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Vibration Analysis With Second-order Effects Of Pultruded Frp Frames Using Locking-free Elements

机译:拉紧Frp框架的二阶效应的无锁单元振动分析

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Vibrations of pultruded (FRP) thin-walled beams and frames are analysed. A second-order approximation of the displacement field is adopted, accounting for shear strain effects due to both nonuniform bending and torsion. Geometric nonlinearities arising from concentrated or distributed external loads are considered. A simple two-node finite element model using polynomial interpolation is adopted. In particular, the interpolating polynomials follow from the solutions to the homogeneous Timoshenko-beam problem and to the warping-torsion problem for a beam with doubly-symmetrical cross-section. Such shape functions contain parameters which tend to zero when the influence of shear deformations becomes negligible, resulting in a locking-free formulation. The convergence properties of the adopted element in the presence of flexural-torsional vibrations are highlighted with reference to mono-symmetrical cross-section carbon-FRP profiles. Vibration frequencies and mode shapes of pultruded glass-FRP portal frames are extensively evaluated as a function of the applied loads and sudden exchanges of fundamental modes are pointed out. The influence of frame geometry, shear deformations, participating masses and geometrical effects due to distributed external loads is investigated.
机译:分析了拉挤(FRP)薄壁梁和框架的振动。采用位移场的二阶近似,考虑了由于不均匀弯曲和扭转引起的剪切应变效应。考虑由集中或分散的外部载荷引起的几何非线性。采用了采用多项式插值的简单两节点有限元模型。特别地,对于具有双对称横截面的梁,内插多项式遵循均质Timoshenko梁问题和翘曲扭转问题的解。这种形状函数包含的参数在剪切变形的影响可以忽略不计时趋于零,从而形成了无锁定的配方。参照单对称横截面碳FRP轮廓,突出了在存在扭转扭转振动时所采用元素的会聚特性。广泛评估了拉挤玻璃钢FRP门框的振动频率和模态形状,作为施加载荷的函数,指出了基本模态的突然交换。研究了框架几何形状,剪切变形,参与质量以及由于分布的外部载荷引起的几何效应的影响。

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