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首页> 外文期刊>International Journal of Solids and Structures >Buckling and vibration of a plate on elastic foundation subjected to in-plane compression and moving loads
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Buckling and vibration of a plate on elastic foundation subjected to in-plane compression and moving loads

机译:平面内压缩和移动载荷作用下弹性地基上板的屈曲和振动

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摘要

The stability and dynamic displacement response of an infinite thin plate resting on a Winkler-type or a two-parameter elastic foundation have been investigated when the system is subjected to in-plane static compressive forces and a distributed load moving with a constant advance velocity. The amplitude of the moving load was assumed to be either constant or of harmonic variation and damping of a linear hysteretic nature for the foundation were considered. Formulations in the transformed field domains of time, space, and moving space were employed. The steady-state response to a moving harmonic load and the response to a moving load of constant amplitude were obtained using a double Fourier transform. Analyses were performed: (i) to investigate the effects of various parameters, such as the load velocity, load frequency, and damping, on the deflected shapes, maximum displacements, and critical values of the velocity, frequency, and in-plane compression, and (ii) to examine how the in-plane compression affects the stability and vibration of the system. Expressions to predict the critical (resonance) velocity, critical frequency, and in-plane buckling force were proposed. (C) 2004 Elsevier Ltd. All rights reserved.
机译:当系统承受平面内静压缩力和以恒定前进速度运动的分布式载荷时,研究了基于Winkler型或两参数弹性基础的无限薄板的稳定性和动态位移响应。假定移动负载的振幅是恒定的或谐波变化,并且考虑了基础线性滞后性质的阻尼。在时间,空间和运动空间的变换场域中使用公式。使用双傅立叶变换获得了对移动谐波负载的稳态响应和对恒定振幅的移动负载的响应。进行了以下分析:(i)研究各种参数(例如载荷速度,载荷频率和阻尼)对挠曲形状,最大位移以及速度,频率和平面压缩的临界值的影响, (ii)检查平面内压缩如何影响系统的稳定性和振动。提出了预测临界(共振)速度,临界频率和面内屈曲力的表达式。 (C)2004 Elsevier Ltd.保留所有权利。

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