In this paper, we present a series of case studies of origami-like geometries modelled and animated following the principles of the synthetic method applied through parametric modelling applications. The aim of this research is to analyze the benefits and criticalities of the proposed method in the field of applied origami design. The presented method will be compared with the algebraic-based analytical approach highlighting the strengths and weaknesses of both methods. This paper is based on the PhD thesis of the last Author and we present a selection of the most interesting generative algorithms we have studied and designed
Origami, the Japanese art of paper folding, has been used previously to inspire engineering solution...
This paper proposes a computational form-finding method for integrating parametric origami design an...
Abstract Flat-foldable origami tessellations are periodic geometric designs that can ...
In this paper, we present a series of case studies of origami-like geometries modelled and animated ...
While origami is an ancient art form, its application in engineering science has only been populariz...
Origami, the ancient art of paper folding, embodies techniques for transforming a flat sheet of pape...
Lightweight, deployable, and reusable structures attracted increasing at-tention over the years in t...
Abstract Origami tessellations can be folded from a given planar pattern into a three...
Origami geometric design is fundamental to many engineering applications of origami structures. This...
Over the past 20 years, the world of origami has been changed by the introduction of design algorith...
This work harnesses interpretable machine learning methods to address the challenging inverse design...
Folding strategies in architecture have been explored since the 1990s - if not before - as a method ...
Origami is the art of folding paper. Traditionally, origami models have been recorded as a sequence...
The elegant and simple idea of using origami to create 3D structures from 2D surfaces is suitable fo...
We propose a construction of 3D origami model of mansard roofs, using interactive approaches betwee...
Origami, the Japanese art of paper folding, has been used previously to inspire engineering solution...
This paper proposes a computational form-finding method for integrating parametric origami design an...
Abstract Flat-foldable origami tessellations are periodic geometric designs that can ...
In this paper, we present a series of case studies of origami-like geometries modelled and animated ...
While origami is an ancient art form, its application in engineering science has only been populariz...
Origami, the ancient art of paper folding, embodies techniques for transforming a flat sheet of pape...
Lightweight, deployable, and reusable structures attracted increasing at-tention over the years in t...
Abstract Origami tessellations can be folded from a given planar pattern into a three...
Origami geometric design is fundamental to many engineering applications of origami structures. This...
Over the past 20 years, the world of origami has been changed by the introduction of design algorith...
This work harnesses interpretable machine learning methods to address the challenging inverse design...
Folding strategies in architecture have been explored since the 1990s - if not before - as a method ...
Origami is the art of folding paper. Traditionally, origami models have been recorded as a sequence...
The elegant and simple idea of using origami to create 3D structures from 2D surfaces is suitable fo...
We propose a construction of 3D origami model of mansard roofs, using interactive approaches betwee...
Origami, the Japanese art of paper folding, has been used previously to inspire engineering solution...
This paper proposes a computational form-finding method for integrating parametric origami design an...
Abstract Flat-foldable origami tessellations are periodic geometric designs that can ...