
Thursday, November 18, 2010
Wednesday, November 17, 2010
Rhino commands
- PlanrSrf
- EdgeSrf
- BlendSrf
- MatchSrf
- Fillet edge
- ApplyCrv
- Flowing objects along surface
- Control Point Editing
§ SelV, SetPt
§ Smooth
§ MoveUVN
§ Weight
§ Insert control points,
- Paneling
§ Array
§ ptPanelGrid
§ ptGridSurfaceDomain
§ ptPanelGrid.
§ ptPanelGrid
§ ptGridSurfaceDomain
§ ptFinEdges
§ ptPanel3DCustomVariable
BlendSrf
MatchSrf
OffsetSrf
FilletEdge
ApplyCrv
FlowAlongSrf
SmoothUVN
MoveUVN
Softmove
Weight
PtGrid > Bend
PtPanelGrid
ArraySrf
Rebuild
Friday, November 12, 2010
Thursday, November 11, 2010
Wednesday, November 10, 2010
More Details for the Final Project
Prof. Ra is going to allow presenting the drawings for your projects in a manual format in leu of a 20x30 board. Here is a good example from IKEA. You are free to use other examples or create your own design.
Hemnes Loft Bed - Manual
Here is the wall file for your use.
TheWall.3dm [the rhino file]
///jacob
Hemnes Loft Bed - Manual
Here is the wall file for your use.
TheWall.3dm [the rhino file]
///jacob
Artifact #4, #5 and #6
Goals
-To realize complex geometry utilizing digital fabrication skills.
-To understand the process of making in analog and digital and to develop knowledge of constructability.
-To increase craftsmanship by using a precise digital tool: laser cutter.
-To develop vector graphic skills in Rhino and AUTOCAD.
-To illustrate the project with drawings and increase proficiency with line weights.
Protocol
The final series of artifacts will contribute to the final class project. We will utilize our digital knowledge to create an exoskeleton with multiple formal gestures. You will be provided with a 3D model of a curvature structure. Choose one of the grid components to design & construct. Based on the geometry you chose, you will design a complex form while you maintain the shape and scale of your grid component. The form must be volumetric, but each component must have one complete opening to allow light to pass through. The form must be an unfolded object; sectional construction in order to express the volume will not be allowed. The components must be extremely precisely constructed.
1) Artifact #4: Illustrate your component design using AUTOCAD drawings only. This is an instruction to explain how each components design and put together, similar to construction documents.
2) Artifact #5: Cut your template using the laser cutter, keeping the remaining portion your 18”x24” Bristol board. Turn in the remnant for artifact #5. The purpose of this artifact is to exhibit awareness of how much material you have used and to test your efficiency of construction. Consider the economy of shapes and process.
3) Artifact #6: This is the final part of the project. Accuracy is the critical element of this assignment and of our final presentation. After you construct your components, we will assemble the cubes together. They will need to fit well; I urge you to test your construction accuracy with your adjacent components. The final submission will be the physical model and the Rhino file.
Materials: Two or Three sheets of 3-ply bristol board
Schedule
Tuesday, November 9, 2010
Friday, November 5, 2010
Thursday, November 4, 2010
Thursday, October 28, 2010
Wednesday, October 27, 2010
Artifact #3

World's Billionaire vs. Tallest Building
(The Incline Pattern)
The number of billionaires in the world in increase with the height of the tallest building over the years.
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