Abstract

Abstract According to the high frequency vibration of the diamond tool and feed motion of the machine tool, the kinematic model of ultrasonic vibration machining was established by superposition principle. Its motion law was analyzed in theory. The experiments on the drilling force, the impact of load on the processing efficiency, and the surface quality of the workpiece with ultrasonic vibration drilling and traditional machining were carried out on the improved ultrasonic vibration drilling machine by way of drilling the ceramic material.

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