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Additive manufacturing method application for manufacturing polymeric structure with embedded fiber Bragg grating sensor

机译:用嵌入式光纤布拉格光栅传感器制造聚合物结构的增材制造方法应用

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Additive manufacturing (AM) is a common name for a group of techniques that are applied for constructing three-dimensional (3D) objects in a layer-by-layer process. One of the AM methods is multi-jet printing, which offers high accuracy of printed polymeric elements and the possibility of manufacturing products with complex shapes. Elements manufactured using AM are exploited in many industrial branches, e.g. energetic, medicine or aerospace. It results in development of structural health monitoring (SHM) systems. Among a variety of sensors applied for SHM systems fibre Bragg grating sensors (FBG) are a very promising solution. Their advantages, such as small size, multiplexing capabilities and no calibration requirements, allow them to be embedded into different material types. The goal of the paper is to analyze possibility of FBG sensors embedding into an AM polymeric material. The analyzes will be related to the influence of the manufacturing process on FBG sensors as well as influence of temperature on the sensors after finished embedding process.
机译:增材制造(AM)是用于在逐层过程中构造三维(3D)对象的一组技术的通用名称。 AM方法之一是多喷射印刷,它提供了印刷的聚合物元件的高精度,并提供了制造具有复杂形状的产品的可能性。使用AM制造的元件已被许多工业分支所利用,例如精力充沛,医学或航空航天。它导致了结构健康监测(SHM)系统的开发。在用于SHM系统的各种传感器中,光纤布拉格光栅传感器(FBG)是非常有前途的解决方案。它们的优点(例如小尺寸,多路复用功能和无校准要求)使它们可以嵌入到不同的材料类型中。本文的目的是分析将FBG传感器嵌入AM聚合材料中的可能性。这些分析将与制造过程对FBG传感器的影响以及完成嵌入过程后温度对传感器的影响有关。

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