Design of Machinery
陈应航
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1 Introduction引言
1.1 Research object and content of this book本书研究的对象和内容
1.2 The purpose of studying mechanical principle course学习机械原理课程的目的
1.3 How to study the course of mechanical principle如何进行机械原理课程的学习
1.4 A brief introduction to the development of mechanical principles机械原理学科发展现状简介
2 Structure analysis of mechanism机构的结构分析
2.1 Content and purpose of mechanism structure analysis机构结构分析的内容及目的
2.2 Organization composition and classification机构的组成及分类
2.3 Kinematic diagram of mechanism机构的运动简图
2.4 The mechanism has the condition of definite motion and the law of minimum resistance机构具有确定运动的条件及最小阻力定律
2.5 Calculation of freedom degree of mechanism机构自由度的计算
2.6 Points for attention when calculating the freedom of planar mechanism计算平面机构自由度时应注意的事项
2.7 Composition principle, structure classification and structure analysis of plane mechanism平面机构的组成原理、结构分类及结构分析
3 Kinematic analysis of planar mechanism平面机构的运动分析
3.1 Task, purpose and method of mechanism motion analysis机构运动分析的任务、目的和方法
3.2 Kinematic analysis of mechanism by graphic method用图解法作机构的运动分析
4 Force analysis of planar mechanism平面机构的力分析
4.1 Task, purpose and method of institutional force analysis机构力分析的任务、目的和方法
4.2 Determination of inertia force of components构件惯性力的确定
4.3 Determination of friction force in moving pair运动副中摩擦力的确定
4.4 Force analysis of mechanism considering friction考虑摩擦时机构的受力分析
5 Mechanical efficiency and self-locking机械的效率和自锁
5.1 Mechanical efficiency机械的效率
5.2 Mechanical self-locking机械的自锁
6 Mechanical balance机械的平衡
6.1 Purpose and content of mechanical balance机械平衡的目的及内容
6.2 Balance calculation of rigid rotor刚性转子的平衡计算
7 Operation of machinery and adjustment of its speed fluctuation机械的运转及其速度波动的调节
7.1 Summary概述
7.2 Equation of motion of machinery机械的运动方程式
8 Connecting rod mechanism and its design连杆机构及其设计
8.1 Connecting rod mechanism and its transmission characteristics连杆机构及其传动特点
8.2 Type and application of plane four-bar mechanism平面四杆机构的类型及应用
8.3 Basic knowledge of planar four-bar mechanism平面四杆机构的基本知识
8.4 Design of plane four-bar mechanism平面四杆机构的设计
9 Cam mechanism and its design凸轮机构及其设计
9.1 Application and classification of cam mechanism凸轮机构的应用及其分类
9.2 The motion law of push rod推杆的运动规律
9.3 Design of cam profile凸轮轮廓曲线的设计
9.4 Determination of basic dimensions of cam mechanism凸轮机构基本尺寸的确定
10 Gear mechanism and its design齿轮机构及其设计
10.1 Characteristics and types of gear mechanism齿轮机构的特点及类型
10.2 Profile curve of gear齿轮的轮廓曲线
10.3 Involute standard gear and its meshing characteristics渐开线标准齿轮及其啮合特点
10.4 Basic parameters and geometric dimensions of involute standard gears渐开线标准齿轮的基本参数和几何尺寸
10.5 Meshing transmission of involute spur gear渐开线直齿圆柱齿轮的啮合传动
10.6 Cutting principle and undercut phenomenon of involute profile渐开线齿廓的切齿原理与根切现象
10.7 Introduction of involute modified gear渐开线变位齿轮简介
10.8 Helical cylindrical gear drive斜齿圆柱齿轮传动
11 Gear system and its design齿轮系及其设计
11.1 Gear train and its classification齿轮系及其分类
11.2 Transmission ratio of fixed axle gear train定轴轮系的传动比
11.3 Transmission ratio of epicyclic gear train周转轮系的传动比
11.4 Transmission ratio of compound gear train复合轮系的传动比
11.5 Determination of the number of teeth in planetary gear system行星轮系中各轮齿数的确定
12 Other common institutions其他常用机构
12.1 crank shaft ratchet棘轮机构
12.2 Grooved wheel mechanism槽轮机构
12.3 Cam-type index mechanism凸轮式间歇运动机构
12.4 Incomplete gear mechanism不完全齿轮机构
12.5 Screw mechanism螺旋机构
12.6 Combined mechanism组合机构
Profile curve of gear齿轮的轮廓曲线
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