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Load-slip behaviour of glue laminated timber connections with glued-in steel rod parallel to grain

机译:平行于胶合的钢棒的胶合层压木材连接的荷载-滑动特性

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This paper reports experiments performed on glulam connections with glued-in single steel rod to investigate the joint behaviour. A total of 68 glulam joints with glued-in steel rod were tested via pull-pull tests. Experimental variables include the bar diameter, bonded length, glue-line thickness, angle with respect to the grain, species, adhesive type, and rod type. The results indicated that the failure modes were classified as rod pull-out failure, rod yielding, timber splitting, and timber shear failure. The ultimate capacity and stiffness of the joints were mainly influenced by the rod diameter, bonded length, adhesive type, and rod type. Once the bonded length was > 12.5d (rod diameter), the glued-in rebar joints usually failed by bar yielding and both the angle with respect to the grain and the bond-line thickness showed little influence on the joint ultimate capacity and stiffness. The joint ductility coefficient calculated based on the proposed equivalent energy-based method ranges from 2.9 to18.0 indicating that the glued-in steel rod timber joints can show considerable ductility with reasonable design. Finally, a proposed bond-slip model considering the rod-yielding effect was used to predict the bond-slip behaviour of the tested joints. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文报告了用胶合单根钢棒在胶合层连接上进行的实验,以研究接头的行为。通过拉拉试验对总共68个胶合钢棒的胶合节进行了测试。实验变量包括钢筋直径,粘结长度,胶线厚度,相对于晶粒的角度,种类,粘合剂类型和棒状类型。结果表明,破坏模式分为棒材拔出破坏,棒材屈服,木材劈裂和木材剪切破坏。接头的极限承载力和刚度主要受杆直径,粘结长度,粘合剂类型和杆类型的影响。一旦粘结长度> 12.5d(棒直径),胶接的钢筋接头通常会因钢筋屈服而失效,相对于晶粒的角度和粘结线的厚度对接头的极限承载力和刚度几乎没有影响。根据拟议的基于能量的等效方法计算得出的接头延性系数在2.9至18.0范围内,这表明胶合木杆木材接头可以通过合理的设计表现出可观的延性。最后,考虑杆屈服效应的拟议粘结滑移模型被用于预测测试接头的粘结滑移行为。 (C)2019 Elsevier Ltd.保留所有权利。

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