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Machine for spinning nano-fiber for production of non-woven cloth

A non-woven fabric and nanofiber technology, applied in non-woven fabrics, fiber processing, textiles and papermaking, etc., can solve the problems of changing the electric field distribution, affecting the use of products, and affecting the spinning process, so as to avoid electric field interference and prevent Unstable, stable spinning jet effect

Inactive Publication Date: 2006-09-27
SUZHOU UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the droplets with different polarities of static electricity produced by adjacent nozzle assemblies will attract each other, change the distribution of the electric field, and then affect the stability of the spinning process; at the same time, the movement of the nozzle assemblies will also cause spinning process unstable
[0005] Therefore, in the process of electrospinning, with the change of parameters such as the voltage and the distance between the spinneret on the spinning tube and the receiving screen, a certain electric field distribution will be formed, and the electric fields of each spinneret will obviously be different. A certain interaction is formed, which affects the stability of the spinning process. Therefore, when using multi-nozzle spinning, it is necessary to find a way to properly isolate the electric field formed by each nozzle.
At the same time, during the spinning process, the flow rate of the air and the tiny vibration of the spinning assembly will affect the spinning process, resulting in instability of the spinning process. Therefore, it is necessary to ensure the stillness of the spinning assembly and the flow rate of the spinning solution the stability of
[0006] On the other hand, the practice of single-nozzle spinning has proved that the nanofiber nonwoven fabric obtained by electrospinning has thickness inhomogeneity. Since the electric field intensity has a certain distribution with the electrode as the origin, it is generally thick in the middle and thick on the sides. Thin, which seriously affects the use of the product

Method used

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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  • Machine for spinning nano-fiber for production of non-woven cloth
  • Machine for spinning nano-fiber for production of non-woven cloth
  • Machine for spinning nano-fiber for production of non-woven cloth

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] Embodiment one: see attached figure 1As shown, a nanofiber nonwoven spinning machine is mainly composed of a high-voltage power supply device, a spinning solution storage tank, a receiving device, and at least one set of spinning components. The spinning solution storage tank is passed through a pump and a pipeline It communicates with the spinning tube in the spinning assembly, and the outlet of the spinning solution storage tank is provided with a primary flow regulator 9, and the pipeline includes a catheter 6 connected with the spinning solution storage tank, and connecting each spinning solution respectively. The shunt tube 7 of the silk tube, the catheter tube 6 is provided with a plurality of quick joints 8, the end of the shunt tube 7 is provided with a connection structure that cooperates with the quick joints 8, and communicates with the catheter tube 6 through the quick joints 8 . Among them, the high-voltage power supply device at least includes high-voltag...

Embodiment 2

[0037] Embodiment 2: The spinning machine of Embodiment 1 is used to prepare nano-regenerated spider ovum silk fiber nonwoven fabric.

[0038] The spider ova silk fibers were dissolved in hexafluoroisopropanol to obtain a regenerated spider ova silk solution with a concentration of 1.0 wt%. Each spinning assembly uses four spinning tubes, two groups of spinning components are arranged opposite to each other with the axis of the receiving cylinder as the axis of symmetry, the distance between adjacent spinning tubes is 5 cm, and the diameter of the receiving cylinder is 10 cm . The distance C-SD between the spinneret and the receiving metal net is 12 cm and 8 cm respectively, and the electrospinning is carried out under the condition of a voltage of 16KV, and the nano-regenerated spider egg-coated silk fibers shown in the figure are obtained, and they are uniformly interlaced. network to form a nonwoven fabric.

[0039] attached figure 2 It is the fabric obtained when the d...

Embodiment 3

[0041] Embodiment 3: The spinning machine of Embodiment 1 is used to prepare nanometer nylon 6 fiber nonwoven fabric.

[0042] Nylon 6 slices were dissolved in 88% formic acid to obtain a nylon 6 solution with a concentration of 12 wt%. Each spinning assembly uses seven spinning tubes, four groups of spinning components are arranged symmetrically with the axis of the receiving cylinder, the distance between adjacent spinning tubes is 3 cm, and the diameter of the receiving cylinder is 10 cm . Electrospinning is carried out when the distance C-SD and the voltage between the spinneret and the receiving metal mesh are 15 cm and 22.5KV respectively, and the obtained Figure 4 The shown nano nylon 6 fibers have an average diameter of 77.55±15.75nm. Electrospinning is carried out under the condition that the distance C-SD and the voltage between the spinneret and the receiving metal mesh are 10 cm and 15KV respectively, and the obtained Figure 5 The shown nano nylon 6 fibers hav...

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Abstract

This invention discloses a nonwovens spinning machine of nanometer fibre, which mainly includes the high pressure power set, the liquid tank of spinning fluid, receiving device, and at least one group of spinning components. Said liquid tank of spinning fluid is connected with spinning pipe of spinning components by pumps, wherein receiving device including a cylinder vertically disposited on movement devices and metal receiving netting disposited on the cylinder excircle in circle, the movement device having rolling degree of freedom that revolution axis is paralleled with z axis and translation degree of freedom; each group of spinning components including spinning component shelf and at least two spinning pipes fixed on the shelf, the pipe having electric electrode in it, the distance between the spout of the pipe and metal receiving netting is 5-25 centimeters; mounting an isolated electrode between adjacent spinning pipes. The invention comprises the following merits: assuring uniformity of product obtained, avoiding the disturbance of electric field of adjacent spinning pipes, preventing unsteadiness in spinning and inhomogeneity of fibre dispersion.

Description

technical field [0001] The invention relates to a device for producing non-woven fabrics by using an electrospinning method, in particular to a spinning machine for forming non-woven fabrics with nanofibers; Or composite spinning of two or more polymer solutions. Background technique [0002] Electrospinning is a new spinning technology for spinning nanoscale fibers with diameters ranging from tens to hundreds of nanometers. The method of electrospinning can be used to prepare non-woven fabric-like products composed of nano-scale fibers. Because the fiber has a large specific surface area and a very high surface area to volume ratio, the ability in surface adsorption, absorption and filtration protection will be greatly increased. Products developed by this new processing method will have good application prospects in biomedical materials and functional protective materials. [0003] Electrospinning is a process in which the spinning solution is w...

Claims

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): D04H3/07D01D5/00
Inventor 王建民戴宏钦潘志娟孙道权张林春
Owner SUZHOU UNIV
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