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Vibration damping, control, and design

Contributor(s): Material type: TextTextPublication details: London; CRC Press Taylor & Francis, 2007.Description: 1 v. (various pagings) : ill. ; 27 cmISBN:
  • 1420053213
  • 978-1420053210
Subject(s): DDC classification:
  • 620.37 DES-V
Contents:
Vibration Damping, Control, and Design Clarence de Silva 1 Vibration Damping de Silva 2 Damping Theory Peters 3 Experimental Techniques in Damping Peters 4 Structure and Equipment Isolation Yang, Lu, Yau 5 Vibration Control Jalili, Esmailzadeh 6 Helicopter Rotor Tuning Danai 7 Reinforced Concrete Structures Mo 8 Vibration Design and Control de Silva 9 Structural Dynamic Modification and Sensitvity Analysis Chen 10 Vibration in Rotating Machinery Samarasekera 11 Regerative Chatter in Machine Tools Landers 12 Fluid-Induced Vibration Han 13 Sound Levels and Decibels Akishita 14 Hearing and Psychological Effects Akishita 15 Noise Control Criteria and Regulations Akishita 16 Instrumentation Nagakura 17 Source of Noise Akishita
Summary: Reducing and controlling the level of vibration in a mechanical system leads to an improved work environment and product quality, reduced noise, more economical operation, and longer equipment life. Adequate design is essential for reducing vibrations, while damping and control methods help further reduce and manipulate vibrations when design strategies reach their limits. There are also useful types of vibration, which may require enhancement or control. Vibration Damping, Control, and Design balances theoretical and application-oriented coverage to enable optimal vibration and noise suppression and control in nearly any system. Drawn from the immensely popular Vibration and Shock Handbook, each expertly crafted chapter of this book includes convenient summary windows, tables, graphs, and lists to provide ready access to the important concepts and results. Working systematically from general principles to specific applications, coverage spans from theory and experimental techniques in vibration damping to isolation, passive control, active control, and structural dynamic modification. The book also discusses specific issues in designing for and controlling vibrations and noise such as regenerative chatter in machine tools, fluid-induced vibration, hearing and psychological effects, instrumentation for monitoring, and statistical energy analysis. This carefully edited work strikes a balance between practical considerations, design issues, and experimental techniques. Complemented by design examples and case studies, Vibration Damping, Control, and Design builds a deep understanding of the concepts and demonstrates how to apply these principles to real systems.
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Vibration Damping, Control, and Design
Clarence de Silva
1 Vibration Damping de Silva
2 Damping Theory Peters
3 Experimental Techniques in Damping Peters
4 Structure and Equipment Isolation Yang, Lu, Yau
5 Vibration Control Jalili, Esmailzadeh
6 Helicopter Rotor Tuning Danai
7 Reinforced Concrete Structures Mo
8 Vibration Design and Control de Silva
9 Structural Dynamic Modification and Sensitvity Analysis Chen
10 Vibration in Rotating Machinery Samarasekera
11 Regerative Chatter in Machine Tools Landers
12 Fluid-Induced Vibration Han
13 Sound Levels and Decibels Akishita
14 Hearing and Psychological Effects Akishita
15 Noise Control Criteria and Regulations Akishita
16 Instrumentation Nagakura
17 Source of Noise Akishita

Reducing and controlling the level of vibration in a mechanical system leads to an improved work environment and product quality, reduced noise, more economical operation, and longer equipment life. Adequate design is essential for reducing vibrations, while damping and control methods help further reduce and manipulate vibrations when design strategies reach their limits. There are also useful types of vibration, which may require enhancement or control. Vibration Damping, Control, and Design balances theoretical and application-oriented coverage to enable optimal vibration and noise suppression and control in nearly any system. Drawn from the immensely popular Vibration and Shock Handbook, each expertly crafted chapter of this book includes convenient summary windows, tables, graphs, and lists to provide ready access to the important concepts and results. Working systematically from general principles to specific applications, coverage spans from theory and experimental techniques in vibration damping to isolation, passive control, active control, and structural dynamic modification. The book also discusses specific issues in designing for and controlling vibrations and noise such as regenerative chatter in machine tools, fluid-induced vibration, hearing and psychological effects, instrumentation for monitoring, and statistical energy analysis. This carefully edited work strikes a balance between practical considerations, design issues, and experimental techniques. Complemented by design examples and case studies, Vibration Damping, Control, and Design builds a deep understanding of the concepts and demonstrates how to apply these principles to real systems.

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