Single side pressure three roller calender
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BENDCON-Y
This machine can be applied to cotton, chemical fiber, hemp, wool and its blended fabric finishing calendering; it can also be used for polypropylene, nylon, polyester, polyethylene, polypropylene and other materials and paper finishing calendering.
By adjusting the hydraulic valve inside the nylon roll, when the different pressure is applied to the roller surface, the nylon roller is automatically adjusted to achieve uniformity of the linear pressure of the entire nip. After calendering, the product can achieve much better effect of thickness, gloss and other uniformity than normal calendering. This machine can also withstand higher steel roller temperature and higher linear speed while operating.
Product advantages:1.Nominal width: 1800-3400mm
2.Working speed: 20-70m / min
3.Design pressure: 60-100T
M5469 stentering boarding machine
Product uses
This product is appropriate for polyester filament yarn, polyester low elasticity silk fabric, pure cotton or other knitting fabric with weight of 70-400g/m2.
Main technical index
Form: heated air circulation, single layer horizontal type
Vehicle category: left hand or right hand
Nominal width(mm): 1800-3600
Amplitude modulation range(mm): 700-(Nominal width-200 mm)
Speed range: 5-100m/min
Over-feed ratio: -10% - +30
Heat source: heat-carrying oil, fuel gas(city gas, natural gas, water gas, liquefied petroleum gas), electricity, saturated vapor
Cloth holding method: needle clamp, cloth clamp, double use clamp
Cropping form: simple pendulum type; or double use
Edge detecting form: high precision infrared
Guide rail form: no lubricating oil lubricating oil guide rail
Installed capacity: (55+n×15)kW
Features
1. High precision infrared edge detecting instrument, powerful antijamming capability;
2. 6mm thick steel plate graphite guide rail, no need of refueling, long serve life;
3. Multistage fabric width adjustment;
4. Front and back double multistage operation system, PLC control system, convenient for operation;
5. Landing minor-cycle building block system oasthouse, small volume, large blast capacity;
6. Frequency converting control, high efficient heated air circulation system;
7. Special nozzle displacement;
AS4 Wet & Dry sueding
AS4 Wet & Dry sueding
Description:
WET & DRY SUEDING MACHINE AS4
The AS4 is a sueding machine that is caracterized by an high versatily
because lets suede both on wet and dry condition;
This machine is using four light weight composite carbon fibre roller, that assure a perfect balance and high resistence.
On this machine it is possible to use waterproof emery cloth or diamond tape to cover all the sueding rollers.
Machine can works in combination of brushes.
MAIN FEATURES
Dry fabric feeding, wetting unit with squeezer roller and water tank, flow water on each sueding roller, high squeezing unit at outlet.
Four reversibile, indipendent, inverter controlled sueding and brush rollers each with oscillating motion.
Fabric interference angle independently adjustable for each suede/brush roller.
Emery tape clamping by means of an exclusive, patent pneumatic device.
Automatic, adjustable seam passage system to get the lowest length of untreated fabric.
LASER ENGRAVING MACHINE [ZEUS]
LASER ENGRAVING MACHINE [ZEUS]
Description:
LASER ENGRAVING MACHINE FOR PRINTING ROTARY SCREENS
& FLEXOGRAPHIC ROLLERS AND SLEEVES
DIRECT LASER ENGRAVING SYSTEM
Laser engraving machine
The laser engraving machine has two main parts: a laser source and a controller system. The beam emitted from the laser allows the controller to trace patterns onto the surface of the roller. The controller (computer) controls the direction, intensity, speed of movement, and spread of the laser beam aimed at the surface. The point where the laser beam touches the surface of the roller should be on the focal plane of the laser’s optical system, and is usually synonymous with its focal point. This point is typically small, less than a fraction of a millimeter (depending on the optical wavelength). Only the area inside this focal point is significantly affected when the laser beam passes over the surface. The energy delivered by the laser changes the surface of the material under the focal point. This is how material is removed from the surface to create an engraving. The surface material is vaporized during laser engraving, ventilation through the use of blowers and a vacuum pump that are required to remove the fumes arising from this process, and for removal of debris on the surface to allow the laser to continue engraving. The speed at which the beam moves across the material is also considered in creating engraving patterns. Changing the intensity and spread of the beam allows more flexibility in the design. For example, by changing the proportion of time (known as “duty-cycle”) the laser is turned on during each pulse, the power delivered to the engraving surface can be controlled appropriately for the material.
Characteristics:
The word Laser is actually an acronym
LASER
L is for Light
A is for Amplification
S is for Stimulated
E is for Emission
R is for Radiation













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