Description

Book Synopsis

Robert L. Mott is professor emeritus of engineering technology at the University of Dayton. He is a member of ASEE, SME, and ASME. He is a Fellow of ASEE and a recipient of the ASEE James H. McGraw Award and the Archie Higdon Distinguished Educator Award from the Mechanics Division. He is a recipient of the SME Education Award. He holds the Bachelor of Mechanical Engineering degree from General Motors Institute (Now Kettering University) and the Master of Science in Mechanical Engineering from Purdue University. He has authored three textbooks; Applied Fluid Mechanics, 7th Edition (2015) and Machine Elements in Mechanical Design, 6th Edition(2018), published by Pearson/Prentice-Hall; and Applied Strength of Materials, 6th Edition (2017) published by CRC Press. His work experience includes serving as a research engineer for General Motors Corporation, consulting for industrial clients, working for the Universi

Table of Contents

  • Part 1 Principles of Design and Stress Analysis
  • 1 The Nature of Mechanical Design
  • 2 Materials in Mechanical Design
  • 3 Stress and Deformation Analysis
  • 4 Combined Stresses
  • 5 Design for Different Types of Loading
  • 6 Columns
  • Part 2 Design of a Mechanical Drive
  • 7 Belt Drives and Chain Drives
  • 8 Kinematics of Gears
  • 9 Spur Gear Design
  • 10 Helical Gears, Bevel Gears, and Wormgearing
  • 11 Keys, Couplings, and Seals
  • 12 Shaft Design
  • 13 Tolerances and Fits
  • 14 Rolling Contact Bearings
  • 15 Completion of the Design of a Power Transmission
  • Part 3 Design Details and Other Machine Elements
  • 16 Plain Surface Bearings
  • 17 Linear Motion Elements
  • 18 Springs
  • 19 Fasteners
  • 20 Machine Frames, Bolted Connections, and Welded Joints
  • 21 Electric Motors and Controls
  • 22 Motion Control: Clutches and Brakes
  • 23 Design Projects
  • List of Appendices
  • Appendix 1 Properties of Areas
  • Appendix 2 Preferred Basic Sizes and Screw Threads
  • Appendix 3 Design Properties of Carbon and Alloy Steels
  • Appendix 4 Properties of Heat-Treated Steels
  • Appendix 5 Properties of Carburized Steels
  • Appendix 6 Properties of Stainless Steels
  • Appendix 7 Properties of Structural Steels
  • Appendix 8 Design Properties of Cast Iron–U.S. Units Basis
  • Appendix 8A Design Properties of Cast Iron–SI Units Basis
  • Appendix 9 Typical Properties of Aluminum
  • Appendix 10-1 Properties of Die-Cast Zinc Alloys
  • Appendix 10-2 Properties of Die-Cast Magnesium Alloys
  • Appendix 11-1 Properties of Nickel-Based Alloys
  • Appendix 11-2 Properties of Titanium Alloys
  • Appendix 12 Properties of Bronzes, Brasses, and Other Copper Alloys
  • Appendix 13 Typical Properties of Selected Plastics
  • Appendix 14 Beam-Deflection Formulas
  • Appendix 15 Commercially Available Shapes Used for Load-Carrying Members
  • Appendix 16 Conversion Factors
  • Appendix 17 Hardness Conversion Table
  • Appendix 18 Stress Concentration Factors
  • Appendix 19 Geometry Factor, I, for Pitting for Spur Gear

Machine Elements in Mechanical Design

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A Hardback by Robert Mott, Edward Vavrek, Jyhwen Wang

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    View other formats and editions of Machine Elements in Mechanical Design by Robert Mott

    Publisher: Pearson Education (US)
    Publication Date: 19/05/2017
    ISBN13: 9780134441184, 978-0134441184
    ISBN10: 0134441184

    Description

    Book Synopsis

    Robert L. Mott is professor emeritus of engineering technology at the University of Dayton. He is a member of ASEE, SME, and ASME. He is a Fellow of ASEE and a recipient of the ASEE James H. McGraw Award and the Archie Higdon Distinguished Educator Award from the Mechanics Division. He is a recipient of the SME Education Award. He holds the Bachelor of Mechanical Engineering degree from General Motors Institute (Now Kettering University) and the Master of Science in Mechanical Engineering from Purdue University. He has authored three textbooks; Applied Fluid Mechanics, 7th Edition (2015) and Machine Elements in Mechanical Design, 6th Edition(2018), published by Pearson/Prentice-Hall; and Applied Strength of Materials, 6th Edition (2017) published by CRC Press. His work experience includes serving as a research engineer for General Motors Corporation, consulting for industrial clients, working for the Universi

    Table of Contents

    • Part 1 Principles of Design and Stress Analysis
    • 1 The Nature of Mechanical Design
    • 2 Materials in Mechanical Design
    • 3 Stress and Deformation Analysis
    • 4 Combined Stresses
    • 5 Design for Different Types of Loading
    • 6 Columns
    • Part 2 Design of a Mechanical Drive
    • 7 Belt Drives and Chain Drives
    • 8 Kinematics of Gears
    • 9 Spur Gear Design
    • 10 Helical Gears, Bevel Gears, and Wormgearing
    • 11 Keys, Couplings, and Seals
    • 12 Shaft Design
    • 13 Tolerances and Fits
    • 14 Rolling Contact Bearings
    • 15 Completion of the Design of a Power Transmission
    • Part 3 Design Details and Other Machine Elements
    • 16 Plain Surface Bearings
    • 17 Linear Motion Elements
    • 18 Springs
    • 19 Fasteners
    • 20 Machine Frames, Bolted Connections, and Welded Joints
    • 21 Electric Motors and Controls
    • 22 Motion Control: Clutches and Brakes
    • 23 Design Projects
    • List of Appendices
    • Appendix 1 Properties of Areas
    • Appendix 2 Preferred Basic Sizes and Screw Threads
    • Appendix 3 Design Properties of Carbon and Alloy Steels
    • Appendix 4 Properties of Heat-Treated Steels
    • Appendix 5 Properties of Carburized Steels
    • Appendix 6 Properties of Stainless Steels
    • Appendix 7 Properties of Structural Steels
    • Appendix 8 Design Properties of Cast Iron–U.S. Units Basis
    • Appendix 8A Design Properties of Cast Iron–SI Units Basis
    • Appendix 9 Typical Properties of Aluminum
    • Appendix 10-1 Properties of Die-Cast Zinc Alloys
    • Appendix 10-2 Properties of Die-Cast Magnesium Alloys
    • Appendix 11-1 Properties of Nickel-Based Alloys
    • Appendix 11-2 Properties of Titanium Alloys
    • Appendix 12 Properties of Bronzes, Brasses, and Other Copper Alloys
    • Appendix 13 Typical Properties of Selected Plastics
    • Appendix 14 Beam-Deflection Formulas
    • Appendix 15 Commercially Available Shapes Used for Load-Carrying Members
    • Appendix 16 Conversion Factors
    • Appendix 17 Hardness Conversion Table
    • Appendix 18 Stress Concentration Factors
    • Appendix 19 Geometry Factor, I, for Pitting for Spur Gear

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