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    • 2. 发明授权
    • Corrosion monitoring of concrete reinforcement bars (or other buried corrodable structures) using distributed node electrodes
    • 使用分布式节点电极的混凝土钢筋(或其他埋藏腐蚀结构)的腐蚀监测
    • US08466695B2
    • 2013-06-18
    • US12859572
    • 2010-08-19
    • Kuang-Tsan Kenneth ChiangLietai Yang
    • Kuang-Tsan Kenneth ChiangLietai Yang
    • G01R27/08
    • G01N17/02G01N33/38
    • Systems and methods for real time detection of corrosion of rebars embedded in a concrete structure. Test bars are selected for corrosion testing purposes, and may or may not also be part of the concrete reinforcement structure. These test bars are coated, and exposed sections of these test bars form a network of node electrodes. Electrical measurement from a counter electrode near a node electrode provides an indication of corrosion at that node electrode. Using a system of node electrodes and counter electrodes, a large concrete area may be monitored, and if corrosion is indicated, a methodical selection of electrodes can be used to locate the corrosion. The same concepts may be applied to detect corrosion in buried structures, such as pipelines and tanks.
    • 用于实时检测混凝土结构中钢筋腐蚀的系统和方法。 选择测试棒用于腐蚀测试目的,并且可以也可以不是混凝土加固结构的一部分。 这些测试棒被涂覆,并且这些测试棒的暴露部分形成节点电极的网络。 从节点电极附近的对电极进行的电气测量提供了该节点电极处的腐蚀指示。 使用节点电极和对电极的系统,可以监测大的混凝土面积,如果指示腐蚀,则可以使用有选择的电极来定位腐蚀。 可以应用相同的概念来检测埋管结构(如管道和罐)中的腐蚀。
    • 5. 发明授权
    • Method for magnetron sputter deposition
    • 磁控溅射沉积方法
    • US07790003B2
    • 2010-09-07
    • US11397878
    • 2006-04-04
    • Kuang-Tsan Kenneth ChiangRonghua WeiEdward Langa
    • Kuang-Tsan Kenneth ChiangRonghua WeiEdward Langa
    • C23C14/35
    • C23C14/046C23C14/165C23C14/225C23C14/352C23C14/355H01J37/3405Y10T428/12903
    • A method for depositing a nanostructured coating comprising chromium or a copper-chromium mixture on a workpiece. The workpiece may comprise a hollowed structure such as a rocket or jet engine combustion chamber liner. The method comprises providing a magnetron and an external sputter target material comprising chromium or a copper-chromium composite and effecting a magnetron sputter deposition to deposit a substantially uniform nanostructured coating comprising said sputter target material on said workpiece. The method may include plasma enhancement wherein a filament is utilized to produce a plasma that effects an ion bombardment on the workpiece during the magnetron sputter deposition process. The invention also includes the nanostructured coatings deposited by these methods and workpieces coated thereby.
    • 一种在工件上沉积包含铬或铜 - 铬混合物的纳米结构涂层的方法。 工件可以包括中空结构,例如火箭或喷气式发动机燃烧室衬套。 该方法包括提供磁控管和包含铬或铜 - 铬复合材料的外部溅射靶材料,并进行磁控溅射沉积,以将包含所述溅射靶材料的基本均匀的纳米结构涂层沉积在所述工件上。 该方法可以包括等离子体增强,其中使用丝来产生在磁控溅射沉积工艺期间对工件进行离子轰击的等离子体。 本发明还包括通过这些方法沉积的纳米结构涂层和由此涂覆的工件。