Method and device for producing composite fabric

By designing an automated hot press composite production device, the problem of high manual operation strength in the production process of existing composite fabrics is solved, and efficient and convenient production of fabrics is achieved.

CN119928397AActive Publication Date: 2025-05-06HAINING TIANLI TEXTILE CO LTD
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Patent Information

Application Number
CN202510260109.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2025-05-06
Estimated Expiration
2045-03-06

AI Technical Summary

Technical Problem

During the production process of existing composite fabrics, a large amount of manual operation is required, resulting in high labor intensity and low efficiency.

Method used

An automated hot press composite production device is designed to realize the automated production of fabrics through cutting, superposition, hot press composite and conveyor belt output.

Benefits of technology

It greatly reduces labor intensity, improves production efficiency, and achieves convenient and efficient production of fabrics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a production method of a composite fabric. The production method comprises the following specific steps: S1, respectively cutting an upper-layer fabric and a lower-layer fabric to required sizes by using a cutting machine; s2, transferring the cut upper-layer fabric and the cut lower-layer fabric to a turnover vehicle; s3, sequentially superposing one group of lower-layer fabric and upper-layer fabric and placing on a lower placing table I of a hot-pressing composite production device, and sequentially superposing the other group of lower-layer fabric and upper-layer fabric and placing on a lower placing table II of the hot-pressing composite production device; s4, operating an air cylinder I and an air cylinder II to enable an upper pressing plate I and an upper pressing plate II to descend to be matched with a lower placing table I and a lower placing table II respectively so as to complete the hot-pressing compounding process of the two pieces of composite fabric; s5, through one-by-one overturning of the first lower placing table and the second lower placing table, the compounded fabric is transferred to a conveying belt, the conveying belt is used for conveying, and finally the needed compounded fabric can be obtained; and a device thereof.
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Description

Technical Field

[0001] The invention belongs to the technical field of fabric production, and relates to a production method and a device for a composite fabric. Background Art

[0002] Composite fabrics are made by combining two or more different types of fabrics through a specific process. The performance of this kind of fabric has been significantly improved compared to that of a single fabric. Through compounding, the advantages of different fabrics can be combined to create a new material that can not only meet a variety of different usage requirements, but also has greatly enhanced durability, comfort, functionality, etc. For example, by compounding waterproof fabrics with breathable fabrics, you can get composite fabrics that are both waterproof and breathable, which is very suitable for the production of outdoor sports equipment. In addition, composite fabrics are widely used in many fields such as clothing, home furnishings, and medical treatment. Their diverse functions and characteristics make composite fabrics an indispensable part of the modern textile market.

[0003] In the current clothing fabric processing process, when two different fabrics need to be compounded, hot pressing compounding technology is usually used. In this process, two pieces of fabric are first placed manually in the hot pressing equipment, and then they are tightly combined together by hot pressing. After the compounding is completed, the staff needs to intervene again to take the compounded fabric out of the equipment. After taking it out, these fabrics need to be transported to the next work station for subsequent processing; this entire series of operations not only requires precise manual operation, but also has high physical requirements for the operator. The labor intensity of the entire process is quite large. Therefore, it is very necessary to design a production method and device for composite fabrics. Summary of the invention

[0004] The purpose of the present invention is to solve the above problems in the prior art and to provide a method and device for producing a composite fabric.

[0005] The purpose of the present invention can be achieved by the following technical solutions: A method for producing a composite fabric comprises the following specific steps: S1. Use a cutting machine to cut the upper fabric and the lower fabric to the required size respectively; S2. Transfer the cut upper fabric and the lower fabric to the turnover vehicle; S3. Stack one group of lower fabrics and the upper fabric in sequence and place them on the lower placement table 1 of the hot pressing composite production device, and stack another group of lower fabrics and the upper fabric in sequence and place them on the lower placement table 2 of the hot pressing composite production device; S4. Operate cylinder 1 and cylinder 2 to lower the upper pressing plate 1 and the upper pressing plate 2, respectively, to cooperate with the lower placement table 1 and the lower placement table 2 to complete the hot pressing composite process of the two composite fabrics; S5. By turning over the lower placement table 1 and the lower placement table 2 one by one, the composite fabrics are transferred to the conveyor belt respectively, and transported by the conveyor belt, and finally the required composite fabrics can be obtained.

