6 additional moment of inertia, 7 cable diameter, 8 cable mass – Lenze DSD User Manual

Page 130: 9 active cable mass, 10 shaft efficiency, 11 efficiency of the rolls, 12 efficiency of the driving pulley, 7applications

Advertising
background image

7

Applications

7.9

Hoist drive with counterweight

130

Lenze · Drive Solution Designer · Manual · DMS 4.2 EN · 12/2013 · TD23

_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

7.9.2.6

Additional moment of inertia

7.9.2.7

Cable diameter

7.9.2.8

Cable mass

7.9.2.9

Active cable mass

7.9.2.10

Shaft efficiency

7.9.2.11

Efficiency of the rolls

7.9.2.12

Efficiency of the driving pulley

Symbol

Description

J

add

Moment of inertia of the driving pulley, the guide pulleys and guide rollers, etc.

• The moment of inertia of the hoisting cage does not have to be taken into consideration here

since it is already included.

• The moment of inertia has an effect on the dynamic torque!

• Value can be entered directly or calculated using the inertial calculator.

Inertial calculator ( 407)

Symbol

Description

d

Rop

Outside diameter of cable

Symbol

Description

m

Rop

Mass of cable

• Value can be entered directly or calculated using the auxiliary calculator.

"Mass of rope/cable (hoist drive)" calculator ( 414)

Symbol

Description

m

acv,Rop

Active mass of cable

• Is the mass that is relevant for the stationary moment, i.e. the mass that acts as a weight on

the cable drum.

• Value can be entered directly or calculated using the auxiliary calculator.

"Mass of rope/cable (hoist drive)" calculator ( 414)

Symbol

Description

η

Gdn

Efficiency resulting from the friction of the hoisting cage at the hoisting shaft

Symbol

Description

η

Pll

Efficiency resulting from friction between cable pulleys and cable

Symbol

Description

η

Cor

Efficiency limited by friction between traction sheave and cable

Advertising