f the mesh was self-intersecting everywhere. So instead I used Millipede (isosurface) to get the same undulations, but ignore the complex 'folds', you can see the difference in cross section thickness. I then tessellated it with the inverse pattern of the outer surface.
To make it a single 3d printable mesh, i just deleted a single face on inner and outer skin, then lofted the naked edges. (creating a tiny hole through the model). Therefore creating a single mesh that folds in on itself, not sure if there is a better way of defining the space between two meshes as the solid area...
Full GH (Kangaroo - Meshmachine - Weaverbird - Millipede)
Special thanks to Laurent Delrieu for his interesting offset mesh method that i based my approach on.
http://www.grasshopper3d.com/forum/topics/offset-mesh-problems-with-3d-mesh-with-weaverbird…
Added by Nick Tyrer at 5:25am on December 10, 2015
18): 'Rhino.Geometry.AnnotationBase.Text' is obsolete: 'Use RichText or PlainText' (line 88)
2. Warning (CS0618): 'Rhino.Geometry.AnnotationBase.FontIndex' is obsolete: 'Use Font property instead' (line 92)
3. Warning (CS0618): 'Rhino.RhinoDoc.Fonts' is obsolete: 'Use DimStyles table instead' (line 92)
1. Error (CS1061): 'Rhino.Geometry.TextEntity' does not contain a definition for 'AnnotativeScalingEnabled' and no extension method 'AnnotativeScalingEnabled' accepting a first argument of type 'Rhino.Geometry.TextEntity' could be found (are you missing a using directive or an assembly reference?) (line 94)
Wondering, if perhaps, you will be updating for Rhino 6 compatibility?
Cheers
Lyndon
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d files have surface divided into rectangular grid, I want that grid hexagonal SO THAT I CAN ATTACH MY HEXAGONAL GEOMETRY IN IT.Hexagon Pattern.3dm,,,,Hexagonal Pattern.ghx…
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closest point to the very first would be removed from the list, so the initial list reduces from 100 to 98. From the 98 i pick one and search the remaining 97 for the closest. From the remaining 96 i pick again one and search in the 95,...
(The product I want to result is:
having a number of random lines in 3D space, produced by an even number of points as discribed, this shall be the initial springs for a ("selfadjusting") tensegrity. Each one of these lines (later springs in kangaroo) get divided in three areas - that means four points. These four points again are the "attractor points" of neighbor springs, so the strut "knows" where to set the next elastic connection,...the rest I´ll have to figure out)
angelos…
g these times itself). If it works on selection alone, it would probably implement faster.
Theoretically, does this mean the total solving time of the definition is the 'chain of components' that takes the longest time? In the picture above, it would be the chain consisting 'point-curve-divideDistance'?
Because that still adds up only to 97%, I am assuming the Point and Slider component start solving in parallel, and the two Divide components also start solving in parallel?…