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Modeling of coating optical fibers with polymer-magnetic powder composite coating

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2002
66.pdf (351.7Kb)
Authors
Milutinović Nikolić, Aleksandra
Talijan, Nadežda M.
Aleksić, Radoslav
Article (Published version)
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Abstract
A mathematical model of forming a composite coating on optical fiber was established. The model is based on existing mathematical models for coating optical fibers with polymer coating and experimentally defined rheological behavior of the investigated dispersed system. The model was developed for a dispersed system consisting of poly(ethylene-co-vinyl acetate) - EVA in a form of toluene solution and powders of magnetic materials (BaFe12O19 and SmCo5). The influence of the die diameter, diameter of the original optical fiber, concentration of EVA and magnetic powders on the thickness of composite coating was investigated. The model shows good agreement with experimental data.
Postavljen je matematički model formiranja kompozitne prevlake na optičkom vlaknu. Model je zasnovan na postojećim matematičkim modelima prevlačenja vlakana polimernom prevlakom i eksperimentalno utvrđenom reološkom ponašanju ispitivanog dispeznog sistema. Model je razvijen za disperzni sistem koji čine rastvor poli(etilen-ko-vinil acetat) EVA u toluenu i prahovi permanentnih magnetnih materijala (BaFe12O19 i SmCo5). Ispitivan je uticaj prečnika dizne, prečnika osnovnog vlakna, koncentarcije EVA i magnetnih prahova na debljinu kompozitne prevlake. Model pokazuje dobro slaganje sa eksperimentalnim podacima.
Keywords:
modeling / composite coating / optical fiber / magnetic powder / coating condition / modelovanje / kompozitna prevlaka / optičko vlakno / magnetni prah / uslovi prevlačenja
Source:
Science of Sintering, 2002, 34, 2, 175-181
Publisher:
  • International Institute for the Science of Sintering, Beograd

DOI: 10.2298/SOS0202175M

ISSN: 0350-820X

Scopus: 2-s2.0-73449124409
[ Google Scholar ]
URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/5367
Collections
  • Radovi istraživača / Researchers’ publications (TMF)
Institution/Community
Tehnološko-metalurški fakultet
TY  - JOUR
AU  - Milutinović Nikolić, Aleksandra
AU  - Talijan, Nadežda M.
AU  - Aleksić, Radoslav
PY  - 2002
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/5367
AB  - A mathematical model of forming a composite coating on optical fiber was established. The model is based on existing mathematical models for coating optical fibers with polymer coating and experimentally defined rheological behavior of the investigated dispersed system. The model was developed for a dispersed system consisting of poly(ethylene-co-vinyl acetate) - EVA in a form of toluene solution and powders of magnetic materials (BaFe12O19 and SmCo5). The influence of the die diameter, diameter of the original optical fiber, concentration of EVA and magnetic powders on the thickness of composite coating was investigated. The model shows good agreement with experimental data.
AB  - Postavljen je matematički model formiranja kompozitne prevlake na optičkom vlaknu. Model je zasnovan na postojećim matematičkim modelima prevlačenja vlakana polimernom prevlakom i eksperimentalno utvrđenom reološkom ponašanju ispitivanog dispeznog sistema. Model je razvijen za disperzni sistem koji čine rastvor poli(etilen-ko-vinil acetat) EVA u toluenu i prahovi permanentnih magnetnih materijala (BaFe12O19 i SmCo5). Ispitivan je uticaj prečnika dizne, prečnika osnovnog vlakna, koncentarcije EVA i magnetnih prahova na debljinu kompozitne prevlake. Model pokazuje dobro slaganje sa eksperimentalnim podacima.
PB  - International Institute for the Science of Sintering, Beograd
T2  - Science of Sintering
T1  - Modeling of coating optical fibers with polymer-magnetic powder composite coating
EP  - 181
IS  - 2
SP  - 175
VL  - 34
DO  - 10.2298/SOS0202175M
ER  - 
@article{
author = "Milutinović Nikolić, Aleksandra and Talijan, Nadežda M. and Aleksić, Radoslav",
year = "2002",
abstract = "A mathematical model of forming a composite coating on optical fiber was established. The model is based on existing mathematical models for coating optical fibers with polymer coating and experimentally defined rheological behavior of the investigated dispersed system. The model was developed for a dispersed system consisting of poly(ethylene-co-vinyl acetate) - EVA in a form of toluene solution and powders of magnetic materials (BaFe12O19 and SmCo5). The influence of the die diameter, diameter of the original optical fiber, concentration of EVA and magnetic powders on the thickness of composite coating was investigated. The model shows good agreement with experimental data., Postavljen je matematički model formiranja kompozitne prevlake na optičkom vlaknu. Model je zasnovan na postojećim matematičkim modelima prevlačenja vlakana polimernom prevlakom i eksperimentalno utvrđenom reološkom ponašanju ispitivanog dispeznog sistema. Model je razvijen za disperzni sistem koji čine rastvor poli(etilen-ko-vinil acetat) EVA u toluenu i prahovi permanentnih magnetnih materijala (BaFe12O19 i SmCo5). Ispitivan je uticaj prečnika dizne, prečnika osnovnog vlakna, koncentarcije EVA i magnetnih prahova na debljinu kompozitne prevlake. Model pokazuje dobro slaganje sa eksperimentalnim podacima.",
publisher = "International Institute for the Science of Sintering, Beograd",
journal = "Science of Sintering",
title = "Modeling of coating optical fibers with polymer-magnetic powder composite coating",
pages = "181-175",
number = "2",
volume = "34",
doi = "10.2298/SOS0202175M"
}
Milutinović Nikolić, A., Talijan, N. M.,& Aleksić, R.. (2002). Modeling of coating optical fibers with polymer-magnetic powder composite coating. in Science of Sintering
International Institute for the Science of Sintering, Beograd., 34(2), 175-181.
https://doi.org/10.2298/SOS0202175M
Milutinović Nikolić A, Talijan NM, Aleksić R. Modeling of coating optical fibers with polymer-magnetic powder composite coating. in Science of Sintering. 2002;34(2):175-181.
doi:10.2298/SOS0202175M .
Milutinović Nikolić, Aleksandra, Talijan, Nadežda M., Aleksić, Radoslav, "Modeling of coating optical fibers with polymer-magnetic powder composite coating" in Science of Sintering, 34, no. 2 (2002):175-181,
https://doi.org/10.2298/SOS0202175M . .

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