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Vibration of smart laminated carbon nanotube-reinforced composite cylindrical panels on elastic foundations in hygrothermal environments

机译:湿热地区弹性基础上的智能层叠碳纳米管增强复合圆柱板的振动

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摘要

This paper studies vibration characteristics of smart laminated carbon nanotube-reinforced composite cylindrical panels resting on elastic foundations affected by hygrothermal environmental conditions. Effective material properties are estimated by the Mori-Tanaka micromechanics model. The motion equations for the vibration problem of the laminated composite panel are derived from the lamination theory and the first order shear deformation theory and take into consideration of the effects of elastic foundations, piezoelectricity, and temperature and moisture variations. Natural frequencies of panel vibration under various mechanical boundary conditions are computed using wave propagation approach. Parametric studies with the effects of boundary conditions, elastic foundations, panel geometry, carbon nanotube reinforcement, piezoelectricity, and hygrothermal conditions on frequencies are presented. Adding more ending supports, elastic foundations, and increase of nanotube volume fraction have increasing influence on the frequencies, while increase of panel length and decrease of its thickness, bonding piezoelectric materials, and increase of temperature and moisture lead to the decrease of frequencies.
机译:本文研究了湿热环境条件影响的弹性基础上的智能层压碳纳米管增强复合圆柱板的振动特性。 Mori-Tanaka微机械模型估算有效材料特性。叠层复合板的振动问题的运动方程源自层压理论和第一阶剪切变形理论,并考虑了弹性基础,压电和温度和水分变化的影响。使用波传播方法计算各种机械边界条件下的面板振动的自然频率。介绍了参数研究,采用边界条件,弹性基础,面板几何形状,碳纳米管增强,压电性和湿热性在频率上的影响。添加更多的最终支撑,弹性基础以及纳米管体积分数的增加对频率的影响越来越大,而面板长度的增加和其厚度减小,粘接压电材料的增加,以及温度和水分的增加导致频率的降低。

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