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    • 1. 发明公开
    • PROCESS FOR PRODUCING ELECTRODE FOR ELECTRIC DISCHARGE SURFACE TREATMENT AND ELECTRODE FOR ELECTRIC DISCHARGE SURFACE TREATMENT
    • 电放电表面处理用电极的制造方法及放电表面处理用电极
    • KR20090086945A
    • 2009-08-14
    • KR20097007458
    • 2006-09-11
    • MITSUBISHI ELECTRIC CORPIHI CORP
    • TERAMOTO HIROYUKISATO YUKIOSUZUKI AKIHIROGOTO AKIHIRONAKAMURA KAZUSHI
    • C23C26/00B22F5/00
    • C23C26/00B22F1/0062B22F1/0085B22F2998/10C22C1/1084C22C19/07C23C8/12B22F1/0003B22F1/0096
    • A process for producing an electrode for electric discharge surface treatment capable of forming of a coating excelling in abrasion resistance over a temperature range from low to high temperature by electric discharge surface treatment; and such an electrode for electric discharge surface treatment. There is provided a process for producing an electrode for electric discharge surface treatment useful in electric discharge surface treatment in which using as an electrode a molded powder obtained by molding of a metal powder, or powder of metal compound, or powder of conductive ceramic, pulsed electric discharge is generated between the electrode and a work in a machining liquid or gas so that by the energy thereof, on the surface of the work there is formed either a coating consisting of the material of the electrode or a coating of substance resulting from reaction of the material of the electrode by the pulsed electric discharge energy, which process comprises increasing the oxygen within the powder; mixing together the powder with the oxygen increased, an organic binder and a solvent to thereby obtain a mixture liquid; carrying out granulation from the mixture liquid to thereby obtain granulated powder; and molding the granulated powder to thereby obtain a molded item of 4 to16 wt.% oxygen concentration. ® KIPO & WIPO 2009
    • 一种用于制造放电表面处理用电极的方法,其能够通过放电表面处理在低温到高温的温度范围内形成耐磨性优异的涂层; 和这种用于放电表面处理的电极。 提供一种用于放电表面处理的放电表面处理用电极的制造方法,其特征在于,使用通过模塑金属粉末或金属化合物粉末或导电性陶瓷粉末而得到的成型粉末作为电极, 在电极和加工液体或气体中的工件之间产生放电,使得通过其能量,在工件的表面上形成由电极的材料或由反应产生的物质的涂层组成的涂层 的电极的材料通过脉冲放电能量,该过程包括增加粉末中的氧气; 将粉末与氧增加混合在一起,有机粘合剂和溶剂,从而获得混合液体; 从混合液中进行造粒,得到造粒粉末; 并成型造粒粉末,从而得到氧浓度为4〜16重量%的成型品。 ®KIPO&WIPO 2009
    • 8. 发明公开
    • COATING AND METHOD OF FORMING COATING
    • BESCHICHTUNG UND VERFAHREN ZUR BILDUNG EINER BESCHICHTUNG
    • EP2017370A4
    • 2017-05-03
    • EP06731198
    • 2006-04-05
    • MITSUBISHI ELECTRIC CORPIHI CORP
    • GOTO AKIHIROOKANE MASAHIRONAKAMURA KAZUSHITERAMOTO HIROYUKIOCHIAI HIROYUKIWATANABE MITSUTOSHI
    • C23C26/00C23C26/02
    • C23C26/02C23C8/80C23C26/00Y10T428/12493
    • To form a coating film having an excellent wear-resistant property in a temperature range from low temperature to high temperature a coating-film forming method includes a metal-powder producing step of producing a metal powder containing an element exhibiting a lubricating property when oxidized; an oxidizing step of oxidizing the metal powder so that an amount of oxygen contained in the metal powder is within 6 weight % to 14 weight %; and a coating-film forming step of forming a coating film on a material subject to a treatment, the coating film having such a composition that an area where an oxygen content is 3 weight % or less and an area where an oxygen content is 8 weight % or more are distributed in a unit area of the coating film when the metal powder is in a melted state or a semi-melted state, and an oxygen content of the entire coating film after the metal powder is melted or semi-melted being within 5 weight % to 9 weight %.
    • 为了形成在从低温到高温的温度范围内具有优异耐磨性的涂膜,涂膜形成方法包括:金属粉生成步骤,生成含氧化时显示润滑性的元素的金属粉; 将所述金属粉末氧化以使所述金属粉末中所含的氧量在6重量%至14重量%内的氧化步骤; 以及在经过处理的材料上形成涂膜的涂膜形成步骤,所述涂膜具有这样的组成:氧含量为3重量%以下的区域和氧含量为8重量%的区域 当金属粉末处于熔融状态或半熔融状态时,金属粉末熔融或半熔化后的整个涂膜的氧含量在涂覆膜的单位面积内 5重量%至9重量%。