Detailed investigations have been performed for assessing the importance of weld discontinuities in strain controlled low cycle fatigue (LCF) behavior of 308 stainless steel (SS) welds. The LCF behavior of 308 SS welds containing defects was compared with that of type 304 SS base material and 308 SS sound weld metal. Weld pads were prepared by shielded metal arc welding process. Porosity and slag inclusions were introduced deliberately into the weld metal by grossly exaggerating the conditions normally causing such defects. Total axial strain controlled LCF tests have been conducted in air at 823 K on type 304 SS base and 308 SS sound weld metal employing strain amplitudes in the range from ±0.25 to ±0.8 percent. A single strain amplitude o...
AbstractAlloy 617 is the one of the leading candidate materials for intermediate heat exchangers (IH...
Full penetration, double-vee butt welds with reinforcement removed have been fabricated using a high...
In order to better understand the high temperature low cycle fatigue behavior of Alloy 617 weldments...
Total-axial-strain-controlled low cycle fatigue (LCF) tests have been conducted in air at 823 and 92...
The effects of hold condition (tension-only, compression-only and tension-plus-compression holds of ...
A comparative evaluation of the low-cycle fatigue (LCF) behavior of type 316LN base metal, 316 weld ...
This report presents results from an investigation on the creep-fatigue and cyclic-deformation of Ty...
Studies on the strain-controlled low cycle fatigue (LCF) behaviour of type 316LN stainless steel (SS...
The primary objectives of this study were to identify and evaluate the variables that influence the ...
AbstractThe aim of the present paper is to study the effect of strain rate on the low cycle fatigue ...
It is well known that welds are the weak links in any structure. Therefore, it is of out most import...
246 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1981.The primary objectives of thi...
Austenitic stainless steel of type X6CrNiNb18-10 (1.4550) is a widely used material in piping and co...
Dissimilar metal welds (DMW) are widely employed to meet various fabrication requirements in the in...
In the present paper, cyclic stress evolution and fracture behavior of 316(N) weld metal and 316L(N)...
AbstractAlloy 617 is the one of the leading candidate materials for intermediate heat exchangers (IH...
Full penetration, double-vee butt welds with reinforcement removed have been fabricated using a high...
In order to better understand the high temperature low cycle fatigue behavior of Alloy 617 weldments...
Total-axial-strain-controlled low cycle fatigue (LCF) tests have been conducted in air at 823 and 92...
The effects of hold condition (tension-only, compression-only and tension-plus-compression holds of ...
A comparative evaluation of the low-cycle fatigue (LCF) behavior of type 316LN base metal, 316 weld ...
This report presents results from an investigation on the creep-fatigue and cyclic-deformation of Ty...
Studies on the strain-controlled low cycle fatigue (LCF) behaviour of type 316LN stainless steel (SS...
The primary objectives of this study were to identify and evaluate the variables that influence the ...
AbstractThe aim of the present paper is to study the effect of strain rate on the low cycle fatigue ...
It is well known that welds are the weak links in any structure. Therefore, it is of out most import...
246 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1981.The primary objectives of thi...
Austenitic stainless steel of type X6CrNiNb18-10 (1.4550) is a widely used material in piping and co...
Dissimilar metal welds (DMW) are widely employed to meet various fabrication requirements in the in...
In the present paper, cyclic stress evolution and fracture behavior of 316(N) weld metal and 316L(N)...
AbstractAlloy 617 is the one of the leading candidate materials for intermediate heat exchangers (IH...
Full penetration, double-vee butt welds with reinforcement removed have been fabricated using a high...
In order to better understand the high temperature low cycle fatigue behavior of Alloy 617 weldments...