Experimental and Numerical Investigations of the Influences of Weld Length and Groove Configurations on Residual Stress Distributions

سال انتشار: 1384
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 1,398

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شناسه ملی سند علمی:

ICME07_084

تاریخ نمایه سازی: 6 آذر 1388

چکیده مقاله:

Residual stresses were produced in the weldments due to mismatching and un-even distributions of non-elastic strains. In this paper, the effects of weld lengths and groove configurations on the residual stresses distributions were considered. Threedimensional thermo-mechanical constitutive equations were used to describe the behavior of the plates. Simulation results were compared with the X-ray diffraction measurements. The results showed that in the central region, the peak transverse tensile residual stresses decreased with the weld length and the peak longitudinal tensile residual stresses increased with the weld length. In addition, the simulation results predicted that residual stress distributions depended on the shape of the groove. The peak of the tensile residual stress obtained for the U-groove configurations was less than that calculated for the V-groove configurations. In additions, of those V-grooves investigated, the minimum tensile residual stress was obtained for the 50 degrees V-groove configuration.

کلیدواژه ها:

Finite Element Method (FEM) ، Residual Stress ، TIG ، Weld ، Groove ، Distortion ، X-Ray Diffraction (XRD)

نویسندگان

A.A Akbari Mousavi

۱Dept. of Metallurgy and Material ScienceEngineering, Faculty of Engineering,University of Tehran, Tehran, Iran, P. O. Box: ۱۱۳۶۵-۴۵۶۳.

S.F Kashani Bozorg

Assistant Professor, School of Metallurgy and Materials Science, University College of Engineering, Universityof Tehran, Tehran, Iran

R Miresmaeili

M. Sc. Student, School of Metallurgy and Materials Science, University College of Engineering, University ofTehran, Tehran, Iran

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  • Tehran Internationl Congress on Man ufacturing Engineering (TICME2005) December 12-15, ...
  • Pipe", In: Trends in Welding Research, Proc. 9h0 4" in. ...
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