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Identification of Tie-Rods Tensile Axial Force in Civil Structures

机译:识别民用结构中的拉杆拉伸轴向力

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This paper is concerned with the problem of identifying the tensile axial force of metallic tie-rods used in civil structures. Tie-rods are generally used to transfer a tensile force between different structural elements. Specifically in civil structures, they are often used to unburden the lateral load exercised by the vaults and arcs on walls or columns, in ancient monumental masonry buildings as well as in modern concrete/iron constructions. A direct measure of this force is impossible and the tension is an unknown variable, as are the boundary conditions expressed by the constraints. Thus, in such a scenario, the characteristic equation has no analytical solutions. The paper proposes an experimental technique developed to identify, in situ, the tensile force on the rod. The identification method uses the first modal frequencies of the structure, identified by measuring the frequency response functions (FRFs) with instrumented hammer excitation. The frequencies are used to characterize some correlation indexes that change according to the variation in the tensile axial force of the rod. An FEM code numerical model allows to identify where the change in correlation indexes along the tie-rod could be greatest, in order to arrange a suitable measurement set up. Then the numerical model provides an evaluation of the tensile force corresponding to the set of correlation indexes identified. An estimation of the error in the identification of the force is given by a reasonable interval of stiffness of the constraints. The technique has been tested on laboratory system.
机译:本文涉及识别民用结构中使用的金属连接棒的拉伸轴向力的问题。拉杆通常用于在不同结构元件之间传递拉力。特别是在民用结构中,它们通常用于在古老的巨大砌体建筑物以及现代混凝土/铁建筑中占据墙壁或柱子上的拱顶和圆弧线的横向负荷。这种力的直接测量是不可能的,并且张力是未知的变量,而是由约束表示的边界条件。因此,在这样的场景中,特征方程没有分析解决方案。本文提出了一种开发的实验技术,以识别杆上的拉伸力。识别方法使用结构的第一模态频率,通过用仪表锤激励测量频率响应函数(FRF)来识别。频率用于表征根据杆的拉伸轴向力的变化改变的一些相关指数。一个有限元编码数值模型允许识别沿着拉杆的相关指数的变化可以最大的位置,以便布置合适的测量设置。然后,数值模型提供了对应于识别的一组相关索引的拉伸力的评估。通过约束的合理间隔给出了识别力识别中误差的估计。该技术已在实验室系统上进行测试。

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