Enhancing System Reliability Through Vibration Technology

Enhancing System Reliability Through Vibration Technology PDF Author: James Sylvester
Publisher:
ISBN: 9781527253865
Category : Maintainability (Engineering)
Languages : en
Pages : 300

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Book Description

Enhancing System Reliability Through Vibration Technology

Enhancing System Reliability Through Vibration Technology PDF Author: James Sylvester
Publisher:
ISBN: 9781527253865
Category : Maintainability (Engineering)
Languages : en
Pages : 300

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Book Description


Structural Vibration

Structural Vibration PDF Author: C.Y. Wang
Publisher: CRC Press
ISBN: 1466576855
Category : Technology & Engineering
Languages : en
Pages : 307

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Book Description
Structural Vibration: Exact Solutions for Strings, Membranes, Beams, and Plates offers an introduction to structural vibration and highlights the importance of the natural frequencies in design. It focuses on free vibrations for analysis and design of structures and machine and presents the exact vibration solutions for strings, membranes, beams, a

Mechanical Vibration, 5th Edition, Solutions Manual

Mechanical Vibration, 5th Edition, Solutions Manual PDF Author: Haym Benaroya
Publisher: Rutgers University Press
ISBN: 1978835604
Category : Science
Languages : en
Pages : 884

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Book Description
Teacher's supplemental information.

Practical Solution of Torsional Vibration Problems

Practical Solution of Torsional Vibration Problems PDF Author: William Ker Wilson
Publisher:
ISBN:
Category : Torsion
Languages : en
Pages : 764

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Book Description


Mechanical Vibrations

Mechanical Vibrations PDF Author: Tony L. Schmitz
Publisher: Springer Science & Business Media
ISBN: 1461404606
Category : Technology & Engineering
Languages : en
Pages : 385

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Book Description
Mechanical Vibrations: Modeling and Measurement describes essential concepts in vibration analysis of mechanical systems. It incorporates the required mathematics, experimental techniques, fundamentals of model analysis, and beam theory into a unified framework that is written to be accessible to undergraduate students, researchers, and practicing engineers. To unify the various concepts, a single experimental platform is used throughout the text. Engineering drawings for the platform are included in an appendix. Additionally, MATLAB programming solutions are integrated into the content throughout the text.

Analytical and Numerical Methods for Vibration Analyses

Analytical and Numerical Methods for Vibration Analyses PDF Author: Jong-Shyong Wu
Publisher: John Wiley & Sons
ISBN: 1118632362
Category : Mathematics
Languages : en
Pages : 676

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Book Description
Illustrates theories and associated mathematical expressions with numerical examples using various methods, leading to exact solutions, more accurate results, and more computationally efficient techniques This book presents the derivations of the equations of motion for all structure foundations using either the continuous model or the discrete model. This mathematical display is a strong feature of the book as it helps to explain in full detail how calculations are reached and interpreted. In addition to the simple 'uniform' and 'straight' beams, the book introduces solution techniques for the complicated ‘non uniform’ beams (including linear or non-linear tapered beams), and curved beams. Most of the beams are analyzed by taking account of the effects of shear deformation and rotary inertia of the beams themselves as well as the eccentricities and mass moments of inertia of the attachments. Demonstrates approaches which dramatically cut CPU times to a fraction of conventional FEM Presents "mode shapes" in addition to natural frequencies, which are critical for designers Gives detailed derivations for continuous and discrete model equations of motions Summarizes the analytical and numerical methods for the natural frequencies, mode shapes, and time histories of straight structures rods shafts Euler beams strings Timoshenko beams membranes/thin plates Conical rods and shafts Tapered beams Curved beams Has applications for students taking courses including vibration mechanics, dynamics of structures, and finite element analyses of structures, the transfer matrix method, and Jacobi method This book is ideal for graduate students in mechanical, civil, marine, aeronautical engineering courses as well as advanced undergraduates with a background in General Physics, Calculus, and Mechanics of Material. The book is also a handy reference for researchers and professional engineers.

