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    • 1. 发明授权
    • Wire inlet nozzle
    • 电线入口喷嘴
    • US09314868B2
    • 2016-04-19
    • US13978760
    • 2012-03-28
    • Johannes FuerlingerKlaus OberndorferStefan Platzer
    • Johannes FuerlingerKlaus OberndorferStefan Platzer
    • B23K9/28B23K9/32
    • B23K9/28B23K9/323
    • The invention relates to a wire inlet nozzle (27) for fastening in a coupling (29) of a hose package (21), comprising a wire inlet element (32) and a fastening means (31) for a wire core (26) for guiding a welding wire (9), wherein a main body is formed between the wire inlet element (32) and the fastening means (31) and a cavity (56) is formed in the wire inlet element (32), in which cavity at least one sealing element (57) having an axial opening (59) for guiding the welding wire (9) is arranged. In order to prevent an escape of the protective gas in the wire inlet nozzle (27) in a direction opposite to the main conveying direction of the welding wire (9), the main body forms a first part (54) of the wire inlet element (32), and a second part (55) of the wire inlet element (32) can be detachably connected to the first part (54), and the main body is designed as a separating plane for independently fastening the wire core (26) and the sealing element (57).
    • 本发明涉及一种用于紧固在软管包装(21)的联轴器(29)中的电线入口喷嘴(27),其包括电线入口元件(32)和用于电线芯(26)的紧固装置(31) 引导焊丝(9),其中主体形成在电线入口元件(32)和紧固装置(31)之间,并且在电线入口元件(32)中形成有空腔(56),其中空腔 布置了具有用于引导焊丝(9)的轴向开口(59)的至少一个密封元件(57)。 为了防止电线入口喷嘴(27)中的保护气体沿与焊丝(9)的主输送方向相反的方向逸出,主体形成电线入口元件的第一部分(54) (32),并且所述线入口元件(32)的第二部分(55)可拆卸地连接到所述第一部分(54),并且所述主体被设计为用于独立地紧固所述线芯(26)的分离平面, 和密封元件(57)。
    • 2. 发明申请
    • WIRE INLET NOZZLE
    • WIRE INLET喷嘴
    • US20130299478A1
    • 2013-11-14
    • US13978760
    • 2012-03-28
    • Johannes FuerlingerKlaus OberndorferStefan Platzer
    • Johannes FuerlingerKlaus OberndorferStefan Platzer
    • B23K9/28
    • B23K9/28B23K9/323
    • The invention relates to a wire inlet nozzle (27) for fastening in a coupling (29) of a hose package (21), comprising a wire inlet element (32) and a fastening means (31) for a wire core (26) for guiding a welding wire (9), wherein a main body is formed between the wire inlet element (32) and the fastening means (31) and a cavity (56) is formed in the wire inlet element (32), in which cavity at least one sealing element (57) having an axial opening (59) for guiding the welding wire (9) is arranged. In order to prevent an escape of the protective gas in the wire inlet nozzle (27) in a direction opposite to the main conveying direction of the welding wire (9), the main body forms a first part (54) of the wire inlet element (32), and a second part (55) of the wire inlet element (32) can be detachably connected to the first part (54), and the main body is designed as a separating plane for independently fastening the wire core (26) and the sealing element (57).
