Ecological plate cold press with automatic cleaning function

By integrating a cleaning mechanism into the ecological board cold press, and utilizing linear drive components, synchronous drive components, and telescopic control components, comprehensive cleaning of all surfaces of the ecological board is achieved, solving the problem of incomplete cleaning in traditional cold presses and improving production efficiency and product quality.

CN223834710UActive Publication Date: 2026-01-27GUANGDONG JIAJUN FOREST CO LTD
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Patent Information

Application Number
CN202423111544.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2026-01-27
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

Traditional cold presses lack automatic cleaning functions, making it difficult to effectively remove impurities from the surface of eco-boards, which affects product quality and production efficiency. Furthermore, existing cold presses with integrated cleaning functions suffer from poor cleaning effects, complex operation, and high maintenance costs.

Method used

An eco-friendly cold press with automatic cleaning function was designed. The integrated cleaning mechanism includes a cleaning base frame, cleaning arm, and sweeping arm. Through linear drive components, synchronous drive components, and telescopic control components, it can achieve comprehensive cleaning of all surfaces of the eco-friendly board. Combined with components such as negative pressure suction groove, cleaning groove, and sweeping arm, it ensures the consistency and efficiency of the cleaning effect.

Benefits of technology

It achieves comprehensive and efficient cleaning of the surface of ecological boards, reduces labor intensity, improves production efficiency and product quality, ensures consistent cleaning results, and saves space and production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cold pressing equipment, in particular to an ecological plate cold press with an automatic cleaning function, which comprises a cold pressing base, a cold pressing base frame arranged on the cold pressing base, a cold pressing pressure mechanism arranged on the cold pressing base frame, a cleaning base arranged on the cold pressing base, and a cleaning mechanism arranged on the cleaning base. The cleaning mechanism comprises a cleaning base frame, and cleaning arms are arranged on the two sides of the cleaning base frame. The cleaning base frame is provided with a horizontal track, the horizontal track is provided with a cleaning base, the cleaning base is provided with a cleaning arm, and the cleaning arm is provided with a cleaning head; the cleaning base is provided with a first cleaning assembly, the cleaning arm is provided with a second cleaning assembly, the cleaning arm is provided with a third cleaning assembly, and the cleaning head is provided with a fourth cleaning assembly. By means of the unique component structure, efficient and accurate cleaning of the surface of the cold pressing plate is achieved, meanwhile, high automation and adaptability are achieved, production efficiency and product quality are remarkably improved, and important practical value and market prospects are achieved.
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Description

Technical Field

[0001] This utility model relates to the field of cold pressing equipment technology, and in particular to an eco-friendly board cold press with automatic cleaning function. Background Technology

[0002] In the field of eco-board processing technology, traditional cold presses are mainly used for cold pressing and bonding of boards, but the cleaning of the board surface during the cold pressing process is often neglected. Eco-board, as an environmentally friendly board widely used in furniture manufacturing and interior decoration, has its surface quality directly affecting the product's aesthetics and bonding effect. In actual production, the surface of eco-board is easily contaminated with dust, stains, etc. If these impurities are not effectively cleaned before cold pressing, it will lead to weak bonding, thus affecting the quality and service life of the final product.

[0003] Traditional cold presses typically lack automatic cleaning functions, requiring manual cleaning of the boards before and after cold pressing. This not only increases labor intensity but also reduces production efficiency. Furthermore, manual cleaning struggles to maintain consistent cleaning quality, leading to fluctuations in product quality. To address this issue, the industry has begun exploring integrating cleaning functions into cold presses to reduce reliance on manual cleaning and improve production efficiency and product quality. However, existing cold presses with integrated cleaning functions often suffer from poor cleaning performance, complex operation, and high maintenance costs. For example, some cold presses, while equipped with cleaning devices, have limited cleaning coverage, failing to fully cover all surfaces of the eco-boards; others suffer from poorly designed cleaning mechanisms, leading to surface damage during cleaning or low cleaning efficiency, thus failing to meet the demands of large-scale production.

