EasyManua.ls Logo

Optibelt ZRP - Page 40

Default Icon
98 pages
Print Icon
To Next Page IconTo Next Page
To Next Page IconTo Next Page
To Previous Page IconTo Previous Page
To Previous Page IconTo Previous Page
Loading...
39
4.4 ZRL-V drive design
Drive design of
optibelt
ZRL-V joined endless timing belts for conveyor systems,
z
emax
= 6, v
2 m/s
Timing belt and pulley designation
Quantity, type, width, section, pitch length, tension cord,
special construction if applicable
2 Optibelt ZRL-V timing belts 50 T10/5360-V PAZ/PAR
4 Optibelt ZRS pulleys 66 T10/40-2 Type 6F
Formulae Example
Timing belt and pulley width
Theoretical and standard belt width b
th
and b
st
b
th
=
Alternative:
b
th
=
b
St
from belt range on pages 30 to 31, b
St
b
th
Can this belt width be accomodated?
Actual service factor c
2vorh
c
2vorh
= c
2
b
th
= = 41.4 mm
b
th
= = 41.3 mm
selected b
St
= 50 mm see page 27
Pulley width B = 66 mm, face width b
1
= 56 mm
c
2vorh
= 1.6 = 1.94
1177 · 10
47.41 · 6
S
Bn3
· 10
S
spec
· z
e
M
B
· 10
M
spec
· z
e
74.9 · 10
3.02 · 6
b
St
b
th
50
41.3
Order example
Theoretical and actual pitch lengths L
wth
, L
wnom
L
wth
= 2 · a + z
1
· t for i = 1
z
R
=
L
wnom
= z
R
· t
L
wth
= 2 · 2478 + 40 · 10 = 5356 mm
z
R
= = 536
L
wnom
= 536 · 10 = 5360 mm
Actual centre distance a
nom
a
nom
= · t for i = 1
Centre distance allowances to be provided
a
nom
see Table 5.1, page 41;
installation: allowance y (ZRL)
tensioning: allowance x (ZRL)
y (ZRL) = y
1,2,3
(ZRL) depending on flanges
x (ZRL)
Allowances acceptable?
a
min
a
nom
– y a
nom
+ x a
max
a
nom
= · 10 = 2480 mm
A tensioning pulley is necessary with fixed centres,
see page 44
Flanges on both pulleys y
1
(ZRL) 25 mm
x (ZRL) 3.5 + 0.002 · 2480 8.5 mm x (ZRL) 9mm
a
min
2455 mm 2489 mm a
max
z
R
– z
1
2
5356
10
536 – 40
2
L
wth
t
Pitch length and drive centres with allowances
Calculation and setting of tension,
see page 40
Values for x
v
, F
v
, e
v
and S
a
see page 36