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https://github.com/BelfrySCAD/BOSL2.git
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226 lines
4.9 KiB
OpenSCAD
226 lines
4.9 KiB
OpenSCAD
//////////////////////////////////////////////////////////////////////
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// LibFile: torx_drive.scad
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// Torx driver bits
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// To use, add these lines to the top of your file:
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// ```
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// include <BOSL2/std.scad>
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// include <BOSL2/torx_drive.scad>
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// ```
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//////////////////////////////////////////////////////////////////////
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/*
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BSD 2-Clause License
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Copyright (c) 2017-2019, Revar Desmera
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All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions are met:
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* Redistributions of source code must retain the above copyright notice, this
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list of conditions and the following disclaimer.
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* Redistributions in binary form must reproduce the above copyright notice,
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this list of conditions and the following disclaimer in the documentation
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and/or other materials provided with the distribution.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
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FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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// Section: Functions
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// Function: torx_outer_diam()
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// Description: Get the typical outer diameter of Torx profile.
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// Arguments:
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// size = Torx size.
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function torx_outer_diam(size) = lookup(size, [
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[ 6, 1.75],
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[ 8, 2.40],
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[ 10, 2.80],
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[ 15, 3.35],
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[ 20, 3.95],
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[ 25, 4.50],
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[ 30, 5.60],
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[ 40, 6.75],
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[ 45, 7.93],
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[ 50, 8.95],
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[ 55, 11.35],
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[ 60, 13.45],
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[ 70, 15.70],
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[ 80, 17.75],
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[ 90, 20.20],
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[100, 22.40]
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]);
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// Function: torx_inner_diam()
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// Description: Get typical inner diameter of Torx profile.
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// Arguments:
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// size = Torx size.
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function torx_inner_diam(size) = lookup(size, [
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[ 6, 1.27],
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[ 8, 1.75],
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[ 10, 2.05],
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[ 15, 2.40],
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[ 20, 2.85],
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[ 25, 3.25],
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[ 30, 4.05],
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[ 40, 4.85],
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[ 45, 5.64],
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[ 50, 6.45],
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[ 55, 8.05],
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[ 60, 9.60],
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[ 70, 11.20],
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[ 80, 12.80],
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[ 90, 14.40],
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[100, 16.00]
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]);
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// Function: torx_depth()
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// Description: Gets typical drive hole depth.
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// Arguments:
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// size = Torx size.
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function torx_depth(size) = lookup(size, [
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[ 6, 1.82],
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[ 8, 3.05],
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[ 10, 3.56],
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[ 15, 3.81],
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[ 20, 4.07],
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[ 25, 4.45],
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[ 30, 4.95],
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[ 40, 5.59],
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[ 45, 6.22],
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[ 50, 6.48],
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[ 55, 6.73],
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[ 60, 8.17],
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[ 70, 8.96],
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[ 80, 9.90],
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[ 90, 10.56],
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[100, 11.35]
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]);
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// Function: torx_tip_radius()
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// Description: Gets minor rounding radius of Torx profile.
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// Arguments:
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// size = Torx size.
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function torx_tip_radius(size) = lookup(size, [
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[ 6, 0.132],
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[ 8, 0.190],
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[ 10, 0.229],
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[ 15, 0.267],
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[ 20, 0.305],
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[ 25, 0.375],
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[ 30, 0.451],
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[ 40, 0.546],
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[ 45, 0.574],
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[ 50, 0.775],
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[ 55, 0.867],
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[ 60, 1.067],
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[ 70, 1.194],
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[ 80, 1.526],
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[ 90, 1.530],
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[100, 1.720]
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]);
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// Function: torx_rounding_radius()
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// Description: Gets major rounding radius of Torx profile.
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// Arguments:
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// size = Torx size.
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function torx_rounding_radius(size) = lookup(size, [
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[ 6, 0.383],
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[ 8, 0.510],
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[ 10, 0.598],
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[ 15, 0.716],
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[ 20, 0.859],
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[ 25, 0.920],
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[ 30, 1.194],
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[ 40, 1.428],
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[ 45, 1.796],
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[ 50, 1.816],
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[ 55, 2.667],
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[ 60, 2.883],
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[ 70, 3.477],
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[ 80, 3.627],
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[ 90, 4.468],
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[100, 4.925]
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]);
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// Section: Modules
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// Module: torx_drive2d()
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// Description: Creates a torx bit 2D profile.
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// Arguments:
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// size = Torx size.
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// Example(2D):
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// torx_drive2d(size=30, $fa=1, $fs=1);
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module torx_drive2d(size) {
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od = torx_outer_diam(size);
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id = torx_inner_diam(size);
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tip = torx_tip_radius(size);
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rounding = torx_rounding_radius(size);
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base = od - 2*tip;
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$fn = quantup(segs(od/2),12);
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difference() {
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union() {
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circle(d=base);
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zring(n=2) {
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hull() {
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zring(n=3) {
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translate([base/2,0,0]) {
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circle(r=tip, $fn=$fn/2);
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}
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}
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}
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}
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}
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zring(n=6) {
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zrot(180/6) {
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translate([id/2+rounding,0,0]) {
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circle(r=rounding);
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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: torx_drive()
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// Description: Creates a torx bit tip.
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// Arguments:
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// size = Torx size.
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// l = Length of bit.
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// center = If true, centers bit vertically.
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// Examples:
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// torx_drive(size=30, l=10, $fa=1, $fs=1);
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module torx_drive(size, l=5, center=undef, orient=ORIENT_Z, align=UP) {
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od = torx_outer_diam(size);
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orient_and_align([od, od, l], orient, align, center, chain=true) {
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linear_extrude(height=l, convexity=4, center=true) {
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torx_drive2d(size);
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}
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children();
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}
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}
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// vim: noexpandtab tabstop=4 shiftwidth=4 softtabstop=4 nowrap
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