会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • SWITCHING DEVICE WITH DUAL CONDUCTIVE HOUSING
    • 具有双导电外壳的开关装置
    • WO2017207742A1
    • 2017-12-07
    • PCT/EP2017/063411
    • 2017-06-02
    • ABB SCHWEIZ AG
    • SAXEGAARD, MagneLAURITZEN, RichardTALMO, StåleLOHNE, Stanley
    • H01H33/64H02B13/035H01H33/56H01H33/22
    • The invention relates to a switching device (10) for an encapsulated electric power distribution switchgear (100) and to an electric power distribution switchgear (100) with at least one such switching device (10). The switching device (10) has a first electrically conducting housing (20) which encloses an actuator mechanism (25) for a first contact assembly (30) and a second electrically conducting housing (40) which encloses a second contact assembly (50). According to the invention, the first electrically conducting housing (20) is arranged at a distance (d) from said second electrically conducting housing (40). The switching device further has a third housing (60) which is electrically insulating and arranged between the first electrically conducting housing (20) and the second electrically conducting housing (40). The switching device is a puffer type switch.
    • 本发明涉及一种用于封装式配电开关装置(100)的开关装置(10)和具有至少一个这种开关装置(10)的配电开关装置(100)。 开关装置(10)具有包围用于第一触头组件(30)的致动器机构(25)的第一导电壳体(20)和包围第二触头组件(50)的第二导电壳体(40)。 根据本发明,第一导电壳体(20)布置在距所述第二导电壳体(40)一段距离(d)处。 开关装置还具有第三外壳(60),该第三外壳在第一导电外壳(20)和第二导电外壳(40)之间电绝缘并布置。 开关装置是一个吹气型开关。
    • 3. 发明申请
    • A SWITCHING DEVICE AND AN ELECTRIC POWER DISTRIBUTION SWITCHGEAR
    • 开关装置和电力分配开关
    • WO2016198209A1
    • 2016-12-15
    • PCT/EP2016/059362
    • 2016-04-27
    • ABB SCHWEIZ AG
    • SAXEGAARD, MagneTALMO, StåleLOHNE, Stanley
    • H01H33/24H01H33/42
    • H01H33/53H01H3/46H01H31/003H01H31/32H01H33/22H01H33/24H01H33/42H01H2205/002H01H2223/008H01H2239/044H02B11/133H02B13/055
    • A switching device (1) for an encapsulated electric power distribution switchgear comprising a switch (10), an electrically conductive housing (20) to which the switch is mounted, and which housing (20) comprises an opening (24) that leads into the housing (20). The switch comprises a first electric contact (12) connected to a first conductor (16) and a second electric contact (14) connected to a second conductor (18), the second contact being movable in relation to the first contact and in relation to the housing. The further comprises an operating shaft (30) of electrically insulating material being rotatable about its longitudinal axis Y in relation to the housing, and which is inserted into the housing via the opening (24), and an actuator member (40) located inside the housing and having a first end (42) coupled to the shaft and a second (44) end coupled to the second contact (14). The actuator member is made of an electrically insulating material. The shaft (30) extends through the opening (24) and into the housing without directly contacting the housing (20) and is supported in the housing (20) by the actuator member. The actuator member (40) is movably supported in the housing (20) at a connection area (26) that forms an interface (27) between the actuator member and the housing. The interface is located at a distance D from the longitudinal axis Y of the shaft that is longer than a distance d between the longitudinal axis Y of the shaft and a circumferential edge (23) that delimits the opening (24) in the housing, which first and second distances are measured in the same radial direction in relation to the longitudinal axis Y.
    • 一种用于密封电力配电开关设备的开关装置(1),包括开关(10),安装有开关的导电外壳(20),以及该壳体(20)包括通向所述开关 住房(20)。 开关包括连接到第一导体(16)的第一电触头(12)和连接到第二导体(18)的第二电触点(14),第二触点可相对于第一触点移动,并且相对于 住房。 还包括电绝缘材料的操作轴(30),其可围绕其纵向轴线Y相对于壳体旋转,并且经由开口(24)插入到壳体中;以及致动器构件(40),其位于 并且具有联接到所述轴的第一端(42)和联接到所述第二接触(14)的第二端(44)端。 致动器构件由电绝缘材料制成。 轴(30)通过开口(24)延伸并进入壳体中,而不直接接触壳体(20),并通过致动器构件支撑在壳体(20)中。 致动器构件(40)在形成致动器构件和壳体之间的接口(27)的连接区域(26)处可移动地支撑在壳体(20)中。 该界面位于与轴的纵向轴线Y相距一定距离D处,其长度大于轴的纵向轴线Y与限定外壳中的开口(24)的周向边缘(23)之间的距离d, 第一和第二距离相对于纵向轴线Y在相同的径向测量。
    • 5. 发明申请
    • GAS-INSULATED LOW- OR MEDIUM-VOLTAGE LOAD BREAK SWITCH
    • 气体绝缘的低压或中压负载开关
    • WO2017207763A1
    • 2017-12-07
    • PCT/EP2017/063474
    • 2017-06-02
    • ABB SCHWEIZ AG
    • GALLETTI, BernardoATTAR, ElhamCARSTENSEN, JanSAXEGAARD, MagneKRISTOFFERSEN, MartinSEEGER, MartinSCHWINNE, MichaelRANJAN, NitsehSTOLLER, Patrick
    • H01H33/12H01H9/52H01H33/70H01H33/88H01H33/91
    • H01H33/7023H01H9/52H01H33/121H01H33/56H01H33/703H01H33/7038H01H33/88H01H33/91H01H2033/566
    • A gas-insulated low- or medium-voltage load break switch (1) comprises: a housing (2) defining a housing volume for holding an insulation gas at an ambient pressure; a first arcing contact (10) and a second arcing contact (20) arranged within the housing volume, the first and second arcing contacts (10, 20) being movable in relation to each other along an axis (12) of the load break switch (1) and defining a quenching region (52) in which an arc (50) is formed during a current breaking operation; a pressurizing system (40) having a pressurizing chamber (42) arranged within the housing volume for pressurizing a quenching gas from an ambient pressure p 0 to a quenching pressure p quench during the current breaking operation; and a nozzle system (30) arranged within the housing volume for blowing the pressurized quenching gas in a subsonic flow pattern from the pressurization chamber (42) onto the arc (50) formed in the quenching region (52) during the current breaking operation. The nozzle system (30) comprises at least one nozzle (33) arranged for blowing the quenching gas from an off-axis position predominantly radially inwardly onto the quenching region (52).
    • 气体绝缘的低压或中压负载断路开关(1)包括:壳体(2),其限定用于将绝缘气体保持在环境压力下的壳体容积; ,布置在所述壳体容积内的第一电弧触头(10)和第二电弧触头(20),所述第一电弧触头和所述第二电弧触头(10,20)可沿着所述负载断路开关的轴线(12)相对于彼此移动, (1)并且限定在电流断开操作期间形成电弧(50)的淬火区域(52);其中, 加压系统(40),其具有布置在壳体容积​​内的加压室(42),用于将骤冷气体从环境压力p 0加压至骤冷压力p quench / i> 在当前的中断操作过程中; 以及布置在壳体容积​​内的喷嘴系统(30),用于在电流切断操作期间以亚音速流动模式将加压淬火气体从加压室(42)吹到形成在淬火区域(52)中的电弧(50)上。 喷嘴系统(30)包括至少一个喷嘴(33),该喷嘴布置成用于将淬火气体主要径向向内从离轴位置吹向淬火区域(52)。