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    • 2. 发明申请
    • Multipole Electrical Switching Device
    • 多极电气开关装置
    • US20120073945A1
    • 2012-03-29
    • US13245070
    • 2011-09-26
    • Torsten AhlertJörg-Uwe DahlLudvik GodesaMarc LiebetruthMilos Petracek
    • Torsten AhlertJörg-Uwe DahlLudvik GodesaMarc LiebetruthMilos Petracek
    • H01H9/26
    • H01H71/0214H01H1/2058H01H71/0207H01H71/0235
    • A multipole electrical switching device is disclosed with an outer housing in which at least two separate switching pole housings are accommodated. In at least one embodiment, the at least two separate switching pole housings on walls facing towards one another, each have a least one mounting which form a mounting pair assigned to one another. In at least one embodiment, for mechanical connection of the at least two separate switching pole housings, the mounting pair is assigned at least one connection device which engages into the two mountings forming the mounting pair. The two mountings forming the mounting pair, in relation to a dividing joint formed between the two facing walls, each form an undercut, whereby the at least one connecting device engages behind the undercuts and the at least one connecting device is formed in a primary process in one piece on the outer housing.
    • 公开了具有外壳的多极电开关装置,其中容纳至少两个分开的开关极壳。 在至少一个实施例中,在面向彼此的壁上的至少两个独立的开关极壳体各自具有形成彼此分配的安装对的至少一个安装件。 在至少一个实施例中,为了至少两个独立的开关极壳体的机械连接,安装对被分配至少一个接合到形成安装对的两个安装件中的连接装置。 形成安装对的两个安装件相对于形成在两个相对的壁之间的分隔接头分别形成底切,由此至少一个连接装置接合在底切部分之后,并且至少一个连接装置形成为主要过程 在一个外壳上。
    • 5. 发明授权
    • Mounting of splitter plates in the switch pole of a circuit breaker
    • 将分离板安装在断路器的开关极上
    • US09123481B2
    • 2015-09-01
    • US13780247
    • 2013-02-28
    • Jörg-Uwe Dahl
    • Jörg-Uwe Dahl
    • H01H9/36H01H9/34H01H71/02
    • H01H9/362H01H9/346H01H71/0214
    • An embodiment of the invention relates to a switch pole of a circuit breaker having two pole shells between which are disposed, in the assembled state, at least one switching contact, current-carrying elements and an arc quenching device having an arc runner plate and at least one splitter plate delimiting an arc chute, wherein at least one slot for accommodating the splitter and/or arc runner plate is provided between the pole shells. In at least one embodiment, there is provided inside between the pole shells a functional component having a least one slot spaced apart from the pole shells which is used to accommodate the at least one splitter and/or arc runner plate.
    • 本发明的实施例涉及一种具有两个极壳的断路器的开关极,它们在组装状态下设置有至少一个开关触点,载流元件和具有弧流板的灭弧装置 至少一个分隔板限定一弧形斜槽,其中至少一个用于容纳所述分流器和/或电弧流道板的槽用于所述极壳之间。 在至少一个实施例中,在极壳之间设置有功能部件,功能部件具有与用于容纳至少一个分流器和/或电弧流道板的极壳间隔开的至少一个槽。
    • 8. 发明授权
    • Latching mechanism for locking a spring energy store
    • 用于锁定弹簧储能的锁定机构
    • US06870113B2
    • 2005-03-22
    • US10475609
    • 2002-03-26
    • Jörg-Uwe DahlLudvik GodesaRalph HohenbergerMarc Liebetruth
    • Jörg-Uwe DahlLudvik GodesaRalph HohenbergerMarc Liebetruth
    • H01H33/42H01H3/30H01H33/40H01H1/52
    • H01H3/3031
    • A latching mechanism is for locking a spring energy store of an electric switching device. The store is tensioned by a rotary drive and an extensible lever system. In the latching mechanism, the extensible lever system is locked with the spring energy store under tension by way of a support element, an auxiliary lock and a primary lock, in addition to a stop that is allocated to the primary lock. The auxiliary lock can be pivoted by the extension of the lever system and the position of the primary lock during the pivoting of the auxiliary lock can be influenced by working surfaces that are allocated to one another. To configure the locking mechanism for pivoting the primary lock in a manner which obviates the use of a return spring that acts on said primary lock, the auxiliary lock and the primary lock respectively have at least two working surfaces. In a first pivoting phase of the auxiliary lock, the respective first surfaces of the two sets of working surfaces lie adjacent to one another and in a second pivoting phase of the auxiliary lock, the second working surfaces lie adjacent to one another, intermeshing in the manner of a toothed gear.
