| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 7954667 | Procedia Structural Integrity | 2018 | 12 Pages | 
Abstract
												Many theoretical methods for multiaxial fatigue life prediction are present in literature, most of them based on their effectiveness on knowledge of the entire stress time history. This represents the great applicative limit. The incapacity to study real situations, not only deterministic one, let the authors to develop a simple and rigorous criterion, which helps the designer who works in this area. The criterion is presented focusing the attention on the basic premise, highlighting its applicability, its practicality and its computational power. To do that, the Authors take into account the deterministic or random character of the individual constraint components and their degree of correlation. In order to verify the method, simulations of multiaxial loads conditions, developed in the time domain, will be carried out with various correlation levels between the stress components on which the method will be applied.
											Keywords
												
											Related Topics
												
													Physical Sciences and Engineering
													Materials Science
													Materials Chemistry
												
											Authors
												C. Braccesi, G. Morettini, F. Cianetti, M. Palmieri, 
											