Critical powder loading and the rheology of nanosized cemented carbide with titanium carbide as grain growth inhibitor for injection molding

The purpose of this paper is to determine the critical powder loading of WC-Co and to study the effect of TiC powder on the rheological behavior of MIM feedstock. WC-TiC-6Co metal powder was taken as raw material. 60% (mass fraction) palm stearin and 40% low density polyethylene were employed as bin...

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Main Authors: Shahbudin, S.N.A., M Amin, Sri Yulis, Othman, M.H., Ibrahim, M.H.I.
Format: Article
Language:English
Published: Penerbit UTHM 2018
Subjects:
Online Access:http://eprints.uthm.edu.my/3660/1/AJ%202019%20%28162%29.pdf
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author Shahbudin, S.N.A.
M Amin, Sri Yulis
Othman, M.H.
Ibrahim, M.H.I.
author_facet Shahbudin, S.N.A.
M Amin, Sri Yulis
Othman, M.H.
Ibrahim, M.H.I.
author_sort Shahbudin, S.N.A.
collection UTHM
description The purpose of this paper is to determine the critical powder loading of WC-Co and to study the effect of TiC powder on the rheological behavior of MIM feedstock. WC-TiC-6Co metal powder was taken as raw material. 60% (mass fraction) palm stearin and 40% low density polyethylene were employed as binders to prepare injection feedstock. Three feedstocks were prepared at different TiC % loadings of 0.5, 0.75, and 1.0 (by weight). A homogeneous metal powders is formed by using ball mill mixer and mixed together with binder system by using Brabender mixer. Based on the result obtained, it was concluded that feedstock with 0.75 wt. % TiC powder show a good pseudo-plastic behavior within acceptable ranges in MIM.
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spelling uthm.eprints-36602021-11-21T06:32:41Z http://eprints.uthm.edu.my/3660/ Critical powder loading and the rheology of nanosized cemented carbide with titanium carbide as grain growth inhibitor for injection molding Shahbudin, S.N.A. M Amin, Sri Yulis Othman, M.H. Ibrahim, M.H.I. TP1080-1185 Polymers and polymer manufacture The purpose of this paper is to determine the critical powder loading of WC-Co and to study the effect of TiC powder on the rheological behavior of MIM feedstock. WC-TiC-6Co metal powder was taken as raw material. 60% (mass fraction) palm stearin and 40% low density polyethylene were employed as binders to prepare injection feedstock. Three feedstocks were prepared at different TiC % loadings of 0.5, 0.75, and 1.0 (by weight). A homogeneous metal powders is formed by using ball mill mixer and mixed together with binder system by using Brabender mixer. Based on the result obtained, it was concluded that feedstock with 0.75 wt. % TiC powder show a good pseudo-plastic behavior within acceptable ranges in MIM. Penerbit UTHM 2018 Article PeerReviewed text en http://eprints.uthm.edu.my/3660/1/AJ%202019%20%28162%29.pdf Shahbudin, S.N.A. and M Amin, Sri Yulis and Othman, M.H. and Ibrahim, M.H.I. (2018) Critical powder loading and the rheology of nanosized cemented carbide with titanium carbide as grain growth inhibitor for injection molding. International Journal of Integrated Engineering, 10 (4). pp. 114-118. ISSN 2229-838X
spellingShingle TP1080-1185 Polymers and polymer manufacture
Shahbudin, S.N.A.
M Amin, Sri Yulis
Othman, M.H.
Ibrahim, M.H.I.
Critical powder loading and the rheology of nanosized cemented carbide with titanium carbide as grain growth inhibitor for injection molding
title Critical powder loading and the rheology of nanosized cemented carbide with titanium carbide as grain growth inhibitor for injection molding
title_full Critical powder loading and the rheology of nanosized cemented carbide with titanium carbide as grain growth inhibitor for injection molding
title_fullStr Critical powder loading and the rheology of nanosized cemented carbide with titanium carbide as grain growth inhibitor for injection molding
title_full_unstemmed Critical powder loading and the rheology of nanosized cemented carbide with titanium carbide as grain growth inhibitor for injection molding
title_short Critical powder loading and the rheology of nanosized cemented carbide with titanium carbide as grain growth inhibitor for injection molding
title_sort critical powder loading and the rheology of nanosized cemented carbide with titanium carbide as grain growth inhibitor for injection molding
topic TP1080-1185 Polymers and polymer manufacture
url http://eprints.uthm.edu.my/3660/1/AJ%202019%20%28162%29.pdf
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