REPAIRING METHOD OF TURBINE ENGINE PART
    1.
    发明专利

    公开(公告)号:JP2003269190A

    公开(公告)日:2003-09-25

    申请号:JP2003063986

    申请日:2003-03-10

    Abstract: PROBLEM TO BE SOLVED: To provide a repairing method of a turbine engine part. SOLUTION: This repairing method of the turbine engine part such as a vane and a blade having air foil comprises to remove an oxide deposit from respective parts of a part indicating damage by crushing or oxidation of heat insulating coating, to remove a ceramic heat insulating layer from the part, and to blend a surface of the part generating nicks, dents and cracks. When the part has a deteriorated aluminum area, the deteriorated area is removed or replenished. A tip part of the part is also recovered when the part is damaged, and cutting capacity of the part is restored by applying polishing to the tip part. Afterwards, ceramic coating is applied to the part. COPYRIGHT: (C)2003,JPO

    MULTI-SHOT CASTING
    4.
    发明申请
    MULTI-SHOT CASTING 审中-公开
    多发铸造

    公开(公告)号:WO2014093826A3

    公开(公告)日:2014-11-13

    申请号:PCT/US2013075017

    申请日:2013-12-13

    CPC classification number: B22D19/16 B22D27/045 F01D5/147 F05D2230/211

    Abstract: An alloy part is cast in a mold (280) having a part forming cavity (292, 294, 296). The method comprises pouring a first alloy into the mold. The pouring causes: a surface (550) of the first alloy in the part forming cavity to raise relative to the part forming cavity; a branch flow of the poured first alloy to pass upwardly through a first portion (304) of a passageway; and the branch flow to pass downwardly through a second portion (310), of the passageway; solidifying some of the first alloy in the passageway to block the passageway while at least some of the first alloy in the part forming cavity remains molten. A second alloy is poured into the mold atop the first alloy and solidified.

    Abstract translation: 合金部件铸造在具有部分形成腔体(292,294,296)的模具(280)中。 该方法包括将第一合金倒入模具中。 浇注原因:部件形成腔中的第一合金的表面(550)相对于部件形成腔体升高; 倾倒的第一合金的分支流向上通过通道的第一部分(304); 并且所述分支流向下通过所述通道的第二部分(310); 固化通道中的一些第一合金以阻挡通道,同时部件形成空腔中的至少一些第一合金保持熔融。 将第二合金倒入第一合金顶部的模具中并固化。

    6.
    发明专利
    未知

    公开(公告)号:AT325901T

    公开(公告)日:2006-06-15

    申请号:AT02258710

    申请日:2002-12-18

    Abstract: Corrosion and oxidation resistant, high strength, directionally solidified superalloy alloys and articles are described. The articles have a nominal composition in weight percent of about 12% Cr, 9% Co, 1.9% Mo, 3.8% W, 5% Ta, 3.6% Al, 4.1% Ti, 0.015% B, 0.1 % C, up to about 0.02 Zr, balance essentially nickel, and include no intentional additions of hafnium or zirconium, and also have a small amounts of tantalum carbide. The resultant articles have good hot corrosion resistance and superior oxidation resistance and creep properties. The articles are preferably columnar grain, but may also be single crystal.

    ADVANCED HIGH STRENGTH SINGLE CRYSTAL SUPERALLOY COMPOSITIONS

    公开(公告)号:CA1251059A

    公开(公告)日:1989-03-14

    申请号:CA499551

    申请日:1986-01-14

    Abstract: Advanced High Strength Single Crystal Superalloy Compositions A superalloy composition and single crystal articles of the composition are described. The broad range is 3-12% Cr, 0-3% Mo, 3-10% W, 0-5% Re, 6-12% Ta, 4-7% Al, 0-15% Co, 0-0.045% C, 0-0.02% B, 0-0.1% Zr, 0-0.8% Hf, 0-2% Nb, 0-1% V, 0-0.7% Ti, 0-10% (Ru+Rh+Pd+Os+Ir+Pt), balance essentially Ni. An equation is presented to select the most useful specific compositions from within this range. An exemplary preferred composition is 5.0% Cr, 10.0% Co, 2.0% Mo, 6.0% W, 3.1% Re, 5.6% Al, 9.0% Ta, 0.1% Hf, balance essentially Ni.

    MULTI-STEP HEAT TREATMENT FOR SUPERALLOYS

    公开(公告)号:CA1074674A

    公开(公告)日:1980-04-01

    申请号:CA259896

    申请日:1976-08-26

    Abstract: MULTI-STEP HEAT TREATMENT FOR SUPERALLOYS This invention relates to a multi-step heat treatment method for increasing the elevated temperature mechanical properties of nickel base superalloys. The heat treatment method is particularly applicable to those conventional alloys which have a cast structure consisting essentially of a gamma matrix containing a gamma prime second phase precipitate and regions of low melting constituents. The effect of the process of the invention is to maximize the volume fraction of the fine gamma prime precipitate, by a solution treatment and reprecipitation, without causing significant incipient melting.

    10.
    发明专利
    未知

    公开(公告)号:DE69914409D1

    公开(公告)日:2004-03-04

    申请号:DE69914409

    申请日:1999-06-11

    Abstract: A method of preparing a superalloy component to receive a ceramic thermal barrier coating without an intermediate bond coat is disclosed. The superalloy substrate is degreased, abrasively cleaned, ultrasonically cleaned, washed in an aqueous bath containing a wetting agent, rinsed at least once, and then heat treated in an atmosphere that is non-reactive with the substrate and alumina at a temperature and time sufficient to form a surface alumina layer which is predominantly alumina.

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