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Correcting Distortion of Elliptical Trajectory for Maximizing Cutting Performance in Elliptical Vibration Cutting

机译:校正椭圆轨迹的畸变以最大程度地提高椭圆振动切削中的切削性能

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摘要

To maximize cutting performance of elliptical vibration cutting (EVC) (also known as two-dimensional vibration assisted cutting), the elliptical trajectory of a cutting tool needs to be corrected. In this study, the effect of the shape of the elliptical trajectory on the machining characteristics of EVC is investigated. Various elliptical trajectories were created by modulating the relative phase and magnitude of the sinusoidal input voltages to the piezoelectric actuators and the effect of tilt angle of the elliptical trajectory on the machining quality such as the cutting resistance and machining quality is experimentally observed in successive micro-V grooving as the tilt angle is changed between 0°, 30°, -30°, and 90°. It is found that the tilt angle significantly affects both the cutting resistance and machining quality.
机译:为了最大化椭圆振动切削(EVC)(也称为二维振动辅助切削)的切削性能,需要校正切削刀具的椭圆轨迹。在这项研究中,研究了椭圆轨迹形状对EVC加工特性的影响。通过调制到压电致动器的正弦输入电压的相对相位和幅度来创建各种椭圆形轨迹,并在连续的微加工中通过实验观察到椭圆形轨迹的倾斜角对加工质量的影响,例如切削阻力和加工质量。当倾斜角度在0°,30°,-30°和90°之间变化时,可进行V槽加工。发现倾斜角显着影响切削阻力和加工质量。

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