master
Gnieark 9 years ago
parent 5ca8d296f8
commit a971269f8f

@ -1,3 +1,18 @@
/*
Projet ReprapJeanne
Glissement le long des axes. "T carré 20x20 alu"
github: https://github.com/gnieark/reprapJeanne
wiki https://mail.jeannedhack.org/wicked/display.php?page=reprap_geante
By Gnieark https://blog-du-grouik.tinad.fr
& TranKILLoman
License GNU-GPL V3
*/
include <../MCAD/bearing.scad>;
/*
@ -5,38 +20,75 @@ Roulements à billes 623 ZZ (0.80€)
Diamètre intérieur : 3mm
Diamètre extérieur : 10 mm
Largeur : 4 mm
Le système de glissemen,t est divisé en deux pièces
afin de faciliter son impression.
*/
$fn=200;
/*
color ("seagreen") translate([0,0,-50])
linear_extrude (height=2000)
import (file="all.dxf", layer="profil T", $fn=100);
*/
//Pièce principale
difference(){
union(){
linear_extrude (height=10)
import (file="all.dxf", layer="profil-pour-3d", $fn=200);
translate([0,0,-9])
linear_extrude (height=28)
import (file="all.dxf", layer="profil-pour-3d-2", $fn=100);
//boursuflures pour caler les roulements
cones();
translate([4,25.5,18.99]) cube([12,3,9]);
translate([4,25.5,-17.99]) cube([12,3,9]);
}
union(){
screws();
translate([7,25.498,18.98]) cube([6,3.2,6]);
translate([7,25.498,-14.97]) cube([6,3.2,6]);
//trou pour vis fixation des deux pièces ensembles:
translate([10,30,5]) rotate([-90,0,0]) cylinder(r=1.5,h=6);
}
}
//Piece pour les deux roulements verticaux
difference(){
union(){
translate([0,0,-9])
linear_extrude (height=28)
import (file="all.dxf", layer="profil-pour-3d-2", $fn=100);
translate([12.01,25,15]) rotate([90,0,90]) unCone();
translate([12.01,25,-5]) rotate([90,0,90]) unCone();
translate([8,25,15]) rotate([270,0,90]) unCone();
translate([8,25,-5]) rotate([270,0,90]) unCone();
//encoches pour fixer les courroies
translate([2,31,17.99]) cube([16,4,6]);
translate([2,31,-14.99]) cube([16,4,6]);
}
union(){
translate([-5.1,25,15])
rotate([90,0,90])
cylinder (r=1.5, h=14);
translate([12,25,15])
rotate([90,0,90])
cylinder (r=1.5, h=14);
translate([-5.1,25,-5])
rotate([90,0,90])
cylinder (r=1.5, h=14);
translate([12,25,-5])
rotate([90,0,90])
cylinder (r=1.5, h=14);
//encoches pour fixer les courroies
translate([4,30.99,18.98]) cube([12,4.02,3]);
translate([4,30.99,-12]) cube([12,4.02,3]);
//encoche pour emboiter les deux pièces
translate([1.99,32.99,0]) cube([16.02,2.02,10]);
//trou pour vis fixation des deux pièces ensembles:
translate([10,30,5]) rotate([-90,0,0]) cylinder(r=1.5,h=6);
}
}
module screws(){
@ -52,18 +104,6 @@ module screws(){
translate([13.2775,13.3725,5])
rotate([90,0,90])
cylinder (r=1.5, h=12);
translate([-5.1,25,15])
rotate([90,0,90])
cylinder (r=1.5, h=14);
translate([12,25,15])
rotate([90,0,90])
cylinder (r=1.5, h=14);
translate([-5.1,25,-5])
rotate([90,0,90])
cylinder (r=1.5, h=14);
translate([12,25,-5])
rotate([90,0,90])
cylinder (r=1.5, h=14);
translate([26,13.3725,5])
rotate([90,0,90])
cylinder (r=4, h=20);
@ -87,10 +127,6 @@ module screws(){
module cones(){
translate([4.01,13.3725,5]) rotate([90,0,90]) unCone();
translate([20.01,13.3725,5]) rotate([90,0,90]) unCone();
translate([12.01,25,15]) rotate([90,0,90]) unCone();
translate([12.01,25,-5]) rotate([90,0,90]) unCone();
translate([8,25,15]) rotate([270,0,90]) unCone();
translate([8,25,-5]) rotate([270,0,90]) unCone();
translate([-0.01,13.3725,5]) rotate([270,0,90]) unCone();
translate([15.99,13.3725,5]) rotate([270,0,90]) unCone();
translate([4.1225,-0.01,5]) rotate([90,0,0]) unCone();
@ -104,8 +140,9 @@ module unCone(){
translate([0,0,0.999]) cylinder (r=3, h=1, $fn=100);
}
//positionnement des roulements à bille
/*
bearing(pos=[8, 25,-5], angle=[90,00,90], model=623);
bearing(pos=[8, 25,15], angle=[90,00,90], model=623);
bearing(pos=[0, 13.3725,5], angle=[90,00,90], model=623);
@ -113,6 +150,10 @@ bearing(pos=[16, 13.3725,5], angle=[90,00,90], model=623);
bearing(pos=[4, 4.1862,5], angle=[90,0,0], model=623);
bearing(pos=[16.5, 4.1862,5], angle=[90,0,0], model=623);
*/
//Profil T
color ("seagreen") translate([0,0,-50])
linear_extrude (height=2000)
import (file="all.dxf", layer="profil T", $fn=100);

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