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    • 95. 发明申请
    • METHOD OF AND SYSTEM FOR HEATING CONSUMABLE DURING HOT WIRE PROCESS USING TWO LASER BEAMS
    • 使用两个激光束在热丝工艺过程中加热消耗的方法和系统
    • WO2014006488A3
    • 2014-03-06
    • PCT/IB2013001456
    • 2013-07-05
    • LINCOLN GLOBAL INC
    • ASH ELLIOTTMATHEWS WILLIAM T
    • B23K9/02B23K9/04B23K9/067B23K9/10B23K9/12B23K26/20B23K26/34
    • B23K26/20B23K9/02B23K9/04B23K9/042B23K9/0671B23K9/1093B23K9/124B23K9/125B23K26/211B23K26/34B23K26/342B23K35/0261B23K35/3053
    • A system for and a method of use in brazing, cladding, building up, filling, overlaying, welding, and joining applications is provided. The system (100) includes a first laser beam system (120, 130) which directs a first laser beam (110) at a surface of at least one workpiece (115) to create a molten puddle (145) on the surface and a wire feeder (150) which advances a consumable (140) to the molten puddle (145) so that the consumable (140) contacts the molten puddle (145). The system (100) also includes a power supply (160, 170)which outputs a heating signal and the heating signal is directed to the consumable (140) to heat the consumable (140) prior to the consumable (140)entering the puddle (145). The system (100) further includes a second laser beam system (220, 230)which directs a second laser beam (210) at the consumable (145) prior to the consumable (140) entering the puddle (145) and a controller (195) which controls an output of each of the power supply (13060, 170) and the second laser beam system (220, 230).
    • 提供了一种用于钎焊,包层,建造,填充,覆盖,焊接和连接应用的系统和方法。 系统(100)包括第一激光束系统(120,130),其将至少一个工件(115)的表面处的第一激光束(110)引导以在表面上形成熔融熔池(145) 进料器(150),其将消耗品(140)推进到熔融水槽(145),使得消耗品(140)接触熔融水槽(145)。 系统(100)还包括电源(160,170),其输出加热信号,并且在消耗品(140)进入水坑之前,加热信号被引导到消耗品(140)以加热消耗品(140) 145)。 所述系统(100)还包括第二激光束系统(220,230),其在所述消耗品(140)进入所述水坑(145)之前引导所述消耗品(145)处的第二激光束(210)和控制器(195) ),其控制每个电源(13060,170)和第二激光束系统(220,230)的输出。
    • 96. 发明申请
    • METHOD AND SYSTEM TO START AND USE A COMBINATION FILLER WIRE FEED AND HIGH INTENSITY ENERGY SOURCE
    • 启动和使用组合填料线进料和高强度能源的方法和系统
    • WO2010082081A1
    • 2010-07-22
    • PCT/IB2009/007882
    • 2009-12-23
    • LINCOLN GLOBAL, INC.PETERS, Steven, R.
    • PETERS, Steven, R.
    • B23K9/12B23K9/04B23K9/10B23K26/34B23K9/067
    • B23K9/04B23K9/0671B23K9/0956B23K9/1093B23K9/124B23K9/125B23K26/34B23K26/342B23K35/0227
    • A method and system to start and use a combination wire feed and energy source system for any of brazing, cladding, building up, filling, and hard-facing overlaying applications. High intensity energy is applied onto a workpiece (115) to heat the workpiece (115). One or more resistive filler wires (140) are fed toward the workpiece (115) at or just in front of the applied high intensity energy. Sensing of when a distal end of the one or more resistive filler wires (140) makes contact with the workpiece (115) at or near the applied high intensity energy is accomplished. Electric heating current to the one or more resistive filler wires (140) is controlled based on whether or not the distal end of the one or more resistive filler wires (140) is in contact with the workpiece (115). The applied high intensity energy and the one or more resistive filler wires (140) are moved in a same direction along the workpiece (115) in a fixed relation to each other.
