Monolithic panel production plant

The automated operation of the integrated panel production equipment has solved the problem of low production efficiency in existing technologies, realized automated processing of decorative panels, and improved production efficiency.

CN118124240BActive Publication Date: 2025-11-28SUZHOU HIGH-TECH DACHENG LOW-CARBON ENVIRONMENTAL PROTECTION NEW MATERIAL DEV CO LTD
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Patent Information

Application Number
CN202410420362.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-09
Publication Date
2025-11-28
Estimated Expiration
2044-04-09

AI Technical Summary

Technical Problem

In the current production process of integrated thermal insulation and decorative panels, multiple workers are required for each processing step, resulting in low production efficiency.

Method used

The integrated panel production equipment includes an automatic feeding device, an interface wiping device, an automatic cotton pasting device, a backing fabric adhesive coating device, and an automatic unloading device, which realizes the automated operation of panel feeding, interface wiping, pasting of insulation cotton and backing fabric.

Benefits of technology

The process of feeding decorative panels, applying interface coating, attaching insulation cotton, and backing fabric has been automated, improving overall production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN118124240B_ABST
Patent Text Reader

Abstract

The application relates to an integrated plate production device and belongs to the automatic production field; the device comprises a first storage table, an automatic feeding device, an interface wiping and coating device, an automatic cotton pasting device, a back cloth glue pouring and covering device, an automatic discharging device and a pressing device; the automatic feeding device is used for moving a veneer on the first storage table to the interface wiping and coating device; the interface wiping and coating device is used for wiping a surface treatment agent on the veneer and moving the veneer to the automatic cotton pasting device; the automatic cotton pasting device is used for arranging thermal insulation cotton and pasting the arranged thermal insulation cotton on the veneer; the back cloth glue pouring and covering device is used for pulling and cutting back cloth with a size required by the veneer and pasting the back cloth on a side of the thermal insulation cotton far from the veneer; the automatic discharging device is used for moving the veneer with the pasted back cloth to the pressing device; and the pressing device is used for pressing, heating and shaping the veneer. The application has the effect of improving the overall production efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of automatic production and manufacturing, in particular to an integrated panel production equipment. BACKGROUND

[0002] The thermal insulation decorative integrated panel, as the outer wall of a building, can not only provide excellent thermal insulation effect, but also beautify the appearance of the building.

[0003] The thermal insulation device integrated panel is generally composed of a veneer panel, thermal insulation cotton and back cloth. Different processing procedures need to arrange multiple workers for processing during production, and the overall production efficiency is low. SUMMARY

[0004] In order to solve the problem of low overall production efficiency, the present application provides an integrated panel production equipment.

[0005] The integrated panel production equipment provided by the present application adopts the following technical scheme:

[0006] An integrated panel production equipment comprises a first storage table, an automatic feeding device, an interface wiping and coating device, an automatic cotton pasting device, a back cloth glue pouring and laminating device, an automatic discharging device and a pressing device.

[0007] The automatic feeding device is used to move the veneer panel on the first storage table to the interface wiping and coating device.

[0008] The interface wiping and coating device is used to wipe and coat a surface treatment agent on the veneer panel and move the veneer panel to the automatic cotton pasting device.

[0009] The automatic cotton pasting device is used to arrange the thermal insulation cotton and paste the arranged thermal insulation cotton on the veneer panel.

[0010] The back cloth glue pouring and laminating device is used to pull and cut the back cloth of the required size of the veneer panel and paste the back cloth on the side of the thermal insulation cotton away from the veneer panel.

[0011] The automatic discharging device is used to move the veneer panel with the pasted back cloth to the pressing device.

[0012] The pressing device is used for pressing, heating and shaping the veneer panel.

[0013] By adopting the above technical scheme, the feeding operation, interface wiping and coating operation, cotton pasting operation, back cloth pasting operation and discharging operation of the veneer panel are all realized automatically, thereby improving the overall production efficiency.

[0014] As a preferred, the automatic feeding device comprises a first support, a chute is formed in the top of the first support, one end of the chute is located at the top of the first storage table, and the other end is located at the top of the interface wiping device, a first sliding block one is slidably arranged in the chute, the first sliding block one slides along the length direction of the chute, a first cylinder is fixed on the first sliding block one, the first cylinder is vertically arranged downwards, a first connecting rod is arranged on the piston rod of the first cylinder, a first limiting frame is fixed at the bottom of the first connecting rod, a first suction disc is fixedly arranged on one side of the first limiting frame, a second cylinder is fixedly arranged on the other side of the first limiting frame, the second cylinder is vertically arranged downwards, a second suction disc is fixedly arranged on the piston rod of the second cylinder, and the first suction disc and the second suction disc are used for sucking the veneer.

[0015] By adopting the above technical scheme, the veneer is moved to the interface wiping device by the automatic feeding device, when the veneer is moved, the second cylinder drives the second suction disc to move downwards to suck one side of the veneer, so that the adjacent veneers are separated, the purpose of breaking the space is achieved, and the next veneer is prevented from moving upwards together.

[0016] As a preferred, the interface wiping device comprises a first conveying line, a cleaning assembly and an interface wiping assembly, the first conveying line is used for receiving the veneer conveyed by the automatic feeding device and moving the veneer to the cleaning assembly, the cleaning assembly is used for removing dust and impurities on the surface of the veneer and moving the veneer to the interface wiping assembly, and the interface wiping assembly is used for wiping the surface treatment agent on the veneer.

[0017] By adopting the above technical scheme, the dust and impurities on the surface of the veneer are removed by the cleaning assembly, and then the surface treatment agent is wiped on the veneer by the interface wiping assembly, so that the subsequent adhesion of the thermal insulation cotton is facilitated.

[0018] As preferred, the interface wiping assembly comprises a first conveying belt, one end of the first conveying belt is arranged close to the cleaning assembly, the other end is arranged close to the automatic cotton pasting device, the top of the first conveying belt is provided with an interface wiping frame, a storage box is fixed on the interface wiping frame, a plurality of discharge holes are formed on the storage box, the discharge holes are sequentially distributed along the conveying direction of the first conveying belt, a third cylinder is fixed on the interface wiping frame, the third cylinder is vertically arranged downwards, a limiting support is fixed on the piston rod of the third cylinder, the limiting support is located at the bottom of the storage box, a sealing box is arranged at the bottom of each discharge hole, the sealing box corresponds to the discharge hole one by one, a discharging pipe is communicated at each discharge hole, one end of the discharging pipe is connected to the inner wall of the discharge hole, the other end penetrates into the sealing box corresponding to the discharge hole, a limiting groove is formed at the bottom of the sealing box, a sponge is arranged at the bottom of the sealing box, the outer wall of the sponge is connected to the inner wall of the limiting groove, and the automatic cotton pasting device is provided with a heating and cooling assembly close to one side of the first conveying belt.

