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    • 1. 发明专利
    • Compression-type shock absorber
    • 压缩式冲击吸收器
    • JP2009162365A
    • 2009-07-23
    • JP2008002979
    • 2008-01-10
    • Ryosuke Suzuki亮介 鈴木
    • SUZUKI RYOSUKE
    • F16F7/00B60R19/18E01D19/04F16F1/36F16F3/10F16F15/04
    • PROBLEM TO BE SOLVED: To provide a compression-type shock absorber having durability and capable of improving compression force absorbing performance by efficiently using elastic force of an elastic body. SOLUTION: The shock absorber is composed of flat-plate elastic rubber 10 having desired elasticity and allowing input of compression force F, a penetration hole 12 formed inside the flat-plate elastic rubber 10, a belt-like plate 20 arranged inside the penetration hole 12, and vulcanizing adhesive for integrating the belt-like plate 20 to the flat-plate elastic rubber 10. The belt-like plate 20 is arranged in the compression direction of the compression force F, which means, a direction crossing to a direction of thickness D. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种具有耐久性并且能够通过有效地利用弹性体的弹力来提高压缩力吸收性能的压缩型减震器。 解决方案:减震器由具有期望弹性的平板弹性橡胶10构成,并且能够输入压缩力F,形成在平板弹性橡胶10内部的穿透孔12,布置在平板弹性橡胶10内的带状板20 穿透孔12和用于将带状板20与平板弹性橡胶10一体化的硫化粘合剂。带状板20沿压缩力F的压缩方向布置,这意味着与 厚度方向D.版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • Reduction method for metal oxide and reduction device for metal oxide
    • 用于金属氧化物的还原方法和用于金属氧化物的还原装置
    • JP2005105374A
    • 2005-04-21
    • JP2003342034
    • 2003-09-30
    • Nippon Light Metal Co LtdRyosuke Suzuki日本軽金属株式会社亮輔 鈴木
    • SATO OKANORISUZUKI RYOSUKE
    • C25C3/00C25C7/02C25C7/04C25C7/06
    • PROBLEM TO BE SOLVED: To provide a reduction method for metal oxide capable of preventing contamination to metal obtained by reducing metal oxide as possible, also satisfactory in reduction efficiency, and further simply and inexpensively performable on an industrial scale, and to provide a reduction device therefor. SOLUTION: In the reduction method for metal oxide where metal oxide is reduced in an electrolytic bath composed of inorganic molten salt stored into a reaction tank, and anode reaction gas is released from the anode, a partition forming an anode reaction region is arranged around the anode, by which the movement of the anode reaction gas produced in the anode reaction region to the cathode side is prevented, and the movement of ions in the electrolytic bath between the anode side and the cathode side at the lower side in the anode reaction region is made possible. Further, a part or the whole of the partition is formed of an oxygen ion conductive substance, and through a part or the whole of the partition, the movement of oxygen ions in the electrolytic bath is made possible. Further, the reduction device for metal oxide uses the method. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供能够防止由还原金属氧化物得到的金属的污染的金属氧化物的还原方法,还可以令人满意的还原效率,并且在工业规模上进一步简单且廉价地进行,并且提供 一种还原装置。 解决方案:在由储存在反应槽中的由无机熔盐组成的电解槽中金属氧化物还原的金属氧化物的还原方法中,阳极反应气体从阳极释放,形成阳极反应区的分隔是 布置在阳极周围,防止在阳极反应区域中产生的阳极反应气体向阴极侧的移动,并且在阳极侧的阳极侧和阴极侧之间的电解槽中的离子在 阳极反应区域成为可能。 此外,隔板的一部分或全部由氧离子导电物质形成,通过隔板的一部分或整体,可以使电解槽中的氧离子的移动成为可能。 此外,金属氧化物还原装置使用该方法。 版权所有(C)2005,JPO&NCIPI
    • 5. 发明专利
    • Consumable carbon anode for metal titanium smelting
    • 用于金属钛金属的消耗碳阳极
    • JP2004143557A
    • 2004-05-20
    • JP2002311800
    • 2002-10-25
    • Nippon Light Metal Co LtdKatsutoshi OnoRyosuke Suzuki小野 勝敏日本軽金属株式会社鈴木 亮輔
    • UCHIDA HIROSHISATO OKANORIONO KATSUTOSHISUZUKI RYOSUKE
    • C01B31/02C25C3/28C25C7/02
    • PROBLEM TO BE SOLVED: To provide a consumable carbon anode for metal titanium smelting by which metal titanium can be mass-produced advantageously and industrially by the reduction of titanium oxide (TiO 2 ) to metal titanium (Ti) by an electrolytic process using inorganic molten salt as an electrolytic bath. SOLUTION: The consumable carbon anode for metal titanium smelting is used for metal titanium smelting where an electrolytic bath of inorganic molten salt is formed in a reaction vessel and titanium oxide is reduced using an electrolytic process. The carbon anode is formed of a primarily fired material of aggregate coke having a particle size distribution where 15 to 25wt.% of the particles are ≤0.074mm in particle size and 22 to 37wt.% of the particles are ≥3.0 mm in particle size. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种用于金属钛冶炼的可消耗碳阳极,通过其可以有利地和工业上通过将氧化钛(TiO 2 SB 2 2 SBR)还原成金属钛来大量生产金属钛 (Ti),通过使用无机熔融盐作为电解浴的电解方法。 解决方案:用于金属钛冶炼的可消耗碳阳极用于金属钛熔炼,其中在反应容器中形成无机熔盐的电解浴,并且使用电解方法还原氧化钛。 碳阳极由主要燃烧的具有粒度分布的聚集焦炭的材料形成,其中颗粒的15至25重量%的颗粒≤0.074mm,颗粒的22至37重量%的颗粒尺寸为≥3.0mm 。 版权所有(C)2004,JPO