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Use of pin-jointed structures in teaching frame analysis

机译:销钉连接结构在教学框架分析中的使用

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In the flexibility-based method of frame analysis described in this paper, the principle of superposition is used to combine (a) the effect of applied loads and actions with the unknown end moments equated to zero and (b) the effect of the unknown end moments in an otherwise unloaded structure. The first stage of this superposition process, in which the unknown end moments are equated to zero, corresponds to a pin-jointed structure in which loads and actions are applied to simply supported elements. This pin-jointed structure is demonstrated in this paper to provide a simple and consistent model for teaching independent modes of sway and the associated compatibility expressions relating sway translations to element sway rotations and joint translations. It also simplifies derivation of the sway equilibrium equations and consideration of the effects of temperature and settlement. More importantly it provides a useful basis for sketching bending moment diagrams and deflected shapes. As the pin-jointed structure represents a compatible set of virtual displacements it may also be applied to similar processes in stiffness-based methods of analysis. This helpful teaching model is illustrated using examples of a continuous beam and a pair of sway frames.
机译:在本文描述的基于灵活性的框架分析方法中,叠加原理用于将(a)施加给载荷和作用的作用与未知端力矩等于零的情况相结合,以及(b)未知端的作用相结合。否则会处于未加载的结构中。叠加过程的第一阶段,其中未知的结束力矩等于零,对应于销钉连接的结构,在该结构中,载荷和作用作用于简单支撑的单元。本文演示了这种销钉连接结构,可为教授独立的横摆模式以及将横摆平移与元素横摆旋转和关节平移相关的相关兼容性表达式提供简单而一致的模型。它还简化了摇摆平衡方程的推导,并简化了温度和沉降影响的考虑。更重要的是,它为草绘弯矩图和挠曲形状提供了有用的基础。由于销钉连接的结构表示一组兼容的虚拟位移,因此它也可以应用于基于刚度的分析方法中的类似过程。使用连续梁和一对摇摆框架的示例来说明此有用的教学模型。

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