[0006] The step S5 also includes regular sampling inspection.

[0007] A hot pressing composite production device comprises a machine base, on which a hot pressing composite mechanism and a fabric output mechanism are arranged, the hot pressing composite mechanism comprises a bracket, a box, an upper pressing plate 1, an upper pressing plate 2, a lower placing table 1, a lower placing table 2, a cylinder 1 and a cylinder 2, the bracket is installed on the machine base, the lower placing table 1 and the lower placing table 2 are arranged on the machine base through a regulating structure, and the lower placing table 1 and the lower placing table 2 can be switched between a horizontal state and a vertical state, the box is installed on the machine base through a vertical rod, and the box is located above the machine base, and a mounting mechanism is installed in the box A mounting crossbeam is provided, on which mounting crossbeam are mounted mounting plate 1 and mounting plate 2, wherein cylinder 1 is mounted on mounting plate 1, and the end of the piston rod of cylinder 1 is connected to lifting frame 1, wherein upper pressure plate 1 is mounted on lifting frame 1, and upper pressure plate 1 can contact lower placement table 1, and electric heating plate 1 is also mounted on upper pressure plate 1, wherein cylinder 2 is mounted on mounting plate 2, and the end of the piston rod of cylinder 2 is connected to lifting frame 2, wherein upper pressure plate 2 is mounted on lifting frame 2, and upper pressure plate 2 can contact lower placement table 2, and electric heating plate 2 is also mounted on upper pressure plate 2.

[0008] A guide sleeve is installed on both sides of the second mounting plate, a guide column is slidably connected to the guide sleeve, and the lower end of the guide column is connected to the first lifting frame; a guide sleeve is installed on both sides of the second mounting plate, a guide column is slidably connected to the guide sleeve, and the lower end of the guide column is connected to the second lifting frame.

[0009] The fabric output mechanism includes a mounting frame and a conveyor belt. The mounting frame is installed on the machine base, and the length of the mounting frame is greater than the length of the machine base. The mounting frame also has an auxiliary leg at one end away from the machine base. The conveyor belt is arranged on the mounting frame. The conveyor belt is driven by a power motor to operate. A sampling structure is also arranged on the mounting frame.

[0010] The control structure includes a switching platform 1, a switching platform 2, a rotating shaft 1, a rotating shaft 2 and a control shaft. The rotating shaft 1 and the rotating shaft 2 are both horizontally rotatably installed on the frame. The rotating shaft 1 is connected to one end of the power arm 1, and the other end of the power arm 1 has a working handle 1. The rotating shaft 2 is connected to one end of the power arm 2, and the other end of the power arm 2 has a working handle 2. One end of the switching platform 1 is fixedly connected to the rotating shaft 1, and one end of the switching platform 2 is fixedly connected to the rotating shaft 2. The bracket is provided with an upper beam and a lower beam. The upper beam is arranged between the rotating shaft 1 and the rotating shaft 2, and the lower beam is arranged below the upper beam. The upper beam is in a Z shape. The outer ends of the upper beam have outer pin shafts 1 and 2, and the middle part of the power arm 1 has an inner pin shaft. 1. The power arm 2 has an inner pin shaft 2, a return spring 1 is provided between the outer pin shaft 1 and the inner pin shaft 1, and a return spring 2 is provided between the outer pin shaft 2 and the inner pin shaft 2. The middle part of the upper crossbeam has an upper limit rod and a lower limit rod, and the upper limit rod can respectively abut against the switching table 1 and the switching table 2, and the lower limit rod can respectively abut against the power arm 1 and the power arm 2. The regulating shaft is horizontally rotatably installed on the lower crossbeam, and a large fan-shaped wheel and a small fan-shaped wheel are respectively installed at one end of the regulating shaft, the large fan-shaped wheel cooperates with the working handle 1, and the small fan-shaped wheel cooperates with the working handle 2. The other end of the regulating shaft is also connected to a power module that can rotate it; the lower placement table 1 is connected to the switching table 1, and the lower placement table 2 is connected to the switching table 2.

