ENGLISH

Advanced Vibrations: Theory and Application

Book information

Publisher
Springer
Year
2023
ISBN
3031163559, 9783031163555
Language
english
Format
PDF
Filesize
24 MB (24967813 bytes)
Edition
2
Pages
893\894
Topic
Physics\\Mechanics
Time added
2023-01-15 20:28:03

Description

Now in an updated new edition, this textbook explains mechanical vibrations concepts in detail, concentrating on their practical use. This second edition includes the new chapter Multi-Degree-of-Freedom (MDOF) Time Response, as well as new sections covering superposition, music and vibrations, generalized coordinates and degrees-of-freedom, and first-order systems. Related theorems and formal proofs are provided, as are real-life applications. Students, researchers, and practicing engineers alike will appreciate the user-friendly presentation of a wealth of topics, including practical optimization for designing vibration isolators and transient and harmonic excitations. Advanced Vibrations: Theory and Application is an ideal text for students of engineering, designers, and practicing engineers. Preface Level of the Book Organization of the Book Method of Presentation Prerequisites Unit System How to Use This Book Contents About the Author Part I Vibration Fundamentals 1 Vibration Kinematics 1.1 Mechanical Vibration Elements 1.1.1 Mass 1.1.2 Spring 1.1.3 Damper 1.1.4 Period 1.1.5 Vibration Modes 1.2 Kinematics of Vibrations 1.3 ps: [/EMC pdfmark [/Subtype /Span /ActualText (black star) /StPNE pdfmark [/StBMC pdfmarkps: [/EMC pdfmark [/StPop pdfmark [/StBMC pdfmark Fourier Series 1.4 ps: [/EMC pdfmark [/Subtype /Span /ActualText (black star) /StPNE pdfmark [/StBMC pdfmarkps: [/EMC pdfmark [/StPop pdfmark [/StBMC pdfmark Music of Vibrations 1.5 Summary 1.6 Key Symbols Exercises 2 Vibration Dynamics 2.1 Newton-Euler Method 2.2 Energy Method 2.2.1 Force System 2.2.2 Momentum 2.2.3 Mechanical Energy 2.3 ps: [/EMC pdfmark [/Subtype /Span /ActualText (black star) /StPNE pdfmark [/StBMC pdfmarkps: [/EMC pdfmark [/StPop pdfmark [/StBMC pdfmark Rigid Body Dynamics 2.3.1 ps: [/EMC pdfmark [/Subtype /Span /ActualText (black star) /StPNE pdfmark [/StBMC pdfmarkps: [/EMC pdfmark [/StPop pdfmark [/StBMC pdfmark Coordinate Frame Transformation 2.3.2 ps: [/EMC pdfmark [/Subtype /Span /ActualText (black star) /StPNE pdfmark [/StBMC pdfmarkps: [/EMC pdfmark [/StPop pdfmark [/StBMC pdfmark Velocity Kinematics 2.3.3 ps: [/EMC pdfmark [/Subtype /Span /ActualText (black star) /StPNE pdfmark [/StBMC pdfmarkps: [/EMC pdfmark [/StPop pdfmark [/StBMC pdfmark Acceleration Kinematics 2.3.4 ps: [/EMC pdfmark [/Subtype /Span /ActualText (black star) /StPNE pdfmark [/StBMC pdfmarkps: [/EMC pdfmark [/StPop pdfmark [/StBMC pdfmark Rotational Dynamics 2.4 Lagrange Method 2.5 Dissipation Function 2.6 Quadratures 2.7 Summary 2.8 Key Symbols Exercises Exercises Part II Time Response 3 One Degree of Freedom 3.1 Free Vibrations 3.1.1 Underdamped: 0

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