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Buckling capacity of functionally graded beams: A comparative study of different shear deformation beam theories

机译:功能梯度梁的屈曲能力:不同剪切变形梁理论的比较研究

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This paper investigates the postbuckling response of simply supported functionally graded beams under axial loading using several beam theories; classical beam theory, CBT, Timoshenko beam theory, TBT and parabolic shear deformation beam theory, PSDBT. Hamilton's principle is used to derive the governing equations which are solved by closed-form method. It is assumed that the Young's modulus is varying continuously in the thickness direction according to power-law form while all other material properties are taken to be constant. The effects of the reinforcement distribution, the beam edge-to-thickness ratio and the phase contrast (ratio of the reinforcement Young's modulus to the matrix Young's modulus) on the postbuckling behavior and critical buckling load of functionally graded beam are studied. Results demonstrate the important contribution of the shear effect to both the buckling and postbuckling behaviors. Finally, the combinations of reinforcement distribution, beam edge-to-thickness ratio and phase contrast that correspond to the highest and the lowest buckling capacities are identified.
机译:本文利用几种梁理论研究了简单支撑的功能梯度梁在轴向载荷下的后屈曲响应。经典梁理论,CBT,蒂莫申科梁理论,TBT和抛物线剪切变形梁理论,PSDBT。用汉密尔顿原理导出控制方程,并用闭式方法求解。假设杨氏模量根据幂律形式在厚度方向上连续变化,而所有其他材料属性均保持不变。研究了钢筋分布,梁边厚比和相衬度(钢筋杨氏模量与基体杨氏模量之比)对功能梯度梁的后屈曲性能和临界屈曲载荷的影响。结果表明,剪切作用对屈曲和屈曲后行为都有重要贡献。最后,确定了对应于最高和最低屈曲能力的钢筋分布,梁边缘厚度比和相衬度的组合。

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