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    • 5. 发明公开
    • Centerless grinder and wheel truing device therefor
    • Spitzenlose Schleifmaschine und AbrichtvorrichtungfürSchleifscheibe。
    • EP0626235A2
    • 1994-11-30
    • EP93850238.2
    • 1993-12-20
    • FUJI OOZX INC.
    • Harada, Katsuhiko, c/o Fuji Oozx Incorporated
    • B24B15/04B24B5/22B24B5/24B24B53/065B24B53/14
    • B24B15/04B24B5/22B24B5/24B24B53/065B24B53/14
    • A stem (24a) and a valve face (24b) of an engine valve (24) are ground by first (4) and second (21) grinding wheels respectively. A motor (20) for driving the second grinding wheel is mounted on a first plate (15) movable by a servomotor in a direction perpendicular to the axis of the wheel (21), and under the first plate (15), a second plate (14) is disposed to be movable in a direction parallel with the axis of the wheel (21). The valve face (24b) is ground obliquely by the second grinding wheel (21) by moving the two plates (14,13). The first grinding wheel (4) is trued by a first dresser (46) movable in directions parallel with and perpendicular to the axis of the first grinding wheel (4). The second grinding wheel (21) is trued by a second dresser (60) provided at the end of a support strut (52).
    • 发动机气门(24)的杆(24a)和阀面(24b)分别由第一(4)和第二(21)个砂轮研磨。 用于驱动第二砂轮的马达(20)安装在第一板(15)上,该第一板(15)能够通过伺服马达沿垂直于轮(21)的轴线的方向移动,并且在第一板(15)的下面, (14)设置成可以在与所述车轮(21)的轴线平行的方向上移动。 通过移动两个板(14),阀面(24b)被第二砂轮(21)倾斜地研磨。 第一砂轮(4)由第一修整器(46)修整,第一修整器(46)可在与第一砂轮(4)的轴线平行且垂直的方向上移动。 第二砂轮(21)由设置在支撑支柱(52)的端部处的第二修整器(60)来修整。
    • 8. 发明公开
    • VALVE SEAT MACHINING DEVICE, AND VALVE SEAT MACHINING METHOD USING SAID VALVE SEAT MACHINING DEVICE
    • VENTILSITZBEARBEITUNGSVORRICHTUNG UND VENTILSITZBEARBEITUNGSVERFAHREN MIT VERWENDUNG DER VENTILSITZBEARBEITUNGSVORRICHTUNG
    • EP3162477A1
    • 2017-05-03
    • EP16811632
    • 2016-06-15
    • MITSUBISHI HITACHI POWER SYS
    • SUGITANI DAICHIMATSUMOTO TAKAHIRO
    • B23B5/06B23B41/00B23B41/12B23P6/00
    • B24B15/04B23B41/12B23C3/056B23P6/00
    • A valve seat processing machine (1) configured to process a valve seat (118) in a valve device (101) including a valve body portion (110) which forms a flow passage of fluid and a valve drive portion (120) which drives a valve element (124) capable of tightly engaging with the valve seat (118) in the valve body portion (110) includes: a base portion (10) attached tc the valve body portion (110); a main body portion (20) movable relative to the base portion (10) in two different axial directions; a support portion (30) movable relative to the main bcdy portion (20) in a drive direction of the valve element (124); a main spindle (40) rotatable relative to the support portion (30) about an axis parallel to the drive direction of the valve element (124); a tool holder (50) configured to hold a tool (T) for processing the valve seat (118) and movable relative to the main spindle (40) in a direction intersecting the drive direction of the valve element (124); and a controller (60) configured to control movement of the support portion (30) and the tool holder (50).
    • 1.一种阀座加工机(1),构成为对阀装置(101)的阀座(118)进行加工,该阀座装置具有形成流体的流路的阀体部(110)和驱动该阀体的阀驱动部(120) 能够与所述阀体部(110)内的所述阀座(118)紧密卡合的阀体(124)具有:与所述阀体部(110)连接的基部(10); 主体部分(20),所述主体部分(20)能够在两个不同的轴向方向上相对于所述基部(10)移动; 支撑部分(30),所述支撑部分能够在所述阀门元件(124)的驱动方向上相对于所述主胎体部分(20)移动; 主轴(40),所述主轴能够围绕平行于所述阀元件(124)的驱动方向的轴线相对于所述支撑部分(30)旋转; 工具保持器(50),其构造成保持用于加工所述阀座(118)的工具(T)并且能够在与所述阀元件(124)的驱动方向相交的方向上相对于所述主轴(40)移动; 和控制器(60),其构造成控制支撑部分(30)和工具保持器(50)的运动。
    • 9. 发明公开
    • Process and apparatus for chucking and machining an elongated cylindrical article made of a ceramic material
    • 用于夹持和加工由陶瓷材料制成的细长的和圆柱的物品的方法和装置
    • EP0838303A1
    • 1998-04-29
    • EP97307798.5
    • 1997-10-02
    • NGK INSULATORS, LTD.NGK CERAMICS EUROPE S.A.
    • Nishio, AkifumiDeWitte, Carine Anne-Marie ClaudinePattimore, Jeffrey Philip John
    • B23Q3/18B24B41/06B24B15/04B24B5/50
    • B23Q3/186B23B23/00B23B2226/18B24B5/50B24B15/04B24B41/06Y10T82/19Y10T82/26Y10T82/29
    • A process for chucking and machining an elongated cylindrical article made of a ceramic material according to the present invention, comprises the steps of: (1) chucking the elongated cylindrical ceramic article between chuck heads at longitudinally opposite end portions of said ceramic article; (2) holding the elongated cylindrical article between the chuck heads under such a low chucking pressure as allowing the ceramic article to slip inside a driven side chuck head while being kept inside the chuck heads at the opposite end portions, and slipping the ceramic article inside the chuck heads for a given time under rotation of a driving chuck head so that any positional deviation between the location of a center axis passing centers of of the chuck heads and an axis of the ceramic article may be removed due to a self aligning centrifugal action of the ceramic article; (3) raising the chucking pressure of the chuck heads to such a level as required for machining the ceramic article; and (4) then machining a surface of the ceramic article by a machining tool.
    • 一种用于夹持和由陶瓷材料制成gemäß到本发明的细长的圆柱形制品的加工过程,包括以下步骤:(1)夹紧卡盘头之间在所述陶瓷制品的纵向相对端部的细长的圆柱形陶瓷制品; (2)保持所研究的卡盘头之间的细长的圆柱形制品的低夹持压力作为使陶瓷制品从动侧卡盘头内滑动,同时被保持在卡盘头内部的相对的端部,并滑动内部的陶瓷制品 对于给定的时间下的驱动卡盘头的旋转的卡盘头所以没有中心轴通过的卡盘头的与在陶瓷制品的轴线中心可以被去除的位置之间的任何位置偏差由于自对准离心作用 陶瓷制品; (3)提高卡盘头的夹紧压力,以根据需要用于加工陶瓷制品求的水平; 和(4)然后,通过加工工具加工的陶瓷制品的表面。