流体力学与流体传动
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8
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59.8
九品
仅1件
作者马恩
出版社清华大学出版社
出版时间2018-04
版次1
装帧其他
货号6-4
上书时间2024-09-21
商品详情
- 品相描述:九品
图书标准信息
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作者
马恩
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出版社
清华大学出版社
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出版时间
2018-04
-
版次
1
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ISBN
9787302490951
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定价
59.80元
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装帧
其他
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开本
16开
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纸张
胶版纸
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页数
387页
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字数
630千字
- 【内容简介】
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本书为普通高等教育“十三五”规划教材,是针对21世纪人才培养和教学改革的需要,配合教育部实施的“质量工程”,在总结国内外众多院校教学实践和科学研究成果的基础上编写的,并
配有多媒体课件。全书共分为16章。第1章概述液压与气压传动的工作原理、组成、图形符号、优缺点、应用和发展; 第2章讲述液压传动工作介质的性质和选用等; 第3章介绍液压流体力学基础知识; 第4~7章分别讲述液压动力元件、液压执行元件、液压控制元件和液压辅助元件; 第8章讲述液压传动基本回路; 第9章讲述典型液压传动系统分析; 第10章讲述液压传动系统的设计与计算; 第11~16章分别讲述气压传动基础知识、气源装置与辅助元件、气动执行元件、气动控制元件、气动基本回路和控制系统分析。每章都有学习指南、能力培养目标、案例教学实例、重点和难点课堂讨论及小结,每章后附有思考题和习题。附录A中简明扼要地介绍了*国家推荐性标准GB/T 786.1—2009中规定的部分液压与气压传动图形符号,附录B为关键词和术语的中英文对照。
本书可作为我国高等学校机械设计制造及其自动化、动力与车辆工程、汽车服务工程、机械工程及自动化和机械电子工程等专业的教材,也可供从事液压技术的工程技术人员和研究人员学习和参考。
- 【目录】
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目录
第1章绪论
1.1流体力学研究的内容和方法
1.2液压与气压传动的研究内容
1.3液压与气压传动的工作原理及基本特征
1.3.1液压与气压传动的工作原理
1.3.2液压与气压传动的基本特征
1.4液压传动系统的组成
1.5液压传动系统的图形符号表示
1.6液压传动的控制方式
1.7液压传动的优缺点
1.8液压传动技术的历史进展和发展趋势
1.8.1液压传动技术的历史进展
1.8.2液压传动技术的发展趋势
1.9液压传动的应用
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第2章液压传动工作介质
2.1液压传动工作介质的性质和选用
2.1.1液压传动工作介质的种类
2.1.2液压传动工作介质的物理性质
2.1.3液压传动工作介质的化学性质
2.1.4液压传动系统对工作介质的主要性能要求
2.1.5液压传动工作介质的选择
2.1.6液压传动工作介质的使用
2.2液压传动工作介质的污染和控制
2.2.1液压传动工作介质污染物的种类
2.2.2液压传动工作介质污染的原因
2.2.3液压传动工作介质污染度的等级
2.2.4液压传动工作介质污染度的测定
2.2.5液压传动工作介质污染的危害
2.2.6液压传动工作介质污染的控制及措施
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第3章液压流体力学基础知识
3.1液体静力学基础知识
3.1.1液体静压力及特征
3.1.2重力作用下静止液体中的压力分布和静力学基本方程
3.1.3液体静压力的传递
3.1.4绝对压力、相对压力和真空度
3.1.5液体静压力作用在固体壁面上的力
3.2液体动力学基础知识
3.2.1流动液体的基本概念
3.2.2流量连续性方程
3.2.3伯努利方程
3.2.4动量方程
3.3液体在管路中流动时的压力损失
3.3.1层流、紊流和雷诺数
3.3.2沿程压力损失
3.3.3局部压力损失
3.3.4管路系统总压力损失
3.4液体流经小孔的流量
3.5液体流经缝隙的流量
3.6空穴现象
3.7液压冲击
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第4章液压动力元件
4.1液压泵概述
4.1.1液压泵的工作原理
4.1.2液压泵的分类
4.1.3液压泵的图形符号
4.1.4液压泵的基本性能参数和计算公式
4.1.5液压泵的特性曲线和检测
4.2齿轮泵
4.2.1外啮合齿轮泵的工作原理
4.2.2外啮合齿轮泵的排量和流量公式
4.2.3外啮合齿轮泵的结构特点分析
4.2.4提高外啮合齿轮泵工作压力的措施
4.2.5渐开线内啮合齿轮泵
4.2.6摆线内啮合齿轮泵
4.2.7配装有溢流阀的内啮合齿轮泵
4.2.8齿轮泵的主要性能
4.2.9齿轮泵的优缺点
4.2.10螺杆泵
4.3叶片泵
4.3.1单作用叶片泵
4.3.2限压式变量叶片泵
4.3.3双作用叶片泵
4.3.4叶片泵的主要性能
4.3.5叶片泵的优缺点
4.4柱塞泵
4.4.1径向柱塞泵
4.4.2斜盘式轴向柱塞泵
4.4.3斜轴式轴向柱塞泵
4.4.4通轴式轴向柱塞泵
4.4.5柱塞泵的主要性能
4.4.6柱塞泵的优缺点
4.5各类液压泵的主要性能及应用
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第5章液压执行元件
5.1液压缸
5.1.1液压缸的分类及特点
5.1.2液压缸的结构形式及安装方式
5.1.3液压缸的设计与计算
5.1.4液压缸的安装和常见故障分析及排除方法
5.2数字控制液压缸和模拟控制液压缸
5.2.1数字控制液压缸
5.2.2模拟控制液压缸
5.3液压马达概述
5.3.1液压马达的特点和分类
5.3.2液压马达的基本性能参数
5.4高速液压马达
5.4.1齿轮液压马达
5.4.2叶片液压马达
5.4.3轴向柱塞液压马达
5.5低速液压马达
5.5.1单作用曲轴连杆径向柱塞液压马达
5.5.2多作用内曲线径向柱塞液压马达
