《自动化、生产系统与计算机集成制造(第3版)》是《工业工程系列》中的一册,对第2版的内容进行了以下修订:扩展了传感器和执行元件的范围;对数控技术部分的有关内容进行了顺序调整;第25章“生产计划与控制”增加了企业资源规划的有关内容;扩展了精益生产的范围;更新了全书的习题。
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书名 | 自动化生产系统与计算机集成制造(第3版影印版国外大学优秀教材)/工业工程系列 |
分类 | |
作者 | (美)格鲁沃 |
出版社 | 清华大学出版社 |
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简介 | 编辑推荐 《自动化、生产系统与计算机集成制造(第3版)》是《工业工程系列》中的一册,对第2版的内容进行了以下修订:扩展了传感器和执行元件的范围;对数控技术部分的有关内容进行了顺序调整;第25章“生产计划与控制”增加了企业资源规划的有关内容;扩展了精益生产的范围;更新了全书的习题。 内容推荐 《自动化、生产系统与计算机集成制造(第3版)》对第2版的内容进行了以下修订:扩展了传感器和执行元件的范围;对数控技术部分的有关内容进行了顺序调整;第25章“生产计划与控制”增加了企业资源规划(ERP)的有关内容;扩展了精益生产的范围;更新了全书的习题。 《自动化、生产系统与计算机集成制造(第3版)》适合从事相关研究工作的人员参考阅读。 目录 Chapter 1 INTRoDUCTION 1.1 Production Systems 1.2 Automation in Production Systems 1.3 Manua1Labor in Production Systems 1.4 Automation Principles and Strategies 1.5 Organization of this Book PART Ⅰ:OVERVIEW OF MANUFACTURING Chapter 2 MANUFACTURING OPERATIONS 2.1 Manufacturing Industries and Products 2.2 Manufacturing Operations 2.3 Production Facilities 2.4 Product/PrOduction Relationships 2.5 Lean Production Chapter 3 MANUFACTURING MoDELS AND METRICS 3.1 Mathematica1Models of Production Performance 3.2 Manufacturing Costs APPENDIX Averaging Procedures for Production Models PART Ⅱ:AUTOMATION AND CONTRO1TECHNOLOGIES Chapter 4 INTRODUCTION TO AUTOMARION 4.1 Basic Elements of an Automated System 4.2 Advanced Automation Functions 4.3 Levels of Automation Chapter 5 INDUSTRIA1CONTRO1SYSTEMS 5.1 Process Industries Versus Discrete Manufacturing Industries 5.2 Continuous VerSUS Discrete Control 5.3 Computer Process Control Chapter 6 HARDWARE COMPONENTS FOR AUTOMATLON AND PROCESS CONTROL 6.1 Sensors 6.2 Actuators 6.3 Analog—to—Digita1Convertcrs 6.4 Digital—to—Analog Convertcrs 6.5 Input/Output Devices for Discrete Data Chapter 7 NUMERICA1CONTROL 7.1 Fundamentals of NC Technologv 7.2 Computer Nunlerica1Contro1 7.3 Distributed Numerica1Control 7.4 Applications of NC 7.5 Engineering Analysis of NC Positioning Systems 7.6 NC Part Programming Appendix A 7:Coding for Manua1Part Programming Appendix B 7:Part Programming with Apt Chapter 8 LNDUSTRIAT ROBOTLCS 8.1 Robot Anatomv and Related Attributes 8.2 Robot Contro1Systems 8.3 End Effectors 8.4 Sensors in Robotics 8.5 Industria1Robot Applications 8.6 Robot Programming 8.7 Robot Accoracy and Rcpeatabilitv Chapter 9 DISCRETE CONTRO1USING PROGRAMMABLE LoGIC CONTROLLERS AND PERSONA1COMPUTERS 9.1 Discrete Process Con trol 9.2 Ladder Logic Diagams 9.3 Programmable Logic Controllers 9,4 PersonaI Computers Using Soft Logic PARTⅢ:MATERIA1HANDUNG AND LDENTIFICATLON TECHNOLOGIES Chapter 10 MATERIA1TRANSPoRT SYSTEMS 10.1Introduction to Materia1Handling 10.2 Materia1Transport Equipment 10.3 Analysis of Materia1Transport Systems Chapter 11 SToRAGE SYsTEMS 11.1 Storage System Performance and Location Strategies 11.2 Conventiona1Storage Methods and Equipment 11.3 Automated Storage Systems 11.4 Engineering Analysis of Storage Systems Chapter 12 AUTOMATIC lDENTIFICATloN AND DATA CAPTURE 12.1 Overview of Automatic IdentificatiOn Methods 12.2 Bar Code Technology 12.3 Radio Frequency Identification 12.4 Other AIDC Technologies PART Ⅳ:MANUFACTURING SYSTEMS Chapter 13 LNTRODUCTION TO MANUFACTURING SYSTEMS 