A review of multiaxial low-cycle fatigue criteria for life prediction of metals

被引:3
作者
Pagliari, Lorenzo [1 ]
Concli, Franco [1 ]
机构
[1] Free Univ Bozen Bolzano, Fac Engn, Piazza Univ 1, I-39100 Bolzano, BZ, Italy
关键词
Multiaxial fatigue; fracture mechanics; low-cycle fatigue; criteria; model; crack initiation; failure prediction; CRITICAL PLANE APPROACH; MEAN STRESS; DAMAGE; PARAMETER; BEHAVIOR; PHASE; AMPLITUDE; FRACTURE; FAILURE; STATES;
D O I
10.1177/10567895241280788
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Most of real-world structural components that undergo cyclic loading feature multiaxial fatigue. When the cyclic loading involves also significant plastic deformation, multiaxial low-cycle fatigue takes place. Applications where multiaxial low-cycle fatigue can be observed very often involve metal components. To predict their lives multiple criteria and models have been proposed, but their development has not followed a regular path. Multiple reviews are available in literature. However, many of them are outdated, they often employ different classification methods to categorize available criteria, many focus on specific families of criteria, and others do not include sufficient theoretical background. Moreover, none of the available reviews is based on a systematic literature search method. As a result, approaching the topic can result arduous and chaotic, especially for first timers. This work aims at providing a clear, comprehensive, and definitive review of available criteria for multiaxial low-cycle fatigue. First, the basic theoretical background is explained. Secondly, a systematic approach is described and employed to identify all major currently available criteria. Then, they are classified and commentary about different classification styles that can be found in literature is added. Eventually they are described, together with their latest proposed variations. In this way this review can be employed as a guiding reference, especially for engineers approaching the topic for the first time.
引用
收藏
页码:377 / 414
页数:38
相关论文
共 117 条
[11]  
Brown M. W., 1973, Proceedings of the Institution of Mechanical Engineers, V187, P745
[12]   An analysis of mean stress in multiaxial random fatigue [J].
Brown, MW ;
Suker, DK ;
Wang, CH .
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 1996, 19 (2-3) :323-333
[13]   Probabilistic formulation of the multiaxial fatigue damage of Liu [J].
Calvo, S. ;
Canales, M. ;
Gomez, C. ;
Valdes, J. R. ;
Nunez, J. L. .
INTERNATIONAL JOURNAL OF FATIGUE, 2011, 33 (03) :460-465
[14]  
Campbell F.C., 2012, Fatigue and Failure, Understanding the Basics, V1st
[15]   A review of multiaxial fatigue criteria for random variable amplitude loads [J].
Carpinteri, A. ;
Spagnoli, A. ;
Vantadori, S. .
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2017, 40 (07) :1007-1036
[16]   A weight function-critical plane approach for low-cycle fatigue under variable amplitude multiaxial loading [J].
Chen, X ;
Jin, D ;
Kim, KS .
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2006, 29 (04) :331-339
[17]   A critical plane-strain energy density criterion for multiaxial low-cycle fatigue life under non-proportional loading [J].
Chen, X ;
Xu, S ;
Huang, D .
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 1999, 22 (08) :679-686
[18]  
Chu C.C., 1993, ADV MULTIAXIAL FATIG, P37
[19]  
Coffin LF., 1954, J. Fluids Eng, V76, P931, DOI DOI 10.1115/1.4015020
[20]   High and low cycle fatigue properties of selective laser melted AISI 316L and AlSi10Mg [J].
Concli, Franco ;
Gerosa, Riccardo ;
Panzeri, Davide ;
Fraccaroli, Lorenzo .
INTERNATIONAL JOURNAL OF FATIGUE, 2023, 177