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    • 6. 发明授权
    • Low cost antenna array fabrication technology
    • 低成本天线阵列制造技术
    • US07985463B2
    • 2011-07-26
    • US12401470
    • 2009-03-10
    • William Randolph StowellMichael R. SteeleThomas Walter Rentz
    • William Randolph StowellMichael R. SteeleThomas Walter Rentz
    • B41M5/00B44C1/17G03G7/00
    • H01Q21/0087H01Q1/28H05K3/061H05K2203/0531H05K2203/0537Y10S428/914Y10T428/24802
    • Methods are provided for producing large volumes of small antenna arrays. In one embodiment, the method comprises the steps of creating an antenna array pattern as a computer file, printing the created pattern onto the surface of a suitable transfer paper, placing the printed image surface in contact with the surface of a material to be etched, and transferring the printed image to the surface of the material to be etched. The transfer can be effected by any combination of chemicals, heat, and/or pressure. After transfer of the printed image, the transfer paper is removed. The step of removing the transfer paper optionally includes wetting the transfer paper in a manner that dissolves the transfer paper leaving the printed antenna pattern on the surface of the material to be etched. The method further includes the step of etching the non-printed portions of the material, preferably by chemical etching, and removing the printed pattern from the surface of the material to yield an antenna array comprising a non-etched portion of the substrate surface. Arrays, and substrates having an etch-resistant mask for making the arrays, are also provided.
    • 提供了用于生产大量小型天线阵列的方法。 在一个实施例中,该方法包括以下步骤:产生作为计算机文件的天线阵列图案,将所创建的图案印刷到合适的转印纸的表面上,将打印的图像表面与被蚀刻材料的表面接触, 并将印刷图像转印到待蚀刻材料的表面上。 转移可以通过化学品,热和/或压力的任何组合来实现。 转印出的图像后,转印纸被取出。 去除转印纸的步骤可选地包括以使溶解离开印刷天线图案的转印纸在待蚀刻材料的表面上的方式润湿转印纸。 该方法还包括优选通过化学蚀刻来蚀刻材料的非印刷部分,以及从材料表面去除印刷图案以产生包括衬底表面的非蚀刻部分的天线阵列的步骤。 还提供了具有用于制造阵列的耐蚀刻掩模的阵列和衬底。
    • 9. 发明授权
    • Low cost antenna array fabrication technology
    • 低成本天线阵列制造技术
    • US07510668B2
    • 2009-03-31
    • US11272166
    • 2005-11-10
    • William Randolph StowellMichael R. SteeleThomas Walter Rentz
    • William Randolph StowellMichael R. SteeleThomas Walter Rentz
    • B44C1/22
    • H01Q21/0087H01Q1/28H05K3/061H05K2203/0531H05K2203/0537Y10S428/914Y10T428/24802
    • Methods are provided for producing large volumes of small antenna arrays. In one embodiment, the method comprises the steps of creating an antenna array pattern as a computer file, printing the created pattern onto the surface of a suitable transfer paper, placing the printed image surface in contact with the surface of a material to be etched, and transferring the printed image to the surface of the material to be etched. The transfer can be effected by any combination of chemicals, heat, and/or pressure. After transfer of the printed image, the transfer paper is removed. The step of removing the transfer paper optionally includes wetting the transfer paper in a manner that dissolves the transfer paper leaving the printed antenna pattern on the surface of the material to be etched. The method further includes the step of etching the non-printed portions of the material, preferably by chemical etching, and removing the printed pattern from the surface of the material to yield an antenna array comprising a non-etched portion of the substrate surface. Arrays, and substrates having an etch-resistant mask for making the arrays, are also provided.
    • 提供了用于生产大量小型天线阵列的方法。 在一个实施例中,该方法包括以下步骤:产生作为计算机文件的天线阵列图案,将所创建的图案印刷到合适的转印纸的表面上,将打印的图像表面与被蚀刻材料的表面接触, 并将印刷图像转印到待蚀刻材料的表面上。 转移可以通过化学品,热和/或压力的任何组合来实现。 转印出的图像后,转印纸被取出。 去除转印纸的步骤可选地包括以使溶解离开印刷天线图案的转印纸在待蚀刻材料的表面上的方式润湿转印纸。 该方法还包括优选通过化学蚀刻来蚀刻材料的非印刷部分,以及从材料表面去除印刷图案以产生包括衬底表面的非蚀刻部分的天线阵列的步骤。 还提供了具有用于制造阵列的耐蚀刻掩模的阵列和衬底。
    • 10. 发明授权
    • Field repairable high temperature smooth wear coating
    • 现场可修高温平滑磨损涂层
    • US06827969B1
    • 2004-12-07
    • US10735359
    • 2003-12-12
    • Andrew Jay SkoogJane Ann MurphyWilliam Randolph StowellTimothy Ray Lattire
    • Andrew Jay SkoogJane Ann MurphyWilliam Randolph StowellTimothy Ray Lattire
    • B05D102
    • C23C18/1208C23C18/04C23C18/06C23C18/127Y02T50/67
    • A chemical composition and method for repairing a thermal barrier coating on a component designed for use in a hostile thermal environment, such as turbine, combustor and augmentor components of a gas turbine engine. The method repairs a thermal barrier coating on a component that has suffered localized damage to the thermal barrier coating. After cleaning the surface area of the component exposed by the localized spallation, a mixture of a ceramic composition comprising a ceramic powder in a binder is applied, preferably by spraying, to the surface area of the component. The binder is then allowed to dry to form a dried coating. Upon subsequent heating, the dried coating reacts to produce a ceramic-containing repair coating, wherein the coating comprises the ceramic powder in a matrix of a material formed when the binder was reacted. The binder is preferably a ceramic precursor material that can be converted immediately to a ceramic or allowed to thermally decompose over time to form a ceramic. The repair method can be performed while the component remains installed, e.g., in a gas turbine engine. The chemical composition is a liquid mixture that comprises ceramic material in at least two particle size ranges, as well as a nano-sized ceramic material and a binder that imparts thixotropic properties to the coating composition upon application to a component.
    • 用于修复设计用于恶劣热环境的部件上的热障涂层的化学组成和方法,例如燃气涡轮发动机的涡轮机,燃烧器和增压器部件。 该方法修复已经对热障涂层局部损坏的部件上的热障涂层。 在清洁通过局部剥离暴露的部件的表面积之后,将包含粘合剂中的陶瓷粉末的陶瓷组合物的混合物优选地通过喷雾施加到部件的表面区域。 然后将粘合剂干燥以形成干燥的涂层。 随后加热,干燥的涂层反应生成含陶瓷的修复涂层,其中涂层包含陶瓷粉末,其为当粘合剂反应时形成的材料的基质。 粘合剂优选是陶瓷前体材料,其可以立即转化成陶瓷或随时间被热分解以形成陶瓷。 当部件保持安装时,例如在燃气涡轮发动机中,可以执行修理方法。 化学组成是包含至少两个粒度范围的陶瓷材料的液体混合物,以及纳米尺寸陶瓷材料和粘合剂,其在施用于组分时赋予涂料组合物触变性能。