Handbook of Experimental Structural Dynamics

Peter Avitabile (Hrsg.), Randall Allemang (Hrsg.)

EPUB
ca. 767,41
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Springer New York img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Maschinenbau, Fertigungstechnik

Beschreibung

The SEM Handbook of Experimental Structural Dynamics stands as a comprehensive overview and reference for its subject, applicable to workers in research, product design and manufacture, and practice. The Handbook is devoted primarily to the areas of structural mechanics served by the Society for Experimental Mechanics IMAC community, such as modal analysis, rotating machinery, structural health monitoring, shock and vibration, sensors and instrumentation, aeroelasticity, ground testing, finite element techniques, model updating, sensitivity analysis, verification and validation, experimental dynamics sub-structuring, quantification of margin and uncertainty, and testing of civil infrastructure. Chapters offer comprehensive, detailed coverage of decades of scientific and technologic advance and all demonstrate an experimental perspective. Several sections specifically discuss the various types of experimental testing and common practices utilized in the automotive, aerospace, and civil structures industries.nbsp;        History of Experimental Structural Mechanicsnbsp;        DIC Methods - Dynamic Photogrammetrynbsp;        LDV Methodsnbsp;        Applied Digital Signal Processingnbsp;        Introduction to Spectral - Basic Measurementsnbsp;        Structural Measurements - FRFnbsp;        Random and Shock Testingnbsp;        Rotating System Analysis Methodsnbsp;        Sensors Signal Conditioning Instrumentationnbsp;        Design of Modal Testsnbsp;        Experimental Modal Methodsnbsp;        Experimental Modal Parameter Evaluationnbsp;        Operating Modal Analysis Methodsnbsp;        Analytical Numerical Substructuring nbsp;        Finite Element Model Correlationnbsp;        Model Updatingnbsp;        Damping of Materials and Structuresnbsp;        Model Calibration and Validation in Structuresnbsp;        Uncertainty Quantification: UQ, QMU and Statisticsnbsp;        Nonlinear System Analysis Methods (Experimental)nbsp;        Structural Health Monitoring and Damage Detectionnbsp;        Experimental Substructure Modelingnbsp;        Modal Modelingnbsp;        Response (Impedance) Modelingnbsp;        Nonlinear Normal Mode Analysis Techniques (Analytical)nbsp;        Modal Modeling with Nonlinear Connection Elements (Analytical)nbsp;        Acoustics of Structural Systems (VibroAcoustics)nbsp;        Automotive Structural Testingnbsp;        Civil Structural Testingnbsp;        Aerospace Perspective for Modeling and Validationnbsp;        Sports Equipment Testingnbsp;        Applied Math for Experimental Structural MechanicsContributions present important theory behind relevant experimental methods as well as application and technology. Topical authors emphasize and dissect proven methods and offer detail beyond a simple review of the literature. Additionally, chapters cover practical needs of scientists and engineers who are new to the field. In most cases, neither the pertinent theory nor, in particular, the practical issues have been presented formally in current academic textbooks. Each chapter in the Handbook represents a 'must read' for someone new to the subject or for someone returning to the field after an absence. Reference lists in each chapter consist of the seminal papers in the literature.This Handbook stands in parallel to the SEM Handbook of Experimental Solid Mechanics, where this Handbook focuses on experimental dynamics of structures at a macro-scale often involving multiple components and materials where the SEM Handbook of Experimental Solid Mechanics focuses on experimental mechanics of materials at a nano-scale and/or micro-scale.

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