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Realization and Performance of an All-Polymer Optical Planar Deformation Sensor

机译:全聚合物光学平面形变传感器的实现与性能

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Novel concepts for a planar optical deformation measurement promise broad application potential in fields such as structural health monitoring, process control, or life sciences. In this paper, we present a new approach to optical displacement and tilt sensing in thin polymer foils. We report on the design, simulation, realization, and characterization of an all-polymer planar strain and tilt sensor based on simple optical principles. The sensor relies on the evaluation of the coupling efficiency between two arrays of emitting and receiving waveguides. As a proof-of-concept, we show that the developed waveguide arrangement and readout algorithm allow monitoring a combination of both displacement/strain and tilt with the same sensor system at once. The performance and sensitivity achieved are in good agreement with simulations, and can pave the way for the future integrated 2-D measurement of larger deformations.
机译:平面光学形变测量的新概念有望在结构健康监测,过程控制或生命科学等领域中广泛应用。在本文中,我们提出了一种在薄聚合物箔中进行光学位移和倾斜感测的新方法。我们报告了基于简单光学原理的全聚合物平面应变和倾斜传感器的设计,仿真,实现和表征。该传感器依赖于发射和接收波导的两个阵列之间的耦合效率的评估。作为概念验证,我们表明,开发的波导装置和读出算法允许同时使用同一传感器系统监视位移/应变和倾斜的组合。所获得的性能和灵敏度与仿真非常吻合,可以为将来的更大变形的二维二维测量铺平道路。

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