A study on the vibration cutting of high-hardness mold steel

고경도 금형강의 진동 가공에 대한 연구

  • Kim, Jong-Su (Korea Institute of Industrial Technology, Molding & Metal Forming R&D Department)
  • 김종수 (한국생산기술연구원 뿌리기술연구소)
  • Published : 2022.09.30

Abstract

In this study, we designed an vibration cutting tool that can achieve improvements such as low cutting force, interrupted chip evacuation and better surface quality of cutting performance to obtain high-quality surface roughness and improvement of tool wear, which is an issue in the machining of high-hardness mold steel. Among the resonance frequency modes of the vibration cutting tool, the bending mode was used to maximize the driving amplitude of the vibration tool tip, and the resonance frequency was confirmed through the finite element method. After measuring the actual resonant frequency of the designed tool using an optical fiber sensor, the cutting force and machining surface of vibration cutting and conventional cutting were compared and analyzed in the turning process of high hardness mold steel (STAVAX). As a result of the experiment, the cutting force was reduced by about 20 % compared to the conventional cutting process, and the surface roughness was also improved by about 60 %. This study suggested that the tool wear and surface quality of high-hardness steel can be improved through the vibration cutting method in the machining of high hardness mold steel.

Keywords

Acknowledgement

본 연구는 산업통산자원부 지원 글로벌주력산업 품질대응 뿌리기술개발사업 (20019131)으로 지원한 것이다.

References

  1. Hong, K.P., Cho, M.W. and Choi, I.J., "A Study on the Machining Characteristics of Co-Cr-Mo Alloy in Turning Process", Journal of the Korea Society of Die & Mold Engineering, Vol.11:1, 50-54, 2017.
  2. Son, S.M., Lim, H.S., Paik, I.H. and Ahn, J.H., "A study on critical depth of cuts in micro grooving", KSME International Journal, Vol.17:2, 239-245, 2003. https://doi.org/10.1007/BF02984395
  3. Kim, S.J., Le, D., Lee, S.W., Song, K.H. and Lee, D.Y., "Experiment-based statistical prediction on diamond tool wear in micro grooving Ni-P alloys", Diamond and Related Materials, Vol.41, 6-13, 2014. https://doi.org/10.1016/j.diamond.2013.10.005
  4. Liu, X., Zhou, T.F., Pang, S.Q., Xie, J.Q. and Wang, X.B., "Burr formation mechanism of ultraprecision cutting for microgrooves on nickel phosphide in consideration of the diamond tool edge radius", The International Journal of Advanced Manufacturing Technology, Vol.94:12, 3929-3935, 2018. https://doi.org/10.1007/s00170-017-1079-2
  5. Shin, B.C., Kim, B.C., Song, K.H. and Cho, M.W., "A Study on The Ultra-precision Polishing Method of Co-Cr-Mo alloy Using MR Fluid Polishing", Journal of the Korea Society of Die & Mold Engineering, Vol.11:3, 8-12, 2017.
  6. Kim, J.B., Hong, P.G., Seo, T.I. and Son, C.W., "A experimental study about plasma ion treatment to improve hardness of electro-polished surface", Journal of the Korea Society of Die & Mold Engineering, Vol.13:1, 13-18. 2019.
  7. Lim, D.W., Kim, B.C., Hong, K.P. and Cho, M.W., "Study on the Ultra Precision Polishing Method of Aluminum Surface Using MR Fluids", Journal of the Korea Society of Die & Mold Engineering, Vol.11:2, 20-24, 2017.
  8. Kim, J.S. and Kang, B.C., "Machining characteristics of micro lens mold in laser-assisted micro-turning", Journal of Mechanical Science and Technology, Vol.32:4, 1769-1774, 2018. https://doi.org/10.1007/s12206-018-0333-3
  9. Kim, J.D., Lee, S.J. and Suh, J., "Characteristics of laser assisted machining for silicon nitride ceramic according to machining parameters", Journal of Mechanical Science and Technology, Vol.25:4, 995-1001, 2011. https://doi.org/10.1007/s12206-011-0201-x
  10. Li, X. and Zhang, D.Y., "Ultrasonic elliptical vibration transducer driven by single actuator and its application in precision cutting", Journal of Materials Processing Technology, Vol.180:1-3, 91-95, 2006. https://doi.org/10.1016/j.jmatprotec.2006.05.007
  11. Zhang, X.Q., Kumar, A.S., Rahman, M.F., Nath, C. and Liu, K., "Experimental study on ultrasonic elliptical vibration cutting of hardened steel using PCD tools", Journal of Materials Processing Technology, Vol.211:11, 1701-1709, 2011. https://doi.org/10.1016/j.jmatprotec.2011.05.015
  12. Shamoto, E., Suzuki, N., Moriwaki, T. and Naoi, Y., "Development of Ultrasonic Elliptical Vibration Controller for Elliptical Vibration Cutting", CIRP Annals, Vol.51:1, 327-330, 2002. https://doi.org/10.1016/S0007-8506(07)61528-5
  13. Kurniawan, R., Ko, T.J., Ping, L.C., Kumaran, S.T., Kiswanto, G., Guo, P. and Ehmann, K.F., "Development of a two-frequency, elliptical-vibration texturing device for surface texturing", Journal of Mechanical Science and Technology, Vol.31:7, 3465-3473, 2017. https://doi.org/10.1007/s12206-017-0635-x
  14. Lin, J., Han, J., Lu, M., Gu, Y. and Zhu, W., "Development of non-resonant elliptical vibration cutting device based on parallel piezoelectric actuator", AIP Advances, Vol.7:035304, 1-16, 2017.
  15. He, Y., Zou, P., Zhu, W.L. and Ehmann, K.F., "Ultrasonic elliptical vibration cutting of hard materials: simulation and experimental study", International Journal of Advanced Manufacturing Technology, Vol.91, 363-374, 2017. https://doi.org/10.1007/s00170-016-9716-8
  16. Chen, F., Mei, G., Zhao, B., Bie, W. and Li, G., "Study on the characteristics of zirconia ceramic in three-dimensional ultrasonic vibration-assisted ELID internal grinding", Journal of Mechanical Science and Technology, Vol.34:1, 333-344, 2020. https://doi.org/10.1007/s12206-019-1233-x
  17. Zhang, Y., Zhao, B., Wang, Y. and Chen, F., "Effect of machining parameters on the stability of separated and unseparated ultrasonic vibration of feed direction assisted milling", Journal of Mechanical Science and Technology, Vol.31:2, 851-858, 2017. https://doi.org/10.1007/s12206-017-0137-x
  18. Xu, L.H., Na, H.B. and Han, G.C., "Machinability improvement with ultrasonic vibration assisted micro-milling", Advances in Mechanical Engineering, Vol.10:12, 1-12, 2018.
  19. Kuo, K.L., "Design of rotary ultrasonic milling tool using FEM simulation, Journal of Materials Processing Technology", Vol.201:1-3, 48-52, 2008. https://doi.org/10.1016/j.jmatprotec.2007.11.289
  20. Vivekananda, K., Arka, G.N. and Sahoo, S.K., "Design and Analysis of Ultrasonic Vibratory Tool (UVT) using FEM, and Experimental study on Ultrasonic Vibration-assisted Turning (UAT)", Procedia Engineering, Vol.97, 1178-1186, 2014. https://doi.org/10.1016/j.proeng.2014.12.396