混合聚氨酯无机绝热材料的热解:热重分析和红外光谱

A. Kobelev, Yu.K. Naganovskiy, E. Kruglov, R. Aseeva, E. M. Shapikhov
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摘要

目的。基于热重分析和红外-傅立叶光谱分析,研究了两种有机-无机杂化(OIH)隔热材料样品的热分解(热解)过程。目标确定了以下研究任务:找出OIH样品的基本化学结构(通过官能团),研究材料在氮气中加热时的过程顺序,计算活化能,指数前因子,确定热解机理。采用了热重分析和红外-傅立叶光谱分析方法。在热重测试过程中,采用“冻结”实验方法制备光谱分析样品。结果和讨论。本文研究了两种杂化聚氨酯无机(OIH)保温材料样品的结构特征,并对其在氮气气氛中动态加热至750℃时发生的物理化学过程进行了跟踪。表明了OIH材料热解的多阶段性质。第一个样品的热解过程分为三个阶段。对于第二个样本,分解分两个阶段进行。所有阶段都是吸热的。这表明在有机和无机部分之间断裂键的能量成本占主导地位,以及其他结论。确定了OIH样品在各个阶段的热解都是按照成核和核(活性破坏中心)生长的机制进行的。红外光谱分析表明,两种样品均由脂族异氰酸酯制备。本文研究了一类新型材料——有机-无机杂化隔热材料在加热时的化学结构和物理化学变化。本文是作者团队系统研究现代类型聚合物绝热材料的热行为的延续。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pyrolysis of hybrid polyurethane inorganic thermal insulation: thermogravimetric analysis and FTIR spectra
Purpose. The purpose of this work is to study the process of thermal decomposition (pyrolysis) of two samples of a hybrid organic-inorganic (OIH) heat-insulating material based on data obtained by thermogravimetric analysis and IR-Fourier spectrometry.The goal set predetermined the following research tasks: to find out the basic chemical structure of the OIH samples (by functional groups), to study the order of processes in materials when heated in nitrogen, to calculate the activation energy, the pre-exponential factor, to determine the pyrolysis mechanism.Methods. The methods of thermogravimetric analysis and IR-Fourier spectrometry were used in the work. Samples for spectrometric analysis were prepared in the process of thermogravimetric tests using the “freezing” experiment method.Results and discussion. The paper studies the structural features of two samples of hybrid polyurethane inorganic (OIH) thermal insulation material and traces the physicochemical processes that occur when they are heated under dynamic conditions in a nitrogen atmosphere up to 750 °C.The multi-stage nature of the pyrolysis of the OIH material is shown. The pyrolysis of the first sample is a threestage process. For the second sample, decomposition proceeds in two stages. All stages are endothermic. This indicates the predominance of energy costs for breaking bonds between the organic and inorganic parts and other conclusions.It has been established that the pyrolysis of OIH samples at all stages is carried out according to the mechanism of nucleation and the growth of nuclei (active centers of destruction). Analysis of the IR spectra of the samples showed that both samples were prepared using Desmodur aliphatic isocyanates.Conclusions. The paper studies the chemical structure and physicochemical changes when heating the new group of materials — hybrid organic-inorganic (OIH) heat-insulating materials. The article is a continuation of a team of authors systematic study of a thermal behavior of modern types of polymer thermal insulation.
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