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Bhaduri, Amit.
Mechanical properties and working of metals and alloys
Record Type:
Electronic resources : Monograph/item
Title/Author:
Mechanical properties and working of metals and alloysby Amit Bhaduri.
Author:
Bhaduri, Amit.
Published:
Singapore :Springer Singapore :2018.
Description:
xxi, 748 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
Subject:
MetalsMechanical properties.
Online resource:
http://dx.doi.org/10.1007/978-981-10-7209-3
ISBN:
9789811072093$q(electronic bk.)
Mechanical properties and working of metals and alloys
Bhaduri, Amit.
Mechanical properties and working of metals and alloys
[electronic resource] /by Amit Bhaduri. - Singapore :Springer Singapore :2018. - xxi, 748 p. :ill. (some col.), digital ;24 cm. - Springer series in materials science,v.2640933-033X ;. - Springer series in materials science ;v. 62..
Part I. Mechanical Properties of Metals and Alloys: Chapter 1. Tension -- Chapter 2. Compression -- Chapter 3. Hardness -- Chapter 4. Bending -- Chapter 5. Torsion - Pure Shear -- Chapter 6. Impact Loading. Chapter 7. Creep and Stress Rupture -- Chapter 8. Fatigue -- Chapter 9. Fracture -- Part II. Mechanical Working of Metals and Alloys: Chapter 10: Fundamentals of Mechanical Working -- Chapter 11. Forging -- Chapter 12. Rolling -- Chapter 13. Extrusion -- Chapter 14. Drawing Flat Strip, Sound Bar and Tube -- Chapter 15. Deep Drawing -- Chapter 16. High Energy Rate Forming.
This book is intended to serve as core text or handy reference on two key areas of metallic materials: (i) mechanical behavior and properties evaluated by mechanical testing; and (ii) different types of metal working or forming operations to produce useful shapes. The book consists of 16 chapters which are divided into two parts. The first part contains nine chapters which describe tension (including elastic stress - strain relation, relevant theory of plasticity, and strengthening methods), compression, hardness, bending, torsion - pure shear, impact loading, creep and stress rupture, fatigue, and fracture. The second part is composed of seven chapters and covers fundamentals of mechanical working, forging, rolling, extrusion, drawing of flat strip, round bar, and tube, deep drawing, and high-energy rate forming. The book comprises an exhaustive description of mechanical properties evaluated by testing of metals and metal working in sufficient depth and with reasonably wide coverage. The book is written in an easy-to-understand manner and includes many solved problems. More than 150 numerical problems and many multiple choice questions as exercise along with their answers have also been provided. The mathematical analyses are well elaborated without skipping any intermediate steps. Slab method of analysis or free-body equilibrium approach is used for the analytical treatment of mechanical working processes. For hot working processes, different frictional conditions (sliding, sticking and mixed sticking-sliding) have been considered to estimate the deformation loads. In addition to the slab method of analysis, this book also contains slip-line field theory, its application to the static system, and the steady state motion, Further, this book includes upper-bound theorem, and upper-bound solutions for indentation, compression, extrusion and strip drawing. The book can be used to teach graduate and undergraduate courses offered to students of mechanical, aerospace, production, manufacturing and metallurgical engineering disciplines. The book can also be used for metallurgists and practicing engineers in industry and development courses in the metallurgy and metallic manufacturing industries.
ISBN: 9789811072093$q(electronic bk.)
Standard No.: 10.1007/978-981-10-7209-3doiSubjects--Topical Terms:
267418
Metals
--Mechanical properties.
LC Class. No.: TA460 / .B433 2018
Dewey Class. No.: 620.163
Mechanical properties and working of metals and alloys
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Part I. Mechanical Properties of Metals and Alloys: Chapter 1. Tension -- Chapter 2. Compression -- Chapter 3. Hardness -- Chapter 4. Bending -- Chapter 5. Torsion - Pure Shear -- Chapter 6. Impact Loading. Chapter 7. Creep and Stress Rupture -- Chapter 8. Fatigue -- Chapter 9. Fracture -- Part II. Mechanical Working of Metals and Alloys: Chapter 10: Fundamentals of Mechanical Working -- Chapter 11. Forging -- Chapter 12. Rolling -- Chapter 13. Extrusion -- Chapter 14. Drawing Flat Strip, Sound Bar and Tube -- Chapter 15. Deep Drawing -- Chapter 16. High Energy Rate Forming.
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This book is intended to serve as core text or handy reference on two key areas of metallic materials: (i) mechanical behavior and properties evaluated by mechanical testing; and (ii) different types of metal working or forming operations to produce useful shapes. The book consists of 16 chapters which are divided into two parts. The first part contains nine chapters which describe tension (including elastic stress - strain relation, relevant theory of plasticity, and strengthening methods), compression, hardness, bending, torsion - pure shear, impact loading, creep and stress rupture, fatigue, and fracture. The second part is composed of seven chapters and covers fundamentals of mechanical working, forging, rolling, extrusion, drawing of flat strip, round bar, and tube, deep drawing, and high-energy rate forming. The book comprises an exhaustive description of mechanical properties evaluated by testing of metals and metal working in sufficient depth and with reasonably wide coverage. The book is written in an easy-to-understand manner and includes many solved problems. More than 150 numerical problems and many multiple choice questions as exercise along with their answers have also been provided. The mathematical analyses are well elaborated without skipping any intermediate steps. Slab method of analysis or free-body equilibrium approach is used for the analytical treatment of mechanical working processes. For hot working processes, different frictional conditions (sliding, sticking and mixed sticking-sliding) have been considered to estimate the deformation loads. In addition to the slab method of analysis, this book also contains slip-line field theory, its application to the static system, and the steady state motion, Further, this book includes upper-bound theorem, and upper-bound solutions for indentation, compression, extrusion and strip drawing. The book can be used to teach graduate and undergraduate courses offered to students of mechanical, aerospace, production, manufacturing and metallurgical engineering disciplines. The book can also be used for metallurgists and practicing engineers in industry and development courses in the metallurgy and metallic manufacturing industries.
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Chemistry and Materials Science (Springer-11644)
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EB TA460 B575 2018
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http://dx.doi.org/10.1007/978-981-10-7209-3
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