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An analytical model for design of reinforcement around holes in Laminated Veneer Lumber (LVL) beams

机译:层积单板木材(LVL)梁中孔周围钢筋设计的分析模型

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摘要

Openings are usually required to allow services like plumbing, sewage pipes and electrical wiring to run through beams. This prevents an extra depth of the floor/ceiling, while preserving architectural considerations. The introduction of large opening causes additional tension perpendicular to grain in timber beams. The low tensile strength perpendicular to grain of wood allows crack formation. Crack propagation around the hole considerably decreases the load-carrying capacity of the beam. However, in most cases, crack formation and propagation around the hole can be prevented by the use of an appropriate reinforcement. Screw, glued-in rods, and plywood are alternative options for the reinforcement. Design of the reinforcement requires that the working mechanism of the reinforcement is fully understood and properly addressed. In addition, reinforcement should be designed for actions produced in the section of the beam weakened by the hole. The current paper uses a simple truss model around the opening to calculate the tensile force in the reinforcement. Two simple formulations for design of the reinforcement are derived and compared with numerical and experimental results, showing an overall good correspondence. The proposed truss model can be considered for incorporation in future codes of practice.
机译:通常需要开孔以允许水暖,排污管和电线等服务穿过横梁。这样可以在保留建筑注意事项的同时防止地板/天花板的额外深度。大开口的引入导致垂直于木梁中纹理的额外张力。垂直于木纹的低抗拉强度允许形成裂纹。孔周围的裂纹扩展会大大降低梁的承载能力。但是,在大多数情况下,可以通过使用适当的加强件来防止裂纹的形成和孔周围的扩展。螺钉,胶合棒和胶合板是加固的替代选择。加强件的设计要求充分理解和适当解决加强件的工作机理。此外,应设计加固措施,以应对因孔而减弱的梁截面产生的作用。当前的论文在开口周围使用了一个简单的桁架模型来计算钢筋中的拉力。推导了两种简单的钢筋设计公式,并与数值和实验结果进行了比较,显示出总体良好的对应关系。可以考虑将拟议的桁架模型纳入未来的操作规范中。

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