Pleated two-component filter material, and preparation method and use thereof

A two-component, filter material technology, applied in separation methods, chemical instruments and methods, filtration separation, etc., can solve the problems of surface material wear, difficult control of cost and yield rate, high filtration resistance, etc., and achieve high mechanical strength and Stiffness, stable and reliable product performance, unique aesthetic effect of filament

Inactive Publication Date: 2020-05-29
上海精发实业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Patent CN105999856A discloses an energy-enhancing polypropylene / polyester two-component spun-bonded filter material and its preparation method, which mainly adopts multi-layer spun-bonded filament fiber webs of different finenesses to be superimposed and then reinforced to form, and finally electro- The filter material obtained by halo charging involves multi-channel processing, the process control points are many and complex, and the product filtration resistance is relatively large; patent CN105964059A discloses a kind of energy-enhancing polyethylene / polypropylene two-component spunbonded filter material and its The preparation method, the principle of the main invention content and the corresponding product specificity are the same as above; the patent CN1055586714A discloses a high electrostatic long fiber non-woven fabric and its manufacturing method, which relates to a filament spunbond filter material with a skin-core structure, which mainly uses Inorganic particles are added to the cortex material to make non-woven fabrics and then electrostatically treated to finally obtain filter materials, but it is difficult to control the spinning process and tow quality after adding inorganic substances, and the filtration performance after electrostatic treatment is batch Instability and other problems, in addition, inorganic particles can only be added to the skin layer, the process is single, and it is difficult to mix fine particles and polymer slices evenly, and there is a risk of unstable final product quality
[0004] Among many different types of composite filter materials, although it has the advantages of fine filtration and high dust holding capacity, its multi-layer composite process control is relatively finer and more complicated. The manufacturing process of composite materials is divided into multiple steps. The performance index and yield of the material are very high, and the glue lamination process is the mainstream processing technology. Among them, the type, smell and environmental protection of the glue all have potential safety hazards to human health; before the composite filter material is processed into a filter Mechanical discounting is required. During the process, composite materials are prone to problems such as surface material wear, fluffing, and delamination, which will lead to a decrease in the performance of the filter material, and it is difficult to control the cost and yield rate; in addition, composite materials are generally melt-blown materials or electrostatic cotton. Materials are compositely processed by glue lamination or hot rolling or ultrasonic lamination. The specific process determines that the filtration resistance of the product material is generally large, which objectively increases the energy consumption of the air purification system.

Method used

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  • Pleated two-component filter material, and preparation method and use thereof
  • Pleated two-component filter material, and preparation method and use thereof
  • Pleated two-component filter material, and preparation method and use thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0054] The polymer of component A is PE masterbatch, with a melting point of 130-135°C. At the same time, 1.5wt% of the total weight of the cortex is mixed into the PE masterbatch of component A (a functional medium with power storage function); The polymer of component B is PET polyester chips with a melting point of 255-265°C. Component composite ratio A:B=50%:50%.

[0055] In this embodiment, the functional medium with electricity storage function includes the following raw material components and parts by weight:

[0056]

[0057] The functional medium with electricity storage function is obtained by blending and granulating various raw material components.

[0058] The mixed polymer of component A is melted through a single-screw extruder to form a melt. After filtering through the filter, the pressure before filtration is 5.75MPa, and the pressure after filtration is 6.5MPa. Then the melt enters the metering pump for metering. The speed of the metering pump is 15rpm...

Embodiment 2

[0066] The polyolefin polymer of component A is PE masterbatch with a melting point of 130-135°C. At the same time, 1.0wt% of the total weight of the cortex is mixed into the PE masterbatch of component A (that is, it has the function of electricity storage) functional medium); the polymer of component B is PET polyester chips, with a melting point of 255-265°C; and a melting point of 255-265°C. The composite ratio of the skin layer and the core layer is 40%: 60%. The manufacturing process is the same as in Example 1.

[0067] In this embodiment, the functional medium with electricity storage function includes the following raw material components and parts by weight:

[0068]

[0069] The functional medium with electricity storage function is obtained by blending and granulating various raw material components.

[0070] For a product of this specification weighing 110 grams, use the electrostatic skeleton filter material tested by the TSI8130A filter material comprehensi...

Embodiment 3

[0074] The polymer of component A is PE masterbatch with a melting point of 130-135°C; at the same time, 1wt% of the total weight of the cortex is mixed into the PE masterbatch of component A polymer (a functional medium with electricity storage function) ); The polymer of component B is PET polyester chips, with a melting point of 255-265°C. The melting point is 162-165°C. The composite ratio of the skin layer and the core layer is 40wt%: 60wt%. The manufacturing process is the same as in Example 1.

[0075] In this embodiment, the PE electricity storage masterbatch (functional medium with electricity storage function) includes the following raw material components and parts by weight:

[0076]

[0077] For a product of this specification weighing 110 grams, use the electrostatic skeleton filter material tested by the TSI8130A filter material comprehensive performance test platform. Test conditions: flow rate 32L / min, sodium chloride aerosol median diameter 0.3 microns, ...

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Abstract

The invention provides a pleated two-component filter material, and a preparation method and use thereof. The preparation method thereof comprises the steps of: (1), performing melt spinning: performing melt spinning by adopting an A component polymer and a B component polymer, and then, forming skin-core structure continuous type two-component composite filaments, wherein a skin layer or/and a core layer contains a functional medium having the electricity storage function; (2), forming a net: forming a net after dividing the skin-core structure continuous type two-component composite filaments; (3), reinforcing and forming: performing melt gluing and solidification by adopting hot air; and (4), performing high-voltage electrostatic treatment: charging the material. According to the pleated two-component filter material in the invention, a single-layer medium-efficiency filter material can have the filtration efficiency, which is the same as the filtration efficiency of a composite filter material; simultaneously, the single-layer medium-efficiency filter material has dual filtering functions of physical blocking and electrostatic adsorption; furthermore, relatively are mechanicalstrength and stiffness are also achieved; furthermore, the filter material has very low filtration resistance and relatively high air permeability; and thus, the filter material in the invention can completely replace corresponding medium and high-efficiency filtering composite material products in the present market.

Description

technical field [0001] The invention relates to the field of non-woven fabrics, in particular to a foldable two-component filter material and a preparation method thereof. Background technique [0002] In the field of air filtration such as vehicle-mounted air conditioners and fresh air purification, the mainstream technologies and products in the domestic and foreign markets are mainly composite textile filter materials. The filter materials have reached the corresponding filtration efficiency. Most of them are composite materials related processes and products, especially in the field of medium and high-efficiency filtration, that is, F-grade and H-grade filter materials, which are mostly melt-blown fine filter materials. It is compounded with non-woven fabric skeleton reinforcement materials through glue compounding, ultrasonic bonding or high temperature and high pressure compounding, so as to meet different levels of filtration standards and requirements. [0003] Amon...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): D01F8/06D01F1/10D06M10/02D04H1/541D01D5/08D01D1/10D01D5/088D01D5/34B01D39/16
CPCD01F8/06D01F1/10D06M10/025D04H1/541D01D5/08D01D1/106D01D5/088D01D5/34B01D39/1623D10B2505/04
Inventor 杨占元陈立东陈连忠徐克勤陈致帆柏国清朱德洪高丰和吴建军
Owner 上海精发实业有限公司
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