mirror of
https://github.com/DJSundog/NopSCADlib.git
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190 lines
6.4 KiB
OpenSCAD
190 lines
6.4 KiB
OpenSCAD
//
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// NopSCADlib Copyright Chris Palmer 2018
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// nop.head@gmail.com
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// hydraraptor.blogspot.com
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//
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// This file is part of NopSCADlib.
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//
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// NopSCADlib is free software: you can redistribute it and/or modify it under the terms of the
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// GNU General Public License as published by the Free Software Foundation, either version 3 of
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// the License, or (at your option) any later version.
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//
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// NopSCADlib is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
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// without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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// See the GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License along with NopSCADlib.
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// If not, see <https://www.gnu.org/licenses/>.
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//
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//
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//! Retracting strap handle. Print the strap with flexible filament. Shown with default dimensions but can
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//! be fully customised by passing a list of properties.
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//
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include <../core.scad>
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use <../vitamins/insert.scad>
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strap = strap();
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wall = 2;
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clearance = 0.5;
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step = 0.3;
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overlap = 3;
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panel_clearance = 0.25;
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counterbore = 1;
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function strap_width(type = strap) = type[0]; //! Width of strap
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function strap_thickness(type = strap) = type[1]; //! Thickness of strap
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function strap_screw(type = strap) = type[2]; //! Screw type
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function strap_panel(type = strap) = type[3]; //! Panel thickness
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function strap_extension(type = strap) = type[4]; //! How much length of the strap that can pull out
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function strap(width = 18, thickness = 2, screw = M3_pan_screw, panel_thickness = 3, extension = 25) = //! Construct a property list for a strap
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[ width, thickness, screw, panel_thickness, extension ];
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function strap_insert(type) = screw_insert(strap_screw(type)); //! The insert type
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function strap_key(type) = strap_panel(type) - panel_clearance;
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function strap_height(type) = wall + max(insert_length(strap_insert(type)) - strap_key(type), strap_thickness(type) + clearance); //! Height of the ends
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function strap_end_width(type = strap) = strap_width(type) + 2 * (wall + clearance); //! Width of the ends
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function strap_boss_r(type) = wall + insert_hole_radius(strap_insert(type));
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function strap_min_width(type) = (strap_width(type) - 2 * (strap_boss_r(type) + clearance)) / 2;
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module strap_boss_shape(type)
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hull() {
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r = strap_boss_r(type);
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circle4n(r);
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translate([r / 2, 0])
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rounded_square([r, 2 * r], r = 1);
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}
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module strap_screw_positions(length, type = strap) //! Place children at the screw positions
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for(end = [-1, 1])
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translate([end * (length / 2 - wall - 2 * clearance - strap_min_width(type) - strap_boss_r(type) - strap_extension(type) / 2), 0])
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rotate(end * 90 + 90)
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children();
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module strap_holes(length, type = strap, h = 100) //! The panel cut outs
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extrude_if(h)
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strap_screw_positions(length, type)
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offset(cnc_bit_r + 0.05)
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offset(-step - cnc_bit_r)
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strap_boss_shape(type);
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module strap(length, type = strap) { //! Generate the STL for the rubber strap
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stl("strap");
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len = length - 2 * (wall + clearance);
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w = strap_width(type);
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linear_extrude(strap_thickness(type), convexity = 3)
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difference() {
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rounded_square([len, w], w / 2 - eps);
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for(end = [-1, 1])
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translate([end * (len / 2 - strap_min_width(type) - strap_boss_r(type) - clearance), 0])
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rotate(end * 90 + 90)
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hull() {
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offset(clearance)
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strap_boss_shape(type);
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translate([strap_extension(type) / 2, 0])
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offset(clearance)
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strap_boss_shape(type);
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}
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}
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}
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module strap_end(type = strap) { //! Generate the STL for end piece
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stl("strap_end");
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z1 = strap_height(type) - strap_thickness(type) - clearance;
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z2 = strap_height(type) + strap_key(type);
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r1 = strap_boss_r(type) - 1;
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module outer()
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hull() {
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translate([0, -strap_end_width(type) / 2])
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square([strap_boss_r(type) + overlap, strap_end_width(type)]);
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translate([-strap_extension(type) / 2, 0])
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circle(d = strap_end_width(type));
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}
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module with_hole()
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difference() {
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children();
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circle(r1);
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}
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union() {
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linear_extrude(z1)
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with_hole()
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outer();
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translate_z(z1)
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linear_extrude(strap_height(type) - z1)
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difference() {
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outer();
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hull() {
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translate([0, -strap_width(type) / 2 - clearance])
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square([strap_boss_r(type) + overlap, strap_width(type) + 2 * clearance]);
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translate([-strap_extension(type) / 2, 0])
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circle(d = strap_width(type) + 2 * clearance);
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}
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}
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linear_extrude(strap_height(type) - layer_height)
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with_hole()
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strap_boss_shape(type);
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linear_extrude(z2)
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with_hole()
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offset(cnc_bit_r)
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offset(-step - cnc_bit_r)
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strap_boss_shape(type);
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render() difference() {
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cylinder(r = r1 + eps, h = z2);
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translate_z(z2)
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insert_hole(strap_insert(type), counterbore);
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}
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}
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}
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//
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//! * Place the insert into the hole and push home with a soldering iron with a tapered bit heated to 200°C.
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//
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module strap_end_assembly(type = strap)
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assembly("strap_end") {
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stl_colour(pp1_colour)
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strap_end(type);
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translate_z(strap_height(type) + strap_key(type))
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insert(strap_insert(type));
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}
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module strap_assembly(length, type = strap) { //! Assembly with screws in place
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screw = strap_screw(type);
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penny = penny_washer(screw_washer(screw));
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screw_length = screw_length(screw, washer_thickness(penny) + panel_clearance + counterbore, 1, true);
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stl_colour(pp4_colour) strap(length, type);
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strap_screw_positions(length, type)
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translate_z(strap_height(type))
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vflip() {
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explode(-50) strap_end_assembly(type);
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translate_z(strap_height(type) + strap_panel(type))
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screw_and_washer(screw, screw_length, true, true);
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}
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}
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