Title
Platener: Low-Fidelity Fabrication of 3D Objects by Substituting 3D Print with Laser-Cut Plates
Abstract
This paper presents Platener, a system that allows quickly fabricating intermediate design iterations of 3D models, a process also known as low-fidelity fabrication. Platener achieves its speed-up by extracting straight and curved plates from the 3D model and substituting them with laser cut parts of the same size and thickness. Only the regions that are of relevance to the current design iteration are executed as full-detail 3D prints. Platener connects the parts it has created by automatically inserting joints. To help fast assembly it engraves instructions. Platener allows users to customize substitution results by (1) specifying fidelity-speed tradeoffs, (2) choosing whether or not to convert curved surfaces to plates bent using heat, and (3) specifying the conversion of individual plates and joints interactively. Platener is designed to best preserve the fidelity of func-tional objects, such as casings and mechanical tools, all of which contain a large percentage of straight/rectilinear elements. Compared to other low-fab systems, such as faBrickator and WirePrint, Platener better preserves the stability and functionality of such objects: the resulting assemblies have fewer parts and the parts have the same size and thickness as in the 3D model. To validate our system, we converted 2.250 3D models downloaded from a 3D model site (Thingiverse). Platener achieves a speed-up of 10 or more for 39.5% of all objects.
Year
DOI
Venue
2015
10.1145/2702123.2702225
CHI
Keywords
Field
DocType
building blocks,3d printing,user interfaces,physical prototyping,rapid prototyping
Rapid prototyping,Fidelity,Engineering drawing,Computer science,Simulation,Bent molecular geometry,Laser,Human–computer interaction,3D printing,Low fidelity,Fabrication,3d print
Conference
Citations 
PageRank 
References 
24
1.46
12
Authors
5
Name
Order
Citations
PageRank
Dustin Beyer1241.46
Serafima Gurevich2241.46
Stefanie Mueller335840.04
Hsiang-Ting Chen4888.49
Patrick Baudisch54611263.11