CumInCAD is a Cumulative Index about publications in Computer Aided Architectural Design
supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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Hits 1 to 20 of 515

_id ascaad2007_006
id ascaad2007_006
authors Afify, H.M.N. and Z. A. Abd ElGhaffar
year 2007
title Advanced Digital Manufacturing Techniques (CAM) in Architecture
source Em‘body’ing Virtual Architecture: The Third International Conference of the Arab Society for Computer Aided Architectural Design (ASCAAD 2007), 28-30 November 2007, Alexandria, Egypt, pp. 67-80
summary Building projects today are not only born out digitally, but they are also realized digitally through "file-to-factory" processes of computer aided manufacturing (CAM) and computer numerically controlled (CNC) technologies. It was the challenge of constructability that brought into question, what new instruments of practice are needed to take advantage of the opportunities opened up by the digital modes of production, instead of whether a particular form is buildable. In this case of building construction, architects could design with attention to innovative details, afforded by unique shapes and sizes, knowing that whatever they created on their computer screen could be fabricated digitally for an affordable price. The aims of the research are to discuss and analyze the digital manufacturing techniques (CAM) in architecture and its fabrication, production process. To understand how these technologies fit within a broader context of architectural practice. The research begins with defining, what is digital manufacturing in architecture, its potentials, components and influences in the contemporary architecture. Further more it discusses the digital fabrication, Two- dimensional cutting, subtractive fabrication, additive fabrication and formative fabrication. The assembly technique, building skin, new materials and mass- customization in digital manufacturing techniques (CAM). That will be a hand in analyzing several case studies.
keywords Digital technology in architecture, Digital manufacturing, Formative fabrication, New materials, Fabrication machines and software.
series ASCAAD
email
last changed 2008/01/21 22:00

_id sigradi2008_175
id sigradi2008_175
authors Knight, Terry; Larry Sass, Kenfield Griffith, Ayodh Vasant Kamath
year 2008
title Visual-Physical Grammars
source SIGraDi 2008 - [Proceedings of the 12th Iberoamerican Congress of Digital Graphics] La Habana - Cuba 1-5 December 2008
summary This paper introduces new visual-physical design grammars for the design and manufacture of building assembly systems that provide visually rich, culturally resonant design variations for housing. The building systems are intended to be tailored for particular cultures and communities by incorporating vernacular, decorative design into the assembly design. Two complementary areas of computational design research are brought together in this work: shape grammars and digital fabrication. The visual or graphic aspects of the research are explored through shape grammars. The physical design and manufacturing aspects are explored through advanced digital design and fabrication technologies and, in particular, build on recent work on mono-material assemblies with interlocking components that can be fabricated with CNC machines and assembled easily by hand on-site (Sass, 2007). This paper describes the initial, proof-of-concept stage of this work: the development of an automated, visual-physical grammar for an assembly system based on a vernacular language of Greek meander designs. A shape grammar for the two-dimensional Greek meander language (Knight, 1986) was translated into a three-dimensional assembly system. The components of the system are uniquely designed, concrete “meander bricks” (Figure 1). The components have integrated alignment features so that they can be easily fitted and locked together manually without binding materials. Components interlock horizontally to form courses, and courses interlock vertically in different ways to produce a visual variety of meander walls. The assembly components were prototyped at desktop scale with a layered manufacturing machine to test their appearance after assembly and their potential for design variations (Figure 2). Components were then evaluated as full-scale concrete objects for satisfaction of physical constraints related to concrete forming and component strength. The automated grammar (computer program) for this system generates assembly design variations with complete CAD/CAM data for fabrication of components formed from layered, CNC cut molds. Using the grammar, a full-scale mockup of a corner wall section was constructed to assess the structural, material, and aesthetic feasibility of the system, as well as ease of assembly. The results of this study demonstrate clearly the potentials for embedding visual properties in structural systems. They provide the foundations for further work on assembly systems for complete houses and other small-scale structures, and grammars to generate them. In the long-term, this research will lead to new solutions for economical, easily manufactured housing which is especially critical in developing countries and for post-disaster environments. These new housing solutions will not only provide shelter but will also support important cultural values through the integration of familiar visual design features. The use of inexpensive, portable digital design and fabrication technologies will allow local communities to be active, cooperative participants in the design and construction of their homes. Beyond the specific context of housing, visual-physical grammars have the potential to positively impact design and manufacture of designed artifacts at many scales, and in many domains, particularly for artifacts where visual aesthetics need to be considered jointly with physical or material requirements and design customization or variation is important.
keywords Shape grammar, digital fabrication, building assembly, mass customization, housing
series SIGRADI
email
last changed 2016/03/10 09:54