[0019] By adopting the above technical scheme, the storage box stores the surface treatment agent, the surface treatment agent is absorbed by the sponge through the discharging pipe, and when the veneer moves on the belt, the sponge can wipe and coat the surface treatment agent on the veneer, so that the coating of the surface treatment agent is more uniform.

[0020] As preferred, the automatic cotton pasting device comprises a glue spraying assembly, an automatic insulation cotton layout assembly, an insulation cotton clamping jaw and a second conveying line, the glue spraying assembly is arranged between the second conveying line and the interface wiping device, the insulation cotton clamping jaw is arranged on one side of the second conveying line, the insulation cotton clamping jaw is used for clamping the insulation cotton on the automatic insulation cotton layout assembly and placing the insulation cotton on the veneer, the automatic insulation cotton layout assembly comprises a cotton pushing table and a cotton placing table, the cotton pushing table and the cotton placing table are arranged adjacently, a fixed plate is fixed on the top of the cotton placing table, a fourth cylinder is arranged on the side of the fixed plate away from the cotton pushing table, the fourth cylinder is arranged towards the fixed plate, the piston rod of the fourth cylinder penetrates through the fixed plate, a first cotton pushing plate is arranged on the side of the fixed plate close to the cotton pushing table, and the piston rod of the fourth cylinder is fixedly connected with the first cotton pushing plate.

[0021] By adopting the above technical scheme, the automatic insulation cotton layout assembly is used for selecting and arranging the stacked insulation cotton, and the insulation cotton is moved to the veneer through the insulation cotton clamping jaw, so that the automation of the insulation cotton pasting operation is realized, and the overall production efficiency is improved.

[0022] Preferably, the cotton pushing table is provided with a placing plate, first and second lifting grooves are formed in the sidewall of the cotton pushing table, an installation rod is fixed to the sidewall of the cotton pushing table, a plurality of meshing teeth are vertically arranged on the installation rod, first and second sliding rods are arranged on the sidewall of the cotton pushing table, a first sliding block is slidably arranged on the first sliding rod, a second sliding block is slidably arranged on the second sliding rod, a moving plate is fixedly arranged on the first sliding block, the moving plate is fixedly connected with the second sliding block, a first motor is fixedly arranged on the sidewall of the moving plate away from the first sliding block, a rotating shaft of the first motor is arranged through the moving plate, a first gear is fixedly arranged on the rotating shaft of the first motor, the first gear is meshed with the installation rod, an installation plate is arranged on the top of the cotton pushing table, the installation plate is arranged on the side of the cotton pushing table close to the cotton swinging table, a fifth cylinder is fixedly arranged on the sidewall of the installation plate close to the cotton pushing table, a piston rod of the fifth cylinder is arranged through the installation plate, a cotton pushing piece is arranged on the side of the installation plate away from the cotton pushing table, the cotton pushing piece is fixedly connected with the piston rod of the fifth cylinder, a sixth cylinder is arranged on one side of the cotton pushing table, the sixth cylinder faces the cotton pushing table, a centering plate is fixedly arranged on the piston rod of the sixth cylinder, a guide rod is arranged on the side of the cotton pushing table without the sixth cylinder, and a second conveying belt is arranged on the side of the cotton pushing table away from the cotton swinging table.

[0023] By adopting the above technical scheme, the first gear of the first motor is meshed with the installation rod, so as to drive the placing plate to lift, when the placing plate moves downward to be flush with the cotton swinging table, the heat preservation cotton on the cotton swinging table is pushed onto the placing plate, the sixth cylinder drives the centering plate to move, so as to center the heat preservation cotton, the cotton pushing piece moves to push the heat preservation cotton onto the second conveying belt, and through the above operation, the heat preservation cotton is moved and arranged, so that the heat preservation cotton can be neatly attached to the veneer.

[0024] Preferably, the back cloth glue spraying and covering device is arranged at the end of the automatic cotton pasting device away from the interface wiping device, the back cloth glue spraying and covering device comprises a back cloth glue spraying rack and a third conveying line, the third conveying line is arranged at the side of the automatic cotton pasting device away from the interface wiping device, the back cloth glue spraying rack is provided with a back cloth unwinding roller, a glue storage disc, an upper clamping plate and a lower clamping plate, the glue storage disc is arranged at the side of the back cloth unwinding roller away from the automatic cotton pasting device, the upper clamping plate and the lower clamping plate are arranged at the side of the glue storage disc away from the back cloth unwinding roller, the lower clamping plate is arranged at the bottom of the upper clamping plate, the third conveying line is provided with a first clamping jaw, a second clamping jaw and a third clamping jaw, the second clamping jaw is fixedly arranged at the side of the third conveying line away from the back cloth glue spraying rack, the third clamping jaw is fixedly arranged at the side of the third conveying line close to the back cloth glue spraying rack, the third conveying line is provided with a third sliding rod, the length direction of the third sliding rod is consistent with the conveying direction of the third conveying line, the first sliding support and the second sliding support are slidably arranged on the third sliding rod, the bottom of the second sliding support is provided with a flattening plate, the first clamping jaw is arranged on the first sliding support, and the back cloth glue spraying rack is provided with a cutting knife, the cutting knife is arranged at the side of the upper clamping plate close to the first sliding support.

[0025] By adopting the above technical scheme, after the veneer is pasted with the thermal insulation cotton, the veneer continues to move to the third conveying line, the back cloth passes through the glue storage disc, the back surface of the back cloth is adhered with glue, the first clamping jaw clamps the end surface of the back cloth, the first sliding support moves towards the second clamping jaw, the end of the back cloth is pulled to the second clamping jaw, the second clamping jaw clamps the end of the back cloth, the first clamping jaw is released, the third clamping jaw clamps the two side edges of the back cloth, the cutting knife moves to cut the back cloth, and the second sliding support moves, so that the flattening plate is used to paste the back cloth on the thermal insulation cotton, the automatic operation of the back cloth pasting operation is realized, and the overall production efficiency is improved.

