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Fatigue Tests of Materials under Biaxial Loading, Test Stands and Methodology

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Warianty tytułu
Konferencja
The First European Summer School of Fatique and Fracture (ESSFF1) and The Ninth Polish-Ukrainian-German Summer of Fracture Mechanics (SSFM9) on NEW RESULTS IN FATIGUE AND FRACTURE. Vol.2 (1,9;19-26.06.2005;Zakopane;Polska)
Języki publikacji
EN
Abstrakty
EN
The proposed models of fatigue life assessment under service load must be verified in experiments before their application in practice. Thus, it is necessary to obtain suitable results of numerous fatigue tests carried out for different materials and load types. In the paper two hydraulic fatigue test stands are presented, they are controlled by two-channel digital systems. Specimens subjected to biaxial tension-compression and tension with torsion of any histories can be tested on the stands. The proposed test methods allow to obtain reliable and reproducible results.
Rocznik
Tom
Strony
9--30
Opis fizyczny
Bibliogr. 22 poz., rys., tab., wykr.
Twórcy
  • Technical University of Opole, Poland
Bibliografia
  • [1] LEESE G. E„ MULLIN R. L., The Role of Fatigue Analysis in the Vehicle Test Simulation Laboratory, SAE Technical Papers 910166, Detroit, 1991, p.12.
  • [2] JOHNSON Ch., JOHNSON K., Breaking New Ground for Researchers with Dartec9600 Digital Contreller for Servo-Hydraulic Testing Machines & Actuators, Proc.S^ICB/MFF, Supplement, Technical University of Opole, Opole, 1997, pp. 31-51.
  • [3] CHEN C. S., KRAUSE R., PETIT R. G., BANKS-SILLS L., INGRAFFEA A. R., Numerical Assessment of T-Stress Computation Using a P-Version Finite Element Method, IntJ. Fracture, 107, 2001, pp. 177-199.
  • [4] DANNBAUER H., GAIER C. M., STEINBATZ M., A Statistical Measure of Non-Proportionality of Stresses Investigations and Applications, ProcjTCB/MFF, Berlin, 2004, pp. 623-628.
  • [5] SONSINO C. M., Structural Durability of Cast Aluminium Gearbox Housing of Underground Vehicles under Variable Amplitudę Loading, Proc.Conf.on Fatigue Damage, Seville, 2003, CD, pp. 134-142.
  • [6] BACHSTRÓM M., KOSKI K., SILJANDER A., LIUKKONEN S., TIKKA J., MARQUIS G., Fatigue Assessment of an Aging Aircraffs Wing under Complex Multiaxial Spectrum Loading, Proc.7lhICB/MFF, Berlin, 2004, pp. 595-600.
  • [7] KOCAŃDA D., KOCAŃDA S., TORZEWSKI J., Prędkość zmęcze¬niowego pękania w lotniczym stopie aluminium przy programowanym widmie obciążeń, Mat. XX Sympozjum Zmęczenie i Mechanika Pękania, Bydgoszcz, 2004, pp. 179-186, in Polish
  • [8] SAATHOFF A., STOLZE F. J. ZENNER H., Creation of a Synthetic Road For Multiaxial Fatigue Limit Simulation on Automobiles, ProcJ^ICB/MFF, Berlin, 2004, pp. 541-546.
  • [9] BARDENHEIER R., ROGERS G., Experimental Simulation of Multiaxial Stress States in Materiał Testing, ProcJTCB/MFF, Berlin, 2004, pp. 527-534.
  • [10] HEULER P., KLATSCHKE H., Generation and Use of Standardises Load Spectra and Load-Time Histories, Proc.Conf.on Fatigue Damage, Seville, 2003, pp. 175-185.
  • [11] ASTM E 606 (1998), Standard Practice for Strain-Controlled Fatigue Testing, Annular Book of ASTM, Section 3, Metal Test Methods and Analytical Procedures, Vol.3.01, Philadelphia 2002, pp.580-594.
  • [12] ASTM E 2207 (2002), Standard Practice for Strain-Controlled Axial-Torsional Fatige Testing with Thin-Walled Tubular Specimens, Annular Book of ASTM, Section 3, Metal Test Methods and Analytical Procedures, Vol.3.01, Philadelphia 2002, pp. 1222-1229.
  • [13] BĘDKOWSKI W., MACHA E., SŁOWIK J., A Fatigue Test of Materiał with the Strain Energy Density Amplitudę Control, Proc.Conf.on Fatigue Damage, Seville, 2003, CD, 7 ps.
  • [14] BĘDKOWSKI W., MACHA E., SŁOWIK J., The Fatigue Characteristics of Materials with the Controlled Strain Energy Density Parameter, The Archive of Mechanical Engineering, Vol.LI, 2004,3, Warszawa, 2004, pp.437-451.
  • [15] PALIN-LUC T., BANVILLET A., LASSERRE S., VITTORI J. F„ A Techniąue to Reduce the Duration of Multiaxial Fatigue Tests under Service Loadings, Proc.7LhICB/MFF, Berlin, 2004, pp. 421-426.
  • [16] KOCAŃDA S., SZALA J., Podstawy obliczeń zmęczeniowych, PWN, Warszawa 1985, s.288, in Polish.
  • [17] BĘDKOWSKI W., Determination of Critical Piane and Effort Criterion in Fatigue Life Evaluation for Materials under Multiaxial Random Loading. Experimental Verification Based on Fatigue Tests of Cruciform Specimens, 4th Intern. Conference on Biaxial/Multiaxial Fatigue, Paris 1994, Vol.I, pp.435-447.
  • [18] BĘDKOWSKI W., ŁAGODA T., MACHA E., Trwałość zmęczeniowa przy różnych współczynnikach korelacji naprężeń w dwuosiowym rozciąganiu-ściskaniu, VI Krajowa Konferencja Mechanika Pękania, Ameliówka, Politechnika Świętokrzyska, Zeszyt 62, Kielce 1997, pp.25-32, in Polish.
  • [19] BĘDKOWSKI W., WEBER B., MACHA E., ROBERT J. L., Comparison of Variance Method and Damage Indicator Methods for Prediction of the Fracture Piane Orientation in Multiaxial Fatigue, in: Multiaxial Fatigue and Fracture, Ed. E.Macha, W.Będkowski, T.Łagoda, ESIS Publication 25, ELSEVIER - Netherlands 1999, pp. 147-165.
  • [20] BĘDKOWSKI W., MACHA E., NIESŁONY A., Weryfikacja metody spektralnej wyznaczania trwałości zmęczeniowej na podstawie badań stali 10HNAP, Przegląd Mechaniczny, Zeszyt 12/2004, 2004, pp.13-16, in Polish.
  • [21] BĘDKOWSKI W., Model for Fatigue Life Estimation under Multiaxial Random Loading and its Verification Based on Fatigue Tests Results, lO* Conf.on Fracture Mechanics, Wisła, 2005, in printing.
  • [22] ŁAGODA T., MACHA E., BĘDKOWSKI W., A Critical Piane Approach Based on Energy Concepts. Application to Biaxial Random Tension-Compression High-Cycle Fatigue Regime, Int.J.Fatigue 21,1999,pp.431-443.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOC-0034-0052
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