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Ballistic Damage Detection in Thermoplastic Composite Laminates by Means of Embedded Optical Fibers

机译:埋入式光纤在热塑性复合材料层板弹道损伤检测中的应用

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摘要

Fiberoptic sensors (FOS), can be either placed on the material surface or can be embedded into the material structure. A network of fiberoptic sensors within composite materials provides real-time information about any deformation in material during manufacturing process or material use. The main advantages of fiberoptic sensors are their shape and structure which result in easy embedding, preserving composite material mechanical properties, which makes them a reliable automatic system for long-term structure health monitoring. Thermoplastic reinforced composite materials were made for increased material damage resistance during ballistic loading. This article the describes procedure of embedding fiberoptic sensors in laminar thermoplastic composite material, as well as damage investigation after ballistic loading. Damage inside the composite material was detected by observing intensity drop of the light signal transmitted through the optical fiber network. Experimental testing was carried out in order to observe and analyze the response of material under various load conditions.
机译:光纤传感器(FOS)可以放置在材料表面上,也可以嵌入到材料结构中。复合材料中的光纤传感器网络可提供有关制造过程或材料使用过程中材料中任何变形的实时信息。光纤传感器的主要优点是其形状和结构易于嵌入,并保持复合材料的机械性能,这使其成为用于长期结构健康监测的可靠自动系统。制备了热塑性增强复合材料,以增加弹道载荷期间的材料抗破坏性。本文介绍了将光纤传感器嵌入层状热塑性复合材料中的过程以及弹道载荷后的损伤调查。通过观察通过光纤网络传输的光信号的强度下降来检测复合材料内部的损坏。为了观察和分析材料在各种载荷条件下的响应,进行了实验测试。

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