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Mechanics of Optimal Structural Design: Minimum Weight Structures Book

Mechanics of Optimal Structural Design: Minimum Weight Structures
Mechanics of Optimal Structural Design: Minimum Weight Structures, In a global climate where engineers are increasingly under pressure to make the most of limited resources, there are huge potential financial and environmental benefits to be gained by designing for minimum weight. With <i>Mechanics of Optimal Structural , Mechanics of Optimal Structural Design: Minimum Weight Structures has a rating of 3 stars
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Mechanics of Optimal Structural Design: Minimum Weight Structures, In a global climate where engineers are increasingly under pressure to make the most of limited resources, there are huge potential financial and environmental benefits to be gained by designing for minimum weight. With Mechanics of Optimal Structural , Mechanics of Optimal Structural Design: Minimum Weight Structures
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  • Mechanics of Optimal Structural Design: Minimum Weight Structures
  • Written by author David Rees
  • Published by Wiley, John & Sons, Incorporated, December 2009
  • In a global climate where engineers are increasingly under pressure to make the most of limited resources, there are huge potential financial and environmental benefits to be gained by designing for minimum weight. With Mechanics of Optimal Structural
  • In a global climate where engineers are increasingly under pressure to make the most of limited resources, there are huge potential financial and environmental benefits to be gained by designing for minimum weight. With Mechanics of Optimal Structural
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Ch. 1 Compression of Slender Struts 1

Ch. 2 Compression of Wide Struts 29

Ch. 3 Bending of Slender Beams 65

Ch. 4 Torsion of Bars and Tubes 91

Ch. 5 Shear of Solid Bars, Tubes and Thin Sections 135

Ch. 6 Combined Shear and Torsion in Thin-Walled Sections 173

Ch. 7 Combined Shear and Bending in Idealised Sections 193

Ch. 8 Shear in Stiffened Webs 223

Ch. 9 Frame Assemblies 239

Ch. 10 Simply Supported Beams and Cantilevers 265

Ch. 11 Optimum Cross-Sections for Beams 325

Ch. 12 Structures under Combined Loading 357

Ch. 13 Encastre Beams 403

Ch. 14 Plastic Collapse of Beams and Frames 465

Ch. 15 Dynamic Programming 511

App. A Mechanical Properties 521

App. B Plate Buckling Under Uniaxial Compression 525

App. C Plate Buckling Under Biaxial Compression and Shear 537

App. D Secondary Buckling 543

Bibliography 549

Index 553


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