Read e-book online Material Strategies in Digital Fabrication PDF

By Christopher Beorkrem

ISBN-10: 041553366X

ISBN-13: 9780415533669

Synopsis from Amazon:

Author Christopher Beorkrem indicates how fabric functionality drives the electronic fabrication procedure and determines process. He has recreated and dissected thirty-six of the main revolutionary works of structure of the previous couple of years, with views from the designers that you can examine from the successes and screw ups of every venture. together with step by step diagrams and utilizing constant language and the easiest development recommendations, he identifies the real features of every fabric, together with connection varieties, relative bills, deformation, colour, texture, end, dimensional houses, sturdiness, and weathering and waterproofing to hyperlink the layout results to shape. The ebook is split into 5 components by means of fabric – wooden, steel, concrete, hybrids, and recycled – that will help you reference development options for the fabrication machines you will have on-hand.

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Extra resources for Material Strategies in Digital Fabrication

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Pp. 795–802 1:5:13 One surface of ZipRocker; each layer must be preformed to each profile before assembly, the system will fit only when each surface is in the appropriate configuration. 3 Work with hot-wire profiles attached to 7-axis arms can also be found in the design of Periscope Tower by Matter Design and the University of Michigan. 1:5:14 Assembled ZipRocker profile in two colors to distinguish between layers. 45 ICD/ITKE PAVILION ACHIM MENGES AND JAN KIPPERS UNIVERSITY OF STUTTGART, INSTITUTE OF COMPUTATIONAL DESIGN INSTITUTE OF BUILDING STRUCTURES AND STRUCTURAL DESIGN The Institute of Computational Design (ICD) and The Institute of Building Structures and Structural Design (ITKE) at the University of Stuttgart constructed this temporary pavilion in 2010.

29 MATERIAL CONSTRAINTS: • Wal l cavity ; the creatio n o f a wall cavity for it s insulative propertie s was a primary criteri a for th e creation o f this project . Th e cantilevered member s o f the wall needed to nes t int o that cavit y while stil l creatin g an air pocke t of separation. • Wate r shedding ; the wall was ntended to b e created with a geometry capabl e of wicking water away from th e façade along the lengt h o f the member s and down t o th e ground . The wood member s would requir e regular sealants to perfor m i n this way thoug h the geometr y is capable of responding to this criteria.

The wood member s would requir e regular sealants to perfor m i n this way thoug h the geometr y is capable of responding to this criteria. • Eas e of assembly and conventional construction ; this project woul d requir e littl e mor e than simpl e saws and hammer s to assembl e with th e assistanc e of a template. Eac h section woul d be assembled individuall y and added together aggregatin g int o the entir e assembly . 1:3:1 Surface s defined within parameter s o f member siz e and progra m Odd Even :3:2 Two versions o f each surface are offse t from on e another b y multiples of the boar d widt h Odd Even :3:3 Array straigh t curve s along each surface with spacin g twice the width o f each member to accommodat e fo r the alternatin g member s 1:3:4 Extrude the curves the width of each member and then offse t surface s the height of each membe r to create the rectilinear geometry of the board .

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Material Strategies in Digital Fabrication by Christopher Beorkrem

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