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    • 12. 发明专利
    • Scale-resistant member, method for manufacturing the same, and method for constructing the same
    • 耐冲击构件,其制造方法及其构造方法
    • JP2012076971A
    • 2012-04-19
    • JP2010225515
    • 2010-10-05
    • Isolite Insulating Products Co LtdNippon Steel Corpイソライト工業株式会社新日本製鐵株式会社
    • SUEYOSHI ATSUSHISUZUKI HIDENAOMATSUI TAIJIRO
    • C04B35/66F27D1/00F27D1/16
    • PROBLEM TO BE SOLVED: To provide highly durable scale-resistant members which can be easily constructed on the high temperature atmosphere side of a ceramic fiber module already constructed on a furnace wall or in a furnace high temperature part without leaving any space; a method for manufacturing the scale-resistant members; and a method for constructing the scale-resistant members.SOLUTION: The scale-resistant member 1 uses an alumina fiber blanket 2 superior in heat resistance as a base material, and on the high-temperature atmosphere side surface of the base material, a coated layer 3 of a scale-resistant coating material is arranged. The coated layer 3 of the scale-resistant coating material contains magnesia powder and an acrylate latex resin and is soft and flexible, so that the scale-resistant members 1 can be constructed on the high temperature atmosphere side surface of a ceramic fiber module 4 while overlapping joint parts without any space.
    • 要解决的问题:为了提供高度耐用的防垢构件,其可以容易地构造在已经构造在炉壁或炉高温部分的陶瓷纤维模块的高温气氛侧,而不留下任何空间; 用于制造防垢构件的方法; 以及构建防垢构件的方法。 解决方案:防垢构件1使用耐热性优异的氧化铝纤维毡2作为基材,并且在基材的高温气氛侧表面上涂覆防垢涂层的涂层3 材料安排。 防锈涂层材料的涂层3含有氧化镁粉末和丙烯酸酯胶乳树脂,柔软而柔软,可以在陶瓷纤维模块4的高温气氛侧表面上构造防垢构件1,同时 重叠接头零件没有任何空间。 版权所有(C)2012,JPO&INPIT
    • 13. 发明专利
    • Fire-resistant heat-insulating brick, and method of manufacturing the same
    • 耐火绝热砖及其制造方法
    • JP2012031006A
    • 2012-02-16
    • JP2010171352
    • 2010-07-30
    • Isolite Insulating Products Co Ltdイソライト工業株式会社
    • UEMICHI KENTAROSUZUKI HIDENAO
    • C04B35/195F27D1/00
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing a fire-resistant heat-insulating brick low in thermal conductivity relative to a clayey refractory and suitable for a heat insulating material without generating sulfur oxide in baking.SOLUTION: A calcium compound without containing sulfur, a pore imparting agent and water are added in a clay mineral containing SiOand AlOas main constituents to be kneaded, obtained slurry is cast, thereafter dried, and baked at a temperature ≥1,200°C. A main crystal phase of the obtained fire-resistant heat-insulating brick is anorthite. In the fire-resistant heat-insulating brick, compressive strength, a rate of residual linear change (1,250°C×12 h) and thermal conductivity (1,000°C) are ≥1.6 MP, ≤1% and ≤0.33 W/(m*K), respectively.
