MIMICRY OF NATURAL MATERIAL DESIGNS AND PROCESSES

被引:38
作者
BOND, GM
RICHMAN, RH
MCNAUGHTON, WP
机构
[1] DAEDALUS ASSOCIATES INC, MT VIEW, CA 94043 USA
[2] CORNICE ENGN, DURANGO, CO 81301 USA
关键词
BONE; NANOSTRUCTURES; NATURAL MATERIALS; WOOD; BIOMIMESIS;
D O I
10.1007/BF02649071
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Biological structural materials, although composed of unremarkable substances synthesized at low temperatures, often exhibit superior mechanical properties. In particular, the quality in which nearly all biologically derived materials excel is toughness. The advantageous mechanical properties are attributable to the hierarchical, composite, structural arrangements common to biological systems. Materials scientists and engineers have increasingly recognized that biological designs or processing approaches applied to man-made materials (biomimesis) may offer improvements in performance over conventional designs and fabrication methods. In this survey, the structures and processing routes of marine shells, avian eggshells, wood, bone, and insect cuticle are briefly reviewed, and biomimesis research inspired by these materials is discussed. In addition, this paper describes and summarizes the applications of biomineralization, self-assembly, and templating with proteins to the fabrication of thin ceramic films and nanostructure devices.
引用
收藏
页码:334 / 345
页数:12
相关论文
共 58 条
  • [21] Clegg W.C., The Fabrication and Failure of Laminar Ceramic Composites, Acta Metall. Mater., 40, pp. 3085-3093, (1992)
  • [22] Calvert P., Biomimetic Ceramics and Composites, MRS Bull., 17, 10, pp. 37-40, (1992)
  • [23] Tung M.A., Staley L.M., Richards J.F., Studies on Egg Shell Strength, Shell Stiffness, Shell Quantity, Egg Size and Shape, British Poultry Science, 9, pp. 221-229, (1968)
  • [24] Bond G.M., Scott V.D., Board R.G., Correlation of Mechanical Properties of Avian Eggshells with Hatching Strategies, Journal of Zoology, 209, pp. 225-237, (1986)
  • [25] Simkiss K., Tyler C., A Histochemical Study of the Organic Matrix of Hen Eggshells, Q. J. Microsc. Sc., 98, pp. 19-28, (1957)
  • [26] Simkiss K., Tyler C., Reactions between Eggshell Matrix and Metallic Cations, Q. J. Microsc. Sc., 99, pp. 5-13, (1958)
  • [27] Simkiss K., Calcium Metabolism and Avian Reproduction, Biological Reviews, 36, pp. 321-367, (1961)
  • [28] Cooke A.S., Balch D.A., Studies of Membrane, Mammillary Cores and Cuticle of the Hen Egg Shell, Br. Poult. Sci., 11, pp. 345-352, (1970)
  • [29] Bond G.M., Board R.G., Scott V.D., A Comparative Study of Changes in the Fine Structure of Avian Eggshells during Incubation, Zoo. J. Linnean Soc., 92, pp. 105-113, (1988)
  • [30] Arias J.L., Fernandez M.S., Laraia V.J., Heuer A.H., Caplan A.I., The Avian Eggshell as a Model of Biomineralization, Materials Synthesis Based on Biological Processes, 218, pp. 193-201, (1991)