_id sigradi2011_347
id sigradi2011_347
authors Trevisan Pupo, Regiane; Aranda, Isadora Magdalena
year 2011
title Sentir um quadro [Feeling a painting]
source SIGraDi 2011 [Proceedings of the 15th Iberoamerican Congress of Digital Graphics] Argentina - Santa Fe 16-18 November 2011, pp. 281-284
summary Since 2007, LAPAC - Laboratory of Automation and Prototyping for Architecture and Construction, FEC, UNICAMP, has developed scientific researches in rapid prototyping. With the recent acquisition of a numerical control machine (CNC), LAPAC starts a new line of research, the digital fabrication, which gives the production possibility of real scale objects and its moulds. It is also possible to produce relief surfaces using a wide range of materials. This research?s purpose is to reproduce pictures in relief (2.5D) so that visually impaired and people with subnormal vision can experience art by touch and will reckon on LAB (Laboratory of Accessibility) of UNICAMP.
series SIGRADI
email
last changed 2016/03/10 10:01

_id ecaade2007_226
id ecaade2007_226
authors Agger, Kristian; Lassen, Michael; Knudsen, Nikolaj; Borup, Ruben; Rimestad, Jens; Norholdt, Peter; Bramsen, Nikolaj
year 2007
title B-processor
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 43-50
doi https://doi.org/10.52842/conf.ecaade.2007.043
summary The B-processor is a redesign of the digital building information modelling/managing concept: Addressing the whole building industry participants and all phases in the building process. Offering a new “standard” for digital building information structure with generic modelling and evaluation tools in the B-model kernel. Plug-in structure for free extension of the B-processor system by the Building Industry. Kernel prototyped in Java to be downloaded for free – open source.
keywords Digital applications in construction, digital fabrication and construction, prediction and evaluation, design methodology, generative design
series eCAADe
email
last changed 2022/06/07 07:54

_id ecaade2007_010
id ecaade2007_010
authors Artopoulos, Giorgos; Kourtis, Lampros
year 2007
title The House of Affects Project
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 777-784
doi https://doi.org/10.52842/conf.ecaade.2007.777
summary The House of Affects is an experimental installation to be part of the PerFormaSpace project pursued at the University of Cambridge, UK (DIGIS) and Goldsmiths College London, U.C.L. (Digital Studios), currently partially funded by Arts&Business East 2006, in collaboration with Econavate, UK who will provide their technical expertise in fabrication using recycled materials. This paper presents project-specific information and theoretical discussion on the design process and the computational methods used to develop advanced adaptive structural components in relationship to behavioral goals, criteria and constraints.
keywords Optimization, computational architecture, architectonics, adaptability
series eCAADe
email
last changed 2022/06/07 07:54

_id sigradi2007_af60
id sigradi2007_af60
authors Barrios Hernandez, Carlos Roberto
year 2007
title Cognitive Models for Parametric Design [Modelos Cognitivos para el Diseño Paramétrico]
source SIGraDi 2007 - [Proceedings of the 11th Iberoamerican Congress of Digital Graphics] México D.F. - México 23-25 October 2007, pp. 239-242
summary Parametric models have different uses in architectural design, from design inception to design development, evaluation, performance, and fabrication. This paper introduces five (5) classes of parametric models which can be used in parametric design and presents one example of each class.
keywords Parametric Design; Parametric Modeling; Design Variations; Cognitive Models
series SIGRADI
email
last changed 2016/03/10 09:47

