-rw-r--r-- | another.scad | 2 |
1 files changed, 1 insertions, 1 deletions
diff --git a/another.scad b/another.scad index 915b184..0f696cc 100644 --- a/another.scad +++ b/another.scad | |||
@@ -1,484 +1,484 @@ | |||
1 | draft=true; | 1 | draft=true; |
2 | layer_height=0.2; extrusion_width=0.4; | 2 | layer_height=0.2; extrusion_width=0.4; |
3 | epsilon=0.01; | 3 | epsilon=0.01; |
4 | $fs=0.0125; | 4 | $fs=0.0125; |
5 | 5 | ||
6 | use <pushfittery.scad>; | 6 | use <pushfittery.scad>; |
7 | include <pushfit_data.scad>; | 7 | include <pushfit_data.scad>; |
8 | include <pulley_data.scad>; | 8 | include <pulley_data.scad>; |
9 | 9 | ||
10 | module the_extruder( | 10 | module the_extruder( |
11 | // motor properties | 11 | // motor properties |
12 | gearbox_d = 36, | 12 | gearbox_d = 36, |
13 | mount_d = 28, // the distance between opposite mounting holes | 13 | mount_d = 28, // the distance between opposite mounting holes |
14 | mounthole_depth = 5, | 14 | mounthole_depth = 5, |
15 | mounthole_min_depth = 3, mounthole_max_depth = 4, | 15 | mounthole_min_depth = 3, mounthole_max_depth = 4, |
16 | protrusion_d = 22, protrusion_h = 2.2, // the dimensions of the protrusion on top of gearbox | 16 | protrusion_d = 22, protrusion_h = 2.2, // the dimensions of the protrusion on top of gearbox |
17 | bore_d = 8, bore_l = 17.6, | 17 | bore_d = 8, bore_l = 17.6, |
18 | bore_dd = 7, | 18 | bore_dd = 7, |
19 | // pulley properties | 19 | // pulley properties |
20 | pulley = pulley_e3d, | 20 | pulley = pulley_e3d, |
21 | pulley_elevation = 1, // pulley elevation above the protrusion | 21 | pulley_elevation = 1, // pulley elevation above the protrusion |
22 | // idler properties | 22 | // idler properties |
23 | idler_d = 10, idler_h = 4, idler_id = 3,// idler dimensions: outer and inner diameters and height | 23 | idler_d = 10, idler_h = 4, idler_id = 3,// idler dimensions: outer and inner diameters and height |
24 | // spring properties | 24 | // spring properties |
25 | spring_d = 10, spring_lc = 9.6, // spring diameter and compressed length | 25 | spring_d = 10, spring_lc = 9.6, // spring diameter and compressed length |
26 | // filament path properties | 26 | // filament path properties |
27 | filament_d = 1.75, | 27 | filament_d = 1.75, |
28 | filament_path_d = 2, | 28 | filament_path_d = 2, |
29 | filament_guide_d = 4, // PTFE filament guide diameter | 29 | filament_guide_d = 4, // PTFE filament guide diameter |
30 | // knob properties | 30 | // knob properties |
31 | knob_h = 10, | 31 | knob_h = 10, |
32 | knob_indent_d = 4, | 32 | knob_indent_d = 4, |
33 | knob_indents = 12, | 33 | knob_indents = 12, |
34 | knob_v_clearance = 1, | 34 | knob_v_clearance = 1, |
35 | // spring tensioner | 35 | // spring tensioner |
36 | st_nut_d = 9, st_nut_h = 4, | 36 | st_nut_d = 9, st_nut_h = 4, |
37 | st_screw_d = 5, | 37 | st_screw_d = 5, |
38 | st_thickshell = 8*extrusion_width, st_thinshell = 2*extrusion_width, | 38 | st_thickshell = 8*extrusion_width, st_thinshell = 2*extrusion_width, |
39 | st_split_w = 4*extrusion_width, | 39 | st_split_w = 4*extrusion_width, |
40 | 40 | ||
41 | // screw it | 41 | // screw it |
42 | mount_screw_d = 3.1, mount_screw_l = 20, | 42 | mount_screw_d = 3.1, mount_screw_l = 20, |
43 | mount_screwhead_d=6, mount_screwhead_h=3, | 43 | mount_screwhead_d=6, mount_screwhead_h=3, |
44 | idler_screw_d = 3, | 44 | idler_screw_d = 3, |
45 | idler_screwhead_d=6, idler_screwhead_h=3, | 45 | idler_screwhead_d=6, idler_screwhead_h=3, |
46 | 46 | ||
47 | pf = pushfit_metal, | 47 | pf = pushfit_metal, |
48 | pf_shell = max(3*layer_height,3*extrusion_width), | 48 | pf_shell = max(3*layer_height,3*extrusion_width), |
49 | 49 | ||
50 | // empty spaces | 50 | // empty spaces |
51 | idler_travel = 3, // how far should idler travel when pressed | 51 | idler_travel = 3, // how far should idler travel when pressed |
52 | idler_clearance=.5, | 52 | idler_clearance=.5, |
53 | pulley_small_d_clearance=.5, | 53 | pulley_small_d_clearance=.5, |
54 | lever_v_clearance=.7, // vertical clearance for the lever | 54 | lever_v_clearance=.7, // vertical clearance for the lever |
55 | spring_d_clearance=1, | 55 | spring_d_clearance=1, |
56 | protrusion_tolerance_h=.5, // horizontal tolerance for the motor protrusion | 56 | protrusion_tolerance_h=.5, // horizontal tolerance for the motor protrusion |
57 | protrusion_tolerance_v=.5, // vertical tolerance for the motor protrusion | 57 | protrusion_tolerance_v=.5, // vertical tolerance for the motor protrusion |
58 | mount_screw_d_tolerance=.4, | 58 | mount_screw_d_tolerance=.4, |
59 | idler_v_tolerance=.5, | 59 | idler_v_tolerance=.5, |
60 | knob_bore_d_tolerance=.6, | 60 | knob_bore_d_tolerance=.8, |
61 | st_nut_h_tolerance=.2, | 61 | st_nut_h_tolerance=.2, |
62 | st_nut_d_tolerance=.2,/* TODO: make it st_nut_w_tolerance */ | 62 | st_nut_d_tolerance=.2,/* TODO: make it st_nut_w_tolerance */ |
63 | st_screw_d_tolerance=.5, | 63 | st_screw_d_tolerance=.5, |
