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Design of machinery : an introduction to the synthesis and analysis of mechanisms and machines / Robert L. Norton.

By: Series: McGraw-Hill series in mechanical engineeringPublication details: Dubuque, IA : McGraw-Hill, c2008.Edition: 4th edDescription: xxii, 825 p. : ill. ; 24 cm. 1 DVD (4 3/4 in.)ISBN:
  • 9780073121581 (hard copy : alk. paper)
  • 0073121584 (hard copy : alk. paper)
Subject(s): DDC classification:
  • 621.815 22 NOR
Online resources:
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Holdings
Item type Current library Call number Copy number Status Date due Barcode
Book Closed Access Book Closed Access Engineering Library 621.815 NOR 1 (Browse shelf(Opens below)) 1 Available BUML0007517
Book Closed Access Book Closed Access Engineering Library 621.815 NOR 2 (Browse shelf(Opens below)) 2 Available BUML23100495

Part I Kinematics of machines

Chapter 1 Introduction
1.0 Purpose
1.1 Kinematics and Kinetics
1.2 Mechanisms and Machines
1.3 A Brief History of Kinematics
1.4 Applications of Kinematics
etc

Chapter 2 Kinematics Fundamentals
2.0 Introduction
2.1 Degress of Freedom
2.2 Types of Motion
2.3 Links, Joints, and Kinematics chains
2.4 Drawing Kinematic Diagrams
etc

Chapter 3 Graphical Linkage Synthesis
3.0 Introductin
3.1 Synthesis
3.2 Function, Path, and Motion Generation
3.3 Limiting Conditions
3.4 Dimensional Synthesis
etc

Chapter 4 Position Analysis
4.0 Introduction
4.1 Coordinate Systems
4.2 Position and Displacement
4.3 Translation , Rotation, and complex motion
4.4 Graphical Position Analysis of Linkages
etc

Chapter 5 Analytical Linkage Synthesis
5.0 Introduction
5.1 Types of Kinematic Synthesis
5.2 Two position Synethis for Rocker output
5.3 Precision points
5.4 Two position motion Generation by Analytical Synthesis
etc

Chapter 6 Velocity Analysis
6.0 Introduction
6.1 Definition of Velocity
6.2 Graphical Velocity Analysis
6.3 Instant centres of Velocity
6.4 Velocity analysis with instant centres
etc

Chapter 7 Acceleration Analysis
7.0 Introduction
7.1 Definition of Acceleration
7.2 Graphical Acceleration analysis
7.3 Analytic Solutions for Acceleration Analysis
7.4 Acceleration analysis of the Geared Fivebar Linkage
etc

Chapter 8 Cam Design
8.0 Introduction
8.1 cam Terminology
8.2 SVAJ Diagrams
8.3 Double Dwell cam Design
8.4 Single Dwell come Design - Choosing S V A J Functions
etc

Chapter 9 Gear Trains
9.0 Introduction
9.1 Rolling Cylinders
9.2 The Fundamental Law of Gearing
9.3 Gear Tooth Nomenclature
9.4 interference and Undercutting
etc

Chapter 10 Dynamics Fundamentals
10.0 introduction
10.1 Newtons Laws of Motion
10.2 Dynamic Models
10.3 Mass
10.4 Mass Moment and Centre of Gravity
etc

Chapter 11 Dynamic Force Analysis
11.0 Introduction
11.1 Newtonian Solution Method
11.2 Single Link in Pure Rotation
11.3 Force analysis of a Threebar Crack side Linkage
11.4 Force analysis of a four bar Linkage
etc

Chapter 12 Balancing
12.0 Introduction
12.1 Static balance
!2.2 Dynamic balance
12.3 Balancing Linkages
12.4 Effect of Balancing on Shaking and pin Forces
etc

Chapter 13 Engine Dynamics

13.0 Introduction
13.1 Engine Design
13.2 Slider Crank Kinetics
13.3 Gas Force and Gas Torque
13.4 Equivalent Masses

Chapter 14 Multicylinder Engines
14.0 Introduction
14.1 Muiticylinder Engine Designs
14.2 The Crack phase Diagram
14.3 Shaking Forces in inline Engines
14.4 Inertia Torque in inline Engines
etc

Includes bibliographical references and index.

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