职称:教授
单位:浙大宁波理工学院
部门:机电与能源工程学院
主讲教师:王义强
教师团队:共1位
| 学校: | 浙大宁波理工学院 |
| 开课院系: | 机械设计制造及其自动化 |
| 专业大类: | 机械设计制造及其自动化 |
| 开课专业: | 机械设计制造及其自动化 |
| 课程英文名称: | Technical English for Mechanical Engineering |
| 学分: | 2 |
| 课时: | 32 |
该课程从机械设计制造及自动化专业的要求出发,以机、电、液相结合的整体原则组织教学与讲授,内容包括力学、机械零件与机构、机械设计、汽车构造和工作性能、机械加工及成型技术、自动化技术及现代制造技术。
| 课程章节 | | 文件类型 | | 修改时间 | | 大小 | | 备注 | |
| 1.1 Lesson 1: Stress and strain |
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2021-12-06 | 381.00MB | ||
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| 1.2 1. What is Strain? |
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| 1.3 2. What is Stress? |
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| 1.4 3. Units |
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| 1.5 4. The link from Load to Strain |
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| 1.6 5. The link between Stress and Strain |
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| 1.9 8. Text |
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| 2.1 Lesson 3: Shaft design |
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2020-03-16 | 274.14MB | ||
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| 2.2 Shafts and axles |
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| 2.2.1 General considerations |
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| 2.2.2 Types |
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| 2.2.3 The main design problems 轴设计主要问题 |
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| 2.2.4 Vibration stability calculations |
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| 2.2.5 Rigidity calculations |
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| 2.2.6 Rigidity calculations |
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| 2.2.7 Selection of the shaft materials |
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| 2.2.8 Selection of the shaft materials |
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| 2.2.9 Selection of the shaft materials |
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| 2.2.10 Selection of the shaft materials |
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| 2.2.11 Selection of the shaft materials |
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| 2.2.12 Structural design |
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| 2.2.13 Structural design |
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| 2.2.14 Tentative calculations |
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| 2.2.15 Tentative calculations |
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| 2.2.16 Influencing factors on structural design |
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| 2.2.17 Influencing factors on structural design |
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| 2.2.18 Influencing factors on structural design |
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| 2.2.19 Influencing factors on structural design |
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| 2.2.20 Influencing factors on structural design |
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| 2.2.21 Strength check for the shafts |
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| 2.2.22 Strength check for the shafts |
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| 2.2.23 Strength check for the shafts |
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| 2.2.24 Strength check for the shafts |
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| 2.2.25 Strength check for the shafts |
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| 2.2.26 Strength check for the shafts |
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| 2.2.27 Strength check for the shafts |
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| 2.2.28 Strength check for the shafts |
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| 2.2.29 Strength check for the shafts |
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| 2.2.30 Strength check for the shafts |
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| 2.5 3 Text |
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| 3.1 Lesson 6:The layout and main parts of automibile |
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2020-03-16 | 169.28MB | ||
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| 3.2.1 1)How many kinds of automobile you can say in English? |
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| 3.2.2 1)How many kinds of automobile you can say in English? |
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| 3.2.3 1)How many kinds of automobile you can say in English? |
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| 3.2.4 1)How many kinds of automobile you can say in English? |
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| 3.2.5 1)How many kinds of automobile you can say in English? |
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| 3.2.6 1)How many kinds of automobile you can say in English? |
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| 3.2.7 1)How many kinds of automobile you can say in English? |
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| 3.2.8 1)How many kinds of automobile you can say in English? |
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| 3.2.9 1)How many kinds of automobile you can say in English? |
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| 3.2.10 1)How many kinds of automobile you can say in English? |
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| 3.2.11 1)How many kinds of automobile you can say in English? |
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| 3.3 2)What’s the main parts of an automobile? |
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| 3.3.1 2)What’s the main parts of an automobile? |
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| 3.3.2 2)What’s the main parts of an automobile? |
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| 3.3.3 2)What’s the main parts of an automobile? |
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| 3.3.4 2)What’s the main parts of an automobile? |
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| 3.3.5 2)What’s the main parts of an automobile? |
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| 3.4 automobile:review |
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| 3.4.1 automobile:review |
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| 3.4.2 automobile:review |
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| 3.4.3 automobile:review |
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| 3.4.4 automobile:review |
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| 3.4.5 automobile:review |
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| 3.4.6 automobile:review |
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| 3.4.7 automobile:review |
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| 3.4.8 automobile:review |
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| 3.4.9 automobile:review |
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| 3.4.10 automobile:review |
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| 3.5 Vocabulary, Phrases and Expression |
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| 3.6 Text |
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| 4.1 Introduction to Casting |
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2021-03-14 | 138.82MB | ||
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| 4.1.1 Primary forming process (casting) |
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| 4.1.2 Casting |
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| 4.1.3 Classification of casting process |
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| 4.1.4 Sand casting |
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| 4.1.4.1 The major features of sand moulds |
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| 4.1.4.2 Sequence of operations for sand casting |
