Engineers rely on Groover because of the book's quantitative and engineering-oriented approach that provides more equations and numerical problem exercises. The fourth edition introduces more modern topics, including new materials, processes and systems. End of chapter problems are also thoroughly revised to make the material more relevant. Several figures have been enhanced to significantly improve the quality of artwork. All of these changes will help engineers better understand the topic and how to apply it in the field.
Engineers rely on Groover because of the book's quantitative and engineering-oriented approach that provides more equations and numerical problem exercises. The fourth edition introduces more modern topics, including new materials, processes and systems. End of chapter problems are also thoroughly revised to make the material more relevant. Several figures have been enhanced to significantly improve the quality of artwork. All of these changes will help engineers better understand the topic and how to apply it in the field.
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Autorenporträt
Mikell P. Groover is Professor of Industrial and Systems Engineering at Lehigh University, Where he also serves as Director of the George E. Kane Manufacturing Technology Laboratory and faculty member in the Manufacturing Systems Engineering Program. He received his B.A. in Arts and Science (1961), B.S. in Mechanical Engineering (1962), M.S. in Industrial Engineering (1966), and Ph.D. (1969), all from Lehigh. He is a Registered Professional Engineer in Pennsylvania. His industrial experience includes several years as a manufacturing engineer with Eastman Kodak Company.
Inhaltsangabe
TABLE OF CONTENTS 1 Introduction and Overview of Manufacturing Part I Material Properties and Product Attributes 2 The Nature of Materials 3 Mechanical Properties of Materials 4 Physical Properties of Materials 5 Dimension, Surfaces, and their Measurement Part II Engineering Materials 6 Metals 7 Ceramics 8 Polymers 9 Composite Materials Part III Solidification Processes 10 Fundamentals of Metal Casting 11 Metal Casting Processes 12 Glassworking 13 Shaping Processes for Plastics 14 Rubber Processing Technology 15 Shaping Processes for Polymer Matrix Composites Part IV Particulate Processing of Metals and Ceramics 16 Powder Metallurgy 17 Processing of Ceramics and Cermets Part V Metal Forming and Sheet Metalworking 18 Fundamentals of Metal Forming 19 Bulk Deformation Processes in Metalworking 20 Sheet Metalworking Part VI Material Removal Processes 21 Theory of Metal Machining 22 Machining Operations and Machine Tools 23 Cutting-Tool Technology 24 Economic and Product Design Considerations in Machining 25 Grinding and other Abrasive Processes 26 Nontraditional Machining and Thermal Cutting Processes Part VII Property Enhancing and Surface Processing Operations 27 Heat Treatment of Metals 28 Surface Processing Operations Part VIII Joining and Assembly Processes 29 Fundamentals of Welding 30 Welding Processes 31 Brazing, Soldering, and Adhesive Bonding 32 Mechanical Assembly Part IX Special Processing and Assembly Technologies 33 Rapid Prototyping 34 Processing of Integrated Circuits 35 Electronics Assembly and Packaging 36 Microfabrication Technologies 37 Nanofabrication Technologies 38 Automation Technologies for Manufacturing Systems 39 Integrated Manufacturing Systems 40 Manufacturing Engineering 41 Production Planning and Control 42 Quality Control and Inspection Index
TABLE OF CONTENTS 1 Introduction and Overview of Manufacturing Part I Material Properties and Product Attributes 2 The Nature of Materials 3 Mechanical Properties of Materials 4 Physical Properties of Materials 5 Dimension, Surfaces, and their Measurement Part II Engineering Materials 6 Metals 7 Ceramics 8 Polymers 9 Composite Materials Part III Solidification Processes 10 Fundamentals of Metal Casting 11 Metal Casting Processes 12 Glassworking 13 Shaping Processes for Plastics 14 Rubber Processing Technology 15 Shaping Processes for Polymer Matrix Composites Part IV Particulate Processing of Metals and Ceramics 16 Powder Metallurgy 17 Processing of Ceramics and Cermets Part V Metal Forming and Sheet Metalworking 18 Fundamentals of Metal Forming 19 Bulk Deformation Processes in Metalworking 20 Sheet Metalworking Part VI Material Removal Processes 21 Theory of Metal Machining 22 Machining Operations and Machine Tools 23 Cutting-Tool Technology 24 Economic and Product Design Considerations in Machining 25 Grinding and other Abrasive Processes 26 Nontraditional Machining and Thermal Cutting Processes Part VII Property Enhancing and Surface Processing Operations 27 Heat Treatment of Metals 28 Surface Processing Operations Part VIII Joining and Assembly Processes 29 Fundamentals of Welding 30 Welding Processes 31 Brazing, Soldering, and Adhesive Bonding 32 Mechanical Assembly Part IX Special Processing and Assembly Technologies 33 Rapid Prototyping 34 Processing of Integrated Circuits 35 Electronics Assembly and Packaging 36 Microfabrication Technologies 37 Nanofabrication Technologies 38 Automation Technologies for Manufacturing Systems 39 Integrated Manufacturing Systems 40 Manufacturing Engineering 41 Production Planning and Control 42 Quality Control and Inspection Index
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