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第6章液压控制元件
6.1液压控制阀概述
6.1.1液压控制阀的基本结构和工作原理
6.1.2液压控制阀的分类
6.1.3液压控制阀的基本性能参数
6.1.4对液压控制阀的基本要求
6.2压力控制阀
6.2.1溢流阀
6.2.2顺序阀
6.2.3减压阀
6.2.4压力继电器
6.3方向控制阀
6.3.1单向阀
6.3.2换向阀
6.4流量控制阀
6.4.1节流口的形式和流量特性
6.4.2节流阀
6.4.3调速阀
6.4.4溢流节流阀
6.4.5分流集流阀
6.4.6限速切断阀
6.5插装阀
6.5.1插装阀的概述与优点
6.5.2插装阀的组成和工作原理
6.5.3插装压力阀
6.5.4插装方向阀
6.5.5插装流量阀
6.6叠加阀
6.7多路阀
6.8电液伺服控制阀
6.8.1伺服控制元件的基本类型
6.8.2电液伺服控制阀
6.8.3机液伺服控制阀
6.9电液比例控制阀
6.9.1电液比例控制阀的主要性能指标
6.9.2电液比例压力控制阀
6.9.3电液比例方向控制阀
6.9.4电液比例流量控制阀
6.10电液数字控制阀
6.10.1电液数字控制阀的特点及分类
6.10.2增量式电液数字控制阀
6.10.3脉宽调制式电液数字控制阀
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第7章液压辅助元件
7.1过滤器
7.1.1过滤器的基本性能参数
7.1.2过滤器的分类和结构特点
7.1.3过滤器的选用
7.1.4过滤器的安装
7.2蓄能器
7.2.1蓄能器的类型、结构和工作原理
7.2.2蓄能器参数的计算
7.2.3蓄能器的安装和使用
7.2.4蓄能器的用途
7.3液压密封装置
7.3.1密封件的分类
7.3.2对密封装置的基本要求
7.3.3常用密封件的材料
7.3.4常见的密封方法
7.3.5常用密封件的结构与性能
7.4管道及管接头
7.4.1管道的种类及材料
7.4.2管道内径及壁厚的确定
7.4.3管道安装要求
7.4.4管接头
7.5液压油箱
7.5.1液压油箱的功能与类型
7.5.2液压油箱容积的计算
7.5.3液压油箱的设计要点
7.6加热器
7.7冷却器
7.7.1无冷却介质冷却器
7.7.2有冷却介质冷却器
7.7.3冷却器的计算
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第8章液压传动基本回路
8.1压力控制回路
8.1.1调压回路
8.1.2卸荷回路
8.1.3减压回路
8.1.4增压回路
8.1.5保压回路
8.1.6释压回路
8.1.7平衡回路
8.2速度控制回路
8.2.1概述
8.2.2节流调速回路
8.2.3容积调速回路
8.2.4容积节流调速回路
8.2.5快速运动回路
8.2.6速度换接回路
8.3方向控制回路
8.3.1换向回路
8.3.2浮动回路
8.3.3锁紧回路
8.3.4制动回路
8.4多执行元件运动控制回路
8.4.1顺序运动回路
8.4.2同步运动回路
8.4.3互不干扰回路
8.4.4多路换向阀控制回路
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第9章典型液压传动系统分析
9.1YT4543型组合机床动力滑台液压传动系统分析
9.1.1概述
9.1.2YT4543型组合机床动力滑台液压传动系统的工作原理
9.1.3YT4543型组合机床动力滑台液压传动系统的特点
9.23150kN液压机液压传动系统分析
9.2.1概述
9.2.2液压机液压传动系统及其工作原理
9.2.3液压机液压传动系统的主要特点
9.2.4液压机插装阀集成液压传动系统及其工作原理
9.3Q2?8型汽车起重机液压传动系统分析
9.3.1概述
9.3.2Q2?8型汽车起重机液压传动系统的工作原理
9.3.3Q2?8型汽车起重机液压传动系统的特点
9.4XS?ZY?250A型塑料注射成型机液压传动系统分析
9.4.1概述
9.4.2塑料注射成型机液压传动系统及其工作原理
9.4.3塑料注射成型机液压传动系统的主要特点
9.5机电一体化液压挖掘机液压传动系统分析
9.5.1概述
9.5.2机电一体化液压挖掘机液压传动系统组成
9.5.3机电一体化液压挖掘机液压传动系统工作技术特点
9.6带钢光电液伺服跑偏控制系统分析
9.6.1概述
9.6.2带钢光电液伺服跑偏控制系统组成及工作原理
9.7液压助力器伺服控制系统分析
9.8计算机电液控制技术分析
9.8.1概述
9.8.2液压泵控制容积调速计算机电液控制系统组成
9.8.3液压泵控制容积调速计算机电液控制系统软件设计
9.8.4液压泵控制容积调速计算机电液控制系统硬件设计
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第10章液压传动系统的设计与计算
10.1液压传动系统的设计概述
10.2明确设计要求,进行工况分析
10.3确定液压传动系统的主要性能参数
10.4液压传动系统原理图的拟定
10.5液压元件的计算与选择
10.6液压传动系统的性能验算
10.7绘制工作图与编写技术文件
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第11章气压传动基础知识
11.1概述
11.1.1气压传动系统的组成及工作原理
11.1.2气压传动的优缺点
11.1.3气压传动的应用和发展
11.2气动工作介质的性质
11.2.1气动工作介质的组成
11.2.2气动工作介质的基本状态参数
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第12章气源装置和辅助元件
12.1气源装置
12.1.1气源装置的组成及工作原理
12.1.2空气压缩机
12.1.3主要压缩空气净化设备
12.2辅助元件
12.2.1分水滤气器
12.2.2油雾器
12.2.3消声器
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第13章气动执行元件
13.1气缸
13.1.1气缸的分类
13.1.2气缸的工作原理
13.1.3气缸的输出力和耗气量计算
13.2气马达
13.2.1气马达的分类
13.2.2气马达的工作原理
13.2.3气马达工作特性与工作压力的关系
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第14章气动控制元件
14.1压力控制阀
14.1.1减压阀
14.1.2安全阀
14.1.3单向顺序阀
14.2方向控制阀
14.2.1单向阀
14.2.2换向阀
14.3流量控制阀
14.3.1节流阀
14.3.2单向节流阀
14.3.3排气消声节流阀
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第15章气动基本回路
15.1压力控制回路
15.1.1一次压力控制回路
15.1.2二次压力控制回路
15.1.3高低压选择回路
15.2方向控制回路
15.2.1单作用气缸的换向回路
15.2.2双作用气缸的换向回路
15.3速度控制回路
15.3.1单作用气缸的节流调速控制回路
15.3.2双作用气缸的双向调速控制回路
15.4气?液联动控制回路
15.4.1气?液增压控制回路
15.4.2气?液联动速度控制回路
15.4.3气?液缸同步运动控制回路
