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    • 2. 发明申请
    • METHOD OF MANUFACTURING A STRUCTURE AT A SURFACE OF A METAL WORK PIECE
    • 在金属工件表面制造结构的方法
    • US20110073579A1
    • 2011-03-31
    • US12736952
    • 2009-04-24
    • Josef ArtelsmairJoerg KazmaierUwe KroissWalter StieglbauerGernot Trauner
    • Josef ArtelsmairJoerg KazmaierUwe KroissWalter StieglbauerGernot Trauner
    • B23K9/00B23K9/095
    • B23K9/04
    • The invention relates to a method of manufacturing a structure (1) at a surface of a work piece (4), the structure (1) standing out from the surface, wherein a welding process (7) with an at least partially fusing filler material (2) is used, wherein an arc (3) is ignited during a welding cycle (8) of the welding process (7) between the filler material (2) guided in a welding torch (5) and the work piece (4), and wherein the heat input during the welding process (7) is adjusted by controlling the welding parameters. In accordance with the invention it is provided that the structure (1) is manufactured step by step from a plurality of individual elements (6), wherein each individual element (6) is manufactured in one welding cycle (8) of the welding process (7), and wherein a welding break (9) is made after each welding cycle (8).
    • 本发明涉及一种在工件(4)的表面上制造结构(1)的方法,该结构(1)从表面突出出来,其中焊接工艺(7)具有至少部分熔化的填充材料 (2),其中在焊接过程(7)的焊接周期(8)期间,在焊接炬(5)和工件(4)之间引导的填充材料(2)之间点燃电弧(3) ,并且其中通过控制焊接参数来调整焊接过程(7)期间的热输入。 根据本发明,提供了结构(1)从多个单独元件(6)逐步制造,其中每个单独元件(6)在焊接过程的一个焊接周期(8)中制造( 7),并且其中在每个焊接周期(8)之后形成焊接断裂(9)。
    • 4. 发明申请
    • METHOD AND DEVICE FOR FORMING THE WELDING WIRE END
    • 用于形成焊接端的方法和装置
    • US20110114609A1
    • 2011-05-19
    • US12737328
    • 2009-06-22
    • Uwe KroissWalter StieglbauerJosef Artelsmair
    • Uwe KroissWalter StieglbauerJosef Artelsmair
    • B23K15/00
    • B23K9/235B23K9/133B23K9/173B23K9/24B23K20/007
    • The invention relates to a method for forming an end of a welding wire (13) having a defined material and a defined diameter for a threading procedure, wherein the welding wire (13) is delivered from a wire storage via at least one wire core (12) through a contact tube arranged in a welding torch (10), and to a corresponding device thereof. In order to enable automated forming of the end of a welding wire (13), according to the invention prior to the threading procedure, an electric arc (15) is generated between a contact plate (30) connected to a power source (2) and the welding wire (13) as a function of the material and the diameter of the welding wire (13) so as to form the end of the welding wire (13), wherein the end of the welding wire (13) is formed to be hemispherical and the diameter of the hemispherical end of the welding wire (13) does not substantially exceed the diameter of the welding wire (13).
    • 本发明涉及一种用于形成焊丝(13)的端部的方法,该焊丝具有限定的材料和用于螺纹过程的限定的直径,其中焊丝(13)经由至少一个丝芯(例如, 12)通过布置在焊枪(10)中的接触管,以及其对应的装置。 为了能够在穿线过程之前根据本发明自动形成焊丝(13)的端部,在连接到电源(2)的接触板(30)之间产生电弧(15) 和作为焊丝(13)的材料和直径的函数的焊丝(13),以形成焊丝(13)的端部,其中焊丝(13)的端部形成为 是半球形的,并且焊丝(13)的半球形端的直径基本上不超过焊丝(13)的直径。
    • 5. 发明授权
    • Method for short-arc welding and welding device for short-arc welding
    • 短弧焊接方法及短弧焊接焊接装置
    • US09035218B2
    • 2015-05-19
    • US13389064
    • 2010-07-23
    • Josef Artelsmair
    • Josef Artelsmair
    • B23K9/10B23K9/09B23K9/095
    • B23K9/092B23K9/0953
    • The invention relates to a method for disconnecting a short circuit (30) during short-arc welding, wherein when a short circuit (30) occurs, a time frame (32) is started, in which a defined current profile is performed to disconnect the short circuit within the time frame (32), and the current is increased if the time frame (32) is exceeded, and a corresponding welding device (1). In order to improve the welding quality, after the specifiable time frame (32) expires during a short circuit (30), said current profile for disconnecting the short circuit (30) is detected and at least one value or parameter in the disconnection of the short circuit (30) is stored or saved, wherein at least one value or parameter in the time frame (32) of the following short circuit (30) is adapted according to the stored value or parameter.
