RHS节理受拉t形桩解析撬取模型研究

Andrej Mudrov, G. Šaučiuvėnas, A. Šapalas
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引用次数: 2

摘要

本文研究了沿管两侧和四边螺栓连接的轴向加载RHS端板接头的抗拉能力计算的分析模型,以研究撬动现象。此类接头的设计因EN 1993-1-8中缺乏规则而受到阻碍,这就提出了一个问题,即受拉构件中的欧洲规范3等效T形槽是否应包含AISC/CIDECT/CISC设计指南中的综合假设。本文考虑了螺栓孔对塑性铰链长度的影响,并在各种假设条件下对不同的T形槽模型进行了比较。在试验中测试了未预加载和预加载螺栓接头的性能和坍塌机制。对文献中发现的47个接头的试验结果以及7个试验的统计分析表明,最好对沿两侧和四边螺栓连接的接头使用通用方法。此外,还规定了最小法兰厚度的限制。所进行的研究揭示了T型槽模型的优点和缺点,并提出了合理的改进建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A STUDY ON ANALYTICAL T-STUB PRYING MODELS FOR RHS JOINTS IN TENSION
The article investigates analytical models for calculation of tension capacity of axially-loaded RHS end-plate joints bolted along two and four sides of the tube in order to investigate the phenomena of prying. Design of such joints is impeded by lack of rules in EN 1993-1-8 and it raises the question whether the Eurocode 3 equivalent T-stub in the tension component should contain integrated assumptions from the AISC/CIDECT/CISC design guides. This paper considers the effect of the bolt hole on the length of the plastic hinge and compares different T-stub models with various assumptions. The behaviour and collapse mechanism of joints with non-preloaded and preloaded bolts was tested during an experiment. The statistical analysis of the test results of 47 joints found in the literature in conjunction with 7 tests determined that it was preferable to use a common approach for connections bolted along two and four sides. Additionally, a limitation of a minimum flange thickness is specified. The performed research has disclosed the benefits and shortcomings of the T-stub models and justified recommendations for their improvement.
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