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Structural behaviour of prefabricated load bearing braced composite timber wall system

机译:预制承重支撑复合木墙系统的结构性能

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Timber is gaining its popularity in the construction of low to the mid-rise buildings and sometimes in high-rises due to its sustainability, cost-effectiveness, and availability all around the world. In addition, the prefabricated building is getting popular due to advances in the automation industry, reduction in resources including time, labour, and waste; and cost-effectiveness in mass production. Due to higher capacity demands for mid-rises and convenience in design for manufacturing and assembly (DfMA) in prefabrication, a new development of prefabricated load bearing closed panel composite timber (CPCT) wall system made of oriented strand boards (OSBs) stiffened by sawn-cut timber stud and sometimes with additional steel stud to increase its load carrying capacity has been considered in this research. Five full-scale CPCT walls have been tested subjected to axial compression. The results showed that the mid-height lateral deflection governs the maximum allowable force acting to this wall. Moreover, finite element analysis (FEA) has been done and compared to the experimental results. Once a good agreement between the experimental results and FEA results has been obtained, parametric studies have been performed to comprehensively understand the sensitive parameters affecting the axial behaviour of this system. The parameters studied in this research include the material, the size and the arrangement of the stud, the spacing of the nail, and type of adhesive. Moreover, the possible issue in the practice and the effect of the additional steel stud have also been discussed.
机译:木材因其在全球的可持续性,成本效益和可用性而在低层至中层建筑的建造中越来越受欢迎,有时在高层建筑中也越来越受欢迎。此外,由于自动化行业的进步,时间,劳力和浪费等资源的减少,预制建筑也越来越受欢迎。量产中的成本效益。由于对中层建筑的更高容量需求以及预制件的制造和装配设计(DfMA)的便利性,由定向刨花板(OSB)制成的预制承重封闭面板复合木材(CPCT)墙体系统的新开发经过锯切加固这项研究已考虑使用砍伐的木材螺柱,有时添加额外的钢螺柱以增加其承载能力。已经测试了五个全尺寸CPCT墙受到轴向压缩。结果表明,中等高度的横向挠度决定了作用于该壁的最大允许力。此外,已经完成了有限元分析(FEA)并将其与实验结果进行比较。一旦在实验结果和有限元分析结果之间取得了很好的一致性,就可以进行参数研究来全面了解影响该系统轴向性能的敏感参数。在这项研究中研究的参数包括材料,钉的大小和排列,钉子的间距以及粘合剂的类型。此外,还讨论了实践中可能存在的问题以及附加钢制螺栓的作用。

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