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    • 3. 发明专利
    • Polycrystal oriented intermediate thin film, its production method, oxide superconductor and its production method
    • 多晶取向中间薄膜,其生产方法,氧化物超导体及其生产方法
    • JP2005314784A
    • 2005-11-10
    • JP2004186232
    • 2004-06-24
    • Fujikura LtdInternatl Superconductivity Technology Center株式会社フジクラ財団法人国際超電導産業技術研究センター
    • SUDO YASUNORIKAKIMOTO KAZUTOMIIIJIMA YASUHIROSAITO TAKASHI
    • C23C14/22H01B12/06H01B13/00
    • Y02E40/642
    • PROBLEM TO BE SOLVED: To provide a polycrystal oriented intermediate thin film capable of reducing the soiling of a window caused by a long time vapor deposition and stably depositing a thin film for a long period of time, thereby obtaining satisfactory orientation properties, to provide a deposition method for the polycrystal oriented intermediate thin film, to provide an oxide superconductor using the polycrystal oriented intermediate thin film as an intermediate layer, and to provide a production method for the oxide superconductor.
      SOLUTION: In the method for depositing a polycrystal oriented intermediate thin film, a first polycrystal thin film 4 is deposited on a metallic base material 3 by an ion beam assist process, and a second polycrystal thin film 5 made of the material same as that of the first polycrystal thin film is deposited on the first polycrystal thin film in a gaseous Ar atmosphere or a gaseous Ar + gaseous oxygen atmosphere by a pulse layer deposition process, so as to deposit a polycrystal oriented intermediate thin film 1A.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供能够减少由长时间气相沉积引起的窗口的污染并且长时间稳定地沉积薄膜的多晶取向中间薄膜,从而获得令人满意的定向性能, 为了提供多晶取向中间体薄膜的沉积方法,提供使用多晶取向中间薄膜作为中间层的氧化物超导体,并提供氧化物超导体的制造方法。 解决方案:在沉积多晶取向中间薄膜的方法中,通过离子束辅助工艺将第一多晶薄膜4沉积在金属基材3上,并且由相同材料制成的第二多晶薄膜5 通过脉冲层沉积工艺在气态Ar气氛或气态Ar +气态氧气氛中将第一多晶薄膜沉积在第一多晶薄膜上,以沉积多晶取向中间薄膜1A。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Method for producing molding die and molding die
    • 生产模具和模具的方法
    • JP2014037096A
    • 2014-02-27
    • JP2012180759
    • 2012-08-17
    • Toyota Motor East Japan Incトヨタ自動車東日本株式会社Iwate Industrial Research Center地方独立行政法人 岩手県工業技術センター
    • KOBAYASHI MANABUKUWAJIMA TAKAYUKISAITO TAKASHISONODA TETSUYA
    • B29C33/38
    • PROBLEM TO BE SOLVED: To repair a burrow so that the whole area of a molding surface is uniformly made to be a smooth surface even if the molding surface has a complicated uneven shape, and to increase strength to improve durability.SOLUTION: A method for producing a molding die includes: a body producing step of producing a body 1 made of cast metal and having one surface 2 having a shape following the shape of a molding surface S; a surface layer part forming step of forming a surface layer part 3 by laminating a coating metal M on the one surface 2 of the body 1 by cold spray; and a finishing step of forming a molding surface S by performing secondary processing of the surface layer part 3. Even when the body 1 has a burrow 4 and the burrow 4 is exposed to the one surface 2, the cold sprayed coating metal M powder enters into the burrow 4 to close it, whereby the molding surface S can be made smooth and the compressive strength of the surface layer part 3 can be increased to improve durability.
    • 要解决的问题:为了修复洞穴,即使成型表面具有复杂的不均匀形状,也能使整个区域均匀地形成为光滑的表面,并提高强度以提高耐久性。解决方案:一种用于 制造模具包括:主体制造步骤,制造由铸造金属制成的主体1,并且具有一个具有与成型表面S形状相似的形状的表面2; 表面层部分形成步骤,通过冷喷涂在主体1的一个表面2上层压涂层金属M来形成表面层部分3; 以及通过进行表层部3的二次加工来形成成型面S的精加工步骤。即使当主体1具有挖洞4并且挖洞4暴露于一个表面2时,冷喷涂金属M粉末进入 进入穴4以封闭它,由此能够使成型面S平滑,并且能够提高表层3的抗压强度,提高耐久性。
    • 6. 发明专利
    • Film-forming method and film-forming member
    • 成膜方法和成膜成型
    • JP2011208166A
    • 2011-10-20
    • JP2010073937
    • 2010-03-27
    • Iwate Industrial Research CenterSunpot Co LtdSupekku:Kkサンポット株式会社地方独立行政法人 岩手県工業技術センター株式会社 スペック
    • SONODA TETSUYAKUWAJIMA TAKAYUKISAITO TAKASHIITO IMASHIMAGA KOHACHI
    • C23C24/04C23C24/08
    • PROBLEM TO BE SOLVED: To form a film of fine composite structure of metal, and to improve the quality of the film by improving the dispersibility of each metallic material without causing any trouble to jetting from a nozzle even when the grain size of the metal is equivalent to or smaller than the conventional value.SOLUTION: There is provided a film-forming method having a film-forming step by cold spray, of forming the film of a film material H on a base material K by jetting the film material H containing two or more kinds of metal powder material from a spray nozzle toward the base material K together with working gas having a temperature below the melting point of the film material H. In the film-forming method, the film material H includes ≥60 mass% of a powdered composite body F. The powdered composite body F is obtained by using aluminum of 10-60 mass%, and the balance one or more metals to be selected from among nickel, titanium, iron, silicon and magnesium and by adhering these two or more kinds of metal powder materials to each other in a non-compound and non-alloy state, and the grain size of the composite body F is set to be 5-100 μm.
