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Properties and characterization of m...
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Altenbach, Holm.
Properties and characterization of modern materials
Record Type:
Electronic resources : Monograph/item
Title/Author:
Properties and characterization of modern materialsedited by Andreas Ochsner, Holm Altenbach.
other author:
Ochsner, Andreas.
Published:
Singapore :Springer Singapore :2017.
Description:
x, 452 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
MaterialsMechanical properties.
Online resource:
http://dx.doi.org/10.1007/978-981-10-1602-8
ISBN:
9789811016028$q(electronic bk.)
Properties and characterization of modern materials
Properties and characterization of modern materials
[electronic resource] /edited by Andreas Ochsner, Holm Altenbach. - Singapore :Springer Singapore :2017. - x, 452 p. :ill., digital ;24 cm. - Advanced structured materials,v.331869-8433 ;. - Advanced structured materials ;v.13..
1 Options for Nanoreinforced Cast Al-Si Alloys with TiO2 Nanoparticles -- 2 Mechanical Properties and Wear Resistance of Semisolid Cast Al2O3 Nano Reinforced Hypo and Hyper-eutectic Al-Si Composites -- 3 Simulation of a Crack Emanating from a Microvoid in Cement of a Reconstructed Acetabulum -- 4 Surface properties of microfibers and nanofiber composites tested in contact with bacteria E. coli and fungi of the Candida genus.
This book focuses on robust characterization and prediction methods for materials in technical applications as well as the materials' safety features during operation. In particular, it presents methods for reliably predicting material properties, an aspect that is becoming increasingly important as engineering materials are pushed closer and closer to their limits to boost the performance of machines and structures. To increase their engineering value, components are now designed under the consideration of their multiphysical properties and functions, which requires much more intensive investigation and characterization of these materials. The materials covered in this monograph range from metal-based groups such as lightweight alloys, to advanced high-strength steels and modern titanium alloys. Furthermore, a wide range of polymers and composite materials (e.g. with micro- and nanoparticles or fibres) is covered. The book explores methods for property prediction from classical mechanical characterization-related fields of application, for example, from wear, creep, fatigue and crack growth, to specific surface properties, to dielectric and electrochemical values. As in all fields of modern engineering, the process is often accompanied by numerical simulation and optimization.
ISBN: 9789811016028$q(electronic bk.)
Standard No.: 10.1007/978-981-10-1602-8doiSubjects--Topical Terms:
215155
Materials
--Mechanical properties.
LC Class. No.: TA405
Dewey Class. No.: 620.11292
Properties and characterization of modern materials
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1 Options for Nanoreinforced Cast Al-Si Alloys with TiO2 Nanoparticles -- 2 Mechanical Properties and Wear Resistance of Semisolid Cast Al2O3 Nano Reinforced Hypo and Hyper-eutectic Al-Si Composites -- 3 Simulation of a Crack Emanating from a Microvoid in Cement of a Reconstructed Acetabulum -- 4 Surface properties of microfibers and nanofiber composites tested in contact with bacteria E. coli and fungi of the Candida genus.
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This book focuses on robust characterization and prediction methods for materials in technical applications as well as the materials' safety features during operation. In particular, it presents methods for reliably predicting material properties, an aspect that is becoming increasingly important as engineering materials are pushed closer and closer to their limits to boost the performance of machines and structures. To increase their engineering value, components are now designed under the consideration of their multiphysical properties and functions, which requires much more intensive investigation and characterization of these materials. The materials covered in this monograph range from metal-based groups such as lightweight alloys, to advanced high-strength steels and modern titanium alloys. Furthermore, a wide range of polymers and composite materials (e.g. with micro- and nanoparticles or fibres) is covered. The book explores methods for property prediction from classical mechanical characterization-related fields of application, for example, from wear, creep, fatigue and crack growth, to specific surface properties, to dielectric and electrochemical values. As in all fields of modern engineering, the process is often accompanied by numerical simulation and optimization.
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Engineering (Springer-11647)
based on 0 review(s)
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000000135558
電子館藏
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EB TA405 P965 2017
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1 records • Pages 1 •
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http://dx.doi.org/10.1007/978-981-10-1602-8
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