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熔合聚合物光纤的动态力学分析:面向传感器应用

Dynamic mechanical analysis on fused polymer optical fibers: towards sensor applications.

作者信息

Leal-Junior Arnaldo, Frizera Anselmo, Pontes Maria José, Antunes Paulo, Alberto Nélia, Domingues Maria Fátima, Lee Heeyoung, Ishikawa Ryo, Mizuno Yosuke, Nakamura Kentaro, André Paulo, Marques Carlos

出版信息

Opt Lett. 2018 Apr 15;43(8):1754-1757. doi: 10.1364/OL.43.001754.

Abstract

This Letter presents, for the first time, to the best of our knowledge, the dynamic mechanical analysis of a polymer optical fiber (POF) that was previously damaged by the catastrophic fuse effect. The variation of the fiber Young's modulus was evaluated with respect to the increase of temperature, humidity, and frequency of strain cycles. The obtained data for the fused POF are compared with the ones for the same POF without the fuse effect. The results show the feasibility of the fused POF for sensor applications, such as strain and acceleration measurement, since it presents temperature sensitivity almost two times lower in temperatures between 26°C and 90°C and Young's modulus 2.3 times lower than those obtained with the bare fiber. The Young's modulus variation with the humidity is 1.5 MPa/%RH in a humidity range of 66-96%. In addition, the fused POF presented a variation of its dynamic modulus with the frequency increase four times lower than non-fused POFs on the range of 0.01-100.00 Hz. These results pave the way for future applications of fused POFs as sensing elements.

摘要

据我们所知,本信函首次展示了对一根先前因灾难性熔断效应而受损的聚合物光纤(POF)进行的动态力学分析。针对温度、湿度以及应变循环频率的增加,评估了光纤杨氏模量的变化情况。将熔断后的POF所获得的数据与未产生熔断效应的同一POF的数据进行了比较。结果表明,熔断后的POF适用于诸如应变和加速度测量等传感器应用,因为在26°C至90°C的温度范围内,其温度敏感度几乎比裸光纤低两倍,杨氏模量比裸光纤低2.3倍。在66 - 96%的湿度范围内,杨氏模量随湿度的变化为1.5 MPa/%RH。此外,在0.01 - 100.00 Hz的频率范围内,熔断后的POF的动态模量随频率增加的变化比未熔断的POF低四倍。这些结果为熔断后的POF作为传感元件的未来应用铺平了道路。

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