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Warianty tytułu
Języki publikacji
Abstrakty
The problem of assessment of the initial point of a crack in in static tests is already recognizable and simple to determine. On the basis of this point the force Fp and energy Ep necessary to initialize fracture, thus due to these parameters it is possible to determine parameters of crack resistance. In case of dynamic loads, especially during the impact bending test of material samples, this problem is much more difficult and at the present level of science it is still current matter. In the article, in compliance with own research, the comparison of different methods of initial point determination in bend-test was performed, which is: compliance change of the sample, strain gauge tests (tensometric), mathematical processing of registered actions F(t), method of maximum force Fmax with the most accurate method (pattern method): crack alteration, for tested steels 18G2A and St3S and aluminium alloy Ak12, in order to demonstrate essential differences in assessment of initial point of crack in impact bending test.
Czasopismo
Rocznik
Tom
Strony
83--92
Opis fizyczny
Bibliogr. 15 poz., rys., wykr., tab.
Twórcy
autor
- University of Technology and Life Sciences Faculty of Mechanical Engineering 7 Kaliskiego Street, 85-791 Bydgoszcz, Poland
Bibliografia
- [1] Neimitz A., Podstawy mechaniki pękania, WNT Warszawa 2003.
- [2] ASTME 24.03.03: Proposed standard method of test instrumented impact of precracked charpy specimens of metallic materials.
- [3] SEP 1315: Kerbschlagbiegeversuch mit Ermittrulung von Kraft und Weg, Stahl-Eisen-Prüfblatt des Vereins Deustcher Eisenhüttenleute, Düsseldorf 1997.
- [4] ISO EN DIN 14556: Instrumented Impact Test, Beuth Verlag, Berlin 2008.
- [5] ESIS (TCS) - Proposed Standard for instrumented Charpy V-Test, Draft (7), Committee of Dynamic Testing at Intermediate Strain Rates, 1998.
- [6] Kobayashi T.: Development in the instrumented impact test - computer aided instrumented impact testing system. Charpy Centenary Conference, pp. 127-134, Paris 2001.
- [7] Kobayashi T. Yamamoto J. Niinomi M.: Introduction of a New Dynamic Fracture Toughness Evaluation System: Journal of Testing and Evaluation vol. 21 No 3, pp. 145-153, 1998.
- [8] Ranatowski E. Sadowski J.: Possibilites of mathematical processing of the impact bend of charpy v samples diagram. Journal of Theoretical and Applied Machanics, pp. 237-248, 1995.
- [9] Ranatowski E. Sadowski J.: Physical interpretation of impact bend test by means of mathematical methods, Appl. Math. and comp. sci. vol. 3 No 2, pp. 281 - 300, 1995.
- [10] Lis Z. Narbudowicz K.: Zastosowanie krzyżowego efektu magnetomechanicznego do wyznaczania inicjacji pękania w próbie Charpy. VI Konferencja Mechaniki Pękania, pp. 237-249, Kielce 1997.
- [11] Lis Z. Narbudowicz K.: Identyfikacja procesu dynamicznego pękania na podstawie analizy sygnału emisji magnetycznej po transformacji waveletowej, XVII Sympozjum Zmęczenia Materiałów i Konstrukcji, pp. 177-182, Bydgoszcz 1998.
- [12] Radakovic Z. Sedmak A.,: Determination od ductile crack initiation using pre-cracked Charpy specimens. Charpy Centenary Conference, pp. 611-618, Paris 2001.
- [13] Spies A.: Instrumented impact testing machine for determining impact fracture toughness by the impact response curve method: Wolper V37 No2, pp. 14-18, 1997.
- [14] Sadowski J. Szykowny T.: Relation between dynamic fracture toughness impact resistance KCV and structure of selected frictionally welded joinst, The Archive of Mechanical Engineering vol LI No 3, pp. 453 - 465, 2004.
- [15] Sadowski J.: Wpływ czynników technologicznych na dynamiczną odporność na pękanie wybranych stopów odlewniczych, Zagadnienia Mechaniki Stosowanej, UTP Bydgoszcz tom 3, pp. 87 - 97, 2011.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bbae66c8-f20a-4906-bf98-6537d0a7e7ad