    • 要解决的问题:提供一种相对于粘土耐火材料制造耐热绝热砖的方法,所述耐火绝热砖相对于粘土耐火材料而言不适于隔热材料,而不会在烘烤中产生硫氧化物。 解决方案:将含有硫,钙赋予剂和水的钙化合物加入到含有SiO 2的粘土矿物中,并且将Al 2 作为要捏合的主要成分的 O 3 ,将所获得的浆料浇铸,然后干燥,并在≥1,200℃的温度下烘烤。 得到的耐火绝热砖的主晶相是钙长石。 在耐火绝热砖中,抗压强度,残留线性变化率(1,250℃×12小时)和导热率(1,000℃)分别为≥1.6MP,≤1%和≤0.33W/(m * K)。 版权所有(C)2012,JPO&INPIT
    • 14. 发明专利
    • Ceramic setter for electronic component firing, and method for manufacturing the same
    • 用于电子元件烧制的陶瓷设备及其制造方法
    • JP2011042519A
    • 2011-03-03
    • JP2009190695
    • 2009-08-20
    • Isolite Insulating Products Co Ltdイソライト工業株式会社
    • SHIONO HIROSHI
    • C04B35/64F27D3/12
    • PROBLEM TO BE SOLVED: To provide a ceramic setter for firing electronic components, which has a light weight and excellent air permeability, and can prevent a Ag electrode material used for a ceramic multi-layer substrate to be adhered thereto at firing; and to provide a method for manufacturing the same. SOLUTION: The ceramic setter for firing electronic components comprises a ceramic fiber and a ceramic particle as main ingredients, wherein the ceramic fiber is an alumina silicate fiber and/or an alumina-based fiber; the ceramic particle contains a spinel particle or a spinel particle and a magnesia particle; the bulk density is 370 to 950 kg/m 3 ; and the average linear expansion coefficient (room temperature to 1,000°C) is ≤6.3×10 -6 /K. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种具有重量轻且透气性优异的电子部件的烧结陶瓷安装器,能够防止在烧成时将用于陶瓷多层基板的Ag电极材料粘附在其上; 并提供其制造方法。 解决方案:用于焙烧电子部件的陶瓷固定器包括陶瓷纤维和陶瓷颗粒作为主要成分,其中陶瓷纤维是硅酸铝纤维和/或氧化铝基纤维; 陶瓷颗粒包含尖晶石颗粒或尖晶石颗粒和氧化镁颗粒; 堆积密度为370至950kg / m 3。 平均线膨胀系数(室温〜1000℃)为≤6.3×10 -6 / K。 版权所有(C)2011,JPO&INPIT
    • 16. 发明专利
    • Method for producing inorganic fiber formed member
    • 无机纤维成型制造方法
    • JP2008254952A
    • 2008-10-23
    • JP2007097395
    • 2007-04-03
    • Isolite Insulating Products Co Ltdイソライト工業株式会社
    • OTSUKA TADASHISUZUKI HIDENAO
    • C04B38/00D21H13/46D21J1/18
    • PROBLEM TO BE SOLVED: To provide a method for producing an inorganic fiber formed member of high quality in which the migration of an inorganic binder can be prevented, and having almost the same hardness from the surface to the inside and free from the generation of smoke and a bad smell without using organic matter and also without undergoing a firing stage.
      SOLUTION: A ceramic fiber formed body comprising an inorganic binder is dehydrated, so as to be a water-containing state with a water content of ≤120%, thereafter, the ceramic fiber formed body is irradiated with microwaves or high frequency, and is dried, so as to obtain an inorganic fiber formed body. It is also possible that the ceramic fiber formed body is subjected to hot air drying after the drying by microwaves or high frequency.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种高品质的无机纤维形成部件的制造方法,其中可以防止无机粘合剂的迁移,并且具有从表面到内部几乎相同的硬度,并且不含 不使用有机物而产生烟雾和气味,也不会发生烧成阶段。 解决方案:将包含无机粘合剂的陶瓷纤维成形体脱水,以含水量≤120%的含水状态,然后用微波或高频照射陶瓷纤维成形体, 干燥,得到无机纤维成形体。 陶瓷纤维成形体也可以通过微波干燥或高频进行热风干燥。 版权所有(C)2009,JPO&INPIT
    • 17. 发明专利
    • High-temperature dust collector
    • 高温集尘器
    • JP2005224734A
    • 2005-08-25
    • JP2004037578
    • 2004-02-16
    • Isolite Insulating Products Co Ltdイソライト工業株式会社
    • OTSUKA TADASHINAKAJIMA KOJISUZUKI HIDENAOTASHIRO MASATERU
    • B01D46/24B01D46/42
    • PROBLEM TO BE SOLVED: To provide a safe and highly reliable high-temperature dust collector capable of treating a high-temperature exhaust gas discharged from a garbage incinerator and corrosion resistant to corrosive gas such as chlorine gas contained in the exhaust gas.
