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    • 2. 发明授权
    • Electrode protection device, spot-welding tool and resistance welding method
    • 电极保护装置,点焊工具和电阻焊接方法
    • US07473865B2
    • 2009-01-06
    • US10519873
    • 2003-05-26
    • Walter StieglbauerManfred WimmerKarin Himmelbauer
    • Walter StieglbauerManfred WimmerKarin Himmelbauer
    • B23K11/30
    • B23K11/11B23K11/3009B23K11/309B23K11/314B23K11/36B23K2101/18
    • A device for protecting an electrode during the resistance welding of workpieces, particularly of metal sheets, is made of a strip that is placed over the electrode, in a manner that enables it to be displaced in relation thereto. In order to reduce the wearing of the electrode, the strip is formed from at least two metal strips, which are arranged one atop the other and which are made of different materials. The materials of the metal strips are preferably matched to the material of the electrode and to the material of the workpiece, particularly the metal sheet, with regard to predetermined properties. A spot-welding tool is provided for carrying out the resistance welding of workpieces, particularly of metal sheets, having at least one electrode. A resistance welding method welds two workpieces, particularly metal sheets to one another by spot-welding tools.
    • 在工件,特别是金属板的电阻焊接期间用于保护电极的装置由放置在电极上方的条形成,使得其能够相对于其移位。 为了减少电极的磨损,带材由至少两个金属条形成,它们彼此顶置并由不同的材料制成。 关于预定的性质,金属条的材料优选地与电极的材料和工件的材料(特别是金属片)相匹配。 提供点焊工具,用于对具有至少一个电极的工件,特别是金属片进行电阻焊接。 电阻焊接方法通过点焊工具将两个工件,特别是金属板彼此焊接。
    • 5. 发明申请
    • Electrode protection device, spot-welding tool and resistance welding method
    • 电极保护装置,点焊工具和电阻焊接方法
    • US20050230362A1
    • 2005-10-20
    • US10519873
    • 2003-05-26
    • Walter StieglbauerManfred WimmerKarin Himmelbauer
    • Walter StieglbauerManfred WimmerKarin Himmelbauer
    • B23K11/30
    • B23K11/11B23K11/3009B23K11/309B23K11/314B23K11/36B23K2101/18
    • The invention relates to a device for protecting an electrode (4) during the resistance welding of workpieces, particularly of metal sheets (6, 7), comprising a strip (1) that is placed over the electrode (4), preferably in a manner that enables it to be displaced in relation thereto. In order to reduce the wearing of the electrode (4), the invention provides that the strip (1) consists of at least two metal strips (2, 3), which are arranged one atop the other and which are made of different materials. The materials of the metal strips (2, 3) are preferably matched to the material of the electrode (4) and to the material of the workpiece, particularly the metal sheet (6, 7), with regard to predetermined properties. The invention also relates to a spot-welding tool (8) for carrying out the resistance welding of workpieces, particularly of metal sheets (6, 7), comprising at least one electrode (4), and to a resistance welding method during which two workpieces, particularly metal sheets (6, 7), are welded to one another by spot-welding tools (8).
    • 本发明涉及一种用于在工件,特别是金属板(6,7))的电阻焊期间保护电极(4)的装置,其包括放置在电极(4)上方的条带(1),优选地以 这使得它能够相对于其移位。 为了减少电极(4)的磨损,本发明提供了条带(1)由至少两个金属条(2,3)组成,它们彼此排列并且由不同的材料制成。 关于预定的性质,金属条(2,3)的材料优选与电极(4)的材料和工件的材料,特别是金属片(6,7)相匹配。 本发明还涉及一种用于进行包括至少一个电极(4)的金属片(6,7)的工件的电阻焊接的点焊工具(8),其中两个 工件,特别是金属板(6,7)通过点焊工具(8)彼此焊接。
    • 6. 发明授权
    • Method for monitoring the quality of spot welding
    • 监控点焊质量的方法
    • US07259349B2
    • 2007-08-21
    • US10523957
    • 2003-09-03
    • Walter StieglbauerManfred WimmerWolfgang Zauner
    • Walter StieglbauerManfred WimmerWolfgang Zauner
    • B23K11/25
    • B23K11/115B23K11/25
    • A method for monitoring the quality of spot welding, in particular for robotic applications. Workpieces, such as metal sheets are welded together using spot welding tools. The sheets are placed between at least two electrodes, which are pressed against one another and supplied with energy. The spot weld is evaluated using an evaluation element, in particular an optical visualization. A tape is placed between the electrodes or electrode caps and the sheets. The tape is transported onwards after the welding process. The tape is configured in such a way that a mirror-image, in particular a proportional reproduction or impression of the spot weld that has been produced on the workpiece is created by the welding process on the tape. The reproduction or impression is detected and evaluated by the evaluation element and the size, shape and position of the spot weld are deduced.