[0026] Preferably, the back cloth glue spraying and covering device further comprises an automatic weighing mechanism, the third conveying line is composed of a plurality of rotating rollers, the automatic weighing mechanism comprises a weighing frame, a second motor and a second gear, the weighing frame is arranged at the bottom of the third conveying line, a weighing rod is arranged between adjacent two rotating rollers, the weighing rod is fixed on the weighing frame, a pressure sensor is arranged at the top of each weighing rod, the second motor is horizontally fixed at the bottom of the third conveying line, the second gear is fixed on the rotating shaft of the second motor, a lifting rod is arranged on the third conveying line, a plurality of meshing teeth are vertically arranged on the lifting rod, the gear is meshed with the lifting rod, and the top of the lifting rod is fixedly connected with the weighing frame.

[0027] By adopting the above technical scheme, the veneer is weighed by the automatic weighing mechanism, so that whether the glue on the surface of the veneer is sufficient is determined, if the overall weight of the veneer does not reach the required weight, the veneer is treated as a waste board, and the yield of the veneer is improved.

[0028] Preferably, the back cloth gluing and covering device further comprises an automatic centering mechanism, the automatic centering mechanism comprises a seventh cylinder, an eighth cylinder, a first centering rod and a second centering rod, the seventh cylinder and the eighth cylinder are respectively arranged on the two sides of the third conveying line, the seventh cylinder is vertically upward, the eighth cylinder is arranged toward the seventh cylinder, the first centering rod is vertically arranged and fixedly connected with the piston rod of the seventh cylinder, and the second centering rod is arranged toward the conveying direction of the third conveying line and fixedly connected with the piston rod of the eighth cylinder.

[0029] By using the above technical scheme, the position of the veneer is adjusted by the automatic centering mechanism, so that the back cloth can be more accurately attached to the veneer.

[0030] Preferably, the automatic feeding device comprises a second support, a transport trolley, a partition plate adsorption mechanism and a moving clamp plate, the partition plate adsorption mechanism and the moving clamp plate are both slidingly arranged on the second support, the partition plate adsorption mechanism is used for adsorbing the partition plate and placing it on the veneer on the third conveying line, the moving clamp plate is used for clamping the veneer on the third conveying line and placing it on the transport trolley, the transport trolley is used for transporting the veneer to the pressing device, and the pressing device is used for pressing, heating and shaping the veneer.

[0031] In summary, the present application has at least one of the following beneficial technical effects:

[0032] 1. The veneer feeding operation, interface wiping operation, cotton sticking operation, back cloth attaching operation and discharging operation are all automated, thereby improving the overall production efficiency;

[0033] 2. The first gear of the first motor is engaged with the mounting rod to drive the placement plate to move up and down, when the placement plate moves down to be flush with the cotton placing table, the heat preservation cotton on the cotton placing table is pushed onto the placement plate, the sixth cylinder drives the centering plate to move to center the heat preservation cotton, and the cotton pushing piece moves to push the heat preservation cotton onto the second conveying belt, thereby realizing the movement and arrangement of the heat preservation cotton, so that the heat preservation cotton can be neatly attached to the veneer;

[0034] 3. After the veneer is attached to the heat preservation cotton, it continues to move to the third conveying line, the back cloth has glue on the back after passing through the storage disc, the first clamp jaw clamps the end face of the back cloth, the first sliding support moves toward the second clamp jaw, the end of the back cloth is pulled to the second clamp jaw, the second clamp jaw clamps the end of the back cloth, the first clamp jaw is released, the third clamp jaw clamps the two sides of the back cloth, the cutting knife moves to cut the back cloth, and the second sliding support moves, so that the back cloth is attached to the heat preservation cotton by the flattening plate, realizing the full automation of the back cloth sticking operation, thereby improving the overall production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0035] Figure 1 is a schematic diagram of the overall structure of the integrated plate production equipment in the embodiment of the present application.

[0036] Figure 2 is a schematic diagram of the structure at the automatic feeding device in the embodiment of the present application.

[0037] Figure 3 is a schematic diagram of the structure at the interface wiping and coating device in the embodiment of the present application.

[0038] Figure 4 is a schematic diagram of the structure at the automatic laminating device in the embodiment of the present application. Figure 3 is a partial enlarged view of part A in

[0039] Figure 5 is a schematic diagram of the structure at the automatic laminating device in the embodiment of the present application.

[0040] Figure 6 is a schematic diagram of the structure at the automatic laminating device in the embodiment of the present application. Figure 5 is a partial enlarged view of part B in

[0041] Figure 7 is a schematic diagram of the structure at the automatic laminating device in the embodiment of the present application.

[0042] Figure 8 is a schematic diagram of the structure at the automatic laminating device in the embodiment of the present application.

[0043] Figure 9 is a schematic diagram of the structure at the automatic laminating device in the embodiment of the present application. Figure 8 is a partial enlarged view of part C in

[0044] Figure 10 is a schematic diagram of the structure at the automatic laminating device in the embodiment of the present application.

[0045] Figure 11 is a partial enlarged view of part D in Figure 8

[0046] Figure 12 is a schematic diagram of the structure at the automatic laminating device in the embodiment of the present application.

[0047] Explanation of reference signs:

[0048] ​1, first storage platform; 2, automatic feeding device; 21, first support; 22, chute; 23, first sliding block one; 24, first air cylinder; 25, first connecting rod; 26, first limiting frame; 27, first suction cup; 28, second air cylinder; 29, second suction cup; 3, interface wiping and coating device; 31, first conveying line; 32, cleaning assembly; 33, interface wiping and coating assembly; 331, first conveying belt; 332, interface wiping and coating frame; 333, storage box; 334, discharge hole; 335, third air cylinder; 336, limiting support; 337, sealing box; 338, discharging pipe; 339, limiting groove; 340, sponge wipe; 341, ninth air cylinder; 342, material blocking plate; 34, heating and cooling assembly; 4, automatic cotton pasting device; 41, glue spraying assembly; 42, automatic layout assembly of thermal insulation cotton; 420, cotton pushing table; 4201, placing plate; 4202, first lifting groove; 4203, second lifting groove; 4204, mounting rod; 4205, first sliding rod; 4206, second sliding rod; 4207, first sliding block two; 4208, second sliding block; 4209, moving plate; 4210, first motor; 4211, first gear; 4212, mounting plate; 4213, fifth air cylinder; 4214, cotton pushing piece; 4215, second conveying belt; 4216, sixth air cylinder; 4217, centering plate; 4218, guide rod; 422, cotton swinging table; 4221, fixed plate; 4222, fourth air cylinder; 4223, first cotton pushing plate; 43, thermal insulation cotton clamping jaw; 44, second conveying line; 5, back cloth glue spraying and laminating device; 51, back cloth glue spraying rack; 52, third conveying line; 521, rotating roller; 53, back cloth unwinding roller; 54, glue storage disc; 55, upper clamping plate; 56, lower clamping plate; 57, first clamping jaw; 58, second clamping jaw; 59, third clamping jaw; 6, automatic discharging device; 61, second support; 62, transport trolley; 63, partition plate adsorption mechanism; 64, moving clamping plate; 7, pressing device; 8, third sliding rod; 9, first sliding support; 10, cutting knife; 11, automatic weighing mechanism; 111, weighing frame; 112, second motor; 113, second gear; 115, pressure sensor; 116, lifting rod; 117, weighing rod; 12, automatic centering mechanism; 121, seventh air cylinder; 122, eighth air cylinder; 123, first centering rod; 124, second centering rod; 13, second sliding support; 14, flattening plate; 15, limiting plate; 16, ninth air cylinder. DETAILED DESCRIPTION