    • 本发明涉及一种在短弧焊接期间断开短路(30)的方法,其中当发生短路(30)时,开始时间框架(32),其中执行限定的电流分布以断开 在时间框架(32)内短路,并且如果超过时间框架(32),电流增加,并且相应的焊接装置(1)。 为了提高焊接质量,在短路(30)中指定的时间框架(32)到期后,检测到用于断开短路(30)的所述电流分布,并且断开所述短路(30)中的至少一个值或参数 存储或保存短路(30),其中根据所存储的值或参数来适配以下短路(30)的时间框架(32)中的至少一个值或参数。
    • 6. 发明授权
    • Method for welding a workpiece
    • 焊接工件的方法
    • US08389900B2
    • 2013-03-05
    • US12226242
    • 2007-02-12
    • Josef ArtelsmairJosef Leeb
    • Josef ArtelsmairJosef Leeb
    • B23K9/12
    • B23K9/0737
    • The invention describes a method for welding a workpiece (16) with a consuming welding wire (13), the latter being moved substantially towards the workpiece (16) by a wire feeder (11) during a welding process, wherein a process is started and performed for removing slag (42) from the end of the welding wire (13). In order to create a welding method which is not affected by slag (42) possibly adhering to the end of the welding wire (13) to be contacted and which ensures a safe ignition of the electric arc (15), it is provided that the welding current (I) will be reduced to a minimum value as soon as the slag-removing process is started, and during the slag-removing process, that the welding wire (13) will be cyclically moved towards the workpiece (16) by a predetermined path length in a fast recurrent forward/backward movement and will again be moved away from the workpiece (16) by a smaller path length until short-circuit detection between the welding (13) and the workpiece (16), by a short-circuit monitoring unit upon which the slag-removing process will be finished.
    • 本发明描述了一种用消耗焊丝(13)焊接工件(16)的方法,后者在焊接过程中通过送丝机(11)基本上朝着工件(16)移动,其中开始一个过程, 用于从焊丝(13)的端部除去炉渣(42)。 为了形成不受可能附着在要被接触的焊丝(13)的端部的渣(42)的影响的焊接方法,并确保电弧(15)的安全点火, 一旦开始除渣过程,焊接电流(I)将减小到最小值,并且在除渣过程中,焊丝(13)将通过工件(16)循环移动 在快速反复正向/反向移动中的预定路径长度,并且将再次通过较短的路径长度移动远离工件(16),直到焊接(13)和工件(16)之间的短路检测为止, 除渣过程完成的电路监控单元。
    • 7. 发明申请
    • Welding wire storage device
    • 焊丝储存装置
    • US20070151964A1
    • 2007-07-05
    • US10587153
    • 2005-01-26
    • Josef ArtelsmairChristian Stumpfl
    • Josef ArtelsmairChristian Stumpfl
    • B23K9/28
    • B23K9/1333B23K9/124
    • In a welding wire storage device for a welding system including a housing (42) with a wire core (43) surrounding the welding wire (13) being arcuately arranged to lie freely in a free space (45) of the housing (42), one end of the wire core (43) is fixed in an end region of the housing (42) and a measuring means (44) is provided to detect the deflection of the wire core (43). In order to provide a very simple and compact structure for such a welding wire storage device, the wire core (43) is displaceably mounted in a guide element (46) on the opposite end region, and two coupling mechanisms (48, 49) for connection with a wire guide hose (50) for the wire core (23) are arranged on the housing (42).
