2 edition of **Mechanics of structural elements** found in the catalog.

Mechanics of structural elements

Vladimir I. Slivker

- 11 Want to read
- 8 Currently reading

Published
**2007** by Springer in Berlin, New York .

Written in English

- Structural analysis (Engineering) -- Mathematical models.,
- Constructions, Théorie des -- Modèles mathématiques.

**Edition Notes**

Statement | V. Slivker. |

Series | Foundations of engineering mechanics |

Classifications | |
---|---|

LC Classifications | TA646 .S58 2007 |

The Physical Object | |

Pagination | xxvii, 786 p. : |

Number of Pages | 786 |

ID Numbers | |

Open Library | OL19470270M |

ISBN 10 | 3540447180 |

ISBN 10 | 9783540447184 |

LC Control Number | 2006932401 |

Method of Finite Elements I • Within the framework of continuum mechanics dependencies between geometrical and physical quantities are formulated on a differentially small element and then extended to the whole continuum • As a result we obtain differential, partial differential or integral equations for which, generally, an analyticalFile Size: 1MB. * Explains the physical meaning of linear and nonlinear structural mechanics. * Shows how to perform nonlinear structural analysis. * Points out important nonlinear structural dynamics behaviors. * Provides ready-to-use governing equations. The work contains a detailed representation of the mechanics of composite materials and structural elements as the field exists today, including non-linear material models (elasticity, plasticity, creep) and structural nonlinearity, discussion of the material micro- and macro- mechanics (stress diffusion, coupling effects, etc.) and material.

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The book systematically presents variational principles and methods of analysis for applied elasticity and structural mechanics. The variational approach is used consistently for both, constructing numerical procedures and deriving basic governing equations of applied mechanics of solids; it is the derivation of equations where this approach is most powerful and best grounded by mathematics.

The book is close to classical courses of "Strength of Materials" and "Theory of Beams, Plates and Shells" but it extends the classic content on two topics: the linear elastic material behavior of isotropic and non-isotropic structural elements, and inhomogeneous material properties in the thickness : Hardcover.

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