    • 一种方法和系统,用于启动和使用组合送丝和能源系统,用于任何钎焊,包层,建筑,填充和硬面覆盖应用。 将高强度能量施加到工件(115)上以加热工件(115)。 在施加的高强度能量处或刚刚在施加的高强度能量的前面,将一个或多个电阻填充线(140)朝向工件(115)供给。 实现当一个或多个电阻性填充线(140)的远端在施加的高强度能量处或其附近与工件(115)接触时的感测。 基于一个或多个电阻填充线(140)的远端是否与工件(115)接触来控制到一个或多个电阻填充线(140)的电加热电流。 施加的高强度能量和一个或多个电阻填充线(140)以相对于彼此固定的关系沿着工件(115)沿相同的方向移动。
    • 97. 发明申请
    • METHOD AND SYSTEM TO USE COMBINATION FILLER WIRE FEED AND HIGH INTENSITY ENERGY SOURCE FOR WELDING WITH CONTROLLED ARCING FREQUENCY
    • 使用组合填料线进料和高强度能量源的方法和系统用于具有控制的电弧频率的焊接
    • WO2015125006A1
    • 2015-08-27
    • PCT/IB2015/000216
    • 2015-02-23
    • LINCOLN GLOBAL, INC.
    • PETERS, Steven, R.MATTHEWS, William, ThomasHENRY, Judah, BenjaminJOHNS, Kent
    • B23K9/02B23K9/04B23K9/09B23K9/10B23K9/12B23K26/34B23K28/02B23K26/20B23K9/08
    • B23K9/1093B23K9/02B23K9/08B23K9/091B23K9/125
    • Systems and methods consistent with embodiments of the present invention are directed to depositing a consumable onto a workpiece using a hot-wire welding technique which employs a combination of hot wire and arc welding. The waveform creates arc events during the hot wire welding operation to add/control heat in the welding process. The hot-wire welding process can be used by itself, with a laser or in conjunction with other welding processes. The consumable deposition method, comprising: generating and delivering a deposition current to a consumable; advancing said consumable towards a coated work- piece to deposit said consumable on said coated workpiece using said deposition current, where said consumable is deposited on a surface of said workpiece having a coating thereon; wherein said generating current waveform comprises: generating an arc deposition portion which results in an arc between said consumable and said puddle; and generating a hot wire portion during which a heating current is provided to said consumable and no arc is created between said consumable and said puddle; and determining a desired heat input into said at least one coated workpiece from said current waveform and alternating said current waveform between said arc deposition portion and said hot wire portion to control said heat input into said coated workpiece from said current waveform to maintain said desired heat input.
    • 与本发明的实施例一致的系统和方法涉及使用采用热丝和电弧焊接的组合的热丝焊接技术将消耗品沉积到工件上。 该波形在热丝焊接操作期间产生电弧事件,以在焊接过程中加热/控制热量。 热线焊接工艺本身可以使用激光或其他焊接工艺。 所述消耗性沉积方法包括:产生并将沉积电流输送到消耗品; 将所述消耗品推向涂覆的工件,以使用所述沉积电流将所述消耗品沉积在所述涂覆的工件上,其中所述消耗品沉积在具有涂层的所述工件的表面上; 其中所述产生电流波形包括:产生在所述消耗品和所述熔池之间产生电弧的电弧沉积部分; 并且产生热丝部分,在所述热丝部分期间向所述消耗品提供加热电流,并且在所述消耗品和所述熔池之间不产生电弧; 以及从所述电流波形确定所述至少一个被涂覆的工件的期望的热量输入,并且在所述电弧沉积部分和所述热丝部分之间交替所述电流波形,以从所述电流波形控制所述涂覆的工件的所述热量输入,以保持所述期望的热量 输入。
    • 98. 发明申请
    • METHOD AND SYSTEM TO USE COMBINATION FILLER WIRE FEED AND HIGH INTENSITY ENERGY SOURCE FOR WELDING WITH CONTROLLED ARCING FREQUENCY
    • 使用组合填料线进料和高强度能量源的方法和系统用于具有控制的电弧频率的焊接
    • WO2015125003A1
    • 2015-08-27
    • PCT/IB2015/000208
    • 2015-02-24
    • LINCOLN GLOBAL, INC.
