Qi X W, Jia Z N, Yang Y L, et al. Characterization and auto-restoration mechanism of nanoscale serpentine powder as lubricating oil additive under high temperature [J]. Tribol. Int., 2011, 44(7): 806
[4]
董伟达. 工程机械减摩自修复材料技术 [J]. 机械工程师, 2003, 3: 3
[5]
李丰春, 程秀云, 刘波. 防腐蚀工 [M]. 北京: 化学工业出版社, 2004
[6]
Wapner K, Stratmann M, Grundmeier G. Structure and stability of adhesion promoting aminopropyi phesphonate layers at polymer/aluminium oxide interfaces [J]. Int. J. Adhes. Adhes., 2007, 28(1): 60
Greenberg R, Halperin G, Etsion I, et a1. The effect of WS2 nanop-articles on friction reduction invarious lubrication regimes [J]. Tribol. Lett., 2004, 17(2): 180
[17]
Chen X X, Matheus A D, Kanji O, et al. A thermally re-mendable cross-linked polymeric material [J]. Science, 2002, 295: 1670
[18]
Tarasov S, Kolubaev A, Belyaev S, et al. Study of friction reduction of nanocopper additives to motor oil [J]. Wear, 2002, 252: 64
Motuku M, Vaidya U K, Janowski G M. Parametric studies on self-repairing approaches for resin infused composites subjected to low velocity impact [J]. Smart. Mater. Struct., 1999, 8: 624
Satoshi M, Eiichi Y, Haruhisa K, et al. All self-repairing mechanical system [A]. Part of the SPIE Conference on Sensor Fusion and Decentralized Control in Robotic Systems II [C]. Boston, 1999: 203
[27]
Hideki M, Masato Y, Mari A, et al. Al1 self-repair of ordered pattern of nanometer dimensions based on self-compensation properties of anodic porous alumina [J]. Appl. Phys. Lett., 2001, 78(6): 827
[28]
Chen X X, Fred W, Ajit K M, et al. New thermally remendable hig-hly cross-linked polymeric materials [J]. Macromolecules, 2003, 36: 1801