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Dynamic properties of 7000 - series aluminum alloys at large strain rates

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper presents test results of mechanical properties of EN AW-AlZn5Mg1Zr and EN AWAlZn5Mg1,5CuZr aluminum alloys for various tensile strain rates. Static tests were conducted with the use of MTS 810.12 tension test machine, and dynamic tests - with RSO rotary impact test machine. The work was aimed at determination of effects of strain rate and notch geometry of specimens on their material mechanical properties and damage mechanisms.
Rocznik
Tom
Strony
38--43
Opis fizyczny
Bibliogr. 22 poz., rys., tab.
Twórcy
autor
autor
  • Faculty of Mechanical and Electrical Engineering, Institute Construction and Operation of Ships, Polish Naval Academy in Gdynia Śmidowicza 69 81-103 Gdynia, POLAND, W.Jurczak@amw.gdynia.pl
Bibliografia
  • 1. Levedahl W., Capable A.: Affordable 21st - Century Destroyer. Naval Engineers Journal. May 1993
  • 2. Jurczak W.: Influence of chemical composition and heat treatment on mechanical properties and corrosion resistance of Al-Zn-Mg alloys applicable to welded ship structures (in Polish). Doctoral thesis, Gdańsk University of Technology, 1998.
  • 3. Cudny K., Powierża Z.: Selected problems of impact strength of ships (in Polish). Printed course lectures, Polish Naval University, Gdynia, 1978.
  • 4. Wiśniewski A.: Armours – construction, design and tests (in Polish). WNT (Scientific Technical Publishing House), Warsaw, 2001.
  • 5. Dobrociński St., Fila J., Jurczak W., Kolenda J.: Impact and ballistic strength of a novel Al-alloy and its composites (in Polish). Report on „BALIDUR” research project, Polish Naval University, Gdynia, 2001.
  • 6. Kinslov R. at al.: High-Velocity Impact Phenomena. Academic Press, New York and London, 1970
  • 7. Fila J.: Research on influence of loading state and strain rate on strength and toughness of ship materials (in Polish). The conference on” Impact strength of structures “, Polish Naval University, Gdynia, 1993.
  • 8. Fila J., Zatorski Z. at al.: Reports: No. 1/1993, No.1/94 and No. 2/95/IPBMO / “Powłoka” - AMW-KBN, 1993÷95, AMW Gdynia, str. 216.
  • 9. Material certificate of AlZn5Mg2CrZr alloy, IMN-OML Skawina nr 4550/91, 336 OML/91.
  • 10. Kyzioł L.: Dynamic characteristics of materials intended for marine structures (in Polish). Report on „KONSTRUKTOR” research project, 3rd phase, Polish Naval University, Gdynia, 2004, (unpublished).
  • 11. Han Zheng, Ze – Ping Wang: Spall damage in aluminium alloy. International Journal Solids and Structures, 32 (1995) 1135÷1148.
  • 12. Johnson J. N.: Dynamic fracture and spallation in ductile solids, Journal Applied Physics, 52 (1981) 2812÷2824.
  • 13. Lewiński T., Sokołowski J.: Energy change due to the appearance of cavities in elastic solids, International Journal of Solids and Structures, 40 (2003) 1765÷1803.
  • 14. Zukas J. A.: High velocity impact dynamics. John Willey & Sons Inc. U.K., 1990.
  • 15. Bugłacki H.: Influence of thermal treatment and chemical content of filler metals on mechanical properties and stress corrosion of AlZn5Mg1 alloy used for welded ship structures (in Polish). Doctoral thesis. Gdańsk University of Technology, Gdańsk, 1981.
  • 16. Bugłacki H., Jasiński R., Cudny K.: Mechanical properties in function of strain rate for metal alloys used in shipbuilding (in Polish). The conference on „ Impact strength of structures”, Polish Naval Academy, Gdynia, 1993.
  • 17. Cudny K., Puchaczewski N.: Metal alloys for ship hulls and offshore engineering structures (in Polish). Gdańsk University of Technology, Gdańsk, 1995.
  • 18. Jasiński R.: Influence of work hardening coefficient on impact properties and limited fatigue strength of aluminum alloys used in ship structures (in Polish). Doctoral thesis. Gdańsk University of Technology, Gdańsk, 1976.
  • 19. Perzyna P.: Theory of visco-plasticity (in Polish). PWN (State Scientific Publishers), Warsaw, 1969.
  • 20. Perzyna P: Application of visco-plasticity (in Polish). Ossolineum,1971.
  • 21. PN-EN 573-3: Aluminum and its alloys– Chemical composition and kinds of plastically worked products– Part 3: Chemical composition (in Polish).
  • 22. PN-EN 515: Aluminum and its alloys–Plastically worked products– Denotation of states (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM4-0041-0005
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