受剪力荷载的木连接件防火设计

E. Fonseca, P. Leite
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引用次数: 1

摘要

这项工作的主要目的是比较木-钢-木(W-S-W)和木-木-木(W-W-W)连接的耐火性,两者都是由钢榫紧固件连接,在双剪切。分析和设计程序遵循欧洲规范5第1-1和1-2部分给出的简化方程。采用基于有限元法的计算方法进行了二维热模拟,从而验证了通过销钉、紧固件或钢元件通过连接所产生的热效应。将确定不同的截面,认为是最相关的部分,以比较所研究的连接中的温度分布。根据火灾的照射,会产生热效应和瞬态效应,并在接头的照射侧产生炭化层。烧焦区域的测量量允许在所研究的横截面中确定损失的结构材料。炭化率将计算并与欧洲法规5第1-2部分提出的恒定值进行比较。根据欧洲规范5第1-2部分,木材炭化率的典型值在0.5-1.0mm/min之间。然而,作为一个一般的结论和额外的信息来帮助设计师和专业人士,紧固件的数量随着施加的载荷而增加,较低的榫直径对紧固件的数量有更高的影响,在火灾暴露时,钢紧固件将热量带到连接内部,不同的木材密度影响热行为和炭化速率的演变。炭化率允许量化损失层厚度和连接的耐火性,取决于所选择的材料密度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FIRE DESIGN OF WOOD CONNECTIONS LOADED IN SHEAR
The main objective of this work is to compare the fire resistance between wood-steel-wood (W-S-W) and wood-wood-wood (W-W-W) connections, both joined by steel dowel fasteners, in double shear. The analytical and design procedures follow simplified equations presented in Eurocode 5, part 1-1 and 1-2. A computational methodology, based on finite element method, was also implemented to produce two dimensional thermal simulations, which permits to verify the heating effect through the dowels fasteners or steel elements through the connection in study. Different cross-sections will be identified, considered as the most relevant parts, to compare the temperature distribution in the studied connections. According to the fire exposure, a thermal and transient effect will happen and a char-layer appearing in the exposure side of the connections. The measured quantity of the charred area permits to identify the lost structural material in the studied cross-sections. The charring rate will calculate and compared with the constant value proposed by the Eurocode 5, part 1-2. There are typical values for the charring rate of wood between 0.5-1.0mm/min according to Eurocode 5, part 1-2. However, as a general conclusion and additional information to help designers and professionals, the number of fasteners increases with the applied load, lower dowels diameters have higher effect in the number of fasteners, at fire exposure the steel fasteners bring the heat to inside the connections, and different wood densities affect the thermal behaviour and the charring rate evolution. The charring rate permits to quantify the lost layer thickness and the fire resistance of the connection, dependent on the chosen material density.
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