64 | st_split_w_tolerance = .3, | 64 | st_split_w_tolerance = .3, |
65 | 65 | ||
66 | min_z_shell = 4*layer_height, // the very minimal shell thickness along z-axis. | 66 | min_z_shell = 4*layer_height, // the very minimal shell thickness along z-axis. |
67 | min_xy_shell = 2*extrusion_width, | 67 | min_xy_shell = 2*extrusion_width, |
68 | 68 | ||
69 | body_label = "another", body_label_thickness = layer_height, | 69 | body_label = "another", body_label_thickness = layer_height, |
70 | 70 | ||
71 | what="lever", // lever|body|knob|springpad|* | 71 | what="lever", // lever|body|knob|springpad|* |
72 | left=false, | 72 | left=false, |
73 | vitamins = true, | 73 | vitamins = true, |
74 | bridges = true, | 74 | bridges = true, |
75 | debug = false, | 75 | debug = false, |
76 | ) { | 76 | ) { |
77 | fnd = 2*PI; fnr = 2*fnd; | 77 | fnd = 2*PI; fnr = 2*fnd; |
78 | function lu(m,k) = m[search([k],m)[0]][1]; | 78 | function lu(m,k) = m[search([k],m)[0]][1]; |
79 | 79 | ||
80 | pulley_d = lu(pulley,"d"); | 80 | pulley_d = lu(pulley,"d"); |
81 | pulley_h = lu(pulley,"h"); | 81 | pulley_h = lu(pulley,"h"); |
82 | teeth_elevation = lu(pulley,"fe"); | 82 | teeth_elevation = lu(pulley,"fe"); |
83 | filament_offset = lu(pulley,"g")+filament_d/2; | 83 | filament_offset = lu(pulley,"g")+filament_d/2; |
84 | pulley_d_clearance = lu(pulley,"ssrc")*2; | 84 | pulley_d_clearance = lu(pulley,"ssrc")*2; |
85 | 85 | ||
86 | idler_filament_offset = filament_path_d/2; | 86 | idler_filament_offset = filament_path_d/2; |
87 | lever_shell = mount_screwhead_h+0.5; | 87 | lever_shell = mount_screwhead_h+0.5; |
88 | lever_thickness=max(spring_d+spring_d_clearance+layer_height*8,idler_h+idler_v_tolerance+2*lever_shell); | 88 | lever_thickness=max(spring_d+spring_d_clearance+layer_height*8,idler_h+idler_v_tolerance+2*lever_shell); |
89 | lsd = idler_d-idler_clearance*2; // the diameter of lever thingie | 89 | lsd = idler_d-idler_clearance*2; // the diameter of lever thingie |
90 | longwing=(mount_d+mount_screw_d+mount_screw_d_tolerance+spring_d+spring_d_clearance)/2+min_xy_shell; | 90 | longwing=(mount_d+mount_screw_d+mount_screw_d_tolerance+spring_d+spring_d_clearance)/2+min_xy_shell; |
91 | shortwing = let(a=mount_d/2,c=(pulley_d+idler_d)/2/sqrt(2)) | 91 | shortwing = let(a=mount_d/2,c=(pulley_d+idler_d)/2/sqrt(2)) |
92 | sqrt(c*c+pow(a-c,2)); | 92 | sqrt(c*c+pow(a-c,2)); |
93 | longwing_travel = idler_travel*longwing/shortwing; | 93 | longwing_travel = idler_travel*longwing/shortwing; |
94 | h_ = (pulley_d+idler_d)/(2*sqrt(2)); | 94 | h_ = (pulley_d+idler_d)/(2*sqrt(2)); |
95 | ri = sqrt( pow(h_,2) + pow(mount_d/2-h_,2) ); | 95 | ri = sqrt( pow(h_,2) + pow(mount_d/2-h_,2) ); |
96 | spring_dl = idler_travel*longwing/ri; | 96 | spring_dl = idler_travel*longwing/ri; |
97 | // finger and spring support | 97 | // finger and spring support |
98 | fsw = gearbox_d-(gearbox_d-mount_d)/2-max(spring_lc,longwing_travel+(gearbox_d-mount_d)/2); | 98 | fsw = gearbox_d-(gearbox_d-mount_d)/2-max(spring_lc,longwing_travel+(gearbox_d-mount_d)/2); |
99 | 99 | ||
100 | mount_min_depth = mounthole_min_depth ? mounthole_min_depth : mounthole_depth-1; | 100 | mount_min_depth = mounthole_min_depth ? mounthole_min_depth : mounthole_depth-1; |
101 | mount_max_depth = mounthole_max_depth ? mounthole_max_depth : mounthole_depth+1; | 101 | mount_max_depth = mounthole_max_depth ? mounthole_max_depth : mounthole_depth+1; |
102 | filament_elevation=protrusion_h+pulley_elevation+teeth_elevation; | 102 | filament_elevation=protrusion_h+pulley_elevation+teeth_elevation; |
103 | ls_z = filament_elevation; // leverspace mid-z | 103 | ls_z = filament_elevation; // leverspace mid-z |
104 | ls_h = lever_thickness+lever_v_clearance; // leverspace height | 104 | ls_h = lever_thickness+lever_v_clearance; // leverspace height |
105 | mount_depth = mount_screw_l - (ls_z+ls_h/2+min_z_shell); | 105 | mount_depth = mount_screw_l - (ls_z+ls_h/2+min_z_shell); |
106 | body_h = max(protrusion_h+bore_l,mount_screw_l-mount_depth+mount_screwhead_h+min_z_shell,ls_z*2); | 106 | body_h = max(protrusion_h+bore_l,mount_screw_l-mount_depth+mount_screwhead_h+min_z_shell,ls_z*2); |
107 | echo("mount depth",mount_depth); | 107 | echo("mount depth",mount_depth); |
108 | 108 | ||
109 | module teardrop(r,d,h,center=false,angle=45) { | 109 | module teardrop(r,d,h,center=false,angle=45) { |
110 | dd = d ? d : (2*r); | 110 | dd = d ? d : (2*r); |
111 | $fn = dd*fnd; | 111 | $fn = dd*fnd; |
112 | cylinder(d=dd,h=h,center=center); | 112 | cylinder(d=dd,h=h,center=center); |
113 | if(angle>0) translate([0,0,center?-h/2:0]) | 113 | if(angle>0) translate([0,0,center?-h/2:0]) |
114 | rotate([0,0,angle]) | 114 | rotate([0,0,angle]) |
115 | cube(size=[d/2,d/2,h]); | 115 | cube(size=[d/2,d/2,h]); |
116 | } | 116 | } |
117 | 117 | ||
118 | module mirrorleft() { | 118 | module mirrorleft() { |
119 | mirror([left?0:1,0,0]) children(); | 119 | mirror([left?0:1,0,0]) children(); |
