Heat Treatment Characteristics of a Press Draw Mold by Using High Power Diode Laser

고출력 다이오드 레이저를 이용한 프레스 드로우금형의 열처리 특성

  • Published : 2009.11.30

Abstract

Recently, Laser surface treatment technologies have been used to improve wear charactenitics and fatigue resistance of metal molding. When the laser beam is irradiated on the surface and laser speed is appropriate, the laser focal position is rapidly heated and the thermal energy of surface penetrates the material after irradiation, finally imbuing it with a new mechanical characteristic by the process of self-quenching. This research estimates the material characteristic after efficient and functional surface treatment using HPDL, which is more efficient than the existing CW Nd:YAG laser heat source. To estimate this, microstructural changes and hardness characteristics of three parts (the surface treatment part, heat affect zone, and parental material) are observed with the change of laser beam speed and surface temperature. Moreover, the depth of the hardened area is observed with the change of the laser beam speed and temperature. From the results of the experiments, it has been shown that the maximum hardness is approximately 788Hv when the heat treatment temperature and the travel speed are $1150^{\circ}$ and 2 mm/sec, respectively.

Keywords

References

  1. K. W. Park, Y. H. Han and S. Y. Lee : J. of the Korean Society for Heat Treatment, 9(4) (1996) 271
  2. K. S. Nam and K. H. Lee : J. of the Korean Society for Heat Treatment, 9(4) (1996) 229
  3. S. D. Park, O. Y. Lee and K. H. Song : J. of the Korean Society for Heat Treatment, 8(1) (1995) 32
  4. F. Dausinger : Proceedings of LAMP (1992) 697
  5. J. D. Kim, W. J. Kang, J. J. Lee, J. H. Lee, J. Suh and M. O. Lee : Proceedings of the Korean Welding and Joining Society Symposium (2006) 248
  6. H. J. Shin, Y. T. Yoo, D. G. Ahn and K. Im : J. Mater. Pro. Tech., 187-188 (2007) 467 https://doi.org/10.1016/j.jmatprotec.2006.11.188
  7. H. J. Shin and Y. T. Yoo : J. Mater. Pro. Tech., 201 (2008) 342 https://doi.org/10.1016/j.jmatprotec.2007.11.232
  8. P. Hoffmann, R. Dierken and T. Endress : J. of the Korean Society for Heat Treatment, 20(4) (2007) 203
  9. E. Kennedy, G. Byrne and D. N. Collins : J. Mater. Pro. Tech., 155-156 (2004) 1855 https://doi.org/10.1016/j.jmatprotec.2004.04.276
  10. S. D. Choi, S. H. Cheong, S. C. Yang and J. G. Kim : Kumoh National Institute of Technology, (2007) 380
  11. H. T. Hwang, H. S. Soo, J. D. Kim, M. K. Song and Y. K. Kim : Materials Research Society of Korea, 19 (2009) 574
  12. J. C. KIM : MA Thesis(in Korean), Ulsan University (2009) 380-385