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Three-dimensional second order analysis of scaffolds with semi-rigid connections

机译:半刚性连接的支架三维二阶分析

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Proprietary scaffold structures are generally slender and normally fail by elastic instability. The elastic buckling load of a scaffold is affected by the stiffness of the connections. In proprietary scaffold structures these connections exhibit different behaviour under clock-wise and anti-clockwise rotations. The moment- rotation curves are highly non-linear and frequently have very low stiffnesses including the possibility of connection looseness with different loading and unloading curves. This paper describes a computer model developed to incorporate this non-linear joint behaviour and also includes the development of a three-dimensional stability function of the uprights including torsion. Good agreement has been achieved between theory and experiment. The results of the analysis show that the deflection behaviour of the scaffold is sensitive to the shape of the approximations used to model connection moment- rotation curves.
机译:专有的支架结构通常是细长的并且通常通过弹性不稳定性失效。支架的弹性屈曲负荷受连接刚度的影响。在专有的脚手架结构中,这些连接在时钟方面和逆时针旋转下表现出不同的行为。片段旋转曲线是高度非线性的,并且通常具有非常低的刚度,包括用不同的装载和卸载曲线连接松动的可能性。本文介绍了一种用于结合这种非线性关节行为的计算机模型,并且还包括开发包括扭转的立柱的三维稳定功能。在理论和实验之间取得了良好的一致性。分析结果表明,脚手架的偏转行为对用于模拟连接力矩旋转曲线的近似的形状敏感。

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