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Energy-increased spun-bonded filter material containing polypropylene/polyester and preparation method of energy-increased spun-bonded filter material

A polypropylene and two-component technology, applied in the field of energized polypropylene/polyester two-component spunbond filter material and its preparation, can solve the problems of immature industrial application, poor resilience and low filtration efficiency, etc. To achieve the effect of convenient source of raw materials, high efficiency, fluffy and soft structure

Active Publication Date: 2016-10-12
JINAN HAOXIN IND
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The technical problem to be solved by the present invention is to provide a kind of energized polypropylene / polyester two-component spun-bonded filter material and its preparation method. Oil agent; high resistance, poor resilience; immature industrial application; hard hand feeling, low filtration efficiency and other problems

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] Add energizing agent a and polypropylene slices to the two feeding hoppers of the granulator respectively, blend, melt and extrude at a temperature of 190°C, cut into granules after cooling in a water bath, and obtain the added energizing agent after drying. The modified polypropylene masterbatch of auxiliary agent a, the mass ratio of energizer a to the modified polypropylene masterbatch is 12%, the energizer a is a mixture of zinc stearate and barium stearate, stearin The mass percentages of zinc acid zinc and barium stearate are respectively 60% and 40%;

[0036]Add the energizing agent b and the dried polyester chips to the two feeding hoppers of the granulator respectively, blend, melt and extrude at a temperature of 280°C, cut into granules after cooling in a water bath, and add them after drying. There is a modified polyester masterbatch of energizer b, the mass ratio of energizer b to the modified polyester masterbatch is 16%, and the energizer b is histamine di...

Embodiment 2

[0041] Add energizing agent a and polypropylene slices to the two feeding hoppers of the granulator respectively, blend, melt and extrude at a temperature of 190°C, cut into granules after cooling in a water bath, and obtain the added energizing agent after drying. The modified polypropylene masterbatch of auxiliary agent a, the mass ratio of energizer a to the modified polypropylene masterbatch is 12%, the energizer a is a mixture of zinc stearate and barium stearate, stearin The mass percentages of zinc acid zinc and barium stearate are respectively 60% and 40%;

[0042] Add the energizing agent b and the dried polyester chips to the two feeding hoppers of the granulator respectively, blend, melt and extrude at a temperature of 280°C, cut into granules after cooling in a water bath, and add them after drying. There is a modified polyester masterbatch of energizer b, the mass ratio of energizer b to the modified polyester masterbatch is 16%, and the energizer b is histamine d...

Embodiment 3

[0047] Add energizing agent a and polypropylene slices to the two feeding hoppers of the granulator respectively, blend, melt and extrude at a temperature of 190°C, cut into granules after cooling in a water bath, and obtain the added energizing agent after drying. The modified polypropylene masterbatch of auxiliary agent a, the mass ratio of energizer a to the modified polypropylene masterbatch is 12%, the energizer a is a mixture of zinc stearate and barium stearate, stearin The mass percentages of zinc acid zinc and barium stearate are respectively 60% and 40%;

[0048] Add the energizing agent b and the dried polyester chips to the two feeding hoppers of the granulator respectively, blend, melt and extrude at a temperature of 280°C, cut into granules after cooling in a water bath, and add them after drying. There is a modified polyester masterbatch of energizer b, the mass ratio of energizer b to the modified polyester masterbatch is 16%, and the energizer b is histamine d...

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Abstract

The invention relates to an energy-increased spun-bondedfilter material containing polypropylene / polyester and a preparation method of the energy-increased spun-bonded filter material. The filter material comprises three layers of fiber meshes bonded together, wherein the fiber meshes comprise a coarse-denier fiber mesh, an intermediate-denier fiber mesh and a fine-denier fiber mesh sequentially; fibers in the fiber meshes are sheath-core composite fibers; the coarse-denier fiber mesh, the intermediate-denier fiber mesh and the fine-denier fiber mesh are spun sequentially, stacked, then bonded for reinforcement and subjected to polished roller hot rolling, corona processing of electrets and winding, and the energy-increased spun-bonded filter material containing polypropylene / polyester double components is obtained. The filter material has fluffy and soft structure and high filter efficiency while maintaining lower resistance. Besides, the preparation method is environment-friendly, simple and feasible in process and suitable for industrial production.

Description

technical field [0001] The invention belongs to the field of spun-bonded filter material and its preparation, in particular to an energy-enhancing polypropylene / polyester two-component spun-bonded filter material and a preparation method thereof. Background technique [0002] With the development of the economy, the pollution of industrialization has become more and more serious, and the air quality has dropped significantly, causing serious adverse effects on people's transportation, production and life, and physical health. Among them, particulate matter, as the main component of air pollution, absorbs a large amount of toxic and harmful substances, causing serious damage to the human respiratory system and cardiovascular system, leading to a significant increase in the incidence of bronchitis, asthma, myocardial infarction and other diseases. The most direct and effective control of air pollution in terms of personal protection and indoor purification is the use of filter...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01D39/16B32B27/02B32B27/12
CPCB01D39/1623B01D2239/0695B01D2239/10B32B5/26B32B2262/0276B32B2262/12
Inventor 吴海波刘妙峥刘金鑫张星张海峰靳向煜王荣武王洪黄晨刘嘉炜
Owner JINAN HAOXIN IND
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