mirror of
https://github.com/DJSundog/NopSCADlib.git
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147 lines
5.4 KiB
OpenSCAD
147 lines
5.4 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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//! Ring terminals and earth assemblies for DiBond panels.
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//
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include <../utils/core/core.scad>
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use <screw.scad>
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use <nut.scad>
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use <washer.scad>
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use <../utils/tube.scad>
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function ringterm_od(type) = type[1]; //! Outside diameter
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function ringterm_id(type) = type[2]; //! Inside diameter
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function ringterm_length(type) = type[3]; //! Length of the tail including the ring
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function ringterm_width(type) = type[4]; //! Width of the tail
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function ringterm_hole(type) = type[5]; //! Wire hole diameter
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function ringterm_thickness(type) = type[6]; //! Metal thickness
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function ringterm_screw(type) = type[7]; //! Screw type
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function ringterm_crimp_length(type) = type[8]; //! If non-zero the length of the crimp tube
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function ringterm_extent(type) = ringterm_length(type) / sqrt(2); //! Space to leave
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module ring_terminal(type) { //! Draw specifeid ring terminal
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screw = ringterm_screw(type);
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d = 2 * screw_radius(screw);
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crimp = ringterm_crimp_length(type);
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vitamin(str("ring_terminal(", type[0], "): Ring terminal ", crimp ? "crimp " : "", d, "mm"));
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t = ringterm_thickness(type);
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w = ringterm_width(type);
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od = ringterm_od(type);
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id = ringterm_id(type);
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l = ringterm_length(type);
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angle = crimp ? 0 : 45;
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transition = 1;
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bend = crimp ? l - od / 2 - crimp - transition : washer_radius(screw_washer(screw)) + t * tan(angle / 2);
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hole_d = ringterm_hole(type);
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module hull_if_crimp()
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if(crimp)
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hull()
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children();
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else
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children();
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color("silver") union() {
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linear_extrude(t)
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difference() {
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hull_if_crimp() {
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circle(d = od);
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translate([-w / 2, -bend, 0])
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square([w, bend - id / 2]);
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}
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circle(d = id);
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}
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if(crimp) {
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translate([0, -bend, w / 2])
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rotate([90, 0, 0]) {
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render() difference() {
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union() {
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translate_z(transition)
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cylinder(d = w, h = crimp);
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hull() {
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translate_z(transition)
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cylinder(d = w, h = eps);
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translate([-w / 2, -w / 2])
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cube([w, t, eps]);
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}
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}
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hull() {
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translate_z(-eps)
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cylinder(d = w - 2 * t, h = crimp + transition + 2 * eps);
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translate([-w / 2 + t, -w / 2 + t])
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cube([w - 2 * t, w / 2 - t, eps]);
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}
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translate([0, w / 2])
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cube([0.1, w, 100], center = true);
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}
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}
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}
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else
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translate([0, -bend])
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rotate([-angle, 0, 0])
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linear_extrude(t)
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difference() {
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length = l - od / 2 - bend;
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hull() {
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translate([-w / 2, -eps])
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square([w, eps]);
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translate([0, -length + w / 2])
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circle(d = w);
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}
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if(hole_d)
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translate([0, -length + w / 2])
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circle(d = hole_d);
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}
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}
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translate_z(ringterm_thickness(type))
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children();
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}
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module ring_terminal_hole(type, h = 0) //! Drill hole for the screw
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drill(screw_clearance_radius(ringterm_screw(type)), h);
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module ring_terminal_assembly(type, thickness, top = false) { //! Earthing assembly for DiBond twin skins
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screw = ringterm_screw(type);
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washer = screw_washer(screw);
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nut = screw_nut(screw);
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screw_length = screw_longer_than(thickness + 2 * washer_thickness(washer) + nut_thickness(nut, true) + ringterm_thickness(type));
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explode(10, true) star_washer(washer)
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if(top)
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ring_terminal(type) screw(screw, screw_length);
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else
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screw(screw, screw_length);
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vflip()
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translate_z(thickness)
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explode(10, true) star_washer(washer)
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if(!top)
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explode(10,true) ring_terminal(type) nut(nut, true);
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else
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nut(nut, true);
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}
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