[0011] The power module includes a servo motor.

[0012] The sampling inspection structure includes a vertical plate, a third cylinder, a push plate, a baffle, an L-shaped main linkage rod, an L-shaped slave linkage rod, a cylindrical spring, a guide block, a guide rod and a cache box. One side of the mounting frame has an opening one, the vertical plate is mounted on one side of the mounting frame, the other side of the mounting frame has an opening two, the cache box is mounted on the other side of the mounting frame, the third cylinder is mounted on the vertical plate, the end of the piston rod of the third cylinder is connected to the movable plate, the push plate is mounted on the movable plate, and the push plate can close the opening one, the guide block is mounted on the vertical plate, the guide rod is vertically slidably connected to the guide block, and the The lower end of the guide rod is connected to the limit block, the upper end of the guide rod is connected to one end of the L-shaped slave linkage rod, the baffle is installed at the other end of the L-shaped slave linkage rod, and the baffle can close the second opening, the cylindrical spring is sleeved on the guide rod, the upper end of the cylindrical spring is abutted against the L-shaped slave linkage rod, and the lower end of the cylindrical spring is abutted against the guide block, a base plate is also installed at one end of the L-shaped slave linkage rod, a guide wheel is installed on the base plate, one end of the L-shaped main linkage rod is connected to the movable plate, the other end of the L-shaped main linkage rod can cooperate with the guide wheel, and the middle part of the L-shaped main linkage rod also has an inclined transition part.

[0013] The pushing plate is also provided with wool strips.

[0014] Guide sleeves three are installed on both sides of the vertical plate, guide pillars three are slidably connected to the guide sleeves three, and one end of the guide pillars three is connected to the movable plate.

[0015] The box body is provided with an indicator light, and the box body is also provided with an electric control panel, and the cylinder one, cylinder two, cylinder three, the power motor and the servo motor are all connected to the electric control panel.

[0016] Compared with the prior art, the production method and device of the composite fabric have the following advantages: The present invention uses a carefully designed hot-pressing composite production device. During the production process of the composite fabric, the operator only needs to overlap the upper fabric and the lower fabric and put them into the machine to automatically complete the composite process. After the composite is completed, the fabric can also be automatically transferred to the conveyor belt for output, thereby realizing the convenience and efficiency of the production process and greatly reducing the labor intensity. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the planar structure of the present invention; Figure 2 It is a partial enlarged view of point A; Figure 3 It is a schematic diagram of the planar structure of the hot pressing composite mechanism of the present invention; Figure 4 It is a schematic diagram of the planar structure of the hot pressing composite mechanism of the present invention with the removed part; Figure 5 It is a schematic diagram of the planar structure of the sampling structure in the present invention; Figure 6 is a schematic diagram of the three-dimensional structure of the regulatory structure of the present invention; Figure 7 It is a partial enlarged view of point B; Figure 8 It is a schematic diagram of the planar structure of the dismantled part of the regulating structure in the present invention; In the figure, 1, machine base; 201, box; 202, lower placing table 1; 203, lower placing table 2; 204, upper pressing plate 1; 205, lifting frame 1; 206, cylinder 1; 207, cylinder 2; 208, mounting plate 2; 209, upper pressing plate 2; 210, electric heating plate 2; 211, mounting crossbeam; 212, electric heating plate 1; 213, mounting plate 1; 214, guide sleeve 1; 2 15, guide column 1; 216, guide column 2; 217, guide sleeve 2; 218, lifting frame 2; 301, mounting frame; 301x, opening 1; 301y, opening 2; 302, conveyor belt; 303, auxiliary leg; 401, vertical plate; 402, push plate; 403, baffle; 404, buffer box; 405, guide rod; 406, guide block; 407, base plate; 408, L-shaped main linkage rod ; 408x, transition part; 409, limit block; 410, guide wheel; 411, cylinder three; 412, movable plate; 413, wool strip; 414, L-type slave linkage rod; 415, cylindrical spring; 416, guide sleeve three; 417, guide column three; 501, power module; 502, bracket; 503, switch table two; 504, lower crossbeam; 505, reset spring two; 506, reset spring Spring one; 507, switching table one; 508, rotating shaft one; 509, power arm one; 509x, working handle one; 510, upper crossbeam; 511, large fan-shaped wheel; 512, small fan-shaped wheel; 513, regulating shaft; 514, rotating shaft two; 515, power arm two; 515x, working handle two; 516, upper limit rod; 517, lower limit rod; 6, electric control panel; 7, indicator light. DETAILED DESCRIPTION

