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Eschenauer H., Olhoff N., Schnell W. — Applied structural mechanics : fundamentals of elasticity, load-bearing structures, structural optimization
Eschenauer H., Olhoff N., Schnell W. — Applied structural mechanics : fundamentals of elasticity, load-bearing structures, structural optimization



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Название: Applied structural mechanics : fundamentals of elasticity, load-bearing structures, structural optimization

Авторы: Eschenauer H., Olhoff N., Schnell W.

Аннотация:

In view of the growing importance of product liability and the demand for fulfillment of extreme specifications for new products, this book provides the basic tools for establishing model equations in structural mechanics. Additionally, it illustrates the transition and interrelation between structural mechanics and structural optimization. Nowadays, this new direction is extremely important for more efficiency in the design process. The book is divided into four parts covering the fundamentals of elasticity, plane and curved load-bearing structures and structural optimization. Each part contains numerous problems and solutions, which will provide the student with the basic tools from the field of elasticity theory and assist the professional engineer in solving problems.


Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1996

Количество страниц: 389

Добавлена в каталог: 16.10.2005

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Surface, translation      203
Symmetrical tensors of second order      11
Temperature field, stationary      128
Temperature gradient, plate      102
Tensor      114
Tensor displacement derivatives      27 28
Tensor second order, divergence of      15
Tensor second order, physical components      11
Tensor second order, symmetrical      11
Tensor thermo-elastic      33
Tensor, covariant metric      203 248
Tensor, curvature      204
Tensor, curvature, determinant of      205
Tensor, eigenvectors of a symmetrical      12
Tensor, elasticity      213
Tensor, first order      5 7 10
Tensor, higher order      10
Tensor, metric      13
Tensor, normal forces      212
Tensor, permutation      12
Tensor, second order      5 10 15
Tensor, second order, antisymmetrical      11
Tensor, strain      29 74
Tensor, stress      20
Tensor, surface      203 247
Tensor, zeroth order      5
Theory of structures, method      228 277 347
Thermal expansion coefficient      32 34
Three-Columns—Concept      309
topology      303
Total potential energy      272
Total potential, virtual      44
Total work of single force      40
Trade-off method      328 352
Transfer matrix method      228ff
Transformation behaviour      9
Transformation of bases      9
Transformation of tensor of first order      10
Transformation, coefficients      22ff
Transformation, matrix      22 53 69
Transformation, principal axes      12
Transformation, rules      9 11
Translation shells, equilibrium conditions      218
Translation surface      203
Truss structure      342
Tube, circular cylindrical      283
UD-layer, material law      37
Unconstrained mathematical form      356
Unconstrained problem      307
Unit-Load-method      46
Variational calculus, fundamental lemma      330
Variational functional      115
Variational functional principle      80
Variational functional problem      46 333
Vector      5 7
Vector objective function      326
Vector optimization      325
Vector Optimization Problem      325 353
Vector product      12
Vector, angle between      8
Vector, base      7 13
Vector, displacement      27
Vector, divergence      15
Vector, gradient      15
Vector, length      8
Vector, load      230
Vector, rotation      15
Vector, state      229 231
Vector, stress      18 19
Vibrating uniform beam      170
Vibrating uniform beam, circular cylindrical shell      290
Vibrating uniform beam, rectangular plate      103 105
Vibrating uniform beam, shallow shell      296
Virtual displacements, principle      44 80
Virtual forces, principle      44
Virtual total potential      44
Volume dilatation      31 74
Volume element      14
Volume forces, potential      93
VON KARMAN's differential equation      117 196
VON MISES ' hypothesis      351
Water tank      272
Work, external      42
Yield point      32
Young's modulus      32 37 94
1 2 3
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