Motivated by the response of industrial piping under seismic loading conditions, the present study examines the behavior of steel process piping elbows, subjected to strong cyclic loading conditions. A set of experiments is conducted on elbow specimens subjected to constant-Amplitude in-plane cyclic bending, resulting into failure in the low-cycle-fatigue range. The experimental results are used to develop a low-cycle-fatigue curve within the strain-based fatigue design framework. The experimental work is supported by finite element analyses, which account for geometrical and material nonlinearities. Using advanced plasticity models to describe the behavior of elbow material, the analysis focuses on localized deformations at the critical po...
The paper investigates the response of elbows under in-plane bending and pressure, through nonlinear...
Gasses and fluids are transported via an extensive infrastructure of steel pipelines. In the design ...
Various industrial standards and safety regulations specify the minim number of cycles, which pressu...
Motivated by the response of industrial piping under seismic loading conditions, the present study e...
The present study examines the behavior of steel pipeline elbows subjected to strong cyclic loading ...
The present study examines the mechanical behavior of steel process piping elbows, subjected to stro...
The present work examines the behavior of pipe elbows subjected to strong cyclic in-plane bending lo...
There have been a number of studies concerning the integrity of high-strength carbon steel pipe elbo...
Elbow components are widely used in industrial facilities as parts of piping/tubing systems. Their p...
We developed numerical models to efficiently simulate the low-cycle fatigue behavior of a pipe elbow...
In this paper the low cycle fatigue behaviour of steel elbows under strong cyclic loading conditions...
The relative displacement of a piping system installed between isolated and nonisolated structures i...
The elbow pipe is a critical pipe component that is broadly used in petroleum and power plant indust...
In this paper, cyclic loading behavior of carbon steel pressurized piping elbows are described. Effe...
Evaluating the severity of pipe wall distortions is a crucial step towards safeguarding the structur...
The paper investigates the response of elbows under in-plane bending and pressure, through nonlinear...
Gasses and fluids are transported via an extensive infrastructure of steel pipelines. In the design ...
Various industrial standards and safety regulations specify the minim number of cycles, which pressu...
Motivated by the response of industrial piping under seismic loading conditions, the present study e...
The present study examines the behavior of steel pipeline elbows subjected to strong cyclic loading ...
The present study examines the mechanical behavior of steel process piping elbows, subjected to stro...
The present work examines the behavior of pipe elbows subjected to strong cyclic in-plane bending lo...
There have been a number of studies concerning the integrity of high-strength carbon steel pipe elbo...
Elbow components are widely used in industrial facilities as parts of piping/tubing systems. Their p...
We developed numerical models to efficiently simulate the low-cycle fatigue behavior of a pipe elbow...
In this paper the low cycle fatigue behaviour of steel elbows under strong cyclic loading conditions...
The relative displacement of a piping system installed between isolated and nonisolated structures i...
The elbow pipe is a critical pipe component that is broadly used in petroleum and power plant indust...
In this paper, cyclic loading behavior of carbon steel pressurized piping elbows are described. Effe...
Evaluating the severity of pipe wall distortions is a crucial step towards safeguarding the structur...
The paper investigates the response of elbows under in-plane bending and pressure, through nonlinear...
Gasses and fluids are transported via an extensive infrastructure of steel pipelines. In the design ...
Various industrial standards and safety regulations specify the minim number of cycles, which pressu...