[0018] The following are specific embodiments of the present invention and the accompanying drawings to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.

[0019] like Figure 1-Figure 8 As shown, the production method of the composite fabric comprises the following specific steps: S1. Use a cutting machine to cut the upper fabric and the lower fabric to the required size respectively; S2. Transfer the cut upper fabric and the lower fabric to the turnover vehicle; S3. Stack one group of lower fabrics and the upper fabric in sequence and place them on the lower placement table 1 202 of the hot pressing composite production device, and stack another group of lower fabrics and the upper fabric in sequence and place them on the lower placement table 2 203 of the hot pressing composite production device; S4. Operate cylinder 1 206 and cylinder 2 207 to lower the upper pressing plate 1 204 and the upper pressing plate 2 209, respectively, to cooperate with the lower placement table 1 202 and the lower placement table 2 203 to complete the hot pressing composite process of the two composite fabrics; S5. By turning over the lower placement table 1 202 and the lower placement table 2 203 one by one, the composite fabrics are transferred to the conveyor belt 302 respectively, and the conveyor belt 302 is used for transportation, and the required composite fabrics can be finally obtained.

[0020] Step S5 also includes regular sampling inspection.

[0021] The hot pressing composite production device includes a machine base 1, on which a hot pressing composite mechanism and a fabric output mechanism are arranged, the hot pressing composite mechanism includes a bracket 502, a box 201, an upper pressing plate 1 204, an upper pressing plate 209, a lower placing table 1 202, a lower placing table 203, a cylinder 1 206 and a cylinder 2 207, the bracket 502 is installed on the machine base 1, the lower placing table 1 202 and the lower placing table 203 are arranged on the machine base 1 through a regulating structure, and the lower placing table 1 202 and the lower placing table 203 can be switched between a horizontal state and a vertical state, the box 201 is installed on the machine base 1 through a vertical pole, and the box 201 is located above the machine base 1, a mounting crossbeam 211 is installed in the box 201, a mounting plate 1 213 and a mounting plate 208 are installed on the mounting crossbeam 211, the cylinder 1 206 is installed on the mounting plate 1 213, and the piston rod end of the cylinder 1 206 It is connected to the lifting frame 205, the upper pressing plate 204 is installed on the lifting frame 205, and the upper pressing plate 204 can contact the lower placing table 202, and the upper pressing plate 204 is also installed with an electric heating plate 212, the cylinder 207 is installed on the mounting plate 208, the piston rod end of the cylinder 207 is connected to the lifting frame 218, the upper pressing plate 209 is installed on the lifting frame 218, and the upper pressing plate 209 can contact the lower placing table 203, and the upper pressing plate 209 is also installed with an electric heating plate 210; using this structure, a group of lower fabrics and upper fabrics are stacked in sequence and placed on the lower placing table 202, and by moving the upper pressing plate 204 downward, the electric heating plate 212 can heat the upper pressing plate 204, thereby completing the hot pressing and compounding operation of the fabrics. In this embodiment, the hot pressing method to complete the compounding of two pieces of fabrics adopts the existing technology.

