An integrated seamless fabric with mixed artificial plush and a fabric production process thereof

By using adhesive components and self-healing adhesives, multiple sections of fabric are seamlessly spliced ​​together, solving the problems of material waste and insufficient aesthetics in existing technologies, and realizing the production of high-quality multi-color artificial plush fabrics.

CN117799238BActive Publication Date: 2025-11-28NINGBO HONG WAN TEXTILE PROD CO LTD
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Patent Information

Application Number
CN202211539060.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2022-09-25
Filing Date
2022-12-01
Publication Date
2025-11-28
Estimated Expiration
2042-12-01

AI Technical Summary

Technical Problem

Existing technologies result in significant material waste after cutting when producing plush toys, and the seams are noticeable and the toys have a layered appearance, leading to insufficient overall integrity and aesthetics.

Method used

Multiple sections of fabric are seamlessly joined using adhesive components. Adhesive mesh and fabric adhesive are used to bond adjacent sections of fabric together, and self-healing adhesive is used to improve the bonding effect, replacing the traditional sewing process.

Benefits of technology

Seamless splicing of multi-colored artificial plush fabrics has been achieved, improving the overall integrity and aesthetics, reducing raw material waste, and enhancing the durability and beauty of the fabric.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a seamless integrated fabric with mixed artificial plush and a fabric production process thereof, and at least comprises a first partition fabric and a second partition fabric, each of which has an inner lining layer and a plush layer woven on the inner lining layer, and different kinds of plush layers are adopted in adjacent partition fabrics; the adjacent partition fabrics are spliced into an integrated whole through a gluing assembly; wherein the gluing assembly comprises a mesh cloth and cloth glue; a part of the mesh cloth is inserted into the inner lining layer of one of the partition fabrics, and another part of the mesh cloth is inserted into the inner lining layer of the other partition fabric; the cloth glue is filled between the inner lining layer and the mesh cloth to bond the adjacent partition fabrics together. The application seamlessly splices multiple partition fabrics through the gluing assembly, and the multiple-color artificial plush fabric is obtained at the factory, which is convenient for subsequent common selection and processing, and the integrity and aesthetic appearance of the seamless fabric are greatly improved from the perspective of consumers.
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Description

TECHNICAL FIELD

[0001] The present application relates to the product technical field of artificial plush fabric, and particularly relates to an integrated seamless fabric with mixed artificial plush and a fabric production process thereof. BACKGROUND

[0002] The pile fabric with cloth surface and resembling fur is commonly known as plush. The front side is covered with dense and uniform pile fibers, and the plush surface is full and flat, and is rich in luster and elasticity, and has good thermal insulation performance. The weight is 430-850 g / m2, and the pile height is generally 3-20 mm. The plush is mainly used for manufacturing overcoats, linings, collars, winter hats, plush toys, and can also be used for indoor decoration and industry. The woven plush is interwoven by three groups of yarns. The ground warp and ground weft are made of cotton yarns, and the pile warp is made of worsted wool yarn or chemical fiber yarn. The two groups of cotton yarns are interwoven in plain weave to form upper and lower two pieces of base cloth, and the pile yarn is connected between the upper and lower two pieces of base cloth to weave a double-layer plush base, and the structure is shown in the drawing. The double-layer plush base is cut open by a knife blade of a plush cutting machine to form two pieces of plush base cloth, and then the pile yarns are teased into fluffy single fibers by a plush teasing machine, and the surface of the pile fibers is trimmed by a trimming machine to form the single-color plush. The single-color plush can be processed by screen printing, steaming and fixing color, washing and desizing, dehydration and drying to form printed plush with various fur patterns. By using the characteristics of different thicknesses, different cross sections and different shrinkage properties of chemical fibers, various fur type or lamb skin type plushes with long and short pile fibers are manufactured by adding processes such as heat shrinkage, ironing or rolling, and brushing.

[0003] The plush fabric is divided into natural plush and artificial plush.

[0004] Among them, the natural colored plush is a part of the variety of wool fibers containing natural color, and the color capsule has a dense and stable envelope. When the hair follicle splits, the "dermal layer" cells of the wool fiber grow into the hair follicle, which has strong anti-bleaching ability and high color fastness to various effects. The original natural colored fur in nature includes "green fur" and "purple fur" in "goat fur", yellow-brown "camel fur", coffee "yak fur", light brown and pink "alpaca fur", and light coffee "Tibetan antelope fur". In recent years, by using transgenic technology, a part of the original white fur animals can also grow colored fur, such as brown-yellow and purple-red sheep fur, yellow, red-brown, light green rabbit fur, etc.

