OSME 7 - Volume 4
eBook - PDF

OSME 7 - Volume 4

Engineering Two

  1. 386 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

OSME 7 - Volume 4

Engineering Two

About this book

Explore the innovative intersection of origami and engineering! This collection presents cutting-edge research on applying origami principles to solve complex engineering challenges. Edited by Robert J. Lang, Mark Bolitho, and Zhong You, this volume delves into the diverse applications of origami in technology, design, and history.

OSME 7 - Volume 4: Engineering Two showcases research on diverse folding applications, from reinforcing tube strength to developing space sails and robotic systems. Discover how origami's unique properties are being harnessed to create stronger, more efficient, and adaptable structures. Explore the mechanical properties of the Miura fold, curved folding, and tessellations, and unlock the potential of this ancient art in modern engineering.

Target Audience: Engineers, scientists, mathematicians, educators, and origami enthusiasts interested in the latest advancements in origami-inspired engineering.

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Information

Publisher
Tarquin Group
Year
2021
eBook ISBN
9781858118390
Edition
0

Table of contents

  1. Cover
  2. Title
  3. Copyright
  4. Origami7 Volume 4 Contents
  5. Origami7 General Preface
  6. Origami7 Volume Four Preface
  7. Producing Various Shapes of 3D Cell Co-culture Microstructures using a Single Cell OrigamiTechnique
  8. Singular Behaviour on Folding Path Characterised by Rigid Foldability Analysis
  9. Automated Numerical Process Chain for the Design of Folded Sandwich Cores
  10. Spherical Image Analysis for Folding Templates
  11. Kinematic and Kinetostatic Classification for Motion-Task-Oriented Synthesis of Folding Mechanisms
  12. Origami Sensitivity – On the Influence of Vertex Geometry
  13. On Using Tessellation Properties for the Development of Classifying Criteria for Foldable Mechanisms
  14. Simulating Pleated Tension Folds
  15. Modelling the Folding Motions of a Curved Fold
  16. Fast, Interactive Origami Simulation using GPU Computation
  17. Highly Efficient Nonlinear Structural Analysis of Origami Assemblages using the MERLIN2 Software
  18. Rigid-facet Kinematics Coupled with Finite Bending Rotation along Crease Lines
  19. Quasi-static Crushing Behaviours of Folded Opentop Truncated Pyramid Structures with Interconnected Side Walls
  20. Blast Resistant Performance of Cladding with Folded Open-top Truncated Pyramid Structures as Core
  21. The Potential of Stress Oriented Foldings
  22. Local Actuation of Tubular Origami
  23. Elastic Buckling of Thin-walled Cylinders with Pre-embedded Diamond Patterns
  24. Reality Check - Mechanical Potential of Tessellation-based Foldcore Materials
  25. Design Methods and Analysis of the Mechanical Properties of Resch Pattern Foldcores
  26. The Mechanics of Metallic Folds
  27. Crease Pattern Simplification for Automatic Folding
  28. Folding Fabrication of Curved-Crease Origami Spindle Beams
  29. Fold Printing: Using Digital Fabrication of Multi-Materials for Advanced Origami Prototyping
  30. Kirigami Fabrication of Shaped, Flat-foldable Cellular Materials based on the Tachi-Miura Polyhedron
  31. The Editors of Origami7
  32. 7OSME Sponsors and Supporting Partners
  33. Acknowledgements
  34. Engineering Contributors
  35. Origami7 Index
  36. Back Cover

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Yes, you can access OSME 7 - Volume 4 by Robert Lang in PDF and/or ePUB format. We have over one million books available in our catalogue for you to explore.