This paper investigates the static strength of collar plate reinforced tubular T/Y-joints subjected to in-plane bending (IPB) load. At the first step, a finite element (FE) model was developed and validated against the data available from 12 experimental tests. Afterwards, 210 FE models were generated and analyzed to evaluate the effect of joint geometry and collar plate size on the ultimate strength and failure modes of T/Y-joints reinforced with collar plates subjected to IPB load. Results show that the collar plate reinforcement method can significantly increase the ultimate strength and improve the failure mechanisms of tubular T/Y-joints under in-IPB load. Despite the considerable effect of the collar plate on the static strength and i...
The title, On the Static Strength of Reinforced Joints, shows the main subject of this research. The...
Although the use of internal ring stiffeners to enhance the strength of tubular joints is common pra...
10.1061/(ASCE)0733-9445(2005)131:1(129)Journal of Structural Engineering1311129-138JSEN
This paper studies the static strength of circular hollow section (CHS) T/Y-joints reinforced with c...
In the present paper, results of comprehensive finite element (FE) analyses performed on 210 generat...
In the present paper, the static strength of steel collar plate reinforced tubular T/Y-joints is num...
In this study, the ultimate strength, initial stiffness, and failure mechanisms of tubular T/Y-joint...
In the present paper, the effect of the collar plate on the static capacity of circular hollow secti...
In the present study, data extracted from the finite element analysis of 210 models, which were veri...
Abstract: For an inner doubler plate reinforced tubular joint, the doubler plate is welded onto the ...
In this paper, the effect of the outer reinforcing plate on the initial stiffness, ultimate strength...
Tubular Joints play quite a vital role in most of the marine structures. It is obvious that having f...
In the present paper, the fire resistance of two-planar tubular KK-joints reinforced with collar pla...
The fire resistance of collar-plate-stiffened uniplanar tubular K-joints was studied and formulated ...
In this study, important aspects of nonlinear behavior of tubular joints are numerically investigate...
The title, On the Static Strength of Reinforced Joints, shows the main subject of this research. The...
Although the use of internal ring stiffeners to enhance the strength of tubular joints is common pra...
10.1061/(ASCE)0733-9445(2005)131:1(129)Journal of Structural Engineering1311129-138JSEN
This paper studies the static strength of circular hollow section (CHS) T/Y-joints reinforced with c...
In the present paper, results of comprehensive finite element (FE) analyses performed on 210 generat...
In the present paper, the static strength of steel collar plate reinforced tubular T/Y-joints is num...
In this study, the ultimate strength, initial stiffness, and failure mechanisms of tubular T/Y-joint...
In the present paper, the effect of the collar plate on the static capacity of circular hollow secti...
In the present study, data extracted from the finite element analysis of 210 models, which were veri...
Abstract: For an inner doubler plate reinforced tubular joint, the doubler plate is welded onto the ...
In this paper, the effect of the outer reinforcing plate on the initial stiffness, ultimate strength...
Tubular Joints play quite a vital role in most of the marine structures. It is obvious that having f...
In the present paper, the fire resistance of two-planar tubular KK-joints reinforced with collar pla...
The fire resistance of collar-plate-stiffened uniplanar tubular K-joints was studied and formulated ...
In this study, important aspects of nonlinear behavior of tubular joints are numerically investigate...
The title, On the Static Strength of Reinforced Joints, shows the main subject of this research. The...
Although the use of internal ring stiffeners to enhance the strength of tubular joints is common pra...
10.1061/(ASCE)0733-9445(2005)131:1(129)Journal of Structural Engineering1311129-138JSEN