[0005] However, the natural plush is taken from animals, which has obvious scarcity and will harm animals and nature. Therefore, under the continuous research, the artificial plush emerges as the times require.

[0006] Artificial fur is a variety of viscose fibers in the category of chemical fibers (i.e. natural cellulose as raw material production). Appearance similar to animal fur long pile type fabric. Pile two layers, the outer layer is bright straight bristles, the inner layer is fine soft short pile. Artificial fur often used in coats, clothing lining, hats, collars, toys, mattresses, interior decorations and carpets, etc. Viscose artificial fur is pure spinning and weaving, good moisture absorption, comfortable to wear, bright colors, and low price. Artificial fur fabric used for clothing is generally resin finished. Its disadvantages are not resistant to friction, easy to pilling, poor washing fastness, and softening after washing several times, easy to wrinkle. Soak in cold water for 30 minutes before washing, and gently rub in the basin during washing, or brush with a soft brush on a clean board. No matter which method, gently rub and brush to avoid damage to the fabric or resin shedding. When washing, neutral soap or laundry detergent can be selected, and the washing temperature should be low. Avoid sunning and baking, and dry in a well-ventilated place.

[0007] In order to improve the comfort and beauty of artificial fur fabric after making clothes, different fur fabrics are often combined together, and the method used is basically sewing process, such as patent document CN201510542277.1, which relates to a method for making a stuffed fur toy containing electronic components, which comprises the following steps in sequence: (a) cutting the corresponding area of the fabric according to the size of the body, the legs and the head; (b) conveying the cut fabric to different sewing production lines according to different parts, and sewing from the inside of the fabric to form a plurality of primary products corresponding to each part; (c) splicing and sewing the primary products into the shape of the stuffed fur toy, and turning it out; the splicing part of the primary product is provided with a flexible sewing ring for sewing; (d) stuffing cotton through the stuffed seam, then putting in the electronic components, and sewing the stuffed seam to form the stuffed fur toy; (e) passing the stuffed fur toy through a metal detector. In this way, the strength of the sewn product at the sewing place can be improved, and tearing at the sewing place during subsequent stuffing can be avoided.

[0008] In the above patent technology, in order to make a fur toy, the body, leg and head fabrics are first cut from each fabric, and then sewn together. The process has obvious defects, such as waste of raw materials after cutting, obvious and layered feeling at the sewing place, which greatly reduces the integrity and beauty. SUMMARY

[0009] In order to overcome the above shortcomings of the prior art, the present application provides an integrated seamless fabric with mixed artificial fur.

[0010] The technical scheme for solving the technical problems of the present application is: an integrated seamless fabric with mixed artificial plush, at least comprising a first partition fabric and a second partition fabric, each of the partition fabrics having an inner lining layer and a plush layer woven on the inner lining layer, and different kinds of plush layers being used in adjacent partition fabrics;

[0011] The adjacent partition fabrics are spliced into one body through a gluing assembly; wherein the gluing assembly comprises a mesh cloth and a cloth glue;

[0012] Part of the mesh cloth is inserted into the inner lining layer of one of the partition fabrics, and the other part is inserted into the inner lining layer of the other partition fabric, and the cloth glue is filled between the inner lining layer and the mesh cloth to bond the adjacent partition fabrics together.

[0013] Further to the above technical scheme, the mesh cloth comprises warp and weft interlaced with each other, and the intersection points of the warp and weft form positioning convex points, and the blank between the warp and weft forms a flow area, and the cloth glue is filled in the flow area.

[0014] Further to the above technical scheme, the gluing assembly further comprises a self-repairing glue, and the self-repairing glue is mixed in the cloth glue.

[0015] Further to the above technical scheme, the mass ratio of the cloth glue to the self-repairing glue is 11:1. (Each ratio is an embodiment)

[0016] Further to the above technical scheme, the warp and weft are made of glass optical fiber.

