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    • 4. 发明授权
    • Removable electrode
    • 可拆卸电极
    • US06531037B2
    • 2003-03-11
    • US09796629
    • 2001-03-02
    • Hitoshi Ohmori
    • Hitoshi Ohmori
    • C25F700
    • B24B53/001B24B53/12
    • There is disclosed a removable electrode for electrolytic dressing grinding in which the electrode is disposed opposite to a processing surface of a conductive grinding wheel via a gap, a conductive liquid is passed through between the electrode and the conductive grinding wheel to apply a voltage thereto, the grinding wheel is dressed by electrolysis and a workpiece is simultaneously ground, the electrode comprising: an electrode support member 12 having a surface 12a disposed opposite to the processing surface of the grinding wheel via a constant gap; a conductive foil 14 detachably attached to and along the opposite surface of the electrode support member; and a conductive terminal 16 for contacting the conductive foil to apply the voltage to the conductive foil. Even when a deposit is built up on a cathode surface, the cathode surface can be cleaned in a short time. Even after repeated use, an electrode shape does not change. Therefore, an ELID grinding apparatus can steadily be operated in an unmanned manner for a long time.
    • 公开了一种用于电解修整研磨的可移除电极,其中电极经由间隙与导电研磨轮的处理表面相对地布置,导电液体通过电极和导电研磨轮之间以向其施加电压, 通过电解修整砂轮并同时研磨工件,电极包括:电极支撑构件12,其具有经由恒定间隙与砂轮的处理表面相对设置的表面12a; 可拆卸地附接到电极支撑构件的相对表面并且沿着电极支撑构件的相对表面的导电箔14; 以及用于接触导电箔以将电压施加到导电箔的导电端子16。 即使在阴极表面上形成沉积物,也可以在短时间内清洁阴极表面。 即使重复使用,电极形状也不会改变。 因此,ELID研磨装置可以长时间无人操作地稳定地操作。
    • 8. 发明授权
    • Car door glass run
    • 车门玻璃跑
    • US6138414A
    • 2000-10-31
    • US149104
    • 1998-09-08
    • Hitoshi OhmoriMasanori AritakeAtushi Yatuda
    • Hitoshi OhmoriMasanori AritakeAtushi Yatuda
    • B60J10/00B60J10/04E05D15/16
    • B60J10/27B60J10/17B60J10/74
    • A door glass run attaches to a door frame of a vehicle for guiding upward and downward movement of a glass window. In the door glass run of this invention, a plurality of grooves formed in the bottom surface of the door glass run extend lengthwise and are spaced widthwise from each other at predetermined intervals. According to one embodiment, the grooves are arranged so as to successively increase in cross-sectional areas thereof from a centermost groove or centermost grooves to outermost grooves. According to another embodiment, the bottom surface of the door glass run includes both a central surface portion that is flat and free of grooves and side surface portions, which are formed on opposite side walls of the flat central surface portion and have grooves formed therein.
    • 门玻璃运行连接到车辆的门框以引导玻璃窗的向上和向下运动。 在本发明的门玻璃中,形成在门玻璃的底面的多个槽长度方向延伸,并以预定的间隔相互间隔开。 根据一个实施例,凹槽被设置成从其最中间的凹槽或最里面的凹槽到最外面的凹槽的横截面面积连续地增加。 根据另一实施例,门玻璃行程的底面包括形成在平坦中心表面部分的相对侧壁上并具有形成在其中的槽的平坦且没有凹槽和侧表面部分的中心表面部分。
    • 10. 发明授权
    • Method and apparatus for grinding with electrolytic dressing
    • 用电解敷料研磨的方法和装置
    • US5547414A
    • 1996-08-20
    • US294335
    • 1994-08-23
    • Hitoshi Ohmori
    • Hitoshi Ohmori
    • B23H5/00B23H5/06B24B47/25B24B53/00B24B49/00
    • B24B53/001B24B49/00
    • An apparatus for grinding a workpiece while electrolytically dressing an electrically conductive grinding wheel. The apparatus has an electrically conductive grinding wheel with a contact surface for contacting the workpiece, an electrode opposed to the grinding wheel and spaced a distance therefrom, a nozzle for supplying conductive fluid between the grinding wheel and the electrode, and a device for applying a voltage between the grinding wheel and the electrode. An eddy current sensor is arranged in proximity to the working surface of the grinding wheel for measuring the position of the grinding wheel in a non-contact manner. A grinding wheel controlling device is provided for controlling the position of the grinding wheel based on the values measured by the eddy current sensor. The apparatus can measure the dimensions of the grinding wheel during its grinding operation without being influenced by the grinding fluid and the nonconductive film formed on the wheel and can therefore efficiently carry out high accuracy grinding without a high degree of operator skill.
    • 一种用于在对导电砂轮进行电解修整的同时研磨工件的装置。 该设备具有导电研磨轮,其具有用于接触工件的接触表面,与砂轮相对并与其间隔一段距离的电极,用于在砂轮和电极之间供应导电流体的喷嘴,以及用于施加 砂轮和电极之间的电压。 涡轮传感器布置在砂轮的工作表面附近,用于以非接触的方式测量砂轮的位置。 提供了一种砂轮控制装置,用于基于由涡流传感器测量的值来控制砂轮的位置。 该设备可以在研磨操作期间测量砂轮的尺寸,而不受磨削流体和形成在车轮上的非导电膜的影响,并且因此可以高效率地进行高精度的研磨而不需要高度的操作技能。