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Sadd M.H. — Elasticity: theory, applications, and numerics
Sadd M.H. — Elasticity: theory, applications, and numerics



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Название: Elasticity: theory, applications, and numerics

Автор: Sadd M.H.

Аннотация:

Although there are several books in print dealing with elasticity, many focus on specialized topics such as mathematical foundations, anisotropic materials, two-dimensional problems, thermoelasticity, non-linear theory, etc. As such they are not appropriate candidates for a general textbook. This book provides a concise and organized presentation and development of general theory of elasticity. Complemented by a Solutions Manual and including MatLab codes and coding, this text is an excellent book teaching guide.


Язык: en

Рубрика: Физика/Классическая физика/Упругие среды/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 2005

Количество страниц: 461

Добавлена в каталог: 18.06.2005

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Stiffness matrix      420
Stoke's theorem      18
Strain compatibility      37 46
Strain energy      103
Strain energy forms: distortional      107
Strain energy forms: general      106
Strain energy forms: volumetric      107
Strain gage      44 79
Strain tensor      29
Strain tensor, deviatoric strains      36
Strain tensor, extensional strains      31
Strain tensor, principal strains      35
Strain transformation      34
Strain-displacement relations, Cartesian      32 438
Strain-displacement relations, cylindrical      42 438
Strain-displacement relations, polar      47
Strength of materials theory      67 116
Stress concentration factor, circular hole (BEM Solution)      434
Stress concentration factor, circular hole (elasticity with voids case)      399
Stress concentration factor, circular hole (FEM solution)      425
Stress concentration factor, circular hole (micropolar case)      393
Stress concentration factor, circular hole (plane elastic case)      163 166 167
Stress concentration factor, elliptical hole (FEM solution)      426
Stress concentration factor, elliptical hole (plane problem)      272
Stress functions      363
Stress intensity factor      181 277 314 315
Stress tensor (Cauchy)      51
Stress tensor (Cauchy): deviatoric stresses      58
Stress tensor (Cauchy): normal stresses      52
Stress tensor (Cauchy): octahedral stresses      65
Stress tensor (Cauchy): principal stresses      55
Stress tensor (Cauchy): shear stresses      52
Stress tensor (Cauchy): spherical stresses      58
Stress tensor (Piola — Kirchhoff)      53
Stress transformation      54
Stress vector      51
Summation convention      5
Superposition principle      91
Surface forces      49
Symmetric tensors      5
Taylor's series      249
Temperature      78
Tensor definition      9
Tensor product      10
Tensor transformation      9
thermal conductivity      320
Thermal conductivity tensor      319
Thermal expansion coefficient      78 320
Thermal fracture      341
Thermoelastic displacement potential solution      325
Thermoelastic plane strain formulation      322
Thermoelastic plane stress formulation      323
Torsion of cylinders: anisotropic formulation      292
Torsion of cylinders: displacement formulation      208
Torsion of cylinders: elliptical section      213
Torsion of cylinders: equilateral triangular section      216
Torsion of cylinders: general formulation      203
Torsion of cylinders: multiply connected sections      209 223
Torsion of cylinders: rectangular section      219
Torsion of cylinders: stress formulation      204
Torsion of cylinders: thin rectangular sections      222
Torsion of cylinders: thin-walled sections      225
Torsion of cylinders: variable diameter      227
Torsional rigidity      208
Traction vector      51
Transformation matrix      8
Transformation of field variables      442
Transversely isotropic materials      288
Triangular element      416
Uncoupled conduction equation      320
Uncoupled thermoelastic formulation      321
Uniaxial (simple) tension      70 74 109
Uniqueness theorem      108
Unit matrix      6
Variational methods      114
Vector notation      3
Vector products      15
Velocity field      320
Virtual displacements      112
Virtual work formulation for finite element method      418
Virtual work principle      112
Volume fraction      397
Volumetric deformation      76
Warping displacement      203
Wedge problems      167
Weighted residual method      120
Westergaard stress function      272 275
Yield point      70
Young's modulus      74 77
Zero-value theorem      19
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