[0049] The following will be described in detail with reference to the accompanying drawings Figures 1-10 The application is further described in detail.

[0050] The embodiment of the application discloses an integrated plate production equipment. Figure 1The integrated board production equipment comprises a first storage table 1, an automatic feeding device 2, an interface wiping and coating device 3, an automatic cotton pasting device 4, a back cloth glue spraying and laminating device 5, an automatic discharging device 6 and a pressing device 7, and a plurality of veneers are stacked on the first storage table 1. The automatic feeding device 2, the interface wiping and coating device 3, the automatic cotton pasting device 4 and the back cloth glue spraying and laminating device 5 are sequentially arranged along the processing direction of the veneer.

[0051] Specifically, the automatic feeding device 2 is used to move the veneer on the first storage table 1 to the interface wiping and coating device 3; the interface wiping and coating device 3 is used to remove dust on the surface of the veneer and wipe the surface treatment agent on the veneer, and the interface wiping and coating device 3 is also used to move the veneer to the automatic cotton pasting device 4; the automatic cotton pasting device 4 is used to arrange the thermal insulation cotton and paste the arranged thermal insulation cotton on the veneer; the back cloth glue spraying and laminating device 5 is used to pull and cut the back cloth of the required size of the veneer and paste the back cloth on the side of the thermal insulation cotton away from the veneer; the automatic discharging device 6 is used to move the veneer with the pasted back cloth to the pressing device 7; and the pressing device 7 is used to press, heat and shape the veneer.

[0052] With reference to Figure 2 The automatic feeding device 2 comprises a first support 21, and the interface wiping and coating device 3 comprises a first conveying line 31. The first storage table 1 and the first conveying line 31 are arranged at the bottom of the first support 21, a sliding groove 22 is formed in the top of the first support 21, and the first storage table 1 and the first conveying line 31 are respectively located at two ends of the sliding groove 22. A first sliding block 23 is arranged in the sliding groove 22 and slides along the sliding groove 22, the first sliding block 23 is driven by a sliding table module, a first air cylinder 24 is fixed on the first sliding block 23, and the first air cylinder 24 is vertically arranged downward. A first connecting rod 25 is fixedly connected to the piston rod of the first air cylinder 24, and a first limiting frame 26 is fixed to the bottom of the first connecting rod 25. In this embodiment, the first limiting frame 26 is H-shaped, a first suction disc 27 and a second air cylinder 28 are respectively connected to two sides of the first limiting frame 26, and the second air cylinder 28 is vertically arranged downward. A second suction disc 29 is fixedly arranged on the piston rod of the second air cylinder 28, and the first suction disc 27 and the second suction disc 29 are used to suck the veneer.

[0053] In implementation, the first slider 23 moves to the top of the first storage platform 1, at this time the first cylinder 24 drives the first limiting frame 26 to descend, then the second cylinder 28 drives the second suction cup 29 to descend, so that the second suction cup 29 sucks the topmost veneer. After the second suction cup 29 sucks the veneer, the second cylinder 28 drives the second suction cup 29 to ascend, so as to suck one side of the veneer, so as to separate the adjacent veneers, so as to achieve the purpose of breaking the space, preventing the next veneer from moving up together. Then the second cylinder 28 drives the second suction cup 29 to move again, so that the second suction cup 29 is consistent with the height of the first suction cup 27. After the height of the second suction cup 29 is consistent with the height of the first suction cup 27, the first cylinder 24 drives the first limiting frame 26 to descend, so that the first suction cup 27 and the second suction cup 29 suck the top surface of the veneer at the same time, then the first cylinder 24 drives the first limiting frame 26 to ascend, the first slider 23 drives the first cylinder 24 to move to the top of the first conveying line 31, and finally the first cylinder 24 descends again to place the veneer on the first conveying line 31.

[0054] With reference to Figure 3 , the interface wiping device 3 further comprises a cleaning assembly 32 and an interface wiping assembly 33. In the embodiment, the cleaning assembly 32 is a surface dust cleaning machine. In implementation, after receiving the veneer conveyed by the automatic feeding device 2, the first conveying line 31 moves the veneer to the cleaning assembly 32, and the cleaning assembly 32 removes the dust on the surface of the veneer, and then moves the veneer to the interface wiping assembly 33.

[0055] With reference to Figure 3 and Figure 4The interface wiping assembly 33 comprises a first conveying belt 331, one end of the first conveying belt 331 is arranged close to the cleaning assembly 32, and the other end is arranged close to the automatic cotton pasting device 4. The top of the first conveying belt 331 is provided with an interface wiping frame 332, and a storage box 333 is fixed on the interface wiping frame 332. The storage box 333 stores a surface treatment agent. A plurality of discharge holes 334 are formed in the bottom of the storage box 333, and the plurality of discharge holes 334 are sequentially distributed along the length direction of the interface wiping frame 332. A third cylinder 335 is fixedly arranged on the interface wiping frame 332 and vertically downwardly arranged. A limiting support 336 is fixedly arranged on the piston rod of the third cylinder 335, and the limiting support 336 is located at the bottom of the storage box 333. A sealing box 337 is arranged at the bottom of each discharge hole 334, all the sealing boxes 337 are fixedly arranged on the limiting support 336, and the sealing boxes 337 correspond to the discharge holes 334 one by one. Each discharge hole 334 is communicated with a discharging pipe 338, one end of the discharging pipe 338 is connected to the inner wall of the discharge hole 334, and the other end penetrates into the sealing box 337 corresponding to the discharge hole 334. A limiting groove 339 is formed in the bottom of the sealing box 337, and a sponge 340 is arranged at the bottom of the sealing box 337, and the outer side wall of the sponge 340 is connected to the inner wall of the limiting groove 339.

