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Thermal composite rapid infiltration diversion material and application thereof

A technology of thermal compounding and diversion layer, which is applied in the field of online thermal compounding rapid permeation diversion materials and composite diversion materials, which can solve the problem of affecting the bulkiness, rebound performance and diversion effect of materials, affecting the pores of non-woven materials, affecting products Quality and other issues, to achieve the effect of good application somatosensory, small pores, and diffused application somatosensory

Pending Publication Date: 2022-03-11
FITESA CHINA AIRLAID
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, due to the addition of polymer water-absorbing materials to the composite dust-free paper, in order to ensure the bonding strength between the bottom liner and its adjacent layers, it is necessary to add powdery or granular bonding materials at the same time, and it is necessary during the production process. Higher pressure, although it increases the bonding effect, will affect the bulkiness, rebound performance and diversion effect of the material, and also increase the cost of raw materials; another disadvantage is that the powdery bonding material increases the control complexity of the production process During the forming process, a small amount of powdery bonding material will penetrate through the backing material due to vacuum (when the vacuum degree fluctuates greatly, there will also be a phenomenon of powdery bonding material passing through), which will affect the pores of non-woven materials. which in turn affects the quality of the entire product
In addition, in the production and use of sanitary napkins, the size of the diversion composite dust-free paper needs to be the same as the surface area of ​​the sanitary napkin, and the core area of ​​the absorbent layer of the general sanitary napkin is smaller than the surface layer, so the composite dust-free paper is used Paper will result in the waste of some raw materials

Method used

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  • Thermal composite rapid infiltration diversion material and application thereof
  • Thermal composite rapid infiltration diversion material and application thereof
  • Thermal composite rapid infiltration diversion material and application thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0103] The total weight of the composite quick-seepage diversion material of the present embodiment is about 50g / m2, is designed as a two-layer structure, and the thickness is about 1.0mm. 2-5mm. The bicomponent composite fiber is composed of a core layer and a skin layer, the core layer is polypropylene (PET), the skin layer is polyethylene (PE), the fiber length is about 3-10mm, and the fineness is about 1.5-3.0 decitex. The non-woven fabric adopts 20gsm hot-air non-woven fabric. In this embodiment, the emulsion is sprayed on the outer surface of the fiber layer, which is a Vinnapas 192 product from Wacker Company.

[0104] The composite quick-seepage diversion material structure includes two layers, wherein the weight of the quick-seepage diversion layer accounts for about 40.00% of the total weight of the product, the weight of the fiber layer accounts for about 58% of the total weight of the product, and the latex accounts for about 2.00% of the total weight of the produc...

Embodiment 2

[0114] The total weight of the composite quick-seepage diversion material of this embodiment is about 85g / m2, and it is designed as a three-layer structure with a thickness of about 1.75mm. 2-5mm. The bicomponent composite fiber is composed of a core layer and a skin layer, the core layer is polypropylene (PET), the skin layer is polyethylene (PE), the fiber length is about 3-6mm, and the fineness is about 1.7-3.0 decitex. The non-woven fabric adopts 35gsm hot-air non-woven fabric. In this embodiment, latex is sprayed on the third layer, which is Vinnapas 192 product from Wacker Company.

[0115] The structure of the composite quick-seepage diversion material includes three layers, the weight of the quick-seepage diversion layer accounts for about 41.20% of the total weight of the product, the weight of the first fiber layer accounts for about 26.34% of the total weight of the product, and the weight of the second fiber layer The quantitative accounts for about 30.46% of the ...

Embodiment 3

[0126] The total weight of the composite quick-seepage diversion material of the present embodiment is about 140g / m2, and it is designed as a four-layer structure with a thickness of about 3.10mm. About 2-5mm. The bicomponent composite fiber is composed of a core layer and a skin layer, the core layer is polypropylene (PET), the skin layer is polyethylene (PE), the fiber length is about 3-6mm, and the fineness is about 1.7-3.0 decitex. The non-woven fabric adopts 55gsm hot-air non-woven fabric. In this embodiment, latex is sprayed on the outer surface of the third fiber layer, which is the Vinnapas 192 product from Wacker Company.

