Патент США № | 6203768 |
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Автор(ы) | McCormick и др. |
Дата выдачи | 20 марта 2001 г. |
A new, cost effective process for the production of ultrafine particles which is based on mechanically activated chemical reaction of a metal compound with a suitable reagent. The process involves subjecting a mixture of a metal compound and a suitable reagent to mechanical activation to increase the chemical reactivity of the reactants and/or reaction kinetics such that a chemical reaction can occur which produces a solid nano-phase substance. Concomitantly, a by-product phase is also formed. This by-product phase is removed so that the solid nano-phase substance is left behind in the form of ultrafine particles. During mechanical activation a composite structure is formed which consists of an intimate mixture of nano-sized grains of the nano-phase substance and the reaction by-product phase. The step of removing the by-product phase, following mechanical activation, may involve subjecting the composite structure to a suitable solvent which dissolves the by-product phase, while not reacting with the solid nano-phase substance. The process according to the invention may be used to form ultrafine metal powders as well as ultrafine ceramic powders. Advantages of the process include a significant degree of control over the size and size distribution of the ultrafine particles, and over the nature of interfaces created between the solid nano-phase substance and the reaction by-product phase.
Авторы: | Paul Gerard McCormick (Nedlands, AU), Jun Ding (Singapore, SG), Wie-Fang Miao (Pittsburgh, PA), Robert Street (Kalamunda, AU) |
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Заявитель: | Advanced Nano Technologies Pty Ltd (AU) |
ID семейства патентов | 25645014 |
Номер заявки: | 09/029,147 |
Дата регистрации: | 05 октября 1998 г. |
PCT Filed: | August 28, 1996 |
PCT No.: | PCT/AU96/00539 |
371 Date: | October 05, 1998 |
102(e) Date: | October 05, 1998 |
PCT Pub. No.: | WO97/07917 |
PCT Pub. Date: | March 06, 1997 |
Aug 28, 1995 [AU] | PN 5047 | |||
Jan 22, 1996 [AU] | PN 7725 | |||
Класс патентной классификации США: | 423/1; 423/263; 423/593.1; 423/607; 423/608; 423/610; 423/625; 423/632; 423/633; 75/352; 75/354; 977/810; 977/835; 977/888 |
Класс совместной патентной классификации: | B22F 9/005 (20130101); B22F 9/20 (20130101); B82Y 30/00 (20130101); C01F 7/02 (20130101); C01F 17/0043 (20130101); C01F 17/0087 (20130101); C01G 9/08 (20130101); C01G 25/02 (20130101); C01G 49/06 (20130101); C04B 35/626 (20130101); C22B 61/00 (20130101); B22F 9/04 (20130101); Y10S 977/835 (20130101); B22F 2009/041 (20130101); C01P 2002/72 (20130101); C01P 2004/04 (20130101); C01P 2004/50 (20130101); C01P 2004/64 (20130101); Y10S 977/888 (20130101); Y10S 977/81 (20130101) |
Класс международной патентной классификации (МПК): | B22F 9/02 (20060101); B22F 9/04 (20060101); B22F 9/20 (20060101); B22F 9/16 (20060101); B22F 9/00 (20060101); C04B 35/626 (20060101); C01F 17/00 (20060101); C01F 7/02 (20060101); C01G 49/06 (20060101); C01G 25/00 (20060101); C01F 7/00 (20060101); C01G 49/02 (20060101); C01G 9/08 (20060101); C01G 25/02 (20060101); C01G 9/00 (20060101); C22B 61/00 (20060101); B22F 009/04 () |
Область поиска: | ;423/263,625,632,633,607,608,610,592,1 ;75/352,354 |
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WO 90/07012 | Jun 1990 | WO | |||
WO 91/19584 | Dec 1991 | WO | |||
WO 92/14568 | Sep 1992 | WO | |||
WO 95/08004 | Mar 1995 | WO | |||
WO 96/10539 | Apr 1996 | WO | |||
WO 96/10653 | Apr 1996 | WO | |||
WO 96/14268 | May 1996 | WO | |||
WO 96/15279 | May 1996 | WO | |||
Schaffer G. B. et al.--"Reduction of metal oxides by mechanical alloying"--Applied Physics Letters, vol. 55, No. 1, Jul. 3, 1989, pp. 45-46. . Takacs L.--"Metal--Metal Oxide Systems For Nanocomposite Formation By Reaction Milling"--Nanostructured Materials, vol. 2, No. 3, Jan. 1, 1993, pp. 241-249. . Matteazzi P. et al--"Synthesis of Nanocrystalline Alumina--Metal Composites by Room--Temperature Ball-Milling of Metal Oxides and Aluminum"--Journal of the American Ceramic Society, vol. 75, No. 10, Oct. 1, 1992, pp. 2749-2755. . Pardavi-Horvath M. et al--"Magnetic Properties of Copper-Magnetite Nanocomposites Prepared by Ball Milling"--Journal of Applied Physics--vol. 73, No. 10 Pt IIB, May 15, 1993, pp. 6958-6960.. |