[0056] In the implementation, the surface treatment agent in the storage box 333 is absorbed by the sponge 340 through the discharging pipe 338. When the first conveying belt 331 moves the veneer to the bottom of the interface wiping frame 332, the third cylinder 335 drives the limiting support 336 to descend, so that the sponge 340 absorbing the surface treatment agent is attached to the veneer, so that the sponge 340 wipes the surface treatment agent on the surface of the veneer.

[0057] Referring to Figure 4 , one side of the first conveying belt 331 is horizontally provided with a ninth cylinder 341, and a blocking plate 342 is fixedly connected to the piston rod of the ninth cylinder 341. In the implementation, when there is no veneer on the first conveying belt 331, the ninth cylinder 341 drives the blocking plate 342 to move to the bottom of the limiting support 336, so as to prevent the surface treatment agent on the sponge 340 from dripping onto the first conveying belt 331.

[0058] Referring to Figure 5 , the automatic cotton pasting device 4 is provided with a heating and cooling assembly 34 close to one side of the first conveying belt 331. The automatic cotton pasting device 4 comprises a glue spraying assembly 41, a heat preservation cotton automatic layout assembly 42, a heat preservation cotton clamping jaw 43 and a second conveying line 44. The glue spraying assembly 41 is arranged between the second conveying line 44 and the heating and cooling assembly 34, and is used for spraying glue on the surface of the veneer.

[0059] In the implementation, the veneer panel needs to pass through the heating and cooling assembly 34 for heating and cooling treatment before the glue pouring operation. In the embodiment of the present application, the heating and cooling assembly 34 is a heating and cooling machine.

[0060] With reference to Figure 5 and Figure 6 The heat insulation cotton clamping jaw 43 is arranged on one side of the second conveying line 44. The heat insulation cotton clamping jaw 43 is used for clamping the heat insulation cotton on the heat insulation cotton automatic layout assembly 42 and placing the heat insulation cotton on the veneer panel. The heat insulation cotton automatic layout assembly 42 includes the cotton pushing table 420 and the cotton placing table 422, and the cotton pushing table 420 and the cotton placing table 422 are adjacently arranged.

[0061] With reference to Figure 7 The top of the cotton placing table 422 is fixed with the fixed plate 4221, the side of the fixed plate 4221 away from the cotton pushing table 420 is provided with the fourth air cylinder 4222, the fourth air cylinder 4222 is arranged towards the fixed plate 4221, the piston rod of the fourth air cylinder 4222 is arranged through the fixed plate 4221, the side of the fixed plate 4221 close to the cotton pushing table 420 is provided with the first cotton pushing plate 4223, and the piston rod of the fourth air cylinder 4222 is fixedly connected with the first cotton pushing plate 4223.

[0062] With reference to Figure 5 and Figure 6 The cotton pushing table 420 is provided with the placing plate 4201, the side wall of the cotton pushing table 420 is provided with the first lifting groove 4202 and the second lifting groove 4203, the side wall of the cotton pushing table 420 provided with the first lifting groove 4202 is fixedly provided with the first sliding rod 4205 and the second sliding rod 4206 arranged vertically, the first sliding rod 4205 is slidably provided with the first sliding block two 4207, the second sliding rod 4206 is slidably provided with the second sliding block 4208, the first sliding block two 4207 is fixedly provided with the moving plate 4209, and the moving plate 4209 is fixedly connected with the second sliding block 4208. The side wall of the moving plate 4209 away from the first sliding block two 4207 is fixedly provided with the first motor 4210, and the rotating shaft of the first motor 4210 is arranged through the moving plate 4209. The side of the first sliding block two 4207 close to the cotton pushing table 420 is provided with the first gear 4211, and the first gear 4211 is fixedly connected with the rotating shaft of the first motor 4210. The side wall of the cotton pushing table 420 is fixedly provided with the mounting rod 4204, the mounting rod 4204 is vertically provided with a plurality of meshing teeth, the first gear 4211 is engaged with the mounting rod 4204, and the first sliding block two 4207 and the second sliding block 4208 are fixedly connected with the placing plate 4201.

[0063] In the implementation, the first motor 4210 drives the first gear 4211 to rotate, thereby driving the placing plate 4201 to ascend and descend. When it is needed to receive the heat preservation cotton on the cotton placing table 422, the first motor 4210 drives the placing plate 4201 to descend to the same height as the cotton placing table 422. Then the fourth cylinder 4222 drives the first cotton pushing plate 4223 to move towards the cotton placing table 420, and the first cotton pushing plate 4223 pushes all the heat preservation cotton on the cotton placing table 422 onto the placing plate 4201.

[0064] With reference to Figure 5 and Figure 6 , the top of the cotton placing table 420 is provided with a mounting plate 4212, which is arranged on the side of the cotton placing table 420 close to the cotton placing table 422. The mounting plate 4212 is fixedly arranged on the side wall of the cotton placing table 420 close to the cotton placing table 422, and the fifth cylinder 4213 is arranged on the mounting plate 4212. The piston rod of the fifth cylinder 4213 penetrates through the mounting plate 4212, and the mounting plate 4212 is arranged on the cotton placing table 420 to slide along the extension direction of the fifth cylinder 4213. The side of the mounting plate 4212 away from the cotton placing table 420 is provided with a cotton pushing piece 4214, and the cotton pushing piece 4214 is fixedly connected with the piston rod of the fifth cylinder 4213. The side of the cotton placing table 420 away from the cotton placing table 422 is provided with a second conveying belt 4215, and the fifth cylinder 4213 is used to drive the cotton pushing piece 4214 to move towards the second conveying belt 4215.

[0065] In the implementation, the sixth cylinder 4216 drives the centering plate 4217 to move, thereby ensuring that the positions of the several pieces of heat preservation cotton are flush and centered.

