Патент США № | 8257464 |
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Автор(ы) | Charbonnier и др. |
Дата выдачи | S04 eptember 2012 г. |
The present invention relates to pulverulent materials suitable for storing hydrogen, and more particularly to a method of preparing such a material, in which: (A) a composite metallic material having a specific granular structure is prepared by co-melting the following mixtures: a first metallic mixture (m1), which is an alloy (a1) of body-centered cubic crystal structure, based on titanium, vanadium, chromium and/or manganese, or a mixture of these metals in the proportions of the alloy (a1); and a second mixture (m2), which is an alloy (a2), comprising 38 to 42% zirconium, niobium, molybdenum, hafnium, tantalum and/or tungsten and 56 to 60 mol % of nickel and/or copper, or else a mixture of these metals in the proportions of the alloy (a2), with a mass ratio (m2)/(m1+m2) ranging from 0.1 wt % to 20 wt %; and (B) the composite metallic material thus obtained is hydrogenated, whereby the composite material is fragmented (hydrogen decrepitation).
Авторы: | Jean Charbonnier (Grenoble, FR), Patricia De Rango (Gieres, FR), Daniel Fruchart (Echirolles, FR), Salvatore Miraglia (Grenoble, FR), Sophie Rivoirard (Lans en Vercors, FR), Natalia Skryabina (Perm, RU) |
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Заявитель: | Centre National de la Recherche Scientifique (C.N.R.S.) (Paris, FR) |
ID семейства патентов | 37075720 |
Номер заявки: | 12/280,561 |
Дата регистрации: | 22 февраля 2007 г. |
PCT Filed: | February 22, 2007 |
PCT No.: | PCT/FR2007/000321 |
371(c)(1),(2),(4) Date: | August 27, 2008 |
PCT Pub. No.: | WO2007/096527 |
PCT Pub. Date: | August 30, 2007 |
Document Identifier | Publication Date | |
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US 20100150822 A1 | Jun 17, 2010 | |
Feb 23, 2006 [FR] | 06 01615 | |||
Класс патентной классификации США: | 75/352; 420/590; 420/591; 423/648.1; 75/255; 75/343; 75/351; 75/354 |
Класс совместной патентной классификации: | B22F 9/002 (20130101); C01B 3/0031 (20130101); C01B 6/24 (20130101); C22C 1/0491 (20130101); C22C 16/00 (20130101); C22C 27/02 (20130101); C22C 27/06 (20130101); B22F 9/023 (20130101); Y02E 60/364 (20130101); B22F 2998/10 (20130101); B22F 2999/00 (20130101); H01M 8/04216 (20130101); Y02E 60/327 (20130101); B22F 2998/10 (20130101); B22F 9/06 (20130101); B22F 9/002 (20130101); B22F 9/023 (20130101); B22F 2999/00 (20130101); B22F 9/06 (20130101); B22F 2201/11 (20130101); B22F 2202/07 (20130101) |
Класс международной патентной классификации (МПК): | B22F 1/00 (20060101); C22C 1/02 (20060101); C22C 1/00 (20060101); C01B 3/00 (20060101); B22F 9/16 (20060101); B22F 9/00 (20060101) |
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02/071517 | Sep 2002 | WO | |||
Hu et al, "Preparation and hydrogenation characteristics of Mg-30 wt.% Ti37.5V25Cr37.5 composite," 2004, Journal of Alloys and Compounds, vol. 375, pp. 265-269. cited by examiner . Zhu et al., "Electrochemical studies on the Ti-Zr-V-Mn-Cr-Ni hydrogen storage electrode alloys," Intl J. Hydr. Ener., vol. 28, pp. 311-316 (2003). cited by other . Lupu et al., "Hydrogen absorption and electrode properties of Zr.sub.1-xTi.sub.xV.sub.1.2Cr.sub.0.3Ni.sub.1.5 Laves phases," J. of Alloys & Comp., vol. 312, pp. 302-306 (2000). cited by other . Chai et al., "Structure and electrochemical characteristics of Ti.sub.0.25-xZr.sub.xV.sub.0.35Cr.sub.0.1Ni.sub.0.3(x-0.05-0.15) alloys," Intermetallics, vol. 13, pp. 1141-1145 (2005). cited by other. |