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    • 4. 发明专利
    • Magnesium-based composite material
    • 基于镁的复合材料
    • JP2009242943A
    • 2009-10-22
    • JP2009058039
    • 2009-03-11
    • Topy Ind Ltdトピー工業株式会社
    • ENAMI KEITAROONO SHOJIOHARA MASAKIIGARASHI TAKANORI
    • C22C1/10B21C23/00C22C1/05C22C23/02C22F1/00C22F1/06
    • PROBLEM TO BE SOLVED: To provide a magnesium-based composite material having excellent performance, such as strength characteristics, not only at normal temperature but also at high temperature. SOLUTION: The magnesium-based composite material is obtained by the solid phase reaction of a magnesium alloy and added material. The added material is one or more selected from the oxide, carbide, silicide and carbonate of rare earth metals, Sr or Ba, and the carbide, silicide and carbonate of Ca, and the magnesium-based composite material includes an intermetallic compound formed by the solid phase reaction. The added material can be dispersed together with the intermetallic compound within the magnesium-based composite material. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决问题:不仅在常温下而且在高温下提供具有优异性能的强度特性的镁基复合材料。 解决方案:通过镁合金和添加材料的固相反应获得镁基复合材料。 所添加的材料是选自稀土金属Sr或Ba的氧化物,碳化物,硅化物和碳酸盐以及Ca的碳化物,硅化物和碳酸盐中的一种或多种,​​并且镁基复合材料包括由 固相反应。 添加的材料可以与镁基复合材料中的金属间化合物一起分散。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Metallic glass laminate member
    • 金属玻璃层压板
    • JP2007131952A
    • 2007-05-31
    • JP2006349088
    • 2006-12-26
    • Akihisa InoueTopy Ind Ltdトピー工業株式会社明久 井上
    • INOUE AKIHISAKIMURA HISAMICHIOHARA MASAKIIGARASHI TAKANORI
    • C23C4/06B32B15/00C23C4/12
    • PROBLEM TO BE SOLVED: To provide a highly reliable, dense laminated member of an amorphous metallic glass layer and a substrate, which is excellent in bonding property and durability. SOLUTION: In the metallic glass laminated member, a metallic glass sprayed coating layer in an amorphous phase is formed on the surface of the substrate using a previously prepared metallic glass in an amorphous phase as a raw material. The metallic glass has a supercooled liquid temperature range ▵Tx of ≥30°C and is composed of a plurality of elements, containing at least one element chosen from Fe, Co, Ni, Ti, Zr, Mg, Cu and Pd as a constituent element. The metallic glass sprayed coating layer has no continuous pore (pinhole) and has a porosity of ≤2%. The metallic glass sprayed coating layer is a dense, homogeneous amorphous phase and is capable of satisfactorily exerting functions of metallic glass, such as corrosion resistance and abrasion resistance. The metallic glass sprayed coating layer is also capable of realizing a large thickness and a large area. Moreover, a metallic glass bulk can be obtained by removing the substrate. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供非常可靠,致密的非晶金属玻璃层和基材的层压体,其结合性和耐久性优异。 解决方案:在金属玻璃层压件中,使用预先制备的非晶相金属玻璃作为原料,在基板的表面上形成非晶相中的金属玻璃喷涂层。 金属玻璃具有≥30℃的过冷液体温度范围▵Tx,由含有至少一种选自Fe,Co,Ni,Ti,Zr,Mg,Cu和Pd作为成分的元素组成, 元件。 金属玻璃喷涂层没有连续孔(针孔),孔隙率≤2%。 金属玻璃喷涂层是致密,均匀的非晶相,能够令人满意地发挥金属玻璃的功能,如耐腐蚀性和耐磨性。 金属玻璃喷涂层也能够实现大的厚度和大的面积。 此外,通过除去基板可以获得金属玻璃体。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Metallic glass laminate, and process for producing the same
    • 金属玻璃层压板及其制造方法
    • JP2006214000A
    • 2006-08-17
    • JP2005088227
    • 2005-03-25
    • Akihisa InoueTopy Ind Ltdトピー工業株式会社明久 井上
    • INOUE AKIHISAKIMURA HISAMICHIOHARA MASAKIIGARASHI TAKANORI
    • C23C4/06C23C4/12
