CN219544225U - Water thorn composite non-woven fabric for floor wiping - Google Patents

Water thorn composite non-woven fabric for floor wiping Download PDF

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Publication number
CN219544225U
CN219544225U CN202223125527.6U CN202223125527U CN219544225U CN 219544225 U CN219544225 U CN 219544225U CN 202223125527 U CN202223125527 U CN 202223125527U CN 219544225 U CN219544225 U CN 219544225U
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China
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woven fabric
layer
concave
convex structure
fabric layer
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CN202223125527.6U
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Chinese (zh)
Inventor
杨永兴
杨力源
刘扬
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Jiangsu Hongzheng Yangrui New Material Co ltd
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Jiangsu Hongzheng Yangrui New Material Co ltd
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  • Nonwoven Fabrics (AREA)
  • Cleaning Implements For Floors, Carpets, Furniture, Walls, And The Like (AREA)

Abstract

The utility model discloses a spunlaced composite non-woven fabric for floor wiping, which comprises a spunlaced non-woven fabric layer with a concave-convex structure, a melt-blown non-woven fabric layer, a viscose fiber layer, a polylactic acid fiber layer and a terylene non-woven fabric layer; the concave-convex structure on the surface of the water-jet non-woven fabric layer comprises convex parts and concave parts; the melt-blown non-woven fabric layer is made of permanent electret melt-blown non-woven fabric; the surface of the fiber used by the water-jet non-woven fabric layer with the concave-convex structure is adhered with an antimicrobial agent. The surface layer adopts the non-woven fabrics that has concave-convex structure, can hold more dust to the concave-convex structure that forms can clear away the obstinate spot. And the used electret melt-blown non-woven fabric can adsorb tiny dust particles, and can be suitable for floor wiping in a dry state. Also, the antimicrobial agent is used, and when the floor is wiped in a wet state, the antimicrobial agent may remain on the floor until the antimicrobial effect.

