Detection of fastener failure in a thermal protection system panel

J. Rosenstengel, I. Miller, M. DeSimio, M. Derriso, K. Brown, W. Braisted, S. Olson
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引用次数: 10

Abstract

This paper presents development methods and application results for a structural health monitoring (SHM) system for assessing the condition of mechanical fasteners in a test article representing a realistic portion of a thermal protection system. The test article is a carbon-carbon panel bolted through 15 brackets to a backing structure. Mechanical states considered include all bolts fastened to a nominal torque value, or one of the 15 bolts loosened. Four transducers on the backing structure provide actuation and sensing signals. Spectral functions are computed from all single and pair-wise signal combinations: (cross) power spectral densities, transfer functions, and coherence functions. Automated analysis of the spectral functions shows frequency intervals exist over which the function values are indicative of the mechanical state of the test article. These frequency intervals are used to provide features for the SHM classifier. Statistical pattern recognition methods select a subset of the features. The status of the test article is determined as "undamaged" or "bolt j is loose." The overall localization accuracy of the SHM system on test data is 99.1% with 99.7% probability of detecting a damaged condition at a 0.2% probability of a false alarm.
热保护系统面板紧固件失效检测
本文介绍了一种结构健康监测(SHM)系统的开发方法和应用结果,该系统用于评估热防护系统实际部分的测试件中机械紧固件的状态。测试件是一个碳碳面板,通过15个支架螺栓连接到一个背衬结构上。考虑的机械状态包括所有紧固到标称扭矩值的螺栓,或15个螺栓中的一个松动。背衬结构上的四个传感器提供驱动和传感信号。谱函数是从所有单信号和成对信号组合中计算出来的:(交叉)功率谱密度、传递函数和相干函数。谱函数的自动分析显示存在频率间隔,函数值指示测试件的力学状态。这些频率间隔用于为SHM分类器提供特征。统计模式识别方法选择特征的子集。测试件的状态确定为“未损坏”或“螺栓j松动”。SHM系统在测试数据上的整体定位精度为99.1%,检测到损坏状况的概率为99.7%,假警报的概率为0.2%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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