[0022] Guide sleeves 214 are installed on both sides of the mounting plate 208, and guide posts 215 are slidably connected to the guide sleeves 214, and the lower ends of the guide posts 215 are connected to the lifting frame 205; guide sleeves 217 are installed on both sides of the mounting plate 208, and guide posts 216 are slidably connected to the guide sleeves 217, and the lower ends of the guide posts 216 are connected to the lifting frame 218. With this structure, the lifting frame 205 and the lifting frame 218 can be made more stable up and down by cooperating between the guide sleeves 214 and the guide posts 215, and the guide sleeves 217 and the guide posts 216.

[0023] The fabric output mechanism includes a mounting frame 301 and a conveyor belt 302. The mounting frame 301 is mounted on the machine base 1, and the length of the mounting frame 301 is greater than the length of the machine base 1. The mounting frame 301 has an auxiliary leg 303 at one end away from the machine base 1. The conveyor belt 302 is arranged on the mounting frame 301. The conveyor belt 302 is driven by a power motor. The mounting frame 301 is also provided with a sampling structure. With this structure, after the lower placement table 1 202 and the lower placement table 2 203 are switched from a horizontal state to a vertical state in turn, the composite fabric can fall onto the conveyor belt 302, and be transported to the next workstation by the conveyor belt 302. The sampling structure can be used to sample and inspect the composite fabric on the conveyor belt 302. The sampling inspection can be carried out according to needs, and the quality of the fabric composite can be manually checked after sampling at regular intervals.

[0024] The control structure includes a switch table 1 507, a switch table 2 503, a rotating shaft 1 508, a rotating shaft 2 514 and a control shaft 513. The rotating shaft 1 508 and the rotating shaft 2 514 are both horizontally rotatably mounted on the frame. The rotating shaft 1 508 is connected to one end of a power arm 1 509, and the other end of the power arm 1 509 has a working handle 1 509x. The rotating shaft 2 514 is connected to one end of a power arm 2 515, and the other end of the power arm 2 515 has a working handle 2 515x. One end of the switch table 1 507 is fixedly connected to the rotating shaft 1 508, one end of the switch table 2 503 is fixedly connected to the rotating shaft 2 514, and the bracket 50 2 has an upper crossbeam 510 and a lower crossbeam 504, the upper crossbeam 510 is arranged between the first rotating shaft 508 and the second rotating shaft 514, the lower crossbeam 504 is arranged below the upper crossbeam 510, the upper crossbeam 510 is in a Z shape, the outer end of the upper crossbeam 510 has an outer pin shaft 1 and an outer pin shaft 2, the middle of the power arm 1 509 has an inner pin shaft 1, the power arm 2 515 has an inner pin shaft 2, a return spring 1 506 is provided between the outer pin shaft 1 and the inner pin shaft 1, a return spring 2 505 is provided between the outer pin shaft 2 and the inner pin shaft 2, the middle of the upper crossbeam 510 has an upper limit rod 516 and a lower limit rod 517, and The upper limit rod 516 can be respectively abutted against the switch table 1 507 and the switch table 2 503. With this structure, when the switch table 1 507 and the switch table 2 503 are switched from a horizontal state to a vertical state, the switch table 1 507 and the switch table 2 503 can be abutted against the upper limit rod 516; the lower limit rod 517 can be respectively abutted against the power arm 1 509 and the power arm 2 515. When the switch table 1 507 and the switch table 2 503 are switched from a vertical state to a horizontal state, the power arm 1 509 and the power arm 2 515 can be abutted against the lower limit rod 517; the regulating shaft 513 is horizontally rotatably mounted on the lower crossbeam 50 4, a large sector wheel 511 and a small sector wheel 512 are respectively installed at one end of the regulating shaft 513, the large sector wheel 511 cooperates with the working handle 1 509x, and the small sector wheel 512 cooperates with the working handle 2 515x, and the other end of the regulating shaft 513 is also connected to a power module 501 that can make it rotate. In this embodiment, the regulating shaft 513 can be driven to rotate by the power module 501, and then the large sector wheel 511 and the small sector wheel 512 can be driven to rotate as needed; the lower placement table 1 202 is connected to the switching table 1 507, and the lower placement table 2 203 is connected to the switching table 2 503;With this structure, when the lower placing table 1 202 and the lower placing table 2 203 are vertically moved from horizontal cutting, the regulating shaft 513 drives the large sector wheel 511 and the small sector wheel 512 to rotate, the large sector wheel 511 first abuts against the working handle 1 509x, so that the switching table 1 507 rotates first, then the small sector wheel 512 abuts against the working handle 2 515x, so that the switching table 2 503 rotates later, the lower placing table 1 202 first transfers the composite fabric to the conveyor belt 302, and the lower placing table 2 203 transfers the composite fabric to the conveyor belt 302 later, so that the composite fabric is transferred to the conveyor belt 302 in sequence, and the large sector wheel 511 and the small sector wheel 512 are separated at the same time, so that the lower placing table 1 202 and the lower placing table 2 203 are reset horizontally at the same time, and the regulating effect is good; the power module 501 includes a servo motor. ;

