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Analysis and design of Laminated Veneer Lumber beams with holes

机译:带孔的层积单板木材梁的分析与设计

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摘要

Timber has experienced new interest as a building material in recent times. Although traditionally in New Zealand it has been the main choice for residential construction, with recently introduced engineered wood products like Laminated Veneer Lumber (LVL), the use of timber has developed to other sectors like commercial, industrial, and multi-story buildings. The application of timber in office and commercial buildings poses some challenges with requirements for long span timber beams yet with holes to pass services. The current construction practice with timber is not properly suited for the aforementioned types of structures. There has been significant progress in designing timber structures since the introduction of timber codes like NZ3603-Timber Structures Standard; however, there are still a number of problems such as holes in beams not being addressed in the code. Experimental and numerical investigation is required to address the problem properly. In Europe, there have been a few attempts to address the problem of cutting holes and strength reduction because of holes/penetrations in glulam beams. However, LVL has not received much attention due to smaller production and use. While other researchers are focusing on glulam beams with holes, this research is targeting LVL beams with holes. This thesis extends existing knowledge on LVL beams with holes and reinforcement around the holes through experimental tests and numerical analysis. An experimental program on LVL specimens has been performed to indicate the material properties of interest that will be used in the analysis and design chapters through whole of the thesis. A wide-ranging experimental program was also performed on beams with holes, and beams with reinforcement around the holes. The experimental program pushes forward existing methods of testing by measuring the load in the reinforcement
机译:近年来,木材作为建筑材料受到了新的关注。尽管在新西兰传统上一直是住宅建筑的主要选择,最近推出了层压木饰板木材(LVL)等工程木产品,木材的使用已发展到其他领域,例如商业,工业和多层建筑。木材在办公和商业建筑中的应用提出了一些挑战,要求使用大跨度的木梁,但要有通孔才能通过。当前的木材建筑实践不适用于上述类型的结构。自从引入诸如NZ3603-《木材结构标准》之类的木材法规以来,在设计木材结构方面取得了重大进展。但是,仍然存在许多问题,例如代码中未解决的光束孔。需要进行实验和数值研究才能正确解决该问题。在欧洲,已经进行了一些尝试来解决由于胶合木梁中的孔/穿透而导致的切孔和强度降低的问题。然而,由于较小的生产和使用,LVL并未引起太多关注。当其他研究人员专注于带孔的胶合木光束时,这项研究的目标是带孔的LVL光束。本文通过实验和数值分析,扩展了带孔的LVL梁的已有知识,并在孔周围进行了加固。已经对LVL标本进行了实验程序,以表明感兴趣的材料特性,这些特性将在整个论文的分析和设计章节中使用。还对带有孔的梁以及在孔周围具有加固的梁执行了广泛的实验程序。该实验程序通过测量钢筋中的载荷来推动现有的测试方法

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    Ardalany Manoochehr;

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  • 年度 2013
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