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Fatigue endurance limit and crack front evolution in metallic glass
Lei XQ(雷现奇)1; 袁力超o1; Peng, Liu2; Sun CQ(孙成奇)1; Wei BC(魏炳忱)1; Wei YJ(魏宇杰)1
Source PublicationINTERNATIONAL JOURNAL OF FATIGUE
2021-02-01
Volume143Pages:9
ISSN0142-1123
Abstract

Fatigue endurance limit is a threshold stress-amplitude under which a solid subjected to a cyclic loading can sustain infinite life. Such a limit has been confirmed in ferrous materials but remains controversial in many advanced new materials, including bulk metallic glasses with superb strength. By using a combination of ultrasonic fatigue (USF) test and conventional fatigue test, we obtain the stress amplitude vs. loading cycle curve of the Vitreloy 1 (TM) metallic glass, with loading cycles up to 10(9). There is a clear fatigue endurance limit (FEL) which is about 320 MPa, and is 17% of the strength of Vitreloy 1 (TM). The residual strength of survivals after 10(9) cycles is nearly the same as those of intact samples. We demonstrate that all fatigue cracks initiate from spherical pores which are inevitable and intrinsic amid casting and fast cooling, and the fatigue crack front resembles an ellipse arc till final rapid rapture of all tested samples. The size and position of a pore can be utilized to extract the fatigue initiation threshold K-0(th), and the elliptical fatigue crack front is used to obtain the mode I fracture toughness K-IC, which are K-0(th) = 2.0 +/- 0.5MPa root m and K-IC = 18 20MPa root m for Vitreloy 1 (TM), respectively. The fatigue endurance limit and its intrinsic origin of Vitreloy 1 (TM) pave the way to understand fatigue in other metallic glasses.

KeywordFatigue endurance limit Ultra-high cycle fatigue Metallic glasses Elliptical crack front Stress intensity factor
DOI10.1016/j.ijfatigue.2020.106004
Indexed BySCI ; EI
Language英语
WOS IDWOS:000597144300004
WOS Research AreaEngineering ; Materials Science
WOS SubjectEngineering, Mechanical ; Materials Science, Multidisciplinary
Funding ProjectNational Natural Science Foundation of China (NSFC) Basic Science Center for Multiscale Problems in Nonlinear Mechanics[11988102] ; NSFC[11790291] ; NSFC[11802308] ; Strategic Priority Research Program of the Chinese Academy of Sciences (CAS)[XDB22020200] ; CAS Center for Excellence in Complex System Mechanics
Funding OrganizationNational Natural Science Foundation of China (NSFC) Basic Science Center for Multiscale Problems in Nonlinear Mechanics ; NSFC ; Strategic Priority Research Program of the Chinese Academy of Sciences (CAS) ; CAS Center for Excellence in Complex System Mechanics
Classification一类
Ranking1
ContributorWei, Yujie
Citation statistics
Cited Times:8[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/85877
Collection非线性力学国家重点实验室
微重力重点实验室
Affiliation1.Chinese Acad Sci, Inst Mech, LNM, Beijing 100190, Peoples R China;
2.Univ Sci & Technol Beijing, Natl Ctr Mat Serv Safety, Beijing 100083, Peoples R China
Recommended Citation
GB/T 7714
Lei XQ,袁力超o,Peng, Liu,et al. Fatigue endurance limit and crack front evolution in metallic glass[J]. INTERNATIONAL JOURNAL OF FATIGUE,2021,143:9.Rp_Au:Wei, Yujie
APA 雷现奇,袁力超o,Peng, Liu,孙成奇,魏炳忱,&魏宇杰.(2021).Fatigue endurance limit and crack front evolution in metallic glass.INTERNATIONAL JOURNAL OF FATIGUE,143,9.
MLA 雷现奇,et al."Fatigue endurance limit and crack front evolution in metallic glass".INTERNATIONAL JOURNAL OF FATIGUE 143(2021):9.
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