    • 闭锁机构用于锁定电开关装置的弹簧能量存储。 商店由旋转驱动器和可扩展的杠杆系统张紧。 在闭锁机构中,除了分配给主锁的停止之外,可伸缩杠杆系统通过支撑元件,辅助锁和主锁定在弹簧能量储存器的作用下被张紧地锁定。 辅助锁可以通过杠杆系统的延伸部枢转,并且在辅助锁的枢转期间主锁的位置可以被分配给彼此的工作表面所影响。 为了配置用于以避免使用作用在所述主锁上的复位弹簧的方式枢转主锁的锁定机构,辅助锁和主锁分别具有至少两个工作表面。 在辅助锁的第一枢转相位中,两组工作表面的相应第一表面彼此相邻并且在辅助锁的第二枢转相位中,第二工作表面彼此相邻,相互啮合在 有齿齿轮的方式
    • 9. 发明授权
    • Power circuit breaker with an actuating shaft
    • 具有致动轴的电力断路器
    • US06492888B2
    • 2002-12-10
    • US09508021
    • 2000-09-29
    • Jörg-Uwe DahlLudvik GodesaMarc Liebetruth
    • Jörg-Uwe DahlLudvik GodesaMarc Liebetruth
    • H01H902
    • H01H3/32H01H2003/326
    • A low-voltage circuit breaker has a contact arrangement, a drive mechanism for actuating the contact arrangement , and an actuating shaft, which is used for transmitting a drive force from the drive mechanism to the contact arrangement. A bearing device for the actuating shaft has at least one bearing body, which is connected to a pole component accommodating the contact arrangement. Thus a unit is formed, which can be tested independently of the other components of the circuit breaker. In the case of multipole circuit breakers, a common actuating shaft is used for all contact arrangements and pole components, which is mounted approximately in the center of the main bearing body and near the ends of the auxiliary bearing bodies.
    • 低压断路器具有接触装置,用于致动接触装置的驱动机构和用于将驱动力从驱动机构传递到接触装置的致动轴。 用于致动轴的轴承装置具有至少一个轴承体,其连接到容纳接触装置的极部件。 因此,形成单元,其可独立于断路器的其它部件进行测试。 在多极断路器的情况下,公共的驱动轴用于所有接触装置和极部件,其大致安装在主轴承体的中心附近并且靠近辅助轴承体的端部。
    • 10. 发明授权
    • Low-voltage circuit-breaker with a retrofitted power-driven lift
    • 具有改装功率驱动电梯的低压断路器
    • US06380830B1
    • 2002-04-30
    • US09743350
    • 2001-01-09
    • Jörg Uwe DahlLudvik GodesaMarc Liebetruth
    • Jörg Uwe DahlLudvik GodesaMarc Liebetruth
    • H01H300
    • H01H3/26H01H3/3005
    • A low-voltage circuit breaker includes a retrofittable motor reset mechanism. Its output shaft can be coupled to a charging shaft, mounted in a bearing block, of the spring energy store of the low-voltage circuit breaker. Centering elements are provided on a flange of the bearing block of the charging shaft of the spring energy store so as to engage in mating elements on the gearbox output of the motor reset mechanism, in such a way that the motor reset mechanism can be pushed axially into these centering elements with little movement in the direction of the charging shaft. In order to lock the motor reset mechanism in the pivoting direction, a fixing element is provided at a point fitted at a specific distance from the centering elements. The motor reset mechanism is fixed axially in the centering elements of the flange of the bearing block of the charging shaft of the spring reset mechanism, and in the coupling of the charging shaft.
    • 低压断路器包括可升降电机复位机构。 其输出轴可以连接到安装在低压断路器的弹簧储能器的轴承座中的充电轴上。 定心元件设置在弹簧能量储存器的充电轴的轴承座的凸缘上,以便接合电动机复位机构的变速箱输出上的配合元件,使得电动机复位机构能够被轴向地推动 进入这些定心元件,在充电轴的方向上几乎没有移动。 为了将电动机复位机构沿枢转方向锁定,固定元件设置在与定心元件相距一定距离的点处。 电动机复位机构在弹簧复位机构的充电轴的轴承座的凸缘的定心元件和充电轴的联接中轴向固定。