Mathematical Models of Beams and Cables

Nonfiction, Science & Nature, Technology, Drafting & Mechanical Drawing
Cover of the book Mathematical Models of Beams and Cables by Angelo Luongo, Daniele Zulli, Wiley
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Author: Angelo Luongo, Daniele Zulli ISBN: 9781118577639
Publisher: Wiley Publication: December 2, 2013
Imprint: Wiley-ISTE Language: English
Author: Angelo Luongo, Daniele Zulli
ISBN: 9781118577639
Publisher: Wiley
Publication: December 2, 2013
Imprint: Wiley-ISTE
Language: English

Nonlinear models of elastic and visco-elastic onedimensional continuous structures (beams and cables) are formulated by the authors of this title. Several models of increasing complexity are presented: straight/curved, planar/non-planar, extensible/inextensible, shearable/unshearable, warpingunsensitive/ sensitive, prestressed/unprestressed beams, both in statics and dynamics. Typical engineering problems are solved via perturbation and/or numerical approaches, such as bifurcation and stability under potential and/or tangential loads, parametric excitation, nonlinear dynamics and aeroelasticity.

Contents

  1. A One-Dimensional Beam Metamodel.
  2. Straight Beams.
  3. Curved Beams.
  4. Internally Constrained Beams.
  5. Flexible Cables.
  6. Stiff Cables.
  7. Locally-Deformable Thin-Walled Beams.
  8. Distortion-Constrained Thin-Walled Beams.
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Nonlinear models of elastic and visco-elastic onedimensional continuous structures (beams and cables) are formulated by the authors of this title. Several models of increasing complexity are presented: straight/curved, planar/non-planar, extensible/inextensible, shearable/unshearable, warpingunsensitive/ sensitive, prestressed/unprestressed beams, both in statics and dynamics. Typical engineering problems are solved via perturbation and/or numerical approaches, such as bifurcation and stability under potential and/or tangential loads, parametric excitation, nonlinear dynamics and aeroelasticity.

Contents

  1. A One-Dimensional Beam Metamodel.
  2. Straight Beams.
  3. Curved Beams.
  4. Internally Constrained Beams.
  5. Flexible Cables.
  6. Stiff Cables.
  7. Locally-Deformable Thin-Walled Beams.
  8. Distortion-Constrained Thin-Walled Beams.

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