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機(jī)械工程專業(yè)英語:交流與溝通

機(jī)械工程專業(yè)英語:交流與溝通

定 價(jià):¥30.00

作 者: 康蘭 編
出版社: 機(jī)械工業(yè)出版社
叢編項(xiàng): 普通高等教育"十二五"規(guī)劃教材
標(biāo) 簽: 工學(xué) 機(jī)械類 教材 研究生/本科/??平滩?/td>

ISBN: 9787111408949 出版時(shí)間: 2013-03-01 包裝: 平裝
開本: 16開 頁數(shù): 230 字?jǐn)?shù):  

內(nèi)容簡(jiǎn)介

  《普通高等教育“十二五”規(guī)劃教材·機(jī)械工程專業(yè)英語:交流與溝通》共分五部分。第一部分在基于產(chǎn)品設(shè)計(jì)案例的基礎(chǔ)上,主要對(duì)機(jī)械工程、機(jī)械設(shè)計(jì)的全過程進(jìn)行了介紹;第二部分介紹了構(gòu)成一臺(tái)復(fù)雜機(jī)器的常用機(jī)械零件及機(jī)構(gòu),重點(diǎn)是熟悉描述組成一臺(tái)復(fù)雜機(jī)械的基本構(gòu)件及其表達(dá)方法;第三部分介紹了如何針對(duì)機(jī)械專業(yè)領(lǐng)域撰寫書面報(bào)告、展示口頭報(bào)告、制作演示文稿等的方法與技巧;第四部分詳細(xì)介紹了如何撰寫科技論文;第五部分介紹了先進(jìn)的制造技術(shù)。各章附有相關(guān)詞匯注解?! 镀胀ǜ叩冉逃笆濉币?guī)劃教材·機(jī)械工程專業(yè)英語:交流與溝通》根據(jù)教學(xué)目標(biāo)及學(xué)時(shí)的不同,可滿足不同層次的教學(xué)需求,不僅適合機(jī)械類本科學(xué)生使用,也可作為機(jī)械類研究生的教材,亦可供高職、高專等機(jī)械類專業(yè)的學(xué)生使用,《普通高等教育“十二五”規(guī)劃教材·機(jī)械工程專業(yè)英語:交流與溝通》也適合各種層次的希望提高在機(jī)械專業(yè)領(lǐng)域內(nèi)進(jìn)行跨國(guó)界交流與溝通能力的人士的需求。

作者簡(jiǎn)介

暫缺《機(jī)械工程專業(yè)英語:交流與溝通》作者簡(jiǎn)介

圖書目錄

Preface Part 1 Introduction to Mechanical Engineering Objective 1.1 Introduction 1.1.1 What Is Engineering? 1.1.2 Main Branches of Engineering 1.2 Mechanical Engineering 1.3 Common Traits of Good Engineers 1.4 What Is a Machine? 1.5 How to Describe a Machine7 1.5.1 Engineering Drawings 1.5.2 Drafting Standards 1.5.3 Views 1.5.4 Working Drawings 1.5.5 Feature-Based 3D Models 1.6 The Design Process 1.6. 1 Introduction to Design Process 1.6. 2 Problem Definition 1.6. 3 Conceptualization 1.6. 4 Preliminary Design 1.6. 5 Detailed Design 1.6. 6 Final Design Presentation 1.6. 7 Product Prototyping 1.7 Modem Machine Design Challenges 1.7. 1 Mechatronics 1.7. 2 The Impact of Digital Technology on Machine Design 1.8 Design Case Study 1.8. 1 Introduction 1.8.2 Design Motivation 1.8.3 Market Research 1.8.4 Conceptualization and Preliminary Design 1.8. 5 Detailed Design Assignments Part 2 Machine Elements and Mechanisms Objective 2. 1 Introduction 2. 2 Fastenings 2. 2. 1 Introduction 2. 2. 2 Thread Terminology 2. 2. 3 Thread Forms 2. 2. 4 Power Screws 2. 2.5 Bolts, Studs, Nuts and Washers 2. 2. 6 Alternative Screw Heads and End Points 2. 2. 7 Selection of Screwed Fasteners 2. 2. 8 Systems for Specifying the Dimensions of Screws 2. 2. 9 Applications of Screwed Fasteners 2. 3 Keys and Pins 2. 3. 1 Keys 2. 3.2 Pins 2. 4 Riveted Joints 2. 5 Welded Joints 2. 6 Springs 2. 7 Bearings 2. 7.1 Bearing Classification 2. 7.2 Bearing Type Selection 2. 8 Clutches and Brakes 2. 9 Shafts and Couplings 2. 9. 1 Introduction 2. 9. 2 Shaft-Hub Connection 2. 9. 3 Shaft-Shaft Connection--Couplings 2. 10 Belts and Chains 2. 10. 1 Introduction 2. 10. 2 Belt Drives 2. 10. 3 Chain Drives 2. 11 Gears 2. 11.1 Introduction 2. 11.2 Gear Classification 2. 11.3 Gear Chains Application Assignments Part 3 Communication Skills in Mechanical Engineering Objective 3.1 Background of Cross-Cultural Communication 3.2 Cross-Cultural Communication for Mechanical Engineers 3.2.1 Challenges for Mechanical Engineers 3.2.2 Challenges for Students 3.2.3 Technical Communication Skills for Mechanical Engineers 3.3 Problem Finding 3.4 Written Technical Reports 3.4.1 Lab Reports 3.4.2 Project Reports 3.5 Oral Reports 3.6 Slide Presentation of Technical Material 3.7 Case Study 3.7.1 Comprehensive Training 3.7.2 A Case Study of Slide Presentations Assignments Part 4 How to Write a Scientific Paper Objective 4. 1 Introduction 4. 2 What Is a Scientific Paper? 4. 3 Why Write Scientific Papers? 4. 4 The General Structure of a Scientific Paper 4. 4. 1 General Style 4. 4. 2 Before Writing a First Draft 4. 4. 3 Section Headings and Subheadings 4. 5 Title, Authors' Names, and Institutional Affiliations 4. 5.1 Title 4. 5.2 Authorship 4. 5.3 Format of Chinese names 4. 6 Abstract 4. 7 Keywords 4. 8 Introduction Section 4. 9 Methods and Materials Section 4. 10 Results Section 4. 11 Discussion Section 4. 12 Acknowledgments 4. 13 Literature Cited or References 4. 14 Appendices 4. 15 Figures, Tables and Equations 4. 16 Case Study Assignments Part 5 Advanced Manufacturing Technology Objective 5.1 Introduction 5.2 Advanced Manufacturing Systems 5.2.1 Flexible Manufacturing System 5.2.2 Virtual Manufacturing System 5.2.3 Computer-Integrated Manufacturing System 5.2.4 Reconfigurable Manufacturing System 5.2.5 Grid Manufacturing 5.3 Advanced Manufacturing Process 5.3.1 New Forging Techniques 5.3.2 Rapid Prototyping Manufacturing 5.3.3 High Energy Density Beam Processing Technology 5.3.4 Electrochemical Machining 5.3.5 Dry Machining 5.4 Advanced Manufacturing Management 5.4. 1 Manufacturing Resource Planning 5.4. 2 Supply Chain Management 5.4. 3 Lean Production 5.4. 4 Agile Manufacturing 5.4. 5 Concurrent Engineering 5.4. 6 Just-In-Time Assignments References

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