/Modules/Mechanical/WINDGAUGE01A/CAD/rotor2.scad
4,7 → 4,11
vyska_rotoru1=5;
vyska_rotoru2=5;
prumer_sroubu=3.2;
vyska_matky=3;
vyska_matky=3.5;
sirka_matky=6.6;
sirka_matky_tol=0.175;
 
nut_size = 6.6;
prumer_orechu=10;
sila_materialu=3;
sila_materialu_vule=0.2;
14,10 → 18,13
lozisko_prumer_vnitrni=5;
lozisko_prumer_vnejsi=16;
lozisko_prekryv=1.5;
lozisko_vyska=5;
 
//nastevní rotoru2
vyska_kryti=5;
 
vzdalenost_rot_stat=2; //vzdálenost mezi statorem a rotorem
vzdalenost_rot_stat2=1;//vzdálenost mezi statorem a rotorem z boku
 
//lopatka
hloubka_uchytu=20;
sila_uchytu=12;
24,6 → 31,24
vyska_uchytu=10;
tolerance_uchytu=0.1;
 
//stator1
stator1_sila=2;
 
//stator2
sila_pod_loziskem=1;
 
//rotor2
delka_hridele=5; //delka hridele koukající ve statoru
 
//stator3
stator3_sila_steny=2;
stator3_vzdalenost_od_steny=1; //definuje vzdalenost hlavy sroubu od steny statrou 4
stator3_vyska=60;
stator3_vyska_prekryti=5;
 
//rotor2
vyska_kryti=stator1_sila+vyska_matky+vzdalenost_rot_stat+stator3_vyska_prekryti-vzdalenost_rot_stat2; //udává výšku krycího prstence
 
difference()
{
union ()
38,14 → 63,28
translate([0,0,-(vyska_rotoru2)/2-(vyska_kryti)/2])
komponent2();
//doraz na lozisko
translate([0,0,-(vyska_rotoru2+stator1_sila+vyska_matky+vzdalenost_rot_stat)/2])
cylinder (h = stator1_sila+vyska_matky+vzdalenost_rot_stat, r=(lozisko_prumer_vnitrni+2*lozisko_prekryv)/2, center = true, $fn=100);
 
//hridel
translate([0,0,-(vyska_rotoru2+stator1_sila+vyska_matky+vzdalenost_rot_stat+lozisko_vyska+sila_pod_loziskem+delka_hridele)/2])
cylinder (h = stator1_sila+vyska_matky+vzdalenost_rot_stat+lozisko_vyska+sila_pod_loziskem+delka_hridele, r=(lozisko_prumer_vnitrni/2), center = true, $fn=100);
}
//otvor v hřídeli
translate([0,0,-(stator1_sila+vyska_matky+vzdalenost_rot_stat+lozisko_vyska+sila_pod_loziskem+delka_hridele)/2])
cylinder (h = vyska_rotoru2+stator1_sila+vyska_matky+vzdalenost_rot_stat+lozisko_vyska+sila_pod_loziskem+delka_hridele+0.1, r=(prumer_sroubu/2), center = true, $fn=100);
//otvor pro matku
translate([0,0,(vyska_rotoru2-vyska_matky)/2])
cylinder (h = vyska_matky+0.1, r= (sirka_matky+sirka_matky_tol)/2, center = true,$fn=6);
 
//otvory pro uchyceni krytky rotoru
translate([0,0,hloubka_prekryti/2])
cylinder (h = vyska_rotoru1+0.1, r=prumer_sroubu/2, center = true, $fn=100);
 
translate([0,0,-(vyska_rotoru1-hloubka_prekryti)/2+vyska_matky/2])
cylinder (h = vyska_matky+0.1, r=prumer_orechu/2, center = true, $fn=100);
//otvor pro uchyceni prvni lopatky
74,12 → 113,8
cylinder (h = vyska_matky+0.1, r=prumer_orechu/2, center = true, $fn=100);
}
 
 
 
 
 
 
module komponent2()
{
difference ()
/Modules/Mechanical/WINDGAUGE01A/CAD/rotor3.scad
0,0 → 1,75
$fn=40; // model faces resolution.
 