[0017] The present application also provides a fabric production process for producing the integrated seamless fabric with mixed artificial plush as described above, characterized in that it comprises the following steps:

[0018] S1, preparing at least two kinds of fabrics with different plush layers, recorded as a first partition fabric and a second partition fabric;

[0019] S2, respectively cutting open the inner lining layer on the splicing side of the first partition fabric and the second partition fabric to form a splicing groove;

[0020] S3, inserting part of the mesh cloth into the splicing groove in one of the inner lining layers, and inserting the other part into the splicing groove in the other inner lining layer;

[0021] S4, laying the first partition fabric and the second partition fabric in the first glue injection equipment, and injecting the cloth glue in the horizontal direction towards the inside after aligning the glue injection head of the first glue injection equipment with the splicing groove;

[0022] S5, lay the first partition fabric and the second partition fabric in the second glue injection equipment, and inject the self-repairing glue from the inside along the vertical direction towards the interior after the glue injection head of the second glue injection equipment is aligned with the flow area in the mesh cloth;

[0023] S6, place the first partition fabric and the second partition fabric in the incubator, and set the incubation temperature to 55-75 DEG C, and incubate for 15 minutes;

[0024] S7, set the temperature of the incubator to 5-20 DEG C, and incubate for 30 minutes;

[0025] S8, take out the first partition fabric and the second partition fabric, and obtain the finished product of the integrated seamless fabric with mixed artificial plush.

[0026] Further to the above technical solution, in step S4, the first shaping plate in the horizontal direction is attached to the upper and lower ends of the inner lining layer before injecting the fabric glue, and then the second shaping plate in the vertical direction is attached to the opposite side of the joint slot of the inner lining layer after injecting the fabric glue, so that the sides of the joint slots of the adjacent inner lining layers are attached together.

[0027] In step S5, the first shaping plate at the lower end of the inner lining layer is removed first, and then the self-repairing glue is injected from the lower end of the inner lining layer upwards, and the first shaping plate is attached to the lower end surface of the inner lining layer again, and the first partition fabric and the second partition fabric are turned over by 180 degrees.

[0028] Further to the above technical solution, in step S7, if it is the low-temperature autumn and winter season, the first partition fabric and the second partition fabric are taken out of the incubator after step S6, and are placed in the normal temperature for 2 hours, and stacking is prohibited during the standing process.

[0029] Further to the above technical solution, in step S5, before injecting the self-repairing glue, the mesh cloth of the joint slot is irradiated by using light, so that the strong light points are formed at the intersections of the warp and weft, and the weak light points are formed at the staggered positions of the warp and weft.

[0030] Further to the above technical solution, the first partition fabric and the second partition fabric are placed in a specially designed tool clamp, and the tool clamp comprises an upper support plate and a lower support plate, and a plurality of pneumatic clamping arms for clamping the fabric are arranged on the circumferential side of the upper support plate and the lower support plate.

[0031] The pneumatic clamping arms of the upper support plate and the pneumatic clamping arms of the lower support plate form a fabric passage, the fabric passage forms a first shaping passage for inserting the first shaping plate between the upper support plate and the lower support plate, and the fabric passage and the pneumatic clamping arms form a second shaping passage for inserting the second shaping plate.

[0032] The beneficial effects of the present application are as follows:

[0033] I. The integral seamless fabric with mixed artificial plush is obviously different from the existing artificial plush fabric (single color and single length), which is composed of multiple different sub-zones (the length and color of the plush can be different); the multiple sub-zones are seamlessly spliced by using a glue assembly to replace the existing sewing splicing process, on the one hand, it is a multi-color artificial plush fabric when it leaves the factory, which is convenient for subsequent common selection and processing, on the other hand, from the perspective of consumers, the integrity and aesthetics of the seamless fabric are greatly improved.

[0034] II. The production process for the integral seamless fabric has many advanced processes, such as mixed glue based on fabric glue and self-repairing glue, special material and shape of mesh cloth, drying process, etc., which can finally produce excellent fabric products with good market prospects. BRIEF DESCRIPTION OF DRAWINGS

[0035] Figure 1 is the production process flowchart of the present application.

[0036] Figure 2 is a partial structure diagram of the mesh cloth.

[0037] Figure 3 is a partial structure diagram when injecting fabric glue.

[0038] Figure 4 is a partial structure diagram when injecting self-repairing glue.

[0039] Figure 5 is a schematic diagram of the use of a tooling fixture.

