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    • 1. 发明授权
    • Control device for controlling electrical switchgear
    • 用于控制电气开关柜的控制装置
    • US07880104B2
    • 2011-02-01
    • US11642321
    • 2006-12-19
    • Wolfgang GrieshaberJean-Pierre DuprazOlivier GrejonAlain FangetXavier AllaireMichel Collet
    • Wolfgang GrieshaberJean-Pierre DuprazOlivier GrejonAlain FangetXavier AllaireMichel Collet
    • H01H5/00
    • H01H3/32H01H3/3005H01H3/3015H01H3/3021H01H3/36H01H2003/3084H01H2003/3094
    • A control device for controlling electrical switchgear such as a circuit breaker or the like includes an actuating arm having a connection point suitable for being moved along a closed line including points P1, P2 and P3. The connection point thus moves during an opening stage for opening the moving contact, under the effect of a mechanical spring from point P1 to point P2. It also moves during a re-cocking stage for re-cocking the mechanical spring under the effect of a motor being switched on, and while keeping the moving contact in the open position, from point P2 to point P3. It also moves during a closure stage for closing the moving contact, also under the effect of the motor being switched on, from point P3 to P1. In this manner it is possible to successively perform three distinct stages of putting the actuating arm in motion, between the instant at which the moving contact leaves its closed position and the instant at which it returns thereto after having occupied its open position. A re-cocking stage for re-cocking the mechanical spring that is distinct from the closing stage and from the opening stage for closing and opening the moving contact, is performed, with the opening stage to be performed merely by releasing the energy that has been previously accumulated by the spring.
    • 用于控制诸如断路器等的电气开关装置的控制装置包括具有适于沿着包括点P1,P2和P3的闭合线移动的连接点的致动臂。 在机械弹簧从点P1到点P2的作用下,连接点因此在用于打开移动触点的打开阶段中移动。 在电动机接通的作用下,还可以在再起动阶段移动机械弹簧,同时保持动触点处于打开位置,从P2点到P3点。 在电动机接通的作用下,从点P3到P1,它也在关闭阶段期间移动以关闭移动触点。 以这种方式,可以在运动触点离开其关闭位置的瞬间和在占据其打开位置之后返回到其的时刻之间连续执行将致动臂放置在运动中的三个不同阶段。 进行与关闭阶段不同的机械弹簧的重新起动阶段,以及用于闭合和打开移动触点的开启阶段,仅通过释放已经被释放的能量来进行开启阶段 以前在春天积累。
    • 2. 发明授权
    • Device for detecting and locating electric discharges in fluid-insulated electrical equipment
    • 用于检测和定位流体绝缘电气设备中的放电的装置
    • US08866486B2
    • 2014-10-21
    • US12745762
    • 2008-12-01
    • Wolfgang GrieshaberAlain Fanget
    • Wolfgang GrieshaberAlain Fanget
    • G01R31/08H01H33/26G01R31/12
    • H01H33/26G01R31/1254
    • A device for detecting and locating at least one electric discharge in equipment insulated by fluid contained in an electrically-conductive housing. The equipment includes a plurality of grounding lines connected between the housing and ground. The device includes a plurality of Rogowski coil type current detectors and a mechanism synchronously comparing signals delivered by the current detectors. The coil of each detector is placed around a respective one of the lines. Each detector delivers a signal representative of current flowing in the line, with occurrence of an electric discharge giving rise to a sudden variation in the current, and with electric discharge being located within an inside zone of the housing situated in proximity of the line that is surrounded by the detector that was first to deliver the sudden variation of current.
    • 一种用于检测和定位由包含在导电壳体中的流体绝缘的设备中的至少一个放电的装置。 该设备包括连接在壳体和接地之间的多个接地线。 该装置包括多个Rogowski线圈型电流检测器和一种同步比较由电流检测器传递的信号的机构。 每个检测器的线圈围绕相应的一条线放置。 每个检测器提供表示在线路中流动的电流的信号,发生放电引起电流的突然变化,并且放电位于壳体的内部区域内,位于距离线 被探测器包围,这是首先提供电流的突然变化。
    • 3. 发明申请
    • DEVICE FOR DETECTING AND LOCATING ELECTRIC DISCHARGES IN FLUID-INSULATED ELECTRICAL EQUIPMENT
    • 用于检测和定位流体绝缘电气设备中的电力放电的装置
    • US20100259275A1
    • 2010-10-14
    • US12745762
    • 2008-12-01
    • Wolfgang GrieshaberAlain Fanget
    • Wolfgang GrieshaberAlain Fanget
    • G01R31/08
    • H01H33/26G01R31/1254
    • A device for detecting and locating at least one electric discharge in equipment insulated by fluid contained in an electrically-conductive housing. The equipment includes a plurality of grounding lines connected between the housing and ground. The device includes a plurality of Rogowski coil type current detectors and a mechanism synchronously comparing signals delivered by the current detectors. The coil of each detector is placed around a respective one of the lines. Each detector delivers a signal representative of current flowing in the line, with occurrence of an electric discharge giving rise to a sudden variation in the current, and with electric discharge being located within an inside zone of the housing situated in proximity of the line that is surrounded by the detector that was first to deliver the sudden variation of current.
