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Numerical and Experimental Research of the Design Method of Plate-Insert Welded Tubular Joint

机译:板插入焊接管关节设计方法的数值和实验研究

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摘要

This paper puts forward a new kind of joint called plate-insert welded tubular joint that is used in long-span prestressed spatial structures. It is composed of one inserted plate, one major member, and several minor members. The plate is inserted through a major member, and the minor members intersect the major member. The static performance of cooperative work between the inserted plate, major member, and minor members are studied by numerical analysis using ABAQUS and Ansys, from which the elastic ultimate bearing capacity of the joint are obtained. The multigroup of geometric parameters are set to establish a number of finite-element models for parametric analysis to obtain the effect rule of different inserted-plate length parameters on bearing capacity. Then a new design method of the joint is put forward on the basis of the analysis. From the joint design example of the second stage of the Tianjin Binhai International Exhibition, the reliability of the method is verified using a combination of numerical and experimental studies.
机译:本文提出了一种名为板式焊接管状线圈的新型关节,用于长跨度预应力空间结构。它由一个插入的板,一个主要成员和几个小成员组成。板通过主要构件插入,并且次要构件与主要构件相交。通过使用ABAQUS和ANSYS的数值分析研究了插入板,主要构件和次要成员之间的协同工作的静态性能,从中获得了接头的弹性极性轴承容量。设置几何参数的MultiGroup被设置为为参数分析建立一些有限元模型,以获得轴承容量上不同插入板长度参数的效果规则。然后,在分析的基础上提出了联合的新设计方法。从天津滨海国际展览的第二阶段的联合设计示例,使用数值和实验研究的组合来验证该方法的可靠性。

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