1. بوکت
  2. فنی و مهندسی
  3. مهندسی مکانیک خودرو
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  5. کتاب Mechanical Vibrations THEORY AND APPLICATIONS

Mechanical Vibrations THEORY AND APPLICATIONS


نویسنده : Graham Kelly


درباره کتاب Mechanical Vibrations THEORY AND APPLICATIONS

Mechanical Vibrations: Theory and Applications takes an applications-based approach at teaching students to apply previously learned engineering principles while laying a foundation for engineering design. This text provides a brief review of the principles of dynamics so that terminology and notation are consistent and applies these principles to derive mathematical models of dynamic mechanical systems. The methods of application of these principles are consistent with popular Dynamics texts. Numerous pedagogical features have been included in the text in order to aid the student with comprehension and retention. These include the development of three benchmark problems which are revisited in each chapter, creating a coherent chain linking all chapters in the book. Also included are learning outcomes, summaries of key concepts including important equations and formulae, fully solved examples with an emphasis on real world examples, as well as an extensive exercise set including objective-type questions.

سال
۲۰۱۱
ناشر
Cengage
تعداد صفحات
۸۹۵
شابک
9781439062128
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مشخصات کتاب Mechanical Vibrations THEORY AND APPLICATIONS


  • نام کتاب Mechanical Vibrations THEORY AND APPLICATIONS
  • نویسنده Graham Kelly
  • سال انتشار ۲۰۱۱
  • فرمت کتاب BKT
  • تعداد صفحات ۸۹۵
  • انتشارات Cengage
  • شابک(ISBN) 9781439062128
  • نوبت چاپ 1
  • قیمت نسخه الکترونیک ۳۶ تومان

