
Polyhedral Graphical Statics
For Funicular Structural Form Finding
Masoud Akbarzadeh(Author)
Cambridge University Press
Published on 20. March 2025
Book
Hardback
585 pages
978-1-108-49473-1 (ISBN)
Description
Polyhedral Graphic Statics is a geometry-based structural design method based on polyhedral reciprocal diagrams first proposed by Rankine and Maxwell 150 years ago. Providing a unique design guide for structural form finding of efficient spatial structures, this book offers up-to-date insights into the field of geometry-based structural design. The author introduces a different design domain, the force domain, and explains the relationship between the geometry of efficient structural forms and the geometric equilibrium of forces called the force diagram. Beginning with step-by-step geometric methods to construct the reciprocal force diagram for simple structural forms, the book then advances to more articulated systems. These include spatial compression-only forms and systems with mixed tensile and compressive forces. Presenting computational applications, the text provides algebraic formulation for form finding in 3D. Discover the applications of this pioneering method in Material Science, Mechanical Engineering, Aerospace, and the design of carbon-absorbing structures.
More details
Language
English
Place of publication
Cambridge
United Kingdom
Illustrations
Worked examples or Exercises
Dimensions
Height: 250 mm
Width: 175 mm
Thickness: 36 mm
Weight
1177 gr
ISBN-13
978-1-108-49473-1 (9781108494731)
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Schweitzer Classification
Person
Masoud Akbarzadeh is an Assistant Professor of Architecture in Structures and Building Technologies and the Director of the Polyhedral Structures Laboratory (PSL). In 2020, he received the National Science Foundation CAREER Award to extend the methods of 3D/Polyhedral Graphic Statics for Education, Design, and Optimization of High-Performance Structures.
Content
Preface; A brief history; 1. Equilibrium of a single node; 2. Equilibrium of a system of forces; 3. Compression-only form finding; 4. Designing the force diagrams for articulated compression only forms; 5. Systems with combined tensions and compression; 6. Geometric degrees of freedom and statically indeterminate funicular networks; 7. Algebraic formulation for polyhedral graphic statics; 8. Broader applications of polyhedral graphic statics.