65
Views
29
CrossRef citations to date
0
Altmetric
Articles

Ceramic comparison of filling behaviour of metallic, ceramic, hardmetal and magnetic powders

Pages 77-84 | Published online: 19 Jul 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Claudia Hildebrandt, Srikanth R. Gopireddy, Alexander K. Fritsch, Thomas Profitlich, Regina Scherließ & Nora A. Urbanetz. (2019) Evaluation and prediction of powder flowability in pharmaceutical tableting. Pharmaceutical Development and Technology 24:1, pages 35-47.
Read now
Chuan-Yu Wu, Brian Armstrong & Nikolaus Vlachos. (2012) Characterization of Powder Flowability for Die Filling. Particulate Science and Technology 30:4, pages 378-389.
Read now
. (2012) Mining the PM archive. Powder Metallurgy 55:1, pages 1-2.
Read now

Articles from other publishers (26)

Elias Ganthaler, Hoomaan MoradiMaryamnegari, Thomas Villgrattner & Angelika Peer. (2023) Automatic trajectory adaptation for the control of quality characteristics in a powder compaction process. Journal of Manufacturing Processes 107, pages 268-279.
Crossref
M. Just, A. Medina Peschiutta, F. Hippe, R. Useldinger & J. Baller. (2023) Gravitational mass flow measurements of various granular materials in relation to an extended Bond number. International Journal of Refractory Metals and Hard Materials 112, pages 106142.
Crossref
Chao Zheng, Edward Yost, Ariel R. Muliadi, Nicolin Govender, Ling Zhang & Chuan-Yu Wu. (2022) Numerical analysis of die filling with a forced feeder using GPU-enhanced discrete element methods. International Journal of Pharmaceutics 622, pages 121861.
Crossref
Christian Bechteler, Hannes Kühl & Ralf Girmscheid. (2020) Morphology and structure characterization of ceramic granules. Journal of the European Ceramic Society 40:12, pages 4232-4242.
Crossref
Putri Mustika Widartiningsih, Yuki Mori, Kazuya Takabatake, Chuan-Yu Wu, Kensuke Yokoi, Akira Yamaguchi & Mikio Sakai. (2020) Coarse graining DEM simulations of a powder die-filling system. Powder Technology 371, pages 83-95.
Crossref
A. Zakhvatayeva, C. Hare & C.Y. Wu. (2019) Suction filling of pharmaceutical powders. Powder Technology 355, pages 438-448.
Crossref
Haojun Wang, Tao Chen, Weilong Cong & Defu Liu. (2019) Laser Cladding of Ti-Based Ceramic Coatings on Ti6Al4V Alloy: Effects of CeO2 Nanoparticles Additive on Wear Performance. Coatings 9:2, pages 109.
Crossref
Bianca Gloess, Manfred Fries & Alexander Michaelis. (2017) Integrierte Versuchsmethode zur Analyse des Matrizenfüllprozesses beim uniaxialen Trockenpressen. Chemie Ingenieur Technik 89:9, pages 1220-1230.
Crossref
Y. Guo & C.-Y. Wu. 2017. Predictive Modeling of Pharmaceutical Unit Operations. Predictive Modeling of Pharmaceutical Unit Operations 253 271 .
Xizhong An, Yilei Zhang, Yuxi Zhang & Shuo Yang. (2015) Finite Element Modeling on the Compaction of Copper Powder Under Different Conditions. Metallurgical and Materials Transactions A 46:8, pages 3744-3752.
Crossref
Rainer Oberacker. 2013. Ceramics Science and Technology. Ceramics Science and Technology 1 37 .
Bala P. C. Raghupathy & J. G. P. Binner. (2012) Spray freeze drying of YSZ nanopowder. Journal of Nanoparticle Research 14:7.
Crossref
Chuan-Yu Wu & Yu Guo. (2012) Numerical modelling of suction filling using DEM/CFD. Chemical Engineering Science 73, pages 231-238.
Crossref
Rainer Oberacker. 2011. Ceramics Science and Technology. Ceramics Science and Technology 1 37 .
Juan Carlos Cante, M. Dolores Riera, Juan Oliver, Jose Manuel Prado, Alvaro Isturiz & C. Gonzalez. (2010) Flow regime analyses during the filling stage in powder metallurgy processes: experimental study and numerical modelling. Granular Matter 13:1, pages 79-92.
Crossref
Masatoshi Akashi, Tsukasa Otani, Atsuko Shimosaka, Yoshiyuki Shirakawa & Jusuke Hidaka. (2011) Analysis of Filling Characteristics of Granular Particles into Small Die Cavity Using Powder Simulation. Journal of the Society of Powder Technology, Japan 48:1, pages 4-11.
Crossref
C-Y Wu, X F Fan, F Motazedian, J P K Seville, D J Parker & A C F Cocks. (2010) Quantitative investigation of powder flow during die filling using positron emission particle tracking. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering 224:3, pages 169-175.
Crossref
C. Bierwisch, T. Kraft, H. Riedel & M. Moseler. (2009) Die filling optimization using three-dimensional discrete element modeling. Powder Technology 196:2, pages 169-179.
Crossref
C. Bierwisch, T. Kraft, H. Riedel & M. Moseler. (2009) Three-dimensional discrete element models for the granular statics and dynamics of powders in cavity filling. Journal of the Mechanics and Physics of Solids 57:1, pages 10-31.
Crossref
Y. Guo, K. D. Kafui, C.-Y. Wu, C. Thornton & J. P. K. Seville. (2009) A coupled DEM/CFD analysis of the effect of air on powder flow during die filling. AIChE Journal 55:1, pages 49-62.
Crossref
Chuan-Yu Wu. (2008) DEM simulations of die filling during pharmaceutical tabletting. Particuology 6:6, pages 412-418.
Crossref
L.C.R Schneider, I.C. Sinka & A.C.F. Cocks. (2007) Characterisation of the flow behaviour of pharmaceutical powders using a model die–shoe filling system. Powder Technology 173:1, pages 59-71.
Crossref
Kendal Pitt & Csaba Sinka. 2007. Granulation. Granulation 735 778 .
P. Brewin, O. Coube, J. A. Calero, H. Hodgson, R. Maassen & M. Satur. 2007. Modelling of Powder Die Compaction. Modelling of Powder Die Compaction 7 29 .
Chuan-Yu Wu & Alan C.F. Cocks. (2006) Numerical and experimental investigations of the flow of powder into a confined space. Mechanics of Materials 38:4, pages 304-324.
Crossref
I.C Sinka, L.C.R Schneider & A.C.F Cocks. (2004) Measurement of the flow properties of powders with special reference to die fill. International Journal of Pharmaceutics 280:1-2, pages 27-38.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.