      SOLUTION: In the high-temperature dust collector provided with a cylindrical filter 2 made of ceramics in a collecting chamber 1, one end of the cylindrical filter 2 is supported in suspension by a supporting member 3 made of a ceramic castable refractory and fixed by holding with a holding plate 6 from the upper side. A metal-made cooling pipe 4 or a hollow plate for cooling is laid inside the castable refractory of the supporting member 3 as a reinforcing member so as to be cooled to 300°C or lower by air cooling or to 100°C or lower by water cooling.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种安全可靠的高温除尘器,其能够处理从垃圾焚烧炉排出的高温废气,并且对包含在废气中的氯气等腐蚀性气体进行耐腐蚀。 解决方案:在集尘室1中设置有由陶瓷制成的圆柱形过滤器2的高温集尘器中,圆筒形过滤器2的一端通过由陶瓷浇铸耐火材料制成的支撑构件3悬挂支撑, 通过从上侧保持有保持板6来固定。 金属制冷却管4或冷却中空板被放置在作为加强件的支撑件3的浇注耐火材料的内部,以便通过空气冷却被冷却至300℃或更低,或者通过 水冷。 版权所有(C)2005,JPO&NCIPI
    • 19. 发明专利
    • Ceramic jig for baking and its manufacture
    • 陶瓷烧烤及其制造
    • JP2000074572A
    • 2000-03-14
    • JP24447198
    • 1998-08-31
    • Isolite Insulating Products Co Ltdイソライト工業株式会社
    • FUKINO YOHEI
    • C04B37/00F27D3/12
    • PROBLEM TO BE SOLVED: To provide a ceramic jig for baking for facilitating a binder desorption from a material to be baked by uniformly heating a setter or the material, preventing a reaction of the setter with the material, and performing an energy conservation.
      SOLUTION: The ceramic jig for baking comprises parallel two ceramic side plates 1 having cutouts 5 at upper and lower edges, and a plurality of ceramic bars 2 aligned between the two plates 1 and fixed at both ends to supporting holes 3a of the plates 1. The cutouts 5 of the plates 1 are formed by baking and fixing two or more ceramic plate pieces 4 to the upper and lower edges of rectangular ceramic flat plates 3 with an inorganic adhesive.
      COPYRIGHT: (C)2000,JPO
    • 要解决的问题:提供一种用于烘烤的陶瓷夹具,用于通过均匀地加热固化器或材料来促进从待焙烧材料的粘合剂解吸,防止固化器与材料的反应,并进行节能。 解决方案:用于烘烤的陶瓷夹具包括平行的两个陶瓷侧板1,其在上边缘和下边缘处具有切口5,并且多个陶瓷棒2对准在两个板1之间并且两端固定在板1的支撑孔3a上。 板1的切口5通过利用无机粘合剂将两个或更多个陶瓷板件4烘烤并固定到矩形陶瓷平板3的上边缘和下边缘而形成。
    • 20. 发明专利
    • 断熱材及びその製造方法
    • 热绝缘材料及其制造方法
    • JP2015036587A
    • 2015-02-23
    • JP2014184936
    • 2014-09-11
    • イソライト工業株式会社Isolite Insulating Products Co Ltd
    • TSUNOMURA HISANORIKUROSE SHINYASUZUKI TAKAMICHI
    • F16L59/02C04B35/00C04B35/80C04B38/00
    • 【課題】熱伝導率が低く断熱性能に優れていると同時に、強度が高く、加工性や施工性に優れ、加熱線収縮率が小さく、低発塵性で、耐振動性及び耐水性を兼ね備えた断熱材を提供する。【解決手段】平均繊維径が1.5〜5.0μmの無機繊維と、微粒子シリカ及び/又は微粒子アルミナと、無機粉末粒子とを圧縮成形して得られる断熱材であり、無機繊維を25〜40重量%、微粒子シリカ及び/又は微粒子アルミナを5〜40重量%、無機粉末粒子を20〜70重量%含有し、かさ密度が300〜600kg/m3、3点曲げ強度が0.3MPa以上で、熱伝導率(600℃)が0.060〜0.090W/(m・K)である。【選択図】なし
    • 要解决的问题:为了提供导热性低,隔热性能优异的绝热材料,强度高,加工性和加工性优异,加热线性收缩率低,并且具有低的粉尘发射,抗振动性和 耐水性。解决方案:将平均纤维直径为1.5-5.0μm的无机纤维,颗粒状二氧化硅和/或颗粒状氧化铝以及无机粉末颗粒进行压塑以获得隔热材料。 绝热材料含有25-40重量%的无机纤维,5-40重量%的颗粒二氧化硅和/或颗粒氧化铝,以及20-70重量%的无机粉末颗粒,并且具有300-600的堆积密度 kg / m,三点弯曲强度为0.3MPa以上,导热系数(600℃)为0.060-0.090W /(m·K)。