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020 _a9783319319704
024 7 _a10.1007/978-3-319-31970-4
_2doi
040 _aES-MaUEC
050 4 _aQA267
_b.S56 2016 EB
082 0 4 _a621
100 1 _aSimón Mata, Antonio
_916095
_0comprobar BNE20002614889
245 1 0 _aFundamentals of Machine Theory and Mechanisms
_cby Antonio Simón Mata, Alex Bataller Torras, Juan Antonio Cabrera Carrillo, Francisco Ezquerro Juanco, Antonio Jesús Guerra Fernández, Fernando Nadal Martínez, Antonio Ortiz Fernández
264 1 _aCham
_bSpringer International Publishing
_c2016
300 _a1 recurso en línea (XI, 409 p.)
_b345 ilustraciones
336 _aTexto (visual)
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
490 1 _aMechanisms and Machine Science
_x2211-0984
_v40
505 0 _aChapter 1 Kinematic Chains -- 1.1 Basic Concepts -- 1.2 Definitions -- 1.3 Degrees of Freedom of Mechanisms -- 1.4 Kinematic Inversions -- 1.5 Grashofs Criterion -- 1.6 Mechanical Advantage -- 1.7 Kinematic Curves -- 1.8 Application of Different Mechanisms with Different Purposes -- Chapter 2 Kinematic Analysis of Mechanisms. Relative Velocity and Acceleration. Instant Centers of Rotation -- 2.1 Velocity in Mechanisms -- 2.2 Accelerations in Mechanisms -- 2.3 Exercises with their Solutions -- Chapter 3 Analytical methods for the Kinematic Analysis of Planar Linkages. Ravens Method -- 3.1 Analytical Methods -- 3.2 Examples with their Solutions -- Chapter 4 Graphical and Analytical Methods for Dynamic Analysis of Planar Linkages -- 4.1 Machine Statics -- 4.2 Dynamic Analysis -- 4.3 Dynamic Analysis. Matrix Method -- 4.4 Exercises with Solutions -- Chapter 5 Balancing of Machinery -- 5.1 Rotor Balancing -- 5.2 Inertia Balancing of Single and Multi-Cylinder Engines -- 5.3 Problems with Solutions -- Chapter 6 Flywheel Calculations -- 6.1 Forces and Torques in Mechanisms -- 6.2 General Equation of Mechanism Motion -- 6.3 Working Periods of a Cyclic Machine -- 6.4 Steady State -- 6.5 Flywheels -- 6.6 Application Examples of Flywheels -- 6.7 Coefficient of Speed Fluctuation -- 6.8 Design of a Flywheel -- Chapter 7 Vibrations in Systems with one Degree of Freedom -- 7.1 Introduction to Oscillatory Motion -- 7.2 Single Degree of Freedom (SDOF) Systems -- 7.3 Free Vibrations in SDOF Systems -- 7.4 Forced Vibrations in SDOF Systems -- Chapter 8 Gears -- 8.1 Introduction -- 8.2 Toothed Wheels (Gears) -- 8.3 Condition for Constant Velocity Ratio. Fundamental Law of Gearing -- 8.4 Involute Teeth -- 8.5 Definitions and Nomenclature -- 8.6 Involute Tooth Action -- 8.7 Contact Ratio -- 8.8 Relationship between Velocity Ratio and Base Circles -- 8.9 Interference in Involute Gears -- 8.10 Gear Classification -- 8.11 Manufacturing of Toothed Wheels -- 8.12 Gear Standardization -- 8.13 Helical Gears -- 8.14 Bevel Gears -- 8.15 Force Analysis in Toothed Wheels -- Chapter 9 Gear Trains -- 9.1 Classification of Gear Trains -- 9.2 Ordinary Trains -- 9.3 Planetary or Epicyclic Trains -- 9.4 Examples -- Chapter 10 Synthesis of Planar Mechanisms -- 10.1 Types of Synthesis -- 10.2 Function Generation Synthesis -- 10.3 Trajectory Generation Synthesis -- 10.4 Optimal Synthesis of Mechanisms -- 10.5 Analysis of the Objective Function -- 10.6 Optimization Method Based on Evolutionary Algorithms -- 10.7 Results -- Appendix I: Position Kinematic Analysis. Trigonometric Method -- I.1 Position Analysis of a Four-Bar Mechanism -- I.2 Position Analysis of a Crank-Shaft Mechanism -- I.3 Position Analysis of a Slider Mechanism -- I.4 Two Generic Bars of a Mechanism -- Appendix II: Freudensteins Method to Solve the Position Equations in a Four-Bar Mechanism -- II.1 Position Analysis of a Four-Bar Mechanism by using Ravens Method -- II.2 Freudensteins Method -- Appendix III: Kinematic and Dynamic Analysis of a Mechanism -- III.1 Kinematic Chain -- III.2 Slider Displacement versus Crank Rotation -- III.4 Velocity Analysis by Relative Velocity Method -- III.4. Instantaneous Center Method for Velocities -- III.5 Acceleration Analysis with the Relative Acceleration Method -- III.6 Ravens Method -- III.7 Mass, Inertia Moments, Inertia Forces and Inertia Pairs -- III.8. Force Analysis. Graphical Method -- III.9 Dynamic Analysis. Matrix Method.
520 _aThis book covers the basic contents for an introductory course in Mechanism and Machine Theory. The topics dealt with are: kinematic and dynamic analysis of machines, introduction to vibratory behaviour, rotor and piston balance, kinematics of gears, ordinary and planetary gear trains and synthesis of planar mechanisms. A new approach to dimensional synthesis of mechanisms based on turning functions has been added for closed and open path generation using an optimization method based on evolutionary algorithms. The text, developed by a group of experts in kinematics and dynamics of mechanisms at the University of Málaga, Spain, is clear and is supported by more than 350 images. More than 60 outlined and explained problems have been included to clarify the theoretical concepts.
710 2 _aSpringerLink (Online service)
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988 _aEBOOK, EBSPRINGER
650 7 _aModelos matemáticos
_0comprobar BNE19981455375
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650 7 _aComplejidad computacional
_0comprobar BNE20051714665
_2embne
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650 7 _aProceso de datos
_0comprobar BNE19900995159
_2embne
_9141180
700 1 _aBataller Torras, Alex
_999143
_0Local
700 1 _aCabrera Carrillo, Juan Antonio
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700 1 _aEzquerro Juanco, Francisco
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_0comprobar BNE19931989423
700 1 _aGuerra Fernández, Antonio Jesús
_999145
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700 1 _aNadal Martínez, Fernando
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700 1 _aOrtiz Fernández, Antonio
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830 0 _aMechanisms and Machine Science
_x2211-0984
_v40
_9134115
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://link.springer.com/book/10.1007/978-3-319-31970-4
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