120 | } | 120 | } |
121 | module place_idler() { | 121 | module place_idler() { |
122 | rotate([0,0,45]) | 122 | rotate([0,0,45]) |
123 | translate([(pulley_d+idler_d)/2,0,0]) | 123 | translate([(pulley_d+idler_d)/2,0,0]) |
124 | children(); | 124 | children(); |
125 | } | 125 | } |
126 | module finger_indent(d=lever_thickness,depth/*=1*/,r/*=15*/) { | 126 | module finger_indent(d=lever_thickness,depth/*=1*/,r/*=15*/) { |
127 | if(depth) { | 127 | if(depth) { |
128 | hh = (-4*pow(depth,2)+pow(d,2))/(8*depth); | 128 | hh = (-4*pow(depth,2)+pow(d,2))/(8*depth); |
129 | rr = depth+hh; | 129 | rr = depth+hh; |
130 | translate([0,0,hh]) sphere(r=rr,$fn=fnr*rr); | 130 | translate([0,0,hh]) sphere(r=rr,$fn=fnr*rr); |
131 | }else if(r) { | 131 | }else if(r) { |
132 | hh=sqrt(pow(r,2)-pow(d,2)/4); | 132 | hh=sqrt(pow(r,2)-pow(d,2)/4); |
133 | translate([0,0,hh]) sphere(r=r,$fn=fnr*r); | 133 | translate([0,0,hh]) sphere(r=r,$fn=fnr*r); |
134 | } | 134 | } |
135 | } | 135 | } |
136 | 136 | ||
137 | % if(vitamins) mirrorleft() { | 137 | % if(vitamins) mirrorleft() { |
138 | translate([0,0,-epsilon]) mirror([0,0,1]) cylinder(d=gearbox_d,h=1,$fn=60); | 138 | translate([0,0,-epsilon]) mirror([0,0,1]) cylinder(d=gearbox_d,h=1,$fn=60); |
139 | for(zr=[0:90:359]) rotate([0,0,zr]) translate([mount_d/2,0,0]) | 139 | for(zr=[0:90:359]) rotate([0,0,zr]) translate([mount_d/2,0,0]) |
140 | cylinder(d=mount_screw_d,h=20,$fn=30); | 140 | cylinder(d=mount_screw_d,h=20,$fn=30); |
141 | translate([0,0,-epsilon]) cylinder(d=protrusion_d,h=protrusion_h,$fn=30); | 141 | translate([0,0,-epsilon]) cylinder(d=protrusion_d,h=protrusion_h,$fn=30); |
142 | translate([0,0,protrusion_h]) { | 142 | translate([0,0,protrusion_h]) { |
143 | difference() { | 143 | difference() { |
144 | cylinder(d=bore_d,h=bore_l,$fn=30); | 144 | cylinder(d=bore_d,h=bore_l,$fn=30); |
145 | translate([-bore_d/2-1,bore_dd-bore_d/2,-1]) | 145 | translate([-bore_d/2-1,bore_dd-bore_d/2,-1]) |
146 | cube([bore_d+2,bore_d/2,bore_l+2]); | 146 | cube([bore_d+2,bore_d/2,bore_l+2]); |
147 | } | 147 | } |
148 | translate([0,0,pulley_elevation]) { | 148 | translate([0,0,pulley_elevation]) { |
149 | cylinder(d=pulley_d,h=pulley_h,$fn=30); | 149 | cylinder(d=pulley_d,h=pulley_h,$fn=30); |
150 | translate([0,0,teeth_elevation]) { | 150 | translate([0,0,teeth_elevation]) { |
151 | place_idler() { | 151 | place_idler() { |
152 | cylinder(d=idler_d,h=idler_h,center=true,$fn=30); | 152 | cylinder(d=idler_d,h=idler_h,center=true,$fn=30); |
153 | cylinder(d=idler_screw_d,h=lever_thickness+2,center=true,$fn=30); | 153 | cylinder(d=idler_screw_d,h=lever_thickness+2,center=true,$fn=30); |
154 | }//place idler | 154 | }//place idler |
155 | // filament path | 155 | // filament path |
156 | rotate([0,0,45]) { | 156 | rotate([0,0,45]) { |
157 | translate([pulley_d/2-idler_filament_offset,0,0]) rotate([90,0,0]) { | 157 | translate([pulley_d/2-idler_filament_offset,0,0]) rotate([90,0,0]) { |
158 | cylinder(d=filament_d,h=gearbox_d,center=false,$fn=15); | 158 | cylinder(d=filament_d,h=gearbox_d,center=false,$fn=15); |
159 | }//rotate translate | 159 | }//rotate translate |
160 | translate([pulley_d/2+filament_offset,0,0]) rotate([-90,0,0]) { | 160 | translate([pulley_d/2+filament_offset,0,0]) rotate([-90,0,0]) { |
161 | cylinder(d=filament_d,h=gearbox_d,center=false,$fn=15); | 161 | cylinder(d=filament_d,h=gearbox_d,center=false,$fn=15); |
162 | translate([0,0,mount_d/sqrt(2)/2+mount_screw_d]) | 162 | translate([0,0,mount_d/sqrt(2)/2+mount_screw_d]) |
163 | pushfit(pf); | 163 | pushfit(pf); |
164 | }//rotate translate | 164 | }//rotate translate |
165 | }//rotate | 165 | }//rotate |
166 | }//translate teeth | 166 | }//translate teeth |
167 | }//translate pulley | 167 | }//translate pulley |
168 | }//translate protrusion | 168 | }//translate protrusion |
169 | }//vitamins | 169 | }//vitamins |
170 | 170 | ||
171 | module lever() { | 171 | module lever() { |
172 | translate([0,0,protrusion_h+pulley_elevation+teeth_elevation]) { | 172 | translate([0,0,protrusion_h+pulley_elevation+teeth_elevation]) { |
173 | difference() { | 173 | difference() { |
174 | union() { | 174 | union() { |
175 | hull() { | 175 | hull() { |
176 | place_idler() | 176 | place_idler() |
177 | cylinder(d=lsd,h=lever_thickness,center=true,$fn=60); | 177 | cylinder(d=lsd,h=lever_thickness,center=true,$fn=60); |
178 | translate([mount_d/2,0,0]) | 178 | translate([mount_d/2,0,0]) |
179 | cylinder(d=lsd,h=lever_thickness,center=true,$fn=60); | 179 | cylinder(d=lsd,h=lever_thickness,center=true,$fn=60); |
180 | }//hull | 180 | }//hull |
181 | hull() { | 181 | hull() { |
182 | translate([mount_d/2,0,0]) | 182 | translate([mount_d/2,0,0]) |
183 | cylinder(d=lsd,h=lever_thickness,center=true,$fn=60); | 183 | cylinder(d=lsd,h=lever_thickness,center=true,$fn=60); |
184 | translate([mount_d/2,-longwing,0]) rotate([0,90,0]) | 184 | translate([mount_d/2,-longwing,0]) rotate([0,90,0]) |
