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Fibre optic sensors for high speed hypervelocity impact studies andlow velocity drop tests

机译:用于高速超细的光纤传感器,影响力和流速度下降试验

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The initial aim of this project was to develop a non-contact fibre optic based displacement sensor to operate in the harsh environment of a 'Light Gas Gun' (LGG), which can 'fire' small particles at velocities ranging from 1-8.4 km/s. The LGG is used extensively for research in aerospace to analyze the effects of high speed impacts on materials. Ideally the measurement should be made close to the centre of the impact to minimise corruption of the data from edge effects and survive the impact. A further requirement is that it should operate at a stand-off distance of 8cm. For these reasons we chose to develop a pseudo con-focal intensity sensor, which demonstrated resolution comparable with conventional PVDF sensors combined with high survivability and low cost. A second sensor was developed based on 'Fibre Bragg Gratings' (FBG) which although requiring contact with the target the low weight and very small contact area had minimal effect on the dynamics of the target. The FBG was mounted either on the surface of the target or tangentially between a fixed location. The output signals from the FBG were interrogated in time by a new method. Measurements were made on composite and aluminium plates in the LGG and on low speed drop tests. The particle momentum for the drop tests was chosen to be similar to that of the particles used in the LGG.
机译:该项目的初始目的是开发一个非接触式光纤基基的位移传感器,在“轻气枪”(LGG)的恶劣环境中运行,该环境可以在1-8.4公里的速度下'消防'小颗粒。 / s。 LGG广泛用于航空航天研究,分析高速影响对材料的影响。理想情况下,应靠近影响的中心,以最大限度地减少边缘效应的数据损坏,并在撞击中存活。进一步的要求是它应该在8cm的脱扣距离处运行。出于这些原因,我们选择开发伪共焦强度传感器,这表明与常规的PVDF的传感器具有高生存能力和低成本组合可比分辨率。第二传感器是基于“光纤布拉格光栅”(FBG),其虽然需要与目标的低重量和非常小的接触面积的接触对所述靶的动力学的影响最小显影。 FBG在目标表面上安装在目标表面上或在固定位置之间切向。来自FBG的输出信号通过新方法及时询问。在LGG的复合材料和铝板上进行测量,并在低速下降试验上进行。选择液滴试验的粒子动量与LGG中使用的颗粒的粒子动量相似。

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