AbstractNowadays technical applications require very small components which leads to the question of how to handle fatigue strength data gained from tests carried out on specimen which are even larger than the component itself. Previous high-cycle-fatigue (HCF) tests have outlined the negative influence of increasing “risk volumes” due to enlargement of the specimen size. Additional to the effect of “risk volumes” the influence of stress gradient may not be neglected as the gradient changes as well due to the enlargement of the specimen size. Especially thin profiles could be affected by high stress gradients which results in high and low stress loaded profile areas. The fatigue strength of an hourglass shaped specimen with a standardized d...
This study aims to investigate the effects of both the microstructure and void on the high-cycle fat...
In this study, we investigate the influence of control type and strain rate on the lifetime of speci...
Neuber's proposed method of calculating a practical factor of stress concentration for parts contain...
AbstractNowadays technical applications require very small components which leads to the question of...
Nowadays lifetime calculation in the high cycle fatigue region is commonly based on S/N curves which...
This work investigates the effect of artificial surface defects on the fatigue limit of a 7050 Alumi...
Irrational elements inside of structure become greater with the increase of size so this results in ...
One objective of this project is to propose a fatigue design approach that is able to account for a ...
The transferability of fatigue data from specimens to components or from one component to an other i...
The influence of “size effects” on the fatigue strength of metals has been studied. These effects we...
This study aims to examine the effects of both material microstructure and voids on the high-cycle f...
AbstractUltrasonic fatigue testing was conducted for high-strength steel using enlarged specimens wi...
It is well‐known that the high cycle fatigue (HCF) strength of steel components is influenced by a l...
International audienceA formulation of gradient fatigue criteria is proposed in the context of multi...
The purpose of this study was to investigate the effect of size of test specimen on the fatigue stre...
This study aims to investigate the effects of both the microstructure and void on the high-cycle fat...
In this study, we investigate the influence of control type and strain rate on the lifetime of speci...
Neuber's proposed method of calculating a practical factor of stress concentration for parts contain...
AbstractNowadays technical applications require very small components which leads to the question of...
Nowadays lifetime calculation in the high cycle fatigue region is commonly based on S/N curves which...
This work investigates the effect of artificial surface defects on the fatigue limit of a 7050 Alumi...
Irrational elements inside of structure become greater with the increase of size so this results in ...
One objective of this project is to propose a fatigue design approach that is able to account for a ...
The transferability of fatigue data from specimens to components or from one component to an other i...
The influence of “size effects” on the fatigue strength of metals has been studied. These effects we...
This study aims to examine the effects of both material microstructure and voids on the high-cycle f...
AbstractUltrasonic fatigue testing was conducted for high-strength steel using enlarged specimens wi...
It is well‐known that the high cycle fatigue (HCF) strength of steel components is influenced by a l...
International audienceA formulation of gradient fatigue criteria is proposed in the context of multi...
The purpose of this study was to investigate the effect of size of test specimen on the fatigue stre...
This study aims to investigate the effects of both the microstructure and void on the high-cycle fat...
In this study, we investigate the influence of control type and strain rate on the lifetime of speci...
Neuber's proposed method of calculating a practical factor of stress concentration for parts contain...