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Experimental investigations of elastic-plastic strain states on various stages of material plastifying

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the paper, the possibility of application of various experimental methods to the analysis of elastic-plastic states at different levels of material plastifying is presented. For tests carried out on two-dimensional elements with different stress concentrators and loaded by tensile stresses, three experimental methods have been selected: Moir´e method, method of photoelastic coating and the thermography method. On the basis of the tests results, the range of the applicability of chosen methods and their suitability to the elastic-plastic strain analysis at the development of material plastifying has been determined. The strain components distribution obtained from the Moir´e method and the method of photoelastic coating has been compared. The possibility of increasing the accuracy of strain determination for the Moir´e method by additional tests at the grid rotated by an angle of 45◦ with respect to the direction of tensile stress has been shown. The results of the investigations have been discussed.
Rocznik
Strony
489--501
Opis fizyczny
Bibliogr. 24 poz., rys.
Twórcy
  • Warsaw University of Technology, Faculty of Mechatronical Engineering, Warsaw, Poland
Bibliografia
  • 1. Balalov V.V., Pisarev V.S., Moshensky V.G., 2007, Combined implementing the hole drilling method and reflection hologram interferometry for residual stresses determination in cylindrical shells and tubes, Optics and Lasers in Engineering, 45, 5, 661-676
  • 2. Connesson N., Maquin F., Pierron F., 2011, Experimental energy balance during the first cycles of cyclically loaded specimens under the conventional yield stress, Experimental Mechanics, 51, 1, 23-44
  • 3. Diaz F.A., Patterson E.A., Siegmann P., 2010, A novel experimental approach for calculating stress intensity factors from isochromatic data, Experimental Mechanics, 50, 2, 273-281
  • 4. Diaz F.V., Armas A.E., Kaufmann G.H., Galizzi G.E., 2004, Fatigue damage accumulation around a notch using a digital image measurement system, Experimental Mechanics, 44, 3, 241-246
  • 5. Diaz F.V., Kaufmann G.H., Moller O., 2001, Residual stresses determination using blind-hole drilling and digital speckle pattern interferometry with automated data processing, Experimental Mechanics, 41, 4, 319-323
  • 6. Guo Z., Xie H., Liu B., Dai F., Chen P., Zhang Q., Huang F., 2006, Study on deformation of polycrystalline aluminum alloy using Moir´e interferometry, Experimental Mechanics, 46, 6, 699-711
  • 7. Foust B.E., Lesniak J.R., Rowlands R.E., 2011, Determining individual stresses throughout a pinned aluminum joint by reflective photoelasticity, Experimental Mechanics, 51, 9, 1441-1452
  • 8. Kozłowska B., 2007, Effect of grid pattern arrangement on the accuracy of determination of strain distribution (in Polish), Theoretical Foundations of Civil Engineering, Polish-Ukrainian-Lithuanian Transactions, 15, 309-312
  • 9. Kozłowska B., 2008, Strain and stress analysis in two-dimensional elastic-plastic state by Moir´e method, Transactions of FAMENA, XXXII, 1, 19-26
  • 10. Kozłowska B., 2012, Application of thermography method to the investigation of two-dimensional elastic-plastic states, The Archive of Mechanical Engineering, LIX, 3, 297-312
  • 11. Kozłowska B., 2013, Two-dimensional experimental elastic-plastic strain and stress analysis, Journal of Theoretical and Applied Mechanics, 51, 2, 419-430
  • 12. Lamberson L., Eliasson V., Rosakis A.J., 2012, In situ optical investigations of hypervelocity impact induced dynamic fracture, Experimental Mechanics, 52, 2, 161-170
  • 13. Lin S.T., 2000, Blind-hole residual stresses determination using optical interferometry, Experimental Mechanics, 40, 1, 60-67
  • 14. Livieri P., Nicoletto G., 2003, Elastoplastic strain concentration factors in finite thickness plates, Journal of Strain Analysis, 38, 1, 31-36
  • 15. Min Y., Hong M., Xi Z., Lu J., 2006, Determination of residual stresses by use of phase shifting Moir´e interferometry and hole drilling methods, Optics and Lasers in Engineering, 44, 1, 68-79
  • 16. Olmi G., 2010, In-field experimental stress analysis in the elastic and plastic fields on motorbike handlebar clamped joints, Proceedihgs of 27th DANUBIA-ADRIA Symposium on Advances in Experimental Mechanics, Wrocław, 161-162
  • 17. Pacey M.N., James M.N., Patterson E.A., 2005, A new photoelastic model for studying fatigue crack closure, Experimental Mechanics, 45, 1, 42-52
  • 18. Pieczyska E.A., Gadaj S.P., Nowacki W.K., Tobushi H., 2006, Phase-transformation fronts evolution for stress- and strain-controlled tension tests in TiNi shape memory alloy, Experimental Mechanics, 46, 4, 531-542
  • 19. Rasty J., Le X., Baydogan M., Cardenas-Garca J.F. ´ , 2007, Measurement of residual stresses in nuclear-grade Zircaloy-4(R) tubeseffect of heat treatment, Experimental Mechanics, 47, 2, 185-199
  • 20. Schajer G.S., Steinzig M., 2005, Full-field calculation of hole drilling method residual stresses from electronic speckle pattern interferometry data, Experimental Mechanics, 45, 6, 526-532
  • 21. Tarigopula V., Hopperstad O.S., Langseth M., Clausen A.H., Hild F., Lademo O.-G., Eriksson M., 2008, A study of large plastic deformations in dual phase steel using digital image correlation and FE analysis, Experimental Mechanics, 48, 2, 181-196
  • 22. Timoshenko S., Goodier J.N., 1962, Teoria sprężystości, Wyd. Arkady, Warszawa
  • 23. Vural M., Molinari A., Bhattacharyya N., 2011, Analysis of slot orientation in shearcompression specimen (SCS), Experimental Mechanics, 51, 3, 263-273
  • 24. Wung P., Walsh T., Ourchane A., Stewart W., Jie M., 2001, Failure of spot welds under in-plane static loading, Experimental Mechanics, 41, 1, 100-106
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniajacą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1feb0892-8262-4ac6-84bc-e40eeac9ff16
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