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    • 1. 发明授权
    • Method for producing a heat insulating layer
    • 绝热层的制造方法
    • US06737110B1
    • 2004-05-18
    • US09868447
    • 2001-11-30
    • Ralf StolleThomas CosackKlaus SchweitzerMichael PulverGeorg Wahl
    • Ralf StolleThomas CosackKlaus SchweitzerMichael PulverGeorg Wahl
    • C23C1640
    • C23C16/405
    • A process for producing a thermal barrier coating, in which organometal complexes of zirconium and at least one stabilizing element selected from the group of the alkaline earth metals or rare earths are provided as starting substances, the starting substances are evaporated by heating and the coating gases that are generated in this manner are transported to a component to be coated, which is heated at a deposition temperature, where they are broken down so that a layer is deposited, in which process, in order to produce a thermal barrier coating with a columnar structure and a sufficient layer thickness, the starting substances are heated, at a process pressure of 0.5 to 50 mbar, to at most 250° C. so that the coating gases are formed, and the coating gases are transported to the component to be coated, the surface of which is heated at a deposition temperature of between 300° C. and 1100° C.
    • 提供了一种制备热障涂层的方法,其中提供锆和选自碱土金属或稀土族中的至少一种稳定元素的有机金属络合物作为起始物质,起始物质通过加热蒸发,并且涂覆气体 以这种方式产生的被传送到待涂覆的部件,其在沉积温度下被加热,在那里它们被分解,使得沉积一层,以便在其中生产具有柱状的热障涂层 结构和足够的层厚度,起始物质以0.5至50毫巴的加工压力加热至至多250℃,从而形成涂覆气体,并将涂覆气体输送到待涂覆的部件 ,其表面在300℃至1100℃的沉积温度下加热。
    • 4. 发明授权
    • Method for producing a slip layer which is resistant to corrosion and oxidation
    • 用于生产耐腐蚀和氧化的防滑层的方法
    • US06440499B1
    • 2002-08-27
    • US09622877
    • 2000-09-08
    • Gerhard WydraThomas CosackWolfgang Hinreiner
    • Gerhard WydraThomas CosackWolfgang Hinreiner
    • B05D102
    • C23C10/30
    • A method for producing a corrosion-resistant and an oxidation-resistant coating on a component in which a slurry is formed by mixing a binder solution with (1) a base powder selected from the group consisting of (a) MCrAlY wherein M is Ni or Co or both, (b) NiCrAl and (c) mixtures of (a) and (b) with (2) an added powder of Al, Pt, Pd, Si or mixtures thereof, each of the said powders having a grain size between 5 and 120 &mgr;m. The slurry is applied onto a component made of a superalloy based on nickel or cobalt. The slurry is hardened on the component to form a hardened slurry coating by heating the slurry to a temperature between room temperature and 450° C., and the hardened slurry coating is heated, to produce diffusion thereof into the component, at a temperature between 750° C. and 1250° C.
    • 通过将粘合剂溶液与(1)选自(a)MCrAlY的基础粉末混合形成浆料的组分的方法,其中M为Ni或其中M为 Co或两者,(b)NiCrAl和(c)(a)和(b)的混合物与(2)加入的Al,Pt,Pd,Si或其混合物的粉末,每种所述粉末具有 5和120个妈妈。 将浆料施加到由基于镍或钴的超级合金制成的部件上。 浆料在组分上硬化以通过将浆料加热至室温至450℃之间的温度而形成硬化的浆料涂层,并将硬化的浆料涂层加热,以在750℃之间的温度下将其扩散到组分中 °C和1250°C
    • 8. 发明申请
    • METHOD FOR PRODUCING THERMAL BARRIER COATING AND A THERMAL BARRIER COATING
    • 生产热障涂层和热障涂层的方法
    • US20090075023A1
    • 2009-03-19
    • US12209941
    • 2008-09-12
    • Thomas COSACKAndreas JAKIMOV
    • Thomas COSACKAndreas JAKIMOV
    • B32B3/00C23C16/40C23C14/34
    • C23C14/542C23C14/083C23C14/54C23C28/3215C23C28/345C23C28/3455F01D5/288F05D2230/313F05D2300/2112Y10T428/24174
    • A method for producing a ceramic thermal barrier coating on a component part for use in compressor and turbine components by a vapor depositing process is disclosed. The method includes: a) provision of a ceramic vapor for depositing on the component part; b) depositing of the ceramic vapor on the component part to form a thermal barrier coating having a columnar structure, the columns being oriented substantially perpendicular to a surface of the component part; and c) varying of at least one method parameter during method step b) in such a way that the resultant thermal barrier coating has columns of alternating decreasing and increasing diameters. A thermal barrier coating is also disclosed. The thermal barrier coating has a ceramic thermal barrier coating having a columnar structure and the columns are oriented substantially perpendicular to a surface of the corresponding part. The columns have alternately decreasing and increasing diameters.
    • 公开了一种通过气相沉积工艺在用于压缩机和涡轮机部件的部件上制造陶瓷热障涂层的方法。 该方法包括:a)提供用于在组件上沉积的陶瓷蒸汽; b)将陶瓷蒸汽沉积在组件部分上以形成具有柱状结构的热障涂层,所述柱基本上垂直于部件表面定向; 以及c)在方法步骤b)期间改变至少一种方法参数,使得所得到的热障涂层具有交替减小和增加的直径的列。 还公开了一种隔热涂层。 热障涂层具有陶瓷热障涂层,其具有柱状结构,并且所述柱基本上垂直于相应部件的表面定向。 立柱具有交替减小和增加的直径。