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    • 31. 发明专利
    • Molten metal feeding apparatus and molten metal feeding method
    • 金属进料装置和金属进料方法
    • JP2009034709A
    • 2009-02-19
    • JP2007201364
    • 2007-08-01
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • KITA HIDENORIHIUGA HIDEKIKONDO NAOKI
    • B22D17/30
    • PROBLEM TO BE SOLVED: To provide a molten metal feeding apparatus and a molten metal feeding method.
      SOLUTION: The molten metal feeding apparatus comprises a charging unit for solid raw material, a pipe (a conveying pipe) for conveying the raw material and a molten metal, a casing, a feed amount adjusting valve, and a heat insulator, and the conveying pipe has a heating means. In the molten metal feeding method, the solid raw metal is heated in a step that the metal is passed inside the conveying pipe having the heating means provided between the raw material charging unit and a casting machine, gradually melted and mixed, and at the same time, the metal is discharged from one end of the conveying pipe in its state, and fed to a molding and casting apparatus while minimizing the drop of the temperature associated with the conveyance. A cast member with less oxidation and less mixture of foreign matters can be manufactured under a safe environment with less energy consumption.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供熔融金属进料装置和熔融金属进料方法。 解决方案:熔融金属输送装置包括用于固体原料的充电单元,用于输送原料的管(输送管)和熔融金属,壳体,进料量调节阀和隔热件, 输送管具有加热装置。 在熔融金属供给方法中,将固体原料金属加热到金属通过在具有设置在原料充填单元和铸造机之间的加热单元的输送管内,逐渐熔融混合的步骤 时间,金属在其状态下从输送管的一端排出,并且在最小化与输送相关联的温度的下降的同时被馈送到模制和铸造设备。 氧化少,混合异物少的铸件可以在安全的环境下制造,能耗较低。 版权所有(C)2009,JPO&INPIT
    • 32. 发明专利
    • Ceramic porous body
    • 陶瓷多孔体
    • JP2008308378A
    • 2008-12-25
    • JP2007159502
    • 2007-06-15
    • Kubota CorpNational Institute Of Advanced Industrial & Technology株式会社クボタ独立行政法人産業技術総合研究所
    • KITA HIDENORIYOSHIDA KATSUMIKONDO NAOKIHIUGA HIDEKITSUCHIDA JIROSUGAI ATSUSHI
    • C04B38/06B01D39/20B01J35/04B01J37/04B01J37/08
    • PROBLEM TO BE SOLVED: To provide a ceramic porous body and a ceramic filter having suppressed pressure loss to prevent the deterioration of fuel economy, capable of efficiently collecting particulate matter (PM) containing ultrafine particulate and reducing the quantity of a noble metal catalyst and having excellent corrosion resistance.
      SOLUTION: The ceramic porous body having columnar particles formed on the surface of the porous body and the inner wall surface of pore parts and having controlled pore diameter, peculiar pore arrangement, uniform pore diameter and high porosity, a method of manufacturing the same, a support catalyst of a waste gas cleaning catalyst and a ceramic filter member having excellent corrosion resistance which comprise the ceramic porous body manufactured by the method are provided. As a result, the ceramic filter or the like capable of efficiently collecting PM, having small pressure loss, hardly causing the deterioration of the fuel economy, capable of reducing the use quantity of the noble metal catalyst and having excellent corrosion resistance is provided.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决方案:为了提供抑制压力损失的陶瓷多孔体和陶瓷过滤器,以防止燃料经济性的劣化,能够有效地收集含有超细颗粒的颗粒物质(PM)并减少贵金属的量 催化剂,具有优良的耐腐蚀性。 解决方案:陶瓷多孔体在多孔体的表面和孔部分的内表面上形成具有可控的孔径,特定的孔布置,孔径均匀和孔隙率高的柱状颗粒,制造方法 提供了包括通过该方法制造的陶瓷多孔体的废气清洁催化剂的载体催化剂和具有优异耐腐蚀性的陶瓷过滤元件。 结果,提供了能够有效地收集具有小的压力损失的PM的陶瓷过滤器等,几乎不会导致能够降低贵金属催化剂的使用量并且具有优异的耐腐蚀性的燃料经济性的劣化。 版权所有(C)2009,JPO&INPIT
    • 34. 发明专利
    • Large scale ceramic structure, its producing method, and ceramic member
    • 大规模陶瓷结构及其生产方法和陶瓷成员
    • JP2007131483A
    • 2007-05-31
    • JP2005325567
    • 2005-11-10
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • KITA HIDENORIKONDO NAOKIHIUGA HIDEKI
    • C04B37/00
    • PROBLEM TO BE SOLVED: To provide a large scale ceramic structure which is useful as a stage or the like necessary for producing a large scale liquid crystal panel or the like and has high specific rigidity (the ratio of Young's modulus to density), a large scale ceramic member made of the same, and methods for producing them.
