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    • 1. 发明专利
    • Manufacture of battery
    • 电池制造
    • JPS6119066A
    • 1986-01-27
    • JP13840984
    • 1984-07-04
    • Matsushita Electric Ind Co Ltd
    • OKAZAKI RIYOUJIYANAGIHARA NOBUYUKIGAMOU KOUJITAKADA KANJIMIURA AKIRA
    • H01M6/06H01M4/38H01M4/62H01M6/50H01M10/52
    • H01M10/52H01M6/50
    • PURPOSE:To obtain a primary battery having high reliability, good performance, and low environmental problem by assembling a hydrogen absorption alloy which absorption and desorption of hydrogen were performed at least once before assembling in a battery. CONSTITUTION:A hydrogen absorption alloy is crushed in an atmosphere of argon in powder having a particle size of 10-100mum. About 1wt% fluorine resin having a particle size of 1mum or less is added to the hydrogen absorption alloy and stirred to give water repellent property to the alloy. The alloy powder is degassed under vacuum at about 200 deg.C, and hydrogen is absorbed into the alloy to nearly saturation at a pressure of 30atm. at room temperature, then hydrogen is completely removed by vacuum. The alloy which absorption and desorption of hydrogen were performed at least once is assembled in a battery. Thereby, a primary battery having high reliability, good performance, and low environmental problem is obtained.
    • 目的:通过组装氢吸收合金,在组装电池前至少进行一次氢的吸收和解吸,获得具有高可靠性,良好性能和低环境问题的一次电池。 构成:将氢吸收合金在氩气气氛中粉碎,粉末粒度为10-100μm。 将大约1重量%的粒径为1μm以下的氟树脂加入到吸氢合金中并搅拌以赋予合金防水性。 合金粉末在约200℃真空下脱气,氢气在30atm的压力下吸收到合金中几乎饱和。 在室温下,通过真空完全除去氢。 进行至少一次氢的吸收和解吸的合金被组装在电池中。 从而获得具有高可靠性,良好性能和低环境问题的一次电池。
    • 3. 发明专利
    • METHOD FOR RELEASING STORED HYDROGEN GAS
    • JPS6046901A
    • 1985-03-14
    • JP13819784
    • 1984-07-03
    • MATSUSHITA ELECTRIC IND CO LTD
    • YANAGIHARA NOBUYUKIGAMOU KOUJIMORIWAKI YOSHIOIWAKI TSUTOMU
    • F17C9/02C01B3/00F17C7/00F17C11/00
    • PURPOSE:To release stored hydrogen gas efficiently, with reduced heat quantity of the external heat source, by storing the heat generated in the occlusion of hydrogen in a hydrogen occlusion alloy temporarily in a heat storage vessel, and releasing the hydrogen by the combined use of the stored heat and the heat of the external assistant heat source. CONSTITUTION:The valve 8 connected to the hydrogen storage vessel 1 filled with granular hydrogen occlusion alloy 2 is closed, the valve 7 is opened to evacuate the hydrogen storage vessel 1, and hydrogen gas is introduced into the hydrogen storage vessel 1 through the filter 9 to effect the occlusion of the hydrogen gas in the hydrogen occlusion alloy 2. The heat of occlusion generated by this process is stored in the heat medium 15 in the heat storage vessel 11 by circulating the heat medium in the pipe 4 by the aid of the heat exchanger 10 in the hydrogen storage vessel 1 and the heat exchanger 12 in the heat storage vessel 11. The occluded hydrogen can be released by closing the valve 7, opening the valve 8, heating the heat medium 15 with electrical heater 17 connected to the electrical source 18, circulating the heat transferred from the external heat source and the heat stored in the heat medium by the pump 13, and using the heat for the heating of the hydrogen occlusion alloy 2.