185 | cylinder(d=lever_thickness,h=lsd,center=true,$fn=60); | 185 | cylinder(d=lever_thickness,h=lsd,center=true,$fn=60); |
186 | }//hull | 186 | }//hull |
187 | }//union | 187 | }//union |
188 | 188 | ||
189 | // filament path | 189 | // filament path |
190 | place_idler() | 190 | place_idler() |
191 | translate([-idler_d/2-idler_filament_offset,0,0]) | 191 | translate([-idler_d/2-idler_filament_offset,0,0]) |
192 | rotate([90,0,0]) { | 192 | rotate([90,0,0]) { |
193 | mirror([0,1,0]) | 193 | mirror([0,1,0]) |
194 | teardrop(d=filament_path_d,h=3*gearbox_d,center=true); | 194 | teardrop(d=filament_path_d,h=3*gearbox_d,center=true); |
195 | translate([0,0, | 195 | translate([0,0, |
196 | sqrt(2)*(mount_d-pulley_d+lsd)/2 | 196 | sqrt(2)*(mount_d-pulley_d+lsd)/2 |
197 | ]) { | 197 | ]) { |
198 | cylinder(d1=filament_path_d,d2=2*filament_path_d, | 198 | cylinder(d1=filament_path_d,d2=2*filament_path_d, |
199 | h=filament_path_d,$fn=2*filament_path_d*fnd); | 199 | h=filament_path_d,$fn=2*filament_path_d*fnd); |
200 | translate([0,0,filament_path_d-epsilon]) | 200 | translate([0,0,filament_path_d-epsilon]) |
201 | cylinder(d=2*filament_path_d,h=lsd*sqrt(2),$fn=2*filament_path_d*fnd); | 201 | cylinder(d=2*filament_path_d,h=lsd*sqrt(2),$fn=2*filament_path_d*fnd); |
202 | }//translate | 202 | }//translate |
203 | }//rotate translate place_idler | 203 | }//rotate translate place_idler |
204 | 204 | ||
205 | // idler space and mounting hole | 205 | // idler space and mounting hole |
206 | place_idler() { | 206 | place_idler() { |
207 | cylinder(d=idler_d+idler_clearance*2,h=idler_h+idler_v_tolerance,center=true,$fn=60); | 207 | cylinder(d=idler_d+idler_clearance*2,h=idler_h+idler_v_tolerance,center=true,$fn=60); |
208 | cylinder(d=idler_screw_d,h=lever_thickness+2,center=true,$fn=30); | 208 | cylinder(d=idler_screw_d,h=lever_thickness+2,center=true,$fn=30); |
209 | translate([0,0,lever_thickness/2-idler_screwhead_h]) | 209 | translate([0,0,lever_thickness/2-idler_screwhead_h]) |
210 | cylinder(d=idler_screwhead_d,h=idler_screwhead_h+1,$fn=fnd*idler_screwhead_d); | 210 | cylinder(d=idler_screwhead_d,h=idler_screwhead_h+1,$fn=fnd*idler_screwhead_d); |
211 | } | 211 | } |
212 | // mounting screw hole | 212 | // mounting screw hole |
213 | translate([mount_d/2,0,0]) | 213 | translate([mount_d/2,0,0]) |
214 | cylinder(d=mount_screw_d+mount_screw_d_tolerance,h=lever_thickness+2,center=true,$fn=fnd*mount_screw_d); | 214 | cylinder(d=mount_screw_d+mount_screw_d_tolerance,h=lever_thickness+2,center=true,$fn=fnd*mount_screw_d); |
215 | 215 | ||
216 | // lever end | 216 | // lever end |
217 | translate([mount_d/2,0,0]) rotate([0,90,0]) { | 217 | translate([mount_d/2,0,0]) rotate([0,90,0]) { |
218 | translate([0,-longwing,lsd/2]) finger_indent(d=lever_thickness-1,r=15); | 218 | translate([0,-longwing,lsd/2]) finger_indent(d=lever_thickness-1,r=15); |
219 | translate([0,-longwing,0]) | 219 | translate([0,-longwing,0]) |
220 | mirror([0,0,1]) | 220 | mirror([0,0,1]) |
221 | difference() { | 221 | difference() { |
222 | cylinder(d=spring_d+spring_d_clearance,h=lsd,$fn=fnd*(spring_d+spring_d_clearance)); | 222 | cylinder(d=spring_d+spring_d_clearance,h=lsd,$fn=fnd*(spring_d+spring_d_clearance)); |
223 | sphere(d=spring_d*3/4,$fn=fnd*spring_d*3/4); | 223 | sphere(d=spring_d*3/4,$fn=fnd*spring_d*3/4); |
224 | } | 224 | } |
225 | }//rotate-translate | 225 | }//rotate-translate |
226 | }//difference | 226 | }//difference |
227 | // bridging patch | 227 | // bridging patch |
228 | if(bridges) place_idler() | 228 | if(bridges) place_idler() |
229 | translate([0,0,lever_thickness/2-mount_screwhead_h]) | 229 | translate([0,0,lever_thickness/2-mount_screwhead_h]) |
230 | mirror([0,0,1]) | 230 | mirror([0,0,1]) |
231 | cylinder(d=mount_screwhead_d,h=layer_height); | 231 | cylinder(d=mount_screwhead_d,h=layer_height); |
232 | }//translate | 232 | }//translate |
233 | }//lever module | 233 | }//lever module |
234 | 234 | ||
235 | module body() { | 235 | module body() { |
236 | difference() { | 236 | difference() { |
237 | union() { | 237 | union() { |
238 | cylinder(d=gearbox_d,h=body_h,$fn=fnd*gearbox_d); | 238 | cylinder(d=gearbox_d,h=body_h,$fn=fnd*gearbox_d); |
239 | // spring tensioner part | 239 | // spring tensioner part |
240 | translate([-gearbox_d/2,0,0]) hull() { | 240 | translate([-gearbox_d/2,0,0]) hull() { |
241 | translate([0,-longwing,ls_z]) | 241 | translate([0,-longwing,ls_z]) |
242 | rotate([0,90,0]) | 242 | rotate([0,90,0]) |
243 | cylinder(d=lever_thickness,h=fsw,$fn=fnd*lever_thickness); | 243 | cylinder(d=lever_thickness,h=fsw,$fn=fnd*lever_thickness); |
244 | hh=body_h-ls_z; | 244 | hh=body_h-ls_z; |
245 | translate([0,0,ls_z]) | 245 | translate([0,0,ls_z]) |
246 | mirror([0,1,0]) cube(size=[fsw,longwing+(st_split_w+st_split_w_tolerance)/2+st_thickshell,body_h-ls_z]); | 246 | mirror([0,1,0]) cube(size=[fsw,longwing+(st_split_w+st_split_w_tolerance)/2+st_thickshell,body_h-ls_z]); |
