2002Journal of Functional BiomaterialsOpen access

Superelastic deformation behavior of TiNi shape memory alloy subjected to various cyclic loading

H. Tobushi

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Abstract

TiNi shape memory alloys are the most commonly used due to their excellent mechanical properties, corrosion resistance and biocompatibility. Superelasticity is one of the important mechanical properties of TiNi shape memory alloy (SMA). In the present paper, the superelastic deformation behavior of TiNi SMA subjected to various full and partial loading with different experimental temperatures and strain rates was investigated. The characteristics of transformation stress and the modulus of elasticity during cyclic deformation were analyzed. The research results show martensite transformation stress decreases with an increase in cycle due to the residual strain during full cyclic loading. The amount of decrease in martensite transformation stress, that was residual stress, was proportional to residual strain. After mechanical training with cyclic deformation, superelastic behavior of TiNi shape memory alloy subjected to partial loading was studied, the starting and completing conditions of the transformation were prescribed.

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What this paper is about

TiNi shape memory alloys are the most commonly used due to their excellent mechanical properties, corrosion resistance and biocompatibility. Superelasticity is one of the important mechanical properties of TiNi shape memory alloy (SMA). In the present paper, the superelastic deformation behavior of TiNi SMA subjected to various full and partial loading with different experimental temperatures and strain rates was investigated. The characteristics of transformation stress and the modulus of elasticity during cyclic deformation were analyzed. The research results show martensite transformation stress decreases with an increase in cycle due to the residual strain during full cyclic loading. The amount of decrease in martensite transformation stress, that was residual stress, was proportional to residual strain. After mechanical training with cyclic deformation, superelastic behavior of TiNi shape memory alloy subjected to partial loading was studied, the starting and completing conditions of the transformation were prescribed.

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Available abstract

TiNi shape memory alloys are the most commonly used due to their excellent mechanical properties, corrosion resistance and biocompatibility. Superelasticity is one of the important mechanical properties of TiNi shape memory alloy (SMA). In the present paper, the superelastic deformation behavior of TiNi SMA subjected to various full and partial loading with different experimental temperatures and strain rates was investigated. The characteristics of transformation stress and the modulus of elasticity during cyclic deformation were analyzed. The research results show martensite transformation stress decreases with an increase in cycle due to the residual strain during full cyclic loading. The amount of decrease in martensite transformation stress, that was residual stress, was proportional to residual strain. After mechanical training with cyclic deformation, superelastic behavior of TiNi shape memory alloy subjected to partial loading was studied, the starting and completing conditions of the transformation were prescribed.

Key concepts: Materials science, Pseudoelasticity, Shape-memory alloy, Composite material, Diffusionless transformation, SMA*, Deformation (meteorology), Residual stress

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