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先進制造技術專業(yè)英語閱讀

先進制造技術專業(yè)英語閱讀

定 價:¥25.00

作 者: 屈利剛
出版社: 化學工業(yè)出版社
叢編項:
標 簽: 機械基礎

ISBN: 9787502591731 出版時間: 2006-10-01 包裝: 平裝
開本: 16 頁數(shù): 221 字數(shù):  

內(nèi)容簡介

  本英文版教材全書共三章:第一章介紹了制造業(yè)中的計算機輔助生產(chǎn)與控制系統(tǒng),并對因特網(wǎng)的誕生、歷史沿革和組織結構以及WWW網(wǎng)在制造業(yè)中的作用作了初步介紹;第二章主要介紹CAD/CAM、數(shù)控制加工、柔性制造系統(tǒng)和計算機集成制造系統(tǒng);第三章是本書的重點,系統(tǒng)介紹了近年來先進制造技術的幾個主要內(nèi)容,包括敏捷制造、快速原型制造、基于環(huán)境意識的設計與制造、納米技術和微型制造以及半導體和IC芯片制造等。為了便于講授和閱讀,在每一章結束時都對一些疑難句子作了注釋,而且最后還附有全書總詞匯表和制造技術中常見的縮略語詞匯表。本教材可作為機械制造及自動化、機械電子工程、工業(yè)設計、工業(yè)工程與管理。環(huán)境化學以及IT裝備與制造等專業(yè)的高年級本科生和研究生的選修課教材,也可選作機電類專業(yè)英語閱讀教材。

