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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Asymptotic Approach to Oblique Cross-Sectional Analysis of Beams
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Asymptotic Approach to Oblique Cross-Sectional Analysis of Beams

机译:梁斜截面分析的渐近方法

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Structural and aeroelastic analyses using beam theories by default choose a cross section that is perpendicular to the reference line. In several cases, such as swept wings with high AR, a beam theory that allows for the choice of a cross section that is oblique to the reference line may be more convenient. This work uses the variational asymptotic method (VAM) to develop such a beam theory. The problems addressed are the planar deformation of a strip and the full 3D deformation of a solid, prismatic, right-circular cylinder, both made of homogeneous, isotropic material. The motivation for choosing these problems is primarily the existence of 3D elasticity solutions, which comprise a complete validation set for all possible deformations and which are shown to be accurately captured by the current analysis. A secondary motivation was that the development and final results of the beam theory, i.e., the cross-sectional stiffness matrix and stress-strain-displacement recovery relations, are obtainable as closed-form analytical expressions. These results, coupled with the VAM-based beam analysis being devoid of ad hoc assumptions, culminate in what is expected to be of significance when formulating a general oblique cross-sectional analysis for beams with anisotropic material and initial curvature/twist, the detailed treatment of which will be alluded to in a later paper.
机译:默认情况下,使用梁理论进行结构和气动弹性分析时,将选择与参考线垂直的横截面。在几种情况下,例如具有高AR的后掠机翼,允许选择倾斜于参考线的横截面的波束理论可能会更方便。这项工作使用变分渐近方法(VAM)来发展这种波束理论。解决的问题是带材的平面变形和实心,棱柱形,直角圆柱体的全3D变形,两者均由均质的各向同性材料制成。选择这些问题的动机主要是3D弹性解决方案的存在,该解决方案包括针对所有可能变形的完整验证集,并已显示可通过当前分析准确捕获。次要动机是梁理论的发展和最终结果,即截面刚度矩阵和应力-应变-位移恢复关系,可以作为封闭形式的解析表达式获得。这些结果,再加上没有临时假设的基于VAM的梁分析,最终形成了对具有各向异性材料和初始曲率/扭曲的梁进行一般斜截面分析时的预期意义,详细处理其中将在以后的文章中提及。

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