CN215970391U - High-elasticity antibacterial composite warp-knitted fabric - Google Patents

High-elasticity antibacterial composite warp-knitted fabric Download PDF

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Publication number
CN215970391U
CN215970391U CN202122098980.1U CN202122098980U CN215970391U CN 215970391 U CN215970391 U CN 215970391U CN 202122098980 U CN202122098980 U CN 202122098980U CN 215970391 U CN215970391 U CN 215970391U
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surface layer
layer
top surface
elastic
rope
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安杨欣
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Shishi Yinglun Weideng Clothing Co ltd
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Shishi Yinglun Weideng Clothing Co ltd
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Abstract

The utility model discloses a high-elasticity antibacterial composite warp-knitted fabric, which belongs to the technical field of fabrics and comprises a top surface layer and a bottom surface layer parallel to the top surface layer, wherein the top surface layer is formed by weaving blended yarns, ventilation windows are uniformly woven on the surface of the top surface layer in an array manner, miniature ventilation holes are uniformly formed in the ventilation window area of the top surface layer, the top surface layer and the bottom surface layer have the same structure and the same weaving manner, and an elastic layer for elastic buffering is embedded between the top surface layer and the bottom surface layer; the elastic layer comprises a connecting weaving rope which is woven and embedded between the top surface layer and the bottom surface layer, and the connecting weaving rope is uniformly surrounded to form an equilateral hexagon; the novel fabric can improve the elastic performance of the fabric, meanwhile, the structural strength of the fabric cannot be reduced, the fabric can obtain certain sterilization performance, and the practicability of the fabric is improved.

