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@ -270,7 +270,7 @@ module path_extrude(path, convexity=10, clipsize=100) {
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// ---
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// od = The outer diameter to extrude to.
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// id = The inner diameter to extrude from.
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// size = If a scalar, the width of the 2D children. If a vector, the [X,Y] size of the 2D children. Default: [2*PI*or,1000]
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// size = If a scalar, the width of the 2D children. If a vector, the [X,Y] size of the 2D children. Default: [`2*PI*or`,1000]
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// convexity = The max number of times a line could pass though a wall. Default: 10
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// spin = Amount in degrees to spin around cylindrical axis. Default: 0
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// orient = The orientation of the cylinder to wrap around, given as a vector. Default: UP
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4
vnf.scad
4
vnf.scad
@ -1205,7 +1205,7 @@ function _vnf_centroid(vnf,eps=EPSILON) =
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// XY plane, which is again a region. If the VNF does not intersect
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// the XY plane then returns the empty set. This operation is
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// much faster than `cut=false`.
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// Example: Here's a VNF with two linked toruses and a small cube
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// Example(3D): Here's a VNF with two linked toruses and a small cube
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// vnf = vnf_join([
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// xrot(90,torus(id=15,od=24,$fn=5)),
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// right(12,torus(id=15,od=24,$fn=4)),
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@ -1220,7 +1220,7 @@ function _vnf_centroid(vnf,eps=EPSILON) =
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// ]);
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// reg = projection(vnf);
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// region(reg);
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// Example: Tilted torus
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// Example(3D): Tilted torus
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// vnf = xrot(35,torus(id=4,od=12,$fn=32));
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// vnf_polyhedron(vnf);
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// Example(2D): Projection of tilted torus using `cut=true`
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