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2.8 Origami and Polyhedral Systems
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Kapitel in diesem Buch
- Frontmatter 1
- Acknowledgments 5
- Contents 7
- SUMMARY 8
- INTRODUCTION 10
-
1 STRUT-BASED FUNICULAR STRUCTURES
- 1.1 Spatial Concrete Column 26
- 1.2 Columns, Topology, Volume, Load Path 40
- 1.3 Saltatur: Composite Funicular Structure For Reassembly 46
- 1.4 Hedracrete: Self-Supporting Funicular Branching Concrete 68
- 1.5 Compression-Only Floors Spanning Columns 80
- 1.6 Prototyping 3D-Printed Compression-Dominant Funicular Floors Using Scaled Fabrication Models 88
- 1.7 Litekit House with Prefab Structure 96
- 1.8 Designing Airplane Wing Structures Using 2D Funicular Networks 108
-
2 FACE-BASED FUNICULAR STRUCTURES
- 2.1 Hollow Glass Unit Bridge; Vitrum Leve 120
- 2.2 Multi-Layer Sheet-Based Lightweight Funicular Structures 146
- 2.3 Shellular Structures and Applications in Micro- and Macro-Scale Systems 154
- 2.4 Shellular Polyhedral Materials 162
- 2.5 Bio-Based Composite Spatial Shell Structures 172
- 2.6 Biomaterial Composite Design and Shellular Structures Development for Augmented Earthen Construction 180
- 2.7 Self-Healing of Fractured Shellular Metal Structures 188
- 2.8 Origami and Polyhedral Systems 194
-
3 HYBRID FUNICULAR SYSTEMS
- 3.1 Diamanti: 3D-Printed, Post-Tensioned Concrete Canopy 206
- 3.2 3D-Printed Carbon-Absorbing High-Performance Building Structure 226
- 3.2.1 Design Innovation 230
- 3.3 Prototyping 234
- 3.4 Application of Graphic Statics and Strut-and-Tie Models in Designing Innovative Timber Structures 238
- 3.5 Multi-Material 3D-Printing 248
- 3.6 Dove Wave 258
-
4 THE GENERATIVE POWER OF RECIPROCAL POLYHEDRONS
- 4.1 Future Airport Structure Typologies 266
- 4.2 Mass Timber Studio 284
- 4.3 Florrisant Fossil Beds National Park Lightweight Timber Structure 312
- BIBLIOGRAPHY 324
- AUTHORS 333
- SCIENTIFIC ASSISTANCE 333
- IMPRINT 336
Kapitel in diesem Buch
- Frontmatter 1
- Acknowledgments 5
- Contents 7
- SUMMARY 8
- INTRODUCTION 10
-
1 STRUT-BASED FUNICULAR STRUCTURES
- 1.1 Spatial Concrete Column 26
- 1.2 Columns, Topology, Volume, Load Path 40
- 1.3 Saltatur: Composite Funicular Structure For Reassembly 46
- 1.4 Hedracrete: Self-Supporting Funicular Branching Concrete 68
- 1.5 Compression-Only Floors Spanning Columns 80
- 1.6 Prototyping 3D-Printed Compression-Dominant Funicular Floors Using Scaled Fabrication Models 88
- 1.7 Litekit House with Prefab Structure 96
- 1.8 Designing Airplane Wing Structures Using 2D Funicular Networks 108
-
2 FACE-BASED FUNICULAR STRUCTURES
- 2.1 Hollow Glass Unit Bridge; Vitrum Leve 120
- 2.2 Multi-Layer Sheet-Based Lightweight Funicular Structures 146
- 2.3 Shellular Structures and Applications in Micro- and Macro-Scale Systems 154
- 2.4 Shellular Polyhedral Materials 162
- 2.5 Bio-Based Composite Spatial Shell Structures 172
- 2.6 Biomaterial Composite Design and Shellular Structures Development for Augmented Earthen Construction 180
- 2.7 Self-Healing of Fractured Shellular Metal Structures 188
- 2.8 Origami and Polyhedral Systems 194
-
3 HYBRID FUNICULAR SYSTEMS
- 3.1 Diamanti: 3D-Printed, Post-Tensioned Concrete Canopy 206
- 3.2 3D-Printed Carbon-Absorbing High-Performance Building Structure 226
- 3.2.1 Design Innovation 230
- 3.3 Prototyping 234
- 3.4 Application of Graphic Statics and Strut-and-Tie Models in Designing Innovative Timber Structures 238
- 3.5 Multi-Material 3D-Printing 248
- 3.6 Dove Wave 258
-
4 THE GENERATIVE POWER OF RECIPROCAL POLYHEDRONS
- 4.1 Future Airport Structure Typologies 266
- 4.2 Mass Timber Studio 284
- 4.3 Florrisant Fossil Beds National Park Lightweight Timber Structure 312
- BIBLIOGRAPHY 324
- AUTHORS 333
- SCIENTIFIC ASSISTANCE 333
- IMPRINT 336