_id ecaade2007_088
id ecaade2007_088
authors Bechthold, Martin
year 2007
title Teaching Technology: CAD/CAM, Parametric Design and Interactivity
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 767-775
doi https://doi.org/10.52842/conf.ecaade.2007.767
summary The paper discusses a project-based approach to technology teaching, and examines the case of the mobile information unit (MIU) for Harvard University and its art museums. A student competition was held to explore design alternatives for this unit. The winning entry proposed an interactive, pixilated fiber-optics display as well as touch screens. Parametric digital modeling was used in the design and design development of the scheme. Research included the study of structural alternatives, fabrication methods and the modes of interaction between users and the MIU.
keywords Computer-aided design and manufacturing, fabrication, simulation, prototype, fiber optics
series eCAADe
email
last changed 2022/06/07 07:54

_id ecaade2007_155
id ecaade2007_155
authors Bonwetsch, Tobias; Bärtschi, Ralph; Kobel, Daniel; Gramazio, Fabio; Kohler, Matthias
year 2007
title Digitally Fabricating Tilted Holes
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 793-799
doi https://doi.org/10.52842/conf.ecaade.2007.793
summary Digital fabrication of building components by means of computer numerically controlled (CNC) machines is of high interest for architects and the building industry. Common design software does not allow for utilizing the potential that lies within these new technologies. To fully exploit the power of digital fabrication, new design paradigms have to be explored. In our design studios we implement direct scripting, the use of images to control parameters, as well as dynamical and rule based systems, which enables the designer to exploit the possibilities of digital fabrication. This paper provides an overview of the tools we developed. We will present some of the results from these classes and discuss its implications for future tool sets. It is essential to apply the knowledge of production methods at the starting point of the design process, in order to fully benefit from these new technologies. We believe that novel design strategies emerge out of this shift in production. Our goal is to integrate the principles of digital fabrication into the design process, resulting in a more valuable and sustainable architecture.
keywords Digital fabrication, CNC, design tools
series eCAADe
email
last changed 2022/06/07 07:54

_id sigradi2023_253
id sigradi2023_253
authors Cavalcanti, Isabella, Teixeira Mendes, Leticia and Albuquerque, Fernando
year 2023
title From Modeling to Collective Digital Fabrication: Experience of the "Banco Cabaça"
source García Amen, F, Goni Fitipaldo, A L and Armagno Gentile, Á (eds.), Accelerated Landscapes - Proceedings of the XXVII International Conference of the Ibero-American Society of Digital Graphics (SIGraDi 2023), Punta del Este, Maldonado, Uruguay, 29 November - 1 December 2023, pp. 543–554
summary This paper presents an experience of collective digital fabrication and parametric modeling of furniture made with recycled plastic waste, inspired by natural elements of the Brazilian northeast. In addition to conventional joinery techniques, we highlight the technologies of rapid prototyping (PR) and digital fabrication (FD) (Volpato, 2007, Pupo, 2008; Pupo, 2009); as tools that promote a paradigm shift, both in the design process and in production and materialization (Kolarevic, 2005), allowing recycled plastic to have new applications. We started with a brief review of digital fabrication processes in Brazil, emphasizing collaboration in design and execution. Then, we contain the recycling of plastic and the need for actions for its best destination. Finally, we present a sustainable and collaborative design experience: the modeling and digital fabrication of furniture, entirely produced from recycled plastic, called “Banco Cabaça”.
keywords Sustainable Design, Digital fabrication, Collaborative process, Parametric modeling, Brazilian design.
series SIGraDi
email
last changed 2024/03/08 14:07

_id cf2007_373
id cf2007_373
authors Chan, Chiu-Shui
year 2007
title Does Color Have Weaker Impact on Human Cognition Than Material?
source Computer Aided Architectural Design Futures / 978-1-4020-6527-9 2007 [Proceedings of the 12th International Conference on Computer Aided Architectural Design Futures / 978-1-4020-6527-9] Sydney (Australia) 11–13 July 2007, pp. 373-384
summary This project intends to develop a method for using virtual reality (VR) to represent a built environment for simulating environmental influences on occupants. Objectives of the project were to explore: (1) what environmental stimuli would affect habitants’ perception, and (2) what possible factors in the built environment would affect occupants’ cognition. An office was selected as the subject of study. Methods were to create a number of digital models, each containing an embedded variable, and then test the impact of environmental influences on visual perception. Results obtained in this study indicate that materials have stronger impact to human perception than colors, and VR has great potential for design decision making and post-occupancy evaluation.
series CAAD Futures
email
last changed 2007/07/06 12:47