Description

High-elasticity antibacterial composite warp-knitted fabric
Technical Field
The utility model relates to the technical field of fabrics, in particular to a high-elasticity antibacterial composite warp-knitted fabric.
Background
Weaving processes include weaving (also known as tatting), knitting, braiding, and non-weaving, wherein knitting is further classified into warp knitting and weft knitting. Warp knitting is a textile technology belonging to the field of knitting. Knitted fabrics are formed by simultaneously knitting one or more sets of parallel aligned yarns on all the working needles of a warp feed machine, a process known as warp knitting, and a knitted fabric known as warp knit.
However, the conventional warp-knitted fabric has poor elasticity when in use, and if the elasticity is simply improved, the structural strength of the fabric is reduced, and meanwhile, the common warp-knitted fabric has no antibacterial property, is in contact with the skin of a user for a long time, and is easy to cause the phenomena of skin itch and the like of the user.
SUMMERY OF THE UTILITY MODEL
1. Technical problem to be solved
Aiming at the problems in the prior art, the utility model aims to provide a high-elasticity antibacterial composite warp-knitted fabric, which can improve the elasticity of the fabric, does not reduce the structural strength of the fabric, ensures the skin surface health of a user and improves the practicability of the fabric, and can also ensure the antibacterial performance of the fabric.
2. Technical scheme
In order to solve the above problems, the present invention adopts the following technical solutions.
The high-elasticity antibacterial composite warp-knitted fabric comprises a top surface layer and a bottom surface layer parallel to the top surface layer, wherein the top surface layer is formed by knitting blended yarns, ventilation windows are uniformly woven on the surface of the top surface layer in an array mode, miniature ventilation holes are uniformly formed in the area, of the ventilation windows, of the top surface layer, the top surface layer is consistent with the surface of the bottom surface layer in structure, the knitting modes are the same, and an elastic layer used for elastic buffering is embedded between the top surface layer and the bottom surface layer.
Further, the elastic layer including weave the embedding in the top surface layer with the rope is woven in the connection between the bottom surface layer, the connection is woven the rope and is evenly encircleed and be equilateral hexagon, the connection is woven the rope and is buckled apex angle department and be provided with the bounce ball, the bounce ball with the connection is woven the rope combination and is netted, and extends the top surface layer with between the bottom surface layer.
Furthermore, the ventilation window is in an equilateral hexagon shape, and the shape and size of the ventilation window are consistent with the structure and size of the combined shape of the connecting braided rope.
Furthermore, the elastic ball is a hollow ball body, a polyester fiber layer is woven on the surface of the elastic ball, and micro holes are uniformly formed in the surface of the elastic ball.
Further, the top surface layer with be provided with the cotton layer that disinfects between the bottom surface layer, the cotton layer top bottom surface that disinfects with the top surface layer with be provided with the hot melt between the bottom surface layer and paste the layer, the cotton layer that disinfects is the preparation of cotton lun material and forms, the cotton in situ portion that disinfects evenly fills there is antibiotic silver ion.
Furthermore, the cotton layer that disinfects is hexagonal shape, the cotton layer that disinfects imbed in connect the center department of weaving rope combination shape, the cotton layer side that disinfects with connect and weave the rope and weave in an organic whole.
Furthermore, the sterilizing cotton layer and the ventilation window are alternately arranged between the net structures formed by combining the elastic balls and the connecting braided ropes.
3. Advantageous effects
Compared with the prior art, the utility model has the advantages that:
(1) this scheme is provided with miniature bleeder vent through being provided with on top surface layer and bottom surface layer surface, and the gas permeability of multiplicable this surface fabric makes inside and outside gas circulation to shuttle between top surface layer and bottom surface layer simultaneously, and then the accessible cotton in situ portion's antibiotic silver ion that disinfects kills except that the germ in the air of coming and going improves the bactericidal performance of this surface fabric, guarantees the health when the user uses.
(2) This scheme is through being provided with the elastic layer between top surface layer and bottom surface layer, form hexagon network structure, when increasing the gas permeability, can not reduce the tensile ability of dragging of this surface fabric, structural strength can not reduce, all be provided with the bounce-ball in the junction node simultaneously, can make the elastic deformation take place receiving the compression, and rebound after the compressive force disappears, the high elasticity performance of this surface fabric has been guaranteed, the cotton layer of cooperation sterilization simultaneously, can provide complete bearing structure to top surface layer and bottom surface layer, avoid top surface layer and bottom surface layer to take place the part and cave in, improve the structural strength of this surface fabric, and then can improve its elasticity performance when not reducing this surface fabric structural strength.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic view of the structure of the elastic layer of the present invention;
FIG. 3 is a side cross-sectional structural view of the present invention;
fig. 4 is a schematic view of the bottom surface structure of the top layer of the present invention.
The reference numbers in the figures illustrate:
1. a top surface layer; 2. a ventilation window; 3. micro air holes; 4. a resilient ball; 5. connecting the braided rope; 6. a bottom surface layer; 7. and (5) a sterilizing cotton layer.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention; it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and all other embodiments obtained by those skilled in the art without any inventive work are within the scope of the present invention.
Example 1:
referring to fig. 1-4, a high-elasticity antibacterial composite warp-knitted fabric comprises a top surface layer 1 and a bottom surface layer 6 parallel to the top surface layer 1, wherein the top surface layer 1 is formed by weaving blended yarns, vent windows 2 are uniformly woven on the surface of the top surface layer 1 in an array manner, micro vent holes 3 are uniformly formed in the vent window 2 area of the top surface layer 1, the surface structures of the top surface layer 1 and the bottom surface layer 6 are consistent, the weaving manner is the same, and an elastic layer for elastic buffering is embedded between the top surface layer 1 and the bottom surface layer 6.
Referring to fig. 2, the elastic layer is including weaving the connection of embedding between top surface 1 and bottom surface 6 and weaving rope 5, and it evenly encircles and is equilateral hexagon to connect to weave rope 5, and the connection is woven rope 5 and is buckled apex angle department and be provided with bounce ball 4, and bounce ball 4 and connection are woven the combination of rope 5 and are netted, and extend between top surface 1 and bottom surface 6, and hexagon network structure can promote the device's anti-tear ability, and then promotes structural strength.
Referring to fig. 2, the ventilation window 2 is an equilateral hexagon, and the shape and size of the ventilation window 2 are consistent with the structure and size of the combined shape of the connecting braided rope 5, so that the limited area of the miniature ventilation holes 3 is coincided with the hollow area of the combined shape of the braided rope 5, and the ventilation performance of the device can be greatly improved.
Referring to fig. 3, the elastic ball 4 is a hollow ball body, the surface of the elastic ball 4 is woven with a polyester fiber layer to enhance the structural strength and the wear resistance of the elastic ball 4, and the surface of the elastic ball 4 is uniformly provided with micro holes, so that the elastic ball 4 can exhaust gas to shrink when receiving a compression force, and absorb the gas to recover when losing the compression force, thereby improving the elastic performance of the device.
Referring to fig. 2, be provided with the cotton layer 7 that disinfects between top surface layer 1 and the bottom surface layer 6, the cotton layer 7 that disinfects top bottom surface and top surface layer 1 and bottom surface layer 6 between be provided with the hot melt adhesive layer, make the stable connection of the cotton layer 7 that disinfects between top surface layer 1 and bottom surface layer 6 through the hot melt adhesive layer, the cotton layer 7 that disinfects is made for cotton silk fiber material to form, the cotton layer 7 that disinfects inside even packing has antibiotic silver ion, utilizes antibiotic silver ion bactericidal performance to improve the device's bactericidal performance.
Referring to fig. 2, the sterilizing cotton layer 7 is hexagonal, the sterilizing cotton layer 7 is embedded in the center of the combined shape of the connecting weaving rope 5, the side edge of the sterilizing cotton layer 7 is woven with the connecting weaving rope 5 into a whole, and the sterilizing cotton layer can be matched with the elastic ball 4 to provide a complete supporting structure for the top surface layer 1 and the bottom surface layer 6, so that the top surface layer 1 and the bottom surface layer 6 are prevented from local collapse, and the structural strength of the fabric is improved.
Referring to fig. 2, cotton layer 7 and transom 2 disinfect set up in turn between the network structure that the bouncy ball 4 and connection weaving rope 5 made up, can avoid the miniature bleeder vent 3 of hot melt adhesive layer shutoff for cotton layer 7 disinfects is higher with top surface course 1 and bottom surface course 6 joint strength, and the device's overall structure is more stable, can make things convenient for gaseous crisscross flow simultaneously, guarantees the bactericidal performance full play of cotton layer 7 disinfects.
The working principle is as follows: according to the utility model, the micro air holes 3 are formed in the surfaces of the top surface layer 1 and the bottom surface layer 6, so that the air permeability of the fabric can be increased, and meanwhile, internal and external air circulates between the top surface layer 1 and the bottom surface layer 6, so that germs in the air can be killed and removed through antibacterial silver ions in the bactericidal cotton layer 7, the bactericidal performance of the fabric is improved, and the health of a user in use is ensured;
secondly, through being provided with the elastic layer between top surface layer 1 and bottom surface layer 6, form hexagon network structure, when increasing the gas permeability, can not reduce the tensile ability of tearing of this surface fabric, structural strength can not reduce, all be provided with bounce ball 4 at the connected node simultaneously, can make the elastic deformation take place receiving the compression, and rebound after the compressive force disappears, the high elastic property of this surface fabric has been guaranteed, the cotton layer 7 of cooperation sterilization simultaneously, can provide complete bearing structure to top surface layer 1 and bottom surface layer 6, avoid top surface layer 1 and bottom surface layer 6 to take place the local collapse, improve the structural strength of this surface fabric.
The foregoing is only a preferred embodiment of the present invention; the scope of the utility model is not limited thereto. Any person skilled in the art should be able to cover the technical scope of the present invention by equivalent or modified solutions and modifications within the technical scope of the present invention.

