The objective of this paper is to study the gigacycle fatigue behavior of an austenitic steel at temperatures of 600 °C and 700 °C under fully reverse loading (R=−1). Numerical simulation by finite element method (FEM) was used to design the specimens and to analyze the effects of the variation in the dynamic Young modulus with temperature from measurements of the ultrasonic resonance frequency. Finally, new stress-life curves for this material are presented for a lifetime range from 105 to 109 cycles at room temperature, 600 °C and 700 °C
The present work employed in situ infrared thermography to investigate the thermal response and diss...
This work is an attempt towards a better understanding of the high cycle and very high cycle fatigue...
High cycle fatigue comprising up to 107 load cycles has been the subject of many studies, and the be...
AbstractThe objective of this paper is to study the gigacycle fatigue behavior of an austenitic stee...
The objective of this paper is to study the gigacycle fatigue behavior of an austenitic steel at tem...
AbstractThe fatigue behavior of a high strength steel 300 M in the gigacycle regime was investigated...
Ultrasonic machine, which operates at around 20 kHz, is used to quickly get the fatigue behavior in ...
There are limited experimental data on VHCF for structural steels for >107 cycles. Unalloyed low-car...
AbstractThe aim of the present research was to study the self-heating behavior of a dual-phase steel...
The aim of the present research was to study the self-heating behavior of a dual-phase steel under u...
AbstractHigh and very high cycle fatigue regimes are rapidly reached using an ultrasonic fatigue mac...
Increased safety and reliability in mechanical components has become a subject of prime importance i...
The discrepancies observed between conventional and ultrasonic fatigue testing are assessed through ...
An increasing number of engineering components are expected to have fatigue life in the range of 107...
Welded parts fabricated from high-strength steel (HSS) require an almost infinite lifetime, i.e., a ...
The present work employed in situ infrared thermography to investigate the thermal response and diss...
This work is an attempt towards a better understanding of the high cycle and very high cycle fatigue...
High cycle fatigue comprising up to 107 load cycles has been the subject of many studies, and the be...
AbstractThe objective of this paper is to study the gigacycle fatigue behavior of an austenitic stee...
The objective of this paper is to study the gigacycle fatigue behavior of an austenitic steel at tem...
AbstractThe fatigue behavior of a high strength steel 300 M in the gigacycle regime was investigated...
Ultrasonic machine, which operates at around 20 kHz, is used to quickly get the fatigue behavior in ...
There are limited experimental data on VHCF for structural steels for >107 cycles. Unalloyed low-car...
AbstractThe aim of the present research was to study the self-heating behavior of a dual-phase steel...
The aim of the present research was to study the self-heating behavior of a dual-phase steel under u...
AbstractHigh and very high cycle fatigue regimes are rapidly reached using an ultrasonic fatigue mac...
Increased safety and reliability in mechanical components has become a subject of prime importance i...
The discrepancies observed between conventional and ultrasonic fatigue testing are assessed through ...
An increasing number of engineering components are expected to have fatigue life in the range of 107...
Welded parts fabricated from high-strength steel (HSS) require an almost infinite lifetime, i.e., a ...
The present work employed in situ infrared thermography to investigate the thermal response and diss...
This work is an attempt towards a better understanding of the high cycle and very high cycle fatigue...
High cycle fatigue comprising up to 107 load cycles has been the subject of many studies, and the be...