Description

Water thorn composite non-woven fabric for floor wiping
Technical Field
The utility model relates to the technical field of non-woven fabrics, in particular to a spunlaced composite non-woven fabric for floor wiping.
Background
The application of the non-woven fabric is deep in various industries such as civil use, medical treatment, industry and the like, and can be used as a wiping material, a sanitary material, a lining material and the like. However, in the field of wiping materials, especially floor wiping, including both dry wiping and wet wiping, there is an inconsistent demand for nonwoven fabrics. When the floor is wiped, dust on the floor can be mainly adsorbed during dry wiping, and stains on the floor can be mainly removed during wet wiping. It can be seen that in wiping floors, it is necessary to use nonwoven fabrics of different structures and properties in both dry and wet wiping. How to prepare a water-jet composite non-woven fabric which is suitable for wiping floor in a dry state and also suitable for wiping floor in a wet state is a problem to be solved.
Disclosure of Invention
The utility model aims to provide a spunlaced composite non-woven fabric for floor wiping, which is applicable to the requirements of floor dry wiping and floor wet wiping.
In order to solve the technical problems, the aim of the utility model is realized as follows:
the utility model relates to a spunlaced composite non-woven fabric for floor wiping, which comprises a spunlaced non-woven fabric layer with a concave-convex structure, a melt-blown non-woven fabric layer, a viscose fiber layer, a polylactic acid fiber layer and a terylene non-woven fabric layer;
the concave-convex structure on the surface of the water-jet non-woven fabric layer comprises convex parts and concave parts; the melt-blown non-woven fabric layer is made of permanent electret melt-blown non-woven fabric; the surface of the fiber used by the water-jet non-woven fabric layer with the concave-convex structure is adhered with an antimicrobial agent.
The above-mentioned scheme is based on and is a preferable scheme of the above-mentioned scheme: the water-jet non-woven fabric layer with the concave-convex structure comprises a first fiber net layer, grid cloth and a second fiber net layer which are sequentially reinforced by water jet; the mesh cloth is made of heat shrinkage materials.
The above-mentioned scheme is based on and is a preferable scheme of the above-mentioned scheme: the polypropylene fiber used in the melt-blown non-woven fabric layer is provided with permanent electret master batch.
The above-mentioned scheme is based on and is a preferable scheme of the above-mentioned scheme: the polylactic acid fiber used by the polylactic acid fiber layer has a special-shaped cross section, and an antimicrobial agent is attached to the surface of the polylactic acid fiber; the surface of the viscose fiber in the viscose fiber layer is adhered with an antimicrobial agent.
The above-mentioned scheme is based on and is a preferable scheme of the above-mentioned scheme: the antimicrobial agent is a free quaternary ammonium organosilane compound, polyhexamethylene biguanide, or polyglucosamine.
The beneficial effects of the utility model are as follows: according to the spunlaced composite non-woven fabric for floor wiping, disclosed by the utility model, the non-woven fabric with the concave-convex structure is adopted as the surface layer, so that more dust can be contained, and the formed concave-convex structure can remove stubborn stains. And the used electret melt-blown non-woven fabric can adsorb tiny dust particles, and can be suitable for floor wiping in a dry state. Also, the antimicrobial agent is used, and when the floor is wiped in a wet state, the antimicrobial agent may remain on the floor until the antimicrobial effect.
Drawings
FIG. 1 is a schematic view showing the structure of a spunlaced composite nonwoven fabric for floor wiping according to an embodiment;
fig. 2 is a schematic structural view of a spunlaced nonwoven fabric layer with a concave-convex structure according to an embodiment;
fig. 3 is a schematic structural view of a spunlaced composite nonwoven fabric for floor wiping according to a second embodiment.
The labels in the figures are illustrated below: 1-a water-jet nonwoven fabric with a concave-convex structure; 2-melt-blown nonwoven layer; 3-a viscose layer 3; a 4-polylactic acid fiber layer; 5-terylene non-woven fabric layer; 11-web layer one; 12-mesh cloth; 13-fibrous web layer two; 14-a convex part; 15-a convex part; 6-antibacterial fiber layer.
Detailed Description
The utility model will be further described with reference to the drawings and specific examples.
Example 1
The present embodiment will be described in detail with reference to fig. 1 and 2. The spunlaced composite non-woven fabric for floor wiping comprises a spunlaced non-woven fabric layer 1 with a concave-convex structure, a melt-blown non-woven fabric layer 2, a viscose fiber layer 3, a polylactic acid fiber layer 4 and a terylene non-woven fabric layer 5.
The concave-convex structure of the surface of the concave-convex structure spunlaced non-woven fabric layer 1 comprises convex parts 14 and concave parts 15. The provision of the convex portion 14 and the concave portion 15 can improve the accommodation amount of dust and dirt at the time of wiping.
Further, the water-jet non-woven fabric layer 1 with the concave-convex structure comprises a first fiber net layer 11, a grid cloth 12 and a second fiber net layer 13 which are sequentially reinforced by water jet; the mesh cloth 2 is made of heat-shrinkable material. Specifically, the fibers constituting the first fiber web layer 11 are ultrafine fibers, and the fibers constituting the second fiber web layer 13 are polyester fibers. The fibers used were 38mm in length and 1.56D in fineness. The mesh 12 is made of nylon. In the water-jet non-woven fabric layer 1 with the concave-convex structure, nylon mesh cloth 12 is arranged between a first fiber mesh layer 11 and a second fiber mesh layer 13, and then the raw fabric is formed by water-jet reinforcement and compounding. The grey cloth is further treated at 150 ℃ to shrink the nylon mesh cloth, so that the distance between the highest point of the convex part 4 and the lowest point of the concave part 5 is 5mm. The formed concave-convex structure can be used as a wiping material to contain more dust. And the grid cloth can strengthen the strength of the water-jet non-woven fabric layer 1 with the concave-convex structure and strengthen the nylon reinforcing ribs, so that stubborn stains can be better removed in the use process.
Further, an antimicrobial agent is attached to the surface of the fibers used in the nonwoven fabric layer 1 having the uneven structure. The prepared grey cloth is soaked in the solution containing the antimicrobial agent before being heated, and the antimicrobial agent is attached to the surface of the fiber after being dried. When rubbed in a wet state, the antimicrobial agent remains on the floor and can reach an antimicrobial effect.
Further, the antimicrobial agent is a free quaternary ammonium organosilane compound, polyhexamethylene biguanide, or polyglucosamine. In this example selected from quaternary ammonium organosilane compounds.
Further, the meltblown nonwoven layer 2 is a permanent electret meltblown nonwoven. The permanent electret melt-spun non-woven fabric is prepared by mixing permanent electret master batch with polypropylene slices, spraying the mixture through melt-spun equipment, and setting a magnetic field between a spinning nozzle and a receiving device. The permanent electret used in the permanent electret master batch is nano tourmaline powder, nano titanium dioxide and/or nano silicon dioxide.
Further, the polylactic acid fiber used in the polylactic acid fiber layer 4 has a special-shaped cross section, and an antimicrobial agent is attached to the surface of the polylactic acid fiber; the surface of the viscose fiber in the viscose fiber layer 3 is adhered with an antimicrobial agent.
Example two
The spunlaced composite nonwoven fabric for floor wiping according to the present embodiment is different from the first embodiment in that an antibacterial fiber layer 6, specifically, a spunlaced nonwoven fabric with an antibacterial agent attached to the surface, is provided between the polylactic acid fiber layer 4 and the polyester nonwoven fabric layer 5.
The foregoing describes in detail preferred embodiments of the present utility model. It should be understood that numerous modifications and variations can be made in accordance with the concepts of the utility model by one of ordinary skill in the art without undue burden. Therefore, all technical solutions which can be obtained by logic analysis, reasoning or limited experiments based on the prior art by the person skilled in the art according to the inventive concept shall be within the scope of protection defined by the claims.

