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    • 6. 发明申请
    • METHOD OF RESISTANCE SPOT WELDING OF HIGH TENSILE STRENGTH STEEL SHEET AND WELDING JOINT MANUFACTURED BY THE METHOD
    • 高强度钢板和焊接接头的电阻点焊方法
    • US20140305912A1
    • 2014-10-16
    • US14351926
    • 2012-10-17
    • JFE STEEL CORPORATION
    • Koichi TaniguchiYasuaki OkitaRinsei Ikeda
    • B23K11/11
    • B23K11/115B23K11/24B23K11/241B23K11/257
    • Provided is a method of resistance spot welding of welding a sheet set including a high strength steel sheet with which a high joint strength can be achieved even for a high Ceq material. A method of resistance spot welding a sheet set of two or more lapped steel sheets by weld the sheet set while clamping and pressing the sheet set between a pair of welding electrodes includes a first welding step of applying an weld current Im (kA) and forming a nugget having a nugget diameter d (mm) that satisfies the following inequality (1); a cooling step, subsequent to the foregoing first welding, of cooling the sheet set while continuing to press the sheet set; and a second welding step of performing two-step welding, 3×√tm≦d≦6×√tm  (1), where tm is the thickness (mm) of the thinnest one of the foregoing two or more steel sheets.
    • 提供一种焊接包含高强度钢板的片组的电阻点焊方法,即使对于高Ceq材料也可以实现高接合强度。 通过在将一组焊接电极夹持并压制片材组之间焊接片材组而对两个或更多个重叠的钢板进行电阻点焊的方法包括施加焊接电流Im(kA)和成形的第一焊接步骤 具有满足以下不等式(1)的熔核直径d(mm)的熔核; 在上述第一焊接之后的冷却步骤,在继续按压片材组件的同时冷却片材组; 以及进行两步焊接的第二焊接工序,3×√tm≦̸ d≦̸ 6×√tm(1),其中tm是上述两个或更多个钢板中最薄的一个的厚度(mm)。
    • 7. 发明申请
    • POWER SOURCE AND METHOD FOR COOLING SUCH A POWER SOURCE
    • 用于冷却这种电源的电源和方法
    • US20140301122A1
    • 2014-10-09
    • US14354987
    • 2012-10-31
    • FRONIUS INTERNATIONAL GMBH
    • Bernhard ArtelsmairChristoph SchultschikJohannes NeuboeckStefan Wolfsgruber
    • H02M7/00H01F27/10H02M7/12
    • H02M7/003B23K11/241H01F27/10H01F38/085H02M7/12Y02P70/181
    • The invention relates to a power source (10) for providing a direct current, comprising a heavy-current transformer (12) with at least one primary winding (13) and at least one secondary winding (14) with center tapping, a synchronous rectifier (16) connected with the at least one secondary winding (14) of the heavy-current transformer (12) and comprising circuit elements (24), and a circuit (17) for actuating the circuit elements (24) of the synchronous rectifier (16), and a supply circuit (48) for supplying the synchronous rectifier (16) and the actuation circuit (17), and to a method for cooling such a power source (10). For reduction of losses and improvement of efficiency, the synchronous rectifier (16) and the actuation circuit (17) and the supply circuit (48) thereof are integrated in the heavy-current transformer (12).
    • 本发明涉及一种用于提供直流电流的电源(10),其包括具有至少一个初级绕组(13)的大电流变压器(12)和具有中心抽头的至少一个次级绕组(14),同步整流器 (16),与所述大电流互感器(12)的所述至少一个次级绕组(14)连接并且包括电路元件(24)以及用于致动所述同步整流器的电路元件(24)的电路(17) 16)和用于供给同步整流器(16)和驱动电路(17)的供电电路(48),以及用于冷却这样的电源(10)的方法。 为了减少损耗和提高效率,同步整流器(16)和致动电路(17)及其供电电路(48)集成在大电流互感器(12)中。
    • 8. 发明申请
    • Welding Robot
    • 焊接机器人
    • US20130146574A1
    • 2013-06-13
    • US13707936
    • 2012-12-07
    • KUKA ROBOTER GMBH
    • Tanja Birner-SuchSimon Dietrich
    • B23K9/28
    • B23K9/28B23K11/115B23K11/241B23K11/256Y10S901/02Y10S901/42
    • The invention relates to a welding robot for resistance welding, which exhibits a welding tongs (21), a welding current generator (1) connected to the welding electrodes (24, 25) of the welding tongs (21), for supplying the welding electrodes (24, 25) with electric energy during the resistance welding, and an industrial robot. The industrial robot comprises a robot arm (2) and a robot control device (9) for moving the robot arm (2). The welding tongs (21) is connected to the robot arm (2) and the robot control device (9) is connected to the welding current generator (1) and a tongs drive (26, 27) of the welding tongs (21).
    • 本发明涉及一种用于电阻焊接的焊接机器人,其具有焊钳(21),与焊钳(21)的焊接电极(24,25)连接的焊接电流发生器(1),用于供给焊接电极 (24,25)在电阻焊接期间具有电能,以及工业机器人。 工业机器人包括机器人臂(2)和用于移动机器人臂(2)的机器人控制装置(9)。 焊钳(21)与机械臂(2)连接,机器人控制装置(9)与焊钳(1)连接,焊钳(21)的夹钳驱动(26,27)。
    • 10. 发明申请
    • Method and system for estimating driving point voltage
    • 用于估计驱动点电压的方法和系统
    • US20070182420A1
    • 2007-08-09
    • US11517687
    • 2006-09-08
    • Paul Buda
    • Paul Buda
    • G01R31/08
    • B23K11/241B23K11/252B23K11/257B23K11/258
    • A method and system for estimating a driving point voltage of a resistance weld system. The method includes periodically sampling a supplied voltage and a supplied current of a system to obtain a plurality of sets of a sampled voltage value and a sampled current value. The sampled values are used for creating a volt time area of the sampled voltage, a current time area of the sampled current, and a current difference time area of the sampled current. The method further includes creating an estimated line resistance and an estimated line reactance of the system based on the first set of a sampled voltage value and a sampled current value and the second set of a sampled voltage value and a sampled current value. The volt time area, current time area, current difference time area, line resistance and line impedance are used for creating a driving point voltage area or waveform. The system includes circuitry for implementing the method for a resistance weld control.
    • 一种用于估计电阻焊接系统的驱动点电压的方法和系统。 该方法包括周期性地对提供的电压和系统的供电电流进行采样以获得多组采样电压值和采样电流值。 采样值用于产生采样电压的伏特时间区域,采样电流的当前时间区域和采样电流的电流差时间区域。 该方法还包括基于采样电压值和采样电流值的第一组以及采样电压值和采样电流值的第二组建立系统的估计线路电阻和估计线路电抗。 电压时间区域,当前时间区域,电流差时间区域,线路电阻和线路阻抗用于创建驱动点电压区域或波形。 该系统包括用于实现电阻焊接控制方法的电路。