SYSTEM AND METHOD OF RECORDING MULTI-RUN DATA
    71.
    发明申请
    SYSTEM AND METHOD OF RECORDING MULTI-RUN DATA 审中-公开
    记录多运行数据的系统和方法

    公开(公告)号:US20160125764A1

    公开(公告)日:2016-05-05

    申请号:US14928723

    申请日:2015-10-30

    CPC classification number: G09B19/24 B23K9/0953 G09B5/00 G09B9/00 G09B25/02

    Abstract: A method includes calibrating a first path of a joint of a workpiece of a welding system relative to a component, determining a first set of welding parameters of a welding torch based at least in part on a tracked position and a tracked orientation of the welding torch along the first path of the joint during a first live-arc welding operation, calibrating a second path of the joint of the workpiece relative to the component, determining a second set of welding parameters of the welding torch based at least in part the tracked position and orientation of the welding torch along the second path of the joint during a second live-arc welding operation, and displaying at least one of the first and second sets of welding parameters on a display. The second path is disposed at least partially over the first path.

    Abstract translation: 一种方法包括:校准焊接系统相对于部件的工件的接头的第一路径,至少部分地基于焊枪的跟踪位置和跟踪取向来确定焊炬的第一组焊接参数 沿着所述接头的第一路径在第一活弧焊接操作期间,校准所述工件相对于所述部件的接头的第二路径,至少部分地基于所述跟踪位置确定所述焊炬的第二组焊接参数 以及在第二活弧焊接操作期间沿着接头的第二路径的焊炬的取向,以及在显示器上显示第一和第二组焊接参数中的至少一个。 第二路径至少部分地设置在第一路径上。

    SYSTEM AND METHOD OF REVIEWING WELD DATA
    72.
    发明申请
    SYSTEM AND METHOD OF REVIEWING WELD DATA 有权
    回顾焊接数据的系统和方法

    公开(公告)号:US20160125763A1

    公开(公告)日:2016-05-05

    申请号:US14928713

    申请日:2015-10-30

    Abstract: A method includes receiving welding data corresponding to a welding session completed with a welding system, receiving a selected location from an operator, and displaying on a display one or more quality characteristics of the welding session corresponding to the selected location. The welding data includes welding parameters and quality characteristics corresponding to a plurality of points along a path of the welding session. The welding parameters include a work angle of a welding torch, a travel angle of the welding torch, a contact tip to work distance, a travel speed of the welding torch along the path of the welding session, an aim of the welding torch, or any combination thereof. The quality characteristics include porosity, undercut, spatter, underfill, overfill, or any combination thereof. The selected location corresponds to a point of the plurality of points along the path of the welding session.

    Abstract translation: 一种方法包括接收与焊接系统完成的焊接会话相对应的焊接数据,从操作者接收所选择的位置,以及在显示器上显示对应于所选位置的焊接会话的一个或多个质量特性。 焊接数据包括焊接参数和对应于沿着焊接工段的路径的多个点的质量特性。 焊接参数包括焊炬的工作角,焊炬的行进角度,接触尖端到工作距离,焊炬沿着焊接工段的路径的行进速度,焊炬的目的,或 其任何组合。 质量特征包括孔隙率,底切,飞溅,底部填充,过度填充或其任何组合。 所选择的位置对应于沿着焊接会话的路径的多个点的点。

    SYSTEM AND METHOD FOR WELDING SYSTEM CLAMP ASSEMBLY
    73.
    发明申请
    SYSTEM AND METHOD FOR WELDING SYSTEM CLAMP ASSEMBLY 审中-公开
    焊接系统夹具组件系统及方法

    公开(公告)号:US20160125762A1

    公开(公告)日:2016-05-05

    申请号:US14928686

    申请日:2015-10-30

    Abstract: A system including a base component configured to be detected by one or more cameras of a welding system. The base component includes a thermally insulating layer coupled to the base component, a first set of three or more visual markers coupled to the thermally insulating layer on a first face of the base component, and a cover layer disposed on the thermally insulating layer on at least the first face of the base component. An exterior surface of the cover layer is less reflective of visible light or infrared light than the first set of three or more visual markers.

    Abstract translation: 一种包括配置成由焊接系统的一个或多个照相机检测的基座部件的系统。 基座部件包括耦合到基部部件的绝热层,耦合到基部部件的第一面上的绝热层的第一组三个或更多个视觉标记,以及设置在绝热层上的覆盖层 至少是基础组件的第一面。 覆盖层的外表面比第一组三个或更多个视觉标记物更少地反射可见光或红外光。

    SYSTEM AND METHOD OF MARKING A WELDING WORKPIECE
    74.
    发明申请
    SYSTEM AND METHOD OF MARKING A WELDING WORKPIECE 审中-公开
    焊接工作标记的系统和方法

    公开(公告)号:US20160039034A1

    公开(公告)日:2016-02-11

    申请号:US14808842

    申请日:2015-07-24

    Abstract: An embodiment of a system includes a marking tool configured to apply one or more markers on a first surface of a workpiece for a live welding session. The one or more markers have known geometric properties that may facilitate determination of the first surface and a weld joint. An embodiment of a method includes applying a first set of one or more markers to a first surface of a workpiece, detecting the applied first set of one or more markers with a camera, and determining, via processing circuitry coupled to the camera, at least one of the first surface of the workpiece and a weld joint based at least in part on the detected first set of one or more markers.

    Abstract translation: 系统的一个实施例包括一个标记工具,该标记工具被配置为在工件的第一表面上施加一个或多个标记用于活焊会话。 一个或多个标记具有可以有助于确定第一表面和焊接接头的已知几何特性。 一种方法的实施例包括将第一组一个或多个标记施加到工件的第一表面,用相机检测所施加的一个或多个标记的第一组,以及经由耦合到相机的处理电路至少 至少部分地基于检测到的一个或多个标记的第一组,工件的第一表面和焊接接头之一。

    TRAVEL SPEED PACING SYSTEMS AND METHODS FOR WELDING-TYPE OPERATIONS

    公开(公告)号:US20240342837A1

    公开(公告)日:2024-10-17

    申请号:US18618632

    申请日:2024-03-27

    CPC classification number: B23K31/02 B23K31/12

    Abstract: Disclosed example travel speed pacing systems for welding-type operations include: an interface configured to receive an input describing a characteristic of a welding-type operation; and control circuitry configured to: determine a target travel speed based on the input; determine a target time interval at which the welding-type operation is to traverse locations corresponding to successive ones of a plurality of marked locations on the workpiece of the welding-type operation, the target time interval being based on the target travel speed and a unit distance between the marked locations; and control the interface to output indicators representative of a target time interval.

    WELDING TECHNIQUE MONITORING SYSTEMS WITH SLOPED WORKPIECE CALIBRATIONS

    公开(公告)号:US20240207982A1

    公开(公告)日:2024-06-27

    申请号:US18508405

    申请日:2023-11-14

    CPC classification number: B23K37/0258 B23K31/02

    Abstract: Described herein are examples of tool based welding technique monitoring systems with sloped workpiece calibrations. Using two calibration steps (or one fluid calibrating movement), the disclosed system is able to monitor welding technique along a straight welding joint of any slope, be the slope 0/180/360 degrees (i.e., horizontal), 90/270 degrees (i.e., vertical), or any slope in between. The system provides an inexpensive, intuitive, and relatively robust way of tracking an orientation of a welding-type tool in relation to a welding joint and/or workpiece, and providing welding technique feedback based on the relationship.

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