    • 在一种用于焊接系统的焊丝存储装置中,包括具有围绕焊丝(13)的线芯(43)的壳体(42),所述壳体(42)被弧形地布置成自由地位于所述壳体(42)的自由空间(45)中, 线芯(43)的一端固定在壳体(42)的端部区域中,并且设置测量装置(44)以检测线芯(43)的偏转。 为了为这种焊丝存储装置提供非常简单和紧凑的结构,线芯(43)可移动地安装在相对端区域上的引导元件(46)中,以及两个耦合机构(48,49),用于 与用于线芯(23)的导线软管(50)的连接被布置在壳体(42)上。
    • 9. 发明申请
    • Welding Torch and End Piece as Well as Contact Tube for a Welding Torch
    • 焊接火炬和端部以及用于焊接火炬的接触管
    • US20090045183A1
    • 2009-02-19
    • US12086366
    • 2006-11-28
    • Josef ArtelsmairAndreas LeonhartsbergerJorg Kazmaier
    • Josef ArtelsmairAndreas LeonhartsbergerJorg Kazmaier
    • B23K9/28
    • B23K9/295
    • The invention relates to a welding torch (10) having a torch body (46) in which at least one device (32) for feeding a welding wire (13) and a contact tube (30) having a bore (33) and a guide bore (34), running concentrically thereto, for guiding the welding wire (13) in the direction of a workpiece (16) are arranged, wherein the welding wire (13) can be supplied with electrical energy via the contact tube (30), wherein one end of the feed device (32) is arranged in the guide bore (34) of the contact tube (30) and is provided with an electrically conductive end piece (36) having a bore (40) for the welding wire (13). To provide such a welding torch (10) in which the durability or the service life of the wearing parts, in particular of the contact tube (30), is prolonged, provision is made for the end piece (36) of the feed device (32) to be movably arranged in the guide bore (34) of the contact tube (30).
    • 本发明涉及一种具有炬体(46)的焊炬(10),其中至少一个用于馈送焊丝(13)的装置(32)和具有孔(33)的接触管(30)和导向件 布置有用于沿着工件(16)的方向引导焊丝(13)的同心运行的孔(34),其中焊丝(13)可以经由接触管(30)被供应电能, 其中所述进给装置(32)的一端设置在所述接触管(30)的所述引导孔(34)中,并且设置有导电端部件(36),所述端部件具有用于所述焊丝(13)的孔(40) )。 为了提供一种这样的焊枪(10),其中耐久性或使用寿命特别是接触管(30)的耐久性或使用寿命延长了,为进料装置的端件(36) 32)可移动地布置在接触管(30)的引导孔(34)中。
    • 10. 发明申请
    • Method for controlling and/or adjusting a welding process and welding device for carrying out a welding process
    • 用于控制和/或调整焊接过程的方法以及用于执行焊接过程的焊接装置
    • US20070056944A1
    • 2007-03-15
    • US10574401
    • 2004-10-21
    • Josef Artelsmair
    • Josef Artelsmair
    • B23K9/10
    • B23K9/092
    • The invention relates to a method for controlling and/or adjusting a welding process, using a melting electrode, wherein after ignition of an electric arc, a welding process, which is adjusted on the basis of several different welding parameters, is carried out by means a welding current source (2), said process being controlled or adjusted by a control device (4). The invention also relates to a corresponding welding device used to carry out the process. In order to create said method, wherein the thermal heat economy is adjusted and/or regulated and/or controlled in order to introduce heat into the workpiece (16), at least two different process phases are cyclically combined, said process phases having different inputs of energy via different material transitions and/or arc types, such as a pulse current phase (27) and a cold metal transfer phase (28) in order to influence or control thermal heat economy, particularly the introduction of heat into the workpiece to be processed (16).
    • 本发明涉及一种使用熔融电极来控制和/或调整焊接工艺的方法,其中在电弧点火之后,基于若干不同的焊接参数调整的焊接过程通过装置 焊接电流源(2),所述过程由控制装置(4)控制或调节。 本发明还涉及用于执行该过程的相应的焊接装置。 为了创建所述方法,其中调节和/或调节和/或控制热热经济性以便将热量引入到工件(16)中,至少两个不同的工艺阶段被循环组合,所述工艺阶段具有不同的输入 能量通过不同的材料转变和/或电弧类型,例如脉冲电流相(27)和冷金属转移相(28),以便影响或控制热热经济性,特别是将热量引入到工件中 处理(16)。