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Innovative Shear Design Book

Innovative Shear Design
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Innovative Shear Design, Structures subjected to static and dynamic loading can fail due to diagonal cracking of a structural member. Design of concrete, steel and timber structures to resist shearing forces is therefore an important consideration for the structural engineer., Innovative Shear Design
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Digital Copy
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1 available   for $210.00
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  • Innovative Shear Design
  • Written by author Hrista Stamenkovic
  • Published by Taylor & Francis, Inc., 2/21/2002
  • Structures subjected to static and dynamic loading can fail due to diagonal cracking of a structural member. Design of concrete, steel and timber structures to resist shearing forces is therefore an important consideration for the structural engineer.
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Book Categories

Authors

Preface
Foreword
1 Introduction 1
2 Mechanism of diagonal failure of a reinforced concrete beam 6
3 Practical applications of the new theory: the fallacy of the truss analogy theory for reinforced concrete beams 73
4 Mechanism of vibrating fatigue failure of a reinforced concrete beam or any other member (a quantitative point of view) 93
5 A triangularly reinforced shear wall can resist higher lateral forces better than an ordinary shear wall 114
6 Mechanism of deformation of the horizontal membrane exposed to lateral forces 202
7 Combined conclusions 211
App. 1 The existence of internal active and internal resisting forces and the new law of physics 218
Index 229


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Innovative Shear Design, Structures subjected to static and dynamic loading can fail due to diagonal cracking of a structural member. Design of concrete, steel and timber structures to resist shearing forces is therefore an important consideration for the structural engineer., Innovative Shear Design

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Innovative Shear Design, Structures subjected to static and dynamic loading can fail due to diagonal cracking of a structural member. Design of concrete, steel and timber structures to resist shearing forces is therefore an important consideration for the structural engineer., Innovative Shear Design

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