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    • 5. 发明申请
    • MOUNTING ASSEMBLY FOR A SOLAR PANEL AND METHOD FOR MOUNTING THEREOF
    • 一种太阳能面板的安装组件及其安装方法
    • US20120266956A1
    • 2012-10-25
    • US13377336
    • 2011-04-12
    • Michael YeKaileung Fan
    • Michael YeKaileung Fan
    • H01L31/0203B23P11/00
    • H02S20/00F24S25/30F24S25/613F24S25/632Y02E10/47Y02E10/50Y10T29/49966
    • A mounting assembly (1) for a solar panel, comprising beams (10), pressing blocks (30) and a plurality of anti-slip blocks (40), said beams (10) are paralleled and transversely fixed to installation part outdoors, and the upper portion of said beam (10) is provided with a long groove (101) along the longitudinal direction of the beam, and the opposing side walls of said long groove (101) extended to said groove (101) to form a supporting portion (102), one end of said anti-slip block (30) is slidably inserted into said long groove (101), the other end of said anti-slip block (30) is loaded on said supporting portion (102) and is fixed to the back of said solar panel, and said pressing block (20) is pushed and pressed on the side edge of said solar panel and is fixed to said beam (10). The installation of solar panel can be realized by inserting the anti-slip block (30) in the back of solar panel into the long groove (101) of beam (10), the operation is easy and can bring amazing stability; furthermore, spare of the setting of strengthened rib with great span disposed on the solar panel, only if the use of beam (10) and anti-slip block (40) with small volume, further simplifying the mounting structure and saving material, so as to reduce the cost of human source and material. Besides, a method for assembling solar panel is disclosed in the present invention.
    • 一种用于太阳能电池板的安装组件(1),包括梁(10),压块(30)和多个防滑块(40),所述梁(10)平行并横向固定到室外的安装部分,以及 所述梁(10)的上部沿着梁的纵向方向设置有长槽(101),并且所述长槽(101)的相对的侧壁延伸到所述槽(101)以形成支撑部分 (102),所述防滑块(30)的一端可滑动地插入所述长槽(101)中,所述防滑块(30)的另一端装载在所述支撑部分(102)上并固定 到所述太阳能面板的背面,并且所述按压块(20)被推压并压在所述太阳能电池板的侧边缘上并固定到所述光束(10)。 通过将太阳能电池板背面的防滑块(30)插入梁(10)的长槽(101)中,可以实现太阳能电池板的安装,操作容易,可以带来惊人的稳定性; 此外,只要使用体积小的梁(10)和防滑块(40),只需放置在太阳能电池板上的大跨度加强筋的设置,进一步简化安装结构并节省材料,以便 降低人力资源和材料的成本。 此外,在本发明中公开了一种用于组装太阳能电池板的方法。
    • 7. 发明申请
    • RISK CHARTS FOR FAILURE MODE AND EFFECT ANALYSIS
    • 不良模式和效果分析的风险
    • US20120254710A1
    • 2012-10-04
    • US13435082
    • 2012-03-30
    • Jason W. FlanaganJasmeen K. HarshMichael Ye
    • Jason W. FlanaganJasmeen K. HarshMichael Ye
    • G06F17/20
    • G06Q10/06395G06Q10/0631
    • A method to facilitate a failure modes and effects analysis (FMEA) project associated with one or more components or process during a product development cycle is provided. The method includes displaying on the user interface one or more information pages associated with sequential order of elements to be completed by one or more FMEA analysts. The method further involves receiving with an aid of the user interface textual inputs from the one or more FMEA analysts for the one or more information pages associated with the sequential orders of elements. The method further includes developing a risk chart for tracking a risk mitigation progress for the FMEA project associated with the one or more components or process during the product development cycle. The risk charts include a Criticality Matrix Risk Chart (CMRC) and a Pro-active Reliability Risk Chart (PRRC).
    • 提供了一种在产品开发周期中促进与一个或多个组件或过程相关的故障模式和效果分析(FMEA)项目的方法。 该方法包括在用户界面上显示与一个或多个FMEA分析者要完成的元素的顺序顺序相关联的一个或多个信息页。 该方法还涉及借助于用户界面来接收来自一个或多个FMEA分析者的文本输入,用于与元素的顺序顺序相关联的一个或多个信息页。 该方法还包括开发一个风险图表,用于跟踪与产品开发周期内的一个或多个组件或过程相关联的FMEA项目的风险缓解进度。 风险图表包括Criticality Matrix Risk Chart(CMRC)和Pro-Active Reliability Risk Chart(PRRC)。
    • 8. 发明申请
    • GRAPHICAL USER INTERFACE FOR FAILURE MODE AND EFFECT ANALYSIS
    • 用于故障模式和效果分析的图形用户界面
    • US20120254044A1
    • 2012-10-04
    • US13435576
    • 2012-03-30
    • Jason W. FlanaganJasmeen K. HarshMichael Ye
    • Jason W. FlanaganJasmeen K. HarshMichael Ye
    • G06Q10/06
    • G06Q10/06395G06Q10/0631
    • A method to facilitate a failure modes and effects analysis (FMEA) project associated with one or more components or process during a product development cycle is provided. A real time FMEA status is viewable through a user interface which indicates the progress of the FMEA project. The method includes displaying on the user interface one or more information pages associated with sequential order of elements to be completed by one or more FMEA analysts. The method further involves receiving with an aid of the user interface textual inputs from the one or more FMEA analysts for the one or more information pages associated with the sequential orders of elements. The method further includes representing, to the one or more FMEA analysts, the sequential order of elements in a tree structure format. The information associated with the sequential order of elements is editable and is updated in real time.
    • 提供了一种在产品开发周期中促进与一个或多个组件或过程相关的故障模式和效果分析(FMEA)项目的方法。 通过用户界面可以看到实时FMEA状态,指示FMEA项目的进度。 该方法包括在用户界面上显示与一个或多个FMEA分析者要完成的元素的顺序顺序相关联的一个或多个信息页。 该方法还涉及借助于用户界面来接收来自一个或多个FMEA分析者的文本输入,用于与元素的顺序顺序相关联的一个或多个信息页。 该方法还包括向一个或多个FMEA分析者表示树结构格式的元素的顺序。 与元素的顺序相关联的信息是可编辑的并且被实时更新。