All Chapters Covered
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SOLUTION MANUAL
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, CONTENTS
PREFACE V
Part I
df Overview of Text Objectives
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Part II
df Answers and Solutions to Text Exercises
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Chapter 1 Introduction to Fluid Power
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Chapter 2 Physical Properties of Hydraulic Fluids
df df df df 12
Chapter 3 Energy and Power in Hydraulic Systems
df df df df df 21
Chapter 4 Frictional Losses in Hydraulic Pipelines
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Chapter 5 Hydraulic Pumps df 67
Chapter 6 Hydraulic Cylinders and Cushioning Devices
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Chapter 7 Hydraulic Motorsdf 97
Chapter 8 Hydraulic Valvesdf 108
Chapter 9 Hydraulic Circuit Design and Analysis
df df df df 121
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,Chapter 10 Hydraulic Conductors and
df df df 146
Fittings
Chapter 11 Ancillary Hydraulic Devices
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Chapter 12 Maintenance of Hydraulic Systems
df df df 167
Chapter 13 Pneumatics - Air Preparation and Components
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Chapter 14 Pneumatics - Circuits and Applications
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Chapter 15 Basic Electrical Controls for Fluid Power
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Circuits
Chapter 16 Fluid Logic Control Systems
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Chapter 17 Advanced Electrical Controls for Fluid Power
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Systems 211
ii
, Part I Overview of Text Objectives
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Chapter 1 df d f Introduction to Fluid Power df df df
This chapter introduces the student to the overall field
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of fluid power. It answers the question “What is fluid
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power?” and presents a corresponding historical background.
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Advantages and applications of fluid power systems are
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discussed in detail. df df
Emphasis is placed on the fact that fluid power systems are
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designed to perform useful work. A complete hydraulic system
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and a complete pneumatic system are individually presented
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with identifications of the necessary components and their
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functions. The fluid power industry is examined in terms of
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its bright, expanding future and the need for fluid power
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mechanics, technicians and engineers. df df df
Chapter 2 df d f Physical Properties of Hydraulic Fluids df df df df
This chapter deals with the single most important
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material in a hydraulic system: the working fluid. It
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introduces the student to the various types of hydraulic
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fluids and their most important physical properties. The
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differences between liquids and gases are outlined in terms
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of fundamental characteristics and applications. Methods for
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testing various fluid properties (such as bulk modulus,
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viscosity, and viscosity index) are presented. The student is
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introduced to the concepts of pressure, head and force. Units
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in the Metric System are described and compared to units in
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the English System. This will prepare the student for the
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inevitable United States adoption of the Metric System.
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1
df df
SOLUTION MANUAL
df
, CONTENTS
PREFACE V
Part I
df Overview of Text Objectives
df df df 1
Part II
df Answers and Solutions to Text Exercises
df df df df df 9
Chapter 1 Introduction to Fluid Power
df df df 9
Chapter 2 Physical Properties of Hydraulic Fluids
df df df df 12
Chapter 3 Energy and Power in Hydraulic Systems
df df df df df 21
Chapter 4 Frictional Losses in Hydraulic Pipelines
df df df df 46
Chapter 5 Hydraulic Pumps df 67
Chapter 6 Hydraulic Cylinders and Cushioning Devices
df df df df 84
Chapter 7 Hydraulic Motorsdf 97
Chapter 8 Hydraulic Valvesdf 108
Chapter 9 Hydraulic Circuit Design and Analysis
df df df df 121
i
,Chapter 10 Hydraulic Conductors and
df df df 146
Fittings
Chapter 11 Ancillary Hydraulic Devices
df df 158
Chapter 12 Maintenance of Hydraulic Systems
df df df 167
Chapter 13 Pneumatics - Air Preparation and Components
df df df df 177
Chapter 14 Pneumatics - Circuits and Applications
df df df df 191
Chapter 15 Basic Electrical Controls for Fluid Power
df df df df df df 202
Circuits
Chapter 16 Fluid Logic Control Systems
df df df 205
Chapter 17 Advanced Electrical Controls for Fluid Power
df df df df df df
Systems 211
ii
, Part I Overview of Text Objectives
df df df df df df
Chapter 1 df d f Introduction to Fluid Power df df df
This chapter introduces the student to the overall field
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of fluid power. It answers the question “What is fluid
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power?” and presents a corresponding historical background.
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Advantages and applications of fluid power systems are
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discussed in detail. df df
Emphasis is placed on the fact that fluid power systems are
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designed to perform useful work. A complete hydraulic system
df df df df df df df df df
and a complete pneumatic system are individually presented
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with identifications of the necessary components and their
df df df df df df df df
functions. The fluid power industry is examined in terms of
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its bright, expanding future and the need for fluid power
df df df df df df df df df df
mechanics, technicians and engineers. df df df
Chapter 2 df d f Physical Properties of Hydraulic Fluids df df df df
This chapter deals with the single most important
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material in a hydraulic system: the working fluid. It
df df df df df df df df df
introduces the student to the various types of hydraulic
df df df df df df df df df
fluids and their most important physical properties. The
df df df df df df df df
differences between liquids and gases are outlined in terms
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of fundamental characteristics and applications. Methods for
df df df df df df df
testing various fluid properties (such as bulk modulus,
df df df df df df df df
viscosity, and viscosity index) are presented. The student is
df df df df df df df df df
introduced to the concepts of pressure, head and force. Units
df df df df df df df df df df
in the Metric System are described and compared to units in
df df df df df df df df df df df
the English System. This will prepare the student for the
df df df df df df df df df df
inevitable United States adoption of the Metric System.
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1