通过对高温效果的再现,研究了proask Firepanel水泥板结构防火的热特性和防火效果

A. Garashchenko, S. Antonov, A. Vinogradov
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引用次数: 0

摘要

介绍。PROZASK阻燃板的应用证明了对防火特性进行全面研究的一种选择和方便性。目标和目的。本研究项目的任务是:(1)获得含水泥粘结剂的防火板的实验研究结果;(2)利用模拟高温暴露模式的辐射加热试验台确定其防火效率;(2)采用防火结构内部温度场数学建模的方法对测试结果进行分析。标准化的实验室技术被用来澄清在相对较低的温度下板的热物理特性。在辐射加热试验台对试件进行附加试验的过程中,对其防火效果进行了评价。采用可靠且相对简单的防火结构非定常温度场计算方法和程序,对实验结果进行了热分析和推广。作者总结了在火炉中进行的标准化测试的结果,以确定PROZASK防火面板的阻燃效率及其所保护的全尺寸结构的耐火性能。利用实验室台架在较低温度下测试了板材的比热容和导热系数。在标准和碳氢化合物温度模式下,利用辐射加热台对样品进行了热电偶测量。使用热工分析对这些结果进行处理,可以确定工作温度范围内的导热系数值。评估了板中所含水分对其防火效率的影响。在火炉中进行的计算结果与试验结果的比较表明,所获得的板的特性和用于(1)阐明防火效率和使用PROZASK火板开发的设计的热工分析的实际可用性;(2)评价其保护的建筑物的耐火性能。所提出的综合研究产生了相当多的重要信息,用于预测含有PROZASK防火板的建筑的防火性能和耐火性。本文论证了利用辐射加热试验台对试件进行附加测试的作用,以及热工计算作为评估结构防火和耐火参数的工具的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studying the thermal characteristics and effectiveness of structural fire proofing made of PROSASK Firepanel cement boards by means of reproducing the high-temperature effect
Introduction. The application of PROZASK fire-retardant panels demonstrates an option for and the expediency of a comprehensive study of fire proofing characteristics.Goals and objectives. The mission of this research project is to (1) obtain the results of experimental studies of fireproofing panels, containing the cement binder, (2) determine their fire proofing efficiency, using the radiant heating test bench that reproduces pre-set modes of high-temperature exposure, and (2) analyze the testing results using the method of mathematical modelling of temperature fields inside fireproof structures.Methods. Standardized laboratory techniques were used to clarify the thermal-physical characteristics of boards at relatively low temperatures. Their fire proofing efficiency was evaluated in the course of additional testing of specimens using the radiant heating test bench. A reliable and relatively uncomplicated method and programme for calculating unsteady temperature fields in fireproof structures were used to conduct the thermal analysis and generalization of experimental results. The authors summarized the results of standardized tests, conducted in a fire furnace, to determine the flame-retardant efficiency of PROZASK Firepanel boards and the fire-resistance of the full-size structures they protect.Results. Values of specific heat capacity and the thermal conductivity coefficient of boards, tested using  laboratory benches at relatively low temperatures, were verified. The results of thermocouple measurements, taken during the testing of specimens with the help of the radiant heating bench in standard and hydrocarbon temperature modes, were obtained. The processing of these results, using thermal engineering analysis, allowed determining the values of the thermal conductivity coefficient in the range of operating temperatures. The influence of moisture, contained in the boards, on their fire protection efficiency was evaluated. Comparison between the results of calculations and tests, conducted in the fire furnaces, showed the practical usability of the obtained characteristics of boards and the thermo-engineering analysis used to (1) clarify the fire-proofing efficiency and the design developed using PROZASK Firepanels and (2) evaluate the fire-resistance of the constructions they protect.Conclusions. The presented integrated studies generated a considerable amount of important information, required to prognosticate the fire proofing properties and the fire-resistance of constructions that contain PROZASK Firepanels. The role of additional testing of specimens using a radiant heating test bench and the effectiveness of thermal-engineering calculations as a tool for assessing the parameters of fire proofing  and the fire resistance of structures are demonstrated.
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