كتاب Design Of Machinery Mechanisms And Machines - صفحة 2
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 كتاب Design Of Machinery Mechanisms And Machines

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عدد المساهمات : 14273
التقييم : 22960
تاريخ التسجيل : 01/07/2009
العمر : 28
الدولة : مصر
العمل : مدير منتدى هندسة الإنتاج والتصميم الميكانيكى
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مُساهمةموضوع: كتاب Design Of Machinery Mechanisms And Machines    الثلاثاء 26 يونيو 2012, 4:11 pm

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Design Of Machinery Mechanisms And Machines 2Nd Ed

ويتناول الموضوعات الأتية :

Chapter Introduction
Purpose
Kinematics and Kinetics
Mechanisms and Machines
A Brief History of Kinematics
Applications of Kinematics
The Design Process
Design Invention Creativity
Identification of Need
Background Research
Goal Statement
Performance Specifications
Ideation and Invention
Analysis
Selection
Detailed Design
Prototyping and Testing
Production
Other Approaches to Design
Axiomatic Design
Multiple Solutions
Human Factors Engineering
The Engineering Report
Units
What's to Come
References
Bibliography
Chapter Kinematics Fundamentals
Introduction
Degrees of Freedom
Types of Motion
Links Joints and Kinematic Chains
Determining Degree of Freedom
Degree of Freedom in Planar Mechanisms
Degree of Freedom in Spatial Mechanisms
Mechanisms and Structures
Number Synthesis
Paradoxes
Isomers
Linkage Transformation
Intermittent Motion
Inversion
The Grashof Condition
Classification of the Fourbar Linkage
Linkages of More Than Four Bars
Geared Fivebar Linkages
Sixbar Linkages
Grashof-type Rotatability Criteria for Higher-order Linkages
Springs as Links
Practical Considerations
Pin Joints versusSliders and Half Joints
Cantilever versusStraddle Mount
Short Links
Bearing Ratio
Linkages versusCans
Motor and Drives
Electric Motexs
Air and HyaotAc Motexs
Air and Hyc:kotAc CyiIders
Solenoids
References
Problems
Chapter Graphical Linkage Synthesis
Introduction
Synthesis
Function Path and Motion Generation
limiting Conditions
Dimensional Synthesis
Two-Posiffon Synthesis
TPY~n Synthesis with Specified Moving Pivots
hree-Position Synthesis with Alternate Moving Pivots
TPYee-PositionSynthesis with Specified Fixed Pivots
Position Synthesis for More Than Three Positions
Quick-Return Mechanisms
Fou'bar Quick-Return
SbcbarQuick-Return
Coupler Curves
Cognates
Parallel Motion
Geared Rvebar Cognates of the Fourbar
Straight-Line Mechanisms
Designing Optimum Straight-Line Fourbar Linkages
Dwell Mechanisms
Single-Dwell Linkages
Double-Dwell Linkages
References
Bibliography
Problems
Projects
Chapter Position Analysis
Introduction
Coordinate Systems
Position and Displacement
Position
Displacement
Translation Rotation and Complex Motion
Translation
Rotation
Complex Motion
Theorems
Graphical Position Analysis of Linkages
Algebraic Position Analysis of Linkages
Vector Loop Representation of Linkages
Complex Numbers as Vectors
The Vector Loop Equation for a Fourbar Linkage
The Fourbar Slider-Crank Position Solution
An Inverted Slider-Crank Position Solution
Linkages of More Than Four Bars
The Geared Fivebar Linkage
Sixbar Linkages
Position of Any Point on a Linkage
Transmission Angles
Extreme Values of the TransmissionAngle
Toggle Positions
Circuits and Branches in Linkages
Newton-Raphson Solution Method
One-Dimensional Root-Finding (Newton's Method)
Multidimensional Root-Finding (Newton-Raphson Method)
Newton-Raphson Solution for the Fourbar Linkage
Equation Solvers
References
Problems
Chapter Analytical Linkage Synthesis
Introduction
Types of Kinematic Synthesis
Precision Points
Two-Position Motion Generation by Analytical Synthesis
Comparison of Analytical and Graphical Two-Position Synthesis
Simultaneous Equation Solution
Three-Position Motion Generation by Analytical Synthesis
Comparison of Analytical and Graphical Three-Position Synthesis
Synthesis for a Specified Fixed Pivot Location
Center-Point and Circle-Point Circles
Four- and Five-Position Analytical Synthesis
Analytical Synthesis of a Path Generator with Prescribed Timing
