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1. Introduction.- 1.1 Substructure techniques in the dynamics of large flexible structures.- 1.2 Remarks on the mechanical impedance and on the dynamic stiffness of elastic systems.- 2. General considerations on the mechanical impedance and on the dynamic stiffness of plates.- 2.1 The classical plate theory.- 2.2 Plate impedances and the reduced multipoint impedance matrix.- 2.3 Singularities in Kirchhoff plates.- 2.4 Literature survey on plate vibrations.- 3. Dynamic stiffness of rectangular plates.- 3.1 Symmetric and antisymmetric vibrations.- 3.2 The method of superposition.- 3.3 Plate…mehr

Produktbeschreibung
1. Introduction.- 1.1 Substructure techniques in the dynamics of large flexible structures.- 1.2 Remarks on the mechanical impedance and on the dynamic stiffness of elastic systems.- 2. General considerations on the mechanical impedance and on the dynamic stiffness of plates.- 2.1 The classical plate theory.- 2.2 Plate impedances and the reduced multipoint impedance matrix.- 2.3 Singularities in Kirchhoff plates.- 2.4 Literature survey on plate vibrations.- 3. Dynamic stiffness of rectangular plates.- 3.1 Symmetric and antisymmetric vibrations.- 3.2 The method of superposition.- 3.3 Plate connected at center.- 3.4 Plate connected at a point on a line of symmetry.- 3.5 Plate connected at an arbitrary point.- 3.6 On the reduced multipoint stiffness and impedance matrices.- 3.7 Comparison with experiments.- 3.8 Conclusions.- 4. Final remarks.- 5. Literature.
Autorenporträt
Professor Peter Hagedorn vertritt an der Technischen Universität Darmstadt das Fach Technische Mechanik in Lehre und Forschung. Er hält seit mehreren Jahrzehnten Vorlesungen über Technische Mechanik und über Technische Schwingungslehre für Hörer unterschiedlicher Fachrichtungen.