[0066] With reference to Figures 8 to 10 , the back cloth glue spraying and laminating device 5 is arranged on the side of the automatic cotton pasting device 4 away from the interface wiping and coating device 3. The back cloth glue spraying and laminating device 5 comprises a back cloth glue spraying rack 51 and a third conveying line 52, and the third conveying line 52 is arranged on the side of the back cloth glue spraying rack 51 away from the automatic cotton pasting device 4.

[0067] Specifically, the back cloth glue dripping rack 51 is provided with a back cloth unwinding roller 53, a glue storage disc 54, an upper clamping plate 55 and a lower clamping plate 56. The glue storage disc 54 is arranged on the side of the back cloth unwinding roller 53 away from the automatic cotton sticking device 4. The upper clamping plate 55 and the lower clamping plate 56 are both arranged on the side of the glue storage disc 54 away from the back cloth unwinding roller 53. The lower clamping plate 56 is arranged at the bottom of the upper clamping plate 55. The third conveying line 52 is provided with a first clamping jaw 57, a second clamping jaw 58 and a third clamping jaw 59. The second clamping jaw 58 is arranged on the side of the third conveying line 52 away from the back cloth glue dripping rack 51. The third clamping jaw 59 is fixedly arranged on the side of the third conveying line 52 close to the back cloth glue dripping rack 51. The third conveying line 52 is provided with a third sliding rod 8. The length direction of the third sliding rod 8 is consistent with the conveying direction of the third conveying line 52. The first sliding support 9 and the second sliding support 13 are slidably arranged on the third sliding rod 8. The bottom of the second sliding support 13 is provided with a flattening plate 14. The first clamping jaw 57 is arranged on the first sliding support 9. The back cloth glue dripping rack 51 is provided with a cutting knife 10. The cutting knife 10 is arranged on the side of the upper clamping plate 55 close to the first sliding support 9.

[0068] With reference to Figure 8 and Figure 11 , the back cloth glue dripping and laminating device 5 further comprises a limiting plate 15 and a ninth cylinder 16. The ninth cylinder 16 is fixedly arranged on the side of the third conveying line 52 away from the back cloth glue dripping rack 51. The ninth cylinder 16 is vertically upwardly arranged. The limiting plate 15 is fixedly arranged on the top of the ninth cylinder 16. The second clamping jaw 58 is fixedly arranged on the side of the limiting plate 15 close to the back cloth glue dripping rack 51.

[0069] In implementation, after the veneer is laminated with the thermal insulation cotton, the veneer continues to move to the third conveying line 52. After the back cloth passes through the glue storage disc 54, the back surface is adhered with glue. The first clamping jaw 57 clamps the end surface of the back cloth. The first sliding support 9 moves towards the second clamping jaw 58. The end of the back cloth is pulled to the second clamping jaw 58. The second clamping jaw 58 clamps the end of the back cloth. The first clamping jaw 57 is released. The third clamping jaw 59 clamps the two side edges of the back cloth. The cutting knife 10 moves to cut the back cloth. The ninth cylinder 16 drives the limiting plate 15 to descend, so that the back cloth is laminated on the thermal insulation cotton. The second sliding support 13 moves, so that the flattening plate 14 is used to completely laminate the back cloth on the thermal insulation cotton. The automatic operation of the back cloth sticking operation is realized. The overall production efficiency is improved.

[0070] With reference to Figure 9 and Figure 10The back cloth glue pouring and laminating device 5 further comprises an automatic weighing mechanism 11, the third conveying line 52 is composed of a plurality of rotating rollers 521, the automatic weighing mechanism 11 comprises a weighing frame 111, a second motor 112 and a second gear 113, the weighing frame 111 is arranged at the bottom of the third conveying line 52, and a weighing rod 117 is arranged between adjacent two rotating rollers 521. The weighing rod 117 is fixed on the weighing frame 111, a pressure sensor 115 is arranged at the top of each weighing rod 117, the second motor 112 is horizontally fixed at the bottom of the third conveying line 52, the second gear 113 is fixed on the rotating shaft of the second motor 112, a lifting rod 116 is arranged on the third conveying line 52, a plurality of meshing teeth are vertically arranged on the lifting rod 116, the second gear 113 is meshed with the lifting rod 116, and the top of the lifting rod 116 is fixedly connected with the weighing frame 111.

[0071] In implementation, when the veneer is moved to the third conveying line 52, the second motor 112 drives the second gear 113 to rotate, thereby driving the lifting rod 116 to rise, so that the weighing rod 117 on the weighing frame 111 props up the veneer, and the weighing operation of the veneer is realized. The veneer is weighed by the automatic weighing mechanism 11, so that whether the glue on the surface of the veneer is sufficient is judged, if the overall weight of the veneer does not reach the required weight, the veneer is treated as waste board, and the yield of the veneer is improved.

[0072] With reference to Figure 8 and Figure 9 The back cloth glue pouring and laminating device 5 further comprises an automatic centering mechanism 12, the automatic centering mechanism 12 comprises a seventh cylinder 121, an eighth cylinder 122, a first centering rod 123 and a second centering rod 124, the seventh cylinder 121 and the eighth cylinder 122 are arranged on the two sides of the third conveying line 52, the seventh cylinder 121 is vertically upwardly arranged, the eighth cylinder 122 is arranged towards the seventh cylinder 121, the first centering rod 123 is vertically arranged and fixedly connected with the piston rod of the seventh cylinder 121, and the second centering rod 124 is arranged in the same direction as the conveying direction of the third conveying line 52 and is fixedly connected with the piston rod of the eighth cylinder 122.

[0073] In implementation, when the veneer is moved to the third conveying line 52, the seventh cylinder 121 drives the first centering rod 123 to rise, and the eighth cylinder 122 drives the second centering rod 124 to move towards the seventh cylinder 121, thereby pushing the veneer on the third conveying line 52 towards the first centering rod 123, so that the position of the veneer is adjusted, and the back cloth can be more accurately attached to the veneer.

[0074] With reference to Figure 1The automatic discharging device 6 comprises a second support 61, a transport trolley 62, a partition plate suction mechanism 63 and a moving clamp plate 64. The partition plate suction mechanism 63 and the moving clamp plate 64 are both slidingly arranged on the second support 61. The partition plate suction mechanism 63 is used for sucking and placing the partition plate on the veneer on the third conveying line 52. The moving clamp plate 64 is used for clamping the veneer on the third conveying line 52 and placing the veneer on the transport trolley 62. The transport trolley 62 is used for transporting the veneer to the pressing device 7. The pressing device 7 is used for pressing, heating and shaping the veneer.

