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Lenze · Drive Solution Designer · Manual · DMS 4.2 EN · 12/2013 · TD23 151
7Applications
7.13 Belt conveyor for bulk material
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _
The filling degree is the ratio of the actual to the theoretically filled surface of the belt:
[7-144] Equation 7: Filling degree
[7-145] Equation 8: Lifting force
The additional force takes the frictional resistance and inertial resistance occurring in different po-
sitions of the belt conveyor into consideration:
[7-146] Equation 9: Additional force
The additional force (F
add
) results from:
The inertial and frictional resistance between the material to be conveyed and the belt at the
feeding position
Frictional resistance between the material to be conveyed and lateral chutes
Frictional resistance by the belt cleaner
Flexural resistance of the belt
Torque of the application
[7-147] Equation 10: Torque of the application
Tip!
Further equations to complete the calculations required for an application can be found in
the chapter "Basic calculations
". ( 68)
ϕ
A
opr
A
abt
---------- -
=
F
g
m
L
g βsin⋅⋅=
F
add
C1()F
opr
=
Shunt-force factor
The coefficients f apply to filling degrees of the belt in the range of ϕ = 0.7 ... 1.1:
l [m] 80 100 150 200 300 400 500 600 700 800 900 1000 1500 > 2000
C 1.92 1.78 1.58 1.45 1.31 1.25 1.20 1.17 1.14 1.12 1.10 1.09 1.06 1.05
M
App
M
sds
J
sum
α+=
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