15.5连续往复运动回路
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
第16章气动控制系统分析
16.1气动控制系统举例
16.1.1数控加工中心换刀气动系统分析
16.1.2工件夹紧气动系统分析
16.2气动行程程序控制系统的X?D线图法设计
16.3气动控制系统的安装、调试、使用与维修
重点和难点课堂讨论
典型案例分析
本章小结
思考题和习题
附录A部分液压与气压传动图形符号
附录B液压与气压传动主要符号、关键词和术语中英文对照
参考文献
流体力学与流体传动
Contents
Contents
Chapter 1Introduction
1.1Study on fluid mechanics
1.2Study on hydraulic and pneumatic
transmission
1.3Operating principles and basic features
of hydraulic and
pneumatic transmission
1.3.1Operating principles of hydraulic and
pneumatic transmission
1.3.2Basic features of hydraulic and
pneumatic transmission
1.4Components of hydraulic transmission
system
1.5Diagram symbols of hydraulic
transmission system
1.6Control modes of hydraulic transmission
1.7Advantages and disadvantages of
hydraulic transmission
1.8Development history and trend of
hydraulic transmission
1.8.1Development history of hydraulic
transmission
1.8.2Trend of hydraulic transmission
1.9Applications of hydraulic transmission
Important and difficult understanding
knowledge points discussion
in this chapter
Typical troubleshooting analysis
Summary
Review questions
Chapter 2Hydraulic transmission operating
medium
2.1Characteristics and selection and
application of hydraulic transmission
operating medium
2.1.1Classification of hydraulic
transmission operating medium
2.1.2Physical characteristics of hydraulic
transmission operating
medium
2.1.3Chemical characteristics of hydraulic
transmission operating
medium
2.1.4Main performance requirements of
hydraulic transmission
operating medium
2.1.5Selection of hydraulic transmission
operating medium
2.1.6Application of hydraulic transmission
operating medium
2.2Pollution and control of hydraulic
transmission operating medium
2.2.1Pollution classification of hydraulic
transmission operating
medium
2.2.2Pollution causation of hydraulic
transmission operating medium
2.2.3Contamination grade of hydraulic
transmission operating
medium
2.2.4Pollution measurement of hydraulic transmission
operating
medium
2.2.5Pollution hazard of hydraulic
transmission operating medium
2.2.6Pollution control and measures of
hydraulic transmission
operating medium
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Chapter 3Hydro?mechanics
basic knowledge
3.1Hydro?static mechanics
basic knowledge
3.1.1Pressure and characteristics in
stationary liquids
3.1.2Pressure spread in stationary liquids
and basic equation of
hydro?static mechanics
3.1.3Hydro?static pressure
transmission of liquids
3.1.4Absolute pressure, relative
(gauge)pressure and vacuum
(negative pressure)
3.1.5Force in stationary liquids acting on
surfaces of the container
3.2Hydro?dynamics basic
knowledge
3.2.1Basic concepts of flow liquid
3.2.2Flow continuity equation
3.2.3Bernoulli’s equation
3.2.4Momentum equation
3.3Pressure losses at the pipes’ surfaces
and within the liquids as
liquids move in pipes
3.3.1Laminar flow, turbulent flow and
Reynold’s number of liquids
3.3.2Pressure losses at the pipes’ surfaces
and within the liquids
3.3.3Pressure losses at a particular
location
3.3.4Total pressure losses in pipe?system
3.4Flow of liquid moving through orifice
3.5Flow of liquid moving through narrow
clearance
3.6Cavitation
3.7Pressure shock
