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Free vibration of axially loaded composite beams using a four-unknown shear and normal deformation theory

机译:基于四未知切变和法向变形理论的轴向加载组合梁的自由振动

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摘要

This paper presents free vibration of composite beams under axial load using a four-unknown shear and normal deformation theory. The constitutive equation is reduced from the 3D stress-strain relations of orthotropic lamina. The governing differential equations of motion are derived using the Hamilton’s principle. A two-node C1 beam element is developed by using a mixed interpolation with linear and Hermite-cubic polynomials for unknown variables. Numerical results are computed and compared with those available in the literature and commercial finite element software (ANSYS and ABAQUS). The comparison study illustrates the effects of normal strain, lay-ups and Poisson’s ratio on the natural frequencies and load-frequency curves of composite beams.
机译:本文利用四个未知的剪切和法向变形理论介绍了复合梁在轴向载荷下的自由振动。本构方程从正交各向异性薄板的3D应力-应变关系简化而来。控制的运动微分方程是根据汉密尔顿原理导出的。通过使用带有线性和Hermite-cubic多项式的混合插值法开发未知变量的两节点C1梁单元。计算出数值结果,并将其与文献和商业有限元软件(ANSYS和ABAQUS)中的数值进行比较。这项比较研究说明了法向应变,叠层和泊松比对复合梁的固有频率和载荷-频率曲线的影响。

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