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2005 | 12 | 4 |

Tytuł artykułu

High-cycle fatigue criterion for anisotropic metals under multiaxial constant and periodic loads

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Periodic stress with Cartesian components given in the form of Fourier series is considered. To account for the mean stress effect the modified Soderberg’s formula is employed.An equivalent stress with synchronous components is defined. The design criterionfor a finite fatigue life of metal elements is formulated. It covers the conditions of bothstatic strength and fatigue safety in the high-cycle regime and includes material constantswhich have simple physical interpretation, can be determined by uniaxial tests, are related directly to the applied loads, and can reflect material anisotropy

Słowa kluczowe

Wydawca

-

Rocznik

Tom

12

Numer

4

Opis fizyczny

p.10-14,ref.

Twórcy

autor
  • Faculty of Ocean Engineering and Ship Technology, Gdansk University of Technology, Narutowicza 11/12, 80-952 Gdansk, Poland

Bibliografia

  • 1. Blake A. (Ed.): Handbook of mechanics, materials andstructures. J. Wiley & Sons. New York, 1985
  • 2. Życzkowski M. (Ed.): Technical mechanics. Vol. 9, Strength ofstructural elements (in Polish). PWN (Scientific WorkPublishers). Warszawa, 1988
  • 3. Osgood C.C.: Fatigue design. Pergamon Press. Oxford, 1982
  • 4. Troshchenko V.T., Sosnovskii L.A.: Fatigue strength of metalsand alloys (in Russian). Naukowa Dumka. Kiev, 1987
  • 5. Kocańda S., Szala J.: Fundamentals of fatigue calculations (inPolish). PWN. Warszawa, 1997
  • 6. Troost A., E1-Magd E.: Schwingfestigkeit bei mehrachsigerBeanspruchung ohne und mit Phasenverschiebung.Konstruktion, No 8/1981
  • 7. Sonsino C.M.: Multiaxial fatigue of welded joints underin-phase and out-of-phase local strains and stresses. Int. JournalFatigue, No 1/1995
  • 8. Kolenda J.: Fatigue “safe-life” criterion for metal elementsunder multiaxial constant and periodic loads. Polish MaritimeResearch, No 2/2004
  • 9. Kolenda J.: Average-distortion-energy strength hypothesis. Proc.of 17th Symp. on Fatigue and Fracture Mechanics. Bydgoszcz--Pieczyska, 1998. Academy of Agriculture & Engineering.Bydgoszcz, 1998
  • 10.Cempel C.: Theory of energy transformation systems and theirapplication in diagnostic of operating systems. Applied Math.and Computer Sciences, No 3/1993
  • 11.Almar-Naess (Ed.): Fatigue handbook. Offshore steel structures.Tapir Publishers. Trondheim, 1985
  • 12.Kolenda J.: On fatigue safety of metallic elements under staticand dynamic loads. Gdańsk University of TechnologyPublishers. 2004
  • 13.Lubahn J.D., Felgar R.P.: Plasticity and creep of metals.J. Wiley & Sons. New York, London, 1961
  • 14.Haslach H.W., Jr, Armstrong R.W.: Deformable bodies and theirmaterial behavior. J.Wiley & Sons. 2004

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-ac5f9a93-ca12-46e2-b05a-7e135a896fdd
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