[0025] The sampling structure includes a vertical plate 401, a cylinder 3 411, a push plate 402, a baffle 403, an L-shaped main linkage rod 408, an L-shaped slave linkage rod 414, a cylindrical spring 415, a guide block 406, a guide rod 405 and a buffer box 404. One side of the mounting frame 301 has an opening 1 301x, the vertical plate 401 is mounted on one side of the mounting frame 301, the other side of the mounting frame 301 has an opening 2 301y, the buffer box 404 is mounted on the other side of the mounting frame 301, the cylinder 3 411 is mounted on the vertical plate 401, and the piston rod end of the cylinder 3 411 is connected to the movable plate 412. The push plate 402 is mounted on the movable plate 412, and the push plate 402 can close the opening 301x. The guide block 406 is mounted on the vertical plate 401. The guide rod 405 is vertically slidably connected to the guide block 406. The lower end of the guide rod 405 is connected to the limit block 409. The upper end of the guide rod 405 is connected to one end of the L-shaped slave linkage rod 414. The baffle plate 403 is mounted on the other end of the L-shaped slave linkage rod 414, and the baffle plate 403 can close the opening 301y. The cylindrical spring 415 is sleeved on the guide rod 405. The upper end of the cylindrical spring 415 is connected to the L-shaped slave linkage rod 414. 4 are against each other, the lower end of the cylindrical spring 415 is against the guide block 406, one end of the L-shaped slave linkage rod 414 is also installed with a base plate 407, a guide wheel 410 is installed on the base plate 407, one end of the L-shaped main linkage rod 408 is connected to the movable plate 412, the other end of the L-shaped main linkage rod 408 can cooperate with the guide wheel 410, and the middle part of the L-shaped main linkage rod 408 also has an inclined transition part 408x; a wool strip 413 is also installed on the push plate 402; during normal transportation, the push plate 402 closes the opening 1 301x, and the baffle 403 closes the opening 2 301y; When random inspection is required, the movable plate 412 is driven by cylinder three 411 to move, so that opening one 301x and opening two 301y are opened, and cylinder three 411 drives the movable plate 412 to move toward opening two 301y, and the movable plate 412 drives the push plate 402 to move toward opening two 301y, and the cooperation of the L-shaped main linkage rod 408, the L-shaped slave linkage rod 414 and the guide wheel 410 makes the baffle 403 move downward synchronously, so that under the action of the push plate 402, the composite fabric on the conveyor belt 302 is pushed into the buffer box 404, and is manually taken out for quality inspection.