Analytical Synthesis of a Fourbar Function Generator
Other Linkage Synthesis Methods
Precision Point Methods
CouplerCuNe Equation Methods
Optimization Methods
References
Problems
Chapter Velocity Analysis
Introduction
Definition of Velocity
Graphical Velocity Analysis
Instant Centers of Velocity
Velocity Analysis with Instant Centers
Angular Velocity Raffo
Mechanical Advantage
Using Instant Centers in Unkage Design
Centrodes
A 'UnkJess-Unkage
Cusps
Velocity of Slip
Analytical Solutions for Velocity Analysis
The FotIbar Pin-Jointed Unkage
The FotIbar Slider-Crank
The FotIbar Inverted Slider-Crank
Velocity Analysis of the Geared Fivebar Linkage
Velocity of Any Point on a Linkage
References
Problems
Chapter Acceleration Analysis
Introduction
Definition of Acceleration
Graphical Acceleration Analysis
Analytical Solutions for Acceleration Analysis
The Fourbar Pin-Jointed Linkage
The Fourbar Slider-Crank
CorioIis Acceleration '
The Fourbar Inverted Slider-Crank
Acceleration Analysis of the Geared Fivebar Linkage
Acceleration of any Point on a Linkage
Human Tolerance of Acceleration
Jerk
Linkages of N Bars
References
Problems
Chapter Cam Design
Introduction
Cam Terminology
Type of Follower Motion
Type of Joint Closure
Type of Follower
Type of Cam
Type of Motion Constraints
Type of Motion Program
S V A J Diagrams
Double-Dwell Cam Design-Choosing S V A J Functions
TheFundamental LawofCamDesign
Simple Harmonic Motion (SHM)
Cycloidal Displacement
Combined Functions
Single-Dwell Cam Design-Choosing S V A J Functions
Polynomial Functions
Double-Dwell Applications of Polynomials
Single-Dwell Applications of Polynomials
Critical Path Motion (CPM)
Polynomials Used for Critical Path Motion
Half-Period Harmonic Family Functions
Sizing the Com-Pressure Angle and Radius of Curvature
PressureAngle-Roller Followers
Choosing a Prime Circle Radius
Overturning Moment-Flat-Faced Follower
Radius of Curvature-Roller Follower
Radius of Curvature-Flat-Faced Follower
Com Manufacturing Considerations
Geometric Generation
Manual or NC Machining to Cam Coordinates (Plunge-Cutting)
Continuous Numerical Control with Linear Interpolation
Continuous Numerical Control with Circular Interpolation
Analog Duplication
Actual Cam Performance Compared to Theoretical Performance
Practical Design Considerations
Translating or Oscillating Follower?
Force- or Form-Closed?
Radial or Axial Cam?
Roller or Flat-Faced Follower?
ToDwell or Not to Dwell?
To Grind or Not to Grind?
ToLubricate or Not to Lubricate?
References
Problems
Projects
Chapter Gear Trains
Introduction
Rolling Cylinders
The Fundamental Law of Gearing
TheInvolute Tooth Form
PressureAngle
Changing Center Distance
Backlash
Gear Tooth Nomenclature
Interference and Undercutting
Unequal-Addendum Tooth Forms
Contact Ratio
Gear Types
Spur Helical and Herringbone Gears
Worms and Worm Gears
Rack and Pinion
Bevel and Hypoid Gears
Noncircular Gears
Belt and Chain Drives
Simple Gear Trains
Compound Gear Trains
Design of Compound Trains
Design of Reverted Compound Trains
An Algorithm for the Design of Compound Gear Trains
Epicyclic or Planetary Gear Trains
The Tabular Method
The Formula Method
Efficiency of Gear Trains
Chapter Com Dynamics
Introduction
Dynamic Force Analysis of the Force-Closed Cam Follower
Undamped Response
Damped Response
Resonance
Kinetostatic Force Analysis of the Force-Closed Cam-Follower
Kinetostatic Force Analysis of the Form-Closed Cam-Follower
Camshaft Torque
Measuring Dynamic Forces and Accelerations
Practical Considerations
References
Bibliography
Problems
Chapter Engineering Design
Introduction
A Design Case Study
Closure
References
Appendix A Computer Programs
AO Introduction
A General Information
A General Program Operation
A Program FOURBAR
A Program FIVEBAR
A Program SIXBAR
A Program SLIDER
A Program DVNACAM
A Program ENGINE
A Program MATRIX
Appendix B Material Properties
Appendix C Geometric Properties
Appendix D Spring Data
Appendix E Atlas of Geared Fivebar Linkage Coupler Curves
Appendix F Answers to Selected Problems
Index
CD-ROM Index

