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Discrimination Between Damaging and Non- Damaging Impact Events on Composite Structure using SHM Sensor Signal Analysis

机译:使用SHM传感器信号分析对复合结构损坏和非损坏事件之间的歧视

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Impact events on composite structures that may cause damage can be readily detected and located using sensors that respond to the resulting impact stress waves as they propagate. This capability can be used as an alert to maintainers or operators who use the structures that an incident has occurred. However, for this capability to be truly useful it must include the capacity to determine automatically if the impact has caused damage. This will avoid the situation where a follow up inspection of the impact site reveals that no damage has been caused (no-fault found). This paper reports results from impact tests on glass and carbon composite, structural test specimens in which impact sensor data has been processed to reveal clear features that allow discrimination between damaging and non-damaging impacts. The sensors employed were bonded to the specimens and they detected stress and acoustic waves generated by impacts over a broad range of frequencies (bandwidths in excess of 100kHz). This could provide maintainers and operators with a quasi, real-time monitoring capability indicating occurrence, location and consequences of accidental impacts.
机译:可以容易地检测可能导致损坏的复合结构上的影响事件,并使用传感器定位,该传感器在传播时响应所产生的冲击应力波。这种功能可以用作使用发生事件的结构的维护者或运营商的警报。但是,对于这种真正有用的能力,它必须包括如果撞击导致损坏,则必须包括自动确定的能力。这将避免撞击遗址的后续检查表明没有造成损坏(未发现任何故障)的情况。本文报告了玻璃和碳复合材料的影响试验的结果,其中处理了影响传感器数据的结构试验,以揭示允许损坏和非损害影响之间歧视的明确特征。所用的传感器与标本键合,并且它们检测到通过撞击产生的应力和声波在广泛的频率(带宽超过100kHz)上产生的压力和声波。这可以为维护者和运营商提供准确的实时监测能力,指示发生的发生,位置和偶然的影响。

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