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Enhanced fabrication process for in situ triboluminescent optical fiber sensor for multifunctional composites

机译:增强用于多功能复合材料的原位累来的辐射光纤传感器的制造工艺

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摘要

The in situ triboluminescent optical fiber (ITOF) sensor is a proprietary sensor developed by High-Performance Materials Institute researchers. The ITOF sensor consists of polymer optical fiber and manganese-doped zinc sulfide (ZnS: Mn) which has the highest triboluminescent (TL) emission capability among all inorganic crystals. An automated fabrication machine was designed to fabricate consistent ITOF sensor, i. e. uniform TL coating on optical fiber, by a continuous dip coating process. The consistency of the coating thickness depends on the stress distribution on the ITOF sensor, and the vertical alignment of the fiber during the coating process. Several batches of ITOF sensors with different thickness were fabricated by the automated coating machine. The average diameter of the ITOF sensor is approximately 1.51mm and 1.45mm for 30 wt% and 50 wt% crystals, respectively, at coating speed of 1.618 mms(-1). The ITOF sensors were embedded into the glass fiber composites and tested under flexural loading to detect composite failure. Results showed that ITOF sensors can detect shear failure of the flexural beams, and the TL signals were impeccably aligned with the acoustic signals. The compact ITOF sensor fabrication machine can consistently, continuously produce ITOF sensors with almost zero waste.
机译:本地累卷发光光纤(ITOF)传感器是由高性能材料研究所研究人员开发的专有传感器。 ITOF传感器由聚合物光纤和锰掺杂的硫化锌(ZnS:Mn)组成,其在所有无机晶体中具有最高的累累卷发(TL)排放能力。设计自动制造机器,用于制造一致的ITOOM传感器,i。 e。光纤上均匀的TL涂层,通过连续浸涂方法。涂层厚度的一致性取决于ITOF传感器上的应力分布,以及在涂覆过程中纤维的垂直对准。通过自动涂布机制造具有不同厚度的几批ITOF传感器。 ITOF传感器的平均直径分别为30wt%和50wt%的晶体,涂层速度为1.618毫米(-1),分别为约1.51mm和1.45mm。将ITOF传感器嵌入玻璃纤维复合材料中并在弯曲载荷下进行测试以检测复合故障。结果表明,ITOF传感器可以检测弯曲梁的剪切失效,并且TL信号无可挑剔地与声信号对齐。紧凑型ITOOF传感器制造机可以一致,连续生产具有几乎零余量的IT传感器。

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