[0004] Solving the aforementioned technical problems is the challenge facing this utility model. Summary of the Invention

[0005] To address the shortcomings of existing technologies, this utility model provides a reasonably designed, safe, and reliable cold pressing equipment. Through ingenious mechanical design and automated control, it achieves comprehensive and efficient cleaning of ecological boards during the cold pressing process, thereby solving the problem of requiring manual cleaning of impurities on the surface of ecological boards during the production process of traditional cold presses, and improving production efficiency and product quality.

[0006] The technical solution adopted by this utility model to solve its technical problem is: an ecological board cold press with automatic cleaning function, including a cold press base, a cold press frame is provided on the cold press base, a cold press pressure mechanism for providing cold press compression is provided on the cold press frame, a cleaning base is provided at the rear end of the cold press base, and a cleaning mechanism for cleaning the cold-pressed ecological board is provided on the cleaning base.

[0007] The cleaning mechanism includes a cleaning base frame, cleaning arms for cleaning the ecological board are provided on both sides of the cleaning base frame, a linear drive for driving the cleaning base frame to approach the ecological board is provided on the cleaning base, and a synchronous drive component for driving the two cleaning arms to move towards each other and relative to each other is provided on the cleaning base frame.

[0008] A horizontal track is horizontally arranged on the cleaning base frame, a cleaning base that cooperates with the horizontal track is arranged on the horizontal track, a cleaning arm is arranged on the cleaning base, a telescopic control component for controlling the extension and retraction of the cleaning arm is arranged on the cleaning base, and a cleaning head is arranged at the end of the cleaning arm away from the horizontal track.

[0009] The cleaning base is provided with a first cleaning component for cleaning the back of the ecological board, the cleaning arm is provided with a second cleaning component for cleaning the side of the ecological board, the cleaning arm is provided with a third cleaning component for cleaning the top surface of the ecological board, and the cleaning head is provided with a fourth cleaning component for cleaning the front of the ecological board.

[0010] Furthermore, the cold pressing base frame includes cold pressing brackets symmetrically arranged on the cold pressing base, the cold pressing brackets are provided with pressure brackets that cooperate with the cold pressing pressure mechanism, and the cold pressing brackets are provided with storage slots that cooperate with the cleaning arm.

[0011] The cold pressing mechanism includes two sets of hydraulic drive rods symmetrically arranged on the pressure frame, and the moving ends of the two sets of hydraulic drive rods are connected to the same cold pressing plate.

[0012] Furthermore, the first cleaning component includes a negative pressure suction groove formed on one end face of the cleaning base facing the ecological board; a collection groove connected to the negative pressure suction groove is formed on the cleaning base; a sealing cover that cooperates with the collection groove is provided on the collection groove; a collection chamber is provided in the collection groove; a plurality of negative pressure suction pipes that cooperate with the collection chamber are provided on the cleaning base; a filter screen that cooperates with the negative pressure suction pipes is provided in the collection chamber; and a negative pressure machine that cooperates with the negative pressure suction pipes is provided on the cleaning base.

[0013] Furthermore, the synchronous drive assembly includes a synchronous cavity formed in the cleaning base frame, a synchronous groove connected to the synchronous cavity is formed on one end face of the cleaning base frame facing the ecological board, a synchronous gear is provided in the synchronous cavity, a drive motor that cooperates with the synchronous gear is provided in the synchronous cavity, and a drive rack that meshes with the synchronous gear is provided in the synchronous cavity.

[0014] The drive rack is provided with a connecting plate that passes through the synchronization groove. The synchronization groove is provided with a drive seat that slides with the negative pressure suction groove and is fixedly connected to the cleaning arm. The drive seat is fixedly connected to the connecting plate.

[0015] The second cleaning component includes a cleaning groove formed on the side of the cleaning arm facing the ecological board, a cleaning frame that slides in the cleaning groove, a scraper on the cleaning frame, a cleaning water gun that cooperates with the scraper on the cleaning frame, and a drive screw in the cleaning groove for driving the scraper to move along the length direction of the cleaning arm.

