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    • 81. 发明专利
    • Axial flow fan
    • 轴流风扇
    • JP2013224627A
    • 2013-10-31
    • JP2012097508
    • 2012-04-23
    • Mitsubishi Electric Corp三菱電機株式会社
    • MORIYAMA TAKASHIKOGA KIYONORIAKIYOSHI MASAONAKAJIMA SEIJI
    • F04D29/54
    • PROBLEM TO BE SOLVED: To provide an axial flow fan capable of preventing energy loss by preventing separation of an air flow at a diffuser even when a divergence angle of the diffuser is increased and capable of increasing a static pressure recovery quantity at the diffuser.SOLUTION: An axial flow fan 1 comprises: a rotary shaft 3; a shroud 6 covering an outer circumferential surface of the rotary shaft 3 via a predetermined clearance; a compression stage 20 provided in the shroud 6 and having a plurality of moving blades 2 rotated with the rotary shaft 3 and a plurality of stationary blades 5 arranged side-by-side at a downstream side of the moving blades 2; and a diffuser 30 provided at a downstream side of the compression stage 20. At least one of the plurality of stationary blades 5 has a stagger angle gradually increased from a radial inner end 12 to a radial outer end 11.
    • 要解决的问题:提供一种轴流式风扇,其能够通过防止分散器中的空气流分离而防止能量损失,即使扩散器的发散角增加并且能够增加扩散器处的静压恢复量。 轴流风扇1包括:旋转轴3; 护罩6,经由预定间隙覆盖旋转轴3的外周面; 设置在护罩6中并且具有多个与旋转轴3一起旋转的动叶片2和在动叶片2的下游侧并排设置的多个固定叶片5的压缩台20; 以及设置在压缩级20的下游侧的扩散器30.多个静止叶片5中的至少一个具有从径向内端12向径向外端11逐渐增大的交错角。
    • 83. 发明专利
    • Peening method
    • 联合方法
    • JP2005271136A
    • 2005-10-06
    • JP2004088028
    • 2004-03-24
    • Ishikawajima Harima Heavy Ind Co LtdMitsubishi Electric Corp三菱電機株式会社石川島播磨重工業株式会社
    • OCHIAI HIROYUKIWATANABE MITSUTOSHIGOTO AKIHIROAKIYOSHI MASAO
    • B23H9/00B23P9/02C21D7/04
    • PROBLEM TO BE SOLVED: To apply residual compressive stress to the surface of a treated part of an engine part by causing pulse-like discharge between a discharge electrode and the surface of an energizing tape to make plasma collide with the surface of the energizing tape.
      SOLUTION: An insulating tape 29 is stuck to a metallic product 1 to cover a treated part 5a, the energizing tape 31 is stuck to the insulating tape 29 to be aligned with the surface shape of the treated part 5a, and pulse-like discharge D is caused between the discharge electrode 23 and the energizing tape 31 in insulating working liquid L, whereby plasma P is explosively generated, and while the plasma P is sealed not to be released to the outside by the working fluid L, it is collided with the surface of the energizing tape 31.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过在放电电极和激励带的表面之间引起脉冲状放电使残余压缩应力施加到发动机部件的处理部分的表面,使等离子体与 通电胶带 解决方案:将绝缘带29粘贴到金属制品1以覆盖处理部分5a,将激励带31粘贴到绝缘带29上以与处理部分5a的表面形状对准, 在绝缘加工液L中的放电电极23与激励带31之间产生类似的放电D,从而产生等离子体P,同时等离子体P被工作液L密封而不被释放到外部, 与激励带31的表面相撞。版权所有(C)2006,JPO&NCIPI
    • 88. 发明专利
    • Heat sink
    • 散热器
    • JP2010287600A
    • 2010-12-24
    • JP2009138032
    • 2009-06-09
    • Mitsubishi Electric Corp三菱電機株式会社
    • AKIYOSHI MASAOISHIBASHI SEIJIMATSUO HARUYUKIHONISHI NAOKI
    • H01L23/473H01L23/467H05K7/20
    • PROBLEM TO BE SOLVED: To provide a heat sink which is compact is size, superior in cooling performance, and can easily be manufactured.