[0040] In the figure: 1, first sub-zone fabric; 2, second sub-zone fabric; 3, inner lining layer; 4, plush layer; 5, mesh cloth; 6, fabric glue; 7, warp; 8, weft; 9, positioning protrusions; 10, flow area; 11, self-repairing glue; 12, integral seamless fabric; 13, splicing slot; 14, glue injection head of the first glue injection equipment; 15, glue injection head of the second glue injection equipment; 16, upper support plate; 17, lower support plate; 18, pneumatic clamping arm; 19, first shaping plate; 20, first shaping channel; 21, second shaping plate; 22, second shaping channel. DETAILED DESCRIPTION

[0041] The technical solutions in the embodiments of the present application will be described below with reference to the accompanying drawings. Figures 1-5 The technical solutions in the embodiments of the present application will be described below with reference to the accompanying drawings.

[0042] Embodiment One

[0043] The integral seamless fabric 12 with mixed artificial plush, at least comprising a first sub-zone fabric 1 and a second sub-zone fabric 2, each of which has an inner lining layer 3 and a plush layer 4 woven on the inner lining layer 3, and different kinds of plush layers 4 are used in adjacent sub-zone fabrics;

[0044] The adjacent sub-zone fabrics are spliced into an integral one through a gluing assembly; wherein the gluing assembly comprises a scrim 5 and a fabric glue 6;

[0045] Part of the scrim 5 extends into the inner lining layer 3 of one of the sub-zone fabrics, and the other part extends into the inner lining layer 3 of the other sub-zone fabric, and the fabric glue 6 is filled between the inner lining layer 3 and the scrim 5 to bond the adjacent sub-zone fabrics together.

[0046] The above is the basic scheme of the embodiment, and the scheme is analyzed as follows: 1. From the vertical structure of the material, it is mainly composed of the inner lining layer 3 and the plush layer 4, which is consistent with the existing artificial plush, and this part will not be described in detail here; 2. From the horizontal structure of the material, it is obviously different from the existing artificial plush fabric (single color and single length), which is composed of multiple different sub-zone fabrics (different in plush length, color, etc.); 3. The gluing assembly is used to seamlessly splice multiple sub-zone fabrics, instead of the existing sewing splicing process, on the one hand, it is a multi-color artificial plush fabric when it leaves the factory, which is convenient for subsequent common selection and processing, on the other hand, from the perspective of consumers, the integrity and aesthetics of the seamless fabric are greatly improved.

[0047] Embodiment Two

[0048] On the basis of Embodiment One, this embodiment provides a more specific implementation scheme, specifically: the scrim 5 comprises mutually interlaced warp threads 7 and weft threads 8, and the intersection points of the warp threads 7 and the weft threads 8 form positioning protrusions 9, and the blank spaces between the warp threads 7 and the weft threads 8 form flow areas 10, and the fabric glue 6 is filled in the flow areas 10.

[0049] Through the scrim 5 formed by the mutual interlacing of the warp threads 7 and the weft threads 8, on the one hand, the stable process can ensure that the entire scrim 5 has strong structural strength, and the warp threads 7 and the weft threads 8 are balanced in stress and are not easy to be torn; on the other hand, a large number of flow areas 10 are left to facilitate the filling and passing of the fabric glue 6, thereby making the entry of the fabric glue 6 more uniform and stable.

[0050] The cloth glue 6 is preferably a soft glue specially used for cloth bonding, has the advantages of not hardening, strong adhesion, good waterproofness, etc., and can be purchased separately in the existing market, and thus will not be described here.

[0051] Embodiment Three

[0052] On the basis of Embodiment Two, in order to make the bonding effect of the glue better, a more preferred mode is that the glue assembly further comprises self-repairing glue 11 mixed in the cloth glue 6.

[0053] The self-repairing glue 11 preferably adopts a self-repairing hydrogel developed by a professor team of Nanjing University, a domestic well-known university, has the characteristics of self-repairing damage, combines high tensile property, self-repairing property and super-sensitive mechanical sensing, and directly contacting the human body will not cause allergic reactions and other damage problems to the human body. It can increase the safety of the use material and prolong the service life of the material, is an intelligent new material with damage management function, and is currently applied in the fields of medical treatment and aerospace. Before the present application, there is no public information showing that it is applied in the textile field.