[0016] A suction head is provided at one end of the cleaning tank, and a suction pipe is provided on the suction head. A waste liquid suction chamber connected to the suction pipe is provided on the cleaning base. A waste liquid suction cylinder for collecting cleaning waste is provided in the waste liquid suction chamber, and a negative pressure suction pump is provided on the waste liquid suction chamber.

[0017] Furthermore, the telescopic control assembly includes a fixed frame disposed on the cleaning base, the fixed frame having a movable groove, a movable frame slidably engaging with the movable groove, the sweeping arm being fixedly connected to the movable frame, the fixed frame having a telescopic hydraulic rod disposed on the fixed frame, and the movable end of the telescopic hydraulic rod having a fixed connection connected to the movable frame.

[0018] Furthermore, the third cleaning component includes a sweeping arm, a sweeping frame is provided directly below the sweeping arm, a plurality of lifting electric rods are provided on the sweeping arm and fixedly connected to the sweeping frame, a shock-absorbing frame is provided on the sweeping frame, a plurality of shock-absorbing rods are provided on the sweeping frame, a shock-absorbing groove is provided on the shock-absorbing frame to cooperate with the shock-absorbing rods, a stabilizing seat is provided at the bottom end of the shock-absorbing rod to cooperate with the shock-absorbing frame, a shock-absorbing spring is sleeved on the shock-absorbing rod to cooperate with the shock-absorbing frame, a sweeping roller is provided on the shock-absorbing frame, and a sweeping scraper is provided on the shock-absorbing frame to cooperate with the sweeping roller.

[0019] Furthermore, the fourth cleaning component includes a scraper groove formed on one side of the cleaning head, a negative pressure suction head that cooperates with the scraper groove on the other side of the cleaning head, a cleaning scraper that cooperates with the negative pressure suction head in the cleaning head, and a negative pressure suction tube that communicates with the negative pressure suction head and cooperates with the second cleaning component on the cleaning arm.

[0020] This invention integrates the cold pressing device with the cleaning mechanism into a single integrated design, eliminating the need for additional cleaning equipment and significantly saving space and production costs. Furthermore, the cleaning mechanism comprises multiple components such as a cleaning base frame, cleaning arms, and sweeping arms. Through the precise coordination of linear drive components, synchronous drive components, and telescopic control components, it achieves comprehensive cleaning of all surfaces of the eco-board, significantly improving cleaning efficiency.

[0021] This invention achieves precise control of the cleaning mechanism through integrated control, enabling the cleaning task to be completed without manual intervention, greatly reducing labor intensity. It can automatically adjust the movement trajectory and cleaning intensity of the cleaning mechanism according to the size and shape of the ecological board, ensuring consistent cleaning results.

[0022] The cleaning mechanism of this invention is equipped with various cleaning components, including a negative pressure suction tank, a cleaning tank, a sweeping arm, and a cleaning head, which are used to clean the back, sides, top, and front of the eco-board, respectively. The negative pressure suction tank and the cleaning tank, through the combination of a negative pressure system and a cleaning water gun, effectively remove impurities such as dust, sawdust, and glue from the surface of the board; the sweeping arm and the cleaning head, through gentle scraping and adsorption, ensure the smoothness of the board surface. Attached Figure Description

[0023] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0024] Figure 2 This is an enlarged schematic diagram of point A in this utility model.

[0025] Figure 3 This is a schematic diagram of the cleaning arm portion of the cleaning mechanism of this utility model.

[0026] Figure 4 This is a schematic diagram of the cleaning arm and synchronous drive assembly of this utility model.

[0027] Figure 5 This is a top view of a portion of the cleaning mechanism of this utility model.

[0028] Figure 6 For the present utility model Figure 5 AA section view.

[0029] Figure 7 This is a schematic diagram showing the cooperation between the third and fourth cleaning components of this utility model.

