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Numerical Investigation of the Fire Resistance of Protected Cross-Laminated Timber Floor Panels

机译:保护性交叉层压木地板耐火性的数值研究

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摘要

Several experimental investigations have been performed on timber elements to determine their fire resistance. However, the numerical modelling is nowadays an effective and inexpensive alternative method to investigate the behaviour of timber structures during fire. Once validated on experimental data, finite element models can be used to understand more in detail the experimental behaviour and then used to carry out parametric studies in which geometrical, mechanical and thermal properties are varied. After an extensive discussion on the state of the art in numerical modelling of timber members and connections during fire, the paper presents a two-dimensional model implemented in the ABAQUS software package to simulate fire tests of cross-laminated timber (XLAM) floor panels protected with different cladding systems. The temperature distribution within the XLAM cross section and the fire resistance of panels loaded out of plane were predicted through thermal and thermo-mechanical analyses, respectively. Since the stiffness and strength degradation of wood with temperature is still a subject of research, a parametric study with different degradation laws was conducted. Numerical predictions were compared with experimental results showing acceptable accuracy, particularly when the degradation laws of the EN 1995-1-2 were used. The comparisons also show the need to model correctly the failure of the protective cladding for an accurate prediction of the thermal behaviour.
机译:已经对木材元件进行了一些实验研究以确定其耐火性。但是,如今,数值模型是研究火灾期间木材结构行为的一种有效且廉价的替代方法。一旦在实验数据上得到验证,有限元模型就可以用来更详细地了解实验行为,然后用于进行几何,机械和热学特性发生变化的参数研究。在对木材在火灾期间的构件和连接的数值建模的最新技术进行了广泛讨论之后,本文提出了在ABAQUS软件包中实现的二维模型,以模拟受保护的交叉层压木材(XLAM)地板的防火测试与不同的熔覆系统。通过热分析和热力学分析分别预测了XLAM截面内的温度分布和平面外面板的耐火性。由于木材的刚度和强度随温度的下降仍然是研究的主题,因此进行了具有不同衰减规律的参数研究。将数值预测与显示出可接受的准确性的实验结果进行了比较,尤其是当使用EN 1995-1-2的降解规律时。比较结果还表明,需要正确建模保护性覆层的故障,以准确预测热性能。

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