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    • 1. 发明授权
    • Electric power unit for electric discharge surface treatment and method of electric discharge surface treatment
    • 放电表面处理用电力单元及放电表面处理方法
    • US06501232B1
    • 2002-12-31
    • US09936345
    • 2001-09-12
    • Akihiro GotoToshio MoroMasao Akiyoshi
    • Akihiro GotoToshio MoroMasao Akiyoshi
    • G05F100
    • B23H1/022C23C26/00
    • In the first pulse width T1 of an electric discharge current, the group of switching elements (10) are controlled by the control means (11) and the first peak value Ip1 is set at a predetermined value and the electrode material is emitted so that a predetermined quantity of electrode material can be supplied, and the thus emitted electrode material is made to adhere to the workpiece (2) so as to compose the electrode component (15a). In the second pulse width T2 of an electric discharge current, the second peak value Ip2 is set so that the emission of electrode material can be suppressed and the electrode component (15a) adhering to the workpiece (2) can be melted, and the electrode component (15a) is melted and a hard coat composed of the electrode component (15b) melted on the workpiece (2) is formed. In this way, an excellent hard coat, the crystal grains of which are fine, can be formed on the workpiece (2).
    • 在放电电流的第一脉冲宽度T1中,通过控制装置(11)控制开关元件组(10),将第一峰值Ip1设定为预定值,并且发射电极材料,使得 可以提供预定量的电极材料,并且将如此发射的电极材料粘附到工件(2)上以构成电极部件(15a)。 在放电电流的第二脉冲宽度T2中,第二峰值Ip2被设定为能够抑制电极材料的发射,并且附着于工件(2)的电极部件(15a)能够熔化,并且电极 组分(15a)熔化,并且形成由在工件(2)上熔化的电极组分(15b)组成的硬涂层。 以这种方式,可以在工件(2)上形成晶粒细小的优异的硬涂层。
    • 5. 发明授权
    • Method of electrodischarge wire machining
    • 放电线加工方法
    • US06686554B1
    • 2004-02-03
    • US10069504
    • 2002-02-27
    • Akihiro GotoToshio MoroSeiji Satou
    • Akihiro GotoToshio MoroSeiji Satou
    • B23H702
    • B23H7/36B23H7/02B23H7/101
    • A method of wire electric discharge machining by which an electric discharge is generated in a gap between a wire electrode (1a) and a workpiece (2) so that the workpiece (2) is machined, includes the steps of: a first step in which electric discharge machining is conducted in a dielectric liquid (4a); a second step in which electric discharge machining is conducted in mist (7); and a third step in which electric discharge machining is conducted in gas (8), such that the machining process is changed over when straightness of the workpiece (2) becomes a predetermined value. It is possible to provide a method of wire electric discharge machining, the productivity of which is high, suitable for highly accurate machining.
    • 一种在线电极(1a)和工件(2)之间的间隙中产生放电以便加工工件(2)的放电加工的放线加工方法包括以下步骤:第一步骤,其中 电介质液体(4a)中进行放电加工。 进行放电加工的第二步骤(7); 以及在气体(8)中进行放电加工的第三步骤,使得当所述工件(2)的直线度达到预定值时,所述加工过程被切换。 可以提供一种线材放电加工的方法,其生产率高,适合于高精度的加工。
    • 8. 发明授权
    • Discharge surface treating electrode and production method thereof
    • 放电表面处理电极及其制造方法
    • US06935917B1
    • 2005-08-30
    • US09787359
    • 1999-07-16
    • Akihiro GotoToshio Moro
    • Akihiro GotoToshio Moro
    • B23H1/06B23H9/00H01J29/04H01T14/00
    • B23H1/06B23H9/00
    • In an electrode for electric discharge surface treatment used in electric discharge surface treatment for forming a hard coating on the surface of a treated material through the energy by generating electric discharge between the electrode and the treated material, a TiC powder (11) which is metal carbide and a TiH2 powder (12) which is metal hydride are mixed and heating treatment is performed after compression molding and hydrogen in the TiH2 powder (12) is desorbed to make a Ti powder (13) and a practical electrode (10) for electric discharge surface treatment having moderate strength and crumbliness as well as safety is formed.
    • 在用于放电表面处理的放电表面处理用的电极表面处理中,通过在电极和被处理材料之间产生放电,通过能量在处理材料的表面上形成硬涂层的TiC粉末(11)是金属 碳化物和作为金属氢化物的TiH 2 N 2粉末(12)进行混合,在压缩成型后进行加热处理,并将TiH 2 N 2粉末(12)中的氢解吸到 制成Ti粉末(13)和用于放电表面处理的实用电极(10),其具有中等强度和细度以及安全性。
    • 9. 发明授权
    • Discharge surface treatment electrode, manufacturing method thereof and discharge surface treating method
    • 放电表面处理电极,其制造方法和放电表面处理方法
    • US06808604B1
    • 2004-10-26
    • US10049311
    • 2002-02-12
    • Akihiro GotoToshio Moro
    • Akihiro GotoToshio Moro
    • H05F300
    • C23C26/00C23C26/02
    • WC powder (11) and W powder (12) are mixed and entered in a press mold and compressed and molded, thereby forming a discharge surface treatment electrode (10). Discharge is caused to occur between the discharge surface treatment electrode (10) and a workpiece (16) by a discharge surface treatment power unit (17), whereby a component of the discharge surface treatment electrode (10) melted by discharge heat is deposited on the workpiece (16). W, a component of the discharge surface treatment electrode (10), reacts with C, a component of work liquid (4), to produce WC and together with the WC which is a component of the discharge surface treatment electrode (10) a hard film (20) made of WC is formed on the workpiece (16). The hardness and strength of the hard film formed on the workpiece (16) by the discharge surface treatment can be enhanced.
    • 将WC粉末(11)和W粉末(12)混合并进入压制模具中并压缩和模制,从而形成排出表面处理电极(10)。 通过放电表面处理电力单元(17)在放电表面处理电极(10)和工件(16)之间发生放电,由此通过放电热熔化的放电表面处理电极(10)的一部分沉积在 工件(16)。 W,放电表面处理电极(10)的成分与作为工作液(4)的成分的C反应,生成WC,并与作为放电表面处理电极(10)的成分的WC一起形成硬 在工件(16)上形成由WC制成的薄膜(20)。 可以提高通过排出表面处理在工件(16)上形成的硬膜的硬度和强度。