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    • 71. 发明专利
    • Manufacturing method of composite porous body
    • 复合多孔体的制​​造方法
    • JP2006051625A
    • 2006-02-23
    • JP2004233093
    • 2004-08-10
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • YAMAMOTO KUNIOTAKEISHI ATSUSHIKATO YOSHIJIROWADA MASAHIROKANDA EIKO
    • B29C65/20B29L31/14
    • PROBLEM TO BE SOLVED: To manufacture a composite porous body enhanced in the handleability of a porous body with high precision and high efficiency without sacrificing the effective area of the porous body.
      SOLUTION: In the manufacturing method of the composite porous body wherein the sheetlike porous body 22 having a three-dimensional reticulated structure and a resin part provided so as to surround the outer peripheral edge of the porous body 22 are integrally formed, the porous body 22 and a resin member 21 are continuously passed through a closely bonding process which is constituted so as not only to pressurize at least the inner peripheral edge 21b, which comes into contact with the hole 21a, of the resin member 21 in its thickness direction excepting at least a part or the whole of the outer peripheral edge 21c thereof but also to heat the resin member 21 to a temperature not lower than the load bending temperature of the resin member 21 but not higher than the melting point thereof to closely bond the porous body 22 and the resin member 21 while crushing the resin member 21 in a state that the hole 21a formed to the resin member 21 is filled with the sheetlike porous body 22 and a cooling process for cooling the porous body 22 and the resin member 21 while pressing them in the thickness direction thereof in this order by a force not larger than the elasticity limit of the resin member 21.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 待解决的问题:制造复合多孔体,其高精度和高效率地提高多孔体的操作性,而不会牺牲多孔体的有效面积。 解决方案:在复合多孔体的制​​造方法中,其中具有三维网状结构的片状多孔体22和围绕多孔体22的外周缘设置的树脂部一体形成, 多孔体22和树脂构件21连续通过紧密结合工艺,该紧密结合工艺不仅至少使至少与树脂构件21的孔21a接触的内周边缘21b以其厚度 除了至少一部分或全部外周边缘21c之外,还将树脂构件21加热到不低于树脂构件21的负载弯曲温度但不高于其熔点的温度以紧密地键合 多孔体22和树脂构件21在树脂构件21形成的孔21a被填充有片状多孔体22的状态下破碎树脂构件21的同时, 在冷却多孔体22和树脂构件21的同时,通过不大于树脂构件21的弹性极限的力,在其厚度方向上按顺序冷却多孔体22和冷却方法。(C)2006, JPO&NCIPI
    • 79. 发明专利
    • Porous metal catalyst
    • 多孔金属催化剂
    • JP2005007298A
    • 2005-01-13
    • JP2003174747
    • 2003-06-19
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • KANDA EIKOISOBE TAKESHIWADA MASAHIROKATO MASAAKI
    • C01B3/40B01J23/755B01J35/04B01J37/02H01M8/06
    • Y02P20/52
    • PROBLEM TO BE SOLVED: To produce a porous metal catalyst to be used in a reformer for reforming a hydrocarbon gas such as natural gas, methanol, coal gas into a hydrogen-enriched, carbon-monoxide-enriched gas by a steam reforming method, particularly, a porous metal catalyst to be used for a reformer for a fuel cell. SOLUTION: This porous metal catalyst is made by forming a catalyst layer 21 comprising a porous ceramic layer carrying a catalyst powder 3 on the surface of a porous metal catalyst carrier 1 having a three-dimensional reticular structure. The catalyst layer 21 fixes and carries the catalyst powder 3 on the outermost surface of the porous ceramic layer and the internal surface of a ceramic pore 5. Further, a composite ceramic powder 9 formed by coating the ceramic powder 4 with the catalyst powder 3 is fixed and carried on the surface of the skeleton of the porous metal carrier 1 having the three dimensional reticular structure. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了制备用于重整器中的多孔金属催化剂,用于通过蒸汽重整将诸如天然气,甲醇,煤气的烃气体重整成富氢,一氧化碳的气体 方法,特别是用于燃料电池重整器的多孔金属催化剂。 解决方案:该多孔金属催化剂通过在具有三维网状结构的多孔金属催化剂载体1的表面上形成包含载有催化剂粉末3的多孔陶瓷层的催化剂层21制成。 催化剂层21将催化剂粉末3固定并承载在多孔陶瓷层的最外表面和陶瓷孔5的内表面上。此外,通过用催化剂粉末3涂覆陶瓷粉末4而形成的复合陶瓷粉末9是 固定并承载在具有三维网状结构的多孔金属载体1的骨架表面上。 版权所有(C)2005,JPO&NCIPI