Synchrotron X-ray 3D characterisation of fatigue crack initiation during in-situ torsion cyclic tests

被引:0
|
作者
Le, Viet-Duc [1 ]
Morel, Franck [1 ]
Saintier, Nicolas [2 ]
Osmond, Pierre [4 ]
Bellett, Daniel [1 ]
Ludwig, Wolfgang [3 ]
Majkut, Marta [5 ]
Buffiere, Jean-Yves [5 ]
机构
[1] Arts & Metiers Inst Technol, LAMPA, F-49035 Angers, France
[2] Arts & Metiers Inst Technol, I2M, Bordeaux, France
[3] INSA Lyon, MATEIS, Lyon, France
[4] Cetim, Nantes, France
[5] ESRF, Grenoble, France
关键词
Fatigue crack initiation; Cast aluminium alloy; Synchrotron; Tomography; Torsion; DAMAGE MECHANISMS; CASTING DEFECTS; GROWTH; BEHAVIOR; PROPAGATION; DIFFRACTION; MODEL;
D O I
10.1016/j.ijfatigue.2024.108762
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
This paper focuses on the characterisation of fatigue crack initiation mechanisms under fully reversed torsional loads for the porosity-containing cast AlSi7Mg0.3 aluminium alloy by synchrotron X-ray tomographic imaging and Diffraction Contrast Tomography (DCT). The aim is to analyse the relation between crack initiation and the microstructure, in the fatigue regime close to the fatigue limit of the material (fatigue lives of approximately 2 x 106 cycles). In-situ torsion fatigue tests have been conducted at the European Synchrotron Radiation Facility. A large number of cracks (approximately 80 cracks) were analysed, at the surface and in the bulk, highlighting the role of the surrounding microstructure on the crack initiation mechanisms. Contrary to uniaxial loads in which fatigue crack initiation from casting pores in an opening mode (mode I) is generally only observed for this material, it is shown in this work that multiple crack initiations mechanisms can appear simultaneously under torsional loads. This is very interesting because it is possible to analyse different mechanisms (and the effect of the surrounding microstructure) using the same specimen, that is under identical loading conditions. More precisely, two different crack initiation mechanisms were observed. The first mechanism involves intra-granular fatigue crack initiation from Persistent Slip Bands (PSBs) formed on the slip system with the highest Schmid factor. For this mechanism, the grain orientation is the key parameter. A shear stress threshold of approximately 80 MPa is observed to trigger this mechanism. The presence of a pore, in the crack initiation zone reduces this threshold. The second mechanism concerns crack initiation from pores, in mode I, on planes of maximum principal stress. No link to the local grain orientation was found in that case. The pore size is the key factor governing this crack initiation mechanism. Regarding the competition between these mechanisms in the formation of the final crack, it was observed that at high applied stress, the cracks initiated from PSBs are dominant due to their high density and high growth rates resulting from coalescence. At lower stress, cracks initiated from pores are dominant, mainly because of the little effect of grain boundaries and eutectic zones, while most of cracks initiated from PSBs are arrested within the grain where they have initiated.
引用
收藏
页数:18
相关论文
共 50 条
  • [1] In situ synchrotron ultrasonic fatigue testing device for 3D characterisation of internal crack initiation and growth
    Messager, Alexandre
    Junet, Arnaud
    Palin-Luc, Thierry
    Buffiere, Jean-Yves
    Saintier, Nicolas
    Ranc, Nicolas
    El May, Mohamed
    Gaillard, Yves
    King, Andrew
    Bonnin, Anne
    Nadot, Yves
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2020, 43 (03) : 558 - 567
  • [2] 3D CHARACTERISATION OF FATIGUE CRACKS USING X-RAY TOMOGRAPHY: FROM SYNCHROTRON TO LABORATORY SOURCES
    Buffiere, Jean-Yves
    Limodin, Nathalie
    Rethore, Julien
    Ludwig, Wolfgang
    Hild, Francois
    Gravouil, Anthony
    Roux, Stephane
    TMS 2010 139TH ANNUAL MEETING & EXHIBITION - SUPPLEMENTAL PROCEEDINGS, VOL 2: MATERIALS CHARACTERIZATION, COMPUTATION AND MODELING AND ENERGY, 2010, : 705 - +
  • [3] In-situ synchrotron X-ray diffraction study of strain-induced crystallization of natural rubber during fatigue tests
    Beurrot, S.
    Huneau, B.
    Verron, E.
    Rublon, P.
    Thiaudiere, D.
    Mocuta, C.
    Zozulya, A.
    CONSTITUTIVE MODELS FOR RUBBER VII, 2012, : 353 - 358
  • [4] 3-Dimensional analysis of fatigue crack fields and crack growth by in situ synchrotron X-ray tomography
    Koko, A.
    Singh, S.
    Barhli, S.
    Connolley, T.
    Vo, N. T.
    Wigger, T.
    Liu, D.
    Fu, Y.
    Rethore, J.
    Lechambre, J.
    Buffiere, J. -Y.
    Marrow, T. J.
    INTERNATIONAL JOURNAL OF FATIGUE, 2023, 170
  • [5] CHARACTERISATION OF THE 3D PAPER STRUCTURE WITH X-RAY SYNCHROTRON RADIATION MICROTOMOGRAPHY
    du Roscoat, S. Rolland
    Bloch, J-F.
    Thibault, X.
    ADVANCES IN PAPER SCIENCE AND TECHNOLOGY: TRANSACTIONS OF THE 13TH FUNDAMENTAL RESEARCH SYMPOSIUM, VOLS 1-3, 2005, : 901 - 920
  • [6] Tracking lithium penetration in solid electrolytes in 3D by in-situ synchrotron X-ray computed tomography
    Hao, Shuai
    Daemi, Sohrab R.
    Heenan, Thomas M. M.
    Du, Wenjia
    Tan, Chun
    Storm, Malte
    Rau, Christoph
    Brett, Dan J. L.
    Shearing, Paul R.
    NANO ENERGY, 2021, 82
  • [7] Characterisation of the crack tip plastic zone in fatigue via synchrotron X-ray diffraction
    Carrera, Manuel
    Cruces, Alejandro S.
    Kelleher, Joseph F.
    Tai, Yee-Han
    Yates, John R.
    Withers, Philip J.
    Lopez-Crespo, Pablo
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2022, 45 (07) : 2086 - 2098
  • [8] Synchrotron Tests of a 3D Medipix2 X-Ray Detector
    Pennicard, David
    Marchal, Julien
    Fleta, Celeste
    Pellegrini, Giulio
    Lozano, Manuel
    Parkes, Chris
    Tartoni, Nicola
    Barnett, Damien
    Dolbnya, Igor
    Sawhney, Kawal
    Bates, Richard
    O'Shea, Val
    Wright, Victoria
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2010, 57 (01) : 387 - 394
  • [9] IN SITU THREE DIMENTIONAL (3D) X-RAY SYNCHROTRON TOMOGRAPHY OF CORROSION FATIGUE IN A17075 ALLOY
    Singh, Sudhanshu S.
    Williams, Jason J.
    Xiao, X.
    De Carlo, F.
    Chawla, N.
    FATIGUE OF MATERIALS II: ADVANCES AND EMERGENCES IN UNDERSTANDING, 2013, : 17 - 25
  • [10] In situ high resolution synchrotron x-ray tomography of fatigue crack closure micromechanisms
    Khor, KH
    Buffiére, JY
    Ludwig, W
    Toda, H
    Ubhi, HS
    Gregson, PJ
    Sinclair, I
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2004, 16 (33) : S3511 - S3515