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STRUCTURAL ANALYSIS OF IN-PLANE LOADED CLT BEAMS

机译:平面内CLT梁的结构分析

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摘要

Cross laminated timber (CLT) is a versatile engineered timber product that is increasingly well-known and of global interest in several applications such as full size plane or linear timber elements. The aim of this study involves investigating the performance of CLT beams loaded in-plane by considering bending and shear stress analysis with a special emphasis on the in-plane shear behavior including the complex internal structure of CLT. Numerical analysis based on 3D-FE models was used and compared with two existing analytical approaches, namely representative volume sub element (method I) and composite beam theory (method II). The separate verification of bending and shear stresses including tree different shear failure modes was performed, and a good agreement was obtained. The main difference between the results relates to shear failure mode in the crossing areas between the orthogonally bonded lamellas in which the distribution of shear stresses τzx over the crossing areas per height of the CLT beam is not in accordance with the analytical assumptions. The presented analyses constitute the first attempt to contribute to the on-going review process of Eurocode 5 with respect to CLT beams loaded-in plane. Currently, regulations on designing these types of beams do not exist, and thus experimental and numerical investigations are planned in the future.
机译:交叉层压木材(CLT)是一种用途广泛的工程木材产品,在诸如全尺寸平面或线性木材元素之类的几种应用中越来越广为人知并引起全球关注。这项研究的目的是通过考虑弯曲和剪切应力分析来研究平面内加载的CLT梁的性能,其中特别强调平面内剪切行为,包括CLT的内部结构。使用了基于3D-FE模型的数值分析,并将其与两种现有的分析方法进行了比较,即代表性的体积子元素(方法I)和复合梁理论(方法II)。对弯曲应力和剪切应力分别进行了验证,包括树的不同剪切破坏模式,并获得了良好的一致性。结果之间的主要区别与正交粘结薄片之间的交叉区域中的剪切破坏模式有关,其中CLT梁每高度的交叉区域上的剪切应力τzx的分布与分析假设不一致。提出的分析构成了对CLT加载平面上的Eurocode 5正在进行的审查过程做出的首次尝试。当前,关于设计这些类型的梁的法规不存在,因此将来计划进行实验和数值研究。

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