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Nonlinear Euler-Bernoulli beam kinematics in progressive collapse analysis based on the Smith's approach

机译:基于史密斯方法的非线性欧拉-伯努利梁运动学的渐进倒塌分析

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Within the scope of this article a nonlinear kinematics of the two-dimensional, non-shear-deformable and extensible Euler-Bernoulli beam imposed with the planar flexure and/or lengthening/ shortening is considered. The complete and exact formulations of the pertinent kinematic response quantities (displacements, curvature and strain) are derived and discussed. Special emphasis is given to the case of the symmetric bending devoid of the external longitudinal force action, since it represents an appropriate idealization of the realistic load cases for the most of the ship and aircraft structures. The relationship between proposed and conventional formulations, i.e. those commonly accepted in the current structural engineering practice and employed by the current progressive collapse analysis methods based on Smith's approach, is discussed throughout the article and illustratively exemplified through the case of the pure symmetric bending of the Euler -Bernoulli cantilever. Finally, implications of the derived formulations pertinent to the progressive collapse analysis methods based on the Smith's approach are discussed.
机译:在本文的范围内,考虑了具有平面弯曲和/或加长/缩短的二维,不可剪切变形和可扩展的Euler-Bernoulli梁的非线性运动学。得出并讨论了有关运动学响应量(位移,曲率和应变)的完整而精确的公式。特别强调没有外部纵向力作用的对称弯曲的情况,因为它代表了大多数船舶和飞机结构的实际载荷工况的适当理想化。提议的和常规的公式之间的关系,即在当前结构工程实践中通常接受并在基于史密斯方法的当前渐进倒塌分析方法中所采用的公式,在整篇文章中进行了讨论,并通过纯对称弯曲的示例进行了说明。欧拉-伯努利悬臂。最后,讨论了与基于史密斯方法的逐步倒塌分析方法有关的派生配方的含义。

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