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Deformation behavior of TiNi shape-memory alloy under strain- or stress-controlled conditions

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The deformation properties of TiNi shape-memory alloy subjected to strain control and stress control were investigated experimentally. The results obtained are summarized as follows. (1) In the case of a full loop, the stress-strain curves under stress-controlled conditions are similar to those under strain-controlled conditions with high strain rate. The overshoot and undershoot do not appear at the start points of the stress-induced martensitic transformation in these curves. (2) In the case of subloop under stress-controlled conditions, temperature decreases and therefore the strain increases owing to the martensitic transformation at the early stage of the unloading process. At the early stage in the reloading process, temperature increases and therefore the strain decreases owing to the reverse transformation. (3) In the case of subloop under stress-controlled conditions, the starting stresses of the martensitic transformation and the reverse transformation in the loading and unloading processes coincide with the transformation stresses under strain-controlled conditions with low strain rate, respectively. (4) The deformation behaviours for a subloop under stress-controlled conditions are prescribed by the condition for progress of the martensitic transformation based on the transformation kinetics. (5) The deformation behaviors subjected to cyclic loading under stress-controlled conditions at constant temperature are also prescribed by the conditions for progress of the martensitic transformation.
Rocznik
Strony
75--91
Opis fizyczny
Bibliogr. 16 poz.
Twórcy
autor
  • Department of Mechanical Engineering, Aichi Institute of Technology, 1247 Yachigusa, Yagusa-cho, Toyota 470-0392, Japan
autor
  • Department of Mechanical Engineering, Aichi Institute of Technology, 1247 Yachigusa, Yagusa-cho, Toyota 470-0392, Japan
autor
  • Department of Mechanical Engineering, Aichi Institute of Technology, 1247 Yachigusa, Yagusa-cho, Toyota 470-0392, Japan
autor
  • Department of Aerospace Engineering, Tokyo Metropolitan Institute of Technology Asahigaoka 6-6, Hino, Tokyo, 191-0065, Japan
Bibliografia
  • 1. H. FUNAKUBO, Shape memory alloys, Gordon and Break Science Pub., 1987.
  • 2. T. DUERIG, K. MELTON, D. STOCKEL and C. WAYMAN [Eds.] Engineering aspects of shape memory alloys, Butterworth-Heinemann, 1990.
  • 3. K OTUKA and C.M. WAYMANN [Eds.] Shape memory materials, Cambridge University Press, 1998.
  • 4. T. SABURI [Ed.] Shape memory materials, Trans Tech Pub., 2000.
  • 5. J.A. SHAW and S. KYRIAKIDES, Thermomechanical aspects of TiNi, J. Mech. Phys. Solids. 43, 8, 1243-1281, 1995.
  • 6. H. TOBUSHI, Y. SHIMENO, T. HACHISUKA and K. TANAKA, Influence of strain rate on superelastic properties of TiNi shape memory alloy, Mech. Mater., 30, 141-150, 1998.
  • 7. G. SOCHA, B. RANIECKI AND S. MIYAZAKI, Influence of control parameters on inhomogenity and the deformation behavior of Ti-51.0at%Ni SMA undergoing martensitic phase transformation at pure tension, 33rd Solid Mechanics Conference, 369-370, 2000.
  • 8. H. TOBUSHI, H. IWANGA, K. TANAKA, T. HORI and T. SAWADA, Deformation behavior of TiNi shape memory alloy subjected to variable stress and temperature, Continuum Mech. Thermodym., 3, 79-93, 1991.
  • 9. K. TANAKA, F. NISIMURA, T. HAYASHI, H. TOBUSHI and C. LEXCELLENT, Phenomenological analysis on subloops and cyclic behavior in shape memory alloys under mechanical and/or thermal loads, Mech. Mater., 19, 281-292, 1995
  • 10. K. TANAKA, S. KOBAYASHI and Y. SATO, Thermomechanics of transformation pseudoelasticity and shape memory effect in alloys, Inter. J. Plasticity, 2, 59-72, 1986.
  • 11. K. TANAKA, A Thermomechanical sketch of shape memory effects: one-dimensional tensile behavior, Res Mechanica, 18, 251-263, 1986.
  • 12. H. TOBUSHI, K. TANAKA, K. KIMURA, T. HORI and T. SAWADA, Stress-strain-temperature relationship associated with the R-phase transformation in TiNi shape memory alloy, JSME Inter. J., I, 35-3, 278-284, 1992.
  • 13. S. MIYAZAKI, T. IMAI, Y. IGO and K. OTSUKA, Effect of cyclic deformation on the pseudoelasticity characteristics of Ti-Ni alloys, Metall. Trans. A, 17A, 115-120, 1986.
  • 14. H. TOBUSHI, S. YAMADA, T. HACHISUKA, A. IKAI and K. TANAKA, Thermomechanical properties due to martensitic and R-phase transformations of TiNi shape memory alloy subjected to cyclic loadings, Smart Mater. Struct., 5, 788-795, 1996.
  • 15. P.H. LIN, H. TOBUSHI, K. TANAKA, T. HATTORI and M. MAKITA, Pseudoelastic behavior of TiNi shape memory alloy Subjected to Strain Variations, J. Intelligent Mater. Systems Struct., 5, 694-701, 1994.
  • 16. S.P. GADAJ, W.K. NOWACKI and H. TOBUSHI, Temperature evolution during tensile test of TiNi shape memory alloy, Arch. Mech., 51-6, 649-664, 1999.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT4-0002-0057
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