    • 要解决的问题:为了形成金属复合结构的微细薄膜,通过提高各金属材料的分散性,即使在金属的粒径为 提供了一种成膜方法,该方法具有通过冷喷涂的成膜步骤,通过喷射包含以下物质的薄膜材料H在基材K上形成薄膜材料H的膜 两种以上的金属粉末材料从喷嘴朝向基材K以及温度低于薄膜材料H的熔点的工作气体。在薄膜形成方法中,薄膜材料H包括≥60质量% 的粉末状复合体F.通过使用10〜60质量%的铝,其余为一种以上选自镍,钛,铁,硅和镁的金属,并通过粘附 这两种以上的金属粉末材料以非复合非合金状态彼此相对,复合体F的晶粒尺寸设定为5〜100μm。
    • 7. 发明专利
    • Structure for controlling temperature of mold for injection molding
    • 用于控制注塑模具温度的结构
    • JP2010201846A
    • 2010-09-16
    • JP2009051787
    • 2009-03-05
    • Iwate Industrial Research CenterKanto Auto Works Ltd地方独立行政法人 岩手県工業技術センター関東自動車工業株式会社
    • SAKATANI TAIDOKAGAWA KAZUYOSHISAITO TAKASHIKUWAJIMA TAKAYUKISONODA TETSUYASUZUKI KAZUTAKAFUJIWARA MAKI
    • B29C45/73B29C33/02
    • PROBLEM TO BE SOLVED: To provide a structure for controlling temperature of mold for injection molding capable of efficiently controlling the temperature on the surface of a mold contacting with a molded product in the mold and, at the same time, reducing thermal diffusion to mold plates.
      SOLUTION: A passage 3 for controlling temperature of mold comprises: a first groove 32 which is dug and formed along a mold basic surface 31 serving as substrate of mold surfaces 1a, 2a; a second groove 33 which is cut off more widely than the width of the first groove on the upper surface side of the first groove; a first metal layer 34 which is formed so as to cover the first groove and is made of material having a thermal conductivity lower than the thermal conductivity of each mold plate; a second metal layer 35 which is formed so as to cover the first metal layer and is made of material having a thermal conductivity higher than the thermal conductivity of material of each mold plate; an embedding plate 36 which is disposed so as to close the second groove by covering the second groove and is made of a material having a thermal conductivity substantially equal to the thermal conductivity of the second metal layer; and a third metal layer 37 which is formed so as to cover the basic surface and the embedding plate and serve as the mold surface for a product, and is made of a material having a thermal conductivity substantially equal to the thermal conductivity of the second metal layer.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于控制注射成型模具的温度的结构,其能够有效地控制与模具中的模制产品接触的模具的表面上的温度,并且同时减少热扩散 模板。 解决方案:用于控制模具温度的通道3包括:第一槽32,其沿着模具基面31被切割并形成,该模具基面31用作模具表面1a,2a的基底; 第二槽33,其比第一槽的上表面侧上的第一槽的宽度更宽; 第一金属层34,其形成为覆盖第一槽,并且由导热率低于每个模板的导热率的材料制成; 第二金属层35,其形成为覆盖第一金属层,并且由导热率高于每个模板的材料的导热率的材料制成; 嵌入板36,其被设置成通过覆盖第二凹槽来封闭第二凹槽,并且由具有基本上等于第二金属层的热导率的热导率的材料制成; 以及形成为覆盖基面和嵌入板并用作产品的模具表面的第三金属层37,并且由具有基本上等于第二金属的热导率的导热性的材料制成 层。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Bead machining method of drawing press die
    • 冲压加工机的加工方法
    • JP2010125472A
    • 2010-06-10
    • JP2008301005
    • 2008-11-26
    • Iwate Industrial Research CenterKanto Auto Works Ltd地方独立行政法人 岩手県工業技術センター関東自動車工業株式会社
    • KATO YOSHIHIROSONODA TETSUYAKUWAJIMA TAKAYUKISAITO TAKASHISUZUKI KAZUTAKAFUJIWARA MAKI
    • B21D37/20B21D24/04
    • PROBLEM TO BE SOLVED: To ensure the wear resistance and the galling resistance of a bead of a drawing press die, and to reduce the hardening man-hour of the bead. SOLUTION: A bead machining method includes: a first machining step 102 of executing the rough machining of the predetermined shapes of a cushion ring 32 of a lower die 3, and a recessed bead 62 and a projecting bead 61 of an upper die 2; a second machining step 103 of executing the digging processing of the rough-machined bead parts in the first machining step to the predetermined depth; a third machining step 104 of forming a coating film 7 on the dig-processed bead parts in the second machining step with the film thickness with a finishing margin being added thereto by executing the film deposition of hard particles with the cold spray; and a fourth machining step 105 of finishing the coating film 7 deposited on the bead parts in the third machining step. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了确保拉伸压模的珠的耐磨性和耐擦伤性,并且降低珠的硬化工时。 钢珠加工方法包括:对下模3的缓冲环32的预定形状进行粗加工的第一加工步骤102,以及上模的凹入珠62和凸出凸缘61 2; 第二加工步骤103,将第一加工步骤中的粗加工珠部分的挖掘处理执行到预定深度; 第三加工步骤104,在第二加工步骤中,通过执行用冷喷雾进行硬质颗粒的薄膜沉积,在其上添加具有精加工边缘的薄膜厚度的第二加工步骤中的经处理的小珠部分上的涂膜7; 以及在第三加工步骤中完成沉积在胎圈部上的涂膜7的第四加工步骤105。 版权所有(C)2010,JPO&INPIT