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    • 2. 发明专利
    • Method for producing heat-insulating material
    • 生产绝热材料的方法
    • JP2012140310A
    • 2012-07-26
    • JP2011000837
    • 2011-01-05
    • Ibiden Co Ltdイビデン株式会社
    • OSHIKA KOSHIOKUMURA KENZO
    • C04B28/24C04B14/10C04B14/30C04B14/38C04B14/46C04B22/06C04B24/10C04B38/00D21H13/38D21H17/29
    • PROBLEM TO BE SOLVED: To provide a heat-insulating material that is sufficient in terms of density and strength and retains sufficient strength, even when used at elevated temperature.SOLUTION: This method for producing the heat-insulating material comprises: introducing a cationic polymer and an inorganic fiber into water, thereby preparing slurry where the inorganic fiber and the cationic polymer are dispersed in water; adding a water-soluble inorganic binder to the slurry; adding a cationic flocculant to the slurry to which the water-soluble inorganic binder is added; further adding an anionic flocculant, thereby preparing an aggregate; and introducing the obtained aggregate into a mold and dehydrating and molding the same.
    • 要解决的问题:提供在密度和强度方面足够的保温材料并保持足够的强度,即使在高温下使用也是如此。 解决方案:制造隔热材料的方法包括:将阳离子聚合物和无机纤维​​引入水中,从而制备无机纤维和阳离子聚合物分散在水中的浆料; 向浆料中加入水溶性无机粘合剂; 向添加了水溶性无机粘合剂的浆料中加入阳离子絮凝剂; 进一步添加阴离子絮凝剂,从而制备骨料; 并将所得到的骨料引入模具中并对其进行脱水和模塑。 版权所有(C)2012,JPO&INPIT
    • 5. 发明专利
    • Fiber sheet and method for producing the same
    • 纤维片及其制造方法
    • JP2007204896A
    • 2007-08-16
    • JP2006027927
    • 2006-02-06
    • Tomoegawa Paper Co Ltd株式会社巴川製紙所
    • TATSUHASHI FUMIKAZUMORINAGA EITOKUKUBOTA NOBUHIROTSUCHIDA MINORU
    • D21H13/38D04H1/551
    • PROBLEM TO BE SOLVED: To provide a fiber sheet having flexibility and pliability and being inexpensively used while keeping high degree of heat resistance and flame resistance and without damaging incineration equipment in waste treatment.
      SOLUTION: The fiber sheet is prepared by interlacing a basalt fiber by wet papermaking method and fibers are bonded by heat fusion. The production method comprises a process for preparing a water-based slurry by dispersing fiber materials comprising the basalt fiber and a bonding agent as main components, a process for preparing a primary fiber by papermaking the water-based slurry by wet papermaking method and a process for adhering between the basalt fibers through heat fusion by heat treating the primary fiber sheet.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供具有柔软性和柔韧性并且廉价使用的纤维片材,同时保持高耐热性和阻燃性,并且不会在废物处理中损坏焚烧设备。 解决方案:通过湿法造纸法将玄武岩纤维交织并通过热熔粘合纤维来制备纤维片。 该制造方法包括通过将包含玄武岩纤维和粘合剂的纤维材料分散在主要成分中来制备水性浆料的方法,通过湿法造纸法造纸水性浆料制备初级纤维的方法和方法 用于通过热处理一次纤维片材通过热熔融来粘附玄武岩纤维。 版权所有(C)2007,JPO&INPIT
    • 6. 发明专利
    • Nonflammable compressed fiber panel and method for producing the same
    • 不可熔化的压缩纤维板及其制造方法
    • JP2006083507A
    • 2006-03-30
    • JP2004276706
    • 2004-09-24
    • Grandex Co Ltdグランデックス株式会社
    • TSUCHIYA KOJIHAYASHI KOZOYAMADA TERUHIKO
    • D21J3/10D21H13/38E04B1/94E04C2/36
    • PROBLEM TO BE SOLVED: To satisfy needs for nonflammability in using a nonflammable compressed fiber panel as building materials with making use of characteristics of conventional structural fiber panels such as light weight and high strength in the nonflammable compressed fiber panel.
      SOLUTION: The noncombustible compressed fiber panel 1 has a structure in which an open cell lattice 2 constituted of two or more libs 2a, a continuous flat plate 3 covering the one open port of the lattice 2 and a flange 4 covering a part of the other open port are integrally formed with a compacted compressed fiber material and the shape of the open cell lattice 2 is almost hexagonal column. About 90 wt.% of the compressed fiber material constituting the nonflammable compressed fiber panel 1 comprises a nonflammable inorganic material. Therefore, the nonflammable compressed fiber panel 1 has nonflammability in addition to characteristics of the compressed fiber panel such as light weight and high strengths and is widely applied to building materials such as inside walls/partitions of buildings to which conventional flammable compressed fiber panels comprising 100% recovered pulp have not been applied.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了满足使用不可燃压缩纤维板作为建筑材料的不燃性的需要,可以利用在不可燃压缩纤维板中的轻质量和高强度的常规结构纤维板的特性。 解决方案:不可燃性压缩纤维面板1具有这样的结构,其中开口单元格2由两个或更多个库2a构成,连续的平板3覆盖格子2的一个开口,凸缘4覆盖一部分 另一个开放端口与压实的压缩纤维材料整体形成,开孔格子2的形状几乎是六边形柱。 构成不燃性压缩纤维板1的约90重量%的压缩纤维材料包括不可燃的无机材料。 因此,不易燃压缩纤维面板1除了压缩纤维面板的特性以外还具有不可燃性,例如重量轻和强度高,并且广泛地应用于诸如建筑物的内壁/隔板等建筑材料,其中常规易燃压缩纤维板包括100 回收纸浆的回收率尚未得到应用。 版权所有(C)2006,JPO&NCIPI