Claims (7)

1. The utility model provides a compound warp knitting surface fabric of antibiotic of high elasticity, includes top surface layer (1) and bottom surface layer (6) that parallels with top surface layer (1), its characterized in that: the top surface layer (1) is woven for blended yarn, the ventilation window (2) is woven to the even array in top surface layer (1) surface, top surface layer (1) is in miniature bleeder vent (3) have evenly been seted up in ventilation window (2) region, top surface layer (1) with bottom surface layer (6) surface texture is unanimous, and weaves the mode the same, top surface layer (1) with it has the elastic layer that is used for elastic buffer to imbed between bottom surface layer (6).
2. The high-elasticity antibacterial composite warp-knitted fabric according to claim 1, characterized in that: the elastic layer including weave the embedding in top surface layer (1) with rope (5) are woven in connection between bottom surface layer (6), it evenly encircles and is equilateral hexagon to connect to weave rope (5), it buckles apex angle department and is provided with bounce ball (4) to connect to weave rope (5), bounce ball (4) with it is netted to connect to weave rope (5) combination, and extends top surface layer (1) with between bottom surface layer (6).
3. The high-elasticity antibacterial composite warp-knitted fabric according to claim 2, characterized in that: the ventilation window (2) is an equilateral hexagon, and the shape and size of the ventilation window (2) are consistent with the structure and size of the combined shape of the connecting weaving rope (5).
4. The high-elasticity antibacterial composite warp-knitted fabric according to claim 3, characterized in that: the elastic ball (4) is a hollow ball body, a polyester fiber layer is woven on the surface of the elastic ball (4), and micro holes are uniformly formed in the surface of the elastic ball (4).
5. The high-elasticity antibacterial composite warp-knitted fabric according to claim 4, characterized in that: top surface layer (1) with be provided with the cotton layer (7) of disinfecting between bottom surface layer (6), disinfect cotton layer (7) top bottom surface with top surface layer (1) with be provided with the hot melt between bottom surface layer (6) and paste the layer, disinfect cotton layer (7) and form for the preparation of cotton silk fabric material, the inside even packing of cotton layer (7) of disinfecting has antibiotic silver ion.
6. The high-elasticity antibacterial composite warp-knitted fabric according to claim 5, characterized in that: the sterilizing cotton layer (7) is hexagonal, the sterilizing cotton layer (7) is embedded into the center of the combined shape of the connecting weaving rope (5), and the side edge of the sterilizing cotton layer (7) is connected with the weaving rope (5) to weave integrally.
7. The high-elasticity antibacterial composite warp-knitted fabric according to claim 5, characterized in that: the sterilizing cotton layer (7) and the ventilation window (2) are alternately arranged between the net structures formed by combining the elastic ball (4) and the connecting weaving rope (5).
CN202122098980.1U 2021-09-02 2021-09-02 High-elasticity antibacterial composite warp-knitted fabric Active CN215970391U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122098980.1U CN215970391U (en) 2021-09-02 2021-09-02 High-elasticity antibacterial composite warp-knitted fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122098980.1U CN215970391U (en) 2021-09-02 2021-09-02 High-elasticity antibacterial composite warp-knitted fabric

Publications (1)

Publication Number Publication Date
CN215970391U true CN215970391U (en) 2022-03-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122098980.1U Active CN215970391U (en) 2021-09-02 2021-09-02 High-elasticity antibacterial composite warp-knitted fabric

Country Status (1)

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CN (1) CN215970391U (en)

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