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Self-healing nanotextured vascular e...
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SpringerLink (Online service)
Self-healing nanotextured vascular engineering materials
Record Type:
Electronic resources : Monograph/item
Title/Author:
Self-healing nanotextured vascular engineering materialsby Alexander L. Yarin ... [et al.].
other author:
Yarin, Alexander L.
Published:
Cham :Springer International Publishing :2019.
Description:
xiv, 265 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Self-healing materialsTherapeutic use.
Online resource:
https://doi.org/10.1007/978-3-030-05267-6
ISBN:
9783030052676$q(electronic bk.)
Self-healing nanotextured vascular engineering materials
Self-healing nanotextured vascular engineering materials
[electronic resource] /by Alexander L. Yarin ... [et al.]. - Cham :Springer International Publishing :2019. - xiv, 265 p. :ill., digital ;24 cm. - Advanced structured materials,v.1051869-8433 ;. - Advanced structured materials ;v.13..
Materials and Fundamental Physico-Chemical Phenomena -- Fabrication Methods -- Mechanical Behavior of Self-Healing Nano-Textured Materials -- Self-Healing Anti-Corrosion Nano-Textured Materials.
This book gives an overview of the existing self-healing nanotextured vascular approaches. It describes the healing agents used in engineering self-healing materials as well as the fundamental physicochemical phenomena accompanying self-healing. This book also addresses the different fabrication methods used to form core-shell nanofiber mats. The fundamental theoretical aspects of fracture mechanics are outlined. A brief theoretical description of cracks in brittle elastic materials is given and the Griffith approach is introduced. The fracture toughness is described, including viscoelastic effects. Critical (catastrophic) and subcritical (fatigue) cracks and their growth are also described theoretically. The adhesion and cohesion energies are introduced as well, and the theory of the blister test for the two limiting cases of stiff and soft materials is developed. In addition, the effect of non-self-healing nanofiber mats on the toughening of ply surfaces in composites is discussed. The book also presents a brief description of the electrochemical theory of corrosion crack growth. All the above-mentioned phenomena are relevant in the context of self-healing materials.
ISBN: 9783030052676$q(electronic bk.)
Standard No.: 10.1007/978-3-030-05267-6doiSubjects--Topical Terms:
836029
Self-healing materials
--Therapeutic use.
LC Class. No.: TA418.9.S62
Dewey Class. No.: 620.11
Self-healing nanotextured vascular engineering materials
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Materials and Fundamental Physico-Chemical Phenomena -- Fabrication Methods -- Mechanical Behavior of Self-Healing Nano-Textured Materials -- Self-Healing Anti-Corrosion Nano-Textured Materials.
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This book gives an overview of the existing self-healing nanotextured vascular approaches. It describes the healing agents used in engineering self-healing materials as well as the fundamental physicochemical phenomena accompanying self-healing. This book also addresses the different fabrication methods used to form core-shell nanofiber mats. The fundamental theoretical aspects of fracture mechanics are outlined. A brief theoretical description of cracks in brittle elastic materials is given and the Griffith approach is introduced. The fracture toughness is described, including viscoelastic effects. Critical (catastrophic) and subcritical (fatigue) cracks and their growth are also described theoretically. The adhesion and cohesion energies are introduced as well, and the theory of the blister test for the two limiting cases of stiff and soft materials is developed. In addition, the effect of non-self-healing nanofiber mats on the toughening of ply surfaces in composites is discussed. The book also presents a brief description of the electrochemical theory of corrosion crack growth. All the above-mentioned phenomena are relevant in the context of self-healing materials.
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Chemistry and Materials Science (Springer-11644)
based on 0 review(s)
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電子館藏
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EB TA418.9.S62 S465 2019 2019
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1 records • Pages 1 •
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https://doi.org/10.1007/978-3-030-05267-6
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