أتمنى أن تستفيدوا منه وأن ينال إعجابكم



شارك معنا فى حملة فيد وإستفيد
شارك معنا فى المسابقة الهندسية الشهرية
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*****************************************************************************************


عدل سابقا من قبل أحمد دعبس في الجمعة 14 سبتمبر 2012, 2:58 pm عدل 1 مرات
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عدد المساهمات : 14273
تاريخ التسجيل : 01/07/2009

مُساهمةموضوع: كتاب Design Of Machinery Mechanisms And Machines    الثلاثاء 26 يونيو 2012, 4:11 pm

أخوانى فى الله
أحضرت لكم كتاب

Design Of Machinery Mechanisms And Machines 2Nd Ed

ويتناول الموضوعات الأتية :

Chapter Introduction
Purpose
Kinematics and Kinetics
Mechanisms and Machines
A Brief History of Kinematics
Applications of Kinematics
The Design Process
Design Invention Creativity
Identification of Need
Background Research
Goal Statement
Performance Specifications
Ideation and Invention
Analysis
Selection
Detailed Design
Prototyping and Testing
Production
Other Approaches to Design
Axiomatic Design
Multiple Solutions
Human Factors Engineering
The Engineering Report
Units
What's to Come
References
Bibliography
Chapter Kinematics Fundamentals
Introduction
Degrees of Freedom
Types of Motion
Links Joints and Kinematic Chains
Determining Degree of Freedom
Degree of Freedom in Planar Mechanisms
Degree of Freedom in Spatial Mechanisms
Mechanisms and Structures
Number Synthesis
Paradoxes
Isomers
Linkage Transformation
Intermittent Motion
Inversion
The Grashof Condition
Classification of the Fourbar Linkage
Linkages of More Than Four Bars
Geared Fivebar Linkages
Sixbar Linkages
Grashof-type Rotatability Criteria for Higher-order Linkages
Springs as Links
Practical Considerations
Pin Joints versusSliders and Half Joints
Cantilever versusStraddle Mount
Short Links
Bearing Ratio
Linkages versusCans
Motor and Drives
Electric Motexs
Air and HyaotAc Motexs
Air and Hyc:kotAc CyiIders
Solenoids
References
Problems
Chapter Graphical Linkage Synthesis
Introduction
Synthesis
Function Path and Motion Generation
limiting Conditions
Dimensional Synthesis
Two-Posiffon Synthesis
TPY~n Synthesis with Specified Moving Pivots
hree-Position Synthesis with Alternate Moving Pivots
TPYee-PositionSynthesis with Specified Fixed Pivots
Position Synthesis for More Than Three Positions
Quick-Return Mechanisms
Fou'bar Quick-Return
SbcbarQuick-Return
Coupler Curves
Cognates
Parallel Motion
Geared Rvebar Cognates of the Fourbar
Straight-Line Mechanisms
Designing Optimum Straight-Line Fourbar Linkages
Dwell Mechanisms
Single-Dwell Linkages
Double-Dwell Linkages
References
Bibliography
Problems
Projects
Chapter Position Analysis
Introduction
Coordinate Systems
Position and Displacement
Position
Displacement
Translation Rotation and Complex Motion
Translation
Rotation
Complex Motion
Theorems
Graphical Position Analysis of Linkages
Algebraic Position Analysis of Linkages
Vector Loop Representation of Linkages
Complex Numbers as Vectors
The Vector Loop Equation for a Fourbar Linkage
The Fourbar Slider-Crank Position Solution
An Inverted Slider-Crank Position Solution
Linkages of More Than Four Bars
The Geared Fivebar Linkage
Sixbar Linkages
Position of Any Point on a Linkage
Transmission Angles
Extreme Values of the TransmissionAngle
Toggle Positions
Circuits and Branches in Linkages
Newton-Raphson Solution Method
One-Dimensional Root-Finding (Newton's Method)
Multidimensional Root-Finding (Newton-Raphson Method)
Newton-Raphson Solution for the Fourbar Linkage
Equation Solvers
References
Problems
Chapter Analytical Linkage Synthesis
Introduction
Types of Kinematic Synthesis
Precision Points
Two-Position Motion Generation by Analytical Synthesis
Comparison of Analytical and Graphical Two-Position Synthesis
Simultaneous Equation Solution
Three-Position Motion Generation by Analytical Synthesis
Comparison of Analytical and Graphical Three-Position Synthesis
Synthesis for a Specified Fixed Pivot Location
Center-Point and Circle-Point Circles
Four- and Five-Position Analytical Synthesis
Analytical Synthesis of a Path Generator with Prescribed Timing
