DISCHARGE SURFACE TREATMENT APPARATUS AND DISCHARGE SURFACE TREATMENT METHOD
    2.
    发明申请
    DISCHARGE SURFACE TREATMENT APPARATUS AND DISCHARGE SURFACE TREATMENT METHOD 有权
    放电表面处理装置和放电表面处理方法

    公开(公告)号:US20130344651A1

    公开(公告)日:2013-12-26

    申请号:US13820909

    申请日:2012-06-26

    IPC分类号: H01L21/02

    摘要: A discharge surface treatment apparatus supplies an electrode material to a surface of a treatment target member by generating pulsating discharges across an inter-electrode gap to form a coating of the electrode material, and includes a switching element that turns application of a voltage from a power source to the inter-electrode gap on/off, a capacitance element that is connected to the switching element in parallel with the inter-electrode gap, an inductance element that is connected in series between both of the switching element and the capacitance element and the inter-electrode gap, and a control unit that includes a function of periodically performing on/off so that an induced electromotive force generated in the inductance element due to a change in the current of discharge generated across the inter-electrode gap can be used as a voltage that induces the next discharge

    摘要翻译: 放电表面处理装置通过产生跨电极间隙的脉动放电而将电极材料供给到处理对象部件的表面,形成电极材料的涂层,并且包括切换元件,其将来自电力的电压 源极与电极间间隔开通/断开,与开关元件并联连接到电极间间隔的电容元件,串联连接在开关元件和电容元件之间的电感元件和 电极间间隙的控制单元,以及具有周期性地进行开/关的功能的控制单元,使得由于跨越电极间间隙产生的放电电流的变化而在电感元件中产生的感应电动势可以用作 导致下次放电的电压

    ELECTRODE FOR ELECTRIC-DISCHARGE SURFACE TREATMENT AND ELECTRIC-DISCHARGE SURFACE TREATMENT COATING
    3.
    发明申请
    ELECTRODE FOR ELECTRIC-DISCHARGE SURFACE TREATMENT AND ELECTRIC-DISCHARGE SURFACE TREATMENT COATING 审中-公开
    电放电表面处理电极和放电表面处理涂层

    公开(公告)号:US20130069015A1

    公开(公告)日:2013-03-21

    申请号:US13699794

    申请日:2010-05-26

    IPC分类号: H01B1/04 C22C38/02

    CPC分类号: H01B1/04 C22C38/02 C23C26/00

    摘要: In order to establish an electric-discharge surface treatment capable of forming a smooth high-hardness coating, in the electric-discharge surface treatment in which pulsed electric discharge is generated between the electrode and a base material in a machining fluid or in the air by using a green compact, which is formed by compressing powder of an electrode material, as an electrode, and by using energy of the electric discharge, a coating including the electrode material or a reaction product of the electrode material reacted by the electric discharge energy is formed on a surface of the base material, wherein, as the powder of the electrode material, a mixed powder formed by mixing 10 to 75 vol % of Si powder to powder of a hard material is used.

    摘要翻译: 为了建立能够形成平滑的高硬度涂层的放电表面处理,在电极和机械加工液中的空气中的空气中的电极和基材之间产生脉冲放电的放电表面处理中, 使用通过压缩电极材料的粉末作为电极而形成的生坯,并且通过使用放电能量,包括电极材料的涂层或电极材料与放电能反应的反应产物的涂层是 形成在基材的表面上,其中,作为电极材料的粉末,使用通过将10〜75体积%的Si粉末与硬质材料的粉末混合而形成的混合粉末。

    Coating film and coating-film forming method
    4.
    发明授权
    Coating film and coating-film forming method 有权
    涂膜和涂膜成型方法

    公开(公告)号:US08287968B2

    公开(公告)日:2012-10-16

    申请号:US12296179

    申请日:2006-04-05

    IPC分类号: H01T14/00 B32B15/00

    摘要: 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 %.

    摘要翻译: 为了形成在低温至高温的温度范围内具有优异的耐磨性的涂膜,涂膜形成方法包括:金属粉末的制造步骤,其制造含有氧化时具有润滑性的元素的金属粉末; 氧化金属粉末的氧化步骤,使得金属粉末中所含的氧含量在6重量%至14重量%之间; 以及在经受处理的材料上形成涂膜的涂膜形成步骤,所述涂膜具有氧含量为3重量%以下的面积和氧含量为8重量的区域的组成 当金属粉末处于熔融状态或半熔化状态时,涂膜的单位面积中分布有%以上,并且金属粉末后的整个涂膜的氧含量在内部熔融或半熔融 5重量%至9重量%。