Integrated Workflows: Generating Feedback Between Digital and Physical Realms
As design thinking shifted away from conventional methods with the rapid adoption of computer-aided design and fabrication technologies, architects have been seeking ways to initiate a comprehensive dialogue between the virtual and the material realms. Current methodologies do not offer embodied workflows that utilize the feedback obtained through a subsequent transition process between physical and digital design. Therefore, narrowing the separation between these two platforms remains as a research problem. This literature review elaborates the divide between physical and digital design, testing and manufacturing techniques in the morphological process of architectural form. We first review the digital transformation in the architectural design discourse. Then, we proceed by introducing a variety of methods that are integrating digital and physical workflows and suggesting an alternative approach. Our work unveils that there is a need for empirical research with a focus on integrated approaches to create intuitively embodied experiences for architectural designers.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 75%
Fabricaide: Fabrication-Aware Design for 2D Cutting Machines
CHI '21· Desktop 3D Printing & Personal Fabrication +1
- 75%
CeraMetal: A New Approach to Low-Cost Metal 3D Printing with Bronze Clay
CHI '24· Desktop 3D Printing & Personal Fabrication +1
- 75%
Speed-Modulated Ironing: High-Resolution Shade and Texture Gradients in Single-Material 3D Printing
UIST '24· Desktop 3D Printing & Personal Fabrication +1
- 60%
RoMA: Interactive Fabrication with Augmented Reality and a Robotic 3D Printer
CHI '18· 3D Modeling & Animation +2
- 60%
LaserFactory: An Electromechanical Assembly and Fabrication Platform Integrated with a Laser Cutter to Make Functional Devices and Robots
CHI '21· Desktop 3D Printing & Personal Fabrication +2
- 60%
FlexTruss: A Computational Threading Method for Multi-material, Multi-form and Multi-use Prototyping
CHI '21· Desktop 3D Printing & Personal Fabrication +1
- 60%
Uniquely Shaped Spaces: Object-Driven Algorithmic Shelf Design and Fabrication
CHI '26· Desktop 3D Printing & Personal Fabrication +2
- 60%
StackMold: Rapid Prototyping of Functional Multi-Material Objects with Selective Levels of Surface Details
UIST '19· Desktop 3D Printing & Personal Fabrication +2
- 60%
AirTied: Automatic Personal Fabrication of Truss Structures
UIST '23· Desktop 3D Printing & Personal Fabrication +2
Based on Jaccard similarity of research subtopics & professions (≥60%)