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    • 1. 发明申请
    • MODULAR PROCESS LIST FOR WELDING POWER SUPPLY
    • 焊接电源模块化过程清单
    • WO2011058432A1
    • 2011-05-19
    • PCT/IB2010/002909
    • 2010-11-15
    • LINCOLN GLOBAL, INC.COLE, Stephen, R.
    • COLE, Stephen, R.
    • B23K9/10B23K9/32
    • B23K9/1006B23K9/32
    • A welding power supply includes a controller that automatically monitors the presence or absence of one or more modules connected to or installed into the welding power supply. The controller automatically turns on or off the power supply functions related to which optional modules are present. The controller populates various end-user interface menus based on which optional modules are installed. The controller uses software and/or hardware to make the determination. The optional module(s) themselves include circuitry which allows the controller to recognize when the optional module has been installed and what functions the installed optional module is capable of performing. The circuitry of the optional module(s) allows the optional module(s) to communicate with the controller. In this way, the end-user will not have the options of selecting a process on the user interface menus that is not available because the required equipment has not been installed.
    • 焊接电源包括控制器,其自动监视连接到或安装在焊接电源中的一个或多个模块的存在或不存在。 控制器自动打开或关闭与可选模块相关的电源功能。 控制器基于哪些可选模块安装来填充各种最终用户界面菜单。 控制器使用软件和/或硬件进行确定。 可选模块本身包括允许控制器识别什么时候可选模块已经被安装以及安装的可选模块能够执行什么功能的电路。 可选模块的电路允许可选模块与控制器通信。 这样,最终用户将无法选择在用户界面菜单上选择不可用的进程,因为所需设备尚未安装。
    • 2. 发明申请
    • METHODS OF AND SYSTEM FOR REDUCING SPATTER IN A PULSE ARC WELDING PROCESS
    • 用于减少脉冲弧焊工艺中的孔径的方法和系统
    • WO2013050844A1
    • 2013-04-11
    • PCT/IB2012/001779
    • 2012-09-13
    • LINCOLN GLOBAL, INC.DANIEL, Joseph, A.COLE, Stephen, R.PETERS, Steven, R.
    • DANIEL, Joseph, A.COLE, Stephen, R.PETERS, Steven, R.
    • B23K9/09B23K9/095B23K9/10
    • B23K9/093B23K9/091B23K9/095B23K9/0956B23K9/1043
    • An electric arc welder (100) and a method for performing a pulse welding process producing reduced spatter. The welder produces a current between an advancing electrode (E) and a workpiece (W). The welder (100) includes a short - detecting capability for detecting a short condition upon occurrence of short circuit between the advancing electrode and the workpiece. The welder (100) may also include a switching module (110) in the welding circuit path o: the welder (100) having an electrical switch and a resistive path. Times of occurrence of short intervals can be tracked and a blanking signal can be generated based on the tracked short intervals to anticipate a next short interval in a next pulse period of the pulsed welding process. The blanking signal can be used to reduce a welding current in the welding circuit path by introducing additional resistance into the welding circuit path via the switching module (110), or by controlling a portion of a waveform of the welding process during the blanking interval.
    • 一种电弧焊机(100)以及进行脉冲焊接处理而产生减少飞溅的方法。 焊工在前进电极(E)和工件(W)之间产生电流。 焊机(100)包括用于在前进电极和工件之间发生短路时检测短路状况的短路检测能力。 焊工(100)还可以包括在焊接电路路径中的切换模块(110),焊接机(100)具有电开关和电阻路径。 可以跟踪发生短时间间隔的时间,并且可以基于跟踪的短间隔产生消隐信号,以预测脉冲焊接处理的下一个脉冲周期中的下一个短时间间隔。 消隐信号可以用于通过经由开关模块(110)向焊接电路路径引入额外的电阻,或通过在消隐间隔期间控制焊接过程的波形的一部分来减少焊接电路路径中的焊接电流。
    • 5. 发明申请
    • METHOD TO CONTROL AN ARC WELDING SYSTEM TO REDUCE SPATTER
    • 控制电弧焊接系统减少散热器的方法
    • WO2012052839A2
    • 2012-04-26
    • PCT/IB2011/002532
    • 2011-10-24
    • LINCOLN GLOBAL, INC.DANIEL, Joseph, A.COLE, Stephen, R.PETERS, Stephen R.
    • DANIEL, Joseph, A.COLE, Stephen, R.PETERS, Stephen R.
    • B23K9/091B23K9/095B23K9/1043
    • An electric arc welder and a method for performing a pulse welding process producing reduced spatter. The welder produces a current between an advancing electrode and a work- piece. The welder includes a short-detecting capability for detecting a short condition upon occurrence of a short circuit between the advancing electrode and the workpiece. The welder may also include a switching module in the welding circuit path of the welder having an electrical switch and a resistive path. Times of occurrence of short intervals can be tracked and a blanking signal can be generated based on the tracked short intervals to anticipate a next short interval in a next pulse period of the pulsed welding process. The blanking signal can be used to reduce a welding current in the welding circuit path by introducing additional resistance into the welding circuit path via the switching module, or by controlling a portion of a waveform of the welding process during the blanking interval.
