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-rw-r--r--another.scad6
1 files changed, 6 insertions, 0 deletions
diff --git a/another.scad b/another.scad
index efc553d..9ed285d 100644
--- a/another.scad
+++ b/another.scad
@@ -262,96 +262,102 @@ module the_extruder(
// pulley
cylinder(d=pulley_d+pulley_clearance,h=body_h+1,$fn=fnd*(pulley_d+pulley_clearance));
// leverspace
hull() for(x=[0,gearbox_d])
rotate([0,0,45])
translate([x,0,ls_z-ls_h/2])
cylinder(d=idler_d+idler_clearance,h=ls_h,$fn=fnd*(idler_d+idler_clearance));
// idler clearance
a=cos(45)*(pulley_d+idler_d)/2;
b=mount_d/2-a;
x=sqrt(pow(a,2)+pow(b,2));
translate([mount_d/2,0,ls_z])
intersection() {
r = x+idler_d/2+idler_clearance;
cylinder(r=r,h=ls_h,center=true);
translate([-r-1,0,-ls_h/2-1]) cube(size=[2*r+2,r+1,ls_h+2]);
}
// back side cutout
a0 = asin((mount_screwhead_d+2*extrusion_width)/mount_d);
a1 = atan((longwing-lever_thickness/2)/(gearbox_d/2));
translate([0,0,ls_z]) hull() {
rotate([0,0,-180+a0])
rotate_extrude(angle=a1-a0)
translate([0,-ls_h/2])
square([sqrt(pow(gearbox_d/2,2)+pow(longwing-lever_thickness/2,2))+1,
ls_h]);
cylinder(d=bore_d/2/*TODO:recalculate angles based on this,
too lazy to do that now*/,
h=ls_h,center=true);
}
rotate([0,0,-45])
translate([0,0,ls_z-ls_h/2])
cube(size=[gearbox_d,gearbox_d,lever_thickness+lever_v_clearance]);
translate([0,0,ls_z-ls_h/2]) {
translate([mount_screwhead_d/2,0,0])
mirror([0,1,0])
cube(size=[gearbox_d,gearbox_d/2+1,lever_thickness+lever_v_clearance]);
}
//translate([-mount_d/2,-longwing,filament_elevation])
if(!tensioner) /* XXX: this seems to be bullshit, but it's so old, that it's historical bullshit */
translate([mount_d/2,-longwing,filament_elevation])
rotate([0,-90,0]) difference() {
cylinder(d=spring_d+spring_d_clearance,h=spring_lc+spring_dl,$fn=fnd*(spring_d+spring_d_clearance));
translate([0,0,spring_lc+spring_dl]) sphere(d=spring_d*3/4,$fn=fnd*spring_d*3/4);
}
+
+ if(debug) {
+ translate([mount_d/2,0,-1])
+ rotate([0,0,-45])
+ cube(size=[gearbox_d-mount_d,gearbox_d-mount_d,body_h+2]);
+ }
}//difference
if(supports) intersection() {
difference() {
translate([0,0,ls_z-ls_h/2-epsilon])
cylinder(d=gearbox_d,h=ls_h+2*epsilon,$fn=fnd*gearbox_d);
cylinder(d=pulley_d+pulley_clearance,h=body_h+1,$fn=fnd*(pulley_d+pulley_clearance));
}
// supports
// TODO: hardcoded stuff below…
if(false) { // parallel
for(y=[-gearbox_d:4:gearbox_d])
translate([0,y-extrusion_width/2,0])
cube(size=[gearbox_d,extrusion_width,body_h]);
}else{ // radial
for(zr=[-65:(65+50)/7:50])
rotate([0,0,zr]) translate([0,-extrusion_width/2,0])
cube(size=[gearbox_d,extrusion_width,body_h]);
}
}
}//body module
module springpad() {
smalld=st_screw_d+2*extrusion_width;
bigd = spring_d+spring_d_clearance/2;
hf = (bigd-smalld)/2;
translate([-gearbox_d/2+st_thickshell+st_nut_h+st_thinshell+1,-longwing,filament_elevation])
rotate([0,90,0]) difference() {
union() {
cylinder(d1=smalld,d2=bigd,h=hf,$fn=fnd*bigd);
translate([0,0,hf-epsilon])
cylinder(d=bigd,h=hf*2,$fn=fnd*bigd);
translate([0,0,3*hf])
sphere(d=spring_d*3/4,$fn=fnd*spring_d*3/4);
}
translate([0,0,-epsilon])
cylinder(d=st_screw_d,h=2*hf+epsilon,$fn=fnd*st_screw_d);
}
}
module knob() {
ch = knob_indent_d/2;
translate([0,0,body_h+epsilon]) {
mirror([0,0,1]) translate([0,0,-epsilon]) {
difference() {
cylinder(d=pulley_d,h=knob_bore_l,$fn=fnd*pulley_d);