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Lateral buckling analysis of thin-walled laminated composite beams with monosymmetric sections

机译:单对称截面薄壁层合梁的横向屈曲分析

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Lateral buckling of thin-walled composite beams with monosymmetric sections is studied. A general geometrically nonlinear model for thin-walled laminated composites with arbitrary open cross-section and general laminate stacking sequences is given by using systematic variational formulation based on the classical lamination theory. All the stress resultants concerning bar and shell forces are defined, and nonlinear strain tensor is derived. General nonlinear governing equations are given, and the lateral buckling equations are derived by linearizing the nonlinear governing equations. Based on the analytical model, a displacement-based one-dimensional finite element model is developed to formulate the problem. Numerical examples are obtained for thin-walled composite beams with monosymmetric cross-sections and angle-ply laminates. The effects of fiber orientation, location of applied load, modulus ratio, and height-to-span ratio on the lateral buckling load are investigated. The torsion parameter and a newly-defined composite monosymmetry parameter are also investigated for various cases.
机译:研究了单对称截面薄壁组合梁的横向屈曲问题。通过基于经典层压理论的系统变分公式,给出了具有任意开放横截面和常规层压堆叠顺序的薄壁层压复合材料的一般几何非线性模型。定义了与杆和壳力有关的所有应力合力,并得出了非线性应变张量。给出了一般的非线性控制方程,并通过线性化非线性控制方程来推导横向屈曲方程。在解析模型的基础上,建立了基于位移的一维有限元模型来求解该问题。对于具有单对称横截面和角铺层板的薄壁复合梁,得到了数值示例。研究了纤维取向,施加载荷的位置,模量比和高宽比对横向屈曲载荷的影响。还针对各种情况研究了扭转参数和新定义的复合单对称参数。

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