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Laserska optična vlakna in sistem za merjenje numerične odprtine
ID BEVK, MIHA (Author), ID Batagelj, Boštjan (Mentor) More about this mentor... This link opens in a new window

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PID: 20.500.12556/rul/91596dd2-6323-43e6-94a6-0125566874f0

Abstract
Cilj diplomskega dela je zasnova, izdelava in preizkus polavtomatizirane naprave za merjenje numerične odprtine laserskih vlaken. Glavni razlog za izdelavo tega projekta je bila potreba po preverjanju oblike snopa izhodnega laserskega žarka in lomnega količnika na končnem laserskem vlaknu po postopku vlečenja iz osnovnega surovca, saj je obstajala verjetnost, da med vlečenjem v optično vlakno prihaja do difuzije redkih zemelj. Diplomsko delo je razdeljeno na pet poglavij. V prvem poglavju je opisana teorija laserskih vlaken in njihovi parametri. V drugem poglavju je predstavljena idejna zasnova sistema in njegova izvedba, predstavitev uporabljenih komponent, pregled drugih naprav, s katerimi lahko merimo numerično odprtino, način merjenja, način izračuna, pregled standarda in možnost nadgradnje v sistem za opazovanje geometrije. V tretjem poglavju so opisane izvedene meritve z novim sistemom na laserskih vlaknih, analiza dobljenih rezultatov in primerjava z meritvami na drugih napravah. V četrtem poglavju je predstavljen izdelan program za vodenje koračnega motorja v okolju LabVIEW in možnost celovite avtomatizacije meritve. V petem poglavju so zapisani zaključki in ugotovitve.

Language:Slovenian
Keywords:lasersko vlakno, numerična odprtina, kvaliteta žarka M^2, LabVIEW, BeamProfiler, IFA100
Work type:Bachelor thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2017
PID:20.500.12556/RUL-96377 This link opens in a new window
Publication date in RUL:29.09.2017
Views:2654
Downloads:554
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Secondary language

Language:English
Title:Laser optical fibers and numerical aperture measuring system
Abstract:
The goal of the diploma thesis is the design, construction and testing of semi-automatic device for measuring numerical aperture of laser fibre. The main reason for elaboration of this project was to verify the shape of output laser beam and the refractive index on the final fibre after drawing process from root preform since there was likelihood that diffusion of rare earths would occur during drawing process. The diploma thesis includes five chapters. The first chapter describes the theory and difference between standard and laser optical fibres, their parameters from numerical aperture to beam quality M2. The second chapter present the conceptual design of our system and its implementation in practice, presentation of used components, review of other devices with which we can measure the numerical aperture, the method of measurement and method of calculation results and review of the standard IEC 60793-1-43. In the third chapter we performed measurements with the new system on fibres lasers, analysis of the obtained results and comparison with measurements on other devices (Photon Kinetics PK2600, York S14, IFA100). In the fourth chapter is developed and presented a program for moving motorized linear positioner (stepper motor) in LabView environment and possibility of complete automation of measurement. The last chapter contains conclusions.

Keywords:laser fibre, numerical aperture, beam quality factor M squared, LabView, BeamProfiler, IFA100

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