2Sang-Hee Yoon, et al. Woodpecker-inspired shock isola- tion by microgranular bed. J Phys D: Appl Phys, 2009, 42: 035501. 被引量:1
3Sang-Hee Yoon, et al. Shock isolation of micromachined device for high-g applications, Chapter 20 in Structural Dy- namics of Electronic and Photonic Systems, (edited by E. Suhir, D.S. Steinberg and T.X. Yu), John Wiley 8z Sons, USA. 2011. 被引量:1
3Du N, Liu XY, Navayanan J, et al. Design of spider silk: from nanostructure to mechanical properties. Biophysical Journal, 2006, 91(2): 4528-4535. 被引量:1
4Huang X, Liu G, Wang X. New secrets of spider silk: excep- tionally high thermal conductivity and its abnormal uhange under stretching. Adv Mater, 2012, 24(11): 1482-1486. 被引量:1
5Nova A, Keten S, Pugno NM, et al. Molecular and nanos- tructural mechanisms of deformation, strength and tough- ness of spider silk fibrils. Nano Letters, 2010, 10(7): 2626- 2634. 被引量:1
6Keten S, Xu Z, Ihle B, et al. Nanoconfinement controls stiffness, strength and mechanical toughness of f3-sheet crystals in silk. Nature Materials, 2010, 9:359-367. 被引量:1
7Lee SM, Pippel E, Gosele U, et al. Greatly increased tough- ness of infiltrated spider silk. Science, 2009, 324(5926): 488-492. 被引量:1
8Hill,B.In First International Industrial Conference Bionik2004(Eds,Boblan,I.and Bannasch,R.)VDI,Hannover,Germany,2004. 被引量:1