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    • 5. 发明专利
    • Crystalline diplophase hydrogen-permeation alloy and hydrogen-permeation alloy
    • 晶体二氢化氢渗氢合金和氢气渗透合金
    • JP2007254786A
    • 2007-10-04
    • JP2006078104
    • 2006-03-22
    • Kitami Institute Of Technology国立大学法人北見工業大学
    • AOKI KIYOSHIMATSUDA TAKESHIISHIKAWA KAZUHIRO
    • C22C27/02B01D71/02
    • PROBLEM TO BE SOLVED: To provide a crystalline diplophase hydrogen-permeation alloy which has hydrogen permeability and hydrogen embrittlement resistance and is usable at ≥473 K.
      SOLUTION: The crystalline diplophase hydrogen permeation alloy of a diplophase Co-Ti-Nb system consists of the diplophase and the diplophase has a structure surrounding the TiNb phase that the eutectic (CoTi+TiNb) of a CoTi phase solutionizing Nb and a TiNb phase solutionizing Co generates as a primary crystal. The alloy has an alloy composition within the region surrounded by Co
      20 Ti
      30 Nb
      50 , Co
      20 Ti
      10 Nb
      70 , Co
      10 Ti
      10 Nb
      80 , and Co
      10 Ti
      30 Nb
      60 (where alloy compositions are all by atom%) and on the line connecting Co
      20 Ti
      30 Nb
      50 to Co
      20 Ti
      10 Nb
      70 (where alloy compositions are all by atom%) on a Co-Ti-Nb ternary state diagram.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供具有氢渗透性和耐氢脆性的结晶双晶硅氢透过合金,其可用于≥473K。解决方案:双晶硅Co-Ti的晶体双晶硅氢透氢合金 -Nb系由diplophase组成,并且diplophase具有围绕TiNb相的结构,CoTi相使Nb和TiNb相溶解Co的共晶(CoTi + TiNb)作为主晶体产生。 该合金在由Co 20 30 50 ,Co 20 Ti包围的区域内具有合金组成, SB> 10 70 ,Co 10 10 80 ,Co (其中合金组成全部为原子%)和在连接Co 20 Ti 30 Nb 50 与Co 20 10 70 (其中合金组成全部由 原子%)在Co-Ti-Nb三元状态图上。 版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • Compound phase hydrogen permeation alloy and hydrogen permeation alloy membrane
    • 化合物相氢气渗透合金和氢气渗透合金膜
    • JP2006265638A
    • 2006-10-05
    • JP2005085925
    • 2005-03-24
    • Kitami Institute Of Technology国立大学法人北見工業大学
    • AOKI KIYOSHIMATSUDA TAKESHIISHIKAWA KAZUHIRO
    • C22C27/02B01D71/02C01B3/00H01M8/06
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To provide a double phase hydrogen permeation alloy which has hydrogen permeability and hydrogen embrittlement resistance and is usable at ≥473 K. SOLUTION: The crystalline hydrogen permeation alloy of a compound phase Ni-Co-Ti-Nb system is characterized in that the alloy is composed of the compound phase; when M is defined as the alloy mixed with Ni and Co at arbitrary atomic%, the compound phase has an eutectic (MTi+TiNb) structure of an MTi phase solutionizing Nb and a TiNb phase solutionizing M, a structure in which the TiNb phase generated as a primary crystal is enclosed by the eutectic or the structure in which the MTi phase generated as the primary crystal is enclosed by the eutectic and the alloy has the composition consisting of M x Ti y Nb (100-x-y) (where, 20 COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供具有氢气渗透性和耐氢脆性的双相氢气渗透合金,其可用于≥473K。解决方案:化合物相Ni-Co- Ti-Nb体系的特点是合金由化合物相组成; 当M定义为以任意原子%与Ni和Co混合的合金时,化合物相具有使Nb和TiNb相溶液化的MTi相的M(TiNb相)析出的共晶(MTi + TiNb)结构,其中产生TiNb相的结构 由于主晶体由共晶体或其中作为主晶体产生的MTi相被共晶体包围的结构所包围,并且合金具有由以下组成组成的组成:X < / SB>(100-xy)(其中,20
    • 7. 发明专利
    • Hydrogen permeation module and method of application thereof
    • 氢气渗透模块及其应用方法
    • JP2009226331A
    • 2009-10-08
    • JP2008076119
    • 2008-03-24
    • Japan Steel Works Ltd:TheKitami Institute Of Technology国立大学法人北見工業大学株式会社日本製鋼所
    • SASAKI TAKESHIUENO TOMOHIROKABUTOMORI TOSHIKIAOKI KIYOSHIISHIKAWA KAZUHIRO
    • B01D53/22B01D63/08C01B3/56
    • B01D53/22B01D53/228B01D63/087B01D2256/16B01D2313/146C01B3/503C01B3/505
    • PROBLEM TO BE SOLVED: To prevent occurrence of winkles or cracks in a hydrogen permeation membrane in a hydrogen permeation module. SOLUTION: The hydrogen permeation module 10 allows hydrogen to permeate by always keeping a primary side pressure equal to or higher than a secondary side pressure, wherein only the outer periphery of the hydrogen permeation membrane 1 is restrained, and the inner part is not restrained and allowed to swell to the secondary side. A support having a support face along the shape of the hydrogen permeation membrane swelled toward the secondary side by absorbing hydrogen, may be disposed in the secondary side of the hydrogen permeation membrane. The volumetric expanded portion of the membrane caused by hydrogen absorption causes swelling toward the secondary side, to suppress occurrence of winkles to be start points of cracks. When a force loaded on the hydrogen permeation membrane greatly exceeds the force required for swelling the expanded portion when the hydrogen permeation membrane absorbs hydrogen to the secondary side, use of the support allows the swelling of the hydrogen permeation membrane toward the secondary side, causing no winkles and applying no load due to a pressure difference of both sides of the membrane, demonstrating preferable crack resistance. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了防止氢渗透模块中的氢渗透膜中的起皱或裂纹的发生。 解决方案:氢渗透模块10允许氢通过始终保持初级侧压力等于或高于次级侧压力而渗透,其中只有氢渗透膜1的外周被限制,并且内部是 不受限制,允许膨胀到次要身边。 具有沿着氢渗透膜的形状的支撑面的支撑体可以设置在氢渗透膜的次级侧,通过吸收氢向二次侧膨胀。 由氢吸收引起的膜的体积膨胀部分朝向次级侧膨胀,以抑制起皱作为起裂点的发生。 当氢透过膜上的力大大地超过氢透过膜将氢吸收到二次侧时膨胀膨胀部分所需的力,使用支撑体可以使氢渗透膜向二次侧膨胀,不产生 由于膜的两侧的压力差而使其无负载,表现出优选的抗裂性。 版权所有(C)2010,JPO&INPIT