[0054] The use of the self-repairing glue 11 in the one-piece seamless fabric 12 has the following points: 1. The cloth glue 6 will leave injection holes on the inner lining 3 after injection due to the departure of the glue injection equipment, and the self-repairing glue 11 can repair the injection holes; 2. The cloth glue 6 completely relies on the self-flowing property of the glue during filling, and thus there are deviations or internal cavities, and the self-repairing glue 11 can repair the internal cavities; 3. When the fabric is made into clothes or toys, the use of the articles will also have phenomena such as pulling, which will cause cracks at the connection of the partitioned fabric (cloth glue 6), and the self-repairing glue 11 can repair the cracks.

[0055] Embodiment Four

[0056] The mass ratio of the cloth glue 6 to the self-repairing glue 11 is tested in four test groups of (9:1, 10:1, 11:1, 12:1) according to detailed and repeated debugging, and the test data is scored with 10 points as full marks, and the following data conclusion is obtained:

[0057] The test group with a mass ratio of 9:1 has viscosity of 8.8 points, flowability of 7.5 points, repair efficiency of 9 points, waterproof grade of 7 points and economy of 3 points;

[0058] The test group with a mass ratio of 10:1 has viscosity of 8.5 points, flowability of 7 points, repair efficiency of 8.5 points, waterproof grade of 8 points and economy of 5 points;

[0059] The test group with a mass ratio of 11:1 has viscosity of 8.4 points, flowability of 7 points, repair efficiency of 8 points, waterproof grade of 8.5 points and economy of 7 points.

[0060] Quality ratio 12:1 test group: viscosity 8 minutes, liquidity 6.5 minutes, repair efficiency 7 minutes, waterproof grade 8.5 minutes, economy 8.5 minutes;

[0061] In summary, the higher the comprehensive score of the test ratio is selected, that is, the mass ratio of the cloth glue 6 and the self-repairing glue 11 is 11:1.

[0062] Example five

[0063] On the basis of example two, the new features added in this embodiment are that the warp 7 and the weft 8 are made of glass optical fiber. In actual use, there are mainly two functions, as follows:

[0064] I. When glue injection, the place where the mesh cloth 5 is located is irradiated by light, and due to the existence of glass, the flowing area 10 can be accurately positioned, ensuring the accuracy of the glue injection position.

[0065] II. By the way of built-in or external light source, the light source is introduced into the mesh cloth 5 (glass optical fiber), so as to obtain the light effect.

[0066] Example six

[0067] A fabric production process for producing the aforementioned integrated seamless fabric 12 with mixed artificial plush includes the following steps:

[0068] S1, prepare at least two fabrics with different plush layers 4, recorded as first partition fabric 1 and second partition fabric 2;

[0069] S2, respectively cut open the inner lining layer 3 on the splicing side of the first partition fabric 1 and the second partition fabric 2 to form a splicing groove 13, so as to form a physical space for accommodating the adhesive assembly;

[0070] S3, a part of the mesh cloth 5 is inserted into the splicing groove 13 in one of the inner lining layers 3, and the other part is inserted into the splicing groove 13 in the other inner lining layer 3. The mesh cloth 5 serves as a medium between adjacent partition fabrics, realizing preliminary connection;

[0071] S4, lay the first partition fabric 1 and the second partition fabric 2 in the first glue injection equipment, and align the glue injection head 14 of the first glue injection equipment with the splicing groove 13, then inject the cloth glue horizontally towards the inside. The cloth glue 6 is used to bond the mesh cloth 5 with the partition fabric, and also to bond the adjacent partition fabrics;

[0072] S5, lay the first partition fabric 1 and the second partition fabric 2 in the second glue injection equipment, and inject the self-repairing glue 11 from the flow area 10 in the grid cloth 5 in the vertical direction to repair various cavities and gaps;

[0073] S6, put the first partition fabric 1 and the second partition fabric 2 into the incubator, and set the incubation temperature to 55-75℃, and incubate for 15 minutes. 55-75℃ is the temperature range in which the self-repairing glue 11 is relatively active, and incubation in this range can allow the self-repairing glue 11 to fully penetrate into the cloth glue 6, and the full mixing of the two will bring more excellent glue use effect;

[0074] S7, set the temperature of the incubator to 5-20℃, and incubate for 30 minutes to allow the glue to solidify;

[0075] S8, take out the first partition fabric 1 and the second partition fabric 2 to obtain the finished product of the integrated seamless fabric 12 with mixed artificial plush.