[0030] The attached diagram is labeled as follows: 100, cold-press base; 110, cold-press frame; 111, cold-press support; 112, storage slot; 113, pressure frame; 120, cleaning base; 200, cold-pressing pressure mechanism; 210, hydraulic drive rod; 220, cold-pressing plate; 300, cleaning mechanism; 310, cleaning frame; 320, cleaning arm; 330, synchronous drive assembly; 331, synchronous cavity; 332, synchronous groove; 333, synchronous gear; 334, drive rack; 335, connecting plate; 336, drive seat; 340, horizontal track; 350, cleaning base; 360, cleaning arm; 370, telescopic control assembly; 371, fixed frame; 372, movable groove; 373, movable frame; 374, telescopic frame; 375, telescopic hydraulic rod; 380, cleaning head; 410, first cleaning assembly; 41 412. Negative pressure suction tank; 413. Collection tank; 414. Sealing cover; 415. Collection chamber; 416. Negative pressure suction pipe; 417. Filter screen; 420. Negative pressure unit; 421. Second cleaning assembly; 422. Cleaning tank; 423. Scraper; 424. Cleaning water gun; 425. Drive screw; 426. Suction head; 427. Suction pipe; 428. Waste liquid suction chamber; 429. 430. Waste liquid suction cylinder; 431. Third cleaning component; 432. Sweeping frame; 433. Lifting electric rod; 434. Shock-absorbing frame; 435. Shock-absorbing rod; 436. Shock-absorbing groove; 437. Stabilizing seat; 438. Shock-absorbing spring; 439. Sweeping roller; 440. Sweeping scraper; 441. Fourth cleaning component; 442. Scraper groove; 443. Negative pressure suction head; 444. Cleaning scraper; 445. Negative pressure suction pipe. Specific Implementation

[0032] See Figures 1 to 7 As shown, an eco-friendly board cold press with automatic cleaning function includes a cold press base 100, a cold press frame 110 is provided on the cold press base 100, a cold press pressure mechanism 200 for providing cold press compression is provided on the cold press frame 110, and a cleaning base 120 is provided at the rear end of the cold press base 100, and a cleaning mechanism 300 for cleaning the cold-pressed eco-friendly board is provided on the cleaning base 120.

[0033] The cleaning mechanism 300 includes a cleaning base 310, with cleaning arms 320 for cleaning the ecological board provided on both sides of the cleaning base 310. A linear drive member is provided on the cleaning base 120 for driving the cleaning base 310 to move closer to the ecological board. The cleaning base 310 is provided with a synchronous drive assembly 330 for driving the two cleaning arms 320 to move towards each other and relative to each other.

[0034] A horizontal track 340 is horizontally arranged on the cleaning base 310. A cleaning base 350 that cooperates with the horizontal track 340 is arranged on the horizontal track 340. A cleaning arm 360 is arranged on the cleaning base 350. A telescopic control component 370 for controlling the extension and retraction of the cleaning arm 360 is arranged on the cleaning base 350. A cleaning head 380 is arranged at the end of the cleaning arm 360 away from the horizontal track 340.

[0035] The cleaning base 350 is provided with a first cleaning component 410 for cleaning the back of the ecological board, the cleaning arm 320 is provided with a second cleaning component 420 for cleaning the side of the ecological board, the cleaning arm 360 is provided with a third cleaning component 430 for cleaning the top surface of the ecological board, and the cleaning head 380 is provided with a fourth cleaning component 440 for cleaning the front of the ecological board.

[0036] Preferably, the horizontal track 340 is provided with a linear drive component that cooperates with the cleaning base 350.

[0037] Furthermore, the cold pressing base frame 110 includes cold pressing brackets 111 symmetrically arranged on the cold pressing base 100. The cold pressing brackets 111 are provided with pressure brackets 113 that cooperate with the cold pressing pressure mechanism 200, and the cold pressing brackets 111 are provided with storage grooves 112 that cooperate with the cleaning arm 320.

[0038] The cold pressing mechanism 200 includes two sets of hydraulic drive rods 210 symmetrically arranged on the pressure frame 113, and the moving ends of the two sets of hydraulic drive rods 210 are connected to the same cold pressing plate 220.

