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首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Detailed analysis of species production from the pyrolysis of the Phenolic Impregnated Carbon Ablator
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Detailed analysis of species production from the pyrolysis of the Phenolic Impregnated Carbon Ablator

机译:酚醛浸渍碳烧蚀剂热解产生的物种的详细分析

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摘要

Many modern materials that are being developed to protect space vehicles entering planetary atmospheres use phenolic impregnated carbon fiber substrates as.the basic material architecture. To mitigate the heat flux into the material, the decomposition of phenolic phase generates protective gases that blow into the boundary layer and help shield the material. The goal of this paper is to measure the decomposition products of cross-linked phenolic as used in the NASA's Phenolic Impregnated Carbon Ablator (PICA). A custom batch reactor was designed to quantitatively determine detailed species production from the pyrolysis of PICA. A step-wise heating procedure using 50 K increments from room temperature up to 1250 K was followed. An initial PICA mass of 100 mg was loaded in the reactor, and the mass loss was measured after each 50 K step. Species production after each step was quantified using gas-chromatography techniques. The quantitative molar yields of pyrolysis products as a function of reaction temperature are compared to those from resole phenol-formaldehyde resin pyrolysis reported in the literature. The differences in product distributions between PICA pyrolysis and resole phenol-formaldehyde pyrolysis confirm that the decomposition products are sensitive to the composition of the material and the cross linking process. These results indicate that characterizations need to be performed for all variations of phenolic-matrix based ablators. Such information is also critical for the development of next generation material response models. (C) 2016 Elsevier B.V. All rights reserved.
机译:为保护航天器进入行星大气而开发的许多现代材料都使用酚醛浸渍碳纤维基材作为基本材料结构。为了减轻进入材料的热通量,酚相的分解会产生保护气体,这些气体吹入边界层并帮助屏蔽材料。本文的目的是测量NASA酚醛浸渍碳烧蚀剂(PICA)中使用的交联酚醛的分解产物。设计了定制的批处理反应器,以定量确定PICA的热解产生的详细物种。遵循从室温到1250 K使用50 K增量的逐步加热程序。将100 mg的初始PICA质量加载到反应器中,并在每个50 K步骤后测量质量损失。使用气相色谱技术定量每个步骤后的物种产量。将热解产物的定量摩尔产率作为反应温度的函数,与文献中报道的甲阶酚醛树脂热解的摩尔产率进行比较。 PICA热解和甲阶酚醛-甲醛热解之间产物分布的差异证实了分解产物对材料的组成和交联过程敏感。这些结果表明,需要对基于酚醛基质的烧蚀器的所有变化进行表征。这些信息对于开发下一代物质响应模型也至关重要。 (C)2016 Elsevier B.V.保留所有权利。

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