Analytical Synthesis of a Fourbar Function Generator
Other Linkage Synthesis Methods
Precision Point Methods
CouplerCuNe Equation Methods
Optimization Methods
References
Problems
Chapter Velocity Analysis
Introduction
Definition of Velocity
Graphical Velocity Analysis
Instant Centers of Velocity
Velocity Analysis with Instant Centers
Angular Velocity Raffo
Mechanical Advantage
Using Instant Centers in Unkage Design
Centrodes
A 'UnkJess-Unkage
Cusps
Velocity of Slip
Analytical Solutions for Velocity Analysis
The FotIbar Pin-Jointed Unkage
The FotIbar Slider-Crank
The FotIbar Inverted Slider-Crank
Velocity Analysis of the Geared Fivebar Linkage
Velocity of Any Point on a Linkage
References
Problems
Chapter Acceleration Analysis
Introduction
Definition of Acceleration
Graphical Acceleration Analysis
Analytical Solutions for Acceleration Analysis
The Fourbar Pin-Jointed Linkage
The Fourbar Slider-Crank
CorioIis Acceleration '
The Fourbar Inverted Slider-Crank
Acceleration Analysis of the Geared Fivebar Linkage
Acceleration of any Point on a Linkage
Human Tolerance of Acceleration
Jerk
Linkages of N Bars
References
Problems
Chapter Cam Design
Introduction
Cam Terminology
Type of Follower Motion
Type of Joint Closure
Type of Follower
Type of Cam
Type of Motion Constraints
Type of Motion Program
S V A J Diagrams
Double-Dwell Cam Design-Choosing S V A J Functions
TheFundamental LawofCamDesign
Simple Harmonic Motion (SHM)
Cycloidal Displacement
Combined Functions
Single-Dwell Cam Design-Choosing S V A J Functions
Polynomial Functions
Double-Dwell Applications of Polynomials
Single-Dwell Applications of Polynomials
Critical Path Motion (CPM)
Polynomials Used for Critical Path Motion
Half-Period Harmonic Family Functions
Sizing the Com-Pressure Angle and Radius of Curvature
PressureAngle-Roller Followers
Choosing a Prime Circle Radius
Overturning Moment-Flat-Faced Follower
Radius of Curvature-Roller Follower
Radius of Curvature-Flat-Faced Follower
Com Manufacturing Considerations
Geometric Generation
Manual or NC Machining to Cam Coordinates (Plunge-Cutting)
Continuous Numerical Control with Linear Interpolation
Continuous Numerical Control with Circular Interpolation
Analog Duplication
Actual Cam Performance Compared to Theoretical Performance
Practical Design Considerations
Translating or Oscillating Follower?
Force- or Form-Closed?
Radial or Axial Cam?
Roller or Flat-Faced Follower?
ToDwell or Not to Dwell?
To Grind or Not to Grind?
ToLubricate or Not to Lubricate?
References
Problems
Projects
Chapter Gear Trains
Introduction
Rolling Cylinders
The Fundamental Law of Gearing
TheInvolute Tooth Form
PressureAngle
Changing Center Distance
Backlash
Gear Tooth Nomenclature
Interference and Undercutting
Unequal-Addendum Tooth Forms
Contact Ratio
Gear Types
Spur Helical and Herringbone Gears
Worms and Worm Gears
Rack and Pinion
Bevel and Hypoid Gears
Noncircular Gears
Belt and Chain Drives
Simple Gear Trains
Compound Gear Trains
Design of Compound Trains
Design of Reverted Compound Trains
An Algorithm for the Design of Compound Gear Trains
Epicyclic or Planetary Gear Trains
The Tabular Method
The Formula Method
Efficiency of Gear Trains
Chapter Com Dynamics
Introduction
Dynamic Force Analysis of the Force-Closed Cam Follower
Undamped Response
Damped Response
Resonance
Kinetostatic Force Analysis of the Force-Closed Cam-Follower
Kinetostatic Force Analysis of the Form-Closed Cam-Follower
Camshaft Torque
Measuring Dynamic Forces and Accelerations
Practical Considerations
References
Bibliography
Problems
Chapter Engineering Design
Introduction
A Design Case Study
Closure
References
Appendix A Computer Programs
AO Introduction
A General Information
A General Program Operation
A Program FOURBAR
A Program FIVEBAR
A Program SIXBAR
A Program SLIDER
A Program DVNACAM
A Program ENGINE
A Program MATRIX
Appendix B Material Properties
Appendix C Geometric Properties
Appendix D Spring Data
Appendix E Atlas of Geared Fivebar Linkage Coupler Curves
Appendix F Answers to Selected Problems
Index
CD-ROM Index

