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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Effect of vapour phase hydrogen peroxide, as a decontaminant for civil aviation applications, on microstructure, tensile properties and corrosion resistance of 2024 and 7075 age hardenable aluminium alloys and 304 austenitic stainless steel
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Effect of vapour phase hydrogen peroxide, as a decontaminant for civil aviation applications, on microstructure, tensile properties and corrosion resistance of 2024 and 7075 age hardenable aluminium alloys and 304 austenitic stainless steel

机译:气相过氧化氢作为民航应用的去污剂对2024和7075时效可硬化铝合金和304奥氏体不锈钢的显微组织,拉伸性能和耐腐蚀性的影响

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摘要

A response to the chemical or biological contamination of aircraft requires the use of a suitable decontaminant. Among possible chemical decontaminants, vapour phase hydrogen peroxide appears to be a likely candidate in terms of a combination of efficacy, low environmental impact and potential for materials compatibility. The present paper examines the effect of hydrogen peroxide, both in the vapour phase and as a liquid concentrate on two common structural materials used in aviation, namely 2024 and 7075 age hardenable aluminium alloys and on 304 austenitic stainless steel, the latter as employed in galley and lavatory surfaces. The present paper characterises both the effects of hydrogen peroxide on the microstructure of the materials and the impact that decontamination has on the tensile properties and corrosion resistance of these materials. Microstructural effects are both relatively small in magnitude and confined to a region immediately beside the exposed surface. No systematic effect is found on either the tensile properties or the post-exposure corrosion resistance of the three alloys examined. These observations are encouraging in terms of the use of vapour phase hydrogen peroxide for decontamination applications.
机译:对飞机的化学或生物污染作出反应时,需要使用适当的去污剂。在可能的化学净化剂中,就功效,低环境影响和材料相容性的组合而言,气相过氧化氢似乎是可能的候选物。本文研究了过氧化氢在汽相中和作为液态浓缩物对航空中使用的两种常见结构材料(即2024和7075时效可硬化铝合金)和304奥氏体不锈钢(后者用于厨房)的影响。和厕所表面。本文描述了过氧化氢对材料微观结构的影响以及去污对这些材料的拉伸性能和耐腐蚀性的影响。微观结构效应的幅度相对较小,并仅限于暴露表面旁边的区域。所检测的三种合金的拉伸性能或暴露后的耐腐蚀性均未发现系统性影响。就将气相过氧化氢用于净化应用而言,这些观察结果令人鼓舞。

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