This content is not included in your SAE MOBILUS subscription, or you are not logged in.

Accelerated Fatigue and Modal Parameter Identification of Lightweight Structures

Journal Article
2014-01-2095
ISSN: 1946-3979, e-ISSN: 1946-3987
Published June 30, 2014 by SAE International in United States
Accelerated Fatigue and Modal Parameter Identification of Lightweight Structures
Sector:
Citation: Slavic, J., Cesnik, M., and Boltezar, M., "Accelerated Fatigue and Modal Parameter Identification of Lightweight Structures," SAE Int. J. Mater. Manf. 8(1):1-11, 2015, https://doi.org/10.4271/2014-01-2095.
Language: English

References

  1. US Department of the Air Force Military standard environmental test methods for aerospace and ground equipement MIL-STD-810 G, Method 514.6: Vibration, Rev. Oct. 2008
  2. Lalanne , C. , Mechanical vibration & shock: Fatigue damage Taylor & Francis New York 2002
  3. Allegri , G. , and Zhang , X. , On the inverse power laws for accelerated random fatigue testing International Journal of Fatigue 30 6 967 977 2008 10.1016/j.ijfatigue.2007.08.023
  4. American Society for Testing and Materials Standard practice for conducting force controlled constant amplitude axial fatigue tests of metallic materials E466-07 2007
  5. Swanson , S. R. Handbook of fatigue testing American Society for Testing and Materials 1974
  6. Lee , Y.-L. , Pan , J. , Hathaway , R. B. , and Barkey , M. E. Fatigue Testing and Analysis; Theory and Practice Elsevier Oxford 2005
  7. Doebling , S. W. , Farrar , C. R. , Prime , M. B. , Shevitz , D. W. Damage identification and health monitoring of structural and mechanical systems from changes in their vibration characteristics: a literature review Technical Report Los Alamos, New Mexico 1996
  8. Bedewi , N. E. , Kung , D. N. Effect of fatigue loading on modal properties of composite structures and its utilization for prediction of residual life Composite Structures 37 3-4 357 371 1997 10.1016/S0263-8223(97)00028-7
  9. Shang , D. G. , Barkey , M. E. , Wang , Y. , Lim , T. C. Effect of fatigue damage on the dynamic response frequency of spot-welded joints International Journal of Fatigue 25 4 311 316 2003 10.1016/S0142-1123(02)00140-8
  10. Wang , R. J. , Shang , D. G. , Li , L. S. , Li , C. S. Fatigue damage model based on the natural frequency changes for spot-welded joints International Journal of Fatigue 30 6 1047 1055 2008 10.1016/j.ijfatigue.2007.08.008
  11. Colakoglu , M. , Jerina , K. L. Material damping in 6061-T6511 aluminium to assess fatigue damage Fatigue and Fracture of Engineering Materials and Structures 26 1 79 84 2003 10.1046/j.1460-2695.2003.00603.x
  12. George , T. J. , Seidt , J. , Shen , M. H. H. , Nicholas , T. , Cross , C. J. Development of a novel vibration-based fatigue testing methodology International Journal of Fatigue 26 5 477 486 2004 10.1016/j.ijfatigue.2003.10.012
  13. George , T. J. , Shen , M. H. H. , Scott-Emuakpor , O. , Nicholas , T. , Cross , C. J. , Calcaterra , J. , Goodman diagram via vibration-based fatigue testing Journal of Engineering Materials and Technology 127 1 58 64 2005 10.1115/1.1836791
  14. Boltežar , M. , Slavič , J. Enhancements to the continuous wavelet transform for damping identifications on short signals Mechanical Systems and Signal Processing 18 5 1065 1076 2004 10.1016/j.ymssp.2004.01.004
  15. Preumont , A. , Piefort , V. , Prediction random high-cycle fatigue life with finite elements Journal of Vibration and Acoustics 116 2 245 248 1994 10.1115/1.2930420
  16. Dietrich , L. , Radziejewska , J. , The fatigue damage development in a cast Al-Si-Cu alloy Materials and Design 32 1 322 329 2011 10.1016/j.matdes.2010.05.045
  17. Gonzalez , R. , Martinez , D. I. , Gonzalez , J. A. , Talamantes , J. , Valtierra , S. , Colas , R. Experimental investigation for fatigue strength of a cast aluminium alloy International Journal of Fatigue 33 2 273 278 2011 10.1016/j.ijfatigue.2010.09.002
  18. Pitoiset , X. , Rychlik , I. , Preumont , A. , Spectral methods to estimate local multiaxial fatigue failure for structures undergoing random vibrations Fatigue & Fracture of Engineering Materials & Structures 24 11 715 727 2001 10.1046/j.1460-2695.2001.00394.x
  19. Maia , N. M. M. , Silva , J. M. M. Theoretical and Experimental Modal Analysis Research Studies Press Ltd. Baldock, Hertfordshire 1997
  20. Chopra , A. K. Dynamics of Structures: Theory and Applications to Earthquake Engineering Prentice Hall International London 2007
  21. Slavič , J. , Boltežar , M. Damping identification with the Morlet-wave Mechanical Systems and Signal Processing 25 5 1632 1645 2011 10.1016/j.ymssp.2011.01.008
  22. Rouillard , V. , Sek , M. A. A frequency domain technique for maintaining resonance condition during sine dwell vibration testing of packages Packaging Technology and Science 13 6 227 232 2000 10.1002/pts.520
  23. Audenino , A. L. , Crupi , V. , Zanetti , E. M. Correlation between thermography and internal damping in metals International Journal of Fatigue 25 4 343 351 2003 10.1016/S0142-1123(02)00137-8
  24. Kurth , B. , Bomas , H. , Mayr , P. Effect of surface condition on fatigue-strength of die-cast aluminum Materialwissenschaft und Werkstofftechnik 26 2 101 110 1995 10.1002/mawe.19950260209
  25. Kaufman , J. G. Properties of Aluminum Alloys ASM International Materials Park, Ohio 2008
  26. Avalle , M. , Belingardi , G. , Cavatorta , M. P. , Doglione , R. Static and fatigue strength of a die cast aluminium alloy under different feeding conditions Metallurgical Science and Technology 20 2 9 13 2002 10.1243/14644200260044742

Cited By