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QY16C truck crane

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Auto Crane |Truck Crane

QY16C truck crane



Classificatory

Item

Unit

Parameter

Engine

Model


D6114

Outline dimension

Overall length

mm

11990

Overall width

mm

2500

Overall height

mm

3350

Wheel base

Axle 1, Axle 2

mm

4025

Axle 2, Axle 3

mm

1350

Mass

Total mass in travel state

kg

22900


Axle 1

kg

5240

Axle load

Axle 2

kg

17660

Travel performance

Travel speed

Max. travel speed

km/h

70

Min. stable travel speed

km/h

4

Turning diameter

Min. turning diameter

m

20

Min. turning diameter at boom tip

m

23

Min. ground clearance

mm

270

Approach angle

(°)

21

Departure angle

(°)

10

Braking distance (at 30km/h with full load)

m

9.5

Max. grade-ability

%

24

Fuel consumption for 100km

L

35

Power

Engine rated output

kW/(r/min)

158/2200

Engine rated torque

N.m/ (r/min)

790/1400

Engine rated speed

r/min

2200

Main Technical Data for Lifting Operation

Classificatory

Item

Unit

Parameter

Lifting performance

Max. total rated lifting capacity

t

16

Min. rated working radius

m

3

Turning radius at turntable tail

m

≤3.12

Max. load moment

Base boom

kN.m

711

Fully extended boom

kN.m

449

Fully extended boom + Jib

kN.m

186

Outrigger span

Longitudinal

m

4.6

Lateral

m

5.4

Lifting height

Base boom

m

≥9.9

Fully extended boom

m

≥23.6

Fully extended boom + Jib

m

≥30.8


Boom raising time

s

≤60

Working speed

Boom full extension time

s

≤75


Max. swing speed

r/min

≥2.5


Hoist speed

Main winch

Full load

m/min

≥54


(single line)

No load

m/min

≥100



Aux. winch

Full load

m/min

≥54



No load

m/min

≥100

Noise limit

Crane exterior noise

dB (A)

≤118

At seated position

dB (A)

≤90

More excellent performance
• The optimizing layout of the machine makes the stress of the main bearing carriers more reasonable, and the lifting performance is higher than the products with the same tonnage.
• Apply the mature jib technique which integrates plug-in boom head, embedded boom block, and special telescoping mechanism, which makes the jib more stable and reliable.
• Optimize the stress design. Adopt the box-type outriggers which have larger span, stronger rigidity, and better stability.
More reliable quality
• Adopt the classic K series jib telescoping technique, working safer and more reliable.
• Make the most complete safety device system in the industry, ensuring the lifting safer and more reliable.
• The comprehensively upgraded brake system adopts double circuit air pressure design. Multiple systems ensure the brake safety of the truck during travel.
• The intensity and rigidity of the rotary table and frame structure with high rigidity are completely coordinated.
• The perfect integration of the design and structure realizes the automation of welding, which is more reliable.
Easier to maintain
• The optimizing design of the pipeline traces makes the layout more scientific and reasonable, greatly reducing the dismantling and installing time of the pipelines and the maintenance expense.
• Completely upgrade the electrical system. Adopt anti-creep connector clips, greatly prolonging the service life of the parts.
• Adopt K series rope anti-disorder technique, improving the lifting efficiency, reducing the labor intensity, and prolonging the service life of the steel rope.
• The telescoping steel wire rope oriented and protective device avoids the steel wire rope out of the track and broken.
More energy-efficient and environmental friendly
• Adopt double industrial automation control engine, featuring strong power and energy efficiency.
• Under the economical mode, it can meet the engine power requirement of the normal lifting work. Under the high power mode, it can meet the requirement of the high challenge and high efficient lifting work.
• Adopt the advanced matching technique, which makes the design more scientific. It can reduce the consumption of the mechanism, prolong the service life of the machine, and has high residual value

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