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    • 2. 发明授权
    • Electrode for electro-erosion machining electrode
    • 电腐蚀加工电极用电极
    • US3740519A
    • 1973-06-19
    • US3740519D
    • 1972-03-27
    • CONNOR T O
    • O CONNOR T
    • B23H1/04B23P1/08B23P1/04
    • B23H1/04
    • Apparatus for and a method of electro erosion machining with increased stock removal rate with a fine finish is disclosed. The electro erosion machining apparatus disclosed includes an electrode having a plurality of separate portions insulated from each other and separately connected to a single source of pulsed electrical energy whereby the current from the source of pulsed electrical energy is divided among the separate electrode portions to provide a small current for each electrode. The method of the invention includes varying the current passed through each portion of the electrode, limiting the current through each portion of the electrode to a single direction and moving the electrode transversely of the direction of movement of the electrode toward a workpiece during electrical erosion machining to provide rapid total form machining.
    • 本发明公开了一种电蚀加工的设备和方法,其具有提高的去除率和精加工的精度。 所公开的电蚀加工装置包括具有彼此绝缘并且单独连接到单个脉冲电能源的多个分离部分的电极,由此来自脉冲电能源的电流在分离的电极部分之间分开,以提供 每个电极的电流小。 本发明的方法包括改变通过电极的每个部分的电流,将电流通过电极的每个部分限制到单个方向,并且在电腐蚀加工期间将电极横向于电极的移动方向朝向工件移动 提供快速整体加工。
    • 3. 发明授权
    • Structure for electrical machining
    • 电机结构
    • US3801770A
    • 1974-04-02
    • US3801770D
    • 1971-06-14
    • CONNOR T O
    • O CONNOR T
    • B23H1/00B23H7/00B23P1/08B23Q1/04B23Q3/04
    • B23H7/00B23H1/00B23H2400/10
    • A machine tool comprising a large elongated fluid tank, dry chamber boxes at each end of the tank supporting spindles having electrodes secured thereto for reciprocal movement toward and away from a workpiece positioned between the dry chambers in the middle of the fluid tank. Means for moving the dry chamber and the spindle and electrode carried thereby toward and away from the workpiece and for simultaneously rotating the spindles and electrodes. An electrical machining power supply with each spindle at each end of the dielectric tank, servo means for controlling the movement of the spindles and separate fluid supply means for passing fluid through the spindles to the electrodes. Adjusting bolt and abutment structure at one end of the tank to align the spindles at the opposite ends of the tank. Structures for hydraulically clamping a workpiece between the electrodes and for leveling a work table in position beneath the electrodes in the tank. The method including moving a pair of electrodes toward a workpiece from the opposite sides thereof, maintaining a predetermined gap between the electrodes and workpiece while simultaneously rotating the electrodes and passing an electric signal between the electrodes and workpiece in the presence of a dielectric or an electrolyte.
    • 一种包括大型细长流体箱的机床,在罐的每个端部处具有固定在其上的电极的干燥室箱,其具有固定到其上的电极,以便朝向和远离位于流体箱中间的干燥室之间的工件往复移动。 用于将干燥室和主轴和电极移动的装置用于移动和移出工件并同时旋转主轴和电极。
    • 5. 发明授权
    • Method and apparatus for electrical machining of metal
    • 金属电加工方法与装置
    • US3854025A
    • 1974-12-10
    • US36082973
    • 1973-05-16
    • CONNOR T O
    • O CONNOR T
    • B23H1/04B24B35/00B23K9/16
    • B23H1/04B24B35/005
    • The method of abrasion forming friable material such as carbon blocks to form the electrical discharge machining electrodes therefrom, comprising the steps of moving a master model, having an abrasive surface which is a mirror image of a desired form to be abrasion machined in the friable material, which surface is related in size to the desired form to be machined by an additional movement to be imparted to the master model, toward the friable material with the abrasive surface of the master model and workpiece in engagement while imparting the additional relative motion between the master model and workpiece, which additional relative motion is in all directions in a plane perpendicular to the direction of movement of the master model and workpiece and flushing between the master model and workpiece to prevent buildup of abraded particles of the workpiece on the master model.
    • 磨料形成脆性材料如碳块以形成其放电加工电极的方法包括以下步骤:移动具有研磨表面的主模型,所述研磨表面是在易碎材料中被磨削加工的所需形式的镜像 ,该表面的大小与要被赋予主模型的附加运动加工的期望形状相关联,朝向具有主模型和工件的研磨表面的易碎材料接合,同时在该模型之间施加额外的相对运动 主模型和工件,其在垂直于主模型和工件的运动方向的平面中的所有方向上的附加相对运动以及主模型和工件之间的冲洗以防止在主模型上累积工件的磨损颗粒。
    • 6. 发明授权
    • Electrical machining structure
    • 电机结构
    • US3772494A
    • 1973-11-13
    • US3772494D
    • 1971-06-14
    • CONNOR T O
    • O CONNOR T
    • B23H1/00B23P1/14B23P1/08
    • B23H1/00
    • A machine tool for electrical machining is disclosed which includes parallel linkage structure for moving an electrode toward and away from a workpiece. The parallel linkage structure, as disclosed, is driven by servo means to maintain a predetermined spark gap between an electrode secured to the machine tool structure and a workpiece supported thereby. A fixed work table is provided as part of the machine tool structure in conjunction with a work tank having no bottom which tank is vertically movable. The fixed work table forms the bottom of the work tank with the tank in an upper position. On lowering of the tank fluid in the tank is rapidly drained into a lower storage tank from which it may be pumped through a filter after which it is stored in an upper storage for reuse. The work tank is provided with a removable upper portion to facilitate positioning of a workpiece in the fixed worktable. A universal manifold is also provided whereby different fluid flow patterns may be provided from a single manifold to facilitate machining of workpieces requiring different flow patterns. The flow patterns of the universal manifold are readily selected by rotation of cylinders in the manifold.
    • 公开了一种用于电加工的机床,其包括用于使电极朝向和远离工件移动的平行连杆结构。 如所公开的那样,平行连杆结构由伺服装置驱动,以保持固定在机床结构上的电极和由其支撑的工件之间的预定火花隙。