13.1 Components of a Manufacturing System 13.2 A Classification Scheme for Manufacturing Systems 13.3 Overview of the Classification Scheme Chapter 14 SINGLE—SIATIoN MANUFACTURING CELLS 14.1 Single—Station Manned Cells 14.2 Single—Station Automated Cells 14.3 Applications of Single—Station Cells 14.4 Analysis of Single—Station Systems Chapter 15 MANUA1ASSEMBLY LINES 15.1 Fundamentals Of Manua1Assemblv Lines 15.2 Analysis of Single Mode1Assembly Lines 15.3 Line Balancing Algorithms 15.4 Mixed Mode1Assembly Lines 15.5 Workstation ConsideratiOns 15.6 Other Considerations in Assembly Line Design 15.7 Alternative Assembly Systems Chapter 16 AUTOMATED PRODUCTION LINES 16.1 Fundamentals of Automated Production Lines 16.2 Applications of Automated Production Lines 16.3 Analysis of Transfer Lines Chapter 17 AUTOMATED ASSEMBLY SYSTEMS 17.1 Fundamentals Of Automated Assembly Systems 17.2 Ouantitativc Analvsis of Assembly Systems Chapter 18 CELLULAR MANUFACTURING 18.1 Part hmilies 18.2 Parts Classification and Coding 18.3 Production F10w Analvsis 18.4 Cellular Manufacturmg 18.5 Applications of Group Technology 18.6 Quantitative Analysis in Cellular Manufacturing Chapter 19 FLEXIBLE MANUFACTURING SYSTEMS 19.1 What is a Flexible Manufacturing System? 19.2 FMS Components 19.3 FMS Applications and Benefits 19.4 FMS Planning and Implementation Issues 19.5 Quantitative Analysis of Flexible Manufacturing Systems PART Ⅴ:QUALITY CONTRO1IN MANUFACTURING SYSTEMS Chapter 20 QUALITY PROGRAMS FOR MANUFACTURlNG 20.1 Quality in Design and Manufacturing 20.2 Traditiona1and Modern Quality Control 20.3 Process Variability and Process Capability 20.4 Statistica1Process Control 20.5 Six Sigma 20.6 The Six Sigma DMAIC Procedure 20.7 Taguchi Methods in Ouality Engineering 20.8 ISO 9000 Chapter 21 INSPECTIoN PRINCIPLES AND PRACTICES 21.1 Inspection Fundamentals 21.2 Sampling VS.100%Inspection 21.3 Automated Inspection 21.4 When and Where to Inspect 21.5 Quantitative Analysis of Inspection Chapter 22 INSPECTION TECHNOLOGIES 22.1 Inspection Metrology 22.2 Contact VS.Noncontact Inspection Techniques 22.3 Conventiona1Measuring and Gaging Techniques 22.4 Coordinate Measuring Machines 22.5 Surface Measurement 22.6 Machine Vision 22.7 Other Optica1Inspection Methods 22.8 Noncontact Nonoptica1Inspection Techniques PART Ⅵ:MANUFACTURING SUPPORT SYSTEMS Chapter 23 PRODUCT DESIGN AND CAD/CAM IN THE PRODUCTION SYSTEM 23.1 Product Design and CAD 23.2 CAD System Hardware 23.3 CAM,CAD/CAM,and CIM 23.4 Quality Function Deployment Chapter 24 PROCESS PLANNLNG AND CONCURRENT ENGINEERING 24.1 Process Planning 24.2 Computer-Aided Process Planning 24.3 Concurrent Engineering and Design for Manufacturing 24.4 Advanced Manufacturing Planning Chapter 25 PRODUC-TLON PLANNING AND CONTRO1SYSTEMS 25.1 Aggregate Production Planning and the Master Production Schedule 25.2 Materia1Requirements Planning 25.3 Capacity Planning 25.4 Shop Floor Control 25.5 Inventory Control 25.6 Extensions of MRP Chapter 26 JUST-IN-TIME AND LEAN PRoDUCTloN 26.1 Lean Production and Waste in Manufacturing 26.2 Just-in-Time Production Systems 26.3 Autonomation 26.4 Worker Involvement Index |
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