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Biomimeticsbioinspired hierarchical-...
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Bhushan, Bharat.
Biomimeticsbioinspired hierarchical-structured surfaces for green science and technology /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Biomimeticsby Bharat Bhushan.
其他題名:
bioinspired hierarchical-structured surfaces for green science and technology /
作者:
Bhushan, Bharat.
出版者:
Cham :Springer International Publishing :2018.
面頁冊數:
xxix, 977 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Biomimetics.
電子資源:
https://doi.org/10.1007/978-3-319-71676-3
ISBN:
9783319716763$q(electronic bk.)
Biomimeticsbioinspired hierarchical-structured surfaces for green science and technology /
Bhushan, Bharat.
Biomimetics
bioinspired hierarchical-structured surfaces for green science and technology /[electronic resource] :by Bharat Bhushan. - 3rd ed. - Cham :Springer International Publishing :2018. - xxix, 977 p. :ill., digital ;24 cm. - Springer series in materials science,v.2790933-033X ;. - Springer series in materials science ;v. 62..
Introduction -- Roughness-Induced Superliquiphilic/phobic Surfaces: Lessons from Nature -- Modeling of Contact Angle for a Liquid in Contact with a Rough Surface for Various Wetting Regimes -- Lotus Effect Surfaces in Nature -- Fabrication Techniques used for Superliquiphilic/phobic Structures -- Strategies of Micro-, Nano- and Hierarchically Structured Lotus-like Surfaces -- Fabrication and Characterization of Mechanically Durable Superhydrophobic Surfaces -- Fabrication and Characterization of Micropatterned Structures Inspired by Salvinia Molesta -- Characterization of Rose Petals and Fabrication and Characterization of Superhydrophobic Surfaces with High and Low Adhesion -- Modeling and Strategies of Superoleophobic/philic Surfaces -- Fabrication and Characterization of Superoleophilic/phobic Surfaces -- Shark-Skin Surface for Fluid-Drag Reduction in Turbulent Flow -- Black Skimmer Surfaces for Fluid-Drag Reduction in Turbulent Flow -- Gecko Adhesion -- Structure and Mechanical Properties of Nacre -- Self-Healing Materials -- Outlook.
This book presents an overview of the general field of biomimetics and biologically inspired, hierarchically structured surfaces. It deals with various examples of biomimetics, which include surfaces with roughness-induced super-phobicity/philicity, self-cleaning, antifouling, low drag, low/high/reversible adhesion, drag reduction in fluid flow, reversible adhesion, surfaces with high hardness and mechanical toughness, vivid colors produced structurally without color pigments, self-healing, water harvesting and purification, and insect locomotion and stinging. The focus in the book is on the Lotus Effect, Salvinia Effect, Rose Petal Effect, Superoleophobic/philic Surfaces, Shark Skin and Skimmer Bird Effect, Rice Leaf and Butterfly Wing Effect, Gecko Adhesion, Insects Locomotion and Stinging, Self-healing Materials, Nacre, Structural Coloration, and Nanofabrication. This is the first book of this kind on bioinspired surfaces, and the third edition represents a significant expansion from the previous two editions.
ISBN: 9783319716763$q(electronic bk.)
Standard No.: 10.1007/978-3-319-71676-3doiSubjects--Topical Terms:
283851
Biomimetics.
LC Class. No.: QP517.B56 / B487 2018
Dewey Class. No.: 610.28
Biomimeticsbioinspired hierarchical-structured surfaces for green science and technology /
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Introduction -- Roughness-Induced Superliquiphilic/phobic Surfaces: Lessons from Nature -- Modeling of Contact Angle for a Liquid in Contact with a Rough Surface for Various Wetting Regimes -- Lotus Effect Surfaces in Nature -- Fabrication Techniques used for Superliquiphilic/phobic Structures -- Strategies of Micro-, Nano- and Hierarchically Structured Lotus-like Surfaces -- Fabrication and Characterization of Mechanically Durable Superhydrophobic Surfaces -- Fabrication and Characterization of Micropatterned Structures Inspired by Salvinia Molesta -- Characterization of Rose Petals and Fabrication and Characterization of Superhydrophobic Surfaces with High and Low Adhesion -- Modeling and Strategies of Superoleophobic/philic Surfaces -- Fabrication and Characterization of Superoleophilic/phobic Surfaces -- Shark-Skin Surface for Fluid-Drag Reduction in Turbulent Flow -- Black Skimmer Surfaces for Fluid-Drag Reduction in Turbulent Flow -- Gecko Adhesion -- Structure and Mechanical Properties of Nacre -- Self-Healing Materials -- Outlook.
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