    • PROBLEM TO BE SOLVED: To provide a laminate of a dense amorphous metallic glass layer and a base material having excellent bondability and durability and high reliability. SOLUTION: A metallic glass laminate comprising a base material and, superimposed on a surface thereof, a metallic glass layer of amorphous phase, characterized in that there is no continuous pore (pinhole) in the metallic glass layer. This metallic glass laminate can be appropriately produced by carrying out solidification and lamination of at least portion of metallic glass powder in molten form or supercooled liquid form on a surface of the base material. The metallic glass layer is a dense and homogeneous amorphous phase and is capable of satisfactorily exerting the functions of metallic glass, such as corrosion resistance and abrasion resistance. The metallic glass layer is also capable of realizing a large thickness and a large area, and further, a metallic glass bulk can be obtained by removing the base material. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供具有优异的粘合性和耐久性以及高可靠性的致密非晶金属玻璃层和基材的层压体。 解决方案:一种金属玻璃层压体,其包含基材,并且在其表面上叠加有非晶相的金属玻璃层,其特征在于,金属玻璃层中不存在连续的孔(针孔)。 这种金属玻璃层压体可以通过在基材的表面上进行至少部分熔融形式的金属玻璃粉末或过冷液体形式的层压而适当地制造。 金属玻璃层是致密且均匀的非晶相,能够令人满意地发挥金属玻璃的功能,例如耐腐蚀性和耐磨性。 金属玻璃层也能够实现大的厚度和大的面积,并且还可以通过除去基材来获得金属玻璃体。 版权所有(C)2006,JPO&NCIPI
    • 9. 发明专利
    • Hydrogen gas sensor
    • 氢气传感器
    • JP2005147712A
    • 2005-06-09
    • JP2003381667
    • 2003-11-11
    • Akihisa InoueTopy Ind Ltdトピー工業株式会社明久 井上
    • INOUE AKIHISAKIMURA HISAMICHIYAMAURA SHINICHIOHARA MASAKIIGARASHI TAKANORIMOCHIZUKI ATSUO
    • G01N19/00G01N27/416
    • PROBLEM TO BE SOLVED: To provide a small-sized inexpensive hydrogen gas sensor capable of detecting hydrogen gas selectively and easily. SOLUTION: In this hydrogen gas sensor, hydrogen gas is detected by embrittlement of a sensor element caused by hydrogen absorption by using a hydrogen absorbing amorphous alloy as the sensor element. The sensor element is ruptured by absorbing hydrogen gas, and the hydrogen gas can be detected by detecting the rupture. A mechanical load is preferably applied to the sensor element so as to be ruptured by hydrogen gas absorption. The sensor 10 is preferably equipped with the sensor element 12 including the hydrogen absorbing amorphous alloy and embrittled by the hydrogen absorption, a support 14 for supporting the sensor element and applying the mechanical load to the sensor element so that the sensor element is embrittled and ruptured by the hydrogen gas absorption, and two electrodes 16a, 16b provided in the connected state to the sensor element or an energization part integrated with the sensor element. The sensor element is preferably hydrogen absorbing metal glass. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供能够选择性且容易地检测氢气的小型便宜的氢气传感器。 解决方案:在该氢气传感器中,通过使用吸氢非晶合金作为传感器元件,通过氢吸收引起的传感器元件的脆化来检测氢气。 传感器元件通过吸收氢气而破裂,并且可以通过检测破裂来检测氢气。 机械载荷优选地施加到传感器元件上,以便被氢气吸收破裂。 传感器10优选地配备有包括吸氢非晶合金并通过氢吸收而脆化的传感器元件12,用于支撑传感器元件并将机械负载施加到传感器元件的支撑件14,使得传感器元件脆化和破裂 通过氢气吸收,以及以连接状态设置于传感器元件的两个电极16a,16b或与传感器元件集成的通电部。 传感器元件优选为吸氢金属玻璃。 版权所有(C)2005,JPO&NCIPI
    • 10. 发明专利
    • Production of sintered product
    • 生产烧结产品
    • JPH11279602A
    • 1999-10-12
    • JP8131898
    • 1998-03-27
    • Topy Ind Ltdトピー工業株式会社
    • OHARA MASAKI
    • C22C33/02B22F3/02B22F3/10
    • PROBLEM TO BE SOLVED: To provide a method for producing a sintered product excellent in free cuttability by adding MnS to metal powder in the production of a sintered body by an MIM method.
      SOLUTION: This method is composed of a stage 11 in which metal, MnS and at least one kind of organic binder are prepd., a stage 12 in which the metal powder, MnS and organic binder are heated and kneaded, a stage 13 in which the heated and kneaded metal, MnS and organic binder are molded to produce a molded product, a stage 14 in which, from the molded product, the organic binder is heated to degrease and a stage 15 in which the molded product after the degreasing is sintered.
      COPYRIGHT: (C)1999,JPO
    • 要解决的问题:提供一种通过MIM法在制造烧结体中通过在金属粉末中添加MnS而在自由切割性方面优异的烧结体的制造方法。 解决方案:该方法由其中制备金属,MnS和至少一种有机粘合剂的阶段11,其中加热和捏合金属粉末,MnS和有机粘合剂的阶段12,阶段13,其中 将加热和捏合的金属,MnS和有机粘合剂成型以制备模制产品,阶段14,其中从成型产品中将有机粘合剂加热至脱脂;以及阶段15,其中脱脂后的模塑产品被烧结 。