Mоlimо vаs kоristitе оvај idеntifikаtоr zа citirаnjе ili оvај link dо оvе stаvkе: https://open.uns.ac.rs/handle/123456789/3600
Nаziv: Ejection performance of coated core pins intended for application on high pressure die casting tools for aluminium alloys processing
Аutоri: Terek, Pal 
Kovačević, Lazar 
Miletić, Aleksandar
Kukuruzović, Dragan 
Škorić, Branko 
Drnovšek A.
Panjan P.
Dаtum izdаvаnjа: 1-јан-2017
Čаsоpis: Tribology in Industry
Sažetak: © 2017 Published by Faculty of Engineering. In high pressure die casting (HPDC) process of aluminium alloys cast alloy soldering severely damages tool surfaces. It hampers casting ejection, reduces the casting quality and decreases the overall production efficiency. Thin ceramic PVD (physical vapor deposition) coatings applied on tool surfaces successfully reduce these effects. However, their performance is still not recognised for surfaces with various topographies. In this investigation, soldering tendency of Al-Si-Cu alloy toward EN X27CrMoV51 steel, plasma nitrided steel, CrN and TiAlN duplex PVD coatings is evaluated using ejection test. The coatings were prepared to a range of surface roughness and topographies. After the tests sample surfaces were analysed by different microscopy techniques and profilometry. It was found that the ejection performance is independent of the chemical composition of investigated materials. After the ejection, the cast alloy soldering layer was found on surfaces of all tested materials. This built-up layer formed by effects of mechanical soldering, without corrosion reactions. Coated samples displayed a pronounced dependence of ejection force on surface roughness and topography. By decreasing roughness, ejection force increased, which is a consequence of intensified adhesion effects. Presented findings are a novel information important for efficient application of PVD coatings intendent for protection of HPDC tools.
URI: https://open.uns.ac.rs/handle/123456789/3600
ISSN: 3548996
DOI: 10.24874/ti.2017.39.03.08
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