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Articles

Sintering of One-Component Model Systems: Nucleation and Movement of Dislocations in Necks

Pages 193-197 | Published online: 19 Jul 2013

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Johan Wendel, Swathi K. Manchili, Eduard Hryha & Lars Nyborg. (2020) Sintering behaviour of compacted water-atomised iron powder: effect of initial state and processing conditions. Powder Metallurgy 63:5, pages 338-348.
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S. Baselli, E. Torresani, M. Zago, S. Amirabdollahian, I. Cristofolini & A. Molinari. (2018) Sintering shrinkage of uniaxial cold compacted iron: influence of the microstructure on the anisothermal and isothermal shrinkage of uniaxial cold-compacted iron. Powder Metallurgy 61:4, pages 276-284.
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A. Molinari, E. Bisoffi, C. Menapace & J. Torralba. (2014) Shrinkage kinetics during early stage sintering of cold isostatically compacted iron powder. Powder Metallurgy 57:1, pages 61-69.
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A Molinari, C Menapace, E Torresani, I Cristofolini & M Larsson. (2013) Working hypothesis for origin of anisotropic sintering shrinkage caused by prior uniaxial cold compaction. Powder Metallurgy 56:3, pages 189-195.
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H. E. Exner. (1982) Role of interfaces in sintering. Metal Science 16:10, pages 451-456.
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Articles from other publishers (16)

Wolfgang Rheinheimer, Xin Li Phuah, Lukas Porz, Michael Scherer, Jaehun Cho & Haiyan Wang. (2023) The impact of flash sintering on densification and plasticity of strontium titanate: High heating rates, dislocation nucleation and plastic flow. Journal of the European Ceramic Society 43:8, pages 3524-3537.
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Alberto Molinari. 2022. Encyclopedia of Materials: Metals and Alloys. Encyclopedia of Materials: Metals and Alloys 471 480 .
Alberto Molinari, Elisa Torresani, Cinzia Menapace & Mats Larsson. (2015) The Anisotropy of Dimensional Change on Sintering of Iron. Journal of the American Ceramic Society 98:11, pages 3431-3437.
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Randall M. German. 2014. Sintering: from Empirical Observations to Scientific Principles. Sintering: from Empirical Observations to Scientific Principles 41 69 .
Randall M. German. (2001) Manipulation of Strength During Sintering as a Basis for Obtaining Rapid Densification without Distortion. MATERIALS TRANSACTIONS 42:7, pages 1400-1410.
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Yu. V. Milman. 1999. Advanced Science and Technology of Sintering. Advanced Science and Technology of Sintering 507 518 .
V. I. Trefilov, Yu. V. Mil'man & I. V. Gridneva. (1995) Role of plastic deformation in sintering covalent crystals (review). Powder Metallurgy and Metal Ceramics 33:7-8, pages 357-365.
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M Yu Tanakov, L I Trusov, M V Belyi & V E Bulgakov. (1993) Elastically stressed state in small particles under conditions of Hertzian contacts. Journal of Physics D: Applied Physics 26:6, pages 997-1001.
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F. V. Lenel. 1990. Sintering Key Papers. Sintering Key Papers 543 564 .
W. Schatt. 1985. Progress in Materials Analysis. Progress in Materials Analysis 205 227 .
E. Friedrich, Ju. I. Boiko & W. Schatt. (2006) Dislocation generation around cylindrical pores. Crystal Research and Technology 19:2, pages 219-226.
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Hans -J?rgen Ullrich, Andreas Herenz, Eckhart Friedrich, Werner Schatt & Christine D?ring. (1983) Bestimmung der Versetzungsdichte im SinterkontaktbereichDetermination of the dislocation density in the sinter contact region. Mikrochimica Acta 79:3-4, pages 175-191.
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W. Schatt, E. Friedrich & D. Joensson. (1983) Spannungsverteilung und versetzungsvervielfachung in der sinterkontaktregion. Acta Metallurgica 31:1, pages 121-128.
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W. Schatt, H.E. Exner, E. Friedrich & G. Petzow. (1982) Versetzungsaktivierte schwindungsvorg?nge beim einkomponenten-sintern. Acta Metallurgica 30:7, pages 1367-1375.
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F. V. Lenel & G. S. Ansell. (2013) The State of the Science and Art of Powder Metallurgy. JOM 34:2, pages 17-29.
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W. Schatt & E. Friedrich. (2006) Sintering as a result of defect structure. Crystal Research and Technology 17:9, pages 1061-1070.
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