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    • 6. 发明公开
    • PLATED STEEL SHEET AND METHOD FOR MANUFACTURING SAME
    • PLATE STEEL SHEET及其制造方法
    • EP3269841A1
    • 2018-01-17
    • EP16780095.2
    • 2016-04-13
    • Nippon Steel & Sumitomo Metal Corporation
    • KOBAYASHI, AkinobuGOTO, YasutoFUTABA, TakashiMATSUMURA, Kenichiro
    • C23C10/28C22C19/05C22C27/06C25D5/26C25D5/50
    • C25D5/50B32B15/013B32B15/015C22C19/05C22C19/058C22C27/06C22C30/00C22C38/00C23C10/28C23C28/021C23C28/023C23C28/028C25D3/04C25D3/12C25D5/14
    • [Object] To provide a plated steel sheet excellent in heat resistance and productivity and a method for producing the same.
      [Solution] According to an aspect of the present invention, there is provided a plated steel sheet including: a steel sheet; and an alloy plating layer formed on a surface of the steel sheet, in which the alloy plating layer consists of, in mass%, Cr: 5 to 91%, Fe: 0.5 to 10%, and the balance: Ni and unavoidable impurities, the Ni concentration in the alloy plating layer gradually decreases from an outermost surface of the alloy plating layer to a side of the steel sheet, the ratio of the Ni concentration to the Cr concentration is Ni/Cr > 1 in an area extending 300 nm or more from the outermost surface of the alloy plating layer, the Fe concentration in the alloy plating layer gradually decreases from the side of the steel sheet to the outermost surface of the alloy plating layer, the Fe concentration in the outermost surface of the alloy plating layer is 0.5% or less, the total thickness of an alloy layer formed in the alloy plating layer and containing Cr and Fe is 500 to 2000 nm, and the total amount of the alloy plating layer deposited to the steel sheet is 4.5 to 55.5 g/m 2 .
    • 本发明提供一种耐热性和生产性优异的电镀钢板及其制造方法。 根据本发明的一个方面,提供了一种电镀钢板,其包括:钢板; 以及在该钢板的表面形成的合金镀层,其中,合金镀层以质量%计含有Cr:5〜91%,Fe:0.5〜10%,余量由Ni和不可避免的杂质构成, 合金镀层中的Ni浓度从合金镀层的最外表面到钢板侧逐渐降低,在300nm延伸的区域中Ni浓度与Cr浓度之比为Ni / Cr> 1或 更多地从合金镀层的最外表面开始,合金镀层中的Fe浓度从钢板侧向合金镀层的最外表面逐渐减小,合金镀层的最外表面中的Fe浓度 为0.5%以下时,在合金镀层中形成的含有Cr和Fe的合金层的总厚度为500〜2000nm,合计镀层的总量为4.5〜55.5g / 平方米。
    • 10. 发明公开
    • HEAT-RESISTANT MEMBER PROVIDED WITH HEAT-SHIELDING COATING, AND METHOD FOR MANUFACTURING SAME
    • 提供有热屏蔽涂层的耐热部件及其制造方法
    • EP3219827A1
    • 2017-09-20
    • EP15858487.0
    • 2015-11-11
    • Hitachi, Ltd.
    • KAWANAKA HirotsuguSUGIMOTO Ittou
    • C23C24/08F02F3/10F02F3/12
    • F02F3/12B22F5/008B22F7/004B22F7/08B22F2999/00B23K20/02C23C24/00C23C24/08C23C24/085C23C24/087C23C26/00C23C28/00C23C28/021C23C28/023C23C30/00F01L3/04F01L2101/00F01L2101/02F01L2103/00F01L2820/01F02B77/02F02B77/11F02F3/14F02F2200/00B22F3/1112B22F2207/01
    • Provided are a heat-resistant member provided with a heat-shielding coating suitable for stable production and having good thermal insulation properties, thermal responsiveness, and distortion following properties, and a method for manufacturing the heat-resistant member. The present invention is configured as described below. The heat-resistant member 10 provided with a heat-shielding coating is characterized in that the heat-shielding coating 11 has a metal phase comprising an aggregate of a plurality of metal particles 2, and inorganic-compound particles 4, 5 dispersed in the metal phase, the metal particles 2 being bonded to each other and the metal phase and a base material 1 of the heat-resistant member 10 being bonded to each other by diffusion bonding. The method for manufacturing a heat-resistant member provided with a heat-shielding coating includes a step for arranging a particle mixture of the plurality of metal particles 2 and the inorganic-compound particles 4, 5 as a film on the surface of the base material 1, and a step for resistance-heating the particle mixture arranged in a film by electrification thereof while applying pressure thereto in the film thickness direction, and bonding the metal particles 2 to each other and bonding the base material 1 and the metal phase comprising an aggregate of a plurality of the metal particles 2 to each other by diffusion bonding.
    • 本发明提供一种耐热部件及其制造方法,该耐热部件具有适于稳定生产且具有良好的绝热性,热响应性和应变性的耐热部件。 本发明如下所述进行配置。 具有隔热涂层的耐热构件10的特征在于,隔热涂层11具有包含多个金属颗粒2的聚集体的金属相和分散在金属中的无机化合物颗粒4,5 相,金属粒子2彼此接合,金属相与耐热构件10的基材1通过扩散接合而接合。 用于制造具有隔热涂层的耐热部件的方法包括用于将多个金属颗粒2和无机化合物颗粒4,5的颗粒混合物作为膜布置在基材表​​面上的步骤 1,通过对膜中配置的粒子状混合物进行带电加热,一边对膜厚方向施加压力一边进行电阻加热,使金属粒子2彼此接合,将基材1与金属相接合的工序 通过扩散接合将多个金属粒子2彼此聚集。