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Experimental methods of stress and strain analysis in ortopaedics biomechanics

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Possibilities of applying several experimental methods to the analysis of displacements, strains and stresses in bone structures and implants are presented. Such methods as photoelasticity, holographic interfe-rometry, speckle photography and strain gauges are described. These techniques are significant in experimental investigations, especially during fast improvement of modem analytical and numerical methods. Experimental methods are indispensable for experimental verifications of boundary conditions in theoretical models. Experimental investigations of real objects and biomechanical models were carried out.
Rocznik
Strony
3--23
Opis fizyczny
Bibliogr. 30 poz., rys., wykr.
Twórcy
  • Wrocław University of Technology [Politechnika Wrocławska], Wybrzeże Wyspiańskiego 27, 50-370 Wrocław
autor
  • Wrocław University of Technology [Politechnika Wrocławska], Wybrzeże Wyspiańskiego 27, 50-370 Wrocław
Bibliografia
  • [1] BĘDZIŃSKI R., Biomechanical Engineering. Selected Problems (in Polish), Oficyna Wydawnicza Politechniki Wrocławskiej, 1997.
  • [2] BĘDZIŃSKI R., FILIPIAK J., Experimental analysis of external fixators for femoral bone elongation, Acta of Bioengineering and Biomechanics, 1999, Vol. 1 , No. 2, 93-105.
  • [3] BĘDZIŃSKI R., 0WCZAREK A., PEZOWICZ C., A study of the vertebra by holographic interferometry methods, Proceedings of the European Medical and Biological Engineering Conference EMBEC '99, 1999, Vol. 37, Supplement 2, 256-257.
  • [4] BĘDZIŃSKI R., ŚCIGAŁA K., Experimental analysis of surgically corrected knee joint, Strain, November 1998.
  • [5] BONNARD CH., FAYARD L., SOLLOGOUB I., GLORION B., Limb lengthening in children using the Ilizarov method , Clin. Orthop, Rei. Res., 1993, No. 293, 83-88.
  • [6] BOONE P. M., Some coherent-optical deformation measurement techniques useful in biomechanics, [in:] Experimental'Mechanics. Technology Transfer Between High Technique Engineering and Biomechanics, ed. by E. G. Little, 1992, Elsevier, Amsterdam, p. 409-421.
  • [7] BORBAS L., Elements of Experimental Stress Analysis, Course Design for Quality , Forli, 1995.
  • [8] CORBY T.W, Diagnosing stress problems with photoelastic testing, [in:] Experimental Mechanics. Technology Transfer Between High Technique Engineering and Biomechanics, ed. by E.G. Little, Amsterdam, 1992, 455-466.
  • [9] CRISTOFOLINI L., CAPPELO A., TONI A., Experimental errors in the applications of the photoelastic coating on human femur with uncemented hip stems , Strain, August 1994, 95-101.
  • [10] DRAGONI E., ANDRISANO A. 0., BERTUZZI F., Stress in ceramic prosthetic heads under axisymmetric loading: Effect of gaper friction, support conditions and spigot of elasticity, [in:] Experimental Mechanics. Technology Transfer Between High Technique Engineering and Biomechanics, ed. by E.G. Little, Amsterdam, 1992, 23-34.
  • [11] ERF R.A., Holographic non-destructive testing, Academic Press, New York, 1974.
  • [12] ERF R.A., Speckle metrology, Academic Press, New York, 1978.
  • [13] FINALY B., Photoelastic Coating, [in:] Strain Measurment in Biomechanics, Alberta 19991, 31-40.
  • [14] FINALY B., LITTLE E., Photoelasticity as a tool in orthopaedic research, [in:] Strain Measumzent in Biomechanics, Alberta, 19991,41-53.
  • [15] HELLEN T.K., The interaction of experimental and numerical techniques in modern stress analysis, [in:] Experimental Mechanics, Technology Transfer Between High Technique Engineering and Biomechanics, ed. by E.G. Little, Amsterdam, 1992, 1-10.
  • [16] lLIZAROV G.A., Clinical application of the tension-stress effect for limb lengthening , Clinical Orthopaedics and Related Research, 1990, 250, pp. 8-26.
  • [17] KAPKOWSKI J., Basis of the experimental strain and stress analysis (in Polish), Oficyna Wydawnicza Politechniki Warszawskiej, 1996.
  • [18] KAPKOWSKI J., KUJAWIŃSKA M., Recent applications of hybrid methods in solid state mechanics (in Polish), Proceeding of XVI Symposium on Experimental Mechanics, Jachranka, 1994, 132-151.
  • [19] KAPKOWSKI J., KUJAWIŃSKA M., A new hybrid technique for photoelastic investigation, Proceeding of 10th International Conference on Experimental Mechanics, Lisbon, 1994, 27-30.
  • [20] MORECKI A., Role of the identification in experimental investigations, Zeszyty Naukowe Politechniki Śląskiej, Seria Mechanika, Z. 112, Gliwice, 1999, 125-131.
  • [21] ORŁOŚ A., Experimental analysis of strain and stress (in Polish), PWN, Warszawa, 1975.
  • [22] PIWERNETZ K., BALLY G., Holography in Orthopaedics, [in:] Holography in Medicine and Biology, ed. by G. Von Bally, Springer Series in Optical Sciences, Berlin, 1979,7-14.
  • [23] PLUTA M., Optical holography (in Polish), Warszawa, 1980.
  • [24] RAMOTOWSKI W., Plates stabilisers Zespol and Polfix (in Polish), BHH Mikromed, Dąbrowa Górnicza, 1998.
  • [25] ROLIŃSKI Z., Strain gauges. Theoretical basis and practical applications (in Polish), WNT, Warszawa, 1981.
  • [26] SOLID J.E., Holographic interferometry applied to measurements at small static displacements at diffusely reflecting surface, Applied Optics, Vol. 8, No. 8, 1969.
  • [27] STUPNICKI J., Trends of experimental mechanics, Journal of Theoretical and Applied Mechanics, 1996, Vol. 34, No. 2, 207-233.
  • [28] ŚNIADKOWSKI Z., Theoretical basis in experimental investigations (in Polish), Warszawa, 199.
  • [29] WEGNER R., ETTEMEYER A., Fast Stress and Strain Analysis with Microstar, Ettemeyer Application Report, No. 05-98.
  • [30] ZIĘBOWICZ A., PEZOWICZ C., MARCINIAK J., Biomechanical stability analysis in the plate niting of mandible, Proceedings of the 4th Polish Scientific Conference Biomechanics '99, Oficyna Wydawnicza Politechniki Wrocławskiej, 1999, Vol. 1, Supplement 1, 599-602.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB1-0013-0013
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