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    • 2. 发明专利
    • Method and apparatus for forming metallic glass
    • 用于形成金属玻璃的方法和装置
    • JP2008238214A
    • 2008-10-09
    • JP2007082419
    • 2007-03-27
    • Bmg:KkNippon Sozai KkTohoku Univ国立大学法人東北大学日本素材株式会社株式会社Bmg
    • WANG XINMININOUE AKIHISAKIMURA HISAMICHIMAKABE HIDEKAZUABE KATSUHIRO
    • B22D18/02B22D17/00B22D27/11B22D27/13
    • PROBLEM TO BE SOLVED: To provide an apparatus and a method for forming a metallic glass, with which the fine metallic glass formed product can be manufactured with high accuracy.
      SOLUTION: The forming method for metallic glass, with which a material for forming the metallic glass is melted and the molten material for forming the metallic glass is formed by using a mold, includes: heating the material for forming the metallic glass and the mold and melting the material for forming the metallic glass; while heating the molten material for forming the metallic glass and the mold, applying pressure to the material for forming the metallic glass to be impregnated into the mold; and cooling the mold with the material for forming the metallic glass impregnated thereto to solidify the molten material for forming the metallic glass.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供用于形成金属玻璃的装置和方法,可以高精度地制造金属玻璃形成产品。 解决方案:通过使用模具形成用于形成金属玻璃的材料熔化的金属玻璃的形成方法和用于形成金属玻璃的熔融材料,包括:加热用于形成金属玻璃的材料和 模具和熔化用于形成金属玻璃的材料; 同时加热用于形成金属玻璃和模具的熔融材料,向用于形成要浸渍到模具中的金属玻璃的材料施加压力; 并用用于形成浸渍在其中的金属玻璃的材料冷却模具,以固化用于形成金属玻璃的熔融材料。 版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • Method for manufacturing porous metal glass, and porous metal glass
    • 制造多孔金属玻璃和多孔金属玻璃的方法
    • JP2006002195A
    • 2006-01-05
    • JP2004178027
    • 2004-06-16
    • Nippon Sozai KkTohoku Univ国立大学法人東北大学日本素材株式会社
    • INOUE AKIHISAKIMURA HISAMICHIWADA TAKESHIO SHINBIN
    • C22C1/08B22F3/11
    • PROBLEM TO BE SOLVED: To establish a method by which metal glass essentially requiring rapid cooling and having specific physical properties can be made porous.
      SOLUTION: A metal glass material (1) and spacer particulates formed of a spacer substance (2) having a melting point higher than that of the metal glass material (1) are heated at a temperature between the melting point of the metal glass material (1) and the melting point of the spacer particulates (2) to melt the metal glass material (1) and disperse the spacer particulates (2) in the resultant molten metal glass (1a). Successively, rapid cooling is applied to the molten metal glass (1a) and the molten metal glass (1a) is solidified between the spacer particulates (2). Then the spacer particulates (2) are removed by means of a solvent.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了建立可以使基本上需要快速冷却并具有特定物理性质的金属玻璃多孔的方法。 解决方案:金属玻璃材料(1)和熔点高于金属玻璃材料(1)的间隔物质(2)形成的间隔物颗粒在金属的熔点之间的温度下加热 玻璃材料(1)和间隔物微粒(2)的熔点以熔化金属玻璃材料(1)并将间隔物微粒(2)分散在所得到的熔融金属玻璃(1a)中。 接着,向熔融金属玻璃(1a)施加快速冷却,熔融金属玻璃(1a)在间隔物微粒(2)之间凝固。 然后通过溶剂除去间隔物颗粒(2)。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Manufacturing method of metal glass sphere, bearing using metal glass sphere manufactured by the method, ball point pen with metal glass sphere attached on pen point, and ornament using metal glass sphere
    • 金属玻璃球的制造方法,使用金属玻璃球轴承,通过方法制造的金属玻璃球,带有金属玻璃球面的点笔和使用金属玻璃球
    • JP2008246637A
    • 2008-10-16
    • JP2007092317
    • 2007-03-30
    • Bmg:KkNippon Sozai KkTohoku Univ国立大学法人東北大学日本素材株式会社株式会社Bmg
    • WANG XINMININOUE AKIHISAKIMURA HISAMICHIYASHIMA YOSHINOBU
    • B24B11/06B24B41/06F16C33/32
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of a metal glass sphere capable of making the metal glass sphere which is a spherical body by improving the surface precision of a metal glass sphere part.
