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Comparative study of partially water-soluble metal injection moulding feedstock based on inconel 718: The effect of polyethylene glycol molecular weight on rheology and debinding

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dc.title Comparative study of partially water-soluble metal injection moulding feedstock based on inconel 718: The effect of polyethylene glycol molecular weight on rheology and debinding en
dc.contributor.author Hnátková, Eva
dc.contributor.author Bleyan, Davit
dc.contributor.author Hausnerová, Berenika
dc.contributor.author Hales, Andrew
dc.contributor.author Jiránek, Lukáš
dc.contributor.author Derguti, Fatos
dc.contributor.author Todd, Iain
dc.relation.ispartof Euro PM 2014 Congress and Exhibition, Proceedings
dc.identifier.isbn 9781899072446
dc.date.issued 2014
dc.event.title Euro PM 2014 International Conference and Exhibition
dc.event.location Salzburg
utb.event.state-en Austria
utb.event.state-cs Rakousko
dc.event.sdate 2014-09-21
dc.event.edate 2014-09-24
dc.type conferenceObject
dc.language.iso en
dc.publisher European Powder Metallurgy Association (EPMA)
dc.subject Debinding en
dc.subject Inconel 718 en
dc.subject Metal injection moulding en
dc.subject Molecular weight en
dc.subject Polyethylene glycol en
dc.subject Rheology en
dc.description.abstract Polyethylene glycol (PEG) is a common component of partially water-soluble binder systems used for metal injection moulding (MIM) feedstocks. After injection moulding, PEG is removed from the components by immersion in water. In this work, the processability of MIM feedstocks based on 59 vol. % of Inconel 718 powder in a binder system containing PEGs with molecular weight (Mw) varying in the range of 1,500 - 20,000, poly (methyl methacrylate) and stearic acid was investigated. The results of the rheological analysis showed that viscosity of feedstocks with low Mw of PEG was more sensitive to temperature at higher shear rates, while at lower shear rates the opposite trend was found. Based on overall flow and debinding behaviour, the feedstock containing PEG with Mw of 8 000 was selected as the most suitable for the processing of Inconel 718 via MIM. en
utb.faculty Faculty of Technology
utb.faculty University Institute
dc.identifier.uri http://hdl.handle.net/10563/1006327
utb.identifier.obdid 43873149
utb.identifier.scopus 2-s2.0-84959043662
utb.source d-scopus
dc.date.accessioned 2016-06-22T12:14:46Z
dc.date.available 2016-06-22T12:14:46Z
utb.ou Centre of Polymer Systems
utb.contributor.internalauthor Hnátková, Eva
utb.contributor.internalauthor Hausnerová, Berenika
utb.contributor.internalauthor Bleyan, Davit
utb.fulltext.affiliation Eva Hnatkova 1,2,a, Davit Bleyan 1,2,b, Berenika Hausnerova 1,2,c, Andrew Hales 3,d, Lukas Jiranek 4,e, Fatos Derguti 3,f, Iain Todd 3,g 1 Department of Production Engineering, Faculty of Technology, Tomas Bata University in Zlín, nám. T. G. Masaryka 5555, 760 01 Zlín, Czech Republic 2 Centre of Polymer Systems, University Institute, Tomas Bata University in Zlín, Nad Ovčírnou 3685, 760 01 Zlín, Czech Republic 3 The University of Sheffield, Department of Materials Science and Engineering, Sir Robert Hadfield Building, Mappin Street, Sheffield, S1 3JD, United Kingdom 4 Beckett MIM, Tinsley Industrial Park, Shepcote Way, Sheffield, S9 1TH, United Kingdom a ehnatkova@ft.utb.cz, b bleyan@ft.utb.cz, c hausnerova@ft.utb.cz, d a.hales@sheffield.ac.uk, e lukas.jiranek@beckettmim.com, f f.derguti@sheffield.ac.uk, g i.todd@sheffield.ac.uk
utb.fulltext.dates -
utb.fulltext.faculty Faculty of Technology
utb.fulltext.faculty University Institute
utb.fulltext.faculty Faculty of Technology
utb.fulltext.faculty University Institute
utb.fulltext.faculty Faculty of Technology
utb.fulltext.faculty University Institute
utb.fulltext.ou Department of Production Engineering
utb.fulltext.ou Centre of Polymer Systems
utb.fulltext.ou Department of Production Engineering
utb.fulltext.ou Centre of Polymer Systems
utb.fulltext.ou Department of Production Engineering
utb.fulltext.ou Centre of Polymer Systems
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