Shape memory alloy wires turn composites into smart structures -: Part I:: Material requirements

被引:4
|
作者
Schrooten, J [1 ]
Michaud, V [1 ]
Zheng, YJ [1 ]
Balta, JA [1 ]
Månson, JA [1 ]
机构
[1] Katholieke Univ Leuven, Dept Met & Mat Engn, B-3001 Louvain, Belgium
来源
SMART STRUCTURES AND MATERIALS 2002: INDUSTRIAL AND COMMERCIAL APPLICATIONS OF SMART STRUCTURES TECHNOLOGIES | 2002年 / 4698卷
关键词
shape memory alloy; adaptive composite; transformational behavior; thermomechanical properties; interface;
D O I
10.1117/12.475099
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Composites containing thin Shape Memory Alloy (SMA) wires show great potential as materials able to adapt their shape, thermal behavior or vibrational properties to external stimuli. The functional properties of SMA-composites are directly related to the constraining effect of the matrix on the reversible martensitic transformation of the embedded pre-strained SMA wires. The present work reports results of a concerted European effort towards a fundamental understanding of the manufacturing and design of SMA composites. This first part investigates the transformational behavior of constrained SMA wires and its translation into functional properties of SMA composites. Thermodynamic and thermomechanical experiments were performed on SMA wires. A model was developed to simulate the thermomechanical behavior of the wires. From the screening of potential wires it was concluded that NiTiCu, as well as R-phase NiTi appeared as best candidates. Requirements for the host composite materials were surveyed. A Kevlar-epoxy system was chosen. Finally, the quality of the SMA wire-resin interface was assessed by two different techniques. These indicated that a thin oxide layer seems to provide the best interfacial strength. A temperature window in which SMA composites can be safely used was also defined. The manufacturing and properties of the SMA composites will be discussed in Part II.
引用
收藏
页码:395 / 405
页数:11
相关论文
共 50 条
  • [31] A cycloidal wobble motor driven by shape memory alloy wires
    Hwang, Donghyun
    Higuchi, Toshiro
    SMART MATERIALS AND STRUCTURES, 2014, 23 (05)
  • [32] Fracture of thermally activated NiTi shape memory alloy wires
    Ramaiah, K. V.
    Saikrishna, C. N.
    Ranganath, V. R.
    Buravalla, V.
    Bhaumik, S. K.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2011, 528 (16-17): : 5502 - 5510
  • [33] Smart Lead Rubber Bearings Equipped with Ferrous Shape Memory Alloy Wires for Seismically Isolating Highway Bridges
    Dezfuli, Farshad Hedayati
    Alam, M. Shahria
    JOURNAL OF EARTHQUAKE ENGINEERING, 2018, 22 (06) : 1042 - 1067
  • [34] Micromechanical modelling of shape memory alloy composites
    Wang, YF
    Wang, XM
    Yue, ZF
    MATERIALWISSENSCHAFT UND WERKSTOFFTECHNIK, 2004, 35 (03) : 158 - 162
  • [35] Smart shape memory alloy-based dampers
    Li, H
    Mao, CX
    PROCEEDINGS OF THE THIRD INTERNATIONAL SYMPOSIUM ON INSTRUMENTATION SCIENCE AND TECHNOLOGY, VOL 1, 2004, : 1207 - 1211
  • [36] Investigation and Validation of a Shape Memory Alloy Material Model Using Interactive Fibre Rubber Composites
    Annadata, Achyuth Ram
    Acevedo-Velazquez, Aline Iobana
    Woodworth, Lucas A.
    Gereke, Thomas
    Kaliske, Michael
    Roebenack, Klaus
    Cherif, Chokri
    MATERIALS, 2024, 17 (05)
  • [37] Qualitative and quantitative evaluation of the interface in activated shape memory alloy composites
    Y. J. Zheng
    J. Schrooten
    K. A. Tsoi
    P. Šittner
    Experimental Mechanics, 2003, 43 (2) : 194 - 200
  • [38] Towards applications, processing and advancements in shape memory alloy and its composites
    Gangil, Namrata
    Siddiquee, Arshad Noor
    Maheshwari, Sachin
    JOURNAL OF MANUFACTURING PROCESSES, 2020, 59 : 205 - 222
  • [39] Shakedown analysis of shape memory alloy structures
    Feng, Xi-Qiao
    Sun, Qingping
    INTERNATIONAL JOURNAL OF PLASTICITY, 2007, 23 (02) : 183 - 206
  • [40] Qualitative and quantitative evaluation of the interface in activated shape memory alloy composites
    Zheng, YJ
    Schrooten, J
    Tsoi, KA
    Sittner, P
    EXPERIMENTAL MECHANICS, 2003, 43 (02) : 194 - 200