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MicroSpin™ Microfluidic Electrostatic 3D Printing Spinning Machine

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SKU# EMSE3P

MicroSpinTM Microfluidic Electrostatic 3D Printing Spinning Machine

 

Product Detail

Product Overview

1) Main Unit

Photo of MicroSpinTM Microfluidic Electrostatic 3D Printing Spinning Machine

Product Features

The MicroSpinTM Microfluidic Electrostatic 3D Printing Spinning Machine integrates the principles of electrospinning, microfluidic spinning, and 3D printing. With diverse microfluidic chips at its core, it achieves precise digital control through microfluidics. This enables the preparation of ordered fibers with multi-level structures via microfluidic processes, while also supporting the production of ultrafine fibers through conventional electrospinning mechanisms. Additionally, its foldable mechanical arm facilitates 3D printing, allowing the machine to serve multiple functions and meet the needs of various research fields.

Key Features

  • 3D Printing Platform: Incorporating a three-axis maneuvering system for 3 dimentional printing environment
  • 3-Axis System: Precise Controls for simultaneous X, Y, and Z axis operation
  • Ventilation: Remove volatile solvents to ensure the safety of operators
  • Program Control: Compatible drawing software enables G-code control
  • User Interface: All operations integrated in one interface for simple operation
  • Microcomputer Control: enables diverse functions of the equipment and extends its service life.

Product Specifications

Product Name

MicroSpinTM Microfluidic Electrostatic 3D Printing Spinning Machine

SKU#

EMSE3P01

Microfluidic Pump

Selectable syringe size range (mL)

0.5 - 200

Injection speed range

0.1μl/h - 681.73ml/min

High-Voltage Spinning Power Supply

0 ~ 50kV, digital display, over-current protection, over-voltage protection

Chip

Diverse designs of internal channel shapes and configurations

Slider Sroke

X 200mm, Y 200mm, Z 100mm

Mechanical System

Simultaneous three-axis operation

Control system

Motion control system, stable long-term operation, computer-controlled, enabling multiple operating modes

Receiving Device

Electrostatic-specific receiver, microfluidic spinning receiver, plate-type platform

Speed range: 200–1450 rpm, precisely adjustable across a wide range from low to high speeds, with a speed error of ±1 rpm

Moving Speed

0~500 mm/s

Position repeatability ±0.01mm    

Thermal Curing System

Operation Power: 200W

Polymer Temperature Control System

Temperature control range: RT~ 100 ℃

Accuracy: ± 1 ℃

Chamber Temp and Humidity Control System

Humidity Accuracy : ±3% RH

Temperature Accuracy: ±0.5℃

Safety System

Uses insulating materials, ensuring cleanliness and safety. Equipped with door switch sensors, emergency stop buttons, and other safety protections.      

Power Supply

AC: 220V±10%, 50Hz

Operating Environment

Under normal temperature and pressure, in a static environment         

Rated Power

1000W

Configuration Description

Includes 1x main unit, 1x microfluidic pumps, 1x microfluidic chips, 1x 3D printing platforms, 1x high voltage power supplies, 1 set microfluidic needles.

Applications

  • Pharmaceuticals: Drug carriers, hemostatic materials, high performance masks
  • Tissue Engineering: Artificial blood vessels, artificial cartilage tissue, artificial Skin
  • Filtration Materials: Air filters, water purification filters, filter cartridges
  • Cosmetics: Face masks, skin cleansers
  • Flexible Wearable: Liquid cystal display, light emitting OLED, flexible screen
  • Nanomaterials: Quantum dot fibers, photonic crystal fibers, mono-dispersed microspheres

Disclaimer: ACS Material, LLC believes that the information in this website is accurate and represents the best and most current information available to us. ACS Material makes no representations or warranties either express or implied, regarding the suitability of the material for any purpose or the accuracy of the information contained within this document. Accordingly, ACS Material will not be responsible for damages resulting from use of or reliance upon this information.