_id ecaade2007_217
id ecaade2007_217
authors Duarte, José
year 2007
title Inserting New Technologies in Undergraduate Architectural Curricula
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 423-430
doi https://doi.org/10.52842/conf.ecaade.2007.423
summary This paper describes a set of curricular tools devised to insert new technologies in an undergraduate architectural curriculum. These tools encompass three courses and laboratories with advanced geometric modeling, rapid prototyping, virtual reality, and remote collaboration facilities. The immediate goal was to set up the virtual design studio and enable creative design thinking. The ultimate goal was to fulfill the criteria of intellectual satisfaction, acquisition of specialized professional skills, and contribution for the economic development of society that should underlie university education.
keywords Architecture, education, fabrication, digital media
series eCAADe
email
last changed 2022/06/07 07:55

_id ecaade2008_022
id ecaade2008_022
authors Einar Larsen, Knut; Schindler, Christoph; Scheurer, Fabian; Stori, Simen
year 2008
title The Ringve Botanical Garden Viewing Platform
source Architecture in Computro [26th eCAADe Conference Proceedings / ISBN 978-0-9541183-7-2] Antwerpen (Belgium) 17-20 September 2008, pp. 783-790
doi https://doi.org/10.52842/conf.ecaade.2008.783
summary Since 2006 the Faculty of Architecture of the Norwegian University of Science and Technology (NTNU) has organized the ‘1-2-TRE’ workshops on digital timber fabrication. The annual one-semester courses explore the possibilities and conditions of file-to-factory processes in cooperation with professional carpentries. The 2007 course focused on adding varied simple elements to a complex whole. Within a full semester course, a permanent viewing platform for the Botanical Garden of Trondheim was designed, produced and built by the participating students.
keywords Teaching project 1:1, Industry cooperation, Digital fabrication, CAD/CAM, Ringve Botanical Garden Viewing Platform
series eCAADe
email
last changed 2022/06/07 07:55

_id ecaade2007_098
id ecaade2007_098
authors Heylighen, Ann; Neuckermans, Herman; Wolpers, Martin; Casaer, Mathias; Duval, Erik
year 2007
title Sharing and Enriching Metadata in Architectural Repositories
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 401-408
doi https://doi.org/10.52842/conf.ecaade.2007.401
summary All over the world, students and teachers in architecture have been developing learning materials in various digital formats. Unfortunately, the material is not shared across school boundaries, and thus not exploited to its full extent. Mostly, technical and organisational limitations hamper the sharing and exchange of learning material, although this would benefit the global community of students and teachers in architecture. This paper presents a recently launched EU-initiative called MACE—Metadata for Architectural Contents in Europe—which aims at creating a European-wide space for the electronic descriptions of architectural information to be used in architectural education. The idea is to exchange and enhance the metadata of as many as possible digital repositories in order to allow searches by distant partners. Real access conditions to the data still remain those specific for each repository. By describing and discussing this initiative in its early stage, the paper aims to benefit from the exchange of ideas and experiences with similar initiatives, and to trigger the interest of new repository owners to join MACE.
keywords Digital repositories, metadata, architecture
series eCAADe
email
last changed 2022/06/07 07:50

_id acadia07_040
id acadia07_040
authors Hyde, Rory
year 2007
title Punching Above Your Weight: Digital Design Methods and Organisational Change in Small Practice
source Expanding Bodies: Art • Cities• Environment [Proceedings of the 27th Annual Conference of the Association for Computer Aided Design in Architecture / ISBN 978-0-9780978-6-8] Halifax (Nova Scotia) 1-7 October 2007, 40-47
doi https://doi.org/10.52842/conf.acadia.2007.040
summary Expanding bodies of knowledge imply expanding teams to manage this knowledge. Paradoxically, it can be shown that in situations of complexity—which increasingly characterise the production of architecture generally—the small practice or small team could be at an advantage. This is due to the increasingly digital nature of the work undertaken and artefacts produced by practices, enabling production processes to be augmented with digital toolsets and for tight project delivery networks to be forged with other collaborators and consultants (Frazer 2006). Furthermore, as Christensen argues, being small may also be desirable, as innovations are less likely to be developed by large, established companies (Christensen 1997). By working smarter, and managing the complexity of design and construction, not only can the small practice “punch above its weight” and compete with larger practices, this research suggests it is a more appropriate model for practice in the digital age. This paper demonstrates this through the implementation of emerging technologies and strategies including generative and parametric design, digital fabrication, and digital construction. These strategies have been employed on a number of built and un-built case-study projects in a unique collaboration between RMIT University’s SIAL lab and the award-winning design practice BKK Architects.
series ACADIA
email
last changed 2022/06/07 07:50

