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Three-Axis Distributed Fiber Optic Strain Measurement in 3D Woven Composite Structures

机译:3D编织复合结构中的三轴分布式光纤应变测量

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Recent advancements in composite materials technologies have broken further from traditional designs and require advanced instrumentation and analysis capabilities. Success or failure is highly dependent on design analysis and manufacturing processes. By monitoring smart structures throughout manufacturing and service life, residual and operational stresses can be assessed and structural integrity maintained. Composite smart structures can be manufactured by integrating fiber optic sensors into existing composite materials processes such as ply layup, filament winding and three-dimensional weaving. In this work optical fiber was integrated into 3D woven composite parts at a commercial woven products manufacturing facility. The fiber was then used to monitor the structures during a VARTM manufacturing process, and subsequent static and dynamic testing. Low cost telecommunications-grade optical fiber acts as the sensor using a high resolution commercial Optical Frequency Domain Reflectometer (OFDR) system providing distributed strain measurement at spatial resolutions as low as 2mm. Strain measurements using the optical fiber sensors are correlated to resistive strain gage measurements during static structural loading.
机译:复合材料技术的最新进展已与传统设计相去甚远,需要先进的仪器和分析功能。成功或失败在很大程度上取决于设计分析和制造过程。通过在整个制造和使用寿命期间监控智能结构,可以评估残余应力和操作应力,并保持结构完整性。可以通过将光纤传感器集成到现有的复合材料工艺中来制造复合智能结构,例如层板铺放,长丝缠绕和三维编织。在这项工作中,光纤是在商业机织产品制造工厂集成到3D机织复合材料部件中的。然后,在VARTM制造过程中以及随后的静态和动态测试中,将光纤用于监视结构。低成本电信级光纤用作传感器,使用高分辨率的商用光频域反射仪(OFDR)系统提供空间分辨率低至2mm的分布式应变测量。使用光纤传感器进行的应变测量与静态结构荷载期间的电阻应变计测量相关。

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