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Effect of Laser Shock Peening Simulation Parameters on Residual Stress of Inconel Alloy 600 Steel

LSP 시뮬레이션 변수가 Inconel 600 합금의 잔류응력에 미치는 영향

  • Received : 2011.07.19
  • Accepted : 2011.11.01
  • Published : 2012.01.01

Abstract

The effects of parameters related to the finite element simulation of the laser shock peening(LSP) process on the residual stresses of Inconel alloy 600 steel are discussed. In particular, we focus on the maximum pressure, pressure pulse duration, laser spot size, and number of shots. It is found that certain ranges of the maximum pressure and pulse duration can produce the maximum compressive residual stresses near the surface, and thus proper choices of these parameters are important. The residual stresses are not affected by the laser spot size, provided it is larger than a certain size. The magnitudes of the compressive residual stresses and the plastically affected depths are found to increase with an increasing number of shots, but this effect is less pronounced for more shots.

본 논문은 레이저 샥 피닝(LSP) 유한요소 시뮬레이션 관련 변수들이 인코넬 alloy 600 합금의 잔류 응력에 미치는 영향을 분석하였다. 특히, 레이저 피닝 공정 관련 변수인 최대 압력파, 압력파 지속시간, 레이저 스팟 크기 및 다중 레이저 샷의 영향을 확인하였다. 최대 압력파 및 압력파 지속시간은 alloy 600 재료물성에 따라 특정 범위에서 최대 압축잔류응력을 생성시켜 준다. 이 때문에 LSP 공정에서 최대 압력파 및 압력파 지속시간은 중요한 선택 변수가 된다. 일정한 크기 이상의 레이저 스팟은 잔류응력에 특별한 영향을 미치지 않음을 확인하였고, 다중 레이저 샷은 압축잔류응력 크기와 소성변형 발생깊이를 동시에 증가시키지만, 증가량은 레이저 샷 횟수가 증가할수록 감소하였다.

Keywords

References

  1. Ding, K. and Ye, L., 2006, "Laser Shock Peening Performance and Process Simulation," CRC Press, pp. 47-118.
  2. Ding, K. and Ye, L., 2006, "Simulation of Multiple Laser Shock Peening of a 35CD4 Steel Alloy," J.of Materials Processing Technology, Vol. 178, pp. 162-169. https://doi.org/10.1016/j.jmatprotec.2006.03.170
  3. Yang, S. Y., Choi, S. D., Jun, J. M. and Gong, B.C., 2010, "Improving the Residual Stress Characteristics of the Metal Surface by ND: YAG Laser Shock Peening," J.of the Korean Society of Machine Tool Engineering, Vol. 19, pp. 539-547.
  4. Wu, S., Huang, C., Wang, X. and Song, H., 2011, "A New Effective Method to Estimate the Effect of Laser Shock Peening," Int. J. of Impact Engineering, Vol. 38, pp. 322-329. https://doi.org/10.1016/j.ijimpeng.2010.11.008
  5. Ling, X., Peng, W. and Ma, G., 2008, "Influence of Laser Peening Parameters on Residual Stress Field of 304 Stainless Steel," J. of Pressure Vessel Technology, Vol. 130, No. 021120, pp. 1-8.
  6. Yang, C., Hodgson, D., Liu, Q. and Ye, L., 2008, "Geometrical Effects on Residual Stresses in 7075- T7451 Aluminum Alloy Rods Subject to Laser Shock Peening," J. of Materials Processing Technology, Vol. 201, pp. 303-309. https://doi.org/10.1016/j.jmatprotec.2007.11.147
  7. Bang, B. W., Son, S. K., Kim, J. M. and Cho, C. D., 2009, "Residual Stress Prediction in LSP Surface Treatment by Using FEM," KSME-A, Vol. 33, No. 8, pp. 776-772. https://doi.org/10.3795/KSME-A.2009.33.8.767
  8. Kim, J. H. and Kim, Y. J., 2010, "Sensitivity Analyses of the Finite Element Parameters of Laser Shock Peening for Improving Fatigue Life of Metallic Components," KSME-A, Vol. 34, No.12, pp. 1821-1828.
  9. 2008, ABAQUS Version 6.9, User's manual, Dassault Systemes.
  10. Peyre, P., Fabbro, R. Merrien, P. and Lieurade, P., 1996, "Laser Shock Processing of Aluminium Alloys. Application to High Cycle Fatigue Behaviour," Materials Science and Engineering, Vol. A210, pp. 102-113.
  11. Peyre, P. and Fabbro, R., 1995, "Laser Shock Processing: A Review of the Physics and Applications," Optical and Quantum Electronics, Vol. 27, pp. 1213-1229.
  12. Bugayev, A., Gupta, M. and Payne, R., 2006, "Laser Processing of Inconel 600 and Surface Structure," Optics and Lasers in Engineering, Vol. 44, pp. 102-111. https://doi.org/10.1016/j.optlaseng.2005.04.014
  13. Special metals, 2008, Inconel Alloy 600, Special Metals Corporation Publication, No. SMC-207, September.
  14. Ballard, P., Fournier, J., Fabbro, R. and Frelat J., 1991, "Residual Stresses Induced by Laser-Shocks," J. de Physique IV, Vol. 1, pp. 487-581.
  15. Braisted, W., and Brockman, R., 1999, "Finite Element Simulation of Laser Shock Peening," Int. J. of Fatigue, Vol. 21, pp. 719-724. https://doi.org/10.1016/S0142-1123(99)00035-3
  16. Masse, J. E. and Barreau, G., 1995, "Laser Generation of Stress Waves in Metal," Surface and Coating Technology, Vol. 70, pp. 231-234. https://doi.org/10.1016/0257-8972(95)80020-4

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