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Orion Heat Shield Manufacturing Producibility Improvements for the EM-1 Flight Test Program

机译:针对EM-1飞行测试计划的猎户座隔热屏制造生产能力的改进

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This paper describes how the Orion program is incorporating improvements in the heat shield design and manufacturing processes reducing programmatic risk and ensuring crew safety in support of NASA's Exploration Missions. The Orion program successfully completed the EFT-1 flight test in 2014 and is currently developing the EM-1 spacecraft to meet the test objectives of an orbital mission to the moon and return to earth in 2019. Lessons learned from the EFT-1 manufacturing and flight test experience are being incorporated into a wide variety of vehicle systems and manufacturing processes to reduce risk to the Orion missions and flight crew. A critical contributor to crew safety is the heat shield that protects the crew capsule during re-entry through the earth's atmosphere for return from deep space. The first flight test vehicle, EFT-1, was manufactured and tested in the Neil Armstrong Operations and Checkout (O&C) facility at KSC to demonstrate early risk reduction including the functionality of the Thermal Protection Systems (TPS) for capsule safe return to earth. The approach for the EFT-1 heat shield utilized a low risk approach using Apollo heritage design and manufacturing processes using an Avcoat TPS ablator with a honeycomb substrate to provide a one piece heat shield to meet the mission re-entry heating environments. The manufacturing processes used honeycomb cell injection guns which were redeveloped from the Apollo Lunar Program processes to build the EFT-1 heat shield. The completed heat shield was transported across the country by aircraft to the O&C at KSC for installation onto the capsule. The EFT-1 heat shield successfully performed its mission and experienced ~80% of the re-entry velocity (50% heating rate) for a lunar return for an Exploration Mission. The second flight test vehicle is the EM-1 mission which will have additional flight systems installed to fly to the moon and return. Heat shield design and producibility improvements have been incorporated in the EM-1 vehicle to meet deep space mission and programmatic requirements. The design continues to use the Avcoat material, but in a “block” configuration to enable improvements in the application processes as well as additional improvements in the carrier structure design and manufacturing operations. Incorporating flight test results and producibility improvements from EFT-1 for the heat shield system design and processes have improved the thermal protection capability, improved the producibility, and cost for the EM-1 flight test.
机译:本文介绍了Orion计划如何将隔热屏设计和制造流程的改进结合起来,从而降低计划风险并确保机组人员安全,以支持NASA的探索任务。 “猎户座”计划在2014年成功完成了EFT-1飞行测试,目前正在开发EM-1航天器,以实现到达月球并于2019年返回地球的轨道飞行任务的测试目标。飞行测试经验已被整合到各种各样的车辆系统和制造过程中,以减少猎户座飞行任务和飞行机组人员的风险。隔热罩是保护机组人员安全的一个重要因素,隔热罩可在重新进入地球大气层以从深空返回时保护机组人员舱。第一款飞行测试工具EFT-1是在KSC的尼尔·阿姆斯特朗操作和结帐(O&C)设施中制造和测试的,目的是证明早期降低风险的能力,包括热保护系统(TPS)的功能,以使胶囊安全返回地球。 EFT-1隔热板的方法采用了Apollo传统设计的低风险方法,并使用了带有蜂窝基材的Avcoat TPS烧蚀器来制造单件隔热板,以满足任务重入加热环境的需要。制造过程中使用了蜂窝式细胞注射枪,该枪是从阿波罗登月计划的过程中重新开发出来的,以建造EFT-1隔热罩。完整的隔热罩由飞机运往全国各地,运往KSC的O&C,安装在胶囊上。 EFT-1隔热板成功完成了其任务,并经历了约80%的重返速度(加热率50%),为探月任务送回了月球。第二架飞行试验飞行器是EM-1任务,它将安装额外的飞行系统以飞向月球并返回。隔热罩的设计和生产能力的改进已被纳入EM-1运载工具中,以满足深空任务和程序性要求。该设计继续使用Avcoat材料,但采用“块状”配置,以改进涂装工艺,并进一步改进载体结构的设计和制造操作。将飞行测试结果和EFT-1的生产能力改进结合在一起用于隔热板系统的设计和过程,提高了热保护能力,提高了生产能力,并提高了EM-1飞行测试的成本。

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