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Investigating Premature Ignition of Thruster Pressure Cartridges by Mechanical Impact of Internal Components

机译:通过内部组件的机械冲击研究推进器压力盒过早点火

摘要

Pyrotechnic thruster pressure cartridges (TPCs) are used for aeroshell separation on a new NASA crew launch vehicle. The premature ignition concern was hypothesized based on the potential range of motion of the subassemblies, projected worst case accelerations, and the internal geometry that could subject propellant grains to mechanical impact sufficiently high for ignition. This possibility was investigated by fabricating a high-fidelity model of the suspected contact geometry, placing a representative amount of propellant in it, and impacting the propellant with a range of forces equivalent to and greater than the maximum possible during launch. Testing demonstrated that the likelihood of ignition is less than 1 in 1,000,000. The test apparatus, methodology, and results are described in this paper. Nondestructive evaluation ( NDE) during TPC acceptance testing indicated that internal assemblies moved during shock and vibration testing due to an internal bond anomaly. This caused concerns that the launch environment might produce the same movement and release propellant grains that might be prematurely ignited through impact or through electrostatic discharge (ESD) as grains vibrated against internal surfaces. Since a new lot could not be fabricated in time, a determination had to be made as to whether the lot was acceptable to fly. This paper discusses the analysis and impact testing used to address the potential impact issue and a separate paper addresses the ESD issue.
机译:烟火推进器压力盒(TPC)用于NASA新型载人运载工具上的机壳分离。根据组件的潜在运动范围,预计的最坏情况下的加速度以及可能使推进剂颗粒受到足以点燃的机械冲击的内部几何形状,来假设过早着火。通过制造可疑接触几何形状的高保真度模型,在其中放置一定量的推进剂,并以等于或大于发射期间可能的最大力的范围冲击推进剂,研究了这种可能性。测试表明,着火的可能性小于1,000,000分之一。本文介绍了测试设备,方法和结果。 TPC验收测试期间的无损评估(NDE)表明,由于内部粘合异常,内部组件在冲击和振动测试期间发生了移动。这引起了人们的担忧,即发射环境可能产生相同的运动并释放出推进剂颗粒,而这些颗粒可能会因撞击或通过静电放电(ESD)而过早点燃,因为它们会相对于内表面振动。由于无法及时制造新的批次,因此必须确定批次是否可以接受飞行。本文讨论了用于解决潜在影响问题的分析和影响测试,另有一篇文章讨论了ESD问题。

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