prumer_rotoru1=50;
vyska_rotoru1=5;
vyska_rotoru2=5;
prumer_sroubu=3.2;
vyska_matky=3;
sirka_matky=6;
prumer_orechu=10;
sila_materialu=3;
sila_materialu_vule=0.2;
hloubka_prekryti=2;
 
//lozisko
lozisko_prumer_vnitrni=5;
lozisko_prumer_vnejsi=16;
lozisko_vyska=5;
lozisko_prekryv=1.5;
 
//stator1
stator1_sila=2;
 
//stator1
sila_pod_loziskem=1;
 
 
 
//nastevní rotoru2
vyska_kryti=5;
 
//lopatka
hloubka_uchytu=20;
sila_uchytu=12;
vyska_uchytu=10;
tolerance_uchytu=0.1;
 
 
//rotor2
delka_hridele=5; //delka hridele koukající ve statoru
 
 
 
 
 
/*
 
difference()
{
 
 
//dotahovací kroužek
translate([0,0,0])
cylinder (h = sila_pod_loziskem+delka_hridele+2, r=(lozisko_prumer_vnitrni+2*lozisko_prekryv)/2, center = true, $fn=100);
cylinder (h = sila_pod_loziskem+delka_hridele+2+0.1, r=((lozisko_prumer_vnitrni+0.2)/2), center = true, $fn=100);
}
*/
 
difference()
{
 
 
//sehment pro sroub a magnet
translate([0,0,0])
cylinder (h = sila_pod_loziskem+delka_hridele+2, r=(lozisko_prumer_vnitrni+2*lozisko_prekryv)/2, center = true, $fn=100);
cylinder (h = sila_pod_loziskem+delka_hridele+2+0.1, r=((lozisko_prumer_vnitrni+0.2)/2), center = true, $fn=100);
}
 
 
 
/Modules/Mechanical/WINDGAUGE01A/CAD/stator3.scad
31,6 → 31,13
stator3_vyska=60;
stator3_vyska_prekryti=5;
 
//uchyt pro anemometr
uchyt_prumer_sroubu=3.2;
roztec_sroubu=10.16;
 
 
 
 
vule1=1; //vůle mezi statorem a rotorem ze strany
 
//nastevní rotoru2
108,7 → 115,37
}
 
 
//dno stator3
 
translate([0,0,-(stator3_vyska-stator3_sila_steny)/2])
 
difference()
{
cylinder (h = stator3_sila_steny, r=(prumer_rotoru1)/2, center = true, $fn=100);
//otvory pro uchyceni stator 3
//otvor pro sroub 1
translate([0,(prumer_rotoru1-2*sila_materialu-2*vule1-2*stator3_sila_steny-prumer_hlavy_sroubu-2*stator3_vzdalenost_od_steny)/2,0])
cylinder (h = stator3_sila_steny+0.1, r=prumer_sroubu/2, center = true, $fn=100);
 
 
//otvor pro sroub 2
translate([0,-(prumer_rotoru1-2*sila_materialu-2*vule1-2*stator3_sila_steny-prumer_hlavy_sroubu-2*stator3_vzdalenost_od_steny)/2,0])
cylinder (h = stator3_sila_steny+0.1, r=prumer_sroubu/2, center = true, $fn=100);
//srouby pro uchycení anemometru
translate([roztec_sroubu/2,roztec_sroubu/2,0])
cylinder (h = stator3_sila_steny+0.1, r=uchyt_prumer_sroubu/2, center = true, $fn=100);
translate([-roztec_sroubu/2,roztec_sroubu/2,0])
cylinder (h = stator3_sila_steny+0.1, r=uchyt_prumer_sroubu/2, center = true, $fn=100);
 
translate([roztec_sroubu/2,-roztec_sroubu/2,0])
cylinder (h = stator3_sila_steny+0.1, r=uchyt_prumer_sroubu/2, center = true, $fn=100);
translate([-roztec_sroubu/2,-roztec_sroubu/2,0])
cylinder (h = stator3_sila_steny+0.1, r=uchyt_prumer_sroubu/2, center = true, $fn=100);
}