레이저 가공에 있어서 키홀의 동적거동

Dynamic Bechavior of the keyhole in Laser Processing

  • 발행 : 1997.07.01

초록

The results of high speed photography, acoustic emission detection and plasma UV radiation intensity measurement during CO2 laser welding of stainless steel 304 are presented. Video images with high spatial and temporal resolution allowed to observe the melt dynamics and keyhole evolution. The existence of a high speed melt flow which originated from the part of weld pool and flowed along the sides wall of keyhole was confirmed by the slag motion on the weld pool. the characteristic frequencies of flow instability and keyhole fluctuations at different welding speed were measured and compared with the results of Fourier analyses of temporal acoustic emission (AE) and light emission (LE) spectra. The experimental results were compared with the newly developed numerical model of keyhole dynamics. (The model is based on the assumption that the propagation of front part of keyhole into material is due to the melt ejection driven by laser induced surface evaporation.) The calculations predict that a high speed melt flow is induced at the front part of keyhole when the sample travel speed exceeds several 10mm/s. The numerical analysis also shows the hump formation on the front keyhole wall surface. Experimentally observed melt behavior and transformation of the AE and LE spectra with variation of welding speed are qualitatively in good agreement with the model predictions.

키워드

참고문헌

  1. ASM International plasma, Electron and Laser Beam Technology-Development and Use in Material processing- Y. Arata
  2. Preprints of the National Meeting of Japan Welding Society v.59 Formation Mechnism and Prevention of Defects in Laser Welding (Report 1)-Effects of Pulse Shapes on Keyhloe Behavior- J. D. Kim;S. Katayama;A. Matsunawa
  3. The 6th International Synmposium on the Role of Welding Science and Technology in the 21st century v.1 plasma Diagnostics in Pulse YAG laser Welding J. D. Kim;S. Katayama;A. Mtsunawa
  4. Proceeding of 40th Laser Materials Processing conference YAG laser welding phenomenon S. Katayama;J. D. Kim;A. Matsunawa
  5. Proc. ICALEO'94 A Concept for a Hydrodynamic Model of Keyhole Formation and Support during Laser Welding V. V. Semak;J. A. Hopkins;M. H. McCay
  6. Proc. ICALEO'95 Modeling of Deep Penetration Laser Welding Process - Application to the Analysis of the Energy Coupling inside the Keyhole- R. Fabbro;A. Poueyo-verwaerde