      SOLUTION: This manufacturing method of the metal glass sphere is devised to form the metal glass sphere parts 10a remaining runner cutting projections 27a on side parts by cutting a cast article 11 having the metal glass sphere parts 10a tied in a row by a runner 27 at a part of the runner 27, to store the metal glass sphere parts 10a in a plurality of holding holes 38 independently provided on a holding plate 34 for polishing free to rotate against the holding plate for polishing so that a part of the metal glass sphere parts 10a are exposed from the holding plate 34 for polishing, to relatively rotate polishing boards 40, 46 by decentering the polishing boards 40, 46 against the holding plate 34 for polishing while making the polishing boards 40, 46 contact with exposed parts of the metal glass sphere parts 10a and to polish surfaces of the metal glass sphere parts 10a.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供能够通过提高金属玻璃球部分的表面精度来制造作为球体的金属玻璃球的金属玻璃球的制造方法。 解决方案:该金属玻璃球的制造方法设计为通过切割具有连接在一起的金属玻璃球部分10a的铸造制品11来形成金属玻璃球部分10a,在侧面部分上具有剩余的流道切割突起27a 在转子27的一部分处的转子27将金属玻璃球部10a存储在多个保持孔38中,多个保持孔38独立地设置在用于抛光的保持板34上,以便自由旋转抵靠用于抛光的保持板,使得一部分金属 玻璃球部10a从用于研磨的保持板34露出,通过使抛光板40,46抵靠保持板34使抛光而使研磨板40,46与抛光板40,46的露出部分接触 金属玻璃球部分10a,并且抛光金属玻璃球部分10a的表面。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • Method for molding amorphous alloy and device therefor
    • 用于模制非晶合金的方法及其装置
    • JP2006175508A
    • 2006-07-06
    • JP2004373662
    • 2004-12-24
    • Haadeizu:KkNippon Sozai KkTohoku Univ国立大学法人東北大学日本素材株式会社有限会社ハーデイズ
    • INOUE AKIHISAKIMURA HISAMICHIWANG XINMINSATO TSUKASAYOSHII ISAMUSHIKAMATA ENAJI
    • B22D18/02B22D27/02B22D27/09H05B6/32H05B6/36H05B6/44
    • PROBLEM TO BE SOLVED: To easily produce amorphous molded parts with various deformed shapes including a one-face-opened or through type hollow shape free from cavities and having an extremely high solid degree.
      SOLUTION: A method for molding amorphous alloy comprises: a melting step where an amorphous alloy (1) is subjected to levitation melting; a tapping step where the molten metal (1b) of the amorphous alloy (1) is tapped to a lower casting mold located below the molten metal (1b); and a pressure rapid cooling step where an upper casting mold (1b) is pressed against the lower casting mold (2), and the molten metal (1b) in the lower casting mold (2) is pressed. In this way, the exhaust of gas occluded in the molten metal is performed by the rapid cooling and pressurizing of the molten metal, thus a sound amorphous metallic member free from cavities and having a free shape can be molded.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:容易地制造具有各种变形形状的无定形模制零件,包括不具有腔的单面开口或贯通型中空形状并且具有非常高的固体度。 解决方案:一种非晶合金成型方法包括:使非晶合金(1)进行悬浮熔融的熔融步骤; 将非晶质合金(1)的熔融金属(1b)被攻丝到位于熔融金属(1b)下方的下铸模的攻丝步骤; 以及压铸快速冷却工序,其中上铸造模具(1b)被压靠在下浇铸模具(2)上,而压铸下模铸件(2)中的熔融金属(1b)。 以这种方式,通过熔融金属的快速冷却和加压来进行在熔融金属中封闭的气体的排气,从而可以模制没有空腔并具有自由形状的无声金属构件。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • 銅合金線材の製造方法
    • 生产铜合金线材的方法
    • JP2015057517A
    • 2015-03-26
    • JP2014219864
    • 2014-10-29
    • 日本碍子株式会社Ngk Insulators Ltd国立大学法人東北大学Tohoku Univ
    • MURAMATSU NAOKUNIKIMURA HISAMICHIINOUE AKIHISA
    • C22F1/08B22D7/00C22C1/02C22C9/00H01B13/00
    • H01B1/026C22C1/02C22C9/00C22F1/08
    • 【課題】引張強さの高い銅合金線材を提供する。【解決手段】本発明の銅合金線材10は、合金組成におけるZrが3.0at%以上7.0at%以下であり、銅母相30と、銅−Zr化合物相22と銅相21とからなる複合相20とを備えている。図1に示すように、銅母相30と複合相20とが母相−複合相繊維状組織を構成し、軸方向に対して平行で中心軸を含む断面を見たときに銅母相30と複合相20とが軸方向に平行に交互に配列している。さらに、複合相20は、銅−Zr化合物相22と銅相21とが複合相内繊維状組織を構成し、上述した断面を見たときに銅−Zr化合物相22と銅相21とが50nm以下の相間隔で軸方向に平行に交互に配列している。このように、二重の繊維状組織を有し、これらが緻密な繊維状となすことで、あたかも繊維強化複合材における複合則が成立するがごとくの強化機構が生まれるものと考えられる。【選択図】図1
    • 要解决的问题:提供高抗拉强度的铜合金线材。解决方案:铜合金线材10在合金组成中的含量为3.0-7.0at%,包括铜主体相30和复合材料 相20由铜 - 锆化合物相22和铜相21组成。 如图1所示,铜主体相30和复合相20构成主相/复合相纤维结构,铜主体相30和复合相20交替地与轴向平行布置,在截面平行 轴向包括中心轴。 在复合相20中,铜 - 锆化合物相22和铜相21构成复合相纤维结构,在上述截面中,布置有铜 - 锆化合物相22和铜相21 交替地以50nm或更小的相位间隔并且与轴向平行。 具有致密纤维形式的双重结构,铜合金线材10具有如同建立纤维增强复合材料中的复合规则的增强机构。