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Numerical analysis of timber-to-timber joints and composite beams with inclined self-tapping screws

机译:倾斜自攻螺钉的木木结合节及组合梁的数值分析

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In this paper, a Finite-Element (FE) numerical investigation on timber-to-timber joints and composite beams with inclined self-tapping screws (STSs) is presented. Based on past experimental data and numerical literature efforts, full 3D solid FE models of selected geometrical and mechanical configurations of technical interest are implemented in ABAQUS software package and analysed under static loading conditions. The typical push-out samples include GL24h timber members with several types (WT-T-8.2, 190 mm and 220 mm their length), layouts (2 + 2, 4 + 4, 2 + 2 X-shaped) and inclination of screws (up to +/- 45 degrees). For the full-scale beam samples in bending (8 m their span), composite systems consisting of GL24h timber beam, wooden plank, spruce floorboards and STSs are investigated. There, the STS joints take the form of two-rows or X-shaped connections, respectively (45 degrees or 90 degrees their inclination), including four screw types and different spacing. In both the push-out and full-scale cases, simple modelling approaches are taken from the ABAQUS library and adapted to the timberto-timber structural system under investigation, so as to explore their structural performance in the elastic and post-damage phases, up to failure. A key role in the typical FE models is assigned to input material properties and mechanical contacts, including damage constitutive laws so as to reproduce possible local failure phenomena in the timber or steel components, as well as cohesive damage interactions for the joints. The presented FE models are calibrated in accordance with past research studies, and validated - for the examined structural typology - against experimental results available in literature. Comparative calculations are hence presented, based on the collected numerical, experimental and analytical estimations for the selected samples. As shown, the examined modelling approach can reasonably capture the expected performance of timber-to-timber joints and composite systems.
机译:在本文中,对木材与木材的连接以及带有倾斜自攻螺钉(STSs)的复合梁的有限元(FE)数值研究进行了介绍。根据过去的实验数据和数字文献的努力,在ABAQUS软件包中实现了具有技术兴趣的选定几何和机械配置的完整3D实体有限元模型,并在静态载荷条件下进行了分析。典型的推出样本包括GL24h木材构件,它们具有几种类型(WT-T-8.2,长度为190 mm和220 mm),布局(2 + 2、4 + 4、2 + 2 X形)和螺钉的倾斜度(最高+/- 45度)。对于弯曲中的全尺寸梁样本(跨度为8 m),研究了由GL24h木梁,木板,云杉地板和STS组成的复合系统。在那里,STS接头分别采用两排或X形连接(其倾斜度为45度或90度)的形式,包括四种螺钉类型和不同的间距。在推出和全面应用的情况下,都从ABAQUS库中获取简单的建模方法,并将其应用于正在研究的木木结构系统,以探索其在弹性和破坏后阶段的结构性能。失败。在典型的有限元模型中,关键的作用是分配给输入的材料特性和机械接触,包括损伤本构关系,以便重现木材或钢部件中可能的局部破坏现象以及接头的内聚破坏相互作用。提出的有限元模型是根据过去的研究进行校准的,并针对文献中可用的实验结果对所检查的结构类型进行了验证。因此,基于所收集样本的数值,实验和分析估计值,提供了比较计算。如图所示,所研究的建模方法可以合理地捕获木材到木材的接头和复合系统的预期性能。

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