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    • 2. 发明专利
    • 腳踏墊的製造方法
    • 脚踏垫的制造方法
    • TW201709853A
    • 2017-03-16
    • TW104129466
    • 2015-09-07
    • 日本怡飾麗新股份有限公司JAPAN INSULATION CO., LTD.
    • 成瀬吉昭NARUSE, YOSHIAKI高橋芳明TAKAHASHI, YOSHIAKI藤田樹里FUJITA, JURI
    • A47G27/02
    • 本發明係提供一種吸水速度迅速、即使連續使用其吸水速度亦不會降低,且乾燥速度亦快之腳踏墊的製造方法。 本發明之腳踏墊的製造方法,其特徵為其係藉由無機質成形板構成之腳踏墊的製造方法,且至少具有步驟1及步驟2;步驟1係藉由一邊攪拌含有石灰質原料、矽酸質原料及水之原料漿而進行的水熱反應,得到含有矽酸鈣二次粒子的水性漿,及步驟2係藉由前述步驟1所得到水性漿脫水成形,得到前述無機質成形板。以上述製造方法所得到之腳踏墊,其係含有由矽酸鈣結晶的二次粒子及/或此二次粒子之壓縮變形物所形成之無機質成形板,前述無機質成形板之容積密度為0.2~0.7g/cm3。
    • 本发明系提供一种吸水速度迅速、即使连续使用其吸水速度亦不会降低,且干燥速度亦快之脚踏垫的制造方法。 本发明之脚踏垫的制造方法,其特征为其系借由无机质成形板构成之脚踏垫的制造方法,且至少具有步骤1及步骤2;步骤1系借由一边搅拌含有石灰质原料、硅酸质原料及水之原料浆而进行的水热反应,得到含有硅酸钙二次粒子的水性浆,及步骤2系借由前述步骤1所得到水性浆脱水成形,得到前述无机质成形板。以上述制造方法所得到之脚踏垫,其系含有由硅酸钙结晶的二次粒子及/或此二次粒子之压缩变形物所形成之无机质成形板,前述无机质成形板之容积密度为0.2~0.7g/cm3。
    • 6. 发明专利
    • Fire-resistive covering structure for base-isolating device
    • 基层隔离装置的耐火覆盖结构
    • JP2011032697A
    • 2011-02-17
    • JP2009178818
    • 2009-07-31
    • Japan Insulation Co Ltd日本インシュレーション株式会社
    • OGURA TOSHIHIROHORI MASATO
    • E04B1/94E04B1/36E04H9/02
    • PROBLEM TO BE SOLVED: To impart a fire-resistive covering structure in a simple constitution and satisfactory in fire-resistive performance to a base-isolating device arranged between two structures different in size from each other.
      SOLUTION: This fire-resistive covering structure includes a horizontal fire-resistive panel 2 surrounding the first structure SL, and a vertical fire-resistive panel 3 surrounding the base-isolating device 10; and the vertical fire-resistive panel 3 comprises a first fire-resistive panel 30 which is attached to a second structure SU, and a second fire-resistive panel 31 which is attached to the horizontal fire-resistive panel 2 in such a manner as to face the first fire-resistive panel 30. The horizontal fire-resistive panel 2 is fixed to fixing members 40 and 41 which are fixed to the first structure SL. The first fire-resistive panel 30 is fixed to an upper fixing member 32 which is fixed to the second structure SU; the second fire-resistive panel 31 is fixed to a lower fixing member 33 which is fixed to the horizontal fire-resistive panel 2; and a slit P is formed between the respective fire-resistive panels 30 and 31. The fixing members 40 and 41 and the lower fixing member 33 are arranged on the horizontal fire-resistive panel 2 in such a manner as not to come into contact with one another.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:以简单的结构赋予耐火性覆盖结构,并且对于布置在两个尺寸彼此不同的结构之间的基底隔离装置具有令人满意的耐火性能。 解决方案:该防火覆盖结构包括围绕第一结构SL的水平防火板2和围绕隔离隔离装置10的垂直防火板3; 并且垂直防火板3包括附接到第二结构SU的第一耐火板30和附接到水平防火板2的第二防火板31, 面对第一耐火面板30.水平防火板2固定到固定到第一结构SL的固定构件40和41。 第一防火板30固定到固定到第二结构SU的上固定构件32上; 第二防火板31固定在固定在水平防火板2上的下固定构件33上; 并且在各个防火板30和31之间形成有狭缝P.固定构件40和41以及下固定构件33以不接触的方式设置在水平防火板2上 另一个。 版权所有(C)2011,JPO&INPIT
    • 7. 发明专利
    • Wall structure of building, and building
    • 建筑和建筑的墙体结构
    • JP2010248834A
    • 2010-11-04
    • JP2009101361
    • 2009-04-17
    • Japan Insulation Co LtdNpo Kankyo Kyoseigata Sumai Suishin Network Vivid Gifu日本インシュレーション株式会社特定非営利活動法人環境共生型すまい推進ネットワーク・ヴィヴィッド岐阜
    • FUKUDA YAYOISHIBAHARA KAZUOOGAWA HARUHISA
    • E04B1/70
    • PROBLEM TO BE SOLVED: To provide a wall structure of a building and a building having excellent heat insulating performance, humidity control performance, smell-permeation performance, and fireproof performance.
