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    • 2. 发明专利
    • Fused siliceous refractory and method of manufacturing the same
    • 熔融耐火耐火材料及其制造方法
    • JP2006273675A
    • 2006-10-12
    • JP2005097112
    • 2005-03-30
    • Nichias Corpニチアス株式会社
    • SAKAMOTO AKISHI
    • C04B35/14
    • PROBLEM TO BE SOLVED: To provide a fused silica refractory having high corrosion resistance against a molten metal having strong reducing action.
      SOLUTION: The fused siliceous refractory contains 95 to 99.99 wt.% fused silica and 0.01 to 5 wt.% iron oxide. The method of manufacturing the fused siliceous refractory includes: a slurry preparing process for preparing slurry containing a raw material solid portion composed of 95 to 99.99 wt.% fused silica powder and 0.01 to 5 wt.% iron oxide powder; a molding process for obtaining a molding from the slurry; and a firing process for firing the molding at 1,050 to 1,250°C.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供对具有强还原作用的熔融金属具有高耐腐蚀性的熔融石英耐火材料。 熔融硅质耐火材料含有95至99.99重量%的熔融二氧化硅和0.01至5重量%的氧化铁。 熔融硅质耐火材料的制造方法包括:制备含有95〜99.99重量%熔融二氧化硅粉末和0.01〜5重量%氧化铁粉末的原料固体部分的浆料的浆料制备方法。 用于从浆料获得模制品的模制工艺; 以及在1050〜1250℃下烧成成型的烧成工序。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Heat insulating material and method for manufacturing the same
    • 热绝缘材料及其制造方法
    • JP2012149658A
    • 2012-08-09
    • JP2011006475
    • 2011-01-14
    • Nichias Corpニチアス株式会社
    • SAKAMOTO AKISHIGOTO YOSHIHIKOITO YASUOMAEDA TAKESHI
    • F16L59/10F16L59/02
    • E04B1/78E04B2001/742E04B2001/7691
    • PROBLEM TO BE SOLVED: To provide a heat insulating material effectively suppressed in the occurrence of a failure when deformed, and a method for manufacturing the heat insulating material.SOLUTION: This heat insulating material 1 includes: a planar dry-pressed molded body 10 containing more than 65 mass% and less than 90 mass% of fine metal oxide particles having an average particle diameter of 50 nm or less, more than 5 mass% and less than 30 mass% of a radiation-scattering material, and 3 mass% or more and 20 mass% or less of reinforcing fibers; and a covering bag 30 which is formed of a fibrous covering material 20 to house the dry-pressed molded body 10. The covering bag 30 may have: a folded part 31 formed by folding outer peripheral ends 21 of the covering material 20 and sewing the folds together; and an intermediate part 32 formed by sewing the parts of the covering material 20 which are located between the dry-pressed molded body 10 and the folded part 31.
    • 要解决的问题:提供在变形时发生故障时有效抑制的绝热材料,以及制造隔热材料的方法。 解决方案:该绝热材料1包括:平面干压成型体10,其包含超过65质量%且小于90质量%的平均粒径为50nm以下的金属氧化物微粒,超过 5质量%以下且小于30质量%的辐射散射物质,3质量%以上且20质量%以下的增强纤维。 以及由用于容纳干压成型体10的纤维状覆盖材料20形成的覆盖袋30.覆盖袋30可以具有:折叠部31,其通过折叠覆盖材料20的外周端21并缝合 折叠在一起 以及通过缝合位于干压成型体10和折叠部31之间的覆盖材料20的部分而形成的中间部32.版权所有(C)2012,JPO&INPIT
    • 5. 发明专利
    • Monolithic refractory molding material and monolithic refractory molded product
    • 单晶耐火成型材料和单晶压铸模制品
    • JP2008081360A
    • 2008-04-10
    • JP2006263276
    • 2006-09-27
    • Nichias Corpニチアス株式会社
    • SAKAMOTO AKISHIGOTO YOSHIHIKOANJI TOSHIYUKIYAMAGISHI TORU
    • C04B35/66B22D41/02C04B14/04C04B14/16C04B18/08C04B28/06
    • Y02W30/92
    • PROBLEM TO BE SOLVED: To provide a monolithic refractory molded body which is excellent in heat insulation property and mechanical strength and has high heat resistance and high mechanical processability, and to provide a molding material for producing the same. SOLUTION: The monolithic refractory molding material contains 2-20 mass% inorganic hollow particles, 50-93 mass% at least one of amorphous silica and wollastonite and 5-50 mass% alumina cement. The monolithic refractory molded body is obtained by adding water to the monolithic refractory molding material, kneading the resulting mixture and curing the kneaded material, and has density of 0.8-2.0 g/cm 3 , bending strength of 2-20 MPa and a coefficient of thermal expansion of (0.1-7)×10 -6 /°C. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种绝热性能和机械强度优异且耐热性高,机械加工性高的整体式耐火材料成型体,提供一种制造该成型体的成型材料。 解决方案:整体耐火成型材料含有2-20质量%的无机中空颗粒,50-93质量%的无定形二氧化硅和硅灰石中的至少一种和5-50质量%的氧化铝水泥。 整体式耐火材料成型体通过向整体耐火成型材料中添加水,捏合所得混合物并固化捏合材料而获得,并且具有0.8-2.0g / cm 3的密度,SP的弯曲强度为2 -20MPa,热膨胀系数(0.1-7)×10 -6 /℃。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • Heat-resistant coating material and member of casting device for low-melting metal
    • 耐熔涂料和低熔点铸造装置的成员
    • JP2007260703A
    • 2007-10-11
    • JP2006086402
    • 2006-03-27
    • Nichias Corpニチアス株式会社
    • SAKAMOTO AKISHI
    • B22D17/30B22D17/20B22D21/04B22D35/00B22D45/00
    • PROBLEM TO BE SOLVED: To provide a member of a casting device for low-melting metal, which exhibit excellent durability to a molten metal having strong erosive property, such as molten magnesium or magnesium-containing alloy, and to provide a heat-resistant coating material used for forming the member.
      SOLUTION: The heat-resistant coating material is applied to the member to be brought into contact with molten low-melting metal in a device for casting the low-melting metal, and contains fluoride and an inorganic binder. The member of a casting device for low-melting metal is coated with a film made of the heat-resistant coating material.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供一种用于低熔点金属的铸造装置的构件,其对具有强冲蚀性的熔融金属如熔融镁或含镁合金表现出优异的耐久性,并提供热量 用于形成构件的耐光涂层材料。 解决方案:在用于铸造低熔点金属的装置中,将耐热涂层材料施加到与熔融的低熔点金属接触的构件,并且含有氟化物和无机粘合剂。 用于低熔点金属的铸造装置的构件涂覆有由耐热涂层材料制成的膜。 版权所有(C)2008,JPO&INPIT