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Original Articles

Study of high temperature wetting and infiltration for optimising liquid phase sintering in low alloy steels

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Pages 180-190 | Received 17 Feb 2011, Accepted 16 Apr 2011, Published online: 12 Nov 2013

References

  • Fischmeister H. F. and Larsson L. E.: ‘Fast diffusion alloying for powder forging using a liquid-phase’, Powder Metall., 1974, 17, (33), 227–240.
  • James B. A.: ‘Liquid-phase sintering in ferrous powder-metallurgy’, Powder Metall., 1985, 28, (3), 121–130.
  • Khraisat W. and Nyborg L.: ‘Liquid phase sintering of ferrous powder by carbon and phosphorus control’, Powder Metall., 2003, 46, (3), 265–270.
  • Mocarski S., Hall D. W., Chernenkoff R. A., Yeager D. A. and McHugh C. O.: ‘Master alloys to obtain premixed hardenable powder metallurgy steels’, Powder Metall., 1996, 39, (2), 130–137.
  • Sarasola M., Gomez-Acebo T. and Castro F.: ‘Microstructural development during liquid phase sintering of Fe and Fe–Mo alloys containing elemental boron additions’, Powder Metall., 2005, 48, (1), 59–67.
  • Xiu Z., Salwen A., Qin X., He F. and Sun X.: ‘Sintering behaviour of iron–molybdenum steels with the addition of Fe–B–C master alloy powders’, Powder Metall., 2003, 46, (2), 171–174.
  • German R., Suri P. and Park S.: ‘Review: liquid phase sintering’, J. Mater. Sci., 2009, 44, (1), 1–39.
  • German R., Buschow K. H. J., Robert W. C., Merton C. F., Bernard I., Edward J. K., Subhash M. and Patrick V.: ‘Liquid phase sintering: metals’, in ‘Encyclopedia of materials: science and technology’, (ed. Jürgen Buschow K. H. et al.), 4601–4603; 2001, Oxford, Elsevier.
  • Eustathopoulus N., Nicolas M. G. and Drevet B.: ‘Chapter 3 methods of measuring wettability parameters’, Pergamon Mater. Ser., 1999, 3, 106–147.
  • Dezellus O. and Eustathopoulos N.: ‘Fundamental issues of reactive wetting by liquid metals’, J. Mater. Sci., 2010, 45, (16), 4256–4264.
  • Saiz E., Benhassine M., de Coninck J. and Tomsia A. P.: ‘Early stages of dissolutive spreading’, Scr. Mater., 2010, 62, (12), 934–938.
  • Saiz E. and Tomsia A. P.: ‘Atomic dynamics and Marangoni films during liquid-metal spreading’, Nat. Mater., 2004, 3, (12), 903–909.
  • Saiz E. and Tomsia A. P.: ‘Kinetics of high-temperature spreading’, Curr. Opin. Solid State Mater. Sci., 2005, 9, (4–5), 167–173.
  • Saiz E., Tomsia A. P. and Cannon R. M.: ‘Ridging effects on wetting and spreading of liquids on solids’, Acta Mater., 1998, 46, (7), 2349–2361.
  • Wheeler D., Warren J. A. and Boettinger W. J.: ‘Modeling the early stages of reactive wetting’, Phys. Rev. E, 2010, 82E, (5), 051601.
  • Yin L., Murray B. T., Su S., Sun Y., Efraim Y., Taitelbaum H. and Singler T. J.: ‘Reactive wetting in metal–metal systems’, J. Phys.: Condes. Matter, 2009, 21, (46), 11.
  • Petzow G. and Huppmann W. J.: ‘Liquid phase sintering – densification and microstructural development’, Z. Metallkde., 1976, 67, 579–590.
  • Warren J. A., Boettinger W. J. and Roosen A. R.: ‘Modeling reactive wetting’, Acta Mater., 1998, 46, (9), 3247–3264.
  • Yost F. G., Sackinger P. A. and O’Toole E. J.: ‘Energetics and kinetics of dissolutive wetting processes’, Acta Mater., 1998, 46, (7), 2329–2336.
  • Yin L., Murray B. T. and Singler T. J.: ‘Dissolutive wetting in the Bi–Sn system’, Acta Mater., 2006, 54, (13), 3561–3574.
  • Kozlova O., Voytovych R., Protsenko P. and Eustathopoulos N.: ‘Non-reactive versus dissolutive wetting of Ag–Cu alloys on Cu substrates’, J. Mater. Sci., 2010, 45, (8), 2099–2105.
  • Protsenko P., Kozova O., Voytovych R. and Eustathopoulos N.: ‘Dissolutive wetting of Si by molten Cu’, J. Mater. Sci., 2008, 43, (16), 5669–5671.
  • Yin L., Meschter S. J. and Singler T. J.: ‘Wetting in the Au–Sn system’, Acta Mater., 2004, 52, (10), 2873–2888.
  • Lesnik N., Pestun T. and Eremenko V.: Poroshkovaya Metall., 1971, 94, (83), 849–853.
  • Naidich Y., Zabuga V. and Perevertailo V.: Adgeziya Rasplavov I Paika Materialov, 1992, 27, 23.
  • Saiz E., Hwang C. W., Suganuma K. and Tomsia A. P.: ‘Spreading of Sn–Ag solders on FeNi alloys’, Acta Mater., 2003, 51, (11), 3185–3197.
  • Ambrose J. C., Nicholas M. G. and Stoneham A. M.: ‘Dynamics of liquid-drop spreading in metal–metal systems’, Acta Metall. Mater., 1993, 41, (8), 2395–2401.
  • Protsenko P., Garandet J. P., Voytovych R. and Eustathopoulos N.: ‘Thermodynamics and kinetics of dissolutive wetting of Si by liquid Cu’, Acta Mater., 2010, 58, (20), 6565–6574.
  • Marangoni C. G. M.: Ann. Phys. (Poggendorff), 1871, 143, 337.
  • Naidich Y. V. and Zabuga V. V.: ‘Concentration-capillary convection (Marangoni effect) in liquid-metals’, Russ. Metall., 1992, (4), 36–42.
  • Dlapka M., Danninger H., Gierl C. and Lindqvist B.: ‘Defining the pores in PM components’, Met. Powder Rep., 2010, 65, (2), 30–33.
  • ‘Technical Corrigendum 1. Geometrical product specifications (GPS). Surface texture: Profile method. Terms, definitions and surface texture parameters’, ISO 4287:1997, ISO, Geneva, Switzerland, 1997.
  • Semlak K. A. and Rhines F. N.: ‘The rate of infiltration of metals’, Trans. AIME, 1958, 212, 325–331.
  • Rangaswamy S. and Fortuna D.: ‘Ironbased braze filler metal for high-temperature applications’, United States Patent 7392930.
  • Sokolowski P. K., Murphy T. F. and Lindsley B. A.: ‘Considerations in sinter-brazing PM components:’ 2010 Powder Metal World Congress & Exhibition, Hollywood, Florida27-30June 2010, 2010, Metal Powder Industries Federation (MPIF), Edited in CD, ISBN: 978-970-9819496-9819494-9819492.

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