[0127] The structure of the composite quick-seepage diversion material includes four layers, the weight of the quick-seepage diversion layer accounts for about 39.29% of the total weight of the product, the weight of the first fiber layer accounts for about 16.07% of the total weight of the product, and the weight of the second fiber layer The wei...

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Abstract

The invention provides an on-line thermal composite rapid infiltration flow guide material and application thereof. The on-line thermal composite rapid infiltration flow guide material comprises a rapid infiltration flow guide layer and a dust-free paper layer which are in liquid communication with each other, the rapid infiltration flow guide layer is made of a porous non-woven material and accounts for 8-85% of the total mass of the composite rapid infiltration flow guide material; the dust-free paper layer comprises at least one fiber layer, the fiber layer is made of cellulosic fibers and bi-component composite fibers, and the mass of the dust-free paper layer accounts for 15-92% of the total mass of the composite flow guide material dust-free paper; the mass of the cellulose fibers in the fiber layer accounts for 5-95% of the total mass of the fiber layer, and the mass of the two-component composite fibers accounts for 5-95% of the total mass of the fiber layer; when the number of the fiber layers is two or more, the adjacent fiber layers are communicated through liquid. A sanitary napkin product prepared from the composite quick-seepage flow guide material is fluffy, soft, good in rebound resilience, low in production cost, good in overall performance and simple and novel in structure, not only has the functions of quick liquid flow guide, quick seepage, diffusion and temporary liquid storage, but also has excellent reverse seepage resistance.

Description

[0001] This application is a divisional application. The application number of the original application is 201710284171.5, and the application date is 2017.4.26. The patent name is an online thermal composite rapid permeation diversion material. technical field [0002] The invention relates to a fluffy and soft, good resilience, low production cost, good overall performance, simple and novel on-line thermal compound rapid permeation diversion material, which has the functions of rapid liquid diversion, rapid permeation, diffusion and temporary storage of liquid, and has A composite diversion material with excellent back seepage resistance performance, including the structure, production process and application of the composite rapid seepage diversion material. Background technique [0003] Dust-free paper (also known as puffed core material) is produced from wood pulp fibers with a length of several millimeters as the main raw material through air-laid and different consolid...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B32B9/04B32B9/02B32B3/24B32B27/12B32B27/36B32B27/30B32B27/32B32B37/10B32B37/12B32B38/16B32B38/06
CPCB32B3/266B32B5/02B32B9/047B32B27/12B32B37/1009B32B37/12B32B38/06B32B38/164B32B2307/726B32B2262/06B32B2262/0276B32B2262/0253B32B2262/0223B32B2255/02B32B2255/26B32B2555/02B32B2553/00D04H1/732B32B3/26B32B2262/062B32B7/12B32B2262/14B32B3/06B32B2307/72B32B2262/067B32B3/08B32B2307/54B32B2262/12B32B2262/023B32B7/04B32B5/26B32B3/30B32B2307/718B32B2262/0284B32B5/022B32B2250/20B32B7/022B32B2262/0261B32B2307/732B32B2255/28A61F13/537A61F13/15658B32B5/12B32B5/08B32B7/05B32B2250/02B32B2307/728D04H1/425D04H1/4291D04H1/435D04H1/5412A61F13/472A61F13/49D04H1/559D06N3/0011D06N3/0013D06N3/0036D06N3/0038D06N2201/042D06N2209/126D06N2211/24B32B37/06B32B2310/0454B32B2323/10B32B2323/04B32B2367/00B32B2037/243B32B2319/00B32B2309/10
Inventor 任继春王娟冯勋旺屈义俭马克·纽曼
Owner FITESA CHINA AIRLAID
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