247 | hhh=ls_z; | 247 | hhh=ls_z; |
248 | translate([0,0,0]) | 248 | translate([0,0,0]) |
249 | mirror([0,1,0]) cube(size=[fsw,longwing-hhh+lever_thickness/sqrt(2),hhh+lever_thickness/2]); | 249 | mirror([0,1,0]) cube(size=[fsw,longwing-hhh+lever_thickness/sqrt(2),hhh+lever_thickness/2]); |
250 | }//hull translate | 250 | }//hull translate |
251 | 251 | ||
252 | // pushfit bracket | 252 | // pushfit bracket |
253 | translate([0,0,filament_elevation]) | 253 | translate([0,0,filament_elevation]) |
254 | rotate([0,0,45]) translate([pulley_d/2+filament_offset,0,0]) | 254 | rotate([0,0,45]) translate([pulley_d/2+filament_offset,0,0]) |
255 | rotate([-90,0,0]) | 255 | rotate([-90,0,0]) |
256 | translate([0,0,mount_d/sqrt(2)/2+mount_screw_d-gearbox_d/2/*TODO:*/]) { | 256 | translate([0,0,mount_d/sqrt(2)/2+mount_screw_d-gearbox_d/2/*TODO:*/]) { |
257 | pfbl = pf_h(pf)+gearbox_d/2; //TODO: | 257 | pfbl = pf_h(pf)+gearbox_d/2; //TODO: |
258 | pfbd = pf_d(pf)+2*pf_shell; | 258 | pfbd = pf_d(pf)+2*pf_shell; |
259 | hull() { | 259 | hull() { |
260 | cylinder(d=pfbd,h=pfbl,$fn=pfbd*fnd); | 260 | cylinder(d=pfbd,h=pfbl,$fn=pfbd*fnd); |
261 | translate([-epsilon/2,0,0]) { | 261 | translate([-epsilon/2,0,0]) { |
262 | cube(size=[epsilon,filament_elevation,pfbl-filament_elevation+pfbd/2]); | 262 | cube(size=[epsilon,filament_elevation,pfbl-filament_elevation+pfbd/2]); |
263 | mirror([0,1,0]) | 263 | mirror([0,1,0]) |
264 | cube(size=[epsilon,body_h-filament_elevation,pfbl-body_h+filament_elevation+pfbd/2]); | 264 | cube(size=[epsilon,body_h-filament_elevation,pfbl-body_h+filament_elevation+pfbd/2]); |
265 | }//translate | 265 | }//translate |
266 | }//hull | 266 | }//hull |
267 | }//translate rotate translate rotate translate | 267 | }//translate rotate translate rotate translate |
268 | }//union (first child of difference) | 268 | }//union (first child of difference) |
269 | 269 | ||
270 | // protrusion | 270 | // protrusion |
271 | translate([0,0,-1]) | 271 | translate([0,0,-1]) |
272 | cylinder(d=protrusion_d+protrusion_tolerance_h,h=protrusion_h+protrusion_tolerance_v+1,$fn=fnd*(protrusion_d+protrusion_tolerance_h)); | 272 | cylinder(d=protrusion_d+protrusion_tolerance_h,h=protrusion_h+protrusion_tolerance_v+1,$fn=fnd*(protrusion_d+protrusion_tolerance_h)); |
273 | // mount screw holes | 273 | // mount screw holes |
274 | for(zr=[0:90:359]) rotate([0,0,zr]) translate([mount_d/2,0,0]) { | 274 | for(zr=[0:90:359]) rotate([0,0,zr]) translate([mount_d/2,0,0]) { |
275 | translate([0,0,mount_screw_l-mount_depth-(bridges?layer_height:-epsilon)]) | 275 | translate([0,0,mount_screw_l-mount_depth-(bridges?layer_height:-epsilon)]) |
276 | mirror([0,0,1]) | 276 | mirror([0,0,1]) |
277 | cylinder(d=mount_screw_d+mount_screw_d_tolerance, | 277 | cylinder(d=mount_screw_d+mount_screw_d_tolerance, |
278 | h=mount_screw_l-mount_depth+1, | 278 | h=mount_screw_l-mount_depth+1, |
279 | $fn=fnd*(mount_screw_d+mount_screw_d_tolerance)); | 279 | $fn=fnd*(mount_screw_d+mount_screw_d_tolerance)); |
280 | translate([0,0,mount_screw_l-mount_depth]) | 280 | translate([0,0,mount_screw_l-mount_depth]) |
281 | cylinder(d=mount_screwhead_d,h=body_h+1,$fn=fnd*mount_screwhead_d); | 281 | cylinder(d=mount_screwhead_d,h=body_h+1,$fn=fnd*mount_screwhead_d); |
282 | }//for | 282 | }//for |
283 | // pushfit | 283 | // pushfit |
284 | pf_offset = mount_d/sqrt(2)/2+mount_screw_d; | 284 | pf_offset = mount_d/sqrt(2)/2+mount_screw_d; |
285 | translate([0,0,filament_elevation]) | 285 | translate([0,0,filament_elevation]) |
286 | rotate([0,0,45]) translate([pulley_d/2+filament_offset,0,0]) | 286 | rotate([0,0,45]) translate([pulley_d/2+filament_offset,0,0]) |
287 | rotate([-90,0,0]) | 287 | rotate([-90,0,0]) |
288 | translate([0,0,pf_offset]) | 288 | translate([0,0,pf_offset]) |
289 | rotate([0,0,180]) { | 289 | rotate([0,0,180]) { |
290 | pushfit(pf); | 290 | pushfit(pf); |
291 | mirror([0,0,1]) { | 291 | mirror([0,0,1]) { |
292 | fh = 1.5* (filament_guide_d-filament_path_d)/2; | 292 | fh = 1.5* (filament_guide_d-filament_path_d)/2; |
293 | fo = pf_offset -filament_path_d /*(idler_d+idler_clearance)/2*/-fh; | 293 | fo = pf_offset -filament_path_d /*(idler_d+idler_clearance)/2*/-fh; |
294 | translate([0,0,-1]) teardrop(d=filament_guide_d,h=fo/2,angle=225); | 294 | translate([0,0,-1]) teardrop(d=filament_guide_d,h=fo/2,angle=225); |
295 | translate([0,0,-1]) teardrop(d=filament_path_d,h=gearbox_d/2+1,angle=-225); | 295 | translate([0,0,-1]) teardrop(d=filament_path_d,h=gearbox_d/2+1,angle=-225); |
296 | translate([0,0,fo+epsilon]) | 296 | translate([0,0,fo+epsilon]) |
297 | cylinder(d1=filament_path_d,d2=filament_guide_d,h=fh,$fn=fnd*filament_guide_d); | 297 | cylinder(d1=filament_path_d,d2=filament_guide_d,h=fh,$fn=fnd*filament_guide_d); |
298 | }//mirror | 298 | }//mirror |
299 | }//rotate translate rotate translate rotate translate | 299 | }//rotate translate rotate translate rotate translate |
