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Thermography in control efficiency and safety of laser cleaning

dc.creatorRistić, Slavica R.
dc.creatorPolić, Suzana R.
dc.creatorKnježević, Dragan M.
dc.creatorRadojković, Bojana
dc.creatorLinić, Suzana
dc.creatorJegdić, Bore
dc.date.accessioned2020-04-10T08:30:19Z
dc.date.available2020-04-10T08:30:19Z
dc.date.issued2019
dc.identifier.issn0040-2176
dc.identifier.issn2560-3086
dc.identifier.urihttps://cer.ihtm.bg.ac.rs/handle/123456789/3453
dc.description.abstractInovativna tehnologija laserskog čišćenja različitih površina u industriji, uključuje integrisani pristup kontrole procesa interakcije laser-materijal i ispitivanja rezultata laserskog delovanja. Lasersko čišćenje ima značajne prednosti u odnosu na klasične metode čišćenja: ima veliku selektivnost, preciznost, efikasnost i pouzdanost u primeni kod različitih vrsta materijala. Termalna priroda procesa laserskog čišćenja unosi određeni rizik po predmete čišćenja, te su istraživanja optimizacije procesa u fokusu interesovanja velikog broja naučnika. U radu su prikazani rezultati laserskog čišćenja boje na bakarnoj površini i zaštitnog sloja na štampanoj pločici. Kontrola procesa laserskog čišćenja u realnom vremenu je vršena pomoću infracrvene kamere. Mikromorfološke promene čišćene površine su ispitivani optičkom mikroskopijom.sr
dc.description.abstractInnovative laser cleaning technology for various surfaces in the industry, includes an integrated approach to controlling the process of laser-material interaction and testing laser treatment results. Laser cleaning has significant advantages over conventional cleaning methods: it has high selectivity, precision, efficiency and reliability in an application for different types of materials. The thermal nature of the laser cleaning process brings a certain risk for cleaning objects, and the process optimization research is in the focus of interest of a large number of scientists. This paper presents the results of laser paint, on the copper surface, and the protective layer, on the printed circuit board, cleaning. The control of the real-time laser cleaning process was carried out using an infrared camera. The micromorphological characteristics of the cleaned surface were examined by optical microscopyen
dc.language.isosrsr
dc.publisherBeograd : Savez inženjera i tehničara Srbijesr
dc.relationinfo:eu-repo/grantAgreement/MESTD/Technological Development (TD or TR)/34028/RS//sr
dc.rightsopenAccesssr
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.sourceTehnikasr
dc.subjectlasersko čišćenjesr
dc.subjectNd:YAG lasersr
dc.subjectbakarsr
dc.subjectštampana pločicasr
dc.subjectIC termografijasr
dc.subjectoptička mikroskopijasr
dc.subjectlaser cleaningsr
dc.subjectNd:YAG lasersr
dc.subjectcoppersr
dc.subjectprinted circuit boardsr
dc.subjectIC thermographysr
dc.subjectoptical microscopysr
dc.titleTermografija u kontroli efikasnosti i bezbednosti laserskog čišćenjasr
dc.titleThermography in control efficiency and safety of laser cleaningen
dc.typearticlesr
dc.rights.licenseBYsr
dcterms.abstractЈегдић, Боре В.; Књежевић, Драган М.; Полић, Сузана Р.; Ристић, Славица Р.; Радојковић, Бојана М.; Линић, Сузана Љ.; Термографија у контроли ефикасности и безбедности ласерског чишћења; Термографија у контроли ефикасности и безбедности ласерског чишћења;
dc.citation.volume74
dc.citation.issue5
dc.citation.spage623
dc.citation.epage629
dc.citation.rankM51
dc.identifier.doi10.5937/tehnika1905623R
dc.identifier.fulltexthttps://cer.ihtm.bg.ac.rs/bitstream/id/16241/0040-21761905623R.pdf
dc.type.versionpublishedVersionsr


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