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    • 1. 发明专利
    • JPH05296398A
    • 1993-11-09
    • JP9825192
    • 1992-04-17
    • JAPAN METALS & CHEM CO LTD
    • ISHIDA SAKUTAROUSUMIKAKE SHIGERUKUDO KENICHI
    • B60K15/03F17C11/00
    • PURPOSE:To suppress troubles and accidents by manufacturing a vessel in an integrated from equipped with a plurality of accommodation chambers for accommodating the hydrogen storage alloy and a plurality of thermal medium passages penetrating through the accommodation chambers, forming a hydrogen gas communication passage in a each contiguous accommodation chamber, and installing thermal medium feeding/ discharging jacket. CONSTITUTION:When hydrogen gas is taken out from the hydrogen storage alloy in accommodation chambers 4-1-4-n, the thermal medium such as the engine exhaust gas of an automobile and cooling water which is warmed by an engine is introduced into a thermal medium feeding jacket 2 from a thermal medium feeding port 8. The thermal medium passes through a thermal medium flow passage 5 and reaches a thermal. medium discharge jacket 3, and at this time, the hydrogen storage alloy is warmed and liberates hydrogen, and the hydrogen gas passes through a hydrogen gas passage 6, and is collected at a hydrogen gas taking-out port 7, and supplied as combustion gas into the engine. A vessel body 1 can be manufactured as casted article through the die casting method or an Al and Al allow member through the extrusion work, and the reduction of weight can be achieved, and the trouble due to the breakage at a joint place and the danger due to accident can be prevented.
    • 2. 发明专利
    • HYDROGEN STORAGE CONTAINER
    • JPH06159597A
    • 1994-06-07
    • JP31850092
    • 1992-11-27
    • JAPAN METALS & CHEM CO LTD
    • ISHIDA SAKUTAROUSUMIKAKE SHIGERUKUDO KENICHI
    • B60K15/10F17C11/00
    • PURPOSE:To facilitate manufacturing and by forming a vessel out of aluminum and the like into an integrated body so that a plurality of cylindrical storage chambers for storing hydrogen storage alloy, of different sizes and cross sections, which are placed in parallel to one another may be provided to improve reliability, and by reducing connection parts where damage easily occurs. CONSTITUTION:A vessel 1 having a plurality of cylindrical storage chambers 4 (4-1-4-6) of different sizes and cross sections, which are placed in parallel to one another, is formed out of aluminum and the like, as an integrated body, and a hydrogen storage alloy is stored in each storage chamber 4. One storage chamber 4 is communicated with the other chamber that is in close proximity by a communication route 6. A heating medium feeding port 8 is formed on a heating medium feeding jacket 2 which is provided on one end of the vessel 1, while a heating medium discharging port 9 is formed on a heating medium discharging jacket 3 which is provided on the other end. A heating medium of high or low temperature is fed to the heating medium feeding jacket 2, is passed through each channel 5, and is then discharged from the discharging jacket 3. The hydrogen storage alloy is heated or cooled in this way, while hydrogen is discharged from or filled in a hydrogen gas pickup port 7.
    • 10. 发明专利
    • CONTAINER FOR HYDROGEN-OCCLUSION ALLOY
    • JPS6335401A
    • 1988-02-16
    • JP17689686
    • 1986-07-28
    • JAPAN METALS & CHEM CO LTD
    • SUMIKAKE SHIGERUMATSUBARA YUTAKAOKU KOICHI
    • C01B3/00F17C11/00
    • PURPOSE:To prevent the deformation of a container containing hydrogen- occlusion alloy in a number of cells of a honeycomb structure included in a cylinder, by placing a space in a part of the cell and supporting the cylinder with plural partition plates. CONSTITUTION:A plurality of partition plates 2 parallel to the cross-section of a container are placed in a cylindrical container 1. A honeycomb structure 5 is inserted between adjacent partition plates 2 in a manner that the axes of a number of cells in the structure become parallel to the axis of the container 1. A nozzle 6 for hydrogen is attached to one side face of the container 1. A hydrogen-occlusion alloy is filled in the cells of the honeycomb structure 5 leaving a space at a part of the cells, hydrogen gas is supplied through the hydrogen nozzle 6 into the container and the container 1 is cooled from outside to effect the occlusion of hydrogen in the hydrogen-occlusion alloy. The expansion of the hydrogen-occlusion alloy caused by the repeated occlusion and release by hydrogen can be absorbed by the space left at a part of the cell and the deformation of the container 1 is prevented by the reinforcing effect of the partition plates 2.