Product Introduction
Annulus in uno puncto scinditur et in figuram helicam flectitur. Inde fullonibus vim vernam inter caput cinguli et substratum exserere facit, quae fullonibus duris in substrata conservat, et fulmen stamina dura contra fila nucis vel substrata, magis frictionem et resistentiam gyrationis efficiens. Lorem signa sunt SICUT ME B18.21. EX* 127 B et United States Military Standard NASM 35338 (olim MS 35338 and AN-935).
Fontes lavatores manus sinistra Helix est et filum in manu dextra tantum, id est directione horologico, constringi patitur. Cum laeva manus admovetur, extremam aciem in subtus fulmen aut nucem mordet, et ea pars, qua saeptus est, ita resistens versatur. Ideo vere volutpat inefficaces sunt in sinistra manu filis et superficiebus induratis. Item, sub fullonibus fullonibus fullonis non adhibenda sunt, ut hoc vere fullonum ab mordaci remoto in component conversione resistet.
Beneficium vernis cincinnis lavatoribus in figura trapezoidali fullonis iacet. Cum comprimatur oneribus circa probationem firmitatis serae, illud detorquebit et sternet. Hoc vere reducit rate of obserata iuncturam quae permittit vim maiorem vim ponere sub iisdem gradibus vibrationis. Hic impedit soluta.
Applications
The spring washer prevents nuts and bolts from turning, slipping and coming loose because of vibration and torque. Different spring washers perform this function in slightly different ways, but the basic concept is to hold the nut and bolt in place. Some spring washers achieve this function by biting into the base material (bolt) and the nut with their ends.
Spring washers are commonly used in applications involving vibration and possible slippage of fasteners. Industries that commonly use spring washers are transportation related (automotive, aircraft, marine). Spring washers may also be used in household appliances such as air handlers and clothes washers (washing machines).
nominis diameter |
2 |
2.5 |
3 |
4 |
5 |
6 |
8 |
10 |
12 |
14) |
|
d |
minimus pretii |
2.1 |
2.6 |
3.1 |
4.1 |
5.1 |
6.2 |
8.2 |
10.2 |
12.3 |
14.3 |
crista valorem |
2.3 |
2.8 |
3.3 |
4.4 |
5.4 |
6.7 |
8.7 |
10.7 |
12.8 |
14.9 |
|
h |
nominale |
0.6 |
0.8 |
1 |
1.2 |
1.6 |
2 |
2.5 |
3 |
3.5 |
4 |
minimus pretii |
0.52 |
0.7 |
0.9 |
1.1 |
1.5 |
1.9 |
2.35 |
2.85 |
3.3 |
3.8 |
|
crista valorem |
0.68 |
0.9 |
1.1 |
1.3 |
1.7 |
2.1 |
2.65 |
3.15 |
3.7 |
4.2 |
|
n |
minimus pretii |
0.52 |
0.7 |
0.9 |
1.1 |
1.5 |
1.9 |
2.35 |
2.85 |
3.3 |
3.8 |
crista valorem |
0.68 |
0.9 |
1.1 |
1.3 |
1.7 |
2.1 |
2.65 |
3.15 |
3.7 |
4.2 |
|
H |
minimus pretii |
1.2 |
1.6 |
2 |
2.4 |
3.2 |
4 |
5 |
6 |
7 |
8 |
crista valorem |
1.5 |
2.1 |
2.6 |
3 |
4 |
5 |
6.5 |
8 |
9 |
10.5 |
|
Millia pondo (ferro) kg* |
0.023 |
0.053 |
0.097 |
0.182 |
0.406 |
0.745 |
1.53 |
2.82 |
4.63 |
6.85 |
|
nominis diameter |
16 |
(18) |
20 |
22) |
24 |
27) |
30 |
36 |
42 |
48 |
|
d |
minimus pretii |
16.3 |
18.3 |
20.5 |
22.5 |
24.5 |
27.5 |
30.5 |
36.6 |
42.6 |
49 |
crista valorem |
16.9 |
19.1 |
21.3 |
23.3 |
25.5 |
28.5 |
31.5 |
37.8 |
43.8 |
50.2 |
|
h |
nominale |
4 |
4.5 |
5 |
5 |
6 |
6 |
6.5 |
7 |
8 |
9 |
minimus pretii |
3.8 |
4.3 |
4.8 |
4.8 |
5.8 |
5.8 |
6.2 |
6.7 |
7.7 |
8.7 |
|
crista valorem |
4.2 |
4.7 |
5.2 |
5.2 |
6.2 |
6.2 |
6.8 |
7.3 |
8.3 |
9.3 |
|
n |
minimus pretii |
3.8 |
4.3 |
4.8 |
4.8 |
5.8 |
5.8 |
6.2 |
6.7 |
7.7 |
8.7 |
crista valorem |
4.2 |
4.7 |
5.2 |
5.2 |
6.2 |
6.2 |
6.8 |
7.3 |
8.3 |
9.3 |
|
H |
minimus pretii |
8 |
9 |
10 |
10 |
12 |
12 |
13 |
14 |
16 |
18 |
crista valorem |
10.5 |
11.5 |
13 |
13 |
15 |
15 |
17 |
18 |
21 |
23 |
|
Millia pondo (ferro) kg* |
7.75 |
11 |
15.2 |
16.5 |
26.2 |
28.2 |
37.6 |
51.8 |
78.7 |
114 |