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ADVANCES IN TRANSFORMATION RATCHETING AND RATCHETING-FATIGUE INTERACTION OF NITI SHAPE MEMORY ALLOY 被引量:7

ADVANCES IN TRANSFORMATION RATCHETING AND RATCHETING-FATIGUE INTERACTION OF NITI SHAPE MEMORY ALLOY
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摘要 The accumulation of inelastic deformation occurring in NiTi shape memory alloy under the stress-controlled cyclic loading condition is named transformation ratcheting, since it is mainly caused by the solid-solid transformation from austenite to martensite phase and vice versa. The transformation ratcheting and its effect on the fatigue life (i.e., transformation-fatigue interaction) are key issues that should be addressed in order to assess the fatigue of NiTi shape memory alloy more accurately. In this paper, the advances in the studies on the transformation ratcheting and rateheting-fatigue interaction of super-elastic NiTi shape memory alloy in recent years are reviewed: First, experimental observation of the uniaxial transformation ratcheting and ratcheting-fatigue interaction of super-elastic NiTi alloy under the stress-controlled cyclic loading conditions is treated, and the detrimental effect of transformation ratcheting on the fatigue life is addressed; Secondly, two types of cyclic constitutive models (i.e., a macroscopic phenomeno- logical model and a micromechanical one based on crystal plasticity) constructed to describe the transformation ratcheting of super-elastic NiTi alloy are discussed; Furthermore, an energy-based failure model is provided and dealt with by comparing its predicted fatigue lives with experimental ones; Finally, some suggestions about future work are made. The accumulation of inelastic deformation occurring in NiTi shape memory alloy under the stress-controlled cyclic loading condition is named transformation ratcheting, since it is mainly caused by the solid-solid transformation from austenite to martensite phase and vice versa. The transformation ratcheting and its effect on the fatigue life (i.e., transformation-fatigue interaction) are key issues that should be addressed in order to assess the fatigue of NiTi shape memory alloy more accurately. In this paper, the advances in the studies on the transformation ratcheting and rateheting-fatigue interaction of super-elastic NiTi shape memory alloy in recent years are reviewed: First, experimental observation of the uniaxial transformation ratcheting and ratcheting-fatigue interaction of super-elastic NiTi alloy under the stress-controlled cyclic loading conditions is treated, and the detrimental effect of transformation ratcheting on the fatigue life is addressed; Secondly, two types of cyclic constitutive models (i.e., a macroscopic phenomeno- logical model and a micromechanical one based on crystal plasticity) constructed to describe the transformation ratcheting of super-elastic NiTi alloy are discussed; Furthermore, an energy-based failure model is provided and dealt with by comparing its predicted fatigue lives with experimental ones; Finally, some suggestions about future work are made.
作者 Guozheng Kang
出处 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2013年第3期221-236,共16页 固体力学学报(英文版)
基金 Project supported by the National Natural Science Foundation of China (No. 11025210) Sichuan Provincial Youth Science and Technology Innovation Team, China (2013)
关键词 NiTi shape memory alloy transformation ratcheting constitutive model fatigue failure model NiTi shape memory alloy, transformation ratcheting, constitutive model, fatigue,failure model
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  • 1张娟,高庆,康国政,刘宇杰.304不锈钢高温非比例多轴应变循环变形行为研究[J].核动力工程,2006,27(4):44-49. 被引量:4
  • 2Van Humbeeck J. Non medical applications of shape memory alloys [J]. Materials Science and Engineer- ing.. A, 1999,273 134-148.
  • 3Duerig T W,Pelton A,St6ekel D. An overview of niti- nol medical applications[J]. Materials Science and En- gineering: A, 1999,273 : 149-160.
  • 4Morgan N B. Medical shape memory alloy applica- tions-the market and its products[J]. Materials Sci- ence and Engineering : A, 2004,378 (1) : 16-23.
  • 5Miyazaki S,Imai T, Igo Y, Otsuka K. E[fect of cyclic deformation on the pseudoelasticity characteristics of Ti-Ni alloys[J]. Metallurgical Transactions A, 1986, 17(1) :115-120.
  • 6Lagoudas D C,Bo Z. Thermomechanical modeling of polycrystalline SMAs under cyclic loading. Part II.. Material characterization and experimental results for a stable transformation cycle[J]. International Journal of Engineering Science, 1999,37 (9) : 1141 -1173.
  • 7Sehitoglu H, Anderson R, Karaman I, Gall K, Chum- lyakov Y. Cyclic deformation behavior of single crys- tal NiTi[J]. Materials Science and Engineering: A, 2001,314(1) :67- 74.
  • 8Gall K,Maier H J. Cyclic deformation mechanisms in precipitated NiTi shape memory alloys[J]. Acta Ma terialia, 2002,50(18) :4643-4657.
  • 9Wang X,Xu B, Yue Z. Phase transformation behavior of pseudoelastic NiTi shape memory alloys under large strain [J]. Journal of Alloys and Compounds, 2008,463(1) :417-422.
  • 10Song D,Kang G,Kan Q,Yu C,Zhang C. Non-propor- tional multiaxial transformation ratchetting of super- elastic NiTi shape memory alloy:Experimental obser- vations[J]. Mechanics of Materials, 2014,70 : 94-105.

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