Rev Author Line No. Line
4475 kaklik 1 $fn=40; // model faces resolution.
2 include <../configuration.scad>
3  
4 include <polyScrewThread_r1.scad>
5  
6 PI=3.141592;
7  
8 S01_vyska=80;
9 S01_prumer_vnitrni=30;
10 S01_sila_materialu=2;
11 S01_vyska_horni_zavit=10;
12 S01_vyska_spodniho_zavitu=10;
13 S01_sila_drzaku_RJ11=2;
14  
15  
16 module WINDGAUGE02A_S01(S01_vyska,S01_prumer_vnitrni,S01_sila_materialu)
17 {
18 difference()
19 {
20 union()
21 {
22 //základní válec
23 cylinder (h = S01_vyska-S01_vyska_horni_zavit, r=(S01_prumer_vnitrni)/2+S01_sila_materialu, $fn=100);
24  
25 //horní závit
26 translate([0,0,S01_vyska-S01_vyska_horni_zavit])
27 screw_thread((S01_prumer_vnitrni+2*S01_sila_materialu),S01_hloubka_zavitu,55,S01_vyska_horni_zavit,PI/2,2);
28  
29 }
30  
31 //vystouplá část
32 translate([0,0,S01_vyska_spodniho_zavitu+S01_sila_drzaku_RJ11-0.3])
33 cylinder (h = S01_sila_drzaku_RJ11, r=(S01_prumer_vnitrni)/2-1-S01_hloubka_zavitu/2, $fn=100);
34 //otvor na drzak rj11
35 translate([0,0,S01_vyska_spodniho_zavitu])
36 cylinder (h = S01_sila_drzaku_RJ11-0.3, r=(S01_prumer_vnitrni)/2-S01_hloubka_zavitu/2, $fn=100);
37  
38 //spodní závit
39 screw_thread((S01_prumer_vnitrni),S01_hloubka_zavitu,55,S01_vyska_spodniho_zavitu+0.01,PI/2,2);
40  
41 //otvor skrz
42 translate([0,0,S01_vyska_spodniho_zavitu+2*S01_sila_drzaku_RJ11-0.3])
43 cylinder (h = S01_vyska, r=(S01_prumer_vnitrni)/2-1, $fn=100);
44 cube(100); // cut to show internal relief
45 }
46 }
47  
48  
49 WINDGAUGE02A_S01(S01_vyska,S01_prumer_vnitrni,S01_sila_materialu);
50  
51  
52  
53  
54  
55  
56  
57  
58  
59 /*
60 module WINDGAUGE02A_S01(R02_vzdalenost_mezi_uchyty_lopatek,L01_sila_zapusteni_drzaku,L01_hloubka_zapusteni,S01_vyska_zuzene_casti,S01_vyska_na_elektroniku,S01_vyska_zavitu_na_nasroubovani_drzaku,S01_vyska_prechodu,vule_mezi_statorem_rotorem,S01_vyska_zavitu_na_nasroubovani_drzaku,S01_sila_materialu)
61 {
62  
63 //zuzena cas komponentu
64  
65 translate([0,0,(S01_vyska_na_elektroniku+S01_vyska_zavitu_na_nasroubovani_drzaku+2*S01_vyska_komponentu_na_lozisko+S01_vyska_zuzene_casti)/2+S01_vyska_prechodu])
66  
67 difference()
68 {
69 cylinder (h = S01_vyska_zuzene_casti, r=(R02_vzdalenost_mezi_uchyty_lopatek+2*L01_sila_zapusteni_drzaku+2*L01_hloubka_zapusteni+2*vule_mezi_statorem_rotorem+2*S01_sila_materialu)/2, center = true, $fn=100);
70  
71 translate([0,0,-S01_vyska_zuzene_casti/2+S01_vyska_zuzene_casti-R02_sila_mateiralu_pod_lopatkami-S01_vyska_komponentu_na_lozisko])
72  
73 screw_thread((R02_vzdalenost_mezi_uchyty_lopatek+2*L01_sila_zapusteni_drzaku+2*L01_hloubka_zapusteni+2*vule_mezi_statorem_rotorem),S01_hloubka_zavitu,55,S01_vyska_zuzene_casti+0.01,PI/2,2);
74  
75 translate([0,0,-(S01_vyska_zuzene_casti/2)+(S01_vyska_zuzene_casti-R02_sila_mateiralu_pod_lopatkami-S01_vyska_komponentu_na_lozisko)/2])
76 cylinder (h = S01_vyska_zuzene_casti-R02_sila_mateiralu_pod_lopatkami-S01_vyska_komponentu_na_lozisko+0.01, r=(R02_vzdalenost_mezi_uchyty_lopatek+2*L01_sila_zapusteni_drzaku+2*L01_hloubka_zapusteni+2*vule_mezi_statorem_rotorem)/2, center = true, $fn=100);
77  
78  
79 //translate([0,0,(stator3_vyska-stator3_vyska_prekryti)/2])
80  
81  
82 }
83  
84 difference()
85 {
86  
87 translate([0,0,(S01_vyska_na_elektroniku+S01_vyska_zavitu_na_nasroubovani_drzaku+2*S01_vyska_komponentu_na_lozisko+S01_vyska_prechodu)/2])
88  
89 cylinder(h=S01_vyska_prechodu,r1=(S01_prumer_zavitu+2*S01_sila_materialu)/2, r2=(R02_vzdalenost_mezi_uchyty_lopatek+2*L01_sila_zapusteni_drzaku+2*L01_hloubka_zapusteni+2*vule_mezi_statorem_rotorem+2*S01_sila_materialu)/2, center=true);
90  
91  
92 translate([0,0,(S01_vyska_na_elektroniku+S01_vyska_zavitu_na_nasroubovani_drzaku+2*S01_vyska_komponentu_na_lozisko+S01_vyska_prechodu)/2])
93  
94 cylinder(h=S01_vyska_prechodu,r1=(S01_prumer_zavitu)/2, r2=(R02_vzdalenost_mezi_uchyty_lopatek+2*L01_sila_zapusteni_drzaku+2*L01_hloubka_zapusteni+2*vule_mezi_statorem_rotorem)/2, center=true);
95  
96  
97  
98 }
99  
100  
101 //spodni cast se zavitem
102  
103 difference()
104 {
105 cylinder (h = S01_vyska_na_elektroniku+S01_vyska_zavitu_na_nasroubovani_drzaku+2*S01_vyska_komponentu_na_lozisko, r=(S01_prumer_zavitu+2*S01_sila_materialu)/2, center = true, $fn=100);
106  
107 translate([0,0,-(S01_vyska_na_elektroniku+S01_vyska_zavitu_na_nasroubovani_drzaku+2*S01_vyska_komponentu_na_lozisko)/2])
108 // metric_thread (diameter=S01_prumer_zavitu, pitch=1, length=S01_vyska_na_elektroniku+S01_vyska_zavitu_na_nasroubovani_drzaku+2*S01_vyska_komponentu_na_lozisko+0.01, internal=true, n_starts=6);
109  
110 screw_thread(S01_prumer_zavitu,4,55,S01_vyska_na_elektroniku+S01_vyska_zavitu_na_nasroubovani_drzaku+2*S01_vyska_komponentu_na_lozisko+0.01,PI/2,2);
111  
112 }
113  
114 }
115 */
116  
117  
118  
119  
120  
121  
122