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Investigation of Carbon-Polymer Structures With Embedded Fiber- Optic Bragg Gratings

机译:嵌入式布拉格光栅对碳聚合物结构的研究

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Bragg-grating sensors fabricated within the same optical fiber are buried within multiple-ply carbon-epoxy planar and cylindrical structures. Effect of different orientation of fiber-sensors with respect to carbon fibers in the composite structure is investigated. This is done for both fabric and uni-tape material samples. Response of planar structures to axial and transverse strain up to 1 millistrain is investigated with distributed Bragg-grating sensors. Material properties like Young's Modulus and Poisson ratio is measured. A comparison is made between response measured by sensors in different ply-layers and those bonded on the surface. The results from buried fiber-sensors do not completely agree with surface bonded conventional strain gauges. A plausible explanation is given for observed differences. The planar structures are subjected to impacts with energies up to 10 ft-lb. Effect of this impact on the material stiffness is also investigated with buried fiber-optic Bragg sensors. The strain response of such optical sensors is also measured for cylindrical carbon-epoxy composite structures. The sensors are buried within the walls of the cylinder as well as surface bonded in both the axial as well as hoop directions. The response of these fiber-optic sensors is investigated by pressurizing the cylinder up to its burst pressure of around 1500 psi. This is done at both room temperature as well as cryogenic temperatures. The recorded response is compared with that from a conventional strain gauge.
机译:在同一根光纤中制造的布拉格光栅传感器被埋在多层碳环氧平面和圆柱结构中。研究了纤维传感器相对于复合结构中碳纤维的不同取向的影响。对织物和单带材料样品都执行此操作。使用分布式布拉格光栅传感器研究了平面结构对轴向和横向应变至1毫厘的响应。测量诸如杨氏模量和泊松比的材料特性。比较了不同层中传感器测得的响应与表面上粘合的响应。埋入式光纤传感器的结果与表面粘合的常规应变仪并不完全一致。对于观察到的差异给出了合理的解释。平面结构承受的冲击力高达10 ft-lb。还使用埋入式光纤Bragg传感器研究了这种影响对材料刚度的影响。对于圆柱形碳-环氧树脂复合结构,也测量了这种光学传感器的应变响应。传感器被埋在圆柱体的壁内以及在轴向和环向两个方向上粘结的表面。通过将气缸加压至其爆破压力约为1500 psi,研究了这些光纤传感器的响应。这是在室温和低温下完成的。将记录的响应与常规应变仪的响应进行比较。

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