Product Main

Specifications

APPLICATION
     HXFA299 Comber is used for processing cotton combing.Its main function is to eliminate the short fiber to improve the average length of fibers,making further fiber separation,so that the straightness and parallelization of fibers will be improved greatly.At the same time,it expels the impurity and the cotton knot,provides the comb sliver uniformity,which is suitable for spinning high-count yarn and blended yarn and blended yarn velvet and neatness,and improves the physical and mechanical performances.
TECHNICAL PARAMETER
Size of feeding lap
φ650mm×300mm
Feeding weight
50~80g/m
Draft range
9~23.1 times
Nipper speed
500nips/min
Max output
78.5kg/set.h
Suction style
Center suction
Effective output length
26.48mm
Noil(%)
6~28%
Can size
φ600mm×1200mm
Compressed air pressure/consumption
0.6~0.8Mpa/0.8m3/set.h
Main motor with inverter
4.7kw  100Hz  2950r/min
Brush motor
1.1kw   960r/min
Supply voltage
380v  three phase
Earth line
≥4mm2
Dimensions(length×width×height)
7180mm×2120mm×1920mm
Net weight
≈5000kg
1.High output
The highest speed of the nipper can be up to 500 nips/min .The max daily production per machine can be up to 1.62t/day by the reliable performance and high efficiency.
2. High quality
The high quality combing effect and the excellent inspecting specification can be compared with the same products in the world.
3.High efficiency
It Carried on many improvements.The main improvement is optimized the drafting system, reduced the rate of stopped, advance the productivity.
4.Low noise
Adopted the software to design the structure optimal .We reduced the noise greatly and delaied the life of the part.
5. Low consumption
While it working at the max speed 500 nips/min, the dissipative power of main motor is about 3.1KW.It reduced the consumption greatly.
6.Low cost
The noil percentage is 6%-28%,it can adapt to double combing and saving cotton 2%-4%.
7.Intellectualized
The layout of Electricity is logical. The operation is easy and convenient by adopting the advanced automatic control and the human-machine interface.