[0076] Due to the characteristics of the cloth glue 6 and the self-repairing glue 11, there are many technical difficulties such as delamination, deposition, and storage that cannot be overcome at present, so it is not recommended to use the method of mixing first and then injecting.

[0077] Some more preferred process settings are as follows:

[0078] I. In step S4, before injecting the cloth glue, the horizontal first shaping plate 19 is attached to the upper and lower ends of the inner lining layer 3, and after injecting the cloth glue, the vertical second shaping plate 21 is attached to the opposite side of the inner lining layer 3 on the side of the seam groove 13, so that the sides of the seam grooves 13 of adjacent inner lining layers 3 are attached together; in step S5, the first shaping plate 19 at the lower end of the inner lining layer 3 is removed first, and then the self-repairing glue 11 is injected from the lower end of the inner lining layer 3 upwards, and then the first shaping plate 19 is attached to the lower end of the inner lining layer 3, and the first partition fabric 1 and the second partition fabric 2 are turned over 180 degrees. By using the first shaping plate 19 and the second shaping plate 21, the shape of the integrated seamless fabric 12 can be effectively supported and maintained when the glue has not yet solidified, preventing deformation and distortion, and producing a fabric with good consistency and high quality.

[0079] II. In step S7, if it is the low-temperature autumn and winter season, after step S6, the first partition fabric 1 and the second partition fabric 2 are taken out of the incubator and placed at room temperature for 2 hours, and stacking is prohibited during the standing process. This can reduce the process, save energy, and improve production efficiency, etc.

[0080] III. In step S5, before injecting the self-repairing glue 11, the mesh fabric 5 in the joint groove 13 is irradiated by light, so that the warp 7 and the weft 8 intersect to form a strong light point (i.e. the positioning convex point 9), and the warp 7 and the weft 8 are staggered to form a weak light point (i.e. the flow channel area), which is convenient for identification.

[0081] IV. A special tool is provided during production, i.e. the first partition fabric 1 and the second partition fabric 2 are placed in a special tooling fixture, the tooling fixture includes an upper support plate 16 and a lower support plate 17, the periphery of the upper support plate 16 and the lower support plate 17 is provided with a plurality of pneumatic clamping arms 18 for clamping the fabric; the pneumatic clamping arms 18 of the upper support plate 16 and the pneumatic clamping arms 18 of the lower support plate 17 form a fabric passage therebetween, the fabric passage forms a first shaping passage 20 for inserting a first shaping plate 19 between the upper support plate 16 and the lower support plate 17, and the fabric passage forms a second shaping passage 22 for inserting a second shaping plate 21 between the pneumatic clamping arms 18. In use, first, the parts of the first partition fabric 1 and the second partition fabric 2 that need to be joined are input into the fabric passage, then the clamping arms are started to position and clamp the first partition fabric 1 and the second partition fabric 2, so as to prevent the partition fabric from loosening and moving in subsequent operations, then according to the process requirements of the injection fabric glue 6 and the self-repairing glue 11, the first shaping plate 19 / second shaping plate 21 is selectively inserted or removed, after all injection, the first shaping plate 19 / second shaping plate 21 is kept in the position state of being attached to the fabric, and is moved into a heat preservation box for heat preservation process.

[0082] The above is only a preferred embodiment of the present application, and does not limit the present application, any simple modification, change and equivalent structural change of the above embodiment according to the technical essence of the present application are still within the protection scope of the technical solution of the present application.

Claims

1. An integrated seamless fabric with mixed artificial plush, comprising at least a first sub-fabric (1) and a second sub-fabric (2), each of which has an inner lining layer (3) and a plush layer (4) woven on the inner lining layer (3), and different kinds of plush layers (4) are used in adjacent sub-fabrics; characterized in that: the adjacent sub-fabrics are spliced into one by a gluing assembly; wherein the gluing assembly comprises a mesh cloth (5) and a cloth glue (6); a part of the mesh cloth (5) extends into the inner lining layer (3) of one of the sub-fabrics, and another part extends into the inner lining layer (3) of the other sub-fabric; the cloth glue (6) is filled between the inner lining layer (3) and the mesh cloth (5) to bond the adjacent sub-fabrics together. The mesh cloth (5) comprises warp threads (7) and weft threads (8) interlaced with each other, and the intersection points of the warp threads (7) and the weft threads (8) form positioning protrusions (9), and the blank between the warp threads (7) and the weft threads (8) forms a flow area (10), and the cloth glue (6) is filled in the flow area (10). The gluing assembly further comprises a self-repairing glue (11), and the self-repairing glue (11) is mixed in the cloth glue (6).

