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出版社:科學
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ISBN:9787030336248
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作者:Anders C.Nilsson//Bilong Liu
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頁數:403
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出版日期:2012-01-01
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印刷日期:2012-01-01
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包裝:精裝
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開本:16開
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版次:1
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印次:1
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振聲學主要研究典型結構在各種激勵下的振動響應、振動傳遞以及聲輻射的一般性規律。Anders C.Nilsson編著的《Vibro-Acoustics(VolumeⅠ)(精)》首先回顧了單自由度繫統和頻域分析,接著重點討論了固體中的波傳播、縱波和橫波的耦合關繫、結構阻尼和結構連接引起的波衰減、以及梁和板的彎曲振動等,在此基礎上討論了變分分析、彈性支撐、流體介質中的波、聲振耦合以及能量分析方法等內容。
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Preface Notations Chapter 1 MECHANICAL SYSTEMS WITH ONE DEGREE OF FREEDOM 1.1 A simple mass-spring system 1.2 Free vibrations 1.3 Transient vibrations 1.4 Forced harmonic vibrations 1.5 Fourier series 1.6 Complex notation Problems Chapter 2 FREQUENCY DOMAIN 2.1 Introduction 2.2 Frequency response 2.3 Correlation functions 2.4 Spectral density 2.5 Examples of spectral density 2.6 Coherence 2.7 Time averages of power and energy 2.8 Frequency response and point mobility functions 2.9 Loss factor 2.10 Response of a 1-DOF system, a summary Problems Chapter 3 WAVES IN SOLIDS 3.1 Stresses and strains 3.2 Losses in solids 3.3 Transverse waves 3.4 Longitudinal waves 3.5 Torsional waves 3.6 Waves on a string 3.7 Bending or flexural waves-beams 3.8 Waves on strings and beams-a comparison 3.9 Flexural waves-plates 3.10 Orthotropic plates 3.11 Energy flow Problems Chapter 4 INTERACTION BETWEEN LONGITUDINAL AND TRANSVERSE WAVES 4.1 Generalised wave equation 4.2 Intensity 4.3 Coupling between longitudinal and transverse waves 4.4 Bending of thick beams/plates 4.5 Quasi longitudinal waves in thick plates 4.6 Rayleigh waves 4.7 Sandwich plates-general 4.8 Bending of sandwich plates 4.9 Equations governing bending of sandwich plates 4.10 Wavenumbers of sandwich plates 4.11 Bending stiffness of sandwich plates 4.12 Bending of I-beams Problems Chapter 5 WAVE ATTENUATION DUE TO LOSSES AND TRANSMISSION ACROSS JUNCTIONS 5.1 Excitation and propagation of L-waves 5.2 Excitation and propagation of F-waves 5.3 Point excited infinite plate 5.4 Spatial Fourier transforms 5.5 Added damping 5.6 Losses in sandwich plates 5.7 Coupling between flexural and inplane waves 5.8 Transmission of F-waves across junctions, diffuse incidence 5.9 Transmission of F-waves across junctions, normal incidence 5.10 Atenuation due to change of cross section 5.11 Some other methods to increase attenuation 5.12 Velocity level differences and transmission losses 5.13 Measurements on junctions between beams Problems Chapter 6 LONGITUDINAL VIBRATIONS OF FINITE BEAMS 6.1 Free longitudinal vibrations in finite beams 6.2 Forced longitudinal vibrations in finite beams 6.3 The mode summation technique 6.4 Kinetic energy of vibrating beam 6.5 Mobilities 6.6 Mass mounted on a rod 6.7 Transfer matrices Problems Chapter 7 FLEXURAL VIBRATIONS OF FINITE BEAMS 7.1 Free flexural vibrations of beams 7.2 Orthogonality and norm of eigenfunctions 7.3 Forced excitation of F-waves 7.4 Mode summation and modal parameters 7.5 Point mobility and power 7.6 Transfer matrices for bending of beams 7.7 Infinite periodic structures 7.8 Forced vibration of periodic structures 7.9 Finite composite beam Problems Chapter 8 FLEXURAL VIBRATIONS OF FINITE PLATES 8.1 Free vibrations of simply supported plates 8.2 Forced response of a simply supported plate 8.3 Forced excitation of a rectangular plate with two opposite sides simply supported 8.4 Power and energy 8.5 Mobility of plates 8.6 The Rayleigh-Ritz method 8.7 Application of the Rayleigh-Ritz method 8.8 Non flat plates 8.9 The effect of an added mass or mass-spring system on plate vibrations 8.10 Small disturbances 8.11 Plates mounted on resilient layers 8.12 Vibration of orthotropic plates 8.13 Circular and homogeneous plates 8.14 Bending of plates in tension Problems References Index
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