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Articles

Process analysis of binder treatment on iron-based alloy powder

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Pages 330-336 | Received 07 Feb 2017, Accepted 03 May 2017, Published online: 19 May 2017

References

  • Cui JM, Li SL, Liu SM, et al. Progress in R&D of non-segregation premixed steel powder. Powder Metall Ind. 2007;1:43–48.
  • Luk SH. Advances in binder-treatment technology statistical data on ancorbond plus, R. Hoeganaes Corporation.
  • St-Laurent S, Gélinas C, Thomas Y, et al. Using binder-treatment technology for high performance steel powder mixes. Powder Metall Ind. 2007;17(1):1–9.
  • Ozaki Y, Uenosono S, Ogura K. Iron-based powder composition for powder metallurgy having higher flowability and higher compactibility and process fir production thereof, P. US, US20010028859, 2001. Available from: http://www.google.com/patents/US20010028859
  • Kazuhisa F, Suzuki H. Binder for powder metallurgy, mixed powder for powder metallurgy and method for producing same, P. US, US7074254, 2006. Available from: http://www.google.com/patents/US7074254
  • Wang BF, Stlaurent S, Glinas C. Binder treatment technology for high performance steel powder mixes. Powder Metall Ind. 2009;19:1–5.
  • Ku N, Hare C, Murtagh M, et al. Auto-granulation of fine cohesive powder by mechanical vibration. Procedia Eng. 2015;102:72–80. doi: 10.1016/j.proeng.2015.01.108
  • Schmidt J, Sachs M, Blümel C, et al. A novel process chain for the production of spherical SLS polymer powders with good flowability. Procedia Eng. 2015;102:550–556. doi: 10.1016/j.proeng.2015.01.123
  • Chawla N, Murphy TF, Narasimhan KS, et al. Axial fatigue behavior of binder-treated versus diffusion alloyed powder metallurgy steels. Mater Sci Eng: A. 2001;308(1):180–188. doi: 10.1016/S0921-5093(00)01990-0
  • Iveson SM, Litster JD, Hapgood K. Nucleation, growth and breakage phenomena in agitated wet granulation processes: a review. Powder Technol. 2001;117(1–2):3–39. doi: 10.1016/S0032-5910(01)00313-8
  • Hayami T, Sakuma H, Miyashita T, et al. Properties of segregation-less mixed powder. Adv Powder Metall. 1990;1:197–224.
  • Sawayama T. Investigation of the optimization of powder properties in a FN-0208 binder treated powder. In: Danninger H, Ratzi R, editors. powder metallurgy world congress & exhibition. Austria: Trans Tech Publications Ltd; 2004. p. 207–211.
  • Guo R. Applications of the binder treated Mo-prealloyed premixes as alternatives to diffusion bonded powders. Powder Metall Technol. 2004;1:22–25.
  • Gelinnas C, St-Laurent S. Effect of mix formulation on the dimensional stability of sintered automotive components. Powder Metall Technol. 2003;3:163–168.
  • Mota-Aguilar DA, Velázquez C. Dynamics of the dry premixing stage of a hydrophobic formulation and potential implications on the wet granulation process. Powder Technol. 2015;286:318–324. doi: 10.1016/j.powtec.2015.07.048
  • Rumpf H. Particles adhesion, M. New York: American Institute of Mining, Metallurgical and Petroleum Engineers, 1977: 97–129.
  • Castier M, Delgado Cuellar O, Tavares FW. Monte Carlo simulation of particle segregation. Powder Technol. 1998;97(3):200–207. doi: 10.1016/S0032-5910(98)00009-6
  • Newitt DM, Conway-Jones JM. A contribution to the theory and practice of granulation. Trans I Chem Eng. 1958;36:422–441.
  • Princen HM. Comments on ‘The effect of capillary liquid on the force of adhesion between spherical particles’. Colloid Interface. 1968;26:247–253. doi: 10.1016/0021-9797(68)90323-8
  • Johnson KL, Kendall K, Roberts AD. Surface energy and the contact of elastic solids. Proc R Soc A: Math Phys Eng Sci. 1971;324:301–313.
  • Derjaguin BV, Muller VM, Toporov YP. Effect of contact deformations on the adhesion of particles. J Colloid Interface Sci. 1975;53(2):314–326. doi: 10.1016/0021-9797(75)90018-1
  • Ennis BJ, Tardos G, Pfeffer R. A microlevel-based characterization of granulation phenomena. Powder Technol. 1991;65(1-3):257–272. doi: 10.1016/0032-5910(91)80189-P
  • Oron A, Davis SH, Bankoff SG. Long-scale evolution of thin liquid films. Rev Mod Phys. 1997;69(3):931–980. doi: 10.1103/RevModPhys.69.931
  • Miller EE, Miller RD. Theory of capillary flow: I. practical implications1. Soil Sci Soc Am J. 1955;19(3):267–271. doi: 10.2136/sssaj1955.03615995001900030005x
  • Miller RD, Miller EE. Theory of capillary flow: II. Experimental information. Soil Sci Soc Am J. 1955;19(3):271–275. doi: 10.2136/sssaj1955.03615995001900030006x
  • Berthier J, Brakke KA, Berthier E. A general condition for spontaneous capillary flow in uniform cross-section microchannels. Microfluid Nanofluid. 2014;16(4):779–785. doi: 10.1007/s10404-013-1270-1
  • Buckingham E. Studies on the movement of soil moisture. M. U.S. Dep Agric Bur Soils Bull. 1907;38:1–61.
  • Galvin KP. A conceptually simple derivation of the Kelvin equation. Chem Eng Sci. 2005;60(16):4659–4660. doi: 10.1016/j.ces.2005.03.030
  • Fowler HW. The drying of porous granular solids. J Pharm Pharmacol. 1977;29:61P–61P. doi: 10.1111/j.2042-7158.1977.tb11529.x
  • Lisgarten ND, Sambles JR, Skinner LM. Vapour pressure over curved surfaces the Kelvin equation. Contemp Phys. 1971;12(6):575–593. doi: 10.1080/00107517108205661

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