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Federal Aviation Administration (FAA) airworthiness certification for ceramic matrix composite components in civil aircraft systems

机译:联邦航空管理局(FAA)民用飞机系统陶瓷基质复合部件的适航认证

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Ceramic matrix composites (CMCs) are being designed and developed for engine and exhaust components in commercial aviation, because they offer higher temperature capabilities, weight savings, and improved durability compared to metals. The United States Federal Aviation Administration (FAA) issues and enforces regulations and minimum standards covering the safe manufacture, operation, and maintenance of civil aircraft. As new materials, these ceramic composite components will have to meet the certification regulations of the FAA for "airworthiness". The FAA certification process is defined in the Federal Aviation Regulations (Title 14 of the Code of Federal Regulations), FAA policy statements, orders, advisory circulars, technical standard orders, and FAA airworthiness directives. These regulations and documents provide the fundamental requirements and guidelines for design, testing, manufacture, quality assurance, registration, operation, inspection, maintenance, and repair of aircraft systems and parts. For metallic parts in aircraft, the FAA certification and compliance process is well-established for type and airworthiness certification, using ASTM and SAE standards, the MMPDS data handbook, and FAA advisory circulars. In a similar manner for polymer matrix composites (PMC), the PMC industry and the FAA have jointly developed and are refining parallel guidelines for polymer matrix composites (PMCs), using guidance in FAA circulars and the CMH-17 PMC handbook. These documents discuss design methods and codes, material testing, property data development, life/durability assessment, production processes, QA procedures, inspection methods, operational limits, and repairs for PMCs. For ceramic composites, the FAA and the CMC and aerospace community are working together (primarily through the CMH-17 CMC handbook) to define and codify key design, production, and regulatory issues that have to be addressed in the certification of CMC components in civil aircraft.
机译:为商业航空中的发动机和排气组件设计和开发了陶瓷基质复合材料(CMC),因为它们提供更高的温度能力,重量储蓄和与金属相比提高的耐用性。美国联邦航空管理局(FAA)问题并执行法规和最低标准,包括民用飞机的安全制造,运营和维护。作为新材料,这些陶瓷复合部件必须符合FAA的“适航”的认证规定。 FAA认证过程是在联邦航空法规(联邦法规守则的第14条)中定义,FAA政策陈述,订单,咨询通函,技术标准订单和FAA适航指令。这些规定和文件提供了飞机系统和零件的设计,测试,制造,质量保证,登记,操作,检验,维护和修复的基本要求和指导方针。对于飞机中的金属部件,FAA认证和合规流程为类型和适航认证,使用ASTM和SAE标准,MMPDS数据手册和FAA咨询通函。以类似的方式用于聚合物基质复合材料(PMC),PMC工业和FAA共同开发,并在FAA圆形和CMH-17 PMC手册中使用指导,对聚合物基质复合材料(PMC)进行了并行指导。这些文件讨论了PMC的设计方法和代码,材料测试,物业数据开发,寿命/耐用性评估,生产过程,QA程序,检查方法,运营限制和维修。对于陶瓷复合材料,FAA和CMC和航空航天社区正在共同努力(主要通过CMH-17 CMC手册)来定义和编写必须在民间CMC组件认证中解决的关键设计,生产和监管问题飞机。

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