[0075] In the embodiment of the present application, six pressing devices 7 are provided. Three of the pressing devices 7 are arranged on the side of the first conveying line 31 away from the third conveying line 52. The other three pressing devices 7 are arranged on the side of the third conveying line 52 away from the first conveying line 31. A first track is arranged between the pressing devices 7 on the two sides. A second track is arranged between the adjacent pressing devices 7 on the side of the third conveying line 52 away from the first conveying line 31. A third track is arranged between the adjacent pressing devices 7 on the side of the first conveying line 31 away from the third conveying line 52. Two transport trolleys 62 are arranged on the first track. One transport trolley 62 is arranged on the second track and one transport trolley 62 is arranged on the third track. One of the transport trolleys 62 on the first track is used for moving the veneer to the transport trolley 62 on the second track. The other transport trolley 62 on the first track is used for moving the veneer to the transport trolley 62 on the third track. The transport trolley 62 on the second track is used for sequentially transporting the veneer to the pressing devices 7 on the second track. The transport trolley 62 on the third track is used for sequentially transporting the veneer to the pressing devices 7 on the third track. The embodiment improves the efficiency of pressing, heating and shaping of the veneer by the shunting of the veneer and the arrangement of multiple pressing devices 7.

[0076] The above are the preferred embodiments of the present application, which do not limit the protection scope of the present application. Any equivalent changes made on the basis of the structure, shape and principle of the present application should be covered by the protection scope of the present application.

Claims

1. An integrated panel production equipment, characterized in that: It includes a first storage platform (1), an automatic feeding device (2), an interface wiping device (3), an automatic cotton pasting device (4), a backing fabric glue coating device (5), an automatic unloading device (6), and a pressing device (7); The automatic feeding device (2) is used to move the decorative panel on the first storage platform (1) to the interface wiping device (3); The interface wiping device (3) is used to apply the surface treatment agent to the decorative panel and move the decorative panel to the automatic cotton applicator (4); The automatic cotton applicator (4) is used to arrange the thermal insulation cotton and then paste the arranged thermal insulation cotton onto the decorative panel. The backing fabric coating device (5) is used to pull up and cut the backing fabric of the required size for the decorative panel, and to attach the backing fabric to the side of the insulation cotton away from the decorative panel. The automatic feeding device (6) is used to move the decorative panel with the backing fabric attached to the pressing device (7); The pressing device (7) is used to press, heat, and shape the decorative panel; The automatic cotton applicator (4) includes a glue-applying assembly (41), an automatic insulation cotton layout assembly (42), insulation cotton grippers (43), and a second conveyor line (44). The glue-applying assembly (41) is located between the second conveyor line (44) and the interface wiping device (3). The insulation cotton grippers (43) are located on one side of the second conveyor line (44) and are used to grip the insulation cotton on the automatic insulation cotton layout assembly (42) and place it on the decorative panel. The automatic insulation cotton layout assembly (42) includes a cotton-pushing table (420) and a cotton-placing table (422). The cotton sloshing table (422) is arranged adjacent to the cotton sloshing table (422). A fixing plate (4221) is fixed on the top of the cotton sloshing table (4221). A fourth cylinder (4222) is provided on the side of the fixing plate (4221) away from the cotton pushing table (420). The fourth cylinder (4222) is arranged facing the fixing plate (4221). The piston rod of the fourth cylinder (4222) is arranged through the fixing plate (4221). A first cotton pushing plate (4223) is provided on the side of the fixing plate (4221) close to the cotton pushing table (420). The piston rod of the fourth cylinder (4222) is fixedly connected to the first cotton pushing plate (4223). The cotton pushing table (420) is provided with a placement plate (4201). A first lifting groove (4202) and a second lifting groove (4203) are provided on the side wall of the cotton pushing table (420). An installation rod (4204) is fixed to the side wall of the cotton pushing table (420), and several meshing teeth are vertically provided on the installation rod (4204). The side wall of the cotton pushing table (420) is also provided with a first sliding rod (4205) and a second sliding rod (4206). A first slider (4207) is slidably mounted on the first sliding rod (4205), and a second slider (4208) is slidably mounted on the second sliding rod (4206). The first slider (4207) and the second slider (4208) are both fixedly connected to the placement plate (4201). A movable plate (4209) is fixedly mounted on the first slider (4207). The movable plate (4209) is fixedly connected to the second slider (4208). A first motor (4210) is fixedly mounted on the side wall of the movable plate (4209) away from the first slider (4207). The shaft of the first motor (4210) passes through the movable plate (4209). A first gear (4211) is fixedly mounted on the shaft of the first motor (4210). 211) Engages with the mounting rod (4204). The top of the cotton pushing table (420) is provided with a mounting plate (4212). The mounting plate (4212) is located on the side of the cotton pushing table (420) near the cotton swaying table (422). A fifth cylinder (4213) is fixedly mounted on the side wall of the mounting plate (4212) near the cotton pushing table (420). The piston rod of the fifth cylinder (4213) passes through the mounting plate (4212). The mounting plate (4212) is slidably mounted on the cotton pushing table (420) along the extension and retraction direction of the fifth cylinder (4213). The mounting plate (4212) is away from the cotton pushing table. A cotton pusher (4214) is provided on one side of the (420) and the cotton pusher (4214) is fixedly connected to the piston rod of the fifth cylinder (4213). A sixth cylinder (4216) is provided on one side of the cotton pusher (420) and the sixth cylinder (4216) is positioned facing the cotton pusher (420). A centering plate (4217) is fixedly provided on the piston rod of the sixth cylinder (4216). A guide rod (4218) is provided on the side of the cotton pusher (420) where the sixth cylinder (4216) is not provided. A second conveyor belt (4215) is provided on the side of the cotton pusher (420) away from the cotton placement table (422).

2. The integrated panel production equipment according to claim 1, characterized in that: The automatic feeding device (2) includes a first support (21), and a groove (22) is provided on the top of the first support (21). One end of the groove (22) is located on the top of the first storage platform (1), and the other end is located on the top of the interface wiping device (3). A first slider (23) is slidably arranged in the groove (22). The first slider (23) slides along the length of the groove (22). A first cylinder (24) is fixed on the first slider (23). The first cylinder (24) is arranged vertically downward. A first connecting rod (25) is provided on the piston rod of a cylinder (24). A first limiting frame (26) is fixed at the bottom of the first connecting rod (25). A first suction cup (27) is fixed on one side of the first limiting frame (26). A second cylinder (28) is fixed on the other side of the first limiting frame (26). The second cylinder (28) is set vertically downward. A second suction cup (29) is fixed on the piston rod of the second cylinder (28). Both the first suction cup (27) and the second suction cup (29) are used to hold the decorative panel.

