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Manufacturing Technology and Polimer Biocompatibility

dc.creatorStamenković, Dragomir
dc.creatorBojović, Božica
dc.creatorMiljković, Zoran
dc.creatorKojić, Dušan
dc.date.accessioned2023-03-16T07:47:28Z
dc.date.available2023-03-16T07:47:28Z
dc.date.issued2009
dc.identifier.isbn978-86-7083-662-4
dc.identifier.urihttps://machinery.mas.bg.ac.rs/handle/123456789/6443
dc.description.abstractOvaj rad, odnosi se na razvoj i primenu tehnologije mašinske obrade rezanjem biokompatibilnih polimera, uz prethodno utvrđivanje fizičkih karakteristika materijala kontaktnog sočiva korišćenjem savremene karakterizacije teksture površine primenom skenirajuće mikroskopije i opto-magnetike u domenu nanotehnologije, čime se, posle složene analize i implementacije naprednih proizvodnih tehnologija, ostvaruje predviđeno funkcionalno ponašanje u eksploataciji bazirano na adekvatnoj hrapavosti obrađene površine, što je izuzetno značajno za obezbeđivanje odgovarajuće adhezione sile prilikom prianjanja ovog optičkog pomagala rožnjači. U ovom radu predstavljen je značajan naučni doprinos, iskazan kroz ugrađeno znanje i iskustvo u domenu implementacije tehnologije obrade rezanjem, kao i preko analize digitalnih slika teksture obrađene površine biopolimera kontaktnog sočiva, dobijenih pomoću najsavremenijeg laboratorijskog mikroskopa koji radi u nanometarskoj skali (JEOL SPM5200). Rezultati do kojih se došlo imaju neposrednu praktičnu primenu, verifikovanu u domaćoj proizvodnoj organizaciji „Optix“-Zemun, gde se ova kontaktna sočiva proizvode za naše i inostrano tržište.sr
dc.description.abstractThis work refers to the development and application of machining technology by cutting biocompatible polymers, with prior determination of the physical characteristics of the contact lens material using modern characterization of the surface texture using scanning microscopy and opto-magnetics in the field of nanotechnology, which, after complex analysis and implementation of advanced manufacturing technology, realizes the intended functional behavior in exploitation based on the adequate roughness of the processed surface, which is extremely important for ensuring the appropriate adhesion force when adhering this optical aid to the cornea. In this paper, a significant scientific contribution is presented, expressed through the built-in knowledge and experience in the field of the implementation of cutting processing technology, as well as through the analysis of digital images of the texture of the processed surface of the contact lens biopolymer, obtained using a state-of-the-art laboratory microscope operating in the nanometer scale (JEOL SPM5200). The results achieved have an immediate practical application, verified in the domestic production organization "Optix"-Zemun, where these contact lenses are produced for our and foreign markets.sr
dc.language.isosrsr
dc.publisherUniverzitet u Beogradu, Mašinski fakultet, Katedra za proizvodno mašinstvosr
dc.relationinfo:eu-repo/grantAgreement/MESTD/MPN2006-2010/14031/RS//sr
dc.rightsopenAccesssr
dc.rights.urihttps://creativecommons.org/share-your-work/public-domain/cc0/
dc.sourceZbornik radova - 33. Savetovanje proizvodnog mašinstva SRBIJE 2009 sa međunarodnim učešćem / Proceedings of the 33th International Conference on Production Engineering Conference on Production Engineering of Serbia with foreign participants (in Serbian)sr
dc.subjectCutting of biocompatible polymerssr
dc.subjectPhysical characteristics of the contact lenssr
dc.subjectScanning microscopy and opto-magneticssr
dc.subjectNanotechnologysr
dc.subjectAdvanced manufacturing technologysr
dc.subjectRoughness of the processed surfacesr
dc.subjectAdhesion forcesr
dc.subjectCutting processing technology,sr
dc.subjectDigital imagessr
dc.subjectMicroscope JEOL SPM5200sr
dc.titleТехнологија машинске обраде и биокомпатибилност полимераsr
dc.titleManufacturing Technology and Polimer Biocompatibilitysr
dc.typeconferenceObjectsr
dc.rights.licenseCC0sr
dc.rights.holderProf. Ljubodrag Tanovićsr
dc.citation.epage16
dc.citation.rankM63
dc.citation.spage13
dc.identifier.rcubhttps://hdl.handle.net/21.15107/rcub_machinery_6443
dc.type.versionpublishedVersionsr


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