[0039] Furthermore, the first cleaning component 410 includes a negative pressure suction groove 411 formed on one end face of the cleaning base 310 facing the ecological board, a collection groove 412 connected to the negative pressure suction groove 411 formed on the cleaning base 310, and a sealing cover 413 that cooperates with the collection groove 412. A collection chamber 414 is provided in the collection groove 412, and a plurality of negative pressure suction pipes 415 that cooperate with the collection chamber 414 are provided on the cleaning base 310. A filter screen 416 that cooperates with the negative pressure suction pipes 415 is provided in the collection chamber 414, and a negative pressure pump 417 that cooperates with the negative pressure suction pipes 415 is provided on the cleaning base 120.

[0040] Furthermore, the synchronous drive assembly 330 includes a synchronous cavity 331 formed in the cleaning base 310. A synchronous groove 332 connected to the synchronous cavity 331 is formed on one end face of the cleaning base 310 facing the ecological board. A synchronous gear 333 is provided in the synchronous cavity 331. A drive motor that cooperates with the synchronous gear 333 is provided in the synchronous cavity 331. A drive rack 334 that meshes with the synchronous gear 333 is provided in the synchronous cavity 331.

[0041] The drive rack 334 is provided with a connecting plate 335 that passes through the synchronization groove 332. The synchronization groove 332 is provided with a drive seat 336 that slides with the negative pressure suction groove 411 and is fixedly connected to the cleaning arm 320. The drive seat 336 is fixedly connected to the connecting plate 335.

[0042] Specifically, the synchronous drive assembly 330 achieves the opposite or relative movement of the cleaning arm 320 through the cooperation of the synchronous gear 333 and the drive rack 334, ensuring that the cleaning arm 320 can be closely attached to both sides of the ecological board for cleaning.

[0043] The second cleaning component 420 includes a cleaning groove 421 formed on the side of the cleaning arm 320 facing the ecological board. A cleaning frame 422 is provided in the cleaning groove 421 and slides in cooperation with the cleaning groove 421. A scraper 423 is provided on the cleaning frame 422 and a cleaning water gun 424 is provided on the cleaning frame 422 and cooperates with the scraper 423. A drive screw 425 is provided in the cleaning groove 421 to drive the scraper 423 to move along the length direction of the cleaning arm 320.

[0044] A suction head 426 is provided at one end of the cleaning tank 421. A suction pipe 427 is provided on the suction head 426. A waste liquid suction chamber 428 connected to the suction pipe 427 is provided on the cleaning base 120. A waste liquid suction cylinder 429 for collecting cleaning waste is provided in the waste liquid suction chamber 428. A negative pressure suction pump is provided on the waste liquid suction chamber 428.

[0045] Furthermore, the telescopic control assembly 370 includes a fixed frame 371 disposed on the cleaning base 350, a movable groove 372 disposed on the fixed frame 371, a movable frame 373 disposed in the movable groove 372 and slidably engaged with the movable groove 372, the sweeping arm 360 being fixedly connected to the movable frame 373, a telescopic hydraulic rod 374 disposed on the fixed frame 371, and a fixed connection being disposed at the moving end of the telescopic hydraulic rod 374 and connected to the movable frame 373.

[0046] Specifically, the telescopic control component 370, through the cooperation of the telescopic hydraulic rod 374, the fixed frame 371, and the movable frame 373, realizes the telescopic movement of the sweeping arm 360, enabling the sweeping arm 360 to reach various positions on the ecological board for cleaning. At the same time, it enables the fourth cleaning component 440 to be located on the front end of the ecological board, thereby achieving the cleaning of the front end of the ecological board by the fourth cleaning component 440.