      SOLUTION: The method for producing the ceramic member comprises assembling unit bodies each having a shape obtained by dividing a final structure and firing the assembled unit bodies to unify them. The method for producing the ceramic structure is characterized by forming the joining part of each porous unit body into a fitting structure, then interposing ceramic slurry between the joining parts, closely adhering the joining faces of the joining parts while infiltrating a portion of the slurry into pores, in an assembling process, and sintering the assembled unit bodies to strongly bond the joining faces and to unify the unit bodies. The ceramic structure is also provided. The ceramic member is made of the ceramic structure.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供可用作生产大型液晶面板等所需的阶段等并且具有高比刚度(杨氏模量与密度的比)的大型陶瓷结构, ,由其制成的大型陶瓷构件及其制造方法。 解决方案:陶瓷构件的制造方法包括组装单元体,每个单元具有通过分割最终结构而获得的形状,并且烧结组装的单元体以使它们统一。 陶瓷结构体的制造方法的特征在于,将各多孔单元体的接合部形成为嵌合结构,然后在接合部之间插入陶瓷浆料,在将一部分浆料浸入的同时使接合部的接合面紧密地粘合 孔,在组装过程中,并且烧结组装的单元体以使接合面牢固地结合并且使单元体统一。 还提供陶瓷结构。 陶瓷构件由陶瓷结构制成。 版权所有(C)2007,JPO&INPIT
    • 35. 发明专利
    • Ceramic connector and its manufacturing method
    • 陶瓷连接器及其制造方法
    • JP2008184352A
    • 2008-08-14
    • JP2007018056
    • 2007-01-29
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • KITA HIDENORIKONDO NAOKIHIUGA HIDEKI
    • C04B37/00
    • PROBLEM TO BE SOLVED: To provide a ceramic connector and its manufacturing method.
      SOLUTION: This connector is mainly composed of silicon nitride and has a joint, and it is a connector with its facing joint surfaces having each a fitting shape, and the void between the joint surfaces is filled with a silicon nitride material synthesized via a process including reaction sintering and they are firmly connected. Its manufacturing method is also disclosed. This ceramic connector having a stable joint is manufactured by carrying out the nitrification, sintering, densification, and bonding simultaneously while keeping the distance between the connecting surfaces during each processes.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种陶瓷连接器及其制造方法。 解决方案:该连接器主要由氮化硅组成并具有接头,并且是具有各自的接合表面的连接器,每个接头表面均具有嵌合形状,并且接合表面之间的空隙填充有通过合成的氮化硅材料 一种包括反应烧结的工艺,并且它们牢固地连接在一起。 还公开了其制造方法。 具有稳定接头的陶瓷连接器通过在每个处理期间保持连接表面之间的距离同时进行硝化,烧结,致密化和粘合来制造。 版权所有(C)2008,JPO&INPIT
    • 38. 发明专利
    • Hollow ceramic structure and its manufacturing method
    • 中空陶瓷结构及其制造方法
    • JP2007238366A
    • 2007-09-20
    • JP2006062007
    • 2006-03-08
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • KITA HIDENORIKONDO NAOKIHIUGA HIDEKI
    • C04B37/00B22D18/04F27D1/04
    • PROBLEM TO BE SOLVED: To provide a hollow ceramic structure which is large in size, excellent in heat insulating property, light in weight and excellent in corrosion resistance and to provide its manufacturing method.
      SOLUTION: In the hollow ceramic structure, (1) a plurality of units each having a three-dimensional complicated shape of the hollow structure are incorporated, joined and integrated each other, (2) then all member shapes are formed, and (3) a hollow part is formed inside the wall surface. Thus, the hollow part is formed inside the wall surface of the large sized ceramic member by using a system for assembling the basic units precisely formed by injection molding and a reaction sintering method and the large sized light weight ceramic member having functions such as high heat insulating property and wetness difficulty which is difficult to be manufactured by a conventional technology is manufactured inexpensively.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种尺寸大,绝热性好,重量轻,耐腐蚀性优异的中空陶瓷结构体,并提供其制造方法。 解决方案:在中空陶瓷结构中,(1)多个具有中空结构的三维复杂形状的单元结合并相互结合,(2)然后形成所有的构件形状, (3)在壁面内形成中空部。 因此,通过使用用于组装通过注射成型精确形成的基本单元和反应烧结方法的系统以及具有诸如高热等功能的大尺寸重量轻的陶瓷构件,在大尺寸陶瓷构件的壁表面内形成中空部分 廉价地制造难以通过现有技术制造的绝缘性和湿度难度。 版权所有(C)2007,JPO&INPIT