    • 本发明涉及一种用于紧固在软管包装(21)的联轴器(29)中的电线入口喷嘴(27),其包括电线入口元件(32)和用于电线芯(26)的紧固装置(31) 引导焊丝(9),其中主体形成在电线入口元件(32)和紧固装置(31)之间,并且在电线入口元件(32)中形成有空腔(56),其中空腔 布置了具有用于引导焊丝(9)的轴向开口(59)的至少一个密封元件(57)。 为了防止电线入口喷嘴(27)中的保护气体沿与焊丝(9)的主输送方向相反的方向逸出,主体形成电线入口元件的第一部分(54) (32),并且所述线入口元件(32)的第二部分(55)可拆卸地连接到所述第一部分(54),并且所述主体被设计为用于独立地紧固所述线芯(26)的分离平面, 和密封元件(57)。
    • 4. 发明申请
    • Vacuum Interrupter
    • 真空断路器
    • US20080314874A1
    • 2008-12-25
    • US12096971
    • 2005-12-12
    • Andreas LawallKlaus OberndorferUlf Schumann
    • Andreas LawallKlaus OberndorferUlf Schumann
    • H01H33/662
    • H01H33/66261H01H2033/66284H01H2033/66292
    • A vacuum interrupter has a tubular insulating body and a contact system with a moving contact and a fixed contact each connected to power supply bolts, which are passed out of the vacuum interrupter in a vacuum-tight manner. A control electrode is DC-connected to the fixed-contact power supply bolt. A damping shield, which is arranged on the insulating body, is conductive and overlaps the control electrode in an axial direction. The vacuum interrupter has good shielding properties while at the same time improving the dielectric insulation. The control electrode extends out in the form of a toroid in the region of overlap with the damping shield, the damping shield is drawn inwards so as to correspond to the toroid, and the fixed-contact power supply bolt is constricted so as to correspond to the contour of the damping shield and the constriction is fitted such that the drawn-in region of the damping shield extends around the constriction.
    • 真空断路器具有管状绝缘体和具有可移动触点和固定触头的触点系统,每个触点和电源螺栓均以真空密封的方式从真空断路器传出。 控制电极与固定接触电源螺栓直流连接。 布置在绝缘体上的阻尼屏蔽导电并且沿轴向与控制电极重叠。 真空断路器具有良好的屏蔽性能,同时改善绝缘绝缘。 控制电极在与阻尼屏蔽重叠的区域中以环形线的形式延伸,阻尼屏蔽被向内拉以与环形线对应,并且固定接触电源螺栓被收缩以对应于 阻尼屏蔽和缩颈的轮廓被装配成阻尼屏蔽的拉入区域围绕收缩部延伸。
    • 8. 发明申请
    • System and method for the detection of a defect in a drive belt
    • 用于检测传动皮带缺陷的系统和方法
    • US20050061090A1
    • 2005-03-24
    • US10920859
    • 2004-08-18
    • Klaus OberndorferManfred Zah
    • Klaus OberndorferManfred Zah
    • F16H7/02F16H61/12H02K7/06H02K7/116H02K11/00B29B13/00
    • F16H7/02F16H61/12H02K7/06H02K7/116H02K11/00
    • The invention relates to a drive system (1) which has an electrical machine (3) and a belt drive (2), with the belt drive (2) having an input drive end (20) and an output drive end (22), in which case the input drive end (20) can be driven by means of the electrical machine (3), and in which case at least one electric current in the electrical machine (3) can be measured by means of a current measurement device (12). According to the invention, a means is provided for defect identification (13) for the belt drive (3), with the means for defect identification (13) being provided at least for comparison of at least one actual value (51) with at least one nominal value (52), and with the actual value (51) and the nominal value (52) being a variable which is dependent on the electric current in the electrical machine (3). Defect identification of a belt drive (2) can thus be achieved in a simple manner.
    • 本发明涉及一种具有电机(3)和带驱动器(2)的驱动系统(1),带驱动器(2)具有输入驱动端(20)和输出驱动端(22), 在这种情况下,可以通过电机(3)驱动输入驱动端(20),在这种情况下,电机(3)中的至少一个电流可以通过电流测量装置 12)。 根据本发明,提供了一种用于带驱动器(3)的缺陷识别(13)的装置,其中提供用于缺陷识别的装置(13)至少用于将至少一个实际值(51)至少与 一个标称值(52)和实际值(51)和标称值(52)是取决于电机(3)中的电流的变量。 因此可以以简单的方式实现皮带传动装置(2)的缺陷识别。