《Springer手冊精選系列·納米技術(shù)手冊:仿生學(第6冊)(第3版·影印版)》具有先進、權(quán)威、全面、易查、實用等特點,是非常實用的跨學科工具書,可供從事或即將從事這一領(lǐng)域研究的研究人員、科學家和工程師參考,也可供教學人員和研究生、高年級本科生使用。
《納米技術(shù)手冊》詳盡闡述基本概念及納米材料、器件、加工等內(nèi)容;1500多幅插圖、眾多的綜合表幫助理解和使用;給出了詳盡的參考數(shù)據(jù)。
Dr. Bharat Bhushan received an M.S. in mechanical engineering
from the Massachusetts Institute of Technology in 1971,an M.S. in
mechanics and a Ph.D. in mechanical engineering from the University
of Colorado at Boulder in 1973 and 1976,respectively,an MBA from
Rensselaer Polytechnic Institute at Troy,NY in 1980,Doctor
Technicae from the University of Trondheim atTrondheim,Norway in
1990,a Doctor of Technical Sciences from the Warsaw University of
Technology at Warsaw,Poland in 1996,and Doctor Honouris Causa from
the National Academy of Sciences at Gomel,Belarus in 2000. He is a
registered professional engineer. He is presently an Ohio Eminent
Scholar and The Howard D. Winbigler Professor in the College of
Engineering,and the Director of the Nanoprobe Laboratory for Bio-
and Nanotechnology and Biomimetics (NLB2) at the Ohio State
University,Columbus,Ohio.His research interests include fundamental
studies with a focus on scanning probe techniques in the
interdisciplinary areas of bio/nanotribology,bio/nanomechanics and
bio/nanomaterials characterization,and applications to
bio/nanotechnology and biomimetics. He is an internationally
recognized expert of bio/nanotribology and bio/nanomechanics using
scanmng probe microscopy,and is one of the most prolific authors.
He is considered by some a pioneer of the tribology and mechanics
of magnetic storage devices. He has authored 6 scientific
books,more than 90 handbook chapters,more than 700 scientific
papers (h factor - 45+; ISI Highly Cited in Materials Science,since
2007),and more than 60 technical reports,edited more than 45
books,and holds 17 US and foreign patents. He is co-editor of
Springer Nano Science and Technology Series and coeditor of
Microsystem Technologies. He has given more than 400 invited
presentations on six continents and more than 140 keynote/plenary
addresses at major international conferences.
縮略語
Part F 仿生學
41.多功能植物表皮和多功能材料
41.1 植物表皮的結(jié)構(gòu)
41.2 多功能植物表皮
41.3 超疏水技術(shù)的應用
41.4 結(jié)論
參考文獻
42.荷葉效應:具有粗糙度誘導超疏水、自清潔、低附著的表面
42.1 背景
42.2 液體與粗糙表面接觸角的建模
42.3 荷葉效應表面性質(zhì)
42.4 如何制作超疏水表面
42.5 微米的、納米的和分層的圖案表面的制造和特征
42.6 疏油/親油表面的建模、制造及其特征
42.7 結(jié)論
參考文獻
43.生物和生物附屬系統(tǒng)
43.1 前言
43.2 附屬系統(tǒng)
43.3 附屬物的生物功能
43.4 附屬物的時間尺度
43.5 生物附屬物的原理
43.6 運動器官的附件墊:多毛與光滑
43.7 干式和濕式系統(tǒng)
43.8 尺度效應
43.9 進化方面
43.10 附屬器件和環(huán)境
43.11 設(shè)計原則
43.12 仿生學:現(xiàn)在我們在哪兒
43.13 結(jié)論
參考文獻
44.壁虎腳:自然多毛智能粘附件系統(tǒng)
44.1 概述
44.2 多毛附件系統(tǒng)
44.3 壁虎
44.4 附件機制
44.5 附著測試技術(shù)的實驗和數(shù)據(jù)
44.6 附著建模
44.7 仿生纖維結(jié)構(gòu)的建模
44.8 仿生壁虎皮膚的制造
44.9 結(jié)論
44.A 典型的粗糙表面
參考文獻