project I:Realisation Plan

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Final Step. : Place all the sections next to each other and connect them with the elastic robe. In between the sections should be placed a distance keeper, which makes sure the sections will keep their position.
 
Final Step. : Place all the sections next to each other and connect them with the elastic robe. In between the sections should be placed a distance keeper, which makes sure the sections will keep their position.
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Revision as of 15:08, 8 December 2011

Timeline of Realization

Timeline of Realization2.jpg

Material and equipment list

Material list.jpg


Technical implementation

Technical implementation.jpg



Joints

Detail 1

0901 Detail.jpg

Drawn is the connection between the hydraulic slider and the triangle shaped transition. This triangle is fixed at the corner of the triple-layer part and flexible at the hydraulic side.

Step 1. : Take one layer of the big frame of the right site of the structure.

Step 2. : Take a bar and put this in the middle hole of the left-highest voids.

Step 3. : Place the triangle shaped element over the bar with the middle hole on the right side.

Step 4. : Screw this element on to the big frame, so that it is fixed. Put another big frame on top and fix this as well.

Step 5. : On the left side of the triangle there is another void. This void needs a big bar for the hydraulic pump. Put the hole of the pump on top of the bar and close it with another triangle shaped element, which you fix on the other side on top of the second big frame.

Step 6. : Put an elastic robe through the hole in the corner of the triangle to connect the shape with the other sections.

Step 7. : Finish the joint with the last big frame and make sure that the two triangles are fixed in between.



Detail 2

0902 Detail.jpg

After you finished detail 1, you already have the hydraulic pump on the right side of detail 2.

Step 8. : Place the left-side frame on both sides of the hydraulic pump en connect them with the same bar as Step 5. But this time there is a bigger void to make possible that the pump can slide, both the upper and the bottom of the big frame should be closed with some panels to avoid changing the direction of the hydraulic pump.

Step 9. : Use the same elastic robe as in Step 6 to connect the big frame with the other sections through the hole on the left side.

Detail 3

0903 Detail.jpg

Detail 3 shows you how to connect the second hydraulic pump to the structure. On the left side the elastic robe again.

Step 10. : Connect the second pump in between the two big frames, with a bar. This bar is fixed on one place, and the hydraulic pump should get bigger and smaller but staying in the same position compared with the other parts.

Detail 4

0904 Detail.jpg

Here is where the hard work starts, so keep attention.

Step 11. : Place the hydraulic pump of Detail 3, in between two triangle shaped elements. At this point the pump is flexible again, so placed on a round bar.

Step 12. : You’ve already made the three layers (Detail 1) you need on the right side of this detail. Place a wheel in between the first two layers en fix it with a bar. The wheel will stay turning because it is only kept on its place by the bar but not fixed onto the bar. This wheel makes sure that the whole construction can be moved. Another wheel should be attached on the right side of the bottom of the big frame.

Step 13. : Finish the whole structure by connecting the three big frames with the two triangle-shaped elements. But a bar through all the holes which are left over on the right side of the triangle and on the left side of the big frame.



Detail 5

0905 Detail.jpg

The whole shape is now made, the only thing left is to connect it with the rest of the frames (made in the same way). All the elastic robes you placed should form the connection between all the sections.

Final Step. : Place all the sections next to each other and connect them with the elastic robe. In between the sections should be placed a distance keeper, which makes sure the sections will keep their position.






Validation of realisation plan


Proof by e.g. prototyping

For pictures of the prototypes see

6. Process Models & Joints Experiments

Expert/client validation

> Interview with Phd Felix Yuan

> Interview with Dr. Karel J. Vollers




Plan of Relationships



According to our design we see some possibilities in several projects.


Project C;

They use an interface to program the structure, this kind of programming the structure before you arrive could help us preparing the structure for events etc..

The so called 'Spacebook' is therefore an interface we are interested in to use in real life in combination with our structure.



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