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Added chamfer_hole_mask()
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1 changed files with 36 additions and 6 deletions
42
masks.scad
42
masks.scad
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@ -216,25 +216,55 @@ module chamfer_hole_mask(r=1.0, d=undef, chamfer=0.25)
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// Create a mask that can be used to bevel/chamfer the end of a cylinder.
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// Difference it from the cylinder to be chamferred. The center of the mask object
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// should align exactly with the center of the end of the cylinder to be chamferred.
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// r = radius of hole to chamfer.
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// d = Diameter of hole to chamfer. Use instead of r.
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// chamfer = size of the edge chamferred. (Default: 0.25)
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// r = Radius of cylinder to chamfer.
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// d = Diameter of cylinder to chamfer. Use instead of r.
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// chamfer = Size of the edge chamferred, inset from edge. (Default: 0.25)
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// ang = Angle of chamfer in degrees from vertical. (Default: 45)
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// from_end = If true, chamfer size is measured from end of cylinder. If false, chamfer is measured outset from the radius of the cylinder. (Default: false)
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// Example:
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// $fa=2; $fs=2;
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// difference() {
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// cylinder(r=50, h=100, center=true);
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// up(50) chamfer_cylinder_mask(r=50, chamfer=10);
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// }
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module chamfer_cylinder_mask(r=1.0, d=undef, chamfer=0.25)
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module chamfer_cylinder_mask(r=1.0, d=undef, chamfer=0.25, ang=45, from_end=false)
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{
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h = chamfer * (from_end? 1 : tan(90-ang));
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r = d==undef? r : d/2;
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r2 = r - chamfer * (from_end? tan(ang) : 1);
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difference() {
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cube([2*r+1, 2*r+1, 2*chamfer], center=true);
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down(chamfer+0.01) cylinder(r1=r, r2=r-chamfer, h=chamfer, center=false);
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cube([2*r+1, 2*r+1, 2*h], center=true);
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down(h+0.01) cylinder(r1=r, r2=r2, h=h+0.01, center=false);
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}
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}
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// Create a mask that can be used to bevel/chamfer the end of a cylindrical hole.
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// Difference it from the hole to be chamferred. The center of the mask object
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// should align exactly with the center of the end of the hole to be chamferred.
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// r = Radius of hole to chamfer.
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// d = Diameter of hole to chamfer. Use instead of r.
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// chamfer = Size of the chamfer. (Default: 0.25)
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// ang = Angle of chamfer in degrees from vertical. (Default: 45)
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// from_end = If true, chamfer size is measured from end of hole. If false, chamfer is measured outset from the radius of the hole. (Default: false)
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// Example:
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// $fa=2; $fs=2;
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// difference() {
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// cube(100, center=true);
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// cylinder(d=50, h=100.1, center=true);
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// up(50) chamfer_hole_mask(d=50, chamfer=10);
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// }
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module chamfer_hole_mask(r=1.0, d=undef, chamfer=0.25, ang=45, from_end=false)
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{
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h = chamfer * (from_end? 1 : tan(90-ang));
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r = d==undef? r : d/2;
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r2 = r + chamfer * (from_end? tan(ang) : 1);
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down(h-0.01) cylinder(r1=r, r2=r2, h=h, center=false);
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}
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// Creates a shape that can be used to fillet a vertical 90 degree edge.
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// Difference it from the object to be filletted. The center of the mask
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// object should align exactly with the edge to be filletted.
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