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Microstructural modelling of electrical conductivity and mechanical properties of sintered ferrous materials

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Pages 219-227 | Published online: 19 Jul 2013

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K.R. Nishkala, Rajat Radhakrishna Rao, Srinivas Mutalik, M.S. Murari & Mamatha D. Daivajna. (2022) Effect of milling duration on structural properties of polycrystalline bulk barium hexaferrite. Materials Today: Proceedings 58, pages 631-637.
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H. Danninger, G. Leitner & Ch. Gierl-Mayer. (2018) Studying the Progress of Sintering in Ferrous Powder Compacts by In-Situ Measuring the Thermal Conductivity. Powder Metallurgy Progress 18:2, pages 80-95.
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F. Khodabakhshi & A. Simchi. (2017) The role of microstructural features on the electrical resistivity and mechanical properties of powder metallurgy Al-SiC-Al 2 O 3 nanocomposites. Materials & Design 130, pages 26-36.
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Khairul Amilin Ibrahim, Billy Wu & Nigel P. Brandon. (2016) Electrical conductivity and porosity in stainless steel 316L scaffolds for electrochemical devices fabricated using selective laser sintering. Materials & Design 106, pages 51-59.
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Behnam Lotfi, Zohreh Sadeghian & Paul Beiss. (2013) Estimation and optimization of shear strength for compacted iron powders by means of soft computing paradigms. Materials & Design 45, pages 590-596.
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Mazli Mustapha, Fauzi Ismail & Othman Mamat. (2011) Empirical Relationship between Relative Electrical Conductivity and Relative Density of the Al-Foam Fabricated through Pressure Assisted Sintering/Dissolution Process. IOP Conference Series: Materials Science and Engineering 17, pages 012014.
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M. V. Tsarev & V. V. Mokrushin. (2007) Effect of the granulometric properties of metallic scandium powder on its conductivity. Technical Physics 52:3, pages 369-375.
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S. Giménez, A. Vagnon, D. Bouvard & O. Van der Biest. (2006) Influence of the green density on the dewaxing behaviour of uniaxially pressed powder compacts. Materials Science and Engineering: A 430:1-2, pages 277-284.
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N. V. Novikov, A. L. Maystrenko, V. I. Kushch & S. A. Ivanov. (2006) Quality rating of a metal matrix-diamondcomposite from its thermal conductivity and electric resistance. Mechanics of Composite Materials 42:3, pages 253-262.
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M. V. Novikov, A. L. Maistrenko, V. I. Kushch & S. A. Ivanov. (2006) Evaluation of the quality of composite diamond-containing materials by their electrical and thermal conductivity. Materials Science 42:1, pages 113-120.
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O. Lame, S. Bordère, D. Denux & D. Bouvard. (2003) Following the progress of sintering in steel powder compacts through original experiments. Materials Science and Engineering: A 363:1-2, pages 126-133.
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Herbert Danninger & Christian Gierl. (2001) Processes in PM steel compacts during the initial stages of sintering. Materials Chemistry and Physics 67:1-3, pages 49-55.
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