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螺栓紧固件间距对组合弯曲构件横向扭转屈曲条件下弹性临界荷载影响的评估。

Evaluation of the Influence of Bolt Fastener Spacing on the Elastic Critical Load from the Lateral-Torsional Buckling Condition of Built-Up Bending Members.

作者信息

Piotrowski Rafał, Szychowski Andrzej

机构信息

Faculty of Civil Engineering and Architecture, Kielce University of Technology, 25-314 Kielce, Poland.

出版信息

Materials (Basel). 2024 Jul 9;17(14):3392. doi: 10.3390/ma17143392.

Abstract

In an experimental study of two-branched beams bent transversely about the major stiffness axis, the elastic critical load from the lateral-torsional buckling condition was determined. The tests were conducted on simply supported two-branch beam models with a built-up section consisting of two cold-formed channel members (2C) bolted back-to-back. The bolts were located at the mid-height of the built-up cross-section. Five groups of members differing in longitudinal bolt spacing were examined. The models were gravitationally loaded (using ballast) at the centre of the beam span. This approach eliminated the undesirable effect of the lateral support of the beam, e.g., by the actuator head. The critical load, measured by the concentrated transverse force (), was determined using the modified Southwell method. It has been experimentally shown that, in built-up beams, there is an influence of bolt spacing on the elastic critical load from the lateral-torsional buckling condition. The lowest critical load capacity and the most non-linear behaviour of the built-up member were observed in beams bolted with only three bolts (at the supports and in the middle of the span). However, the experimental results obtained in this study show that increasing the number of bolts above a certain level (in the case of the tested models, it was seven bolts) does not result in a further increase in the critical load, which is a surprising result. The obtained values were 15 to 23% lower than the critical load determined numerically by the finite element method () for an analogous element with a uniform I-section.

摘要

在一项关于两分支梁绕主要刚度轴横向弯曲的实验研究中,确定了横向扭转屈曲条件下的弹性临界载荷。试验在简支两分支梁模型上进行,该模型采用由两个背对背螺栓连接的冷弯槽钢构件(2C)组成的组合截面。螺栓位于组合截面的中间高度处。研究了五组纵向螺栓间距不同的构件。模型在梁跨中心通过重力加载(使用压载物)。这种方法消除了梁侧向支撑(例如通过 actuator 头部)的不良影响。通过集中横向力()测量的临界载荷,使用改进的索思韦尔方法确定。实验表明,在组合梁中,螺栓间距对横向扭转屈曲条件下的弹性临界载荷有影响。在仅用三个螺栓(在支座处和跨中)连接的梁中,观察到组合构件的临界载荷能力最低且行为最非线性。然而,本研究获得的实验结果表明,将螺栓数量增加到一定水平以上(在测试模型中为七个螺栓)并不会导致临界载荷进一步增加,这是一个令人惊讶的结果。获得的值比通过有限元方法()对具有均匀工字形截面的类似构件数值确定的临界载荷低 15%至 23%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bda/11278395/13fafad0628a/materials-17-03392-g001.jpg

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