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State of the art on stylized fabrication
Authors
Akleman
Arpa
+106 more
Bermano
Bian
Bickel
Bächer
Chen
Chen
Chen
Cignoni
Cignoni
Dumas
Echevarria
Elber
Garg
Gauge
Guseinov
Gür
Hildebrand
Holroyd
Hong
Huang
Hudson
Hullin
Iarussi
Igarashi
Ji
Kerber
Kilian
Kilian
Kiser
Kovacs
Kozaki
Kuo
Leow
Li
Li
Lo
Luo
Lévy
Martínez
Martínez
Massarwi
McCann
McCrae
McCrae
Miguel
Mitani
Mitra
Mori
Mori
Mueller
Neumüller
Panetta
Papas
Papas
Peng
Pereira
Pietroni
Polo-Blanco
Pérez
Reichinger
Richter
Ruiz
Sareen
Schumacher
Schwartzburg
Schwartzburg
Schwartzburg
Schüller
Segerman
Shatz
Skouras
Skouras
Skouras
Song
Song
Stava
Stussak
Sun
Sun
Tachi
Tachi
Tachi
Takezawa
Tao
Testuz
Tibbits
Umetani
Umetani
Umetani
Umetani
Vierling-Claassen
Waßmann
Weyrich
Weyrich
Wu
Xin
Yu
Yue
Yue
Yue
Zehnder
Zhang
Zhang
Zhao
Zimmer
Zimmer
Publication date
1 January 2018
Publisher
'Association for Computing Machinery (ACM)'
Doi
Cite
Abstract
© 2019 Copyright held by the owner/author(s). Digital fabrication devices are powerful tools for creating tangible reproductions of 3D digital models. Most available printing technologies aim at producing an accurate copy of a tridimensional shape. However, fabrication technologies can also be used to create a stylistic representation of a digital shape. We refer to this class of methods as stylized fabrication methods. These methods abstract geometric and physical features of a given shape to create an unconventional representation, to produce an optical illusion, or to devise a particular interaction with the fabricated model. In this course, we classify and overview this broad and emerging class of approaches and also propose possible directions for future research
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info:doi/10.1111%2Fcgf.13327
Last time updated on 25/01/2021