首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >TORCH END-EFFECTOR AND TIG ELECTRODE CHANGEOUT DESIGN FOR A TIG WELDING ROBOT USED IN METAL BIG AREA ADDITIVE MANUFACTURING
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TORCH END-EFFECTOR AND TIG ELECTRODE CHANGEOUT DESIGN FOR A TIG WELDING ROBOT USED IN METAL BIG AREA ADDITIVE MANUFACTURING

机译:用于金属大面积添加剂制造的TIG焊接机器人的火炬末端效应器和TIG电极转换设计

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Metal Big Area Additive Manufacturing (mBAAM) is a promising approach to large-scale metal additive manufacturing (AM) or 3D printing. The mBAAM system uses an arc-based wire-fed welding robot to build metal parts. A multi-degree-of-freedom robotic arm is known for its extensive range of motion and reliable tool handling. Attaching a torch end-effector to a robotic arm gives it welding capabilities; however, this decreases the motion range and dynamics of the robot. As a result, build volume and printing accuracy are decreased. Additionally, only a portion of time is spent printing in an arc-based process. Maintenance leads to downtime on the system. In a tungsten inert gas (TIG)-based process, the torch electrode wears out over time and must be changed to avoid defective deposition. This paper proposes an approach for a compact torch end-effector to improve the robot's build volume. This paper also proposes an approach to reducing non-printing process time by designing and implementing a semi-automated electrode changing system.
机译:金属大区域添加剂制造(MBAAM)是大规模金属添加剂制造(AM)或3D印刷的有希望的方法。 MBAAM系统采用基于弧线的线送焊接机器人来构建金属部件。一种自由度机器人臂,以其广泛的运动和可靠的工具处理而闻名。将割炬末端执行器连接到机器人手臂,可提供焊接能力;然而,这降低了机器人的运动范围和动态。结果,构建体积和打印精度降低。另外,只有一部分在基于弧的过程中的打印。维护导致系统上的停机时间。在钨惰性气体(TIG)基础的过程中,割炬电极随着时间的推移磨损,必须改变以避免缺陷沉积。本文提出了一种紧凑炬结束效应器来改善机器人的构建体积的方法。本文还提出了一种通过设计和实现半自动电极改变系统来减少非打印过程时间的方法。

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