205 lines
5.9 KiB
OpenSCAD
205 lines
5.9 KiB
OpenSCAD
// import BOSL2
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include <BOSL2/std.scad>
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$fn=100;
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/* [Hidden] */
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// constants which shouldn't be changed
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// This is the HomeRacker base unit. don't change this!
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BASE_UNIT=15; // mm
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// Standard tolerance for the mount. This is a sane default.
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TOLERANCE=0.2; // mm
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// Base strength. This is a sane default.
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BASE_STRENGTH=2; // mm
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// Chamfer size. This is a sane default.
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CHAMFER=1; // mm
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// Lock Pin side length
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LOCK_PIN_SIDE=4; // mm
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// lock pin edge distance
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LOCK_PIN_EDGE_DISTANCE=5.5; // mm
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/* [Base] */
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// If set to true, the mount will be fitted to align with the 10/19 inch HomRacker rackmount kit.
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//fit_to_rack=true;
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/* [Device Measurements] */
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// Width of the device in mm. Will determine how far apart the actual mounts are in width.
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device_width=100 // [20:0.1:500]
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; // TODO test for zero cube
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// Depth of the device in mm. Will determine how far apart the actual mounts are in depth.
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device_depth=99; // [54:0.1:500]
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// Height of the device in mm. Will determine how far apart the actual mounts are in height.
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device_height=25.5; // [15:0.1:500]
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/* [Bracket] */
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// Defines the bracket thickness on top of the device.
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bracket_strength_top=7.5; // [4:0.1:20]
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bracket_strength_sides=7.5; // [4:0.1:20]
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// diff_width resembles the gap between the device and the mount. This gap will be filled with a cuboid
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modulo_width=(BASE_UNIT - ( device_width + TOLERANCE ) % BASE_UNIT);
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WIDTH_DIFF = modulo_width==15 ? 0 : modulo_width;
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echo("Diff Width: ", WIDTH_DIFF);
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mount_gap_filler_start=(device_width+TOLERANCE)/2;
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// echo("mount_gap_filler_start: ", mount_gap_filler_start);
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// echo("effective mount distance: ", device_width+WIDTH_DIFF+TOLERANCE);
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DEPTH_DIFF=device_depth % BASE_UNIT;
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echo("Diff Depth: ", DEPTH_DIFF);
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mount_offset_depth=(device_depth-DEPTH_DIFF-BASE_UNIT)/2;
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echo("mount_offset_depth*2: ", mount_offset_depth*2);
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/* Code */
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// creates a bracket around the device with TOLERANCE as additional space and BASE_STRENGTH as the strength of the bracket
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module bracket(width,depth,height) {
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// Bracket
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outer_width=width+BASE_STRENGTH*2+TOLERANCE;
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outer_depth=depth+BASE_STRENGTH*2+TOLERANCE;
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outer_height=height+BASE_STRENGTH;
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intersection(){
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difference() {
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// Outer
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cuboid(
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size=[outer_width,outer_depth,outer_height],
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anchor=BOTTOM,
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chamfer=CHAMFER, edges=[TOP,FRONT,BACK,LEFT,RIGHT], except=[BOTTOM]
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);
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// Top Skeleton
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cuboid(
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size=[width-bracket_strength_top,depth-bracket_strength_top,outer_height],
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anchor=BOTTOM,
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chamfer=-CHAMFER, edges=[TOP]
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);
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// Bottom Recess
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cuboid(
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size=[outer_width,outer_depth,height-bracket_strength_sides],
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anchor=BOTTOM
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);
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}
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translate([0,0,outer_height])
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cuboid(
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size=[outer_width,outer_depth,bracket_strength_sides],
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anchor=TOP,
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chamfer=CHAMFER, edges=[BOTTOM]
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);
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}
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}
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// device module adds TOLERANCE to the device size and creates a cuboid with the device size
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// this is used to create the device in the mount and add TOLERANCE to the device size for spacing
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module device(width,depth,height) {
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// Device
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cuboid(
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size=[width+TOLERANCE,depth+TOLERANCE,height+TOLERANCE],
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anchor=BOTTOM
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);
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}
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// Mount
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module mount(){
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depth=BASE_UNIT+BASE_STRENGTH*2+TOLERANCE;
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gap_filler_width=(WIDTH_DIFF)/2;
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// depth translation
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translate([0,mount_offset_depth,0])
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union(){
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translate([mount_gap_filler_start,0,0])
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// Mount
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union(){
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top_width=BASE_STRENGTH;
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bottom_width=BASE_UNIT+gap_filler_width;
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// Bridge
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difference(){
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cuboid_width = bottom_width;
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cuboid_chamfer = bottom_width;
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prismoid(
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size1 = [bottom_width, depth], // Bottom face: width 30, depth 60
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size2 = [top_width, depth], // Top face: becomes a line segment (width 0)
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shift = [(-bottom_width+top_width)/2, 0], // Shift top edge center to X=+15 (aligns with right edge of base)
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chamfer=CHAMFER,
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h = device_height, // Height
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//chamfer=CHAMFER/2,
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anchor = BOTTOM+LEFT // Anchor bottom left
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);
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translate([0,0,BASE_STRENGTH])
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cuboid(
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size=[cuboid_width,BASE_UNIT,device_height],
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anchor=BOTTOM+LEFT,
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chamfer=BASE_UNIT/2, edges=[BOTTOM], except=[RIGHT]
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);
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}
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// Depth enforcement
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depth_enforcement_x = BASE_STRENGTH;
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depth_enforcemnt_y2 = BASE_UNIT*2;
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prismoid(
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size1 = [depth_enforcement_x, depth],
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size2 = [depth_enforcement_x, depth_enforcemnt_y2],
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shift = [0, (depth-depth_enforcemnt_y2)/2],
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h = device_height,
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chamfer=[CHAMFER,0,0,CHAMFER],
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anchor = BOTTOM+LEFT
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);
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// Mount Rail with holes
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difference(){
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// Mount Rail
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difference(){
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height=BASE_UNIT+TOLERANCE/2;
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// outer
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cuboid(
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size=[bottom_width,depth,height],
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anchor=TOP+LEFT,
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chamfer=CHAMFER, edges=[BOTTOM,RIGHT], except=[TOP]
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);
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// support recess
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cuboid(
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size=[bottom_width,BASE_UNIT+TOLERANCE,height],
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anchor=TOP+LEFT
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);
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}
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// holes
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translate([bottom_width-LOCK_PIN_EDGE_DISTANCE,0,-LOCK_PIN_EDGE_DISTANCE-TOLERANCE/2])
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cuboid(
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size=[LOCK_PIN_SIDE,depth,LOCK_PIN_SIDE],
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anchor=TOP+RIGHT
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);
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}
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}
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}
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}
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module mirror_mount_x_plane(){
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mount();
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x_mirror_plane = [1,0,0];
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mirror(x_mirror_plane) {
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mount();
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}
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}
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// Assembly
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rotate([180,0,0])
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union() {
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difference() {
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bracket(device_width,device_depth,device_height);
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device(device_width,device_depth,device_height);
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}
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// Mount Right
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mirror_mount_x_plane();
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y_mirror_plane = [0,1,0];
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mirror(y_mirror_plane) {
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mirror_mount_x_plane();
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}
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}
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