300 | // pulley | 300 | // pulley |
301 | cylinder(d=pulley_d+pulley_small_d_clearance,h=body_h+1,$fn=fnd*(pulley_d+pulley_d_clearance)); | 301 | cylinder(d=pulley_d+pulley_small_d_clearance,h=body_h+1,$fn=fnd*(pulley_d+pulley_d_clearance)); |
302 | cylinder(d=pulley_d+pulley_d_clearance,ls_z-max(idler_h,filament_guide_d)/2,$fn=fnd*(pulley_d+pulley_d_clearance)); | 302 | cylinder(d=pulley_d+pulley_d_clearance,ls_z-max(idler_h,filament_guide_d)/2,$fn=fnd*(pulley_d+pulley_d_clearance)); |
303 | 303 | ||
304 | translate([0,0,ls_z-ls_h/2]) { | 304 | translate([0,0,ls_z-ls_h/2]) { |
305 | // idler travel | 305 | // idler travel |
306 | translate([mount_d/2,0,0]) | 306 | translate([mount_d/2,0,0]) |
307 | rotate([0,0,45]) | 307 | rotate([0,0,45]) |
308 | rotate_extrude(angle=90,$fn=fnr*(shortwing+(idler_d+idler_clearance)/2)) | 308 | rotate_extrude(angle=90,$fn=fnr*(shortwing+(idler_d+idler_clearance)/2)) |
309 | square([shortwing+(idler_d+idler_clearance)/2,ls_h]); | 309 | square([shortwing+(idler_d+idler_clearance)/2,ls_h]); |
310 | // idler itself | 310 | // idler itself |
311 | place_idler() | 311 | place_idler() |
312 | cylinder(d=idler_d+idler_clearance,h=ls_h,$fn=fnd*(idler_d+idler_clearance)); | 312 | cylinder(d=idler_d+idler_clearance,h=ls_h,$fn=fnd*(idler_d+idler_clearance)); |
313 | // lever space | 313 | // lever space |
314 | rotate([0,0,45]) | 314 | rotate([0,0,45]) |
315 | rotate_extrude(angle=-135+max(atan(2*fsw/gearbox_d-1),atan(gearbox_d/mount_d-1))) | 315 | rotate_extrude(angle=-135+max(atan(2*fsw/gearbox_d-1),atan(gearbox_d/mount_d-1))) |
316 | square([gearbox_d/2+1,ls_h]); | 316 | square([gearbox_d/2+1,ls_h]); |
317 | } | 317 | } |
318 | 318 | ||
319 | // back side cutout | 319 | // back side cutout |
320 | // XXX: this is somewhat ugly and potentially bugged, | 320 | // XXX: this is somewhat ugly and potentially bugged, |
321 | // but I want to sleep. | 321 | // but I want to sleep. |
322 | a0_ = atan( | 322 | a0_ = atan( |
323 | (mount_d/sqrt(2)/2+mount_screw_d+pf_h(pf)+gearbox_d/2) | 323 | (mount_d/sqrt(2)/2+mount_screw_d+pf_h(pf)+gearbox_d/2) |
324 | / | 324 | / |
325 | ( | 325 | ( |
326 | pulley_d/2+filament_offset- | 326 | pulley_d/2+filament_offset- |
327 | (pf_d(pf)+2*pf_shell)/2/cos(30) | 327 | (pf_d(pf)+2*pf_shell)/2/cos(30) |
328 | ) | 328 | ) |
329 | ); | 329 | ); |
330 | a0 = -135 + ( (a0_>0) ? a0_ : 180+a0_ ); | 330 | a0 = -135 + ( (a0_>0) ? a0_ : 180+a0_ ); |
331 | a1 = atan((longwing-lever_thickness/2)/(gearbox_d/2)); | 331 | a1 = atan((longwing-lever_thickness/2)/(gearbox_d/2)); |
332 | translate([0,0,ls_z]) difference() { | 332 | translate([0,0,ls_z]) difference() { |
333 | rotate([0,0,-180+a0]) | 333 | rotate([0,0,-180+a0]) |
334 | rotate_extrude(angle=a1-a0) | 334 | rotate_extrude(angle=a1-a0) |
335 | translate([0,-ls_h/2]) | 335 | translate([0,-ls_h/2]) |
336 | square([sqrt(pow(gearbox_d/2,2)+pow(longwing-lever_thickness/2,2))+1, | 336 | square([sqrt(pow(gearbox_d/2,2)+pow(longwing-lever_thickness/2,2))+1, |
337 | ls_h]); | 337 | ls_h]); |
338 | translate([-mount_d/2,0,0]) | 338 | translate([-mount_d/2,0,0]) |
339 | cylinder(d=gearbox_d-mount_d,h=ls_h+2,center=true,$fn=fnd*(gearbox_d-mount_d)); | 339 | cylinder(d=gearbox_d-mount_d,h=ls_h+2,center=true,$fn=fnd*(gearbox_d-mount_d)); |
340 | }//difference translate | 340 | }//difference translate |
341 | 341 | ||
342 | // spring tensioner | 342 | // spring tensioner |
343 | translate([-gearbox_d/2,-longwing,ls_z]) rotate([0,-90,0]) { | 343 | translate([-gearbox_d/2,-longwing,ls_z]) rotate([0,-90,0]) { |
344 | mirror([0,0,1]) { | 344 | mirror([0,0,1]) { |
345 | translate([0,0,st_thickshell]) | 345 | translate([0,0,st_thickshell]) |
346 | hull() for(o=[0,spring_d]) translate([0,-o,0]) | 346 | hull() for(o=[0,spring_d]) translate([0,-o,0]) |
347 | rotate([0,0,30]) | 347 | rotate([0,0,30]) |
348 | cylinder(d=st_nut_d+st_nut_d_tolerance,h=st_nut_h+st_nut_h_tolerance,$fn=6); | 348 | cylinder(d=st_nut_d+st_nut_d_tolerance,h=st_nut_h+st_nut_h_tolerance,$fn=6); |
349 | translate([0,0,-1]) cylinder(d=st_screw_d+st_screw_d_tolerance,h=fsw+2,$fn=fnd*(st_screw_d+st_screw_d_tolerance)); | 349 | translate([0,0,-1]) cylinder(d=st_screw_d+st_screw_d_tolerance,h=fsw+2,$fn=fnd*(st_screw_d+st_screw_d_tolerance)); |
350 | bigd = spring_d+spring_d_clearance; | 350 | bigd = spring_d+spring_d_clearance; |
351 | hf = (bigd-st_screw_d-st_screw_d_tolerance)/2; | 351 | hf = (bigd-st_screw_d-st_screw_d_tolerance)/2; |
352 | translate([0,0,st_thickshell+st_nut_h+st_nut_h_tolerance+st_thinshell-epsilon]) { | 352 | translate([0,0,st_thickshell+st_nut_h+st_nut_h_tolerance+st_thinshell-epsilon]) { |
353 | cylinder(d1=st_screw_d+st_screw_d_tolerance,d2=bigd, | 353 | cylinder(d1=st_screw_d+st_screw_d_tolerance,d2=bigd, |
354 | h=hf+epsilon, $fn=fnd*bigd); | 354 | h=hf+epsilon, $fn=fnd*bigd); |
355 | translate([0,-(st_split_w+st_split_w_tolerance)/2,0]) | 355 | translate([0,-(st_split_w+st_split_w_tolerance)/2,0]) |
