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    • 1. 发明授权
    • Method and device for gas phase diffusion coating of metal components
    • 金属部件气相扩散涂层的方法和装置
    • US07294361B2
    • 2007-11-13
    • US10250974
    • 2002-01-09
    • Thomas DautlMarkus NiedermeierHorst Pillhoefer
    • Thomas DautlMarkus NiedermeierHorst Pillhoefer
    • C23C16/00
    • C23C10/16C23C10/02C23C10/06
    • A process for gas diffusion coating of metallic components; in which a component surface which is to be coated is brought into contact with a metal halide as coating gas, to form a diffusion layer with a defined layer thickness and a defined coating metal content in % by weight in the component surface, working on the basis of a nominal concentration of the metal halide at the component surface which, at a defined coating temperature, leads to a defined coating time, wherein a first concentration, which is higher than the nominal concentration, for the metal halide is established for a first time, and at least one second concentration, which is at or below the nominal concentration, is established at the component surface for at least one second time, the first and the at least one second time being selected in such a way that their sum is shorter than the coating time with the nominal concentration. Also disclosed is a device for the process.
    • 一种金属部件的气体扩散涂覆工艺; 将要被涂覆的组分表面与作为涂覆气体的金属卤化物接触,以形成具有限定的层厚度的限定涂层金属含量和在组分表面中的重量%的限定涂层金属含量,在 在组分表面处的金属卤化物的标称浓度的基础,其在限定的涂布温度下导致限定的涂布时间,其中为第一种金属卤化物建立高于标称浓度的第一浓度 时间,并且处于或低于标称浓度的至少一个第二浓度在组分表面处建立至少一秒钟,第一和至少一个第二时间被选择为使得它们的和为 比标称浓度的涂布时间短。 还公开了用于该过程的装置。
    • 5. 发明申请
    • Method for Production of a Coating and Anode Used in Such a Method
    • 用于这种方法的涂层和阳极的制造方法
    • US20080035486A1
    • 2008-02-14
    • US11579721
    • 2005-05-02
    • Anton AlbrechtThomas DautlOemer-Refik OezcanHorst Pillhoefer
    • Anton AlbrechtThomas DautlOemer-Refik OezcanHorst Pillhoefer
    • C25D5/04C25D5/18
    • C25D5/18C23C10/02C25D3/50C25D5/04C25D5/08C25D17/10
    • The invention relates to a method for production of a corrosion resistant and/or oxidation resistant coating, whereby at least one metal of the platinum group, in particular platinum and/or palladium, or an alloy based on at least one metal of the platinum group, is deposited by galvanizing onto a surface of a substrate, and whereby thereafter an aluminizing of the thusly galvanically coated substrate is carried out. According to a first aspect of the invention, the galvanic deposition of the or each metal of the platinum group or the corresponding alloy is carried out in an at least two-staged deposition process, whereby in a first stage of the deposition process a current magnitude applied for the galvanizing is increased continuously or step-wise beginning from an initial value up to a maximum value, and whereby in a second stage of the deposition process the current magnitude applied for the galvanizing is maintained constant at the maximum value. According to a second aspect of the invention, the galvanic deposition of the or each metal of the platinum group or the corresponding alloy is carried out with use of at least one open-celled or open-mesh or porous anode, whereby a relative motion is established between on the one hand a galvanic bath and on the other hand the substrate as well as the or each open-celled or open-mesh or porous anode during the galvanic deposition. An embodiment of the inventive method in which the two aspects are combined with one another is especially preferred.
    • 本发明涉及一种生产耐腐蚀和/或抗氧化涂层的方法,其中至少一种铂族金属,特别是铂和/或钯,或基于铂族金属的至少一种金属的合金 通过镀锌而沉积在基板的表面上,由此进行如此镀敷电镀基板的镀铝。 根据本发明的第一方面,铂族或其相应合金的金属或每种金属的电沉积在至少两阶段的沉积工艺中进行,由此在沉积工艺的第一阶段中,电流量级 适用于镀锌的涂层从初始值开始逐渐增加到最大值,并且由此在沉积工艺的第二阶段中,施加于镀锌的电流幅值保持恒定在最大值。 根据本发明的第二方面,使用至少一个开孔或开孔或多孔阳极进行铂族金属或每种金属或相应的合金的电沉积,由此相对运动是 在电沉积期间一方面建立了电镀槽,另一方面建立了基板以及每个开孔或开孔或多孔阳极。 两个方面彼此组合的本发明方法的一个实施例是特别优选的。