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Effect of Eccentricity of Applied Force and Geometrical Imperfections on Stiffness of Stack of Cuboidal Steel Elements

机译:应用力和几何缺陷偏心对立方体钢元件叠层刚度的影响

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摘要

Experimental tests were performed on a stack of cuboidal steel elements and its mathematical model was developed. Each cuboidal element was made of rolled profiles. Such stacks are the part of temporary supports that can be used to eliminate deflections of buildings. Stacks were loaded eccentrically through the inaccurate position of a jack. Moreover, two types of geometrical imperfections could be noticed. They included inaccurate contact between the stack elements and initial relative displacements of profiles that formed cuboidal elements. A mathematical model was developed to describe deformations of the stack and its parameters were determined by analysing test results. The eccentricity of the applied force had a slight impact on the stack stiffness, which was considerably reduced by geometrical imperfections. The imperfection covering initial relative displacements of rolled profiles inside cuboidal elements had the greatest impact on the stiffness. It could cause even a 10-fold drop in the stack stiffness when compared with the theoretical stiffness resulting from the stiffness of the stack section, and the stiffness dropped by ca. 3.5 times when the imperfection included the inaccurate contact between the cuboidal elements. Finally, the occurrence of both types of geometrical imperfections generated the real stiffness more than ten times lower than the theoretical stiffness that did not take into account imperfections.
机译:在一堆立方体钢元件上进行实验试验及其数学模型。每个立方体元素由轧制型材制成。这种堆栈是临时支持的部分,可用于消除建筑物的偏转。堆叠通过千斤顶的不准确位置偏心地装载。此外,可以注意到两种类型的几何缺陷。它们包括在堆叠元件和形成立方元素的曲线的初始相对位移之间的不准确的接触。开发了一种数学模型来描述堆叠的变形及其参数通过分析测试结果来确定。施加力的偏心率对堆叠刚度产生轻微影响,这通过几何缺陷显着降低。在立方体元件内滚动型材的初始相对位移的缺陷对刚度产生了最大的影响。与堆叠部分的刚度导致的理论刚度相比,它可能导致堆叠刚度下降10倍,并且通过CA滴下的刚度。 3.5次缺陷包括立方体元素之间不准确的接触。最后,两种类型的几何缺陷的发生产生的真正刚度超过了不考虑缺陷的理论刚度的十倍以上。

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