Pregled bibliografske jedinice broj: 778370
Trenje kod metala mikrooblikovanjem Friction in metal microforming
Trenje kod metala mikrooblikovanjem Friction in metal microforming // PLIN 2015 ; 13. SKUP O PRIRODNOM PLINU, TOPLINI I VODI ; 6. MEĐUNARODNI SKUP O PRIRODNOM PLINU, TOPLINI I VODI / Raus, Pero ; Galeta, Tomislav ; Kozak, Dražan ; Raos, Marija ; Stojšić, Josip ; Tonković, Zlatko (ur.).
Osijek: Strojarski fakultet Sveučilišta u Slavonskom Brodu, 2015. str. 203-2011 (poster, međunarodna recenzija, cjeloviti rad (in extenso), znanstveni)
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Naslov
Trenje kod metala mikrooblikovanjem Friction in metal microforming
(Friction in metal microforming)
Autori
Grizelj, Branko ; Grizelj, Dejan
Vrsta, podvrsta i kategorija rada
Radovi u zbornicima skupova, cjeloviti rad (in extenso), znanstveni
Izvornik
PLIN 2015 ; 13. SKUP O PRIRODNOM PLINU, TOPLINI I VODI ; 6. MEĐUNARODNI SKUP O PRIRODNOM PLINU, TOPLINI I VODI
/ Raus, Pero ; Galeta, Tomislav ; Kozak, Dražan ; Raos, Marija ; Stojšić, Josip ; Tonković, Zlatko - Osijek : Strojarski fakultet Sveučilišta u Slavonskom Brodu, 2015, 203-2011
Skup
Plin 2015
Mjesto i datum
Osijek, Hrvatska, 23.09.2015. - 25.09.2015
Vrsta sudjelovanja
Poster
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
metalforming; microforming; friction
Sažetak
Abstract The work carried out some analysis microforming. Microforming in metal forming the production of small dimensions in at least two axes not exceeding 2mm. Technology is microforming differs in many ways from the conventional technology of metal forming. It is well recognized that expertise, experience, and theoretical knowledge available in conventionally sized metal forming cannot be simply transferred to microforming. This is due to so-called size effects which have distinct effect on material flow, friction and other process characteristics. Today, process simulation is a standard tool in industry, applied to support process lay-out and its optimization. However, as it is based on continuum mechanics, it is size-invariant at least for cold forging. Hence, it is obvious that due to the size effects, conventional simulation cannot be applied to microforming. In this paper two approaches are presented how to model specific phenomena of microforming in particular concerning material flow and friction. These are the mesoscopic model and a combination of the general friction law and mechanical rheological model, respectively. Both models are brought together to be finally applied to a combined micro cold-extrusion process.
Izvorni jezik
Engleski
Znanstvena područja
Strojarstvo
POVEZANOST RADA
Projekti:
152-1201787-1478 - CAD/CAM tehnika za modernu izradbu alata za lim od visokočvrstih čelika u 4D (Grizelj, Branko, MZOS ) ( CroRIS)
Ustanove:
Strojarski fakultet, Slavonski Brod
Profili:
Branko Grizelj
(autor)