Technical data, Travel drive, Axles – Liebherr LH 80 C Litronic User Manual

Page 14: Brakes, Steering, Operator’s cab, Noise emission, Capacities, Attachment, Attachment hydraulics

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14

Special timber handling machines from Liebherr

Travel Drive

Stepless hydrostatic travel drive
Design

_________________________

Swash plate type variable flow pump and two

varia ble axial piston motors in closed loop circuit
with one axle transfer case. Direction of travel in re-
versed by changing the flow-direction of the
variable-displacement pump

Filtering

system

______________

Suction return line filter for closed circuit

Control

________________________

By travel and inching pedal. The inching pedal makes

it possible to control the tractive and thrust forces
steplessly at full engine speed. The Liebherr joystick
is used to control forward and reverse travel

Travel speed range

________________

Speed range 1

____________________________

0 – 10.0 km/h

Speed range 2 and A2

___________________

0 – 20.0 km/h

Speed range A3

__________________________

0 – 40.0 km/h

The quoted speeds apply with the tyres that are

standard equipment on the loader

Axles

Four-wheel drive
Front axle

___________________________

Fixed

Rear axle

____________________________

Centre pivot, with 13° oscillating angle to each side

L 550

L 556

L 566

L 576

L 580

Height of obstacles which

can be driven over

______

mm

460 460 490 490 490

With all four wheels remaining in contact with the

ground

Differentials

_________________________

Automatic limited-slip differentials

Reduction gear

_____________________

Planetary final drive in wheel hubs

Track width

_________________________

2,000 mm with all types of tyres (L 550, L 556)

2,230 mm with all types of tyres (L 566, L 576, L 580)

Brakes

Wear-free service brake

___________

Self-locking of the hydrostatic travel drive (acting on

all four wheels) and additional pump-accumulator
brake system with wet multi-disc brakes
(two sepa rate brake circuits)

Parking brake

______________________

Electro-hydraulically actuated spring-loaded disc

brake system on the transmission

The braking system meets the requirements of the EC guidelines 71/320.

Steering

Design

______________________________

“Load-sensing” swash plate type variable flow pump

with pressure cut-off and flow control. Central pivot
with two double-acting, damped steering cylinders

Angle of articulation

_______________

40° (to each side)

Emergency steering

_______________

Electro-hydraulic emergency steering system

Operator’s Cab

Design

______________________________

On elastic bearing on rear section, soundproof

ROPS/FOPS cab. Operator’s door with optional
sliding window, 180° opening angle, fold-out window
on right side with opening angle, front windscreen
made of compound safety glass, green tinted as
standard, side windows made of single-pane safety
glass, grey tinted, continuously adjustable steering
column and joystick control as standard, heated rear
window
ROPS roll over protection per EN/ISO 3471/
EN 474-1
FOPS falling objects protection per EN/ISO 3449/
EN 474-1

Liebherr Operator’s seat

__________

6 way adjustable seat with lap belt, vibration

damping and suspension adjustable for the
opera tor’s weight (mechanically sprung)

Cab heating and ventilation

_______

Operator’s cab with 4-level air control, cooling water

heating, defroster and air conditioning with electronic
valve control, as well as electronic fresh/recirculated
air control, filter system with pre-filter, fresh air
filter and recirculated air filter, easily replaced,
air con ditioning as standard

Noise Emission

L 550

L 556

L 566

L 576

L 580

ISO 6396

L

pA

(inside cab)

_______________

68 dB(A)

68 dB(A)

68 dB(A)

68 dB(A)

68 dB(A)

2000/14/EC

L

WA

(surround noise)

_________

104 dB(A) 104 dB(A) 105 dB(A) 105 dB(A) 105 dB(A)

Capacities

L 550

L 556

L 566

L 576

L 580

Fuel tank

__________________________

l

300 300 400 400 400

Engine oil
(including filter change)

__________

l

40 40 44 44 44

Pump distribution gearbox

______

l

2.5 2.5 2.5 2.5 2.5

Transmission

_____________________

l

11.5 11.5 11.5 11.5 11.5

Coolant

___________________________

l

42 42 52 52 52

Front axle

_________________________

l

35 35 42 42 42

Rear axle

__________________________

l

35 35 40 42 42

Hydraulic tank

___________________

l

135 135 135 135 135

Hydraulic system, total

__________

l

245 245 265 265 265

Air condition system R134a

___

g

1,250 1,250 1,250 1,250 1,250

Attachment

Geometry

___________________________

Powerful Z-bar linkage with tilt cylinder and cast steel

cross-tube

Bearings

____________________________

Sealed

Cycle time at nominal load

_______

L 550

L 556

L 566

L 576

L 580

Z-bar linkage

Lifting

__________________________

5.5 s

5.5 s

5.5 s

5.5 s

5.5 s

Dumping

______________________

2.3 s

2.3 s

2.0 s

2.0 s

2.0 s

Lowering

(empty)

_____________

2.7 s

2.7 s

3.5 s

3.5 s

3.5 s

Industrial lift arm

Lifting

__________________________

5.5 s

5.5 s

5.5 s

5.5 s

5.5 s

Dumping

______________________

3.5 s

3.5 s

3.0 s

3.0 s

3.2 s

Lowering

(empty)

_____________

2.7 s

2.7 s

3.5 s

3.5 s

3.5 s

Attachment Hydraulics

Design

______________________________

“Load-sensing” swash plate type variable flow pump

with output and flow control, and pressure cut-off in
the control block

Cooling

_____________________________

Hydraulic oil cooling using thermostatically controlled

fan and oil cooler

Filtering

_____________________________

Return line filter in the hydraulic reservoir

Control

______________________________

“Liebherr-Joystick” with hydraulic servo control

Lift circuit

___________________________

Lifting, neutral, lowering

and float positions controlled by Liebherr joystick
with detent

Tilt circuit

___________________________

Tilt back, neutral, dump

Automatic bucket return to dig

L 550

L 556

L 566

L 576

L 580

Max. flow

____________________

l/min.

234 234 290 290 290

Max. pressure
Z-bar

linkage

______________

bar

330 360 350 350 380

Industrial

lift

arm

_______bar

350 380 380 380 380

Technical data

L 550 - L 580

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