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Development and Application of Ultrasonic Assisted Robot Drilling and Processing System

机译:超声波辅助机器人钻加工系统的开发与应用

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In the process of robot drilling titanium alloy workpieces, the cutting force received by the drill bit is large and the amplitude is large. During the drilling process, a large amount of heat and chip evacuation will be generated; in addition, the traditional ultrasonic assisted processing system is installed at the end of the robot arm and the load very heavy which leads to a reduction in the rigidity of the industrial six-axis robot, and then this affects the quality and efficiency of drilling. This thesis has developed an ultrasonic-assisted robot drilling and processing system. This system uses the principle of ultrasonic vibration cutting and is independently installed with the workpiece to form an ultrasonic vibration table. Which combined with the robot arm drilling feature of flexible processing, it effectively solves the engineering difficulties encountered in drilling titanium alloy workpieces. The experimental results show that this set of ultrasonic assisted drilling device can effectively reduce the cutting force between the drill bit and the workpiece, improve the smoothness of the inner wall of the hole, and maximize the flexible machining efficiency of the robot arm.
机译:在机器人对钛合金工件进行钻孔的过程中,钻头承受的切削力大且振幅大。在钻孔过程中,会产生大量的热量和切屑排出;另外,传统的超声波辅助处理系统安装在机器人手臂的末端,并且负载非常重,导致工业六轴机器人的刚度降低,进而影响钻孔的质量和效率。本文开发了一种超声波辅助的机器人钻加工系统。该系统采用超声振动切割的原理,与工件独立安装,形成超声振动台。结合机械臂钻孔加工灵活的特点,有效解决了钛合金工件钻孔时遇到的工程难题。实验结果表明,该套超声辅助钻削装置可以有效降低钻头与工件之间的切削力,提高孔内壁的光滑度,最大程度地提高机械臂的柔性加工效率。

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