درس‌ها

ارتعاشات

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مهندسی مکانیک خودرو

گروه های تحصیلی

فنی و مهندسی

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Equations"},{"page":55,"title":"Problems"},{"page":55,"title":"Short Answer Problems"},{"page":59,"title":"Chapter Problems"}]}]},{"page":73,"title":"CHAPTER 2 MODELING OF SDOF SYSTEMS","children":[{"page":73,"title":"2.1 Introduction"},{"page":74,"title":"2.2 Springs","children":[{"page":74,"title":"2.2.1 Introduction"},{"page":75,"title":"2.2.2 Helical Coil Springs"},{"page":77,"title":"2.2.3 Elastic Elements as Springs"},{"page":79,"title":"2.2.4 Static Deflection"}]},{"page":80,"title":"2.3 Springs in Combination","children":[{"page":80,"title":"2.3.1 Parallel Combination"},{"page":80,"title":"2.3.2 Series Combination"},{"page":84,"title":"2.3.3 General Combination of Springs"}]},{"page":86,"title":"2.4 Other Sources of Potential Energy","children":[{"page":86,"title":"2.4.1 Gravity"},{"page":88,"title":"2.4.2 Buoyancy"}]},{"page":89,"title":"2.5 Viscous Damping"},{"page":92,"title":"2.6 Energy Dissipated by Viscous Damping"},{"page":94,"title":"2.7 Inertia 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Principal Coordinates"},{"page":419,"title":"6.7 Harmonic Response of Two Degree-Of-Freedom Systems"},{"page":422,"title":"6.8 Transfer Functions"},{"page":426,"title":"6.9 Sinusoidal Transfer Function"},{"page":429,"title":"6.10 Frequency Response"},{"page":432,"title":"6.11 Dynamic Vibration Absorbers"},{"page":438,"title":"6.12 Damped Vibration Absorbers"},{"page":442,"title":"6.13 Vibration Dampers"},{"page":443,"title":"6.14 Benchmark Examples","children":[{"page":443,"title":"6.14.1 Machine on Floor of Industrial Plant"},{"page":445,"title":"6.14.2 Simplified Suspension System"}]},{"page":450,"title":"6.15 Further Examples"},{"page":460,"title":"6.16 Chapter Summary","children":[{"page":460,"title":"6.16.1 Important Concepts"},{"page":461,"title":"6.16.2 Important Equations"},{"page":462,"title":"Problems"},{"page":462,"title":"Short Answer Problems"},{"page":466,"title":"Chapter Problems"}]}]},{"page":477,"title":"CHAPTER 7 MODELING OF MDOF SYSTEMS","children":[{"page":477,"title":"7.1 Introduction"},{"page":479,"title":"7.2 Derivation of Differential Equations Using the Free-Body Diagram Method"},{"page":485,"title":"7.3 Lagrange’s Equations"},{"page":496,"title":"7.4 Matrix Formulation of Differential Equations for Linear Systems"},{"page":501,"title":"7.5 Stiffness Influence Coefficients"},{"page":509,"title":"7.6 Flexibility Influence Coefficients"},{"page":515,"title":"7.7 Inertia Influence Coefficients"},{"page":517,"title":"7.8 Lumped-Mass Modeling of Continuous Systems"},{"page":520,"title":"7.9 Benchmark Examples","children":[{"page":520,"title":"7.9.1 Machine on Floor of an Industrial Plant"},{"page":524,"title":"7.9.2 Simplified Suspension System"}]},{"page":526,"title":"7.10 Further Examples"},{"page":535,"title":"7.11 Summary","children":[{"page":535,"title":"7.11.1 Important Concepts"},{"page":536,"title":"7.11.2 Important Equations"},{"page":537,"title":"Problems"},{"page":537,"title":"Short Answer Problems"},{"page":541,"title":"Chapter Problems"}]}]},{"page":551,"title":"CHAPTER 8 FREE VIBRATIONS OF MDOF SYSTEMS","children":[{"page":551,"title":"8.1 Introduction"},{"page":552,"title":"8.2 Normal-Mode Solution"},{"page":554,"title":"8.3 Natural Frequencies and Mode Shapes"},{"page":561,"title":"8.4 General Solution"},{"page":563,"title":"8.5 Special Cases","children":[{"page":563,"title":"8.5.1 Degenerate Systems"},{"page":567,"title":"8.5.2 Unrestrained Systems"}]},{"page":570,"title":"8.6 Energy Scalar Products"},{"page":573,"title":"8.7 Properties of Natural Frequencies and Mode Shapes"},{"page":576,"title":"8.8 Normalized Mode Shapes"},{"page":578,"title":"8.9 Rayleigh’s Quotient"},{"page":580,"title":"8.10 Principal Coordinates"},{"page":583,"title":"8.11 Determination of Natural Frequencies and Mode Shapes"},{"page":586,"title":"8.12 Proportional Damping"},{"page":589,"title":"8.13 General Viscous Damping"},{"page":592,"title":"8.14 Benchmark 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on Floor of Industrial Plant"},{"page":634,"title":"9.7.2 Simplified Suspension System"}]},{"page":638,"title":"9.8 Further Examples"},{"page":641,"title":"9.9 Chapter Summary","children":[{"page":641,"title":"9.9.1 Important Concepts"},{"page":642,"title":"9.9.2 Important Equations"},{"page":643,"title":"Problems"},{"page":643,"title":"Short Answer Problems"},{"page":645,"title":"Chapter Problems"}]}]},{"page":651,"title":"CHAPTER 10 VIBRATIONS OF CONTINUOUS SYSTEMS","children":[{"page":651,"title":"10.1 Introduction"},{"page":654,"title":"10.2 General Method"},{"page":657,"title":"10.3 