Cool antibacterial spunlace non-woven fabric

By using a spunlace composite structure consisting of a cooling fiber layer, a mosquito-repellent fiber layer, a mesh fabric, and a bamboo fiber layer, the problem of overheating and mosquito bites in spunlace nonwoven fabrics during summer use is solved, providing cooling, mosquito-repellent, and antibacterial properties, and improving user comfort and strength.

CN223672008UActive Publication Date: 2025-12-16JIANGSU HONG ZHENG YANG RUI NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202423320007.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-16
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing spunlace nonwoven fabrics tend to get hot during summer use and lack mosquito repellency, making it difficult to provide a cooling sensation and antibacterial properties.

Method used

A spunlace composite structure consisting of a cooling fiber layer, a mosquito-repellent fiber layer, a mesh fabric, and a bamboo fiber layer is used, combined with a water-repellent nonwoven fabric layer and a PTFE microporous membrane to form a cooling and antibacterial spunlace nonwoven fabric.

Benefits of technology

It achieves a cooling sensation upon contact during summer use, improving comfort, and also has insect-repellent and antibacterial effects, while enhancing the strength and waterproof performance of the material.

✦ Generated by Eureka AI based on patent content.

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Abstract

The cool antibacterial spunlace non-woven fabric comprises a water-repellent non-woven fabric layer and a spunlace composite non-woven fabric layer which are bonded with each other, the spunlace composite non-woven fabric layer comprises a cool fiber layer, an anti-mosquito fiber layer, gridding cloth and a bamboo fiber layer which are compounded through spunlace; fibers used by the cool-feeling fiber layer are cool-feeling polyethylene fibers, ice ammonia fibers, mint cool-feeling fibers, wormwood cool-feeling fibers or seaweed cool-feeling fibers. According to the cool-feeling antibacterial spunlace non-woven fabric, the cool-feeling fiber layer enables the non-woven fabric to have a contact cool feeling when the non-woven fabric is used as a cushion, and the comfort of people when the non-woven fabric is used in summer is improved. In addition, the used anti-mosquito fiber layer has an anti-mosquito effect, the used gridding cloth has the effect of improving the strength, and the bamboo fiber has a certain antibacterial effect.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a cool antibacterial spunlace non -woven cloth belongs to spunlace non -woven cloth technical field. BACKGROUND

[0002] With the improvement of people's living standards, people are also very yearn for nature, in the weekend or holiday people usually will take family to the park or grassland to play. Usually will also on the mat is laid on the grass. But the conventional mat volume is very big. Spunlace non -woven cloth fiber raw material source is extensive, can be polyester, chinlon, propylene, viscose fiber, chitin fiber, superfine fiber, tencel, silk, bamboo fiber, wood pulp fiber, seaweed fiber etc. Spunlace non -woven cloth has good air permeability, soft hand feeling, puffy, high hygroscopicity etc. If non -woven cloth is prepared into disposable mat, due to non -woven cloth in after folding volume will be little. But in summer people use mat, mat also very hot, even in the tent, and there are many mosquitoes on the grassland. How to prepare a cool antibacterial spunlace non -woven cloth, can provide contact cool feeling, and also has the effect of preventing mosquitoes, become the problem to be solved. SUMMARY

[0003] The utility model aims at providing a cool antibacterial spunlace non -woven cloth, has the effect of contact cool feeling and preventing mosquitoes.

[0004] To solve the above -mentioned technical problem, the utility model's purpose is realized like this:

[0005] A kind of cool antibacterial spunlace non -woven cloth related by the utility model, including water repellent non -woven cloth layer and spunlace composite non -woven cloth layer that adhere to each other;The spunlace composite non -woven cloth layer includes the cool fiber layer of spunlace composite, mosquito repellent fiber layer, mesh cloth and bamboo fiber layer;The fiber used in the cool fiber layer is cool polyethylene fiber, ice ammonia fiber, mint cool fiber, wormwood cool fiber or seaweed cool fiber.

[0006] On the basis of the above scheme and as preferred scheme of the above scheme: the water repellent non -woven cloth layer is water repellent polyester spunlace non -woven cloth.

[0007] On the basis of the above scheme and as preferred scheme of the above scheme: the fiber used in the mosquito repellent fiber layer is acorus calamus fiber or e-scent regenerated cellulose fiber.

[0008] On the basis of the above scheme and as preferred scheme of the above scheme: the mesh cloth is woven by nylon 6 monofilament with diameter of 0.12mm, and has the grid with side length of 2-3cm.

[0009] As a preferred aspect of the above aspect and based on the above aspect: the water repellent nonwoven fabric layer is compounded with a PTFE microporous membrane on a side surface away from the composite nonwoven fabric layer.