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Chapter 4Hydraulic power components
4.1Hydraulic pumps introduction
4.1.1Operating principles of hydraulic
pumps
4.1.2Classification of hydraulic pumps
4.1.3Diagram symbols of hydraulic pumps
4.1.4Basic performance and parameters and
equations of
hydraulic pumps
4.1.5Characteristic curves and measures of
hydraulic pumps
4.2Gear pumps
4.2.1Operating principles of external gear
pumps
4.2.2Displacement and flow equation of
external gear pumps
4.2.3Structure characteristics of external
gear pumps
4.2.4Measures to improve operating pressure
of external gear pumps
4.2.5Involute internal gear pumps
4.2.6Orbit internal gear pumps
4.2.7Internal gear pumps with pressure
relief valves
4.2.8Main performance of external gear
pumps
4.2.9Advantages and disadvantages of gear
pumps
4.2.10Screw pumps
4.3Vane pumps
4.3.1Single?acting vane pumps
4.3.2Pressure limited variable displacement
vane pumps
4.3.3Double?acting vane pumps
4.3.4Main performance of vane pumps
4.3.5Advantages and disadvantages of vane
pumps
4.4Piston pumps
4.4.1Radial piston pumps
4.4.2Swash plate axial piston pumps
4.4.3Bent axis axial piston pumps
4.4.4Swash plate axial piston pumps with
auxiliary pumps
4.4.5Main performance of piston pumps
4.4.6Advantages and disadvantages of piston
pumps
4.5Main property and applications of
hydraulic pumps
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Chapter 5Hydraulic actuators
5.1Hydraulic cylinders
5.1.1Classification and characteristics of
hydraulic cylinders
5.1.2Structure and installation of
hydraulic cylinders
5.1.3Design and calculation of hydraulic
cylinders
5.1.4Installation and troubleshooting and
repairing of hydraulic
cylinders
5.2Digital control hydraulic cylinders and
simulative control hydraulic
cylinders
5.2.1Digital control hydraulic cylinders
5.2.2Simulative control hydraulic cylinders
5.3Hydraulic motors introduction
5.3.1Characteristics and classification of
hydraulic motors
5.3.2Basic property and parameters of
hydraulic motors
5.4High speed hydraulic motors
5.4.1Gear hydraulic motors
5.4.2Vane hydraulic motors
5.4.3Axial piston hydraulic motors
5.5Low speed hydraulic motors
5.5.1Single?acting crankshaft
connecting rod radial piston motors
5.5.2Multi?acting internal
curves radial piston motors
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Chapter 6Hydraulic control components
6.1Hydraulic control valves introduction
6.1.1Basic structure and operating
principles of hydraulic control
valves
6.1.2Classification of hydraulic control
valves
6.1.3Basic performance and parameters of
hydraulic control valves
6.1.4Basic requirements for hydraulic
control valves
6.2Pressure control valves
6.2.1Pressure relief valves
6.2.2Pressure sequence valves
6.2.3Pressure reducing valves
6.2.4Hydro?electric pressure
switch
6.3Directional control valves
6.3.1Check valves
6.3.2Directional valves
6.4Flow control valves
6.4.1Types and flow characteristics of
throttle ports
6.4.2Throttle valves
6.4.32?way flow control
valves with pressure compensators
6.4.43?way flow control
valves with pressure compensators
6.4.5Flow divider and combiners
6.4.6Limiting flow valve
6.5Cartridge valves
6.5.1Introduction and advantages of