_id ascaad2007_053
id ascaad2007_053
authors Islami, S.Y.
year 2007
title Surface-driven architecture: Moving Beyond the Ornament/Structure Opposition
source Em‘body’ing Virtual Architecture: The Third International Conference of the Arab Society for Computer Aided Architectural Design (ASCAAD 2007), 28-30 November 2007, Alexandria, Egypt, pp. 671-682
summary Contemporary architecture has been influenced by a shift of interest from the dialectic Derridean theories of language to those of Deleuze and Guattari who put more emphasis on transitions, experimentation and material presence. New digital design tools as well as new construction materials have opened up more possibilities for architects. E-paper, digital screens, printed concrete, composite polymers and dynamic cladding systems, have allowed designers to relish architecture at the surface level. Moreover, the process of architectural design is shifting from the desktop to the virtual world of the computer. NURBS, Blobs, Metaforms, Isomorphic Surfaces and other complex geometries are now possible using surface-driven computer modelling software. Because of this, the resultant architecture display a much more distinct appreciation and mastery of surface-effects. The following article argues that contemporary architecture is becoming increasingly a process of surfacing, both as a process of revealing and as a process of concealing. Surface, in common parlance, is generally understood as the exterior boundary of things, the outer skin of any object. In this sense, surfaces are actual, material, textural entities that we often encounter first. The surface is also taken to be something that conceals: “it was not what it appeared to be on the surface.” However, it is when things surface that they become evident or apparent; they appear out of a previously concealed existence or latency. Thus, surfacing is a process of becoming explicit, of becoming experientially apparent in a movement from virtuality to actuality. This article argues that the use of emerging computer technologies in architecture, have resulted in a renewed prioritization of surface and surface-effects. It shall be concluded that the surface-driven nature of most contemporary modelling software has resulted in a new approach to architectural design, one that has the potential of subverting the traditional hierarchy between ornament and structure. As a result, this design strategy has allowed for a much more spirited and creative approach to architecture.
series ASCAAD
email
last changed 2008/01/21 22:00

_id sigradi2007_af53
id sigradi2007_af53
authors Klinger, Kevin R.
year 2007
title Information Exchange in Digitally Driven Architecture [El intercambio de información en arquitectura generada digitalmente]
source SIGraDi 2007 - [Proceedings of the 11th Iberoamerican Congress of Digital Graphics] México D.F. - México 23-25 October 2007, pp. 300-304
summary Digital technology has altered modes of architectural production. Software enables architects to create complex digital models and exchange information used to envision, evaluate, simulate, fabricate, and assemble architecture. Digital technology is serving as the key agent for innovation in design, fabrication, and construction. This paper will articulate shifting skill sets necessary for digitally driven architecture and make the case for encouraging effective means of communication and information exchange through case study illustrations and presentation of a specific project developed at Ball State University’s Institute for Digital Fabrication and the Center for Media Design.
keywords Digital exchange; master model; digital fabrication; immersive learning
series SIGRADI
email
last changed 2016/03/10 09:54

