利用同步热分析研究发展中的火灾的特征特征

O. Bezzaponnaya
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摘要

介绍。这项工作的目的是利用同步热分析的结果来估计对所研究材料的冲击温度。该任务的解决达到了预先设定的目的:研究被研究材料的热氧化破坏过程,制定热冲击评价标准,推导出确定冲击温度的方程。材料和方法。ROTBAND石膏腻子,经常用于室内装饰的建筑物和房屋的墙壁,已经研究了样品。测试前,将腻子试样在200、300、400、500、600、700和800°С的初步热冲击下进行30 min。测试采用同步热分析方法(Netzsch STА 449 F5 Jupiter),在刚玉坩埚中进行,加热速率为20°С/min,空气流速为75 ml/min。研究结果与讨论。采用热分析方法,可以方便地以200℃时的质量损失和900℃时的灰渣作为评价石膏腻子冲击温度的标准。根据石膏腻子试样的热分析特性,得到了冲击温度对石膏腻子成分影响的计算公式。结论。研究表明,同步热分析可以用于确定所研究材料的冲击温度,这对于分析正在发生的室内火灾至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using synchronous thermal analysis to study characteristic features of a developing fire
Introduction. The purpose of the work is to estimate the temperature of impact on the material under study using the results of synchronous thermal analysis. This task is solved to achieve the pre-set purposes: studying the process of the thermal-oxidative destruction of the material under study, developing thermal impact assessment criteria, and deriving equations to determine the temperature of impact.Materials and methods. Specimens of ROTBAND gypsum finishing putty, frequently used for the interior decoration of walls of buildings and premises, have been studied. Before testing, putty samples were subjected to the preliminary thermal impact of 200, 300, 400, 500, 600, 700, and 800 °С for 30 min. The tests were carried out using the method of synchronous thermal analysis (Netzsch STА 449 F5 Jupiter) in corundum crucibles at a heating rate of 20 °С/min and with an air flow rate of 75 ml/min.Research results and discussion. Mass loss at a temperature of 200 °C and ash residue at a temperature of 900 °C can be expediently used as the criteria for assessing the temperature of impact on the gypsum putty using thermal analysis methods. Equations are obtained to calculate the temperature of impact on the gypsum putty composition according to the thermos-analytical characteristics of putty specimens. Conclusions. The study demonstrates that synchronous thermal analysis can be applied to determine the temperature of impact on the material under study, which is vital for the analysis of a developing indoor fire.
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