cartridge valves
6.5.2Components and operating principles of
cartridge valves
6.5.3Cartridge pressure valves
6.5.4Cartridge directional valves
6.5.5Flow cartridge valves
6.6Modular valves
6.7Hydraulic multi?pathway
control valves
6.8Electro?hydraulic servo
control valves
6.8.1Basic types of hydraulic servo control
component
6.8.2Electro?hydraulic servo
control valves
6.8.3Mechanical hydraulic servo control
valves
6.9Electro?hydraulic
proportional control valves
6.9.1Main property and parameters of
electro?hydraulic proportional
control valves
6.9.2Electro?hydraulic
proportional pressure control valves
6.9.3Electro?hydraulic
proportional directional control valves
6.9.4Electro?hydraulic
proportional flow control valves
6.10Electro?hydraulic digital
control valves
6.10.1Characteristics and classification of
electro?hydraulic digital
control valves
6.10.2Increment electro?hydraulic
digital control valves
6.10.3Pulse width modulation electro?hydraulic
digital control
valves
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Chapter 7Hydraulic accessories
7.1Filters
7.1.1Basic property and parameters of
filters
7.1.2Classification and structure
characteristics of filters
7.1.3Selection and application of filters
7.1.4Installation of filters
7.2Accumulators
7.2.1Classification and structure and
operating principle of
accumulators
7.2.2Calculation of accumulator parameters
7.2.3Installation and use of accumulators
7.2.4Application of accumulators
7.3Hydraulic seals
7.3.1Classification of seals
7.3.2Basic requirement for seals
7.3.3Material of common seals
7.3.4General seal methods
7.3.5Structure and characteristics of
common seals
7.4Pipes and pipe fittings
7.4.1Classification and material of pipes
7.4.2Determining of pipes inner diameter
and wall thickness
7.4.3Installation requirement of pipes
7.4.4Pipe fittings
7.5Oil tanks
7.5.1Function and type of oil tanks
7.5.2Volume calculation of oil tanks
7.5.3Design characteristics of oil tanks
7.6Heaters
7.7Coolers
7.7.1Coolers without cooling medium
7.7.2Coolers with cooling medium
7.7.3Calculation of coolers
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Chapter 8Basic circuits of hydraulic
transmission
8.1Pressure control circuits
8.1.1Pressure adjusting control circuits
8.1.2Load pressure releasing control circuits
8.1.3Pressure reducing control circuits
8.1.4Pressure increasing control circuits
8.1.5Circuits for pressure protecting
8.1.6Pressure releasing control circuits
8.1.7Pressure balancing control circuits
8.2Speed control circuits
8.2.1Introduction
8.2.2Throttle adjusting speed control
circuits
8.2.3Volume adjusting speed control
circuits
8.2.4Volume and throttle adjusting speed
control circuits
8.2.5High speed control circuits
8.2.6Speed conversion control circuits
8.3Directional control circuits
8.3.1Directional circuits
8.3.2Circuits for lock releasing
8.3.3Locking circuits
8.3.4Brake circuits
8.4Multi?actuators motion
control circuits
8.4.1Sequence motion control circuits
8.4.2Synchronizing motion control circuits
8.4.3High?low speed motion
noninterference control circuits of
hydraulic cylinders
8.4.4Hydraulic multi?pathway
valves control circuits
