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    • 1. 发明授权
    • On-line system and method for processing information relating to the wear of turbine components
    • 用于处理与涡轮机部件的磨损有关的信息的在线系统和方法
    • US07149632B1
    • 2006-12-12
    • US10249015
    • 2003-03-10
    • Dongming GaoHamid Reza SarsharHong XiaRichard Anthony Elliott
    • Dongming GaoHamid Reza SarsharHong XiaRichard Anthony Elliott
    • G06F19/00
    • G06Q10/00F01D9/023
    • A method comprises storing data relating to the wear of a component of at least one turbine system in a database of a system for processing wear related information, generating a displayable menu containing a plurality of user-selectable links respectively associated with software modules of the system, and receiving an on-line selection of one of the user-selectable links to enable the associated software module of the system to generate displayable content including information relating to the wear of the component of the turbine system. The selected module may enable a quantitative amount of the wear of the component or qualitative wear range characterizing the amount of the wear of the component to be input and received on-line. Alternatively, the selected module may enable a component type to be input and received on-line and display a component fleet leader.
    • 一种方法包括将与至少一个涡轮机系统的部件的磨损相关的数据存储在用于处理磨损相关信息的系统的数据库中,生成包含分别与系统的软件模块相关联的多个用户可选择链接的可显示菜单 以及接收所述用户可选链接中的一个的在线选择,以使得所述系统的相关联的软件模块能够生成包括与所述涡轮机系统的部件的磨损有关的信息的可显示内容。 所选择的模块可以实现元件的磨损的定量量或定性磨损范围,其特征在于在线输入和接收的部件的磨损量。 或者,所选择的模块可以使得组件类型能够被在线输入和接收并且显示组件队列引导器。
    • 2. 发明申请
    • ON-LINE SYSTEM AND METHOD FOR PROCESSING INFORMATION RELATING TO THE WEAR OF TURBINE COMPONENTS
    • 在线系统和处理与涡轮机组件磨损有关的信息的方法
    • US20060271311A1
    • 2006-11-30
    • US10249015
    • 2003-03-10
    • Dongming GaoHamid SarsharHong XiaRichard Elliott
    • Dongming GaoHamid SarsharHong XiaRichard Elliott
    • G06F19/00
    • G06Q10/00F01D9/023
    • A method comprises storing data relating to the wear of a component of at least one turbine system in a database of a system for processing wear related information, generating a displayable menu containing a plurality of user-selectable links respectively associated with software modules of the system, and receiving an on-line selection of one of the user-selectable links to enable the associated software module of the system to generate displayable content including information relating to the wear of the component of the turbine system. The selected module may enable a quantitative amount of the wear of the component or qualitative wear range characterizing the amount of the wear of the component to be input and received on-line. Alternatively, the selected module may enable a component type to be input and received on-line and display a component fleet leader.
    • 一种方法包括将与至少一个涡轮机系统的部件的磨损相关的数据存储在用于处理磨损相关信息的系统的数据库中,生成包含分别与系统的软件模块相关联的多个用户可选择链接的可显示菜单 以及接收所述用户可选链接中的一个的在线选择,以使得所述系统的相关联的软件模块能够生成包括与所述涡轮机系统的部件的磨损有关的信息的可显示内容。 所选择的模块可以实现元件的磨损的定量量或定性磨损范围,其特征在于在线输入和接收的部件的磨损量。 或者,所选择的模块可以使得组件类型能够被在线输入和接收并且显示组件队列引导器。
    • 4. 发明申请
    • Hand-held drain clearing device
    • 手持式排污装置
    • US20110016658A1
    • 2011-01-27
    • US12458751
    • 2009-07-22
    • Hong Xia
    • Hong Xia
    • B08B9/032
    • E03C1/308
    • A handheld drain clearing device includes a first compressed air collection chamber and a cylindrical chamber for housing a cylinder. The central axis of said cylindrical chamber coincides with the central axis of said first compressed air collection chamber. A second compressed air collection chamber is formed within said cylindrical chamber and extends into said first compressed air collection chamber. To operate, a user first pushes the air into the second compressed air collection chamber, and then further pushes said cylinder inward to force said compressed air through a gate, into the first compressed air collection chamber. Finally, use a trigger component to discharge the highly compressed air to clear the blockage.
    • 手持排水清除装置包括第一压缩空气收集室和用于容纳气缸的圆柱形室。 所述圆柱形室的中心轴线与所述第一压缩空气收集室的中心轴线重合。 第二压缩空气收集室形成在所述圆柱形室内并延伸到所述第一压缩空气收集室中。 为了操作,用户首先将空气推入第二压缩空气收集室中,然后向内推动所述气缸,以迫使所述压缩空气通过门进入第一压缩空气收集室。 最后,使用触发组件排出高压缩空气以清除堵塞。