The complete book of origami polyhedra

Tomoko Fuse, 1951-

Book - 2021

"Learn to fold incredible geometric origami models from "The Queen of Modular Origami!" In this book, Tomoko Fuse - Japan's most famous living origami artist - shows you how to create amazing polyhedral models using the techniques of modular origami (where many paper sheets are folded then locked together without glue or tape). Make 64 intriguing modular models, including: Stackable Modules - The perfect starting point for novices, these simple constructions result in stunning three-dimensional forms. 3-D Stars - Dazzling decorative starbursts that look great on a Christmas tree, on your mantle - or even in an art gallery. Manifold Modulars - "Inception-like" models in which individual modular constructions the...mselves become modules within a larger piece. Cubes and Boxes - Perfect for gift giving - and there is no finer teacher for these than renowned origami box specialist Tomoko Fuse. And many more!"--Publisher's description.

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Subjects
Published
North Clarendon, VT : Tuttle Publishing [2021]
Language
English
Main Author
Tomoko Fuse, 1951- (author)
Other Authors
Makiko Itoh (translator)
Item Description
"Learn modular origami from Japan's leading master!"--Cover.
Physical Description
95 pages : illustrations ; 28 cm
ISBN
9784805315941
  • Polyhedra Are Cool!
  • A Guide to Origami Folding Symbols
  • Part 1. Simple Wireframe Objects
  • How to Make Basic Wireframe Units
  • Basic Cube (12 Units)
  • Chained Cubes (48 Units)
  • A Double Cube (20 Units)
  • An L-Shaped Structure (28 Units)
  • Two-Story Building with Roof (25 Units)
  • A Canoe (22 Units)
  • A Snub Cube (60 Units)
  • A Rhombicuboctahedron (48 Units)
  • The UFO (32 Units)
  • How to Make Articulated Wireframe Units
  • Mosaic Cube (12 Units)
  • A Regular Icosahedron (30 Units)
  • Cuboctahedron (24 Units)
  • Rhombicuboctahedron (48 Units)
  • Part 2. Stellated (Star-Shaped) Polyhedra
  • How to Make Stellated (Star-Shaped) Polyhedra
  • How to Make Basic Rose Units A and B
  • Stellated Tetrahedron (6 Units)
  • Stellated Octahedron (12 Units)
  • Stellated Cubes (12 Units, 36 Units)
  • Stellated Icosahedron (30 Units)
  • How to Assemble the Stellated Icosahedron
  • Stellated Dodecahedron (30 Units)
  • Stellated Icosidodecahedron (60 Units)
  • Stellated Cuboctahedron (24 Units)
  • Stellated Cuboctahedra 1 and 2 (48 Units)
  • Stellated Dodecahedron (90 Units)
  • Stellated Truncated Dodecahedron (90 Units)
  • How to Make Sharp Rose Units A and B
  • Stellated Icosahedron (30 Units)
  • Stellated Truncated Tetrahedron (18 Units)
  • Stellated Truncated Tetrahedron (42 Units)
  • How to Make Silver Star Units
  • Stellated Icosahedron (30 Units)
  • Simple Ball (3-7 Units)
  • Football (6-14 Units)
  • Simple Ball from Rose and Sharp Rose Units (3-7 units)
  • Football from Rose and Sharp Rose Units (6-14 units)
  • Part 3. Constructing 3D Forms with Basic Modules
  • How to Make Basic Modules
  • Basic-Module Octahedron
  • How to Make Thick Diagonal Joints
  • How to Make Vertical Joints (Type 1)
  • How to Make Thin Diagonal Joints (Types 1, 2 and 3)
  • How to Make Vertex Joints
  • How to Make Vertical Joints (Type 2)
  • Part 4. Origami Nesting Boxes
  • Traditional Masu Box
  • Masu Box Lid
  • Cubical Base
  • Loose Cube Base
  • Diagonal-Cut Box
  • Self-Covering Box
  • Tall Box
  • Triangular Prism Box
  • Paper Dimensions to Use for Filling a Cube Container (Part 1)
  • Five-Sided Box
  • Packing Five-Sided Boxes Inside a Cube
  • How to Make Equilateral Triangle Units
  • Packing a Stellated Octahedron Inside a Cube
  • Equilateral Triangle Units: Stellated Objects (2, 4 and 10 Units)
  • Bottomless Regular Tetrahedron (from 1 Square)
  • Regular Octahedron (from 1 Square)
  • Slanting 3-Sided Pyramid Box
  • Half-Tetrahedron Box
  • Paper Dimensions to Use for Filling a Cube Container (Part 2)
  • Cube with Flip-up Lid (from 1 Rectangle)
  • Regular Octahedron (from 1 Rectangle)
  • Regular Tetrahedron (from 1 Rectangle)
  • Paper Dimensions to Use for Filling a Cube Container (Part 3)
  • Part 5. Rhombic Polyhedra
  • Dodecahedron Version 1 (12 Units)
  • Dodecahedron Version 2 (12 Units)
  • Triacontahedron (30 Units)
  • Dodecahedron Version 3 (12 Units)
  • Dodecahedron Version 4 (12 Units)