_id d939
id d939
authors Marc Aurel Schnabel
year 2007
title 8448cubed
source The Faculty of Architecture, Design and Planning, The University of Sydney, Sydney 2006, NSW, Australia www.arch.usyd.edu.au ISBN: 978-0-9581221-2-2
summary 8448cubed is an architectural design exhibition showcasing creative digital design techniques. It explores how the coupling of architectural designs with digital modelling and manufacturing methods allow for a deeper comprehension and experience of space and form. The core of this collection is held together by the idea of spatial concepts within constraints of a cube 8448 millimetres3 in volume. Materials are creatively cut using computer-aided architectural design tools, parametric design techniques and digital manufacturing processes.
keywords digital modelling, parametric modeling, digital manufacturing, form generation, exhibition
series book
type normal paper
email
more http://8448cubed.tk/
last changed 2007/11/17 16:07

_id ascaad2007_057
id ascaad2007_057
authors Menges, A.
year 2007
title Computational Morphogenesis: Integral Form Generation and Materialization Processes
source Em‘body’ing Virtual Architecture: The Third International Conference of the Arab Society for Computer Aided Architectural Design (ASCAAD 2007), 28-30 November 2007, Alexandria, Egypt, pp. 725-744
summary Natural morphogenesis, the process of evolutionary development and growth, derives polymorphic systems that obtain their complex form, organisation and versatility from the interaction of system intrinsic material capacities and external environmental influences and forces. One striking aspect of natural morphogenesis is that formation and materialisation processes are always inherently and inseparably related. In stark contrast to these integral development processes of material form, architecture as a material practice is mainly based on design approaches that are characterised by a hierarchical relationship that prioritises the definition and generation of form over its subsequent materialisation. This paper will present an alternative approach to design that entails unfolding morphological complexity and performative capacity without differentiating between form generation and materialisation processes. Based on an understanding of material systems not as derivatives of standardized building systems and elements but rather as generative drivers in the design process this approach seeks to develop and employ computational techniques and digital fabrication technologies to unfold innate material capacity and specific latent gestalt. Extending the concept of material systems by embedding their material characteristics, geometric behaviour, manufacturing constraints and assembly logics within integral computational models promotes an understanding of form, material and structure not as separate elements, but rather as complex interrelations in polymorphic systems resulting from the response to varied input and environmental influences and derived through the logics and constraints of advanced manufacturing processes. These processes will be explained along 8 research projects.
series ASCAAD
email
last changed 2008/01/21 22:00

_id ecaade2007_093
id ecaade2007_093
authors Nicholas, Paul; Bahoric, John; Ormston, Garry; Bowtell, Peter; Burry, Mark
year 2007
title No Place for Drones
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 117-123
doi https://doi.org/10.52842/conf.ecaade.2007.117
summary Building design is a process often divorced from considerations about construction. Digital design methods are increasingly challenging the historic relationship between architecture and its means of production, but this extended reach is not necessarily accompanied by extended understanding or leverage of the production process. We present an urban sculptural project, The Travellers, in which digital techniques resolved critical issues of design, documentation and fabrication, but more importantly facilitated highly beneficial processes of negotiation. We suggest that this case based research has implications for future interactions between designers, makers and managers, shedding additional light onto issues of negotiation, responsibility, risk and trust that are often critical to the pragmatic undertaking of making.
keywords Design integration, digital design, fabrication, negotiation
series eCAADe
email
last changed 2022/06/07 07:58

_id ecaade2007_086
id ecaade2007_086
authors Oxman, Neri
year 2007
title FAB Finding
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 785-792
doi https://doi.org/10.52842/conf.ecaade.2007.785
summary The distinction between material behavior (mechanics) and material response (electronics) in the framework of responsive building skins has promoted unique design protocols for integrating sensor technologies into material components. Such a distinction results in the implementation of remote sensing devices post the process of material fabrication. Sensors are commonly perceived as electronic add-on patches which initiate mechanical output with response to electrical input. This work seeks to establish a novel approach to the integration of electronics in building skins which prioritizes material selection, behavior and fabrication given a required task, over post-production sensor application. The term “FAB Finding” is proposed to describe an instrumental methodology facilitating the coupling of CNC fabrication processes with material organization and behavior. It offers a design mentality which emphasizes the nature and the effects brought about by the use of specific fabrication processes which are by definition inherent in the design product and its behavior. A light-sensing inflatable skin system is developed as a working prototype demonstrating such an approach.
keywords Digital fabrication, material behavior, form-finding, sensors, responsive skin
series eCAADe
email
last changed 2022/06/07 08:00

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