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Multi-reinforcement of timber beams with composite materials: Experiments and fracture modeling

机译:复合材料对木梁进行多次加固:实验和断裂模型

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The interest of the multi-reinforcement of wood with composite materials is investigated both experimentally and by means of simulations. 3-meter-long concrete-wood beams with and without reinforcement are designed, fabricated and tested. Only a multi-reinforcement provides interesting results concerning the ultimate behavior. Several comments and results are provided. The authors propose an analytical tool to explain these experimental aspects, based on a model of multi-layered materials involving one stress field per layer (layerwise). The static model takes cracks and delaminations into account. Criteria of crack initiations in wood thickness and along the interfaces are proposed and experimentally identified. Finally the model allows the simulation of the fracture of a concrete/reinforced wood beam in bending and/or tension. The simulations appear very close to the experimental results and highlight the potential of the concept. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过实验和模拟研究了复合材料对木材的多重增强作用。设计,制造和测试了3米长的带和不带钢筋的混凝土木梁。只有多根钢筋才能提供有关最终行为的有趣结果。提供了一些评论和结果。作者提出了一种基于多层材料的模型来解释这些实验方面的分析工具,该模型涉及每层一个应力场(逐层)。静态模型考虑了裂纹和分层。提出并通过实验确定了木材厚度和沿界面的裂纹萌生准则。最后,该模型可以模拟混凝土/钢筋木梁在弯曲和/或拉伸时的断裂。模拟看起来非常接近实验结果,并突出了该概念的潜力。 (C)2014 Elsevier Ltd.保留所有权利。

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