作者簡介

暫缺《先進制造技術專業(yè)英語閱讀》作者簡介

圖書目錄

Chapter 1 Outline of Mechanical Design and Manufacturing 1.1 An Overview of a Manufacturing Enterprise 1.2 Design and Manufacturing: A Historical Perspective 1.2.1 Design 1.2.2 Manufacturing Vocabulary & PhraseChapter 2 Basic Mechanical Design Process Vocabulary & PhraseChapter 3 Fatigue as a Design Criterion 3.1 Mechanism of Fatigue 3.2 Fatigue Strength and Endurance Limit 3.3 Factors Affecting Fatigue Behavior 3.4 Effect of Type of Loading on Fatigue Strength 3.5 Effect of Surface Finish on Fatigue Strength 3.6 Effect of Stress Concentration on Fatigue Strength 3.7 Application of Factors to Generalized Fatigue Curve for Steel Vocabulary & PhraseChapter 4 Optimum Design 4.1 Introduction 4.2 Mathematical Programming Problem 4.3 Classification of Mathematical Programming Problems 4.4 Unconstrained Minimization 4.5 Linearly Constrained Minimization 4.6 General Nonlinear Programming Methods Vocabulary & PhraseChapter 5 Reliability Design Reliability in Static Failure Vocabulary & Phrase Chapter 6 Computer-Aided Design (CAD) 6.1 Introduction 6.2 A Brief History of CAD 6.3 The Design Process 6.4 Application of CAD 6.4.1 Geometric Modeling 6.4.2 Engineering Analysis 6.4.3 Design Review and Evaluation 6.4.4 Automated Drafting 6.5 Benefit of Computer-Aided Design 6.5.1 Productivity Improvement in Design 6.5.2 Shorter Lead Times 6.5.3 Design Analysis 6.5.4 Fewer Design Errors 6.5.5 Greater Accuracy in Design Calculations 6.5.6 Standardization of Design, Drafting, and Documentation Procedures 6.5.7 Drawings Are More Understandable 6.5.8 Improved Procedures for Engineering Changes 6.5.9 Benefits in Manufacturing 6.6 Format of Data Exchange 6.6.1 IGES 6.6.2 STEP 6.6.3 DXF Vocabulary & PhraseChapter 7 Finite Element Analysis (FEA) 7.1 A Brief History 7.2 The Basic Theory 7.3 Type of FEA 7.4 Terms of FEA 7.5 Computer Procedure of FEA in Structural Analysis 7.6 Available Commercial FEA Software Packages Vocabulary & PhraseChapter 8 Computer-Aided Manufacturing (CAM) 8. 1 Outline of CAM 8. 2 Elements of the CAM System 8.2.1 The CAM Data Base 8.2.2 Production Management 8.2.3 Manufacturing Control 8.3 Computer Aided Manufacturing System Engineering 8.3.1 Introduction 8.3.2 Vision of the Engineering Environment 8.3.3 Technical Issues 8.3.4 Current Work 8.3.5 Summary and Conclusions Vocabulary & PhraseChapter 9 Computer-Aided Process Planning (CAPP) 9.1 Introduction 9.2 Process Planning 9.3 Computer-Aided Process Planning (CAPP) 9.4 CAPP Planning Process 9.5 CAD/CAM Integration and CAPP Features 9.6 CAPP Module 9.6.1 General Context 9.6.2 Conceiving of the CAPP Module 9.6.3 The Realizations of the CAPP Module 9.7 CAPP Benefits 9.8 Summary Vocabulary & PhraseChapter 10 Numerical Control Technology 10. 1 Numerical Control 10.1.1 History of NC 10.1.2 Classification of NC System 10.1.3 Advantages and Disadvantages of NC Systems 10.2 Computer Numerical Control (CNC) 10.2.1 Benefit of CNC 10.2.2 Motion Control of CNC 10.2.3 The CNC Program 10.2.4 The Three Most Basic Motion Types 10.2.5 Methods for CNC Programming 10.3 Direct Numerical Control (DNC) 10.4 Design Considerations of NC Machine Tools 10.4.1 Accuracy of NC/CNC 10.4.2 Friction and Movement 10.4.3 Thermal Deformations Vocabulary & PhraseChapter 11 Flexible Manufacturing Systems(FMS) 11.1 Introduction 11.2 Flexible Manufacturing System Defined 11.3 Rationale for Flexible Manufacturing 11.4 Flexible Manufacturing System Components 11.4.1 Machine Tools 11.4.2 Materials Handling System 11.4.3 Control systems 11.4.4 Human Operators 11.5 Advantages and Disadvantages of FMS Implementation 11.5.1 Advantages 11.5.2 Disadvantages Vocabulary & PhraseChapter 12 Computer-Integrated Manufacturing (CIM) 12.1 Definition of CIM 12.2 Impaction on Corporate Strategy 12.3 Measures of CIM 12.4 The Hierarchy of Manufacturing 12.5 The System of CIM 12.5.1 Foundation 12.5.2 Means of Integration 12.6 Data Base Issues Vocabulary & PhraseChapter 13 Industrial Robot 13.1 Outline of Industrial Robot 13.2 Industrial Robot Types & Features 13.3 History of Industrial Robotics 13.4 Components of Industrial Robot 13.4.1 Manipulator 13.4.2 Controller 13.4.3 Power Supply 13.5 Technical Description 13.5.1 Defining Parameters 13.5.2 Robot Programming 13.6 Movement and Singularities 13.6.1 Base Travel 13.6.2 Axes Control 13.7 Application of Industrial Robot 13.8 Recent and Future Developments Vocabulary & PhraseChapter 14 Rapid Prototyping Technology 14.1 Overview of Rapid Prototyping 14.2 The Basic Process 14.3 Rapid Prototyping Techniques 14.3.1 Stereolithography 14.3.2 Laminated Object Manufacturing 14.3.3 Selective Laser Sintering 14.3.4 Fused Deposition Modeling 14.3.5 Solid Ground Curing 14.3.6 3D Ink-Jet Printing 14. 4 Applications of Rapid Prototyping 14.4.1 Prototyping 14.4.2 Rapid Tooling 14.4.3 Rapid Manufacturing 14. 5 Future Developments Vocabulary & PhraseChapter 15 New Cutting Tools 15.1 High Speed Steel and Coated High-Speed Steel 15.2 Cemented Carbides 15.3 Coated Carbides 15.4 Polycrystalline Tools 15.5 Ceramics/Cermets Vocabulary & PhraseChapter 16 Nontraditional Mechanical Processes 16.1 Water-jet Machining 16.2 Abrasive Jet Machining 16.3 Abrasive Water-jet Machining 16.4 Ultrasonic Machining 16.5 Electrochemical Machining 16.6 Electrochemical Grinding 16.7 Electrical Discharge Machining 16.8 Wire Electrical Discharge Machining 16.9 Laser Machining Vocabulary & PhraseReference

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