    • 一种用于监测点焊质量的方法,特别是用于机器人应用的方法。 工件,如金属板,使用点焊工具焊接在一起。 片材放置在至少两个电极之间,这两个电极彼此压紧并供应能量。 使用评估元件,特别是光学可视化来评估点焊。 磁带被放置在电极或电极盖和片之间。 在焊接过程之后,磁带被传送到前面。 磁带被配置成使得通过磁带上的焊接过程产生镜像,特别是在工件上产生的点焊的比例再现或印模。 通过评估元件检测和评估再现或印象,并推导出点焊的尺寸,形状和位置。
    • 8. 发明申请
    • Method for monitoring the quality of spot welding
    • 监控点焊质量的方法
    • US20060163213A1
    • 2006-07-27
    • US10523957
    • 2003-09-03
    • Walter StieglbauerManfred WimmerWolfgang Zauner
    • Walter StieglbauerManfred WimmerWolfgang Zauner
    • B23K11/24
    • B23K11/115B23K11/25
    • The invention relates to a method for monitoring the quality of spot welding, in particular for robotic applications. According to said method, workpieces, in particular metal sheets (3, 4), are welded together by means of spot welding tools. The sheets (3, 4) are placed between at least two electrodes (6), which are pressed against one another and supplied with energy. The weld spot (13) is evaluated by means of an evaluation element, in particular an optical visualization. A tape is placed between the electrodes (6) or electrode caps (8) and the sheets (3, 4), said tape being transported onwards after the welding process. The tape (7) is configured in such a way that a mirror-image, in particular a proportional reproduction or impression (14) of the weld spot that has been produced on the workpiece, is created by the welding process on the tape (7). The reproduction or impression is detected and evaluated by the evaluation element and the size, shape and position of the weld spot are deduced.
    • 本发明涉及一种用于监测点焊质量的方法,特别是用于机器人应用。 根据所述方法,工件,特别是金属板(3,4)通过点焊工具焊接在一起。 片材(3,4)被放置在至少两个电极(6)之间,这两个电极彼此挤压并且供应能量。 焊点(13)通过评估元件,特别是光学可视化来评估。 在电极(6)或电极盖(8)和片(3,4)之间放置带,所述带在焊接过程之后向前传送。 带(7)被构造成使得通过在带(7)上的焊接过程产生镜像,特别是在工件上产生的焊点的比例再现或印模(14) )。 通过评估元件检测和评估再现或印象,并推导出焊点的尺寸,形状和位置。
    • 10. 发明申请
    • SOLID ELECTROLYTIC CAPACITOR, BOARD WITH BUILT-IN SOLID ELECTROLYTIC CAPACITOR, AND METHOD FOR PRODUCING THEM
    • 固体电解电容器,具有内置固体电解电容器的板及其制造方法
    • US20050225930A1
    • 2005-10-13
    • US10518683
    • 2003-06-18
    • Walter StieglbauerManfred WimmerKarin Himmelbauer
    • Walter StieglbauerManfred WimmerKarin Himmelbauer
    • H01G2/06H01G9/00H01G9/012H01G9/04H01G9/08H01G9/14
    • H01G9/012H01G2/065H01G9/14H01G11/48Y02E60/13Y10T29/417
    • It is an object of the present invention to provide a three-terminal type solid electrolytic capacitor which can reduce the ESL and is suitable for being mounted on or built in a circuit board and a circuit board having the built-in three-terminal type solid electrolytic capacitor, and methods for manufacturing them. An electrode body 100 of a solid electrolytic capacitor component includes a foil-like aluminum substrate 2 whose surface is roughened or enlarged and which is formed with an aluminum oxide film the surface thereof as an insulating oxide film, two foil-like aluminum substrates 3a, 3b whose surfaces are not roughened, and two foil-like copper substrates 4a, 4b as a metal electric conductor for constituting a lead electrode. On the whole surface of the foil-like aluminum substrate 2, an anode electrode 14 including a solid high molecular polymer electrolyte layer 11, a graphite paste layer 12 and a silver paste layer 13 is formed. The thus constituted solid electrolytic capacitor component 110 is accommodated in a substantially closed space defined by a first insulating substrate 21 and a second insulating substrate 22, thereby fabricating a three-terminal type solid electrolytic capacitor.
    • 本发明的目的是提供一种三端固体电解电容器,其可以减少ESL并且适于安装在电路板上或内置在电路板中以及具有内置三端型固体的电路板 电解电容器及其制造方法。 固体电解电容器部件的电极体100包括表面粗糙化或扩大的箔状的铝基板2,其形成有作为绝缘氧化膜的表面的氧化铝膜,两个箔状的铝基板3a 3b,其表面不粗糙,以及作为用于构成引线电极的金属导电体的两个箔状铜基板4a,4b。 在箔状铝基板2的整个表面上形成包括固体高分子聚合物电解质层11,石墨糊层12和银膏层13的阳极14。 这样构成的固体电解电容器部件110容纳在由第一绝缘基板21和第二绝缘基板22限定的大致封闭的空间中,由此制造三端型固体电解电容器。