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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >PREDICTION OF MAXIMUM MOMENT OF CIRCULAR TUBES SUBJECTED TO PURE BENDING IN CONSIDERATION OF THE LENGTH EFFECT
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PREDICTION OF MAXIMUM MOMENT OF CIRCULAR TUBES SUBJECTED TO PURE BENDING IN CONSIDERATION OF THE LENGTH EFFECT

机译:考虑到长度影响,预测纯弯曲的圆管最大弯矩

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摘要

In the present study, the bending collapse of an elastoplastic cylindrical tube subjected to static pure bending is investigated using the finite element method (FEM). The moment of the elastoplastic cylindrical tube is controlled by the flattening rate of the tube cross-section. For a long tube, the flattening rate can be expressed in terms of the axial and circumferential stresses that, in turn, depend on the material and geometrical properties and the curvature of the tube. On the other hand, for a short tube, the boundary condition of the fixed walls prevents the flattening rate. In order to account for the length effect of tubes, we propose a new method in which flattening is considered as a deflectionproblem of a fixed curved beam. The proposed method was able to predict the change in the flattening rate as the curvature was increased. A rational prediction method is proposed for estimating the maximum bending moment of cylindrical tubes that accounts for the length effect. Its validity is demonstrated by comparing it predictions with numerical results obtained using the finite element method.
机译:在本研究中,使用有限元方法(FEM)研究了承受静态纯弯曲的弹塑性圆柱管的弯曲塌陷。弹塑性圆柱管的弯矩由管横截面的扁平率控制。对于长管,可以根据轴向应力和周向应力来表示扁平率,而轴向应力和周向应力又取决于管的材料和几何特性以及曲率。另一方面,对于短管,固定壁的边界条件阻止了扁平率。为了考虑管的长度效应,我们提出了一种新方法,其中将扁平化视为固定弯曲梁的挠曲问题。所提出的方法能够预测随着曲率增加而展平率的变化。提出了一种合理的预测方法来估计圆柱管的最大弯矩,该弯矩考虑了长度效应。通过将其预测结果与使用有限元方法获得的数值结果进行比较,证明了其有效性。

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