyzed.
format Article
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institution Kabale University
issn 1070-9622
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language English
publishDate 2019-01-01
publisher Wiley
record_format Article
series Shock and Vibration
spelling doaj-art-95ea8eeb885c41b2a72852278224ec172025-02-03T00:59:26ZengWileyShock and Vibration1070-96221875-92032019-01-01201910.1155/2019/63412896341289Traverse Vibration of Axially Moving Laminated SMA Beam considering Random PerturbationHao Ying0Gao Minglei1College of Civil Engineering & Mechanics, Yanshan University, Qinhuangdao, ChinaHarbin Electric Corporation (QHD) Heavy Equipment Company Limited, Qinhuangdao, ChinaThe nonlinear random vibration of axially moving shape memory alloy (SMA) laminated beam under transverse loads is investigated. Considering the effects of axial movement and random perturbation, the dynamic equation of the SMA laminated beam is established by means of physical equation, force balance conditions, deformation compatibility equation, and the constitutive relation by polynomial function. The transverse vibration differential equation of axially moving SMA laminated beam with two simply-supported edges is obtained through the Galerkin method. The amplitude-frequency response equation under primary resonance and the probability density function under random perturbation are derived by using the averaging method and stochastic averaging method, respectively, and the theoretical results are numerically validated. In addition, under the combination of the harmonic excitation and random perturbation, the effects of axial movement velocity and random perturbation intensity on system steady-state response are analyzed.http://dx.doi.org/10.1155/2019/6341289
spellingShingle Hao Ying
Gao Minglei
Traverse Vibration of Axially Moving Laminated SMA Beam considering Random Perturbation
Shock and Vibration
title Traverse Vibration of Axially Moving Laminated SMA Beam considering Random Perturbation
title_full Traverse Vibration of Axially Moving Laminated SMA Beam considering Random Perturbation
title_fullStr Traverse Vibration of Axially Moving Laminated SMA Beam considering Random Perturbation
title_full_unstemmed Traverse Vibration of Axially Moving Laminated SMA Beam considering Random Perturbation
title_short Traverse Vibration of Axially Moving Laminated SMA Beam considering Random Perturbation
title_sort traverse vibration of axially moving laminated sma beam considering random perturbation
url http://dx.doi.org/10.1155/2019/6341289
work_keys_str_mv AT haoying traversevibrationofaxiallymovinglaminatedsmabeamconsideringrandomperturbation
AT gaominglei traversevibrationofaxiallymovinglaminatedsmabeamconsideringrandomperturbation