弹性基础上极坐标正交各向异性锥形圆板的受力响应

Q2 Physics and Astronomy Advances in Acoustics and Vibration Pub Date : 2016-08-03 DOI:10.1155/2016/1492051
A. Ansari
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引用次数: 3

摘要

在经典板理论的基础上,研究了温克勒型弹性地基上线性变厚的正交各向异性极板的强迫轴对称响应。利用基于极坐标正交各向异性圆板静挠度的函数,用瑞利-里兹法得到了问题的近似解。研究了横向荷载对弹性基础上正交各向异性圆板的影响。给出了不同锥度参数、刚度比、基础参数和柔度参数值在不同荷载作用下的横向挠度和弯矩。结果与文献中已有的结果相比较,显示出极好的一致性。
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Forced Response of Polar Orthotropic Tapered Circular Plates Resting on Elastic Foundation
Forced axisymmetric response of polar orthotropic circular plates of linearly varying thickness resting on Winkler type of elastic foundation has been studied on the basis of classical plate theory. An approximate solution of problem has been obtained by Rayleigh Ritz method, which employs functions based upon the static deflection of polar orthotropic circular plates. The effect of transverse loadings has been studied for orthotropic circular plate resting on elastic foundation. The transverse deflections and bending moments are presented for various values of taper parameter, rigidity ratio, foundation parameter, and flexibility parameter under different types of loadings. A comparison of results with those available in literature shows an excellent agreement.
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期刊介绍: The aim of Advances in Acoustics and Vibration is to act as a platform for dissemination of innovative and original research and development work in the area of acoustics and vibration. The target audience of the journal comprises both researchers and practitioners. Articles with innovative works of theoretical and/or experimental nature with research and/or application focus can be considered for publication in the journal. Articles submitted for publication in Advances in Acoustics and Vibration must neither have been published previously nor be under consideration elsewhere. Subject areas include (but are not limited to): Active, semi-active, passive and combined active-passive noise and vibration control Acoustic signal processing Aero-acoustics and aviation noise Architectural acoustics Audio acoustics, mechanisms of human hearing, musical acoustics Community and environmental acoustics and vibration Computational acoustics, numerical techniques Condition monitoring, health diagnostics, vibration testing, non-destructive testing Human response to sound and vibration, Occupational noise exposure and control Industrial, machinery, transportation noise and vibration Low, mid, and high frequency noise and vibration Materials for noise and vibration control Measurement and actuation techniques, sensors, actuators Modal analysis, statistical energy analysis, wavelet analysis, inverse methods Non-linear acoustics and vibration Sound and vibration sources, source localisation, sound propagation Underwater and ship acoustics Vibro-acoustics and shock.
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