论文标题

检查嵌入聚氨酯条的形状光纤的定向应变灵敏度

Examining Directional Strain Sensitivity of Shaped Optical Fibre Embedded in Polyurethane Strip

论文作者

Hasani, Musab Al, Drijkoningen, Guy, Reinsch, Thomas

论文摘要

使用直纤维电缆的分布式应变感应遭受远离纤维轴的应变剂量降低。在这项研究中,通过正弦形成嵌入在聚氨酯条中的纤维来增强方向性的鼻态。首先,通过相对简单的分析模型来量化定向剂量。其次,使用布里鲁因光频域分析(BOFDA)系统进行静态应变测量,在条带的物理样本上进行。检查了两个不同的方向,即在线和广泛方向。前者涉及平行于纤维正弦嵌入的平面变形,而后者表示将平面变形到正常状态。可以观察到,这些方向对变形的响应相反,即纤维会经历负应变,因此缩短,在线变形和正应变,因此会伸展,以实现宽边变形。可以发现,纤维在在线方向上稍微稍微更高,这与模型所预测的行为一致。同样,我们看到沿光纤的测得的应变主要受嵌入材料的弹性特性的影响,这是由于泊松比以及正弦形纤维的几何参数。

Distributed strain sensing using a straight optical-fibre cable suffers from a decreased strain senstivity away from the fibre's axis. In this study, the directional senstivity is enhanced via sinusoidally shaping the fibre that is embedded in a polyurethane strip. First, the directional senstivity is quantified via a relatively simple analytical model. Second, static-strain measurements using a Brillouin Optical Frequency Domain Analysis (BOFDA) system are carried out on a physical sample of the strip. Two different directions are examined, namely in-line and broadside orientations. The former involves deforming parallel to the plane where the fibre is sinusoidally embedded, whereas the latter means deforming the plane normal to it. It can be observed that the response to the deformation in these orientations is opposite, i.e. the fibre experiences negative strain, so shortening, an in-line deformation, and a positive strain, so stretching, for a broadside deformation. It can be found that the fibre is slightly more senstive in the in-line direction which agrees with the behaviour as predicted by the model. Also, we see that the measured strain along the optical fibre is mainly influenced by the elastic properties of the embedding material due to, most importantly, the Poisson's ratio as well as the geometrical parameters of the sinusoidally shaped fibre.

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