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Photonic crystal fibre-based polarimetric sensor for cure monitoring of magnetorheological smart composite material

机译:基于光子晶体光纤的极化传感器,用于磁流变智能复合材料的固化监控

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摘要

A buffer stripped high birefringent photonic crystal fibre based polarimetric sensor is developed for monitoring the curing process of magnetorheological elastomer (MRE) smart composite material. Using the developed sensor, different phases of the MRE curing process are clearly visible from the phase shift variation of the embedded polarisation maintaining photonic crystal fibre (PM-PCF) sensor. During the curing process, the buffer stripped PM-PCF exhibits a stress/strain induced phase shift variation from 0 to 1.98 rad. This is a significantly large phase change, which can be used to very clearly identify the different stages in the curing process. For comparison, a fibre Bragg grating sensor is also used for monitoring the internal strain during the curing process and its response does not allow one to reliably distinguish all the curing stages. The present investigation offers a simple non-destructive method to monitor the curing process of MRE smart composite material.
机译:开发了一种基于缓冲剥离的高双折射光子晶体光纤的偏振传感器,用于监测磁流变弹性体(MRE)智能复合材料的固化过程。使用开发的传感器,从嵌入式保偏光子晶体光纤(PM-PCF)传感器的相移变化中可以清楚地看到MRE固化过程的不同阶段。在固化过程中,剥离了缓冲液的PM-PCF表现出从0到1.98 rad的应力/应变感应相移变化。这是一个很大的相变,可用于非常清晰地识别固化过程中的不同阶段。为了进行比较,光纤布拉格光栅传感器还用于监控固化过程中的内部应变,并且其响应无法可靠地区分所有固化阶段。本研究提供了一种简单的非破坏性方法来监测MRE智能复合材料的固化过程。

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