考虑吊车梁刚度影响的工业厂房立柱钢量节约

M. Farfel, E. D. Mikhailik
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摘要

介绍。建筑科学总是寻求节约材料,包括在钢框架的设计中。目前,在现代建筑标准中,对工业建筑框架即立柱进行结构分析时,没有考虑承受桥式起重机荷载的吊车梁的刚度。然而,这个因素可以给金属一定的经济性,因为起重机结构的刚度直接影响到工业建筑柱的稳定性,从而影响到框架的金属消耗。考虑到起重机梁刚度对工业建筑框架稳定性的影响,实现钢材的节约。材料和方法。为此,本文作者采用了经典的结构力学方法。采用Mathcad软件的程序循环算法求出不同刚度下柱单元的临界力和有效长度系数。工业建筑的柱子通常有两根。在此基础上,采用挠度法进行二次超静定设计。用挠度法将线性方程组的各系数组成的稳定行列式设为零,得到的方程确定了工业建筑柱的临界力,从而求出了柱的承载力。此外,还确定了柱的上、下两部分的有效长度系数。本文将所得结果与不考虑吊车梁的方案进行了比较。考虑吊车梁刚度的影响,使柱的材料消耗减少30%。利用Mathcad软件的程序循环算法,求出了不同刚度下柱单元的临界力和有效长度系数。考虑到工业建筑框架中元素结构的刚度,减少了金属消耗。
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Steel savings in an industrial building column with account for effect of crane girder stiffness
Introduction. Construction science always seeks to save materials, including in the design of steel frameworks. Currently, in modern construction standards, structural analysis of frameworks for industrial buildings, namely their columns, is carried out without considering the stiffness of the crane girder which receives the load from the overhead crane. However, this factor can give a certain economy of metal, since the stiffness of crane structures directly affects the stability of columns of industrial buildings, and therefore the metal consumption of the framework.Aim. To achieve savings of steel due to taking into account the effect of crane girder stiffness on the stability of an industrial building framework.Materials and methods. For these purposes, the authors of the paper used classical methods of structural mechanics. A programmed cyclic algorithm of the Mathcad software was used to find the critical forces and effective length coefficients at various stiffnesses of the column elements. Columns of an industrial building are usually two-member. Given that, its structural design is twice statically indeterminate by the deflection method. The bearing capacity of an industrial building column is found by deriving the critical force, which is determined from the equation obtained by setting equal to zero the stability determinant consisting of the coefficients of the linear equation system by the deflection method. In addition, the effective length coefficient for the upper and lower parts of the column is determined. The paper compares the results obtained with the scheme without taking into account the crane girder.Results. Considering the effect of the crane girder stiffness enabled the material consumption of the column to be reduced by 30 %. Critical forces and effective length coefficients were found at various stiffnesses of the column elements, using a programmed cyclic algorithm of the Mathcad software.Conclusion. Taking into account the stiffness in the structures of the elements in the industrial building frameworks reduces metal consumption.
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