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Zasnova sistema za merjenje kavstike anularnega laserskega žarka
ID Myint, Gal (Author), ID Govekar, Edvard (Mentor) More about this mentor... This link opens in a new window

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Abstract
Kavstika laserskega žarka in z njo povezana porazdelitev intenzitete laserskega žarka (PILŽ) neposredno vplivata na kakovost procesa laserskega usmerjenega nanašanja (LUN) kovinskega prahu ali žice. Obstoječi merilni sistemi so prilagojeni predvsem za Gaussove laserske žarke nižjih moči in manjših premerov, zato niso primerni za mer- jenje kavstike anularnega laserskega žarka (ALŽ) velikega premera in moči, kakršnega uporablja obravnavani sistem LUN. V diplomskem delu je zasnovan sistem za merje- nje kavstike anularnega laserskega žarka (SMKALŽ), ki temelji na zajemanju PILŽ s kamero s CMOS senzorjem na različnih razdaljah vzdolž osi ALŽ. Za zmanjšanje moči ALŽ na raven, ki jo senzor še lahko izmeri, smo uporabili polprepustno zrcalo z antireflektivnim premazom in svetlobni filter. Opredelili in izbrali smo vse potrebne optične in mehanske komponente sistema, izdelan je bil 3D model sestava in ocenjena cena sistema. Analizirane so bile tudi pričakovane merilne napake, med drugim vpliv podvojenega odboja in odvisnost odbojnosti od vpadnega kota. Zasnovani SMKALŽ bo omogočal hitrejše, enostavnejše in cenejše merjenje kavstike ALŽ v primerjavi z obstoječimi metodami uporabljenimi v Laboratoriju za Sinergetiko.

Language:Slovenian
Keywords:kavstika laserskega žarka, anularni laserski žarek, porazdelitev intenzitete laserskega žarka, lasersko usmerjeno nanašanje, CMOS senzor
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[G. Myint]
Year:2026
Number of pages:XII, 48 f.
PID:20.500.12556/RUL-187102 This link opens in a new window
UDC:621.375:535.4(043.2)
COBISS.SI-ID:290516227 This link opens in a new window
Publication date in RUL:09.09.2026
Views:67
Downloads:40
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Secondary language

Language:English
Title:Design of a System for Measuring the Caustic of an Annular Laser Beam
Abstract:
The caustic of a laser beam and the associated laser beam intensity distribution (LBID) directly affect the quality of the laser-directed energy deposition (LDED) process used to process metal powder or wire. Existing measurement systems are typically designed for lower-power, smaller-diameter Gaussian laser beams and are therefore unsuitable for measuring the caustic of the annular laser beam (ALB) of large diameter and power used in the considered LDED system. This thesis presents the design of a system for measuring the caustic of an annular laser beam (SMCALB), based on capturing the LBID with a CMOS camera at multiple positions along the beam path. To reduce the beam’s power to a level the sensor can measure, the system uses a partially reflec- tive mirror with an antireflective coating together with an optical filter. All required optical and mechanical components were defined and selected, a 3D assembly model was created, and the cost of the system was estimated. Expected measurement errors were also analyzed, including the effect of double reflection and the angle dependence of reflectivity. The designed system enables faster, simpler, and more affordable me- asurement of the annular laser beam’s caustic compared to existing methods used at the Laboratory for Synergetics.

Keywords:laser beam caustic, annular laser beam, laser beam intensity distribution, laser-directed energy deposition, CMOS sensor

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