2. The one-piece seamless fabric with hybrid artificial plush according to claim 1, characterized in that: The mass ratio of the cloth glue (6) to the self-repairing glue (11) is 11:

1.

3. The one-piece seamless fabric with hybrid artificial plush according to claim 1, characterized in that: The warp threads (7) and the weft threads (8) are made of glass optical fibers.

4. The one-piece seamless fabric with hybrid artificial plush according to claim 1, characterized in that: The method comprises the following steps:

5. The one-piece seamless fabric with hybrid artificial plush according to claim 2, characterized in that: S1, preparing at least two kinds of fabrics with different plush layers (4), recorded as a first sub-fabric (1) and a second sub-fabric (2); 6. A fabric production process for producing an integrated seamless fabric with mixed artificial plush according to any one of claims 1-5, characterized in that, S2, cutting a slot (13) on the inner lining layer (3) of the splicing side of the first sub-fabric (1) and the second sub-fabric (2) respectively; S3, extending a part of the mesh cloth (5) into the slot (13) in one of the inner lining layers (3), and extending another part of the mesh cloth (5) into the slot (13) in the other inner lining layer (3); S4, laying the first sub-fabric (1) and the second sub-fabric (2) in a first glue injection device, and injecting cloth glue into the interior along the horizontal direction after aligning the glue injection head (14) of the first glue injection device with the slot (13); S5, laying the first sub-fabric (1) and the second sub-fabric (2) in a second glue injection device, and injecting self-repairing glue (11) into the interior along the vertical direction after aligning the glue injection head (15) of the second glue injection device with the flow area (10) in the mesh cloth (5); S6, placing the first sub-fabric (1) and the second sub-fabric (2) in a heat preservation box, setting the heat preservation temperature to 55-75℃, and heat preserving for 15 minutes; S7, setting the temperature of the heat preservation box to 5-20℃, and heat preserving for 30 minutes; S8, taking out the first sub-fabric (1) and the second sub-fabric (2) to obtain the finished integrated seamless fabric with mixed artificial plush. ​ ​ 7. The process for producing a fabric according to claim 6, characterized in that: In step S4, the horizontally arranged first shaping plate (19) is attached to the upper and lower ends of the inner liner (3) before injecting the fabric glue, and the vertically arranged second shaping plate (21) is attached to the side opposite to the joint slot (13) of the inner liner (3) after injecting the fabric glue, so that the sides of the joint slots (13) of the adjacent inner liners (3) are attached together. In step S5, the first shaping plate (19) at the lower end of the inner liner (3) is removed, the self-repairing glue (11) is injected from the lower end of the inner liner (3) upwards, the first shaping plate (19) is attached to the lower end surface of the inner liner (3) again, and the first partitioned fabric (1) and the second partitioned fabric (2) are turned over by 180 degrees.

8. The process for producing a fabric according to claim 6, wherein: In step S5, before injecting the self-repairing glue (11), the mesh cloth (5) of the joint slot (13) is irradiated with light, so that the strong light points are formed at the intersections of the warp (7) and the weft (8), and the weak light points are formed at the staggered positions of the warp (7) and the weft (8).

9. The fabric production process of claim 7, wherein: The first partitioned fabric (1) and the second partitioned fabric (2) are placed in a specially designed tool clamp, which includes an upper support plate (16) and a lower support plate (17), and the periphery of the upper support plate (16) and the lower support plate (17) is provided with a plurality of pneumatic clamping arms (18) for clamping the fabric. The pneumatic clamping arms (18) of the upper support plate (16) and the pneumatic clamping arms (18) of the lower support plate (17) form a fabric passage, the fabric passage forms a first shaping passage (20) for inserting the first shaping plate (19) between the upper support plate (16) and the lower support plate (17), and the fabric passage forms a second shaping passage (22) for inserting the second shaping plate (21) between the pneumatic clamping arms (18).

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