首页> 外文OA文献 >Acoustic Emission Analysis of Shuttle Thermal Protection System
【2h】

Acoustic Emission Analysis of Shuttle Thermal Protection System

机译:航天飞机热保护系统的声发射分析

摘要

Acoustic emission (AE) signals generated from projectile impacts on reinforced and advanced carbon/carbon (RCC and ACC) panels, fired from a compressed-gas gun, identify the type and severity of damage sustained by the target. This type of testing is vital in providing the required "return to flight" (RTF) data needed to ensure continued and safe operation of NASA's Space Shuttle fleet. The gas gun at Kennedy Space Center is capable of propelling 12-inch by 3-inch cylinders of external tank (ET) foam at exit velocities exceeding 1,000 feet per second. Conventional AE analysis techniques require time domain processing of impulse data, along with amplitude distribution analysis. It is well known that identical source excitations can produce a wide range of AE signals amplitudes. In order to satisfy RTF goals, it is necessary to identify impact energy levels above and below damage thresholds. Spectral analysis techniques involving joint time frequency analysis (JTFA) are used to reinforce time domain AE analysis. JTFA analysis of the AE signals consists of short-time Fourier transforms (STFT) and the Huang-Hilbert transform (HHT). The HHT provides a very good measure of the instantaneous frequency of impulse events dominated by a single component. Identifying failure modes and cracking of fibers from flexural and/or extensional mode acoustic signals will help support in-flight as well as postflight impact analysis.
机译:由压缩气枪发射的弹丸撞击增强的和高级的碳/碳(RCC和ACC)面板而产生的声发射(AE)信号可识别目标遭受的破坏的类型和严重程度。这种类型的测试对于提供必需的“返航”(RTF)数据至关重要,以确保NASA航天飞机机队的持续安全运行。肯尼迪航天中心的气枪能够以每秒超过1000英尺的出口速度推动12英寸乘3英寸的外部储气罐(ET)泡沫。常规的AE分析技术需要脉冲数据的时域处理以及幅度分布分析。众所周知,相同的源激发可以产生宽范围的AE信号幅度。为了满足RTF目标,有必要确定高于和低于破坏阈值的冲击能水平。涉及联合时频分析(JTFA)的频谱分析技术用于增强时域AE分析。 AE信号的JTFA分析包括短时傅立叶变换(STFT)和黄-希尔伯特变换(HHT)。 HHT可很好地衡量由单个组件控制的脉冲事件的瞬时频率。从弯曲和/或伸展模式的声音信号中识别出失效模式和纤维破裂,将有助于支持飞行中以及飞行后的影响分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号