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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Manufacture of Overhanging Sharp Corner by Means of 6-Axis Control Machining with the Application of Ultrasonic Vibrations
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Manufacture of Overhanging Sharp Corner by Means of 6-Axis Control Machining with the Application of Ultrasonic Vibrations

机译:利用超声波振动的六轴控制加工制造悬垂角

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摘要

The study proposes a new machining method to create an overhanging sharp corner. Sharp corners on overhanging surfaces are difficult to machine in conventional way or even in 3 to 5-axis EDM especially if the surfaces have different angles. This is due to the limitation of the feed direction and the structure of the electrode wherein it must be symmetrical with the target shape. In present research, we try to machine the sharp corner with overhanging surfaces using the new machining method. The 6-axis control machining is applied to set a non-rotational tool at an arbitrary position with arbitrary attitude against the workpiece. During cutting, the ultrasonic vibration is applied on the cutting edge of the tool, while the tool travels along the feed direction. As the cutting is performed, the 6 axes (X, Y, Z, A, B, and C) move simultaneously, depending on the tool attitude at a certain cutting point. From the experimental results, it is shown that the 6-axis control ultrasonic vibration cutting is capable of producing a sharp corner on overhanging surfaces.
机译:该研究提出了一种新的加工方法来创建悬垂的尖角。悬垂表面上的尖角很难以常规方式加工,甚至在3到5轴EDM中也很难加工,尤其是在表面角度不同的情况下。这是由于进给方向和电极结构的限制,其中电极必须与目标形状对称。在当前的研究中,我们尝试使用新的加工方法加工带有悬垂表面的尖角。进行六轴控制加工,以相对于工件的任意姿势将非旋转刀具设定在任意位置。在切削过程中,当刀具沿进给方向移动时,超声波振动会施加在刀具的切削刃上。进行切削时,这六个轴(X,Y,Z,A,B和C)同时移动,具体取决于在某个切削点处的刀具姿态。从实验结果表明,六轴控制超声振动切削能够在悬垂表面上产生尖角。

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