    • 一种用于检测和定位由包含在导电壳体中的流体绝缘的设备中的至少一个放电的装置。 该设备包括连接在壳体和接地之间的多个接地线。 该装置包括多个Rogowski线圈型电流检测器和一种同步比较由电流检测器传递的信号的机构。 每个检测器的线圈围绕相应的一条线放置。 每个检测器提供表示在线路中流动的电流的信号,发生放电引起电流的突然变化,并且放电位于壳体的内部区域内,位于距离线 被探测器包围,这是首先提供电流的突然变化。
    • 5. 发明申请
    • METHOD FOR CONTROLLING A CURRENT BREAKING DEVICE IN A HIGH-VOLTAGE ELECTRICITY NETWORK
    • 用于控制高压电力网络中的电流破坏装置的方法
    • US20120306290A1
    • 2012-12-06
    • US13516214
    • 2010-12-14
    • Alain Fanget
    • Alain Fanget
    • H01H33/59
    • H01H33/593H01H9/563Y10T307/944
    • A method of controlling a current breaking device in a high-voltage electricity network is disclosed. In one aspect, the method includes, for each phase (A, B, C), obtaining missing supply voltages from an acquired supply voltage, performing healthy phase/faulty phase discrimination, conducting voltage analysis by attempted matching of a model over a signal window, choosing a strategy of simple closing or reclosing of the breaking device as a function of choice conditions, calculating a set of optimum reclosing times for each phase in accordance with the chosen strategy, and selecting an optimum time from the proposed optimum times and closing the phases of the current breaking device.
    • 公开了一种控制高压电网中的电流断路装置的方法。 在一个方面,该方法包括对于每个相(A,B,C),从获得的电源电压获得缺失的电源电压,执行健康的相位/故障相位鉴别,通过在信号窗口上尝试匹配模型进行电压分析 选择作为选择条件的函数的断路装置的简单闭合或重新闭合的策略,根据所选择的策略计算每相的一组最佳重合闸时间,并从所提出的最佳时间选择最佳时间并关闭 当前断路装置的相位。
    • 6. 发明授权
    • Method for controlling a current breaking device in a high-voltage electricity network
    • 用于控制高压电网中的电流断路装置的方法
    • US09390872B2
    • 2016-07-12
    • US13516214
    • 2010-12-14
    • Alain Fanget
    • Alain Fanget
    • H02H3/00H01H33/59H01H9/56
    • H01H33/593H01H9/563Y10T307/944
    • A method of controlling a current breaking device in a high-voltage electricity network is disclosed. In one aspect, the method includes, for each phase (A, B, C), obtaining missing supply voltages from an acquired supply voltage, performing healthy phase/faulty phase discrimination, conducting voltage analysis by attempted matching of a model over a signal window, choosing a strategy of simple closing or reclosing of the breaking device as a function of choice conditions, calculating a set of optimum reclosing times for each phase in accordance with the chosen strategy, and selecting an optimum time from the proposed optimum times and closing the phases of the current breaking device.
    • 公开了一种控制高压电网中的电流断路装置的方法。 在一个方面,该方法包括对于每个相(A,B,C),从获得的电源电压获得缺失的电源电压,执行健康的相位/故障相位鉴别,通过在信号窗口上尝试匹配模型进行电压分析 选择作为选择条件的函数的断路装置的简单闭合或重新闭合的策略,根据所选择的策略计算每相的一组最佳重合闸时间,并从所提出的最佳时间选择最佳时间并关闭 当前断路装置的相位。
    • 7. 发明申请
    • Process for Preparing Composites Using Epoxy Resin Formulations
    • 使用环氧树脂配方制备复合材料的方法
    • US20080308972A1
    • 2008-12-18
    • US12134304
    • 2008-06-06
    • Alain Fanget
    • Alain Fanget
    • B29C45/00B29C39/00
    • C08G59/5026C08G59/623
    • The invention is a process for making reinforced composites using an epoxy resin composition. The epoxy resin compositions are hardened using a gem-di(cyclohexylamine)-substituted alkane as a hardener and a tertiary amine compound, a heat-activated catalyst, or a mixture thereof as an accelerator. This epoxy resin composition has a long open time, and then cures rapidly in a mold in the presence of a reinforcement. These cure characteristics make the composition well suited for use in manufacturing processes such as resin transfer molding (RTM), vacuum-assisted resin transfer molding (VARTM), Seeman Composites Resin Infusion Molding Process (SCRIMP) and reaction injection molding (RIM).
    • 本发明是使用环氧树脂组合物制造增强复合材料的方法。 使用偕二(环己胺) - 取代烷烃作为硬化剂和叔胺化合物,热活化催化剂或其混合物作为促进剂使环氧树脂组合物硬化。 该环氧树脂组合物具有长的开放时间,然后在增强剂的存在下在模具中快速固化。 这些固化特性使得该组合物非常适用于诸如树脂传递模塑(RTM),真空辅助树脂传递模塑(VARTM),塞曼复合材料树脂注塑成型工艺(SCRIMP)和反应注塑(RIM)等制造工艺。