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https://github.com/kennetek/gridfinity-rebuilt-openscad.git
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Option to only put holes at corners of bin
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parent
51b5053de2
commit
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6 changed files with 25 additions and 45 deletions
4
.gitignore
vendored
4
.gitignore
vendored
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@ -1,6 +1,8 @@
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ignore/
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gridfinity-rebuilt.json
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gridfinity-rebuilt-bins.json
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stl/
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batch/
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site/
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site/
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*.json
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@ -55,33 +55,26 @@ d_magic = -2*d_clear-2*d_wall+d_div;
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// Baseplate bottom part height (part added with weigthed=true)
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bp_h_bot = 6.4;
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// Baseplate bottom cutout rectangle size
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bp_cut_size = 21.4;
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// Baseplate bottom cutout rectangle depth
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bp_cut_depth = 4;
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// Baseplate bottom cutout rounded thingy width
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bp_rcut_width = 8.5;
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// Baseplate bottom cutout rounded thingy left
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bp_rcut_length = 4.25;
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// Baseplate bottom cutout rounded thingy depth
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bp_rcut_depth = 2;
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// countersink diameter for baseplate
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d_cs = 2.5;
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// radius of cutout for skeletonized baseplate
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r_skel = 2;
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// baseplate counterbore radius
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r_cb = 2.75;
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// baseplate counterbore depth
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h_cb = 3;
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// minimum baseplate thickness (when skeletonized)
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h_skel = 1;
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// Prime numbers
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p_corn = 401;
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@ -1,24 +0,0 @@
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{
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"fileFormatVersion": "1",
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"parameterSets": {
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"New set 1": {
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"$fa": "8",
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"$fs": "0.25",
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"div_base_x": "0",
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"div_base_y": "0",
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"divx": "1",
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"divy": "1",
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"enable_zsnap": "false",
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"gridx": "1",
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"gridy": "1",
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"gridz": "6",
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"gridz_define": "0",
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"height_internal": "0",
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"length": "42",
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"scoop": "1",
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"style_hole": "3",
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"style_lip": "0",
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"style_tab": "1"
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}
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}
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}
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@ -38,9 +38,9 @@ gridz = 6;
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length = 42;
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/* [Compartments] */
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// number of X Divisions
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// number of X Divisions (set to zero to have solid bin)
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divx = 1;
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// number of y Divisions
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// number of y Divisions (set to zero to have solid bin)
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divy = 1;
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/* [Height] */
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@ -58,6 +58,8 @@ style_tab = 1; //[0:Full,1:Auto,2:Left,3:Center,4:Right,5:None]
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style_lip = 0; //[0: Regular lip, 1:remove lip subtractively, 2: remove lip and retain height]
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// scoop weight percentage. 0 disables scoop, 1 is regular scoop. Any real number will scale the scoop.
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scoop = 1; //[0:0.1:1]
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// only cut magnet/screw holes at the corners of the bin to save uneccesary print time
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style_corners = true;
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/* [Base] */
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style_hole = 3; // [0:no holes, 1:magnet holes only, 2: magnet and screw holes - no printable slit, 3: magnet and screw holes - printable slit]
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@ -76,7 +78,7 @@ gridfinityInit(gridx, gridy, height(gridz, gridz_define, style_lip, enable_zsnap
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if (divx > 0 && divy > 0)
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cutEqual(n_divx = divx, n_divy = divy, style_tab = style_tab, scoop_weight = scoop);
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}
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gridfinityBase(gridx, gridy, length, div_base_x, div_base_y, style_hole);
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gridfinityBase(gridx, gridy, length, div_base_x, div_base_y, style_hole*(style_corners?p_corn:1));
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}
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@ -44,6 +44,8 @@ style_tab = 1; //[0:Full,1:Auto,2:Left,3:Center,4:Right,5:None]
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/* [Base] */
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style_hole = 0; // [0:no holes, 1:magnet holes only, 2: magnet and screw holes - no printable slit, 3: magnet and screw holes - printable slit]
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// only cut magnet/screw holes at the corners of the bin to save uneccesary print time
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style_corners = true;
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// number of divisions per 1 unit of base along the X axis. (default 1, only use integers. 0 means automatically guess the right division)
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div_base_x = 0;
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// number of divisions per 1 unit of base along the Y axis. (default 1, only use integers. 0 means automatically guess the right division)
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@ -64,18 +66,19 @@ gridfinityLite(gridx, gridy, gridz, gridz_define, style_lip, enable_zsnap, lengt
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module gridfinityLite(gridx, gridy, gridz, gridz_define, style_lip, enable_zsnap, length, div_base_x, div_base_y, style_hole) {
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sh = style_hole*(style_corners?p_corn:1);
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difference() {
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union() {
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gridfinityInit(gridx, gridy, height(gridz, gridz_define, style_lip, enable_zsnap), 0, length)
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children();
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gridfinityBase(gridx, gridy, length, div_base_x, div_base_y, style_hole);
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gridfinityBase(gridx, gridy, length, div_base_x, div_base_y, sh);
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}
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difference() {
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union() {
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intersection() {
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difference() {
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gridfinityBase(gridx, gridy, length, div_base_x, div_base_y, style_hole, -d_wall*2, false);
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gridfinityBase(gridx, gridy, length, div_base_x, div_base_y, sh, -d_wall*2, false);
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translate([-gridx*length/2,-gridy*length/2,2*h_base])
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cube([gridx*length,gridy*length,1000]);
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}
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@ -102,9 +102,15 @@ module gridfinityBase(gx, gy, l, dx, dy, style_hole, off=0, final_cut=true) {
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pattern_linear(gx/dbnx, gy/dbny, dbnx*l, dbny*l)
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block_base_solid(dbnx, dbny, l, off);
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if (style_hole > 0)
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pattern_linear(gx, gy, l)
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block_base_hole(style_hole, off);
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if (style_hole > 0)
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if (style_hole % p_corn < 0.001)
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pattern_linear(2, 2, (gx-1)*length+d_hole, (gy-1)*length+d_hole)
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block_base_hole(style_hole / p_corn, off);
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else
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pattern_linear(gx, gy, l)
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pattern_circular(abs(d_hole)<0.001?1:4)
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translate([d_hole/2, d_hole/2, 0])
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block_base_hole(style_hole, off);
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}
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}
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}
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@ -132,8 +138,6 @@ module block_base_solid(dbnx, dbny, l, o) {
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module block_base_hole(style_hole, o=0) {
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r1 = r_hole1-o/2;
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r2 = r_hole2-o/2;
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pattern_circular(abs(d_hole)<0.001?1:4)
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translate([d_hole/2, d_hole/2, 0])
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union() {
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difference() {
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cylinder(h = 2*(h_hole-o+(style_hole==3?h_slit:0)), r=r2, center=true);
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