1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
|
module foot(radius,wall,len,foot_radius,foot_height,angle,hole_radius,hole_dist,end=true,hole=true,circlet=true) {
cut_h = (radius+wall)*sin(angle);
cut_r = (radius+wall)/cos(angle);
difference() {
union() {
difference() {
rotate([0,angle,0]) cylinder(r=radius + wall, h = len);
translate([0,0,-cut_h]) cylinder(r=cut_r, h=cut_h);
}
translate([0,0,-0.01]) cylinder(r = foot_radius, h = foot_height);
if (circlet) {
translate([-(wall+radius),0,foot_height+2]) rotate([90, 0, 0]) difference() {
cylinder(r=8, h=4, center=true);
cylinder(r=4, h=5, center=true);
}
}
if (end) {
translate([cut_r,0,radius+wall]) rotate([0,90,0])
cylinder(r=radius + wall, h = len);
}
}
if (circlet) {
rotate([0, angle, 0]) translate([0,0, radius * sin(angle) + foot_height]) cylinder(r = radius, h = len);
}
if (hole) {
translate([0,foot_radius - hole_dist,-1]) cylinder(r=hole_radius, h=foot_height + 2);
translate([0,-foot_radius + hole_dist,-1]) cylinder(r=hole_radius, h=foot_height + 2);
}
if (end) {
translate([cut_r+wall/2,0,radius+wall]) rotate([0,90,0])
translate([0,0,wall]) cylinder(r=radius, h=len);
}
}
}
module t_connector(radius, wall, len, angle) {
rotate([90,0,0]) difference() {
union() {
cylinder(r=radius + wall, h=len*2, center=true);
rotate([0, angle, 0]) cylinder(r=radius + wall, h=len);
}
translate([0,0,len/2+wall/2]) cylinder(r=radius, h=len, center=true);
translate([0,0,-len/2-wall/2]) cylinder(r=radius, h=len, center=true);
rotate([0, angle, 0]) translate([0, 0, radius+wall]) cylinder(r=radius, h=len);
}
}
module star_connector(radius, wall, len, angles) {
rotate([90,0,0]) difference() {
union() {
sphere(r=radius + wall);
for (a = angles) {
rotate(a) cylinder(r=radius + wall, h=len);
}
}
for (a = angles) {
rotate(a) translate([0, 0, radius+wall]) cylinder(r=radius, h=len);
}
}
}
module cross_connector(radius, wall, len, angle) {
cc_cylinder_len = len + (radius+wall)*tan(angle)*2;
intersection() {
difference() {
union() {
translate([0, radius, 0]) rotate([0, angle, 0])
cylinder(r=radius + wall, h=cc_cylinder_len, center=true);
translate([0, -radius, 0]) rotate([0, -angle, 0])
cylinder(r=radius + wall, h=cc_cylinder_len, center=true);
}
translate([0, radius + 0.2, 0]) rotate([0, angle, 0])
cylinder(r=radius, h=cc_cylinder_len+2, center=true);
translate([0, -radius + 0.2, 0]) rotate([0, -angle, 0])
cylinder(r=radius, h=cc_cylinder_len+2, center=true);
}
cube([(len+radius)*2, (len+radius)*2, len*sin(90-angle)], center=true);
}
}
|