    • PETERS, Steven, R.MATTHEWS, William, ThomasJOHNS, KentHENRY, Judah, Benjamin
    • B23K9/02B23K9/04B23K9/09B23K9/10B23K9/12B23K26/34B23K28/02B23K26/20B23K9/08
    • B23K9/02B23K9/08B23K9/091B23K9/1093B23K9/125
    • Systems and methods consistent with embodiments of the present invention are directed to depositing a consumable onto a workpiece using a hot-wire welding technique which employs a combination of hot wire and arc welding. The waveform creates arc events during the hot wire welding operation to add/control heat in the welding process. The hot-wire welding process can be used by itself, with a laser or in conjunction with other welding processes. The method comprising: generating and delivering a deposition current to a consumable; advancing said consumable towards a workpiece to deposit said consumable on said workpiece using said deposition current; wherein said generating current waveform comprises: generating an arc deposition portion which results in an arc between said consumable and said puddle; and generating a hot wire portion during which a heating current is provided to said consumable and no arc is created between said consumable and said puddle; and determining a desired heat input into said at least one workpiece from said current waveform and alternating said current waveform between said arc deposition portion and said hot wire portion to control said heat input into said workpiece from said current waveform to maintain said desired heat input, and wherein said arc deposition portion has a polarity which is different than a polarity of said hot wire portion.
    • 与本发明的实施例一致的系统和方法涉及使用采用热丝和电弧焊接的组合的热丝焊接技术将消耗品沉积到工件上。 该波形在热丝焊接操作期间产生电弧事件,以在焊接过程中加热/控制热量。 热线焊接工艺本身可以使用激光或其他焊接工艺。 该方法包括:产生并将消耗品传送到沉积电流; 使所述消耗品朝向工件推进,以使用所述沉积电流将所述消耗品沉积在所述工件上; 其中所述产生电流波形包括:产生在所述消耗品和所述熔池之间产生电弧的电弧沉积部分; 并且产生热丝部分,在所述热丝部分期间向所述消耗品提供加热电流,并且在所述消耗品和所述熔池之间不产生电弧; 以及从所述电流波形确定到所述至少一个工件的所需热量输入,并且在所述电弧沉积部分和所述热丝部分之间交替所述电流波形,以控制从所述电流波形输入到所述工件中的所述热输入,以保持所述期望的热输入, 并且其中所述电弧沉积部分具有与所述热丝部分的极性不同的极性。
    • 99. 发明申请
    • SYSTEM AND METHOD OF CONTROLLING HEAT INPUT IN TANDEM HOT-WIRE APPLICATIONS
    • 控制热插拔热线应用的系统和方法
    • WO2015011537A2
    • 2015-01-29
    • PCT/IB2014001309
    • 2014-07-10
    • LINCOLN GLOBAL INC
    • PETERS STEVEN R
    • B23K9/09B23K9/02B23K9/093B23K9/1093B23K9/1735B23K26/1429
    • A system (100) and method is provided. The system (100) includes a high intensity energy source to create a molten puddle (112) on a surface of a workpiece (115) and a wire feeder (150) that feeds a wire (145) to the molten puddle (112) via a contact tube (122, 125). The system (100) also includes a power supply (130, 135) that outputs a first heating current during a first mode of operation and a second heating current during a second mode of operation. The system (100) further includes a controller (195) that initiates the first mode of operation in the power supply (130, 135) to heat the wire to a desired temperature and switches the power supply from the first mode of operation to the second mode of operation to create a micro-arc. The second mode of operation provides at least one of an increased heat input to the molten puddle (112) and an increased agitation of the molten puddle (112) relative to the first mode of operation.
    • 提供了一种系统(100)和方法。 系统(100)包括高强度能源,以在工件(115)的表面上产生熔融熔池(112),以及焊丝进给器(150),其将焊丝(145)馈送到熔融熔池(112)经由 接触管(122,125)。 系统(100)还包括在第一操作模式期间输出第一加热电流的电源(130,135)和在第二操作模式期间输出第二加热电流的电源(130,135)。 所述系统(100)还包括控制器(195),其启动所述电源(130,135)中的所述第一操作模式,以将所述电线加热到期望的温度,并将所述电源从所述第一操作模式切换到所述第二模式 创建微弧的操作模式。 第二操作模式提供了对熔融熔池(112)的增加的热量输入和相对于第一操作模式的熔融熔池(112)的增加的搅拌中的至少一个。