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الرجوع الى أعلى الصفحة اذهب الى الأسفل
اسراء 13
مهندس فعال
مهندس فعال


عدد المساهمات : 216
تاريخ التسجيل : 09/12/2011

مُساهمةموضوع: رد: كتاب Design Of Machinery Mechanisms And Machines    الإثنين 02 يوليو 2012, 12:30 am


:ذذذ:

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اسراء 13
مهندس فعال
مهندس فعال


عدد المساهمات : 216
تاريخ التسجيل : 09/12/2011

مُساهمةموضوع: رد: كتاب Design Of Machinery Mechanisms And Machines    الإثنين 02 يوليو 2012, 12:32 am

:ذذذ:

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مُساهمةموضوع: رد: كتاب Design Of Machinery Mechanisms And Machines    الإثنين 02 يوليو 2012, 12:33 am

@اسراء 13 كتب:





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مُساهمةموضوع: رد: كتاب Design Of Machinery Mechanisms And Machines    الإثنين 02 يوليو 2012, 7:31 pm

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عدد المساهمات : 14273
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العمل : مدير منتدى هندسة الإنتاج والتصميم الميكانيكى
الجامعة : المنوفية

مُساهمةموضوع: رد: كتاب Design Of Machinery Mechanisms And Machines    الإثنين 02 يوليو 2012, 8:26 pm

@rambomenaa كتب:



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عدد المساهمات : 14273
التقييم : 22960
تاريخ التسجيل : 01/07/2009
العمر : 28
الدولة : مصر
العمل : مدير منتدى هندسة الإنتاج والتصميم الميكانيكى
الجامعة : المنوفية

مُساهمةموضوع: رد: كتاب Design Of Machinery Mechanisms And Machines    الجمعة 14 سبتمبر 2012, 2:59 pm

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كتاب Design Of Machinery Mechanisms And Machines

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