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Chapter 9Typical hydraulic transmission
systems analysis
9.1Hydraulic transmission system analysis
of power work table in
YT4543 combining machine tool
9.1.1Introduction
9.1.2Hydraulic transmission system and
operating principles of power
work table in YT4543 combining machine tool
9.1.3Main characteristics of hydraulic
transmission system of power
work table in YT4543 combining machine tool
9.2Hydraulic transmission system analysis
of the 3150kN press machine
9.2.1Introduction
9.2.2Hydraulic transmission system and
operating principles of
press machine
9.2.3Main characteristics of hydraulic
transmission system of press
machine
9.2.4Cartridge valves integrating hydraulic
transmission system and
operating principles of press machine
9.3Hydraulic transmission system analysis
of model Q2?8 automobile crane
9.3.1Introduction
9.3.2Hydraulic transmission system
operating principles of model
Q2?8 automobile crane
9.3.3Hydraulic transmission system
characteristics of model Q2?8
automobile crane
9.4Hydraulic transmission system analysis
of model XS?ZY?250A plastic
injection machine
9.4.1Introduction
9.4.2Hydraulic transmission system and
operating principles of
plastic injection machine
9.4.3Main characteristics of hydraulic
transmission system of
plastic injection machine
9.5Hydraulic transmission system analysis
of mechatronics system
excavator
9.5.1Introduction
9.5.2Hydraulic transmission system
components of mechatronics system
excavator
9.5.3Hydraulic transmission system
technical characteristics of
mechatronics system excavator
9.6Light and electro?hydraulic
servo control system analysis of metal band
position error
9.6.1Introduction
9.6.2Components and operating principles of
light and electro?hydraulic
servo control system of metal band position
error
9.7Manually operated servo hydraulic
cylinder control system analysis
9.8Calculator control and electro?hydraulic
transmission technology
analysis
9.8.1Introduction
9.8.2Components of calculator control
volume adjusting speed
circuit and electro?hydraulic
transmission
9.8.3Software design of calculator control
volume adjusting speed circuit
and electro?hydraulic
transmission
9.8.4Hardware design of calculator control
volume adjusting speed circuit
and electro?hydraulic
transmission
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Chapter 10Design and calculation of
hydraulic transmission system
10.1Introduction and design of hydraulic
transmission system
10.2Understanding design requirements and
analyzing operating load
condition
10.3Determining main performance and
parameters of hydraulic
transmission system
10.4Drawing schematic illustration of
operating principle of hydraulic
transmission system
10.5Calculation and selection of hydraulic
components
10.6Performance calculation of hydraulic
transmission system
10.7Drawing product blueprint and compiling
technical files
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Chapter 11Basic knowledge of pneumatic
transmission
11.1Introduction
11.1.1Components and operating principles
of pneumatic
transmission system
11.1.2Advantages and disadvantages of
pneumatic transmission
11.1.3Application and development of
pneumatic transmission
11.2Characteristics of pneumatic operating
