A Study of Heat Flow and Residual Stress Analysis in Pipe-plate Gas Metal Arc Brazing

파이프-평판 GMAB 접합부의 열유동 및 잔류음력 해석에 관한 연구

  • 이태영 (영남대학교 대학원 기계공학과) ;
  • 김재웅 (영남대학교 공과대학 기계공학부) ;
  • 이목영 (포항산업과학연구원 접합가공연구팀) ;
  • 정평석 (영남대학교 공과대학 기계공학부)
  • Published : 2001.08.01

Abstract

In this study. two-dimensional heat flow and residual stress in arc brazing to join the pipe and plate structure were analyzed by using a commercialized FEM package. Advantages offered by arc brazing are that strong joints can be produced with lower heat input than that of previous gas metal arc welding and narrower heat affected zone can usually be obtained than that in the case of torch brazing. To investigate the effects of process variables and minimize the thermal effects on the structure, this study presents a method for analyzing the heat flow and residual stress in arc brazing process according to variables such as traveling speed, torch angle and position. The simulation results were compared with the experimental ones to verify the numerical analysis method. The experiments include the measurement of HAZ size from the section of joints and residual stresses by using strain gages named 'section method'. A comparatively good agreement between the results of numerical analysis and experimental ones could be obtained in both of the temperature distribution and residual stress of the brazed structure. Using the proposed numerical analysis method, the process parameters were evaluated to get proper arc brazing conditions.

Keywords

References

  1. 大韓熔接學會誌 v.17 no.5 가스 메탈 아크 브레이징 부의 기공 발생량에 미치는 용접조건의 영향 이상한;김희진;오영근
  2. 용접 · 접합편람 대한용접학회 용접편람편찬위원회
  3. Welding Research Supplement v.76 no.1 Prediction of Axis shift distortion during Circumferential Welding of Thin pipe using the F.E.M. G. Ravichandran;V.P. Raghupathy;N. Ganesan;R. Krishnakumar
  4. Transactions of the ASME:Journal of Pressure Vessel Technology v.103 A Computational Model of Backlay Welding for Controlling Residual Stresses in Welded Pipes F.W. Brust;E.F. Rybicki
  5. Welding Journal v.20 no.5 Mathematical Theory of Heat Distribution During Welding and Cutting Rosenthal, D.
  6. Trans. ASME v.68 The theory of moving sources of heat and it's application to metal treatment Rosenthal, D.
  7. Welding Journal v.55 no.12 An Investigation of the Thermal Response of Stationary Gas Tungsten Arc Welds Friedman, E.;Glickstein, S.S.
  8. Computer andstructures v.3 no.9 Hibbit, H.D.;Marcal, P.V.
  9. 大韓熔接學會誌 v.14 no.6 수평필릿용접의 용접부 형상을 예측하기 우한 수학적 모델링 및 열전달 해석에 관한 연구 문형순;나석주
  10. 大韓熔接學會誌 v.15 no.4 필릿 용접부의 각변형량 예측에 관한 연구 양영수;이세호나;위창욱;조수형
  11. Transaction of ASM v.46 Elevation of critical terperatures in steel by high heating rates W. J. Feuststein;W.K. Smith
  12. 용접 · 접합편람 대한용접학회 용접편람편찬위원회
  13. Quarterly Jouranal of The Japan Welding Society v.15 no.3 Diffusion Bonding of Copper Machined Ultra Finely Yasuhiro FUKAYA(et. al.)
  14. Transactions of the ASME:Journal of Pressure Vessel Technology v.112 Three-Dimentional Finite Element Analysis of Temperatures and Stresses in a Single-Pass Butt-Welded Pipe R.I. Karlesson;B.L. Josefson
  15. Welding Research Supplement v.76 no.10 Finite Element Modeling of Residual Stresses in Austenitic Stainless Steel Pipe Girth Welds Y. Dong;J. K. Hong;C.L. Tsai;P. Dong
  16. Transactions of the ASME:Journal of Pressure Vessel Technology v.117 A study on Mathematical Modeling of Parameter optimization in Gas Tungsten Arc Welding of Thin pipes T.-J. Lho;S.-J. Na
  17. Welding Handbook(Eight Edition) v.2 AWS