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Nanospinner 416 Industrial Electrospinning/Spraying

NANOSPINNER416 is an electrospinning oriented industrial nanofiber production machine that can coat 1-meter width fabrics with
50-400 nm (0.05-0.4 μm) diameter nanofibers.

The industrial nanofiber membrane production line by the electrospinning method has led to the formation of a new industry with high production capacity and product quality. Industrial Scale Nanofiber Membrane Production Unit The Nanospinner416 is the ongoing industrial project which waits for today’s electrospinning projects as tomorrow’s nanofiber products.

In accordance with the customized product properties and nanofiber coating level (g/m˛), the output of NanoSpinner416 can vary
180m˛/day to 5.000 m˛/day nanofiber membrane coating.

The net nanofiber production capacity of NanoSpinner416 is approximately 5.000 g nanofiber daily.

The NS416 is equipped with 110 electrospinning needles, allowing the surface to be uniformly and continuously at a width of 1 m. Thanks to its advanced automation system and air conditioning equipment, it enables continuous production at the determined quality even under changing environmental conditions.

- TypeBottom-Up Spinning
- Programmable touch screen control panel
- Up to 204 Nozzles during full operation
- Possible to work with single nozzle
- Standard Different Diameters Nozzles can be attached optionally
- Easy to use 2 precise peristaltic pumps
- High throughput nanofiber production for higher production capacity in less time.
- Fiber Deposition Width: 1000 mm
- Substrate Winding Speed: 0,2 m/min – 20 m/min

- Temperature Controlled Chamber (Heating of spinning area up to 40°C.)
- Dehumidifier Attached Chamber (Ambient humidity adjustment between 25% and room condition.)
-Camera Integrated Chamber (ChamberIt is possible to integrate a camera inside the chamber to visualise the process)
- Bicomponent System

* Two special designed coaxial nozzles:
Shell Nozzle
(ID : 0.337 mm, OD: 3.3 mm)
Core nozzle
(ID: 0.6414 mm, OD: 1 mm)
and an extra syringe pump to obtain core-shell, hollow and bicomponent nanofibers.


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