Description

Book Synopsis

A systematic presentation of theory, procedures, illustrative examples, and applications, Mechanics of Materials provides the basis for understanding structural mechanics in engineering systems such as buildings, bridges, vehicles, and machines. The book incorporates the fundamentals of the subject into analytical methods, modeling approaches, numerical methods, experimental procedures, numerical evaluation procedures, and design techniques.

It introduces the fundamentals, and then moves on to more advanced concepts and applications. It discusses analytical methods using simple mathematics, examples and experimental techniques, and it includes a large number of worked examples and case studies that illustrate practical and real-world usage.

  • In the beginning of each chapter, states and summarizes the objectives and approaches, and lists the main topics covered in the chapter
  • Presents the key issues and formulas in

    Trade Review

    "On the basis of what I have seen so far, this would appear to be a book very well-suited to a first course in Mechanics of Materials (etc.). Topics are explained in an admirable degree of detail, which should make the book particularly student-friendly. The author brings a wealth of practical experience, with good examples from engineering practice."
    ––Professor Roger T. Fenner, Department of Mechanical Engineering, Imperial College London, UK

    "I like the presentation style that each part starts with a concise itemized objective statement; then the basic knowledge is presented with both figures and concise descriptions and equations; after that, examples with learning objectives are given; finally a concise summary sheet is given. The selection of topics is very good."
    ––Simon X. Yang, University of Guelph, Ontario, Canada

    "… very clear and the presentations are very easy to follow. Through the use of many examples in the specific application domains, such as automobiles, airplanes, robots, machine tools, engines, bridges, elevated guideways, and buildings, this book bridges the fundamental gap between the existing research literatures and educational texts and provides a comprehensive and authoritative introduction to the key concepts, difficulties and current developments of mechanics of materials. It will serve well both undergraduates and graduates as an outstanding text it pertains to, and in the meantime, it elegantly stands out many important research topics and issues on the modeling, analysis, simulation, design, operation, testing, and diagnosis of relevant engineering systems, which will be very helpful for engineers and researchers in these areas."
    —Peter X. Liu, Carleton University



    Table of Contents

    Mechanics of Materials. Statics: A Review. Stress. Strain. Measurement of Strain. Mechanical Properties of Materials. Stress–Strain Testing. Material Types and Behavior. Axial Loading. Stress Concentrations. Torsion in Shafts. Bending in Beams. Statically Indeterminate Members. Composite Members. Stress and Strain Transformations. Mohr’s Circle. Three-Dimensional State of Stress. Thin-Walled Pressure Vessels. Thermal Effects. Theories of Failure. Appendices. Index.

Mechanics of Materials

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    £120.00

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    Order before 4pm today for delivery by Fri 3 Jul 2026.

    A Hardback by Clarence W. de Silva

    1 in stock

      Trusted by thousands of customers. See 2,385+ Customer Reviews

      View other formats and editions of Mechanics of Materials by Clarence W. de Silva

      Publisher: Taylor & Francis Inc
      Publication Date: 23/08/2013
      ISBN13: 9781439877364, 978-1439877364
      ISBN10: 143987736X

      Description

      Book Synopsis

      A systematic presentation of theory, procedures, illustrative examples, and applications, Mechanics of Materials provides the basis for understanding structural mechanics in engineering systems such as buildings, bridges, vehicles, and machines. The book incorporates the fundamentals of the subject into analytical methods, modeling approaches, numerical methods, experimental procedures, numerical evaluation procedures, and design techniques.

      It introduces the fundamentals, and then moves on to more advanced concepts and applications. It discusses analytical methods using simple mathematics, examples and experimental techniques, and it includes a large number of worked examples and case studies that illustrate practical and real-world usage.

      • In the beginning of each chapter, states and summarizes the objectives and approaches, and lists the main topics covered in the chapter
      • Presents the key issues and formulas in

        Trade Review

        "On the basis of what I have seen so far, this would appear to be a book very well-suited to a first course in Mechanics of Materials (etc.). Topics are explained in an admirable degree of detail, which should make the book particularly student-friendly. The author brings a wealth of practical experience, with good examples from engineering practice."
        ––Professor Roger T. Fenner, Department of Mechanical Engineering, Imperial College London, UK

        "I like the presentation style that each part starts with a concise itemized objective statement; then the basic knowledge is presented with both figures and concise descriptions and equations; after that, examples with learning objectives are given; finally a concise summary sheet is given. The selection of topics is very good."
        ––Simon X. Yang, University of Guelph, Ontario, Canada

        "… very clear and the presentations are very easy to follow. Through the use of many examples in the specific application domains, such as automobiles, airplanes, robots, machine tools, engines, bridges, elevated guideways, and buildings, this book bridges the fundamental gap between the existing research literatures and educational texts and provides a comprehensive and authoritative introduction to the key concepts, difficulties and current developments of mechanics of materials. It will serve well both undergraduates and graduates as an outstanding text it pertains to, and in the meantime, it elegantly stands out many important research topics and issues on the modeling, analysis, simulation, design, operation, testing, and diagnosis of relevant engineering systems, which will be very helpful for engineers and researchers in these areas."
        —Peter X. Liu, Carleton University



        Table of Contents

        Mechanics of Materials. Statics: A Review. Stress. Strain. Measurement of Strain. Mechanical Properties of Materials. Stress–Strain Testing. Material Types and Behavior. Axial Loading. Stress Concentrations. Torsion in Shafts. Bending in Beams. Statically Indeterminate Members. Composite Members. Stress and Strain Transformations. Mohr’s Circle. Three-Dimensional State of Stress. Thin-Walled Pressure Vessels. Thermal Effects. Theories of Failure. Appendices. Index.

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