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Shape memory alloys in civil engineering
~
Andrawes, Bassem O.
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Shape memory alloys in civil engineering
Record Type:
Electronic resources : Monograph/item
Title/Author:
Shape memory alloys in civil engineering/ by Bassem Andrawes.
Author:
Andrawes, Bassem O.
Published:
Cham :Springer Nature Switzerland : : 2024.,
Description:
xiv, 182 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Introduction -- Super elasticity in Bridge Applications -- SMA Composite Reinforcement for Concrete Structures -- SMA Confinement in Concrete Structures -- Application of Prestressing in Concrete Structures using SMAs -- Future of SMAs in Civil Engineering.
Contained By:
Springer Nature eBook
Subject:
Shape memory alloys. -
Online resource:
https://doi.org/10.1007/978-3-031-68001-4
ISBN:
9783031680014
Shape memory alloys in civil engineering
Andrawes, Bassem O.
Shape memory alloys in civil engineering
[electronic resource] /by Bassem Andrawes. - Cham :Springer Nature Switzerland :2024. - xiv, 182 p. :ill. (some col.), digital ;24 cm. - Materials research society series,2730-7379. - Materials research society series..
Introduction -- Super elasticity in Bridge Applications -- SMA Composite Reinforcement for Concrete Structures -- SMA Confinement in Concrete Structures -- Application of Prestressing in Concrete Structures using SMAs -- Future of SMAs in Civil Engineering.
This book presents a new class of metallic materials, called shape memory alloys (SMAs), as emerging materials for civil engineering applications. These materials have been used for decades in high-end fields like the aerospace and biomedical fields, and possess extraordinary properties that have attracted the attention of civil engineering researchers and practitioners for over 25 years. In this volume, based on 20 years of research findings, the author describes how SMAs started to find their way into practical applications in civil engineering. And that, like any metal, SMAs are produced in any shape, size, or form including wire, bar, and sheet, but unlike other metals, SMAs exhibit a unique ability to recover their original shape/size after being excessively deformed. Given the demand for sustainability and resilience in civil engineering applications, this book is ideal for civil engineering practitioners and materials researchers concerned with building materials and civil infrastructure. Explains fundamental SMA features and characteristics that are pertinent to civil engineering applications; Illustrates seismic, prestressing, retrofitting, and repair civil engineering applications using SMAs; Discusses modeling and design of civil engineering applications using SMAs with superelasticity and shape memory effect.
ISBN: 9783031680014
Standard No.: 10.1007/978-3-031-68001-4doiSubjects--Topical Terms:
907065
Shape memory alloys.
LC Class. No.: TA487
Dewey Class. No.: 620.165
Shape memory alloys in civil engineering
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Introduction -- Super elasticity in Bridge Applications -- SMA Composite Reinforcement for Concrete Structures -- SMA Confinement in Concrete Structures -- Application of Prestressing in Concrete Structures using SMAs -- Future of SMAs in Civil Engineering.
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This book presents a new class of metallic materials, called shape memory alloys (SMAs), as emerging materials for civil engineering applications. These materials have been used for decades in high-end fields like the aerospace and biomedical fields, and possess extraordinary properties that have attracted the attention of civil engineering researchers and practitioners for over 25 years. In this volume, based on 20 years of research findings, the author describes how SMAs started to find their way into practical applications in civil engineering. And that, like any metal, SMAs are produced in any shape, size, or form including wire, bar, and sheet, but unlike other metals, SMAs exhibit a unique ability to recover their original shape/size after being excessively deformed. Given the demand for sustainability and resilience in civil engineering applications, this book is ideal for civil engineering practitioners and materials researchers concerned with building materials and civil infrastructure. Explains fundamental SMA features and characteristics that are pertinent to civil engineering applications; Illustrates seismic, prestressing, retrofitting, and repair civil engineering applications using SMAs; Discusses modeling and design of civil engineering applications using SMAs with superelasticity and shape memory effect.
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Chemistry and Materials Science (SpringerNature-11644)
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