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    • 2. 发明专利
    • Holding member for catalytic converter
    • 催化转换器控制器
    • JP2011208520A
    • 2011-10-20
    • JP2010075022
    • 2010-03-29
    • Nichias Corpニチアス株式会社
    • TOMOSUE SHINYAISOMURA KAZUTOSHIMAKABE HIROSHI
    • F01N3/28
    • PROBLEM TO BE SOLVED: To improve the mountability of a protective film on a catalyst carrier by providing ductility to the protective film in a holding member on which the protective film is formed.SOLUTION: This holding member is used for a catalytic converter including the catalyst carrier, a metal casing for storing the catalyst carrier, and the holding member which is wrapped around the catalyst carrier and interposed in the gap between the catalyst carrier and the metal casing. The protective film having projections or wrinkles is joined to the surface of an inorganic fiber base on the metal casing side.
    • 要解决的问题:通过在形成有保护膜的保持构件中的保护膜上提供延展性来提高保护膜在催化剂载体上的安装性。解决方案:该保持构件用于包含催化剂的催化转化器 载体,用于储存催化剂载体的金属壳体和缠绕在催化剂载体上并夹在催化剂载体和金属壳体之间的间隙中的保持构件。 具有突起或褶皱的保护膜与金属外壳侧的无机纤维基材的表面接合。
    • 6. 发明专利
    • Heat resistant structure, method of manufacturing the same and coating material
    • JP2004277251A
    • 2004-10-07
    • JP2003073687
    • 2003-03-18
    • Nichias Corpニチアス株式会社
    • TOMOSUE SHINYAIWATA KOJIYOSHIMOTO TOSHIHIRO
    • C04B41/85F27D1/00
    • PROBLEM TO BE SOLVED: To provide a heat resistant structure having heat resistant and heat insulation property in a degree to be continuously used at ≥1,000°C and excellent dusting preventing property, a method of manufacturing the same and a coating material used for the manufacture of the heat resistant structure. SOLUTION: The heat resistant structure is structured by forming a crystallized glass coating film layer on the surface of a heat resistant base material having ≤0.5 W/m×K heat conductivity at 1,000°C. The manufacturing method of the heat resistant structure is performed by coating or impregnating at least the surface of the heat resistant base material with the coating material containing crystallized glass powder and a binder and drying. The method of manufacturing the heat resistant structure is performed by coating or impregnating at least the surface of the heat resistant base material with the coating material containing crystallized glass powder and a binder and firing at 800-1,300°C. The method of the manufacturing the heat resistant base material is performed by coating and impregnating at least the surface of the heat resistant base material with a coating material containing glass producing raw material powder having a metal oxide composition ratio in which a crystallized glass is produced and firing at 1,350-1,500°C. COPYRIGHT: (C)2005,JPO&NCIPI
    • 7. 发明专利
    • 気体処理装置用保持材
    • 气体处理装置保持材料
    • JP2014208990A
    • 2014-11-06
    • JP2013255067
    • 2013-12-10
    • ニチアス株式会社Nichias Corp
    • NAKAMURA HIROKITOMOSUE SHINYASAKANE TADASHI
    • F01N3/28B01D53/86D01F9/08D04H1/4209D04H1/64
    • F01N3/2853F01N3/0211F01N13/16F01N2310/00F01N2350/00F01N2350/02F01N2350/04Y02T10/20
    • 【課題】保持力が効果的に維持される気体処理装置用保持材、気体処理装置及びその製造方法を提供する。【解決手段】処理構造体と、前記処理構造体を収容するケーシングとを備えた気体処理装置において、前記処理構造体と前記ケーシングとの間に配置される無機繊維からなる保持材であって、前記保持材を、その嵩密度が所定の圧縮時嵩密度になるまで圧縮して10秒維持し、その後、前記保持材を、その嵩密度が前記圧縮時嵩密度より12%小さい開放時嵩密度になるまで開放するサイクルを繰り返す試験において、前記サイクルを2500回繰り返した時点の前記保持材の開放時面圧と前記圧縮時嵩密度とが、次の関係を満たすことを特徴とする気体処理装置用保持材。P≧17.10?D−1.62(Pは前記開放時面圧(N/cm2)を表し、Dは前記圧縮時嵩密度(g/cm3)を表す。)【選択図】図3
    • 要解决的问题:提供一种有效保持其保持力的气体处理装置保持材料,气体处理装置及其制造方法。在具有处理结构的气体处理装置和容纳处理结构的壳体中,a 保持材料由布置在处理结构和壳体之间的无机纤维构成。 在重复保持材料被压缩并保持十秒钟直到保持材料的堆积密度达到压缩时体积密度的循环的测试中,然后将保持材料释放直到保持的堆积密度 材料的释放时体积密度比压缩时体积密度低12%,在循环重复2500次的时间点,保持材料的释放时表面压力和压缩时体积密度满足以下关系 :P≥17.10×D-1.62,其中P表示释放时间表面压力(N / cm),D表示压缩时体积密度(g / cm)。
    • 8. 发明专利
    • Inorganic fibrous molded article and method for producing the same
    • 无机纤维制品及其生产方法
    • JP2007197870A
    • 2007-08-09
    • JP2006018472
    • 2006-01-27
    • Nichias Corpニチアス株式会社
    • TOMOSUE SHINYAONOE TAKASHIISHIHARA TETSUYAYOSHIMOTO TOSHIHIRO
    • D01F9/08C04B38/00D06M11/72D06M101/00
    • PROBLEM TO BE SOLVED: To provide an inorganic fibrous molded article of a molded article of a bio-dissolvable fiber hardly causing deterioration at preservation; to provide a method for producing the molded article; and to provide a method for producing the inorganic fibrous molded article hardly causing the deterioration of the bio-dissolvable fiber at the production.
      SOLUTION: The inorganic fibrous molded article contains an inorganic fiber (a) having a covering layer formed thereon, and a binder, and the inorganic fiber (a) having the covering layer formed thereon has ≥1% solubility in physiological salt solution at 40°C. The method for producing the inorganic fibrous molded article comprises a slurry-producing step for mixing a covering layer-forming agent with a solvent, and further mixing an inorganic fiber (b) having ≥1% solubility in physiological salt solution at 40°C and the binder therewith to provide a slurry containing the inorganic fiber (a) having the covering layer formed thereon, and a dehydrating and molding step for sucking and filtering the water in the slurry to provide the inorganic fibrous molded article.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 待解决的问题:提供生物可溶解纤维的模制品的无机纤维成型体,其几乎不会导致保存时的劣化; 以提供制造模制品的方法; 并且提供一种在生产时几乎不引起生物可溶性纤维劣化的无机纤维成型体的制造方法。 解决方案:无机纤维成型体包含其上形成有覆盖层的无机纤维(a)和粘合剂,并且其上形成有覆盖层的无机纤维(a)在生理盐溶液中具有≥1%的溶解度 在40℃。 无机纤维成形体的制造方法包括:将覆盖层形成剂与溶剂混合的浆料生成工序,进一步混合在生理盐溶液中在40℃下溶解度≥1%的无机纤维(b)和 粘合剂,以提供含有其上形成有覆盖层的无机纤维(a)的浆料,以及用于吸取和过滤浆料中的水以提供无机纤维成型体的脱水和模塑步骤。 版权所有(C)2007,JPO&INPIT