medium
11.2.1Components of pneumatic operating
medium
11.2.2Basic condition parameters of
pneumatic operating medium
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Chapter 12Pneumatic power source units and
accessories
12.1Pneumatic power source units
12.1.1Components and operating principles
of pneumatic power
source units
12.1.2Air compressor
12.1.3Main pneumatic power source cleaning
units
12.2Accessories
12.2.1Separators
12.2.2Lubricators
12.2.3Mufflers
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Chapter 13Pneumatic actuators
13.1Pneumatic cylinders
13.1.1Classification of pneumatic cylinders
13.1.2Operating principles of pneumatic
cylinders
13.1.3Output force and consumption
calculation of pneumatic
cylinders
13.2Pneumatic motors
13.2.1Classification of pneumatic motors
13.2.2Operating principles of pneumatic
motors
13.2.3Operating characteristics and
operating pressure of
pneumatic motors
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Chapter 14Control components of pneumatic
transmission
14.1Pressure control valves
14.1.1Pressure reducing valves
14.1.2Pressure relief valves
14.1.3Pressure sequence valves with check
valves
14.2Directional control valves
14.2.1Check valves
14.2.2Directional control valves
14.3Flow control valves
14.3.1Throttle valves
14.3.2Throttle check valves
14.3.3Exhaust muffler and throttle valves
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Chapter 15Basic circuits of pneumatic
transmission
15.1Pressure control circuits
15.1.1First grade pressure control circuits
15.1.2Second grade pressure control
circuits
15.1.3High?low pressure
selection control circuits
15.2Directional control circuits
15.2.1Single?acting pneumatic
piston cylinder directional circuits
15.2.2Double?acting pneumatic
piston cylinder directional circuits
15.3Speed control circuits
15.3.1Throttle adjusting speed control
circuits of single?acting
piston pneumatic cylinders
15.3.2Two?way throttle
adjusting speed control circuits of double?acting
and single?piston?rod
pneumatic cylinders
15.4Pneumatic and hydraulic acting circuits
15.4.1Pneumatic and hydraulic pressure
increasing control circuits
15.4.2Speed control circuits of pneumatic
and hydraulic acting
15.4.3Synchronizing motion control circuits
of pneumatic and
hydraulic cylinders
15.5Reciprocating circuits
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Chapter 16Analysis of pneumatic
transmission control system
16.1Examples of pneumatic transmission
control system
16.1.1Exchanging tool control system
analysis of pneumatic
transmission on numerical control machine
center
16.1.2Analysis of pneumatic transmission
control system used in
workpiece clamped on the tooling and
fixture
16.2X?D method design of
pneumatic transmission distance programmable control
system
16.3Installation, adjusting,application and
maintenance of pneumatic
transmission control system
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Appendix AAbstract of partial diagram
symbols of hydraulic and pneumatic
transmission
Appendix BChinese and English key symbols,
vocabularies and terms of hydraulic
and pneumatic transmission
Bibliography
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