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PROGRESS IN SiC/SiC CERAMIC COMPOSITE DEVELOPMENT FOR GAS TURBINE HOT-SECTION COMPONENTS UNDER NASA EPM AND UEET PROGRAMS

机译:NASA EPM和UEE计划下燃气轮机热部件组分SiC / SiC陶瓷复合发育的进展

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The successful application of ceramic matrix composites as hot-section components in advanced gas turbine engines will require the development of constituent materials and processes that can provide the material systems with the key thermostructural properties required for long-term component service. Much initial progress in identifying these materials and processes was made under the former NASA Enabling Propulsion Materials Program using stoichiometric Sylramic~(TM) silicon-carbide (SiC) fibers, 2D-woven fiber architectures, chemically vapor-infiltrated (CVI) BN fiber coatings (interphases), and SiC-based matrices containing CVI SiC interphase over-coatings, slurry-infiltrated SiC particulate, and melt-infiltrated (MI) silicon. The objective of this paper is to discuss the property benefits of this SiC/SiC composite system for high-temperature engine components and to elaborate on further progress in SiC/SiC development made under the new NASA Ultra Efficient Engine Technology Program. This progress stems from the recent development of advanced constituent materials and manufacturing processes, including specific treatments at NASA that improve the creep, rupture, and environmental resistance of the Sylramic fiber as well as the thermal conductivity and creep resistance of the CVI SiC overcoatings. Also discussed are recent observations concerning the detrimental effects of inadvertent carbon in the fiber-BN interfacial region and the beneficial effects of certain 2D-architectures for thin-walled SiC/SiC panels.
机译:陶瓷基复合材料在先进的燃气涡轮发动机的热段部件的成功应用,将需要构成的材料和工艺,可以提供所述材料体系具有用于长期组件服务所需的关键特性热结构的发展。在确定这些材料和工艺大的初始进展下前者NASA制成使用推进材料计划化学计量Sylramic〜(TM)碳化硅(SiC)的纤维,2D织造纤维结构的,化学气相渗入(CVI)BN光纤涂层启用(相间),和含有CVI碳化硅SiC基矩阵间期过涂层,浆料渗入碳化硅颗粒,进行熔融渗透(MI)的硅。本文的目的就是要讨论对高温的发动机部件该SiC / SiC复合材料系统的财产性利益,并在碳化硅/碳化硅发展下的新NASA超高效发动机技术计划方面取得进一步进展阐述。这一进展从最近的先进的构成材料和制造工艺,包括在NASA改善蠕变,破裂,和耐环境性的Sylramic纤维以及所述CVI碳化硅外涂层的热导率和耐蠕变性具体的治疗发展茎。还讨论了关于无意碳在纤维-BN界面区域的不利影响最近的观测和某些2D-架构为的有益效果薄壁的SiC / SiC复合材料板。

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