Introduction To Mechanical Vibrations
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Introduction to Mechanical Vibrations
Author | : Ronald J. Anderson |
Publsiher | : John Wiley & Sons |
Total Pages | : 284 |
Release | : 2020-06-08 |
Genre | : Technology & Engineering |
ISBN | : 9781119053651 |
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An in-depth introduction to the foundations of vibrations for students of mechanical engineering For students pursuing their education in Mechanical Engineering, An Introduction to Mechanical Vibrations is a definitive resource. The text extensively covers foundational knowledge in the field and uses it to lead up to and include: finite elements, the inerter, Discrete Fourier Transforms, flow-induced vibrations, and self-excited oscillations in rail vehicles. The text aims to accomplish two things in a single, introductory, semester-length, course in vibrations. The primary goal is to present the basics of vibrations in a manner that promotes understanding and interest while building a foundation of knowledge in the field. The secondary goal is to give students a good understanding of two topics that are ubiquitous in today's engineering workplace - finite element analysis (FEA) and Discrete Fourier Transforms (the DFT- most often seen in the form of the Fast Fourier Transform or FFT). FEA and FFT software tools are readily available to both students and practicing engineers and they need to be used with understanding and a degree of caution. While these two subjects fit nicely into vibrations, this book presents them in a way that emphasizes understanding of the underlying principles so that students are aware of both the power and the limitations of the methods. In addition to covering all the topics that make up an introductory knowledge of vibrations, the book includes: ● End of chapter exercises to help students review key topics and definitions ● Access to sample data files, software, and animations via a dedicated website
An Introduction to Mechanical Vibrations
![An Introduction to Mechanical Vibrations](https://youbookinc.com/wp-content/uploads/2024/06/cover.jpg)
Author | : R.F. Steidel (Jr.) |
Publsiher | : Unknown |
Total Pages | : 135 |
Release | : 1971 |
Genre | : Electronic Book |
ISBN | : OCLC:841168336 |
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System Dynamics and Mechanical Vibrations
Author | : Dietmar Findeisen |
Publsiher | : Springer Science & Business Media |
Total Pages | : 399 |
Release | : 2013-03-09 |
Genre | : Technology & Engineering |
ISBN | : 9783662042052 |
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A comprehensive treatment of "linear systems analysis" applied to dynamic systems as an approach to interdisciplinary system design beyond the related area of electrical engineering. The text gives an interpretation of mechanical vibrations based on the theory of dynamic systems, aiming to bridge the gap between existing theoretical methods in different engineering disciplines and to enable advanced students or professionals to model dynamic and vibrating systems with reference to communication and control processes. Emphasizing the theory it presents a balanced coverage of analytical principles and applications to vibrations with regard to mechatronic problems.
An Introduction to Mechanical Vibrations
![An Introduction to Mechanical Vibrations](https://youbookinc.com/wp-content/uploads/2024/06/cover.jpg)
Author | : Robert F. Steidel |
Publsiher | : Unknown |
Total Pages | : 439 |
Release | : 1989 |
Genre | : Vibration |
ISBN | : 0471617237 |
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An Introduction to Mechanical Vibrations
![An Introduction to Mechanical Vibrations](https://youbookinc.com/wp-content/uploads/2024/06/cover.jpg)
Author | : Robert F. Steidel |
Publsiher | : Unknown |
Total Pages | : 400 |
Release | : 1980 |
Genre | : Vibration |
ISBN | : 0471094242 |
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Introductory Course on Theory and Practice of Mechanical Vibrations
Author | : J. S. Rao |
Publsiher | : New Age International |
Total Pages | : 562 |
Release | : 1999 |
Genre | : Vibration |
ISBN | : 8122412157 |
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The Book Presents The Theory Of Free, Forced And Transient Vibrations Of Single Degree, Two Degree And Multi-Degree Of Freedom, Undamped And Damped, Lumped Parameter Systems And Its Applications. Free And Forced Vibrations Of Undamped Continuous Systems Are Also Covered. Numerical Methods Like Holzers And Myklestads Are Also Presented In Matrix Form. Finite Element Method For Vibration Problem Is Also Included. Nonlinear Vibration And Random Vibration Analysis Of Mechanical Systems Are Also Presented. The Emphasis Is On Modelling Of Engineering Systems. Examples Chosen, Even Though Quite Simple, Always Refer To Practical Systems. Experimental Techniques In Vibration Analysis Are Discussed At Length In A Separate Chapter And Several Classical Case Studies Are Presented.Though The Book Is Primarily Intended For An Undergraduate Course In Mechanical Vibrations, It Covers Some Advanced Topics Which Are Generally Taught At Postgraduate Level. The Needs Of The Practising Engineers Have Been Kept In Mind Too. A Manual Giving Solutions Of All The Unsolved Problems Is Also Prepared, Which Would Be Extremely Useful To Teachers.
Fundamentals of Mechanical Vibrations
Author | : Liang-Wu Cai |
Publsiher | : John Wiley & Sons |
Total Pages | : 480 |
Release | : 2016-04-25 |
Genre | : Technology & Engineering |
ISBN | : 9781119050230 |
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This introductory book covers the most fundamental aspects of linear vibration analysis for mechanical engineering students and engineers. Consisting of five major topics, each has its own chapter and is aligned with five major objectives of the book. It starts from a concise, rigorous and yet accessible introduction to Lagrangian dynamics as a tool for obtaining the governing equation(s) for a system, the starting point of vibration analysis. The second topic introduces mathematical tools for vibration analyses for single degree-of-freedom systems. In the process, every example includes a section Exploring the Solution with MATLAB. This is intended to develop student's affinity to symbolic calculations, and to encourage curiosity-driven explorations. The third topic introduces the lumped-parameter modeling to convert simple engineering structures into models of equivalent masses and springs. The fourth topic introduces mathematical tools for general multiple degrees of freedom systems, with many examples suitable for hand calculation, and a few computer-aided examples that bridges the lumped-parameter models and continuous systems. The last topic introduces the finite element method as a jumping point for students to understand the theory and the use of commercial software for vibration analysis of real-world structures.
Mechanical Vibrations
Author | : Michel Geradin,Daniel J. Rixen |
Publsiher | : John Wiley & Sons |
Total Pages | : 615 |
Release | : 2015-02-16 |
Genre | : Science |
ISBN | : 9781118900208 |
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Mechanical Vibrations: Theory and Application to Structural Dynamics, Third Edition is a comprehensively updated new edition of the popular textbook. It presents the theory of vibrations in the context of structural analysis and covers applications in mechanical and aerospace engineering. Key features include: A systematic approach to dynamic reduction and substructuring, based on duality between mechanical and admittance concepts An introduction to experimental modal analysis and identification methods An improved, more physical presentation of wave propagation phenomena A comprehensive presentation of current practice for solving large eigenproblems, focusing on the efficient linear solution of large, sparse and possibly singular systems A deeply revised description of time integration schemes, providing framework for the rigorous accuracy/stability analysis of now widely used algorithms such as HHT and Generalized-α Solved exercises and end of chapter homework problems A companion website hosting supplementary material