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    • 77. 发明申请
    • METHOD OF PROCESSING A CERAMIC LAYER AND RELATED ARTICLES
    • 加工陶瓷层及相关文章的方法
    • US20090075146A1
    • 2009-03-19
    • US11854702
    • 2007-09-13
    • Todd-Michael StrikerVenkat Subramaniam VenkataramaniJames Anthony Ruud
    • Todd-Michael StrikerVenkat Subramaniam VenkataramaniJames Anthony Ruud
    • H01M8/10
    • H01M8/1253H01M2300/0077Y02E60/525Y02P70/56
    • A method of processing a ceramic layer is provided. The method comprises the steps of providing a ceramic layer comprising a plurality of microcracks; infiltrating at least some of the plurality of microcracks with a liquid precursor comprising at least one oxidizable metal ion; and exposing the ceramic layer to a base having a pH value of at least about 9, so as to chemically convert the oxidizable metal ion into an oxide, thereby decreasing the porosity of the ceramic layer. A solid oxide fuel cell is provided. The solid oxide fuel cell comprises an anode; a cathode; and a ceramic electrolyte disposed between the anode and the cathode. The ceramic electrolyte is processed by the method comprising the steps of providing a ceramic electrolyte comprising a plurality of microcracks; infiltrating at least some of the plurality of microcracks with a liquid precursor comprising at least one oxidizable metal ion; and exposing the ceramic electrolyte to a base having a pH value of at least about 9, so as to chemically convert the oxidizable metal ion into an oxide, thereby decreasing the porosity of the ceramic electrolyte.
    • 提供了一种处理陶瓷层的方法。 该方法包括提供包括多个微裂纹的陶瓷层的步骤; 用包含至少一种可氧化金属离子的液体前体渗透多个微裂纹中的至少一些; 并将陶瓷层暴露于pH值为至少约9的碱,以便将可氧化金属离子化学转化为氧化物,从而降低陶瓷层的孔隙率。 提供固体氧化物燃料电池。 固体氧化物燃料电池包括阳极; 阴极 以及设置在阳极和阴极之间的陶瓷电解质。 通过包括以下步骤的方法处理陶瓷电解质,提供包含多个微裂纹的陶瓷电解质; 用包含至少一种可氧化金属离子的液体前体渗透多个微裂纹中的至少一些; 并将陶瓷电解质暴露于pH值为至少约9的碱,以便将可氧化金属离子化学转化为氧化物,从而降低陶瓷电解质的孔隙率。
    • 80. 发明授权
    • Compositions and methods for producing coatings with improved surface smoothness and articles having such coatings
    • 用于生产具有改善的表面光滑度的涂层的组合物和方法以及具有这种涂层的制品
    • US06544351B2
    • 2003-04-08
    • US09682034
    • 2001-07-12
    • Hongyu WangJames Anthony RuudLarry Steven Rosenzweig
    • Hongyu WangJames Anthony RuudLarry Steven Rosenzweig
    • C23C3000
    • C23C22/74B22F2998/00C08K3/11C09D7/61C09D7/69C23C24/08Y10T428/12014Y10T428/12181B22F1/0014
    • A coating composition produces a protective coating to a substrate, which coating has an improved surface smoothness. The coating composition comprises a mixture of at least a first type of particles and a second type of particles that are dispersed in a liquid medium. The particles form a total population of particles having a median ESD in a range from about 1 to about 7 micrometers. The different types of particles have different median ESDs. The first type of particles has a maximum ESD of about 40 micrometers, and the second type of particles has a maximum ESD of about 20 micrometers. A method for producing a coating having an improved surface smoothness comprises applying such a coating composition on a substrate and curing the coating composition to produce a protective coating. The coating may be further densified by a burnishing process or further improved by applying another coating comprising particles having ESDs less than about 4 micrometers.
    • 涂料组合物产生对基材的保护涂层,该涂层具有改善的表面光滑度。 涂料组合物包含分散在液体介质中的至少第一类型的颗粒和第二类型的颗粒的混合物。 颗粒形成总体的具有约1至约7微米范围内的中值ESD的颗粒群。 不同类型的颗粒具有不同的中值ESD。 第一类型的颗粒具有约40微米的最大ESD,第二类型的颗粒具有约20微米的最大ESD。 具有改善的表面光滑度的涂层的制造方法包括将这样的涂料组合物涂布在基材上并固化涂料组合物以产生保护涂层。 涂层可以通过抛光工艺进一步致密化,或者通过施加包含具有小于约4微米的ESD的颗粒的另一涂层进一步改进。