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| 4.1.5 Investment casting |
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| 4.1.5.1 Investment casting |
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| 4.1.5.2 Sequences involve in investment casting |
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| 4.1.6 Die casting |
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| 4.1.6.1 Die casting |
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| 4.1.6.2 Hot chamber die casting |
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| 4.1.6.2.1 Hot chamber die casting |
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| 4.1.6.3 Cold chamber die casting |
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| 4.1.6.3.1 Cold chamber die casting |
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| 4.1.7 Adv/disadv of different casting process |
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| 4.1.8 Casting defects(缺陷) |
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| 4.1.8.1 Casting defects – fins飞边 |
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| 4.1.8.2 Casting defects - swells |
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| 4.1.8.3 Casting defects – scabs 结疤 |
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| 4.1.8.4 Casting defects- blowholes/pinholes气孔 |
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| 4.1.8.5 Casting defects- shrinkage |
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| 4.1.8.6 Casting defects- shrinkage cavities |
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| 4.1.8.7 Casting defects- porosity孔隙度 |
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| 4.1.8.8 Casting defects- lack of fusion未熔合 |
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| 4.1.8.9 Casting defects- hot tear, hot crack热撕裂 |
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| 4.1.8.10 Casting defects- discontinuities |
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| 4.1.8.11 Casting defects- hot crack |
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| 4.1.8.12 Casting defects- defective surfaces |
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| 4.1.8.13 Casting defects- inclusions夹杂物 |
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| 4.1.9 Casting design guidelines |
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| 4.1.9.1 Casting design guidelines |
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| 4.1.9.2 Casting design guidelines |
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| 4.1.9.3 Casting design guidelines |
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| 4.1.9.4 Casting design guidelines |
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| 4.1.10 References |
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| 4.4 Text |
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| 5.1 Lesson 8:Forging |
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| 5.2 Vocabulary |
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| 5.3 Phrases and Expression |
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| 5.4 Basic Introduction |
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| 5.4.1 Basic Introduction |
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| 5.4.2 Basic Introduction |
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| 5.4.3 Basic Introduction |
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| 5.4.4 Basic Introduction |
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| 5.4.5 Basic Introduction |
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| 5.4.6 Basic Introduction |
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| 5.4.7 Basic Introduction |
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| 5.4.8 Basic Introduction |
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| 5.4.9 Basic Introduction |
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| 5.4.10 Basic Introduction |
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| 5.4.11 Basic Introduction |
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| 5.5 Text |
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| 6.1 Lesson 12:limits, fits and tolerances |
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| 6.2.1 Part One:Tolerances and Fits |
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| 6.2.2 introduction |
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| 6.2.2.1 introduction |
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| 6.2.3 Tolerances |
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| 6.2.3.1 Tolerances |
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| 6.2.3.2 Tolerances |
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| 6.2.3.3 Tolerances |
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| 6.2.3.4 Tolerances |
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| 6.2.4 Fits |
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| 6.2.4.1 Fits |
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| 6.2.4.2 Fits |
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| 6.2.4.3 Clearance fit |
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| 6.2.4.4 Interference fit |
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| 6.2.4.5 Transition fit |
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| 6.2.5 ISO System of Limits and Fits |
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| 6.2.5.1 ISO System of Limits and Fits |
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| 6.2.5.2 ISO System of Limits and Fits |
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| 6.2.5.3 ISO System of Limits and Fits |
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| 6.2.5.4 ISO System of Limits and Fits |
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| 6.2.5.5 ISO System of Limits and Fits |
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| 6.2.5.6 ISO System of Limits and Fits |
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| 6.2.5.7 ISO System of Limits and Fits |
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| 6.2.5.8 ISO System of Limits and Fits |
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| 6.2.5.9 ISO System of Limits and Fits |
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| 6.2.5.10 ISO System of Limits and Fits |
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| 6.2.5.11 ISO System of Limits and Fits |
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| 6.2.5.12 ISO System of Limits and Fits |
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| 6.2.5.13 ISO System of Limits and Fits |
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| 6.2.5.14 ISO System of Limits and Fits |
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| 6.2.5.15 ISO System of Limits and Fits |
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| 6.2.5.16 ISO System of Limits and Fits |
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| 6.2.5.17 ISO System of Limits and Fits |
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| 6.2.5.18 ISO System of Limits and Fits |
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| 6.5 Text |
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| 7.1 Lesson 13:Hydraulic and Pneumatic System |
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| 7.2 Hydraulic Systems-The Basics |
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| 7.2.1 How does it work? |
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| 7.2.2 System Parts |
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| 7.2.3 Advantages & Disadvantages of Hydraulics |
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| 7.2.4 Primary Hydraulic Systems |
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| 8.1 Cutting tool Basics |
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| 9.1 Lathe |
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| 9.1.1 Lathe Operations |
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| 9.1.10 Lathe Centers |