356 | cube(size=[body_h-ls_z+1,st_split_w+st_split_w_tolerance,fsw+1]); | 356 | cube(size=[body_h-ls_z+1,st_split_w+st_split_w_tolerance,fsw+1]); |
357 | }//translate | 357 | }//translate |
358 | translate([0,0,st_thickshell+st_nut_h+st_nut_h_tolerance+st_thinshell+hf-epsilon]) | 358 | translate([0,0,st_thickshell+st_nut_h+st_nut_h_tolerance+st_thinshell+hf-epsilon]) |
359 | cylinder(d=bigd,h=fsw+1,$fn=fnd*bigd); | 359 | cylinder(d=bigd,h=fsw+1,$fn=fnd*bigd); |
360 | }//mirror | 360 | }//mirror |
361 | }//translate | 361 | }//translate |
362 | 362 | ||
363 | // label | 363 | // label |
364 | body_label(); | 364 | body_label(); |
365 | 365 | ||
366 | }//difference | 366 | }//difference |
367 | 367 | ||
368 | }//body module | 368 | }//body module |
369 | module body_label() { | 369 | module body_label() { |
370 | if(body_label) { | 370 | if(body_label) { |
371 | label=body_label; | 371 | label=body_label; |
372 | label_thickness=body_label_thickness; | 372 | label_thickness=body_label_thickness; |
373 | label_len = len(label); | 373 | label_len = len(label); |
374 | labelspace = [gearbox_d/2-mount_screwhead_d/2-min_xy_shell,longwing-(mount_screwhead_d-st_split_w-st_split_w_tolerance)/2-2*min_xy_shell]; | 374 | labelspace = [gearbox_d/2-mount_screwhead_d/2-min_xy_shell,longwing-(mount_screwhead_d-st_split_w-st_split_w_tolerance)/2-2*min_xy_shell]; |
375 | translate([0,0,body_h-label_thickness]) | 375 | translate([0,0,body_h-label_thickness]) |
376 | linear_extrude(height=label_thickness+epsilon,convexity=64) | 376 | linear_extrude(height=label_thickness+epsilon,convexity=64) |
377 | translate([-mount_screwhead_d/2-min_xy_shell-labelspace.x/2,-longwing+(st_split_w+st_split_w_tolerance)/2+min_xy_shell+labelspace.y/2]) | 377 | translate([-mount_screwhead_d/2-min_xy_shell-labelspace.x/2,-longwing+(st_split_w+st_split_w_tolerance)/2+min_xy_shell+labelspace.y/2]) |
378 | mirror([left?0:1,0]) | 378 | mirror([left?0:1,0]) |
379 | text(text=label,size=labelspace.x/label_len,halign="center",valign="center",font="Arial Black"); | 379 | text(text=label,size=labelspace.x/label_len,halign="center",valign="center",font="Arial Black"); |
380 | }//if(body_label) | 380 | }//if(body_label) |
381 | } | 381 | } |
382 | 382 | ||
383 | module springpad() { | 383 | module springpad() { |
384 | smalld=st_screw_d+st_screw_d_tolerance+min_xy_shell; | 384 | smalld=st_screw_d+st_screw_d_tolerance+min_xy_shell; |
385 | bigd = spring_d+spring_d_clearance/2; | 385 | bigd = spring_d+spring_d_clearance/2; |
386 | hf = (bigd-smalld)/2; | 386 | hf = (bigd-smalld)/2; |
387 | h = hf*3.5; | 387 | h = hf*3.5; |
388 | translate([-gearbox_d/2+st_thickshell+st_nut_h+st_nut_h_tolerance+st_thinshell+1,-longwing,filament_elevation]) | 388 | translate([-gearbox_d/2+st_thickshell+st_nut_h+st_nut_h_tolerance+st_thinshell+1,-longwing,filament_elevation]) |
389 | rotate([0,90,0]) difference() { | 389 | rotate([0,90,0]) difference() { |
390 | union() { | 390 | union() { |
391 | cylinder(d1=smalld,d2=bigd,h=hf,$fn=fnd*bigd); | 391 | cylinder(d1=smalld,d2=bigd,h=hf,$fn=fnd*bigd); |
392 | translate([0,0,hf-epsilon]) | 392 | translate([0,0,hf-epsilon]) |
393 | cylinder(d=bigd,h=h-hf,$fn=fnd*bigd); | 393 | cylinder(d=bigd,h=h-hf,$fn=fnd*bigd); |
394 | translate([0,0,h]) | 394 | translate([0,0,h]) |
395 | sphere(d=spring_d*3/4,$fn=fnd*spring_d*3/4); | 395 | sphere(d=spring_d*3/4,$fn=fnd*spring_d*3/4); |
396 | l = body_h-ls_z; | 396 | l = body_h-ls_z; |
397 | w = st_split_w; | 397 | w = st_split_w; |
398 | hull() translate([0,-st_split_w/2,0]) mirror([1,0,0]) { | 398 | hull() translate([0,-st_split_w/2,0]) mirror([1,0,0]) { |
399 | translate([0,0,w]) | 399 | translate([0,0,w]) |
400 | cube(size=[l,st_split_w,w]); | 400 | cube(size=[l,st_split_w,w]); |
401 | cube(size=[l-w,st_split_w,2*w]); | 401 | cube(size=[l-w,st_split_w,2*w]); |
402 | } | 402 | } |
403 | } | 403 | } |
404 | translate([0,0,-epsilon]) | 404 | translate([0,0,-epsilon]) |
405 | cylinder(d=st_screw_d+st_screw_d_tolerance,h=2*hf+epsilon,$fn=fnd*(st_screw_d+st_screw_d_tolerance)); | 405 | cylinder(d=st_screw_d+st_screw_d_tolerance,h=2*hf+epsilon,$fn=fnd*(st_screw_d+st_screw_d_tolerance)); |
406 | } | 406 | } |
407 | } | 407 | } |
408 | 408 | ||
409 | module knob() { | 409 | module knob() { |
410 | ch = knob_indent_d/2; | 410 | ch = knob_indent_d/2; |
411 | knob_bore_l = body_h-protrusion_h-pulley_elevation-pulley_h-knob_v_clearance; | 411 | knob_bore_l = body_h-protrusion_h-pulley_elevation-pulley_h-knob_v_clearance; |
412 | translate([0,0,body_h+epsilon]) { | 412 | translate([0,0,body_h+epsilon]) { |
413 | mirror([0,0,1]) translate([0,0,-epsilon]) { | 413 | mirror([0,0,1]) translate([0,0,-epsilon]) { |
414 | difference() { | 414 | difference() { |
415 | cylinder(d=pulley_d,h=knob_bore_l,$fn=fnd*pulley_d); | 415 | cylinder(d=pulley_d,h=knob_bore_l,$fn=fnd*pulley_d); |
416 | translate([0,0,-1]) difference() { | 416 | translate([0,0,-1]) difference() { |