Claims (4)

1. The spunlaced composite non-woven fabric for floor wiping is characterized by comprising a spunlaced non-woven fabric layer (1) with a concave-convex structure, a melt-blown non-woven fabric layer (2), a viscose fiber layer (3), a polylactic acid fiber layer (4) and a terylene non-woven fabric layer (5);
the concave-convex structure on the surface of the concave-convex structure spunlaced non-woven fabric layer (1) comprises convex parts (14) and concave parts (15); the melt-blown non-woven fabric layer (2) is made of permanent electret melt-blown non-woven fabric; the surface of the fiber used by the water-jet non-woven fabric layer (1) with the concave-convex structure is adhered with an antimicrobial agent.
2. The spunlaced composite non-woven fabric for floor wiping according to claim 1, wherein the spunlaced non-woven fabric layer (1) with the concave-convex structure comprises a fiber web layer I (11), a mesh cloth (12) and a fiber web layer II (13) which are reinforced by spunlaces in sequence; the mesh cloth (12) is made of heat-shrinkable materials.
3. The spunlaced composite nonwoven fabric for floor wiping according to claim 1, wherein the polylactic acid fiber layer (4) uses polylactic acid fibers with special-shaped cross sections, and the surface is adhered with an antimicrobial agent; the surface of the viscose fiber in the viscose fiber layer (3) is attached with an antimicrobial agent.
4. A hydroentangled composite nonwoven for floor wiping according to any one of claims 1 to 3, characterized in that said antimicrobial agent is a free quaternary ammonium organosilane compound, polyhexamethylene biguanide or polyglucosamine.
CN202223125527.6U 2022-11-23 2022-11-23 Water thorn composite non-woven fabric for floor wiping Active CN219544225U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223125527.6U CN219544225U (en) 2022-11-23 2022-11-23 Water thorn composite non-woven fabric for floor wiping

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223125527.6U CN219544225U (en) 2022-11-23 2022-11-23 Water thorn composite non-woven fabric for floor wiping

Publications (1)

Publication Number Publication Date
CN219544225U true CN219544225U (en) 2023-08-18

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223125527.6U Active CN219544225U (en) 2022-11-23 2022-11-23 Water thorn composite non-woven fabric for floor wiping

Country Status (1)

Country Link
CN (1) CN219544225U (en)

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