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Behaviour of hybrid timber beam-to-tubular steel column moment connections

机译:混合木梁到管的钢柱弯矩连接行为

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摘要

This paper presents an experimental and numerical study into the response of bolted connections between Glulam timber beams and tubular steel columns. Six specimens involving two different connection types subjected to monotonically increasing bending action are examined. The first connection type incorporates top and seat angles blind-bolted to the column and jointed to the beam through long bolts. The second connection type is formed by a steel T-stub slotted into the timber beam and connected to it by means of transverse bolts. In addition, two reinforcing techniques aimed at enhancing the response of the slotted-in T-stub configuration are investigated. These include the provision of a bottom wedge angle between the beam and the column as well as the use of perpendicular-to-grain screws to delay wood splitting. The experimental set-up, connection configurations and material properties are introduced followed by a detailed account of the test results and observations. The main behavioural patterns are identified from the experiments and key response characteristics such as stiffness, capacity and failure mechanism are discussed. This paper shows that the use of bottom wedge angles leads to significant enhancement in the flexural yield strength of the T-stub connections, accompanied by a relatively small change in the location of the bolt-group point of rotation (monitored herein by means of Digital Image Correlation techniques), Besides, the use of reinforcing screws is shown to be an effective detail for substantially increasing the rotational ductility of the connections, Finite element simulations of the tests are also presented, together with a detailed description of the modelling approaches employed, in order to gain further insight into the behaviour of the connectipns. Finally, the applicability of simplified component-based expressions, which are suitable for practical design assessment procedures, for the estimation of the stiffness and capacity of the proposed hybrid glulam-to-tubular column connections are presented and discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文对胶合木梁与管状钢柱之间的螺栓连接响应进行了实验和数值研究。检验了涉及两个不同连接类型的六个样本,它们经受了单调增加的弯曲作用。第一种连接类型包括盲孔连接到立柱并通过长螺栓连接到横梁的顶角和支座角。第二种连接方式是由一个钢制的T形短管形成的,该T形短管插入木梁并通过横向螺栓连接到木梁上。此外,研究了两种旨在增强开槽的T型短截线配置响应的增强技术。这些措施包括在横梁和立柱之间提供底部楔角,以及使用垂直于纹理的螺钉来延迟木材劈裂。介绍了实验设置,连接配置和材料特性,然后详细介绍了测试结果和观察结果。通过实验确定了主要的行为模式,并讨论了诸如刚性,容量和破坏机理等关键响应特征。本文表明,使用底部楔角可显着提高T型短管连接的弯曲屈服强度,同时螺栓组旋转点的位置变化相对较小(此处通过Digital监测)图像相关技术),此外,使用加固螺钉被证明是有效增加连接件的旋转延展性的有效细节,还提供了测试的有限元模拟以及所采用建模方法的详细说明,为了进一步了解connectipns的行为。最后,提出并讨论了简化的基于构件的表达式的适用性,该表达式适用于实际的设计评估程序,用于估计所提出的混合胶合层至管状柱连接的刚度和能力。 (C)2016 Elsevier Ltd.保留所有权利。

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