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On nonlinear behavior and buckling of fluid-transporting nanotubes
ISSN号:0020-7225
期刊名称:International Journal of Engineering Science
时间:2015.2
页码:13-22
相关项目:微米输流管动力学的理论建模与新特性研究
作者:
Dai, H. L.|Wang, L.|Abdelkefi, A.|Ni, Q.|
同期刊论文项目
微米输流管动力学的理论建模与新特性研究
期刊论文 28
会议论文 4
著作 1
同项目期刊论文
Dynamics of simply supported fluid-conveying pipes with geometric imperfections
FLUTTER INSTABILITY OF SUPPORTED PIPES CONVEYING FLUID SUBJECTED TO DISTRIBUTED FOLLOWER FORCES
Vibration analysis of nanotubes conveying fluid based on gradient elasticity theory
Natural frequency analysis of fluid-conveying pipes in the ADINA system
Vortex-induced vibrations of pipes conveying fluid in the subcritical and supercritical regimes
Size-dependent vibration analysis of three-dimensional cylindrical microbeams based on modified coup
Dynamics of a fluid-conveying pipe composed of two different materials
Nonlinear dynamics of cantilevered microbeams based on modified couple stress theory
NONLINEAR DYNAMICS AND SYNCHRONIZATION OF TWO COUPLED PIPES CONVEYING PULSATING FLUID
Surface effect on buckling configuration of nanobeams containing internal flowing fluid: A nonlinear
Vibration analysis of three-dimensional pipes conveying fluid with consideration of steady combined
Modeling and nonlinear dynamics of fluid-conveying risers under hybrid excitations
Nonlinear modeling and size-dependent vibration analysis of curved microtubes conveying fluid based
Nonconservative pipes conveying fluid: evolution of mode shapes with increasing flow velocity
Nonlinear impacting oscillations of a fluid-conveying pipe subjected to distributed motion constrain
Dynamics and pull-in instability of electrostatically actuated microbeams conveying fluid
Flexural vibrations of microscale pipes conveying fluid by considering the size effects of micro-flo
Vortex-induced vibration of pipes conveying fluid using the method of multiple scales