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| 9.1.14.1 Types of Lathe Dogs |
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| 9.1.20 Threading Toolholder |
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| 9.4 Text |
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| 10.1 Lesson 16:Milling |
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2021-03-14 | 86.99MB | ||
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| 10.2.2.2 Variety of Operations |
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| 10.2.2.5 Direction of Feed: Conventional |
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| 10.2.3 End Mills |
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| 10.2.3.6 Three common types and the relationship of the radius to the tool diameter. |
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| 10.2.3.10 Direction of Cut |
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| 10.2.4 Horizontal Milling Machines and Accessories |
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| 10.2.4.2 Plain Manufacturing Type Milling Machine |
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| 10.2.4.3 Universal HorizontalMilling Machine |
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| 10.2.4.4 Cross section of a Cincinnati Machine Backlash Eliminator |
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| 10.2.4.5 Arbors, Collets, and Adapters |
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| 10.2.4.7 FixturingSystems |
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| 10.2.5 Milling Cutters |
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| 10.2.5.1 Plain Milling Cutters |
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| 10.2.5.2 Light-Duty Plain Milling Cutter |
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| 10.2.5.3 Heavy-Duty Plain Milling Cutters |
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| 10.2.5.4 High-Helix Plain Milling Cutters |
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| 10.2.5.5 Standard Shank-Type Helical Milling Cutters |
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| 10.2.5.6 Side Milling Cutters |
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| 10.2.5.9 Shell End Mills |
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| 10.2.5.10 Angular Cutters |
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| 10.2.5.11 Types of Formed Cutters |
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| 10.2.5.12 Metal-Slitting Saws |
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| 10.2.5.13 T-Slot Cutter |
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| 10.2.5.14 Dovetail Cutter |
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| 10.2.5.15 Woodruff Keyseat Cutter |
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| 10.2.6 Index Head Parts |
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| 10.5 Text |
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| 11.1 Lesson 17:Grinding |
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| 11.2.5 Abrasive Grain Size |
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| 11.2.9 The Tool: Grinding Wheels |
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| 11.2.15 Grinding Machines |
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| 12.1 Lesson 20:Numerical Control |
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| 12.2.1 History of CNC |
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| 12.2.4 Conventional milling machines |
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| 12.2.5 NC machines |
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| 12.2.11 Components of Servo-motor controlled CNC |
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| 12.2.12 Motion Control and feedback |
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| 12.2.13 Example 1 |
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| 12.2.14 Example 2 |
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| 12.2.15 Manual NC programming |
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| 12.2.16 History of CNC |
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| 12.2.17 Manual Part Programming Example |
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| 12.2.18 1. Set up the programming parameters |
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| 12.2.21 4. Cut profile from p1 to p2 |
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| 12.2.22 5. Cut profile from p2 to p3 |
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| 12.2.23 6. Cut along circle from p3 to p4 |
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| 12.2.24 7. Cut from p4 to p5 |
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| 12.2.25 8. Cut from p5 to p1 |
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| 12.2.26 9. Return to home position, stop program |
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| 12.2.27 Automatic Part Programming |
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| 12.2.28 Automatic part programming and DNC |
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| 12.2.29 Summary |
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| 12.5 Text |
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| 13.1 Lesson 21:Robot |
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| 13.1.1 Robotics |
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| 13.1.7 Sensory |
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| 14.1 Lesson 22 Computer Aided Manufacturing |
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| 14.2 CAD/CAM |
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| 14.2.2 The Product Cycle and CAD/CAM |
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| 14.2.6 Implementation of a Typical CAM Process on a CAD/CAM system |
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| 14.2.7 CAM Tools Required to Support the Design Process |
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| 14.2.8 Definitions of CAD Tools Based on Their Constituents |
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| 14.2.9 Definition of CAD Tools Based on Their Implementation in a Design Environment |
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| 14.2.10 Definitions of CAM Tools Based on Their Constituents |
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| 14.2.11 Definition of CAM Tools Based on Their Implementation in a Manufacturing Environment |
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| 14.2.12 Definitions of CAD/CAM Tools Based on Their Constituents |
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| 14.2.13 Definition of CAD/CAM Tools Based on Their Implementation in an Engineering Environment |
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| 14.2.14 Typical Utilization of CAD/CAM Systems in an Industrial Environment |
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| 14.2.15 Advantages of CAD/CAM systems |
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| 14.5 Text |
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| 15.1 Lesson 23:FMS Definition and Description |
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| 15.2.5 Automated Material Handling |
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| 15.2.6 Components of Flexible Manufacturing Systems |
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| 15.2.7 Flexible Automation |
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| 15.2.8.2 Common Uses of Robots |
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| 15.2.11 Flexible Manufacturing |
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| 15.2.12 Flexible Manufacturing |
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| 15.2.13 Integration of FMS |
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| 15.2.15 A Real World Example |
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| 15.5 Text |
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