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Surface Treatments to Enhance the Sensitivity of Plastic Optical Fiber Based Accelerometers

机译:表面处理以增强基于塑料光纤的加速度计的灵敏度

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The paper presents an all-fiber accelerometer that uses plastic optical fibers and discusses the enhancement of its sensitivity through physical treatments on the polymer surface to modify the light propagation characteristics. Given the target of being low-cost and compact, the accelerometer exploits the variation of propagation loss induced by the deformations of a miniaturized cantilever on which the fiber is fixed. This simple setup, however, does not exhibit a sufficient sensitivity unless the fiber surface is properly treated in order to enhance the loss dependence with the cantilever bending. Two approaches are compared, namely plasma micro- and nano-texturing and laser localized ablations. Several prototypes of accelerometers have been fabricated using various types of plastic fibers and characterized using a vibration test facility. Preliminary results show that both techniques are effective and can produce similar results, although accelerometer made by laser localized ablation may be more suitable for industrial applications, like the monitoring of vibrations due to moving parts of machines.
机译:本文介绍了一种使用塑料光纤的全纤维加速度计,并通过聚合物表面上的物理处理来探讨其灵敏度的增强,以改变光传播特性。鉴于低成本和紧凑的目标,加速度计利用了由纤维固定的小型化悬臂的变形引起的传播损失的变化。然而,这种简单的设置没有表现出足够的灵敏度,除非纤维表面被适当地处理,以便提高与悬臂弯曲的损耗依赖性。比较了两种方法,即等离子体微观和纳米纹理和激光局部消融。使用各种类型的塑料纤维制造了几种加速度计的原型,并使用振动测试设施表征。初步结果表明,两种技术都是有效的,并且可以产生类似的结果,尽管通过激光局部消融的加速度计可能更适合于工业应用,例如由于机器的移动部件监测振动。

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