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Carbon Fiber and Structural Timber Composites for Engineering and Construction

机译:工程和建筑用碳纤维和结构木材复合材料

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摘要

There are environmental and potential economic advantages in using laminated veneer lumber (LVL) for building structures, but load-carrying capacity constrains uptake. Building on previous work in the field, the authors test the strategic placement of carbon fiber-reinforced polymer (CFRP) to improve the flexural strength of timber beams, investigating both positive and negative bending moments of structural assembly. The results demonstrate: unidirectional CFRP applied as a U-wrap on the tension side of beams improves load carrying by 25%, stiffness by 20%, and ductility by 30%; a combination of uni- and bidirectional CFRP mesh applied to beam-column joints with no other connectors achieves substantial structural continuity between beams. U-wrap reinforcement also shifts the mode of failure from abrupt to gradual. Another significant observation is that wood splinters appear to cause premature failure, and we consider solutions to this issue. Discussion of the outcomes for advancing the uptake of timber as a more sustainable structural material are undertaken, along with an outline of further work.
机译:将层压单板木材(LVL)用于建筑结构具有环境和潜在的经济优势,但承载能力会限制其吸收。在该领域先前的工作基础上,作者测试了碳纤维增强聚合物(CFRP)的战略位置,以提高木梁的抗弯强度,并研究了结构装配的正弯矩和负弯矩。结果表明:单向CFRP用作梁的受拉侧的U形包裹,可将载荷提高25%,刚度提高20%,延展性提高30%;在没有其他连接器的情况下,将单向和双向CFRP网格应用于梁柱节点的组合可实现梁之间的实质性结构连续性。 U形包裹加固也将失败的模式从突然转变为渐进。另一个重要的观察结果是,木头碎片似乎会导致过早损坏,我们正在考虑解决该问题的方法。讨论了如何促进木材作为更可持续的结构材料的吸收,以及进一步工作的大纲。

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