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Bubble electrostatic spinning system for preparing composite fiber material

A technology of bubble electrospinning and composite fiber, applied in the field of spinning, can solve the problems of bubbles interacting with each other, reducing spinning efficiency, and the solution cannot be completely uniformly mixed, etc., so as to achieve the effect of increasing the output and avoiding the mutual influence of bubbles.

Inactive Publication Date: 2016-06-01
SUZHOU UNIV
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  • Abstract
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  • Application Information

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Problems solved by technology

However, in the current bubble electrospinning technology, when the composite fiber material is prepared, the spinning solution is exposed to the air, which leads to changes in the properties of the solution, thereby reducing the spinning efficiency, and the interaction of multiple bubbles leads to the Taylor cone interaction caused by bubble rupture. , Solutions with different functions cannot be completely and uniformly mixed, which makes it impossible to achieve larger-scale mass production of micro-nano composite fiber materials
[0005] In view of the above technical problems, it is necessary to provide an effective air bubble electrospinning device for preparing composite fiber materials to solve the problems of mutual influence between air bubbles and different spinning solutions that cannot be completely uniformly mixed in the air bubble electrospinning process, and realize micro Mass production of nanocomposite fiber materials

Method used

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  • Bubble electrostatic spinning system for preparing composite fiber material
  • Bubble electrostatic spinning system for preparing composite fiber material
  • Bubble electrostatic spinning system for preparing composite fiber material

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Embodiment Construction

[0036] In the current bubble electrospinning technology, when the composite fiber material is prepared, the spinning solution is exposed to the air, which leads to the change of the solution properties and reduces the spinning efficiency. The interaction of multiple bubbles leads to the Taylor cone interaction caused by the bubble rupture. Different properties and different Functional solutions cannot be mixed completely and evenly, which leads to the inability to realize larger-scale batch production of micro-nano composite fiber materials.

[0037] Aiming at the deficiencies in the prior art, the present invention provides a bubble electrospinning system for preparing composite fiber materials. By adopting inner and outer nested spinning cylinders and air storage cylinders as spinning devices, different solutions are separately set and passed through The single infusion pipeline is transported between the closed spinning cylinder and the air storage cylinder, and the solution...

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Abstract

The invention discloses a bubble electrostatic spinning system for preparing a composite fiber material. A spinning cylinder and an air cylinder in an internal-external nested manner are adopted as spinning devices; different solutions are separated and conveyed to the closed spinning cylinder through a first liquid conveying pipeline; and the solutions are uniformly mixed through the rotation of the air cylinder to realize batch production. A liquid supply device is closed, the property change of the spinning solution is avoided, the spinning quality is guaranteed, and environmental pollution is reduced. The spinning holes in the spinning cylinder are designed in equal-interval vertical axial arrangement, and mutual influence of bubbles generated at any adjacent spinning holes is effectively avoided; and meanwhile, at least one vent hole stays on the same horizontal plane with the spinning holes so as to guarantee normal spinning at each spinning hole and improve the yield of the micro-nano composite fiber material. A receiving device is arranged in a roller manner and circles the spinning cylinder, so that the fiber receiving area is effectively increased, and continuous batch production is possible.

Description

technical field [0001] The invention belongs to the technical field of spinning, and in particular relates to a bubble electrostatic spinning system for preparing composite fiber materials. Background technique [0002] Micro-nanofiber materials have a series of advantages such as small size, large specific surface area, good fiber continuity, and excellent physical and chemical properties, so they have broad application prospects in the fields of environmental sanitation, information technology, energy security, biomedicine, and national defense and military affairs. At present, there are many ways to prepare micro-nano fiber materials, and the electrospinning technology has the advantages of simple and controllable process, low cost, and can quickly obtain micro-nano fibers with different diameters, different shapes, and different functions. Therefore, it is recognized as one of the most effective methods for preparing micro-nanofibers. [0003] With the rapid increase in...

Claims

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Application Information

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IPC IPC(8): D01D5/00
CPCD01D5/0038D01D5/0061D01D5/0069
Inventor 何吉欢刘鹏沈靖
Owner SUZHOU UNIV
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