      SOLUTION: The wall structure 2 includes: an interior finishing material 20 facing an interior space S and having moisture permeability, smell permeability and fire resistance; a heat insulating material 22 arranged outside the interior finishing material 20 by via a sealed air layer 26; a moisture-permeable waterproof sheet 27 arranged outside the heat insulating material 22; a ventilation layer 29 arranged outside the moisture permeable waterproof sheet 27 and capable of allowing air from the outside to pass; and an exterior wall material 21 arranged outside the ventilation layer 29. The heat insulating material 22 is formed of a xonotlite-based calcium silicate board having a bulk specific gravity of 0.05-0.3. A roof structure 3 and a floor structure 4 is provided with heat insulating materials 35, 42 formed of the xonotlite-based calcium silicate boards having the bulk specific gravity of 0.05-0.3. Ventilation layers 39, 46 through which air from the outside can pass are arranged outside the heat insulating materials 35, 42.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供具有绝热性能,湿度控制性能,气味渗透性能和耐火性能的建筑物和建筑物的壁结构。 解决方案:壁结构2包括:面向内部空间S的内部整理材料20,具有透湿性,气味渗透性和耐火性; 通过密封空气层26布置在内部精整材料20的外部的隔热材料22; 布置在绝热材料22外侧的透湿防水片27; 布置在透湿防水片27的外侧并能够允许来自外部的空气通过的通气层29; 以及布置在通风层29外部的外壁材料21.绝热材料22由堆积比重为0.05-0.3的基于硅酸钙的硅酸钙板形成。 屋顶结构3和地板结构4设有由堆积比重为0.05-0.3的硅酸钙基硅酸钙板形成的绝热材料35,42。 来自外部的空气可以通过的通风层39,46布置在绝热材料35,42之外。版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Manufacturing method for calcium silicate molded product
    • 硅酸钙模制品的制造方法
    • JP2005053135A
    • 2005-03-03
    • JP2003287505
    • 2003-08-06
    • Japan Insulation Co Ltd日本インシュレーション株式会社
    • MOKUHAKU NAOMIKI
    • B28B3/02
    • PROBLEM TO BE SOLVED: To provide a manufacturing method for a calcium silicate molded product reduced in equipment investment, enhanced in productivity as compared with a conventional method, in manufacturing the calcium silicate molded product by press dehydration molding. SOLUTION: In the manufacturing method of the calcium silicate molded product having a press dehydration molding process of an aqueous slurry containing calcium silicate, the press dehydration molding process comprises a preforming process (1) for applying press dehydration molding to the aqueous slurry containing calcium silicate by a preforming apparatus until a shape retainable preform is obtained and a main molding process (2) for subjecting the obtained preform to press dehydration molding by a main molding machine until a predetermined molded product is obtained. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决问题:为了提供减少设备投资的硅酸钙模制品的制造方法,与常规方法相比,通过压制脱水成型制造硅酸钙模制产品,提高了生产率。 解决方案:在具有含硅酸钙的含水浆料的压榨脱水成型工艺的硅酸钙成型体的制造方法中,压榨脱水成型工序包括将压榨脱水成型用于水性浆料的预成型工序(1) 通过预成形装置含有硅酸钙,直到得到形状保持性预成型体,并且主成型工艺(2)将所得预成型件通过主成形机压制脱水成型直到获得预定的成型品。 版权所有(C)2005,JPO&NCIPI