4.7 Article

Study on the separation effect of high-speed ultrasonic vibration cutting

Journal

ULTRASONICS
Volume 87, Issue -, Pages 166-181

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.ultras.2018.02.016

Keywords

Separation effect; Ultrasonic vibration cutting; Clearance angle; Cutting force; Cutting chip

Funding

  1. National Natural Science Foundation of China [51290292, 51475029, 51475031]
  2. Application Research and Development Plan of Heilongjiang Province of China [GA12A402]

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High-speed ultrasonic vibration cutting (HUVC) has been proven to be significantly effective when turning Ti-6Al-4V alloy in recent researches. Despite of breaking through the cutting speed restriction of the ultrasonic vibration cutting (UVC) method, HUVC can also achieve the reduction of cutting force and the improvements in surface quality and cutting efficiency in the high-speed machining field. These benefits all result from the separation effect that occurs during the HUVC process. Despite the fact that the influences of vibration and cutting parameters have been discussed in previous researches, the separation analysis of HUVC should be conducted in detail in real cutting situations, and the tool geometry parameters should also be considered. In this paper, three situations are investigated in details: (1) cutting without negative transient clearance angle and without tool wear, (2) cutting with negative transient clearance angle and without tool wear, and (3) cutting with tool wear. And then, complete separation state, partial separation state and continuous cutting state are deduced according to real cutting processes. All the analysis about the above situations demonstrate that the tool-workpiece separation will take place only if appropriate cutting parameters, vibration parameters, and tool geometry parameters are set up. The best separation effect was obtained with a low feedrate and a phase shift approaching 180 degrees. Moreover, flank face interference resulted from the negative transient clearance angle and tool wear contributes to an improved separation effect that makes the workpiece and tool separate even at zero phase shift. Finally, axial and radial transient cutting force are firstly obtained to verify the separation effect of HUVC, and the cutting chips are collected to weigh the influence of flank face interference. (C) 2018 Elsevier B.V. All rights reserved.

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