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Investigation of the Limit of Fire Resistance of a Steel Beam at Loss of Integrity of a Fire-Resistant Lining

机译:防火衬砌完整性钢梁耐火电阻极限的研究

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In this article, to solve the main problems, we determined the temperature regime of heating the steel beam, which took into account the fact of loss of integrity of the fire-retardant lining due to the thermal effects of fire. When calculating the temperature, the time of exposure to the standard temperature of the fire and the value of the heating temperature of the steel beam with mineral wool lining at which the latter loses its integrity was determined. Taking into account the geometrical parameters of the cross section of the studied I-beam, according to the finite-element scheme, the steel beam was divided into four elements of SHELL type with five points of integration in thickness in the Belichko-Tsai formulation. After the calculation, the corresponding results were obtained in the form of graphs of changes in the maximum deflection of the beam and the rate of increase of the maximum deflection depending on the time of exposure to the standard temperature of the fire. The critical values of the occurrence of the limit of fire resistance according to the graph of maximum deflection and the graph of the rate of increase of deflection were determined. The difference between the indicators shows that the time of the limit state of loss of bearing capacity is 70 min less, if not taking into account the loss of fire-retardant capacity of mineral wool fire-protection due to loss of integrity.
机译:在本文中,为了解决主要问题,我们确定了加热钢梁的温度制度,这考虑了由于火的热效应导致阻燃衬里的完整性丧失的事实。当计算温度时,暴露于火灾标准温度的时间和钢梁的加热温度值,矿物羊毛衬里,后者测定其完整性。考虑到研究I-梁横截面的几何参数,根据有限元方案,钢梁分为四个壳体的四个元素,在Belichko-Tsai配方中厚度为五个整合点。计算后,以梁的最大偏转的最大偏转的变化的形式获得相应的结果,以及根据暴露于火灾标准温度的时间来实现最大偏转的速率。确定了根据最大偏转图的耐火电阻极限的临界值和偏转的增加率的图表。指标之间的差异表明,如果没有考虑到因完整性损失,造成矿棉防火阻燃能力损失的损失损失的极限状态的时间越少70分钟。

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