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    • 3. 发明专利
    • Dog clutch device
    • 狗离合器装置
    • JP2010196748A
    • 2010-09-09
    • JP2009040636
    • 2009-02-24
    • Kobashi Kogyo Co Ltd小橋工業株式会社
    • TAKARAKURA NOBUYUKI
    • F16D11/10F16D11/06
    • PROBLEM TO BE SOLVED: To provide a dog clutch device capable of restraining a tooth hitting sound generated by a collision of mutual pawl parts, even if motive power transmitted to a driving side dog clutch fluctuates. SOLUTION: This dog clutch device 50 is installed in respective tip parts of a body side rotary shaft 17a and an extension side rotary shaft 31a, and transmits rotational power by meshing the mutual pawl parts of the driving side dog clutch 51 and a driven side dog clutch 60 for arranging a plurality of pawl parts 53 and 62 at an interval in the substrate peripheral direction in a peripheral edge part of a substrate, and has a projection part 54 annularly projected inside the pawl part 53 of the driving side dog clutch 51 arranged on the body side rotary shaft 17a, and a metallic material plate spring member 65 arranged inside the pawl part 62 of the driven side dog clutch 60 arranged on the extension side rotary shaft 31a and elastically deformed by being pushed by the projection part 54 while meshing the mutual pawl parts of a pair of dog clutches. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使传递到驱动侧爪式离合器的动力波动,也能够提供能够抑制由相互爪部的碰撞产生的齿打击声的犬爪式离合器装置。 解决方案:该爪式离合器装置50安装在车身侧旋转轴17a和延伸侧旋转轴31a的各个尖端部分中,并通过啮合驱动侧爪式离合器51的相互棘爪部分和 驱动侧爪式离合器60,用于在基板的周缘部中沿基板周向设置多个棘爪部53,62,并且具有突出部54,该突起部54环绕地突出到驱动侧爪的爪部53内 布置在车身侧旋转轴17a上的离合器51和布置在从动侧爪式离合器60的棘爪部62内侧的金属材料板弹簧构件65,其配置在延伸侧旋转轴31a上,并被突出部分推动而弹性变形 同时啮合一对狗离合器的相互棘爪部分。 版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Synchronizing device for transmission
    • 用于传输的同步装置
    • JP2005291423A
    • 2005-10-20
    • JP2004109562
    • 2004-04-02
    • Kyowa Metal Work Co Ltd協和合金株式会社
    • HIRAIWA KAZUMI
    • F16D11/06F16D23/06
    • F16D11/06F16D23/06
    • PROBLEM TO BE SOLVED: To avoid the deterioration in an operation feeling, in a synchronizing device for a transmission for improving synchronizing performance by the self-servo action. SOLUTION: This synchronizing device has a thrust piece 26 for transmitting friction torque generated in a synchronizing ring 24 to inclined faces 12g, 12h, 12i and 12j of a hub 12 in a process of pressing chamfers 24e and 24f of the synchronizing ring 12, by being pressed in the shaft direction from a sleeve 16, by engaging with a groove 16e of the sleeve 16. The thrust piece 26 is provided with a regulating means for regulating relative rotation between the synchronizing ring 24 and the hub 12 after finishing the synchronizing action performed by pressing the synchronizing ring 24 in the shaft direction. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了避免由于自伺服动作改善同步性能的用于变速器的同步装置中的操作感觉的劣化。 解决方案:该同步装置具有推力件26,用于在同步环24的倾斜面24e和24f的加压过程中将在同步环24中产生的摩擦转矩传递到轮毂12的倾斜面12g,12h,12i和12j 如图12所示,通过与套筒16的槽16e接合而通过从套筒16沿轴向按压。止推件26设有调节装置,用于调节完成后同步环24和轮毂12之间的相对旋转 通过沿轴向按压同步环24执行的同步动作。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Fishing reel
    • JP2004016177A
    • 2004-01-22
    • JP2002179320
    • 2002-06-20
    • Daiwa Seiko Incダイワ精工株式会社
    • KOIKE MAMORUSUKEGAWA ARATA
    • A01K89/01A01K89/015F16D11/06
    • PROBLEM TO BE SOLVED: To prevent the mis-reversion of a switching mechanism of a fishing reel kept in a line-releasing state by a non-contacting magnetic action. SOLUTION: A rotor is attached by supporting a cylindrical rotary shaft 11 with a bearing in the front part 1a of a reel body 1. A disk collar 1b is formed at the back of the front part 1a of the body 1 and a ring-shaped magnetic material 21 is fixed to the front face of the collar 1b. One of the supporting arms of the rotor contains an action rod and a pipe 4 swinging by the selection of a line winding position and a line releasing position and protruding from the supporting arm. A bail-acting member 5 is rotatably attached to the rear face of the supporting arm with a screw 30. The acting member is rotated at the rear end 4c of the pipe 4. The protruded part 5c of the bail-acting member 5 and a magnet 31 are positioned in a non-contacting magnetic action area opposite to the ring-shaped magnetic material 21 and receives the magnetic force in the line-releasing state. COPYRIGHT: (C)2004,JPO