[0047] Furthermore, the third cleaning component 430 includes a sweeping arm 360, a sweeping frame 431 is provided directly below the sweeping arm 360, a plurality of lifting electric rods 432 fixedly connected to the sweeping frame 431 are provided on the sweeping arm 360, a shock-absorbing frame 433 is provided on the sweeping frame 431, a plurality of shock-absorbing rods 434 are provided on the sweeping frame 431, a shock-absorbing groove 435 is provided on the shock-absorbing frame 433 to cooperate with the shock-absorbing rods 434, a stabilizing seat 436 is provided at the bottom end of the shock-absorbing rods 434 to cooperate with the shock-absorbing frame 433, a shock-absorbing spring 437 is sleeved on the shock-absorbing rods 434 to cooperate with the shock-absorbing frame 433, a sweeping roller 438 is provided on the shock-absorbing frame 433, and a sweeping scraper 439 is provided on the shock-absorbing frame 433 to cooperate with the sweeping roller 438.

[0048] Furthermore, the fourth cleaning component 440 includes a scraper groove 441 formed on one side of the cleaning head 380, a negative pressure suction head 442 that cooperates with the scraper groove 441 on the other side of the cleaning head 380, a cleaning scraper 443 that cooperates with the negative pressure suction head 442 in the cleaning head 380, and a negative pressure suction tube 444 that communicates with the negative pressure suction head 442 and cooperates with the second cleaning component 420 on the cleaning arm 360.

[0049] Specifically, the negative pressure suction tube 444 is connected to the waste liquid suction chamber 428 in the second cleaning component 420.

[0050] In this specific cleaning mechanism 300, the first cleaning component 410 uses a negative pressure suction tank 411 and a negative pressure machine 417 to collect dust and debris from the back of the ecological board through a negative pressure suction pipe 415 and a collection chamber 414. A filter screen 416 prevents impurities from entering the negative pressure machine 417. The second cleaning component 420 uses a cleaning frame 422 and a scraper 423 on its cleaning arm 320 in conjunction with a cleaning water gun 424 to scrape away impurities from the sides of the ecological board. A suction head 426 and a suction pipe 427 collect waste liquid into a waste liquid suction chamber 428. The third cleaning component 430 uses a cleaning roller 438 and a cleaning scraper 439 on its cleaning arm 360, which, in conjunction with a lifting electric rod 432 and a shock-absorbing spring 437, gently and effectively clean the top surface of the ecological board. The scraper groove 441 and negative pressure suction head 442 on the cleaning head 380 of the fourth cleaning component 440, together with the cleaning scraper 443, clean the impurities in front of the ecological board, and collect the impurities into the waste liquid suction chamber 428 through the negative pressure suction pipe 444.

[0051] Specifically, firstly, when the ecological board is placed on the cold pressing base 100, the cold pressing pressure mechanism 200 is activated, and the hydraulic drive rod 210 drives the cold pressing plate 220 to move downward, applying sufficient pressure to the ecological board to complete the cold pressing molding.

[0052] Then, the automatic cleaning process starts:

[0053] Approaching stage: After cold pressing is completed, the linear drive unit drives the cleaning base 310 to move forward to the position of the ecological board.

[0054] Synchronous cleaning: The synchronous drive assembly 330, through the meshing of the synchronous gear 333 and the drive rack 334, enables the two cleaning arms 320 to move toward or relative to each other to accommodate ecological boards of different sizes.

[0055] Comprehensive cleaning:

[0056] Front and top surfaces: The cleaning head 380 and cleaning roller 438 on the cleaning arm 360 are responsible for cleaning the front and top surfaces of the ecological board, respectively, and the negative pressure suction head 442 and cleaning scraper 439 are used to remove surface dust and debris.

[0057] Back side: The negative pressure suction groove 411 in the first cleaning component 410 generates negative pressure, adsorbs and removes the residue on the back of the ecological board, and then sends it into the collection chamber 414 through the negative pressure suction pipe 415.

[0058] Side: The scraper 423 of the second cleaning component 420 works in conjunction with the cleaning water gun 424 to scrape off the residue on the side of the ecological board and rinse it with water gun. Finally, the wastewater and impurities are sent into the waste liquid suction chamber 428 by the suction head 426 through the suction pipe 427.

[0059] Telescopic adjustment: The telescopic control component 370 allows the sweeping arm 360 to adjust its extension length as needed to ensure that it can cover all areas of the eco-board to be cleaned.

[0060] Waste disposal: All waste and wastewater generated during the cleaning process