Strength and Structure of Engineering Materials

Strength and Structure of Engineering Materials
Title Strength and Structure of Engineering Materials PDF eBook
Author N. H. Polakowski
Publisher Prentice Hall
Pages 568
Release 1966
Genre Technology & Engineering
ISBN

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History of Strength of Materials

History of Strength of Materials
Title History of Strength of Materials PDF eBook
Author Stephen Timoshenko
Publisher Courier Corporation
Pages 482
Release 1983-01-01
Genre Technology & Engineering
ISBN 9780486611877

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Strength of materials is that branch of engineering concerned with the deformation and disruption of solids when forces other than changes in position or equilibrium are acting upon them. The development of our understanding of the strength of materials has enabled engineers to establish the forces which can safely be imposed on structure or components, or to choose materials appropriate to the necessary dimensions of structures and components which have to withstand given loads without suffering effects deleterious to their proper functioning. This excellent historical survey of the strength of materials with many references to the theories of elasticity and structures is based on an extensive series of lectures delivered by the author at Stanford University, Palo Alto, California. Timoshenko explores the early roots of the discipline from the great monuments and pyramids of ancient Egypt through the temples, roads, and fortifications of ancient Greece and Rome. The author fixes the formal beginning of the modern science of the strength of materials with the publications of Galileo's book, "Two Sciences," and traces the rise and development as well as industrial and commercial applications of the fledgling science from the seventeenth century through the twentieth century. Timoshenko fleshes out the bare bones of mathematical theory with lucid demonstrations of important equations and brief biographies of highly influential mathematicians, including: Euler, Lagrange, Navier, Thomas Young, Saint-Venant, Franz Neumann, Maxwell, Kelvin, Rayleigh, Klein, Prandtl, and many others. These theories, equations, and biographies are further enhanced by clear discussions of the development of engineering and engineering education in Italy, France, Germany, England, and elsewhere. 245 figures.

Engineering Materials 1

Engineering Materials 1
Title Engineering Materials 1 PDF eBook
Author M. F. Ashby
Publisher
Pages 324
Release 1996
Genre Technology & Engineering
ISBN

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This book gives a broad introduction to the properties of materials used in engineering applications, and is intended to provide a course in engineering materials for students with no previous background in the subject.

Strength of Materials and Structures

Strength of Materials and Structures
Title Strength of Materials and Structures PDF eBook
Author John Case
Publisher Elsevier
Pages 417
Release 2013-10-22
Genre Technology & Engineering
ISBN 1483183270

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Strength of Materials and Structures: An Introduction to the Mechanics of Solids and Structures provides an introduction to the application of basic ideas in solid and structural mechanics to engineering problems. This book begins with a simple discussion of stresses and strains in materials, structural components, and forms they take in tension, compression, and shear. The general properties of stress and strain and its application to a wide range of problems are also described, including shells, beams, and shafts. This text likewise considers an introduction to the important principle of virtual work and its two special forms—leading to strain energy and complementary energy. The last chapters are devoted to buckling, vibrations, and impact stresses. This publication is a good reference for engineering undergraduates who are in their first or second years.

Strength of Materials and Structures

Strength of Materials and Structures
Title Strength of Materials and Structures PDF eBook
Author Carl T. F. Ross
Publisher Elsevier
Pages 721
Release 1999-08-27
Genre Technology & Engineering
ISBN 0080518001

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Engineers need to be familiar with the fundamental principles and concepts in materials and structures in order to be able to design structurers to resist failures. For 4 decades, this book has provided engineers with these fundamentals. Thoroughly updated, the book has been expanded to cover everything on materials and structures that engineering students are likely to need. Starting with basic mechanics, the book goes on to cover modern numerical techniques such as matrix and finite element methods. There is also additional material on composite materials, thick shells, flat plates and the vibrations of complex structures. Illustrated throughout with worked examples, the book also provides numerous problems for students to attempt. - New edition introducing modern numerical techniques, such as matrix and finite element methods - Covers requirements for an engineering undergraduate course on strength of materials and structures

Structure and Properties of Engineering Materials

Structure and Properties of Engineering Materials
Title Structure and Properties of Engineering Materials PDF eBook
Author Daniel P. Henkel
Publisher McGraw-Hill Science, Engineering & Mathematics
Pages 472
Release 2002
Genre Science
ISBN

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* An updated look at various engineering materials, including metals, metal alloys, polymers, ceramics and composites * Numerous photomicrographs, and other illustrations, are used to show structural characteristics of various materials * Web site is available

Mechanical and Materials Engineering of Modern Structure and Component Design

Mechanical and Materials Engineering of Modern Structure and Component Design
Title Mechanical and Materials Engineering of Modern Structure and Component Design PDF eBook
Author Andreas Öchsner
Publisher Springer
Pages 448
Release 2015-06-06
Genre Science
ISBN 3319194437

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This book presents the latest findings on mechanical and materials engineering as applied to the design of modern engineering materials and components. The contributions cover the classical fields of mechanical, civil and materials engineering, as well as bioengineering and advanced materials processing and optimization. The materials and structures discussed can be categorized into modern steels, aluminium and titanium alloys, polymers/composite materials, biological and natural materials, material hybrids and modern nano-based materials. Analytical modelling, numerical simulation, state-of-the-art design tools and advanced experimental techniques are applied to characterize the materials’ performance and to design and optimize structures in different fields of engineering applications.