      SOLUTION: The heat sink 10 cools a heating element 12, and includes a hollow square tube 20 in which a refrigerant flows, a partition plate 30 forming flow passages 26, 28 for the refrigerant in the hollow square tube 20, and a plurality of fins 32a, 34a protruding to the flow passages 26, 28 successively in a width direction of the hollow square tube 20. Intervals between end fins 32c, 34c (32c, 34b) positioned at width-directional ends among the plurality of fins 32a, 34a and the hollow square tube 20 are wider than intervals between the fins 32a, 34a.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供紧凑的散热器尺寸,冷却性能优异,并且可以容易地制造。 解决方案:散热器10冷却加热元件12,并且包括制冷剂流过的中空方管20,形成用于中空方管20中的制冷剂的流动通道26,28的隔板30,以及 在空心方管20的宽度方向上连续地突出到流路26,28的多个翅片32a,34a。位于多个翼片32a之间的宽度方向端部的端部翅片32c,34c(32c,34b)之间的间隔 ,34a和中空方管20比翅片32a,34a之间的间隔宽。 版权所有(C)2011,JPO&INPIT
    • 89. 发明专利
    • Surface treatment method by electric discharge
    • 电力放电的表面处理方法
    • JP2009299194A
    • 2009-12-24
    • JP2009227187
    • 2009-09-30
    • Mitsubishi Electric Corp三菱電機株式会社
    • AKIYOSHI MASAOGOTO AKIHIRONAKAMURA KAZUJITERAMOTO HIROYUKI
    • C23C26/00
    • PROBLEM TO BE SOLVED: To provide a surface treatment method using electric discharge for the purpose of forming a coating film free from a crack.
      SOLUTION: The surface treatment method using electric discharge is directed for generating a pulse-shaped electric discharge in a working liquid or a gas between a workpiece and an electrode which is prepared from a metal powder or a powder of a compound of a metal, a green powder-compact formed by molding a ceramic powder, a heat-treated powder-compact of the green compact, or a metal, while keeping a gap between them by using a servo mechanism so that the electrode and the workpiece do not come in contact with each other; and forming a coating film made from an electrode material or a reacted substance of the electrode material by the electric discharge energy, on the surface of the workpiece. The surface treatment method includes forming a mottled coating film on the surface to be film-formed of the workpiece on an electrode-projected plane, in which an exposed portion of a base material, at which the surface of the base material of the workpiece is exposed, and an electrode-material coating film portion formed from a material which has been supplied from the electrode coexist. The surface of the coating film thus formed on the surface of the workpiece has no crack formed by heat due to the electric discharge.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了形成没有裂纹的涂膜的目的,提供使用放电的表面处理方法。 解决方案:使用放电的表面处理方法是针对工作液体中的脉冲放电或工件和电极之间的气体,其由金属粉末或化合物的粉末制备 金属,通过模制陶瓷粉末形成的绿色粉末压块,生坯的热处理粉末压块或金属,同时通过使用伺服机构保持它们之间的间隙,使得电极和工件不 相互接触; 在工件表面上形成由电极材料或电极材料的反应物质通过放电能量制成的涂膜。 表面处理方法包括在电极投影面上在被成膜的表面上形成斑驳涂膜,其中基材的露出部分在工件的基材表面为 并且由从电极供给的材料形成的电极材料涂膜部分共存。 这样形成在工件表面上的涂膜的表面由于放电而没有由热量形成的裂纹。 版权所有(C)2010,JPO&INPIT
    • 90. 发明专利
    • Heat sink and electric apparatus
    • 散热电器
    • JP2009176871A
    • 2009-08-06
    • JP2008012650
    • 2008-01-23
    • Mitsubishi Electric Corp三菱電機株式会社
    • AKIYOSHI MASAOMAEKAWA HIROTOSHIKOBAYASHI MASARUISHIBASHI SEIJIMATSUO HARUYUKI
    • H01L23/473H05K7/20
    • PROBLEM TO BE SOLVED: To provide a compact heat sink having higher cooling performance which can be assembled easily and also provide an electric apparatus including the same heat sink.
      SOLUTION: The heat sink (10) is mounted to a heating element and cools the heating element. The heat sink includes: a housing 14 forming a first coolant flowing route 36 and a second coolant flowing route 28 adjacent to the first coolant flowing route 36; a separating wall 44 arranged between the first and second coolant flowing routes 36, 38 to separate the first and second coolant flowing routes 36, 38; and a plurality of first fins 40 protruded to the first coolant flowing route 36 and a plurality of second fins 42 protruded to the second coolant flowing route 38, both fins being integrally formed to the housing 14.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供具有较高冷却性能的紧凑型散热器,其可以容易地组装,并且还提供包括相同散热器的电气设备。 解决方案:散热片(10)安装在加热元件上并冷却加热元件。 散热器包括:形成第一冷却剂流动路径36的壳体14和邻近第一冷却剂流动路径36的第二冷却剂流动路径28; 布置在第一和第二冷却剂流动路线36,38之间以分离第一和第二冷却剂流动路线36,38的分隔壁44; 以及突出到第一冷却剂流动路径36的多个第一散热片40和突出到第二冷却剂流动路径38的多个第二散热片42,两个散热片一体形成在壳体14上。版权所有(C)2009 ,JPO&INPIT