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FBG based transducers for morphing applications: Design, prototyping and testing of FBG based transducers

机译:基于FBG的传感器用于变形应用:FBG基换能器的设计,原型和测试

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The measurement of large deformations represents a challenging issue for many engineering applications. To name a few, morphing and deployable aerospace structures, due to the intrinsic large deformations, require dedicated sensing systems able to capture the current geometry (shape reconstruction) and to detect the stress level (structural health monitoring). Conventional sensors, on one hand, due to the material structural limitations, could not assure an adequate measurement, and, on the other, may interfere with other instrumentation. The optical fiber technologies present advantages in terms of channels number and wiring needs; furthermore the specific information carrier, that is the light, prevents from any interference with other onboard systems. Finally, limitations of measurement due to the glass intrinsic fragility may be overcome integrating the sensors with a dedicated strain modulation supporting structure. The paper at hand just focuses on Fiber Brag Grating (FBG) - based sensors, conceived to modulate large strains. For each transducer, the design phase is illustrated: moving from the specifications, the design parameters are then identified and their optimal configuration is assessed. Preliminary demonstrators are manufactured and tested, allowing a comparison with the numerical outcomes. All proposed concepts exhibited a wide measurement range, a high level of versatility (due to the possibility of tuning the same sensors for different measurement conditions). The work ends with a critical discussion on the enhancements further achievable and on the activities yet necessary to increase the readiness level.
机译:大变形的测量代表了许多工程应用的具有挑战性问题。为了命名一些,由于内在的大变形,更换变形和可部署的航空航天结构,需要专用的传感系统能够捕获电流几何形状(形状重建)并检测应力水平(结构健康监测)。一方面,由于材料结构限制,传统传感器无法确保足够的测量,并且在另一方面,可能会干扰其他仪器。光纤技术在通道数和布线需求方面存在优势;此外,特定信息载体,即光,防止与其他车载系统的任何干扰。最后,可以通过专用的应变调制支撑结构克服引起玻璃内在碎片引起的测量的限制。手中的纸张专注于纤维吹栅(FBG)的传感器,构思调节大菌株。对于每个换能器,示出了设计阶段:从规格中移动,然后识别设计参数,并评估它们的最佳配置。初步示威者是制造和测试的,允许与数值结果进行比较。所有提议的概念都呈现出宽的测量范围,高水平的多功能性(由于调谐相同传感器的可能性,用于不同的测量条件)。这项工作结束了关于增强功能的重要讨论,并且在需要增加准备水平的情况下是必要的。

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