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A review of the catalytic oxidation of carbon-carbon composite aircraft brakes

机译:碳-碳复合材料飞机制动器的催化氧化研究进展

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The use of de-icing chemicals at airport runways has been shown to produce oxides and carbonates of sodium, potassium and calcium which catalyse the oxidation of carbon-carbon composite aircraft brakes leading to an increase of the oxidation rate by an order of magnitude. This review reports on studies that have characterised the catalytic oxidation and discusses the mechanism of the catalytic reaction based on investigations that were carried out with both C-C composites and carbon as a fossil fuel. The alkali metal oxides/carbonates are more active catalysts and in their case, the redox reaction between the monoxides and the peroxides has been identified as the most likely catalysis mechanism. In order to reduce or eliminate the problem of catalysis, doping with boron or phosphorus compounds has been investigated by a number of researchers. The effect of these along with the use of protective coatings is also reviewed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已显示在机场跑道上使用除冰剂会产生钠,钾和钙的氧化物和碳酸盐,这些氧化物和碳酸盐可催化碳-碳复合材料飞机制动器的氧化,从而使氧化速率提高一个数量级。这篇综述报告了以催化氧化为特征的研究,并基于对C-C复合材料和碳作为化石燃料进行的研究,讨论了催化反应的机理。碱金属氧化物/碳酸盐是更具活性的催化剂,在这种情况下,一氧化碳和过氧化物之间的氧化还原反应已被确定为最可能的催化机理。为了减少或消除催化问题,许多研究人员已经研究了硼或磷化合物的掺杂。还回顾了这些效果以及使用保护性涂层的效果。 (C)2015 Elsevier Ltd.保留所有权利。

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