    • 5. 发明专利
    • Hydrogen storing material
    • 氢储存材料
    • JPS58207353A
    • 1983-12-02
    • JP8902882
    • 1982-05-25
    • Matsushita Electric Ind Co Ltd
    • GAMOU KOUJIMORIWAKI YOSHIOYANAGIHARA NOBUYUKIIWAKI TSUTOMU
    • C22C22/00C01B3/00
    • Y02E60/327
    • PURPOSE: To obtain a hydrogen storing ternary material increasing the maximum amount of hydrogen to be occluded at room temp. and having enhanced stability and operational performance, by adding a small amount of Mg to a Ti-Mn alloy.
      CONSTITUTION: This hydrogen storing material consists of ≤8wt% Mg, 32W 48wt% Ti and the balance Mn. The ternary alloy material forms hardly an oxide layer or a nitride layer at ordinary temp. The alloy absorbs gaseous hydrogen rapidly, easily and almost independently of impurities in the hydrogen, and it releases high purity gaseous hydrogen. In stages for occluding and releasing gaseous hydrogen, the quantities of heat of formation of metallic hydride and heat of decomposition of it are small.
      COPYRIGHT: (C)1983,JPO&Japio
    • 目的:获得在室温下吸收最大氢气量的储氢三元材料。 并且通过向Ti-Mn合金中添加少量的Mg而具有增强的稳定性和操作性能。 构成:该储氢材料由<= 8wt%Mg,32-48wt%Ti和余量Mn组成。 三元合金材料在常温下几乎不形成氧化物层或氮化物层。 该合金快速,容易且几乎独立于氢中的杂质吸收气态氢,并释放出高纯度的气态氢。 在用于封闭和释放气态氢的阶段中,金属氢化物的形成热量和其分解热量很小。
    • 6. 发明专利
    • Method for handling hydrogen storing metallic material
    • 处理氢储存金属材料的方法
    • JPS58181701A
    • 1983-10-24
    • JP6372782
    • 1982-04-15
    • Matsushita Electric Ind Co Ltd
    • MORIWAKI YOSHIOGAMOU KOUJIYANAGIHARA NOBUYUKIIWAKI TSUTOMU
    • C01B3/00B01J20/02F17C11/00
    • C01B3/0005Y02C10/08Y02E60/321Y02E60/327Y02P30/30
    • PURPOSE: To handle an H
      2 storing metallic material contg. occluded H
      2 without deteriorating the performance by dehydrogenating the material in a vessel and bringing it into contact with CO
      2 or a gaseous mixture of CO
      2 with an inert gas to cover the surface of the metallic material with CO
      2 by adsorption.
      CONSTITUTION: A vessel 2 holding an H
      2 storing metallic material 1 contg. occluded H
      2 is evacuated by opening a valve 6 of the exhaust port 5 of the vessel 2 to dehydrogenate the material 1. A valve 9 of the inlet 8 for a gas for adsorption is then opened to introduce CO
      2 or a gaseous mixture of CO
      2 with an inert gas into the vessel 2 under ≥2kg/cm
      2 pressure, and by keeping the state for ≥30min, the surface of the material 1 is covered with CO
      2 by adsorption. The material 1 is taken out of the vessel 2, and it is transferred to other vessel and preserved.
      COPYRIGHT: (C)1983,JPO&Japio
    • 目的:处理H2储存金属材料 封闭的H2,而不会使容器中的材料脱氢而使性能下降,并使其与CO 2或CO 2与惰性气体的气体混合物接触,以通过吸附用CO 2覆盖金属材料的表面。 构成:容纳H2储存金属材料的容器2, 通过打开容器2的排气口5的阀6将吸入的H 2抽真空,使材料1脱氢。然后打开用于吸附气体的入口8的阀9,以将CO 2或CO 2的气体混合物与 惰性气体在≥2kg/ cm 2压力下进入容器2,通过保持> = 30min的状态,材料1的表面通过吸附被CO 2覆盖。 将材料1从容器2中取出,并将其转移到其他容器中并保存。