Second-Order Systems: Torsional Oscillations of a Circular Shaft","children":[{"page":657,"title":"10.3.1 Problem Formulation"},{"page":660,"title":"10.3.2 Free-Vibration Solutions"},{"page":668,"title":"10.3.3 Forced Vibrations"}]},{"page":669,"title":"10.4 Transverse Beam Vibrations","children":[{"page":669,"title":"10.4.1 Problem Formulation"},{"page":672,"title":"10.4.2 Free Vibrations"},{"page":680,"title":"10.4.3 Forced Vibrations"}]},{"page":685,"title":"10.5 Energy Methods"},{"page":690,"title":"10.6 Benchmark Examples"},{"page":694,"title":"10.7 Chapter Summary","children":[{"page":694,"title":"10.7.1 Important Concepts"},{"page":695,"title":"10.7.2 Important Equations"},{"page":696,"title":"Problems"},{"page":696,"title":"Short Answer Problems"},{"page":700,"title":"Chapter Problems"}]}]},{"page":707,"title":"CHAPTER 11 FINITE-ELEMENT METHOD","children":[{"page":707,"title":"11.1 Introduction"},{"page":708,"title":"11.2 Assumed Modes Method"},{"page":711,"title":"11.3 General Method"},{"page":714,"title":"11.4 The Bar Element"},{"page":718,"title":"11.5 Beam Element"},{"page":723,"title":"11.6 Global Matrices"},{"page":727,"title":"11.7 Benchmark Example"},{"page":732,"title":"11.8 Further Examples"},{"page":744,"title":"11.9 Summary","children":[{"page":744,"title":"11.9.1 Important Concepts"},{"page":744,"title":"11.9.2 Important Equations"},{"page":746,"title":"Problems"},{"page":746,"title":"Short Answer Problems"},{"page":748,"title":"Chapter Problems"}]}]},{"page":755,"title":"CHAPTER 12 NONLINEAR VIBRATIONS","children":[{"page":755,"title":"12.1 Introduction"},{"page":756,"title":"12.2 Sources of Nonlinearity"},{"page":761,"title":"12.3 Qualitative Analysis of Nonlinear Systems"},{"page":765,"title":"12.4 Quantitative Methods of Analysis"},{"page":767,"title":"12.5 Free Vibrations of SDOF Systems"},{"page":771,"title":"12.6 Forced Vibrations of SDOF Systems with Cubic Nonlinearities"},{"page":777,"title":"12.7 MDOF Systems","children":[{"page":777,"title":"12.7.1 Free Vibrations"},{"page":778,"title":"12.7.2 Forced Vibrations"}]},{"page":778,"title":"12.8 Continuous Systems"},{"page":779,"title":"12.9 Chaos"},{"page":787,"title":"12.10 Chapter Summary","children":[{"page":787,"title":"12.10.1 Important Concepts"},{"page":787,"title":"12.10.2 Important Equations"},{"page":788,"title":"Problems"},{"page":788,"title":"Short Answer Problems"},{"page":793,"title":"Chapter Problems"}]}]},{"page":799,"title":"CHAPTER 13 RANDOM VIBRATIONS","children":[{"page":799,"title":"13.1 Introduction"},{"page":800,"title":"13.2 Behavior of a Random Variable","children":[{"page":800,"title":"13.2.1 Ensemble Processes"},{"page":801,"title":"13.2.2 Stationary Processes"},{"page":802,"title":"13.2.3 Ergodic Processes"}]},{"page":802,"title":"13.3 Functions of a Random Variable","children":[{"page":802,"title":"13.3.1 Probability Functions"},{"page":804,"title":"13.3.2 Expected Value, Mean, and Standard Deviation"},{"page":804,"title":"13.3.3 Mean Square Value"},{"page":805,"title":"13.3.4 Probability Distribution for Arbitrary Function of Time"},{"page":806,"title":"13.3.5 Gaussian Process"},{"page":809,"title":"13.3.6 Rayleigh Distribution"},{"page":810,"title":"13.3.7 Central Limit Theorem"}]},{"page":811,"title":"13.4 Joint Probability 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نویسندگان کتاب Mechanical Vibrations THEORY AND APPLICATIONS ؟

Graham Kelly

درباره کتاب Mechanical Vibrations THEORY AND APPLICATIONS ؟

Mechanical Vibrations: Theory and Applications takes an applications-based approach at teaching students to apply previously learned engineering principles while laying a foundation for engineering design. This text provides a brief review of the principles of dynamics so that terminology and notation are consistent and applies these principles to derive mathematical models of dynamic mechanical systems. The methods of application of these principles are consistent with popular Dynamics texts. Numerous pedagogical features have been included in the text in order to aid the student with comprehension and retention. These include the development of three benchmark problems which are revisited in each chapter, creating a coherent chain linking all chapters in the book. Also included are learning outcomes, summaries of key concepts including important equations and formulae, fully solved examples with an emphasis on real world examples, as well as an extensive exercise set including objective-type questions.

کتاب Mechanical Vibrations THEORY AND APPLICATIONS در چه سالی چاپ شده است ؟

۲۰۱۱

ناشر کتاب Mechanical Vibrations THEORY AND APPLICATIONS چه کسی است ؟

Cengage

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9781439062128

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