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用于飞机系统的光纤与纳米材料的多功能集成

Multifunctional Integration of Optical Fibers and Nanomaterials for Aircraft Systems.

作者信息

Marques Carlos, Leal-Júnior Arnaldo, Kumar Santosh

机构信息

i3N & Physics Department, University of Aveiro, 3810-193 Aveiro, Portugal.

Mechanical Department and Graduate Program in Electrical Engineering, Federal University of Espírito Santo, Espírito Santo 29075-910, Brazil.

出版信息

Materials (Basel). 2023 Feb 8;16(4):1433. doi: 10.3390/ma16041433.

Abstract

Smart sensing for aeronautical applications is a multidisciplinary process that involves the development of various sensor elements and advancements in the nanomaterials field. The expansion of research has fueled the development of commercial and military aircrafts in the aeronautical field. Optical technology is one of the supporting pillars for this, as well as the fact that the unique high-tech qualities of aircrafts align with sustainability criteria. In this study, a multidisciplinary investigation of airplane monitoring systems employing optical technologies based on optical fiber and nanomaterials that are incorporated into essential systems is presented. This manuscript reports the multifunctional integration of optical fibers and nanomaterials for aircraft sector discussing topics, such as airframe monitoring, flight environment sensing (from temperature and humidity to pressure sensing), sensors for navigation (such as gyroscopes and displacement or position sensors), pilot vital health monitoring, and novel nanomaterials for aerospace applications. The primary objective of this review is to provide researchers with direction and motivation to design and fabricate the future of the aeronautical industry, based on the actual state of the art of such vital technology, thereby aiding their future research.

摘要

航空应用中的智能传感是一个多学科过程,涉及各种传感器元件的开发以及纳米材料领域的进展。研究的扩展推动了航空领域商用和军用飞机的发展。光学技术是其支撑支柱之一,同时飞机独特的高科技特性也符合可持续性标准。在本研究中,对采用基于光纤和纳米材料的光学技术并融入关键系统的飞机监测系统进行了多学科研究。本手稿报告了光纤和纳米材料在航空领域的多功能集成,讨论了诸如机身监测、飞行环境传感(从温度、湿度到压力传感)、导航传感器(如陀螺仪以及位移或位置传感器)、飞行员生命健康监测以及用于航空航天应用的新型纳米材料等主题。本综述的主要目的是根据此类关键技术的实际发展水平,为研究人员提供设计和制造航空业未来的方向和动力,从而助力他们未来的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3318/9967808/23498f657e0e/materials-16-01433-g001.jpg

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