[0010] The cooling antibacterial spunlace nonwoven fabric of the utility model has the following beneficial effects: the cooling fiber layer used in the cooling antibacterial spunlace nonwoven fabric makes the nonwoven fabric have a cooling touch when used as a cushion, thereby improving the comfort of people when used in summer. The mosquito-repellent fiber layer used has a mosquito-repellent effect, the mesh cloth used has the effect of improving the strength, and the bamboo fiber has a certain antibacterial effect. BRIEF DESCRIPTION OF DRAWINGS

[0011] Figure 1 is a structure diagram of the cooling antibacterial spunlace nonwoven fabric related to example one;

[0012] Figure 2 is a structure diagram of the cooling antibacterial spunlace nonwoven fabric related to example two.

[0013] The signs in the drawing are explained as follows: 1-cooling fiber layer; 2-mosquito-repellent fiber layer; 3-mesh cloth; 4-bamboo fiber layer; 5-water repellent nonwoven fabric layer; 6-PTFE microporous membrane. DETAILED DESCRIPTION

[0014] The utility model will be further explained in combination with the drawings and specific examples.

[0015] Example one

[0016] In combination with Figure 1 , the example is explained in detail. The cooling antibacterial spunlace nonwoven fabric related to the example comprises a water repellent nonwoven fabric layer 5 and a spunlace composite nonwoven fabric layer which are bonded; the spunlace composite nonwoven fabric layer comprises a cooling fiber layer 1, a mosquito-repellent fiber layer 2, a mesh cloth 3 and a bamboo fiber layer 4 which are spunlaced; the fiber used in the cooling fiber layer 1 is cooling polyethylene fiber, ice ammonia fiber, mint cooling fiber, wormwood cooling fiber or seaweed cooling fiber. Cooling polyethylene fiber is used in the example. The cooling fiber layer 1 is provided with a cooling touch, thereby improving the comfort of the nonwoven fabric when used as a cushion. The water repellent nonwoven fabric layer 5 is compounded with the spunlace composite nonwoven fabric layer on one side of the bamboo fiber layer 4 in the spunlace composite nonwoven fabric layer, specifically through a hot melt adhesive film.

[0017] Further, the water repellent nonwoven fabric layer 5 is a water repellent polyester spunlace nonwoven fabric, specifically a polyester spunlace nonwoven fabric is dipped in a water repellent finishing agent solution, thereby having a good water repellent effect.

[0018] Further, the fiber used in the anti-mosquito fiber layer 2 is cattail fiber or Aixiang regenerated cellulose fiber. In this embodiment, cattail fiber is selected, and specifically, after cationic modification of cellulose fiber, natural cattail fiber effective components are added in the processing process to endow the cellulose fiber with anti-mosquito and antibacterial functions.

[0019] Further, the mesh cloth 3 is woven by nylon 6 monofilament with a diameter of 0.12 mm, and has a mesh with a side length of 2-3 cm.

[0020] Embodiment two

[0021] Combination Figure 2 The present embodiment is described in detail. The cool antibacterial spunlace nonwoven fabric involved in the present embodiment is different from that in Embodiment one in that the water-repellent nonwoven fabric layer 5 is compounded with a PTFE microporous film 6 on the side surface away from the spunlace composite nonwoven fabric layer, and has good waterproof effect.

[0022] The preferred embodiments of the present application are described in detail above. It should be understood that those skilled in the art can make many modifications and changes without creative labor according to the concept of the present application. Therefore, any technical solution obtained by logical analysis, reasoning or limited experiment on the basis of the existing technology according to the concept of the present application shall be within the protection scope defined by the claims.

Claims

1. A cool-feeling antibacterial spunlace nonwoven fabric, characterized by, The application relates to a water-repellent non-woven fabric, which comprises a water-repellent non-woven fabric layer (5) and a water-jet composite non-woven fabric layer; the water-jet composite non-woven fabric layer comprises a cool-feeling fiber layer (1), a mosquito-repellent fiber layer (2), a mesh cloth (3) and a bamboo fiber layer (4) which are water-jet compounded; the cool-feeling fiber layer (1) uses cool-feeling polyethylene fiber, ice ammonia fiber, mint cool-feeling fiber, wormwood cool-feeling fiber or seaweed cool-feeling fiber.

2. The cool and antibacterial spunlace nonwoven fabric according to claim 1, characterized in that, The water-repellent non-woven fabric layer (5) is water-repellent polyester water-jet non-woven fabric.

3. The cool and antibacterial spunlace nonwoven fabric according to claim 1, characterized in that, The mosquito-repellent fiber layer (2) uses cattail fiber or ai-regenerated cellulose fiber.

4. The cool and antibacterial spunlace nonwoven fabric according to claim 1, characterized in that, The mesh cloth (3) is woven by nylon 6 monofilament with a diameter of 0.12 mm and has a mesh with a side length of 2-3 cm.

5. The cool and antibacterial spunlace nonwoven fabric according to any one of claims 1 to 4, characterized in that, The water-repellent non-woven fabric layer (5) is compounded with a PTFE microporous film (6) on the side surface away from the water-jet composite non-woven fabric layer.