Aerospace applications of shape memory alloys

被引:680
|
作者
Hartl, D. J. [1 ]
Lagoudas, D. C. [1 ]
机构
[1] Texas A&M Univ, Dept Aerosp Engn, College Stn, TX 77843 USA
关键词
shape memory alloys; nitinol; aerospace design; active materials; smart structures; intelligent systems;
D O I
10.1243/09544100JAERO211
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
With the increased emphasis on both reliability and multi-functionality in the aerospace industry, active materials are fast becoming an enabling technology capturing the attention of an increasing number of engineers and scientists worldwide. This article reviews the class of active materials known as shape memory alloys (SMAs), especially as used in aerospace applications. To begin, a general overview of SMAs is provided. Their useful properties and engineering effects are described and the methods in which these may be utilized are discussed. A review of past and present aerospace applications is presented. The discussion addresses applications for both atmospheric earth flight as well as space flight. To complete the discussion, SMA design challenges and methodologies are addressed and the future of the field is examined.
引用
收藏
页码:535 / 552
页数:18
相关论文
共 50 条
  • [31] Research and applications of shape memory and superelastic alloys
    Zhao, LC
    RARE METAL MATERIALS AND ENGINEERING, 2001, 30 : 81 - 86
  • [32] Special issue on shape memory alloys and their applications
    Institute of Materials Science, University of Tsukuba, Tsukuba 305-8573, Japan
    不详
    不详
    不详
    不详
    不详
    Mater. Trans., 2006, 3 (504):
  • [33] Applications of shape memory alloys in medical instruments
    Fischer, H
    Vogel, B
    Welle, A
    MINIMALLY INVASIVE THERAPY & ALLIED TECHNOLOGIES, 2004, 13 (04) : 248 - 253
  • [34] Thermomechanical modeling of shape memory alloys and applications
    Lexcellent, C
    Leclercq, S
    IUTAM SYMPOSIUM ON TRANSFORMATION PROBLEMS IN COMPOSITE AND ACTIVE MATERIALS, 1998, 60 : 135 - 145
  • [35] Shape memory alloys: Properties and biomedical applications
    Mantovani, D
    JOM-JOURNAL OF THE MINERALS METALS & MATERIALS SOCIETY, 2000, 52 (10): : 36 - 44
  • [36] SHAPE MEMORY COMPOSITES FOR SELF-DEPLOYABLE STRUCTURES IN AEROSPACE APPLICATIONS
    Santo, Loredana
    Quadrini, Fabrizio
    Accettura, Antonio
    Villadei, Walter
    INTERNATIONAL SYMPOSIUM ON DYNAMIC RESPONSE AND FAILURE OF COMPOSITE MATERIALS (DRAF2014), 2014, 88 : 42 - 47
  • [37] An Overview of the Properties and Industrial Applications of Shape Memory Alloys
    Degeratu, Sonia
    Rotaru, P.
    Boncea, I.
    Tarnita, D.
    Alboteanu, L.
    2018 INTERNATIONAL SYMPOSIUM ON FUNDAMENTALS OF ELECTRICAL ENGINEERING (ISFEE), 2018,
  • [38] Introduction to Shape Memory Alloys for Concrete Confinement Applications
    Abdelrahman, Khaled
    El-Hacha, Raafat
    RESPONSE OF STRUCTURES UNDER EXTREME LOADING, 2015, : 374 - 381
  • [39] Biomedical applications of electroactive polymers and shape memory alloys
    Lee, SK
    Lee, SJ
    An, HJ
    Cha, SE
    Chang, JK
    Kim, B
    Pak, JJ
    SMART STRUCTURES AND MATERIALS 2002: ELECTROACTIVE POLYMER ACTUATORS AND DEVICES (EAPAD), 2002, 4695 : 17 - 31
  • [40] SOME APPLICATIONS OF SHAPE-MEMORY ALLOYS.
    Wayman, C.M.
    Journal of Metals, 1980, 32 (06): : 129 - 137