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Technical Note

Preforming of Metal—Polymer Composites by Electrical Discharge Compaction of Powders

Pages 173-177 | Published online: 19 Jul 2013

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Read on this site (2)

I. Hemmati, H. R. Madaah Hosseini & S. Miraghaei. (2007) Effect of processing parameters on electrical, mechanical and magnetic properties of iron–resin soft magnetic composite. Powder Metallurgy 50:1, pages 86-90.
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Articles from other publishers (6)

Rosa María Aranda, Fátima Ternero, Sergio Lozano-Pérez, Juan Manuel Montes & Francisco G. Cuevas. (2021) Capacitor Electrical Discharge Consolidation of Metallic Powders—A Review. Metals 11:4, pages 616.
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A. Darvizeh, M. Alitavoli & N. Namazi. (2018) An investigation into the parameters affecting the breakdown voltage and inter-particle bonding in the electrical discharge compaction of metal powders. Advanced Powder Technology 29:10, pages 2346-2355.
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Eugene A. Olevsky & Dina V. DudinaEugene A. Olevsky & Dina V. Dudina. 2018. Field-Assisted Sintering. Field-Assisted Sintering 37 87 .
M. Alitavoli & A. Darvizeh. (2009) High rate electrical discharge compaction of powders under controlled oxidation. Journal of Materials Processing Technology 209:7, pages 3542-3549.
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I. Hemmati, H.R. Madaah Hosseini & A. Kianvash. (2006) The correlations between processing parameters and magnetic properties of an iron–resin soft magnetic composite. Journal of Magnetism and Magnetic Materials 305:1, pages 147-151.
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I. Chicinas, O. Geoffroy, O. Isnard & V. Pop. (2005) Soft magnetic composite based on mechanically alloyed nanocrystalline Ni3Fe phase. Journal of Magnetism and Magnetic Materials 290-291, pages 1531-1534.
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