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Innovative pre-stressing and cambering of timber-to-timber composite beams

机译:木材到木材复合梁的创新预应力和弯曲

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The paper focuses on an innovative method to pre-stress and camber composite beams. The method relies on the compression force that can be generated by distributed screw fasteners inserted at an angle to the axes of the elements forming the composite structure (no external props or tendons are needed to pre-stress the structure). The method principles, which are applicable to different structural materials, are explained and then validated by referring to timber-to-timber composite (TTC) solutions. An analytical formulation to predict the final camber and the internal forces generated by the method is also provided. Additionally, a finite element numerical approach was developed and used to investigate the influence of the relevant parameters. To validate both the analytical formulation and the modelling approach, two full-scale TTC floor specimens, with a 6.4m span were assembled by adopting the method presented herein and then tested to failure. A remarkable agreement was observed between the predictions from the analytical, numerical models and the experimental evidence. From the research outcome, the proposed assembly method appears capable of producing significant levels of camber and pre-stress that can be accurately predicted and designed.
机译:本文侧重于对压力和弧形复合梁的创新方法。该方法依赖于可以通过分布式螺杆紧固件以成角度的角度产生的压缩力,该压缩力与形成复合结构的元件的轴线(不需要外部道具或肌腱来预应力。解释该方法原理,其适用于不同的结构材料,然后通过参考木对木质复合(TTC)解决方案来验证。还提供了预测最终弯曲和由该方法产生的内部力的分析制剂。另外,开发了有限元数值方法并用于研究相关参数的影响。为了验证分析制剂和建模方法,通过采用本文提出的方法组装了两个具有6.4米跨度的两个全尺寸TTC地板标本,然后进行测试。从分析,数值模型和实验证据的预测之间观察到了显着的协议。从研究结果来看,所提出的装配方法似乎能够生产显着的弯曲和预应力,可以准确地预测和设计。

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