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Finite-Element-Simulation des Faserverhalten metallischer Verbundwerkstoffe bei LCF-Beanspruchung

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Published/Copyright: December 22, 2021

Abstract

Das Faserverhalten von unidirektional, metallischen Verbundwerkstoffen wurde im Low-cycle-fatigue-Bereich experimentell untersucht, wobei das sukzessive Faserknicken in Druckphasen bei Wechselverformung und bei schwellender Druckbelastung von Bedeutung ist. Der Verbundwerkstoff besteht aus einer Kupfermatrix, die mit parallelen kontinuierlichen Fasern aus austenitischem Stahl verstärkt ist. Die experimentellen Ergebnisse werden kurz dargestellt und das Faserverhalten (die Fasern knicken und bilden ein Scherband aus) mit Hilfe der Finiten-Elemente-Methode simuliert. Die Entstehung und der Fortschritt des entstehenden Scherbandes sind anhand der Finiten-Elemente-Simulationen erklärbar.

Abstract

The behaviour of metallic fibre composite materials is investigated in the low cycle fatigue range, at which the successive buckling of the fibres is important in tension-compression tests or cyclic compression tests. The composite consists of a copper matrix reinforced with parallel continuous austenitic steel fibres. The results of the experiments are described and the behaviour of the fibers (the buckled fibers form a kink-band) is simulated by the finite element method. The formation and the progress of the kinkband are described by finite element simulations.


E. El-Magd Werkstoffkunde Augustinerbach 4, D-52062 Aachen, Germany Fax: +49 2 41 88 88 267

Literatur

1 Bunk, W.G.; Schulte, K.: Mat.-wiss.u. Werkstofftech. 19 (1988) 391–401.10.1002/mawe.19880191202Search in Google Scholar

2 El-Magd, E.; Stöckel, D.; Mokhtar, E.: Z. Metallkd. 76 (1985) 288–292.Search in Google Scholar

3 Stöckel, D.: Metall 37 (1983) 30–36.Search in Google Scholar

4 Schröder, K.-H.: in: W.J. Bartz (Hrsg.), Werkstoffe für elektrische Kontakte und ihre Anwendungen, Band 366, Expert-Verlag, Berlin (1980).Search in Google Scholar

5 Weaver, C.V.; Williams, J.G..J. Mater. Sci.10 (1975) 1323–1333.10.1007/BF00540822Search in Google Scholar

6 Evans, A.G.; Adler, WE: Acta Metall. 26(1978) 725-738.10.1016/0001-6160(78)90023-8Search in Google Scholar

7 Yang, W; Wie, Y.-G:Int. J. Damage Mechanics 1 (1992) 80–101.10.1177/105678959200100105Search in Google Scholar

8 Pattnaik, A.; Kim, C; Weimer, R.J.: in: Compression Testing of Homogeneous Materials and Composites, ASTM PA 808, Philadelphia, PA (1983) 254-275.10.1520/STP36208SSearch in Google Scholar

9 Schuerch, H.: J. Am. Inst. Aero. Astro. 4 (1966) 102-106.Search in Google Scholar

10 Chaboche J.-L, Lemaitre J.: Mechanics of Solid Materials, Cambridge Univesity Press, Cambridge/ New York (1990).10.1017/CBO9781139167970Search in Google Scholar

11 N.N.: ABAQUS Version 5.8: Theory Manual, Habbit, Karlsson & Sorensen, Pawtucket, USA (1998).Search in Google Scholar

12 El-Magd E.; Vervoort, S.: Vortragstexte der Tagung „ Verbundwerkstoffe und Werkstoffverbunde“, 17-19. 09.1997 in Kaisers-lautern, DGM rnformationsgesellschaft, Oberursel (1997) 539–544.Search in Google Scholar

13 Vervoort, S.: Ph. D. Thesis, RWTH Aachen (2000).Search in Google Scholar

Received: 2000-03-02
Published Online: 2021-12-22

© 2001 Carl Hanser Verlag, München

Articles in the same Issue

  1. Frontmatter
  2. Erratum
  3. Erratum
  4. Editorial
  5. In memoriam
  6. Aufsätze/Articles
  7. Low-temperature Processing of (Pb, La)(Zr, Ti) O3 Thick Films on Alumina Substrates
  8. Processing and Structure of Grain Boundaries in Strontium Titanate
  9. Stabilisation of MnZn Ferrites by the Re-oxidation of their Grain Boundaries
  10. Far-infrared Reflectivity Properties of BaTiO3 Ceramics
  11. Investigations on the Liquid Phase in Barium Titanate Ceramics with CuO Additives
  12. Chemical Engineering of Superconductive Rare-earth-Barium Cuprates: Melt Solidified Ceramics and Single Crystals
  13. Orthorhombic Titanium Aluminides: Phases, Phase Transformations and Microstructure Evolution
  14. Aspects of Sintering Additives for Processing and Microstructure Development of HIP-SSiC
  15. Investigation of Interlayer Phenomena in Ti/Pt Electrodes for Ferroelectric Thin Film Devices
  16. The Designing of Properties of Hydroxyapatite/Poly-l-lactide Composite Biomaterials by Hot Pressing
  17. Hydrolysis Assisted Solidification Process and its Use in Ceramic Wet Forming
  18. A Model for the Formation of Interdendritic Cavities from Pores Pre-existing in the Melt
  19. Pendeo-epitaxial Growth and Characterization of Thin Films of Gallium Nitride and Related Materials on SiC(0001) and Si(111) Substrates
  20. The Effect of Hydrogen Absorption and Desorption on Ta-doped SmFe Nitrides
  21. The Ternary System Fe–Nd–C
  22. Mechanical Properties of the Industrial HK40 Reforming Tubes Produced by an Improved Centrifugal Processing
  23. Texture of Hot Rolled and Annealed Binary Ti –Mn Alloys
  24. Finite-Element-Simulation des Faserverhalten metallischer Verbundwerkstoffe bei LCF-Beanspruchung
  25. Mitteilungen/Notifications
  26. Personal
  27. Book Reviews
  28. Tagungen/Conferences
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