    • 一种电弧焊机和进行脉冲焊接工艺的方法,其产生减少的飞溅。 焊机在前进电极和工件之间产生电流。 焊机包括在前进电极和工件之间发生短路时检测短路状况的短路检测能力。 焊工还可以包括在具有电开关和电阻路径的焊工的焊接电路路径中的开关模块。 可以跟踪发生短时间间隔的时间,并且可以基于跟踪的短间隔产生消隐信号,以预测脉冲焊接处理的下一个脉冲周期中的下一个短时间间隔。 消隐信号可以用于通过经由开关模块向焊接电路路径引入附加电阻,或通过在消隐间隔期间控制焊接过程的波形的一部分来减少焊接电路路径中的焊接电流。
    • 9. 发明申请
    • AUTO STEERING IN A WELD JOINT
    • 自动转向焊接接头
    • WO2014140718A2
    • 2014-09-18
    • PCT/IB2014/000283
    • 2014-03-11
    • LINCOLN GLOBAL, INC.
    • COLE, Stephen, R.
    • B23K9/02
    • B23K9/0216B23K9/0953B23K9/0956B23K9/1043
    • A method of and system (100) for steering an arc (110) and/or torch head (120) in a weld joint (510) is provided. The system (100) includes a torch head (120) that creates an arc (110) in a weld groove formed in at least one workpiece (115, 115A, 115B). The system (100) also includes a control unit (190) that includes a feedback system that monitors at least one of a voltage of the arc (110), a current of the arc (110), a power output of the torch power supply, and a contact tip to weld distance. The control unit (190) outputs a feedback signal corresponding to the monitoring. The control unit also includes a comparison circuit that compares the feedback signal with at least one predetermined value corresponding to a position of at least one of the arc (110) and the torch head (120) in the weld groove. The control unit (190) further includes an arc steering system that outputs a steering signal based on the comparison.
    • 提供了一种用于在焊接接头(510)中转向弧(110)和/或割炬头(120)的方法和系统(100)。 系统(100)包括在形成于至少一个工件(115,115A,115B)中的焊接槽中产生电弧(110)的割炬头(120)。 系统(100)还包括控制单元(190),其包括反馈系统,该反馈系统监测电弧(110)的电压,电弧(110)的电流,割炬电源的功率输出 和一个接触尖端焊接距离。 控制单元(190)输出与监视对应的反馈信号。 控制单元还包括比较电路,其将反馈信号与对应于焊接槽中的弧(110)和割炬头(120)中的至少一个的位置的至少一个预定值进行比较。 控制单元(190)还包括基于该比较输出转向信号的电弧转向系统。
    • 10. 发明申请
    • SYSTEM AND METHOD FOR AUTOMATIC HEIGHT ADJUSTMENT OF A TORCH
    • 一种用于自动高度调节转盘的系统和方法
    • WO2015071715A1
    • 2015-05-21
    • PCT/IB2014/002267
    • 2014-10-29
    • LINCOLN GLOBAL, INC.
    • COLE, Stephen, R.
    • B23K9/073B23K9/095B23K9/12B23K9/167B23K9/173B23K9/18B23K9/10
    • B23K9/0953B23K9/0286B23K9/073B23K9/0731B23K9/0732B23K9/0735B23K9/1093B23K9/122B23K9/124B23K9/125B23K9/126B23K9/16B23K9/167B23K9/173B23K9/18
    • The invention described herein generally pertains to a system (100, 300, 400) and method related to adjusting at least one of an arc current for a welding operation, an arc voltage for a welding operation, a wire feed speed for a welding operation, or a height of a torch (30, 420) that performs the welding operation. In particular, a parameter can be updated based upon, for instance, a user input, and the arc current, arc voltage, wire feed speed, or the height of the torch (30, 420) can be calibrated to perform the welding operation. Specifically, while a parameter is being adjusted or transitioned to the setting received via user input, the height of the torch (30, 420) and/or at least one of the arc current level, the arc voltage, the wire feed speed is maintained until the setting is achieved for the parameter. Once the parameter is at the setting, a second arc current level, a second arc voltage, a second wire feed speed, or second height for the torch (30, 420) is implemented to perform the welding operation.
    • 本文描述的本发明通常涉及一种系统(100,300,400)和与焊接操作的电弧电流,焊接操作的电弧电压,焊接操作的送丝速度, 或执行焊接操作的割炬(30,420)的高度。 特别地,可以基于例如用户输入来更新参数,并且可以校准电弧电流,电弧电压,送丝速度或焊枪(30,420)的高度以执行焊接操作。 具体地说,当参数正被调整或转换到通过用户输入接收到的设置时,保持焊炬(30,420)的高度和/或电弧电流水平,电弧电压,焊丝进给速度中的至少一个 直到该参数达到设定值。 一旦参数处于设定状态,就实施用于焊炬(30,420)的第二弧电流电平,第二电弧电压,第二焊丝进给速度或第二高度来执行焊接操作。