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glass_frame.scad
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glass_frame.scad
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include <configuration.scad>;
fsr_height = 1.0;
height = 25.4 / 4 + fsr_height;
glass_radius = 172 / 2;
outside_radius = glass_radius * 1.15;
triangle_radius = glass_radius * 2.13;
module curve_slot(r, h) {
linear_extrude(h) minkowski() {
circle(r=r, h=2*height, center=true, $fn=12);
intersection() {
square([16, 3*glass_radius], center=true);
difference() {
circle(r=glass_radius+6.1, $fn=120);
circle(r=glass_radius+6, $fn=120);
}
}
}
}
module glass_frame() {
difference() {
linear_extrude(height=height) {
difference() {
intersection() {
rotate([0, 0, 30]) circle(r=triangle_radius, $fn=3);
circle(r=outside_radius, $fn=120);
}
circle(r=glass_radius, $fn=120);
for (a = [0:120:359]) {
rotate([0, 0, a]) translate([0, glass_radius])
square([glass_radius*0.6, glass_radius], center=true);
}
translate([0, glass_radius / 2])
square([2*triangle_radius, triangle_radius], center=true);
}
}
for (a = [-35, 35]) rotate([0, 0, a]) {
translate([0, 0, -height/2]) #
curve_slot(r=m3_wide_radius, h=2*height);
translate([0, 0, thickness]) #
curve_slot(r=3, h=2*height);
}
}
}
translate([0, 0, height/2])
glass_frame();