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Mechanical Behavior of Dowel-Type Joints Made of Wood Scrimber Composite

机译:木工复合材料制成的榫钉式接头的力学性能

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摘要

As a renewable building material with low embodied energy characteristics, wood has gained more and more attention in the green and sustainable building industry. In terms of material resource and physical properties, scrimber composite not only makes full use of fast-growing wood species, but also has better mechanical performance and less inherent variability than natural wood material. In this study, the mechanical behavior of bolted beam-to-column joints built with a kind of scrimber composite was investigated both experimentally and numerically. Two groups of specimens were tested under monotonic and low frequency cyclic loading protocols. The experimental results showed that the bolted joints built with scrimber composite performed well in initial stiffness, ductility, and energy dissipation. A three-dimensional (3D) non-linear finite element model (FEM) for the bolted beam-to-column joints was then developed and validated by experimental results. The validated model was further used to investigate the failure mechanism of the bolted joints through stress analysis. This study can contribute to the application of the proposed scrimber composite in structural engineering, and the developed FEM can serve as a useful tool to evaluate the mechanical behavior of such bolted beam-to-column joints with different configurations in future research.
机译:作为具有低体现的能源特性的可再生建筑材料,木材在绿色和可持续的建筑行业中越来越受到关注。在材料资源和物理性能方面,木复合材料不仅充分利用了快速增长的木材种类,而且比天然木材具有更好的机械性能和更少的固有变异性。在这项研究中,通过实验和数值研究了用一种形复合材料建造的螺栓连接梁柱的力学性能。在单调和低频循环加载方案下测试了两组标本。实验结果表明,由形复合材料制成的螺栓连接在初始刚度,延展性和能量耗散方面表现良好。然后,建立了螺栓连接的梁到柱节点的三维(3D)非线性有限元模型(FEM),并通过实验结果进行了验证。验证的模型进一步用于通过应力分析研究螺栓连接的破坏机理。这项研究可以为拟议的缝复合材料在结构工程中的应用做出贡献,而发达的有限元分析可以作为评估此类具有不同配置的梁-柱螺栓连接节点力学性能的有用工具,以供将来研究之用。

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