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The use of an energetic criterion ensures the consistency with endurance criterion.
An endurance criterion is proposed which aims at capitalizing the advantages of both fracture mechanics and of energetic or stress-based approaches.
Two load conditions are said to be similar if they present the same fatigue limit according to a proper multiaxial endurance criterion.
A multiaxial endurance criterion is used to analyse the experimental results: it appears necessary to calculate the local stress distribution around the defect to characterise the defect morphology in a multiaxial criterion.
It correlates the empirical method proposed by Murakami to determine the evolution of the fatigue limit with defect size and a multiaxial endurance criterion based on the Dang Van model.
In this paper, a new multiaxial high cycle fatigue endurance criterion is proposed within the setting of situations where the mechanical component is subjected to iso-frequency in-phase or out-of-phase sinusoidal multiaxial loadings.
Similar(52)
Damage indexes are used in ET method as the endurance criteria.
Fire endurance criteria and preliminary design recommendations for fire safety of FRP-strengthened RC columns are briefly discussed.
Endurance criteria can be set as the time when the desired damage index es), e.g. maximum principal stress, reaches its allowable value.
In Endurance Time (ET) method, structures are subjected to gradually intensifying accelerograms and their performance is judged based on the maximum time duration in which they can satisfy the predefined endurance criteria.
The aim of this paper is not to survey the current state of knowledge concerning multiaxial fatigue but to critically examine two endurance criteria so as to prove that a direct link can be established between them.
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