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Free vibration and buckling analyses of functionally graded beams with edge cracks

机译:带有边缘裂缝的功能梯度梁的自由振动和屈曲分析

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摘要

This paper presents a theoretical investigation in free vibration and elastic buckling of beams made of functionally graded materials (FGMs) containing open edge cracks by using Bernoulli-Euler beam theory and the rotational spring model. It is assumed that the material properties vary along the beam thickness only according to exponential distributions. Analytical solutions of the natural frequencies, critical buckling load, and the corresponding mode shapes are obtained for cracked FGM beams with clamped-free, hinged-hinged, and clamped-clamped end supports. A detailed parametric study is conducted to show the influences of the location and total number of cracks, material properties, slenderness ratio, and end supports on the flexural vibration and buckling characteristics of cracked FGM beams.
机译:本文利用伯努利-欧拉梁理论和旋转弹簧模型,对包含开放边缘裂缝的功能梯度材料(FGM)制成的梁的自由振动和弹性屈曲进行了理论研究。假定材料特性仅根据指数分布沿梁厚度变化。对于带有自由夹紧,铰链铰接和夹紧夹紧端部支撑的破裂FGM梁,获得了固有频率,临界屈曲载荷以及相应的振型的解析解。进行了详细的参数研究,以显示裂纹的位置和总数,材料特性,细长比和端部支撑件对裂纹的FGM梁的弯曲振动和屈曲特性的影响。

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