[0026] Guide sleeves 3 416 are installed on both sides of the vertical plate 401, and guide posts 3 417 are slidably connected to the guide sleeves 3 416. One end of the guide posts 3 417 is connected to the movable plate 412. With this structure, the movement of the movable plate 412 can be made more stable through the guide sleeves 3 416 and the guide posts 3 417.

[0027] An indicator light 7 is installed on the box body 201, and an electric control panel 6 is also installed on the box body 201. Cylinder 1 206, cylinder 2 207, cylinder 3 411, power motor and servo motor are all connected to the electric control panel 6. This adopts the existing technology, and the control of the start and stop of the cylinder and the motor adopts the existing technology.

[0028] In the present invention, through the carefully designed hot pressing composite production device, during the production process of the composite fabric, the operator only needs to overlap the upper fabric and the lower fabric and put them into the machine to automatically complete the composite process. After the composite is completed, the fabric can also be automatically transferred to the conveyor belt 302 for output, which realizes the convenience and efficiency of the production process and greatly reduces the labor intensity.

[0029] The above components are all common standard parts or components known to those skilled in the art, and their structures and principles can be known to those skilled in the art through technical manuals or conventional experimental methods.

[0030] The specific embodiments described herein are merely examples of the spirit of the present invention. Those skilled in the art may make various modifications or additions to the specific embodiments described or replace them in similar ways, but they will not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.

Claims

1. A method for producing a composite fabric, characterized in that: The specific steps include: S1. Use a cutting machine to cut the upper fabric and the lower fabric to the required size respectively; S2. Transfer the cut upper fabric and the lower fabric to a turnover vehicle; S3. Place one group of lower fabrics on the upper fabric in sequence and place them on the lower placement table 1 (202) of the hot pressing composite production device, and place another group of lower fabrics on the upper fabric in sequence and place them on the lower placement table 2 (203) of the hot pressing composite production device; S4. Operate cylinder 1 (206) and cylinder 2 (207) to lower upper pressing plate 1 (204) and upper pressing plate 2 (209) to respectively cooperate with lower placement table 1 (202) and lower placement table 2 (203) to complete the hot pressing composite process of the two composite fabrics; S5. Transfer the composite fabrics to the conveyor belt (302) by turning over the lower placement table 1 (202) and the lower placement table 2 (203) one by one, and use the conveyor belt (302) to transport them, so as to finally obtain the required composite fabrics.

2. The method for producing a composite fabric according to claim 1, characterized in that: The step S5 also includes regular sampling inspection.

3. A hot pressing composite production device, comprising a machine base (1), characterized in that: The machine base (1) is provided with a hot pressing composite mechanism and a fabric output mechanism, the hot pressing composite mechanism comprising a bracket (502), a box (201), an upper pressing plate 1 (204), an upper pressing plate 2 (209), a lower placing table 1 (202), a lower placing table 2 (203), a cylinder 1 (206) and a cylinder 2 (207), the bracket (502) is installed on the machine base (1), the lower placing table 1 (202) and the lower placing table 2 (203) are arranged on the machine base (1) through a regulating structure, and the lower placing table 1 (202) and the lower placing table 2 (203) can be switched between a horizontal state and a vertical state, the box (201) is installed on the machine base (1) through a vertical rod, and the box (201) is located above the machine base (1), and a mounting crossbeam (211) is installed in the box (201), and the mounting crossbeam (211) A mounting plate 1 (213) and a mounting plate 2 (208) are installed on the upper surface, the cylinder 1 (206) is installed on the mounting plate 1 (213), the piston rod end of the cylinder 1 (206) is connected to the lifting frame 1 (205), the upper pressure plate 1 (204) is installed on the lifting frame 1 (205), and the upper pressure plate 1 (204) can contact with the lower placement table 1 (202), and the upper pressure plate 1 (204) is also installed with an electric heating plate 1 (212), the cylinder 2 (207) is installed on the mounting plate 2 (208), the piston rod end of the cylinder 2 (207) is connected to the lifting frame 2 (218), the upper pressure plate 2 (209) is installed on the lifting frame 2 (218), and the upper pressure plate 2 (209) can contact with the lower placement table 2 (203), and the upper pressure plate 2 (209) is also installed with an electric heating plate 2 (210).