417 | cylinder(d=bore_d+knob_bore_d_tolerance,h=knob_bore_l+2); | 417 | cylinder(d=bore_d+knob_bore_d_tolerance,h=knob_bore_l+2); |
418 | translate([-bore_d/2-1,bore_dd-bore_d/2+knob_bore_d_tolerance/2,-1]) | 418 | translate([-bore_d/2-1,bore_dd-bore_d/2+knob_bore_d_tolerance/2,-1]) |
419 | cube([bore_d+2,bore_d/2,knob_bore_l+4]); | 419 | cube([bore_d+2,bore_d/2,knob_bore_l+4]); |
420 | } | 420 | } |
421 | } | 421 | } |
422 | } | 422 | } |
423 | difference() { | 423 | difference() { |
424 | union() { | 424 | union() { |
425 | cylinder(d1=gearbox_d-2*ch,d2=gearbox_d,h=ch+epsilon,$fn=fnd*gearbox_d); | 425 | cylinder(d1=gearbox_d-2*ch,d2=gearbox_d,h=ch+epsilon,$fn=fnd*gearbox_d); |
426 | translate([0,0,ch]) | 426 | translate([0,0,ch]) |
427 | cylinder(d=gearbox_d,h=knob_h-2*ch+epsilon,$fn=fnd*gearbox_d); | 427 | cylinder(d=gearbox_d,h=knob_h-2*ch+epsilon,$fn=fnd*gearbox_d); |
428 | translate([0,0,knob_h-ch]) | 428 | translate([0,0,knob_h-ch]) |
429 | cylinder(d1=gearbox_d,d2=gearbox_d-2*ch,h=ch,$fn=fnd*gearbox_d); | 429 | cylinder(d1=gearbox_d,d2=gearbox_d-2*ch,h=ch,$fn=fnd*gearbox_d); |
430 | } | 430 | } |
431 | for(a=[0:360/knob_indents:359]) rotate([0,0,a]) | 431 | for(a=[0:360/knob_indents:359]) rotate([0,0,a]) |
432 | translate([0,gearbox_d/2,-1]) | 432 | translate([0,gearbox_d/2,-1]) |
433 | cylinder(d=knob_indent_d,h=knob_h+2,$fn=fnd*knob_indent_d); | 433 | cylinder(d=knob_indent_d,h=knob_h+2,$fn=fnd*knob_indent_d); |
434 | } | 434 | } |
435 | } | 435 | } |
436 | }//knob module | 436 | }//knob module |
437 | 437 | ||
438 | module debug() { | 438 | module debug() { |
439 | difference() { | 439 | difference() { |
440 | children(); | 440 | children(); |
441 | if(debug) { | 441 | if(debug) { |
442 | // spring tensioner debug cutout | 442 | // spring tensioner debug cutout |
443 | translate([-gearbox_d/2,-longwing,ls_z]) rotate([0,-90,0]) | 443 | translate([-gearbox_d/2,-longwing,ls_z]) rotate([0,-90,0]) |
444 | translate([0,-lever_thickness/2-1,-gearbox_d]) | 444 | translate([0,-lever_thickness/2-1,-gearbox_d]) |
445 | cube(size=[body_h/2+1,lever_thickness/2+1,gearbox_d+2]); | 445 | cube(size=[body_h/2+1,lever_thickness/2+1,gearbox_d+2]); |
446 | // lever axis debug cutout | 446 | // lever axis debug cutout |
447 | translate([mount_d/2,0,-1]) | 447 | translate([mount_d/2,0,-1]) |
448 | rotate([0,0,-45]) | 448 | rotate([0,0,-45]) |
449 | cube(size=[gearbox_d-mount_d,gearbox_d-mount_d,body_h+knob_h+2]); | 449 | cube(size=[gearbox_d-mount_d,gearbox_d-mount_d,body_h+knob_h+2]); |
450 | // idler debug cutout | 450 | // idler debug cutout |
451 | translate([0,0,ls_z]) | 451 | translate([0,0,ls_z]) |
452 | place_idler() | 452 | place_idler() |
453 | rotate([0,0,-45]) | 453 | rotate([0,0,-45]) |
454 | translate([0,0,-lever_thickness/2-epsilon]) | 454 | translate([0,0,-lever_thickness/2-epsilon]) |
455 | cube(size=[lsd*sqrt(2)/2+1,lsd*sqrt(2)/2+1, | 455 | cube(size=[lsd*sqrt(2)/2+1,lsd*sqrt(2)/2+1, |
456 | lever_thickness+2*epsilon]); | 456 | lever_thickness+2*epsilon]); |
457 | // pushfit debug cutout | 457 | // pushfit debug cutout |
458 | place_idler() | 458 | place_idler() |
459 | translate([-idler_d/2+filament_offset,0,ls_z]) | 459 | translate([-idler_d/2+filament_offset,0,ls_z]) |
460 | cube(size=[gearbox_d/2,gearbox_d/2+pf_h(pf),body_h-ls_z+knob_h+1]); | 460 | cube(size=[gearbox_d/2,gearbox_d/2+pf_h(pf),body_h-ls_z+knob_h+1]); |
461 | }//if debug | 461 | }//if debug |
462 | }//difference | 462 | }//difference |
463 | } | 463 | } |
464 | 464 | ||
465 | mirrorleft() | 465 | mirrorleft() |
466 | debug() | 466 | debug() |
467 | if(what=="lever") color("green",0.7) lever(); | 467 | if(what=="lever") color("green",0.7) lever(); |
468 | else if(what=="body") color("yellow",0.7) body(); | 468 | else if(what=="body") color("yellow",0.7) body(); |
469 | else if(what=="body.label") color("brown",0.7) body_label(); | 469 | else if(what=="body.label") color("brown",0.7) body_label(); |
470 | else if(what=="knob") color("red",0.7) knob(); | 470 | else if(what=="knob") color("red",0.7) knob(); |
471 | else if(what=="springpad") color("blue",0.7) springpad(); | 471 | else if(what=="springpad") color("blue",0.7) springpad(); |
472 | else if(what=="both") { | 472 | else if(what=="both") { |
473 | color("green",0.7) lever(); | 473 | color("green",0.7) lever(); |
474 | color("yellow",0.7) body(); | 474 | color("yellow",0.7) body(); |
475 | color("brown",0.7) body_label(); | 475 | color("brown",0.7) body_label(); |
476 | }else{ | 476 | }else{ |
477 | color("green",0.7) lever(); | 477 | color("green",0.7) lever(); |
478 | color("yellow",0.7) body(); | 478 | color("yellow",0.7) body(); |
479 | color("red",0.7) knob(); | 479 | color("red",0.7) knob(); |
480 | color("blue",0.7) springpad(); | 480 | color("blue",0.7) springpad(); |
481 | } | 481 | } |
482 | } | 482 | } |
483 | 483 | ||
484 | the_extruder(what="*",left=false,debug=true); | 484 | the_extruder(what="*",left=false,debug=true); |