Difference between revisions of "Msc2G3:Main"

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(MSc2 Group 3)
(MSc2 Group 3)
 
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=='''MSc2 Group 3'''==
 
=='''MSc2 Group 3'''==
  
[[File:Baner.png | 850px]]
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[[File:Baner2.png | 850px]]
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<div id="students">
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Students:
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&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
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Aleksandra Milanowska 
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&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
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Arda Yildiz 
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&nbsp;&nbsp;
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&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; 
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Filip Romaniuk
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&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; 
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Joanna Cieślikowska
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&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
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Wessel de Graaf 
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&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; Yongyi Wu
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</div>
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<br>
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<br>
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[[Msc2G3:Materialisation|'''MATERIALISATION''']]
 
[[Msc2G3:Materialisation|'''MATERIALISATION''']]
 
</div>
 
</div>
 
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[[File:1.jpg|450px|center]]
 
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<br><br>
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<b> ABOUT THE PROJECT</b>
 
<b> ABOUT THE PROJECT</b>
<br><br><br><br>
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<br>
 
The project of the 1:1 Interactive Architecture Prototypes Workshop focuses on the methods of adapting robotic fabrication of a selected element of a wooden pavilion. The shape of the pavilion has already been given, and has been further analysed and optimised with the use of grasshopper plugins. Plugins like for example Karamba were used to optimise the shape of the pavilion after analysing its curvature. Also, further research on acoustics has been made and adapted to the design.  
 
The project of the 1:1 Interactive Architecture Prototypes Workshop focuses on the methods of adapting robotic fabrication of a selected element of a wooden pavilion. The shape of the pavilion has already been given, and has been further analysed and optimised with the use of grasshopper plugins. Plugins like for example Karamba were used to optimise the shape of the pavilion after analysing its curvature. Also, further research on acoustics has been made and adapted to the design.  
 
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<br><br>
 
To implement the robotic fabrication method into the design, a few milling techniques have been considered, already at the research level. Material and the shape of the pavilion defined the final design. Since solid beams of wood were to be used as the building material, subtractive method of fabrication has been chosen. The final design of the wooden element resembles the pattern of "terrain".  
 
To implement the robotic fabrication method into the design, a few milling techniques have been considered, already at the research level. Material and the shape of the pavilion defined the final design. Since solid beams of wood were to be used as the building material, subtractive method of fabrication has been chosen. The final design of the wooden element resembles the pattern of "terrain".  
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<html>
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<iframe width="560" height="315" src="https://www.youtube.com/embed/uAUG9kYV3hg" frameborder="0" allow="accelerometer; autoplay; encrypted-media; gyroscope; picture-in-picture" allowfullscreen></iframe>
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</html>
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<br>
 
<br>
 
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<br>

Latest revision as of 09:35, 12 April 2019




MSc2 Group 3

Baner2.png


MAIN

1.jpg

ABOUT THE PROJECT
The project of the 1:1 Interactive Architecture Prototypes Workshop focuses on the methods of adapting robotic fabrication of a selected element of a wooden pavilion. The shape of the pavilion has already been given, and has been further analysed and optimised with the use of grasshopper plugins. Plugins like for example Karamba were used to optimise the shape of the pavilion after analysing its curvature. Also, further research on acoustics has been made and adapted to the design.

To implement the robotic fabrication method into the design, a few milling techniques have been considered, already at the research level. Material and the shape of the pavilion defined the final design. Since solid beams of wood were to be used as the building material, subtractive method of fabrication has been chosen. The final design of the wooden element resembles the pattern of "terrain".