Mechanical Vibration

Mechanical Vibration PDF Author: William John Palm
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 728

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Book Description
Model, analyze, and solve vibration problems, using modern computer tools. Featuring clear explanations, worked examples, applications, and modern computer tools, William Palm's Mechanical Vibration provides a firm foundation in vibratory systems. You'll learn how to apply knowledge of mathematics and science to model and analyze systems ranging from a single degree of freedom to complex systems with two and more degrees of freedom. Separate MATLAB sections at the end of most chapters show how to use the most recent features of this standard engineering tool, in the context of solving vibration problems. The text introduces Simulink where solutions may be difficult to program in MATLAB, such as modeling Coulomb friction effects and simulating systems that contain non-linearities. Ample problems throughout the text provide opportunities to practice identifying, formulating, and solving vibration problems. KEY FEATURES Strong pedagogical approach, including chapter objectives and summaries Extensive worked examples illustrating applications Numerous realistic homework problems Up-to-date MATLAB coverage The first vibration textbook to cover Simulink Self-contained introduction to MATLAB in Appendix A Special section dealing with active vibration control in sports equipment Special sections devoted to obtaining parameter values from experimental data

Vibration of Mindlin Plates

Vibration of Mindlin Plates PDF Author: K.M. Liew
Publisher: Elsevier
ISBN: 0080543545
Category : Technology & Engineering
Languages : en
Pages : 213

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Book Description
Over the last several years, the four authors have jointly conducted research into the analysis of vibrating Mindlin plates as a collaborative project between Nanyang Technological University, The National University of Singapore, and The University of Queensland. The research was prompted by the fact that there is a dearth of vibration results for Mindlin plates when compared to classical thin plate solutions. To generate the vibration results, the authors have successfully employed the Ritz method for general plate shapes and boundary conditions. The Ritz method, once thought to be awkward for general plate analysis, can be automated through suitable trial functions (for displacements) that satisfy the geometric plate boundary conditions a priori. This work has been well-received by academics and researchers, as indicated by the continual requests for the authors' papers and the Ritz software codes. This monograph is written with the view to share this so-called p-Ritz method for the vibration analysis of Mindlin plates and its software codes with the research community. To the authors' knowledge, the monograph contains the first published Ritz plate software codes of its kind.

Vibration of Continuous Systems

Vibration of Continuous Systems PDF Author: Singiresu S. Rao
Publisher: John Wiley & Sons
ISBN: 1119424143
Category : Technology & Engineering
Languages : en
Pages : 816

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Book Description
A revised and up-to-date guide to advanced vibration analysis written by a noted expert The revised and updated second edition of Vibration of Continuous Systems offers a guide to all aspects of vibration of continuous systems including: derivation of equations of motion, exact and approximate solutions and computational aspects. The author—a noted expert in the field—reviews all possible types of continuous structural members and systems including strings, shafts, beams, membranes, plates, shells, three-dimensional bodies, and composite structural members. Designed to be a useful aid in the understanding of the vibration of continuous systems, the book contains exact analytical solutions, approximate analytical solutions, and numerical solutions. All the methods are presented in clear and simple terms and the second edition offers a more detailed explanation of the fundamentals and basic concepts. Vibration of Continuous Systems revised second edition: Contains new chapters on Vibration of three-dimensional solid bodies; Vibration of composite structures; and Numerical solution using the finite element method Reviews the fundamental concepts in clear and concise language Includes newly formatted content that is streamlined for effectiveness Offers many new illustrative examples and problems Presents answers to selected problems Written for professors, students of mechanics of vibration courses, and researchers, the revised second edition of Vibration of Continuous Systems offers an authoritative guide filled with illustrative examples of the theory, computational details, and applications of vibration of continuous systems.

Engineering Vibration Analysis with Application to Control Systems

Engineering Vibration Analysis with Application to Control Systems PDF Author: C. Beards
Publisher: Elsevier
ISBN: 008052365X
Category : Technology & Engineering
Languages : en
Pages : 447

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Book Description
Most machines and structures are required to operate with low levels of vibration as smooth running leads to reduced stresses and fatigue and little noise. This book provides a thorough explanation of the principles and methods used to analyse the vibrations of engineering systems, combined with a description of how these techniques and results can be applied to the study of control system dynamics. Numerous worked examples are included, as well as problems with worked solutions, and particular attention is paid to the mathematical modelling of dynamic systems and the derivation of the equations of motion. All engineers, practising and student, should have a good understanding of the methods of analysis available for predicting the vibration response of a system and how it can be modified to produce acceptable results. This text provides an invaluable insight into both.