3. The integrated panel production equipment according to claim 1, characterized in that: The interface wiping device (3) includes a first conveyor line (31), a cleaning component (32), and an interface wiping component (33). The first conveyor line (31) is used to receive the decorative panel conveyed by the automatic feeding device (2) and move the decorative panel onto the cleaning component (32). The cleaning component (32) is used to remove dust and impurities from the surface of the decorative panel and move the decorative panel onto the interface wiping component (33). The interface wiping component (33) is used to apply the surface treatment agent onto the decorative panel.

4. The integrated panel production equipment according to claim 3, characterized in that: The interface coating assembly (33) includes a first conveyor belt (331), one end of which is located near the cleaning assembly (32), and the other end is located near the automatic cotton applicator (4). An interface coating rack (332) is provided on the top of the first conveyor belt (331). A storage bin (333) is fixed on the interface coating rack (332), and the storage bin (333) has several discharge holes (334) arranged sequentially along the transmission direction of the first conveyor belt (331). A third cylinder (335) is fixed on the interface coating rack (332), and the third cylinder (335) is vertically downward. A limiting bracket (336) is fixed on the piston rod of the third cylinder (335). Located at the bottom of the storage box (333), each of the discharge holes (334) is provided with a sealing box (337) at the bottom. The sealing box (337) corresponds one-to-one with the discharge hole (334). Each discharge hole (334) is connected to a discharge pipe (338). One end of the discharge pipe (338) is connected to the inner wall of the discharge hole (334), and the other end passes through the sealing box (337) corresponding to the discharge hole (334). The bottom of the sealing box (337) is provided with a limiting groove (339). The bottom of the sealing box (337) is provided with a sponge (340). The outer wall of the sponge (340) is connected to the inner wall of the limiting groove (339). The automatic cotton applicator (4) is provided with a heating and cooling component (34) on the side near the first conveyor belt (331).

5. The integrated panel production equipment according to claim 1, characterized in that: The backing fabric coating and bonding device (5) is located at one end of the automatic cotton applicator (4) away from the interface wiping device (3). The backing fabric coating and bonding device (5) includes a backing fabric coating frame (51) and a third conveyor line (52). The third conveyor line (52) is located on the side of the automatic cotton applicator (4) away from the interface wiping device (3). The backing fabric coating frame (51) is provided with a backing fabric unwinding roller (53), a glue storage tray (54), an upper clamping plate (55), and a lower clamping plate (56). The glue storage tray (54) is located on the side of the backing fabric unwinding roller (53) away from the automatic cotton applicator (4). The upper clamping plate (55) and the lower clamping plate (56) are both located on the side of the glue storage tray (54) away from the backing fabric unwinding roller (53). The lower clamping plate (56) is located at the bottom of the upper clamping plate (55). The third conveyor line (52) is provided with a first gripper (57). The third conveyor has a second gripper (58) and a third gripper (59). The second gripper (58) is located on the side of the third conveyor line (52) away from the backing fabric coating machine frame (51). The third gripper (59) is fixedly located on the side of the third conveyor line (52) close to the backing fabric coating machine frame (51). The conveyor line has a third slide bar (8). The length direction of the third slide bar (8) is consistent with the conveying direction of the third conveyor line (52). The third slide bar (8) has a first sliding bracket (9) and a second sliding bracket (13) slidably mounted on it. The bottom of the second sliding bracket (13) has a pressure plate (14). The first gripper (57) is mounted on the first sliding bracket (9). The backing fabric coating machine frame (51) has a cutting knife (10). The cutting knife (10) is located on the side of the upper clamping plate (55) close to the first sliding bracket (9).

6. The integrated panel production equipment according to claim 5, characterized in that: The backing fabric coating device (5) further includes an automatic weighing mechanism (11). The third conveyor line (52) consists of several rotating rollers (521). The automatic weighing mechanism (11) includes a weighing frame (111), a second motor (112), and a second gear (113). The weighing frame (111) is located at the bottom of the third conveyor line (52). A weighing rod (117) is provided between each two adjacent rotating rollers (521). The weighing rods (117) are all fixed on the weighing frame (111). Each of the weighing rods (117) is equipped with a pressure sensor (115) at its top. The second motor (112) is horizontally fixed at the bottom of the third conveyor line (52). The second gear (113) is fixed on the shaft of the second motor (112). The third conveyor line (52) is equipped with a lifting rod (116). The lifting rod (116) is vertically equipped with several meshing teeth. The gear meshes with the lifting rod (116). The top of the lifting rod (116) is fixedly connected to the weighing frame (111).

7. The integrated panel production equipment according to claim 6, characterized in that: The backing fabric coating device (5) further includes an automatic centering mechanism (12), which includes a seventh cylinder (121), an eighth cylinder (122), a first centering rod (123), and a second centering rod (124). The seventh cylinder (121) and the eighth cylinder (122) are respectively located on both sides of the third conveyor line (52). The seventh cylinder (121) is vertically upward, and the eighth cylinder (122) is oriented towards the seventh cylinder (121). The first centering rod (123) is vertically oriented and fixedly connected to the piston rod of the seventh cylinder (121). The orientation of the second centering rod (124) is consistent with the transport direction of the third conveyor line (52), and the second centering rod (124) is fixedly connected to the piston rod of the eighth cylinder (122).

8. The integrated panel production equipment according to claim 5, characterized in that: The automatic feeding device (6) includes a second support (61), a transport trolley (62), a partition adsorption mechanism (63), and a movable clamping plate (64). The partition adsorption mechanism (63) and the movable clamping plate (64) are both slidably mounted on the second support (61). The partition adsorption mechanism (63) is used to pick up the partition and place it on the decorative panel on the third conveyor line (52). The movable clamping plate (64) is used to clamp the decorative panel on the third conveyor line (52) and place the decorative panel on the transport trolley (62). The transport trolley (62) is used to transport the decorative panel to the pressing device (7). The pressing device (7) is used to press, heat, and shape the decorative panel.

Citation Information

Patent Citations

  • Veneer production line and production process thereof

    CN109129761A

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    CN111497251A