4. A hot pressing composite production device according to claim 3, characterized in that: Guide sleeves 1 (214) are installed on both sides of the second mounting plate (208), and guide posts 1 (215) are slidably connected to the guide sleeves 1 (214), and the lower ends of the guide posts 1 (215) are connected to the lifting frame 1 (205); guide sleeves 2 (217) are installed on both sides of the second mounting plate (208), and guide posts 2 (216) are slidably connected to the guide sleeves 2 (217), and the lower ends of the guide posts 2 (216) are connected to the lifting frame 2 (218).

5. The hot pressing composite production device according to claim 3, characterized in that: The fabric output mechanism comprises a mounting frame (301) and a conveyor belt (302); the mounting frame (301) is mounted on a machine base (1); the length of the mounting frame (301) is greater than the length of the machine base (1); an end of the mounting frame (301) away from the machine base (1) further comprises an auxiliary leg (303); the conveyor belt (302) is arranged on the mounting frame (301); the conveyor belt (302) is driven to operate by a power motor; and a sampling structure is further arranged on the mounting frame (301).

6. A hot pressing composite production device according to claim 5, characterized in that: The sampling inspection structure comprises a vertical plate (401), a cylinder three (411), a push plate (402), a baffle (403), an L-shaped main linkage rod (408), an L-shaped slave linkage rod (414), a cylindrical spring (415), a guide block (406), a guide rod (405) and a buffer box (404); one side of the mounting frame (301) has an opening one (301x); the vertical plate (401) is mounted on one side of the mounting frame (301); and the other side of the mounting frame (301) has The buffer box (404) is installed on the other side of the mounting frame (301), the cylinder (411) is installed on the vertical plate (401), the piston rod end of the cylinder (411) is connected to the movable plate (412), the push plate (402) is installed on the movable plate (412), and the push plate (402) can close the opening (301x), the guide block (406) is installed on the vertical plate (401), and the guide rod (405) slides vertically. The guide rod (405) is movably connected to the guide block (406); the lower end of the guide rod (405) is connected to the limit block (409); the upper end of the guide rod (405) is connected to one end of the L-shaped slave linkage rod (414); the baffle (403) is installed on the other end of the L-shaped slave linkage rod (414); and the baffle (403) can close the second opening (301y); the cylindrical spring (415) is sleeved on the guide rod (405); the upper end of the cylindrical spring (415) is connected to the L-shaped slave linkage rod (414); The cylindrical spring (415) abuts against each other, the lower end of the cylindrical spring (415) abuts against the guide block (406), one end of the L-shaped slave linkage rod (414) is also installed with a base plate (407), and a guide wheel (410) is installed on the base plate (407), one end of the L-shaped main linkage rod (408) is connected to the movable plate (412), and the other end of the L-shaped main linkage rod (408) can cooperate with the guide wheel (410), and the middle part of the L-shaped main linkage rod (408) also has an inclined transition part (408x).

7. A hot pressing composite production device according to claim 6, characterized in that: The pushing plate (402) is also provided with a wool strip (413).

8. The hot pressing composite production device according to claim 6, characterized in that: Guide sleeves 3 (416) are installed on both sides of the vertical plate (401), guide pillars 3 (417) are slidably connected to the guide sleeves 3 (416), and one end of the guide pillars 3 (417) is connected to the movable plate (412).

9. The hot pressing composite production device according to claim 3, characterized in that: An indicator light (7) is mounted on the box (201), and an electric control panel (6) is also mounted on the box (201); the cylinder one (206), the cylinder two (207), the cylinder three (411), the power motor and the servo motor are all connected to the electric control panel (6).

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