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Response of an embedded distributed optical fiber sensor to directed energy and applied strain

机译:嵌入式分布式光纤传感器对定向能量和应用应变的响应

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In this research, distributed sensing based on Rayleigh scattering is used to measure temperature and strain in a composite panel during a high energy laser strike. The ultimate goal is to rapidly detect a laser strike by sensing the localized, rapid temperature rise caused when directed energy is incident on the surface of a composite structure. A secondary goal is to determine if the thermal response can be detected even in the presence of applied strain. Initial results will be discussed for composite structures comprised of carbon fiber/epoxy of various thicknesses using embedded distributed optical fiber sensors (DOFS) to rapidly detect temperature changes greater than 1000°C on the surface or between plies of the composite. Measurements of the temporal and spatial response are taken at rates greater than 20Hz with sub-millimeter resolution. An infrared camera is used to validate the temperature measurements obtained using DOFS. In addition, since DOFS respond to strain as well as to temperature, any strain in the composite as a result of mechanical loading is coupled into the embedded fiber and is also detected by the sensor. Initial measurements are taken to demonstrate the simultaneous response to both temperature and strain and to characterize the typical strain that results. A DOFS-based sensing architecture can then be designed to mitigate the mechanical response of the sensor, allowing for isolation and rapid detection of the thermal response when high energy radiation is incident on the composite surface.
机译:在该研究中,基于瑞利散射的分布式感测用于在高能量激光冲击期间测量复合板中的温度和应变。最终目标是通过在定向能量入射在复合结构的表面上时,通过感测局部化,快速温度升高来快速检测激光击球。次要目标是确定是否可以在施加应变的存在下检测热响应。将讨论使用嵌入分布式光纤传感器(DOF)的各种厚度的碳纤维/环氧树脂组成的复合结果讨论,以便在表面或复合层之间快速检测大于1000℃的温度变化。时间和空间响应的测量以大于20Hz的速率,具有亚毫米分辨率。红外相机用于验证使用DOF获得的温度测量。此外,由于响应自由度应变以及对温度,在复合物作为机械负荷而造成的任何应变被耦合到嵌入的纤维,也可以通过传感器检测。采用初始测量来证明对温度和菌株的同时反应,并表征结果的典型应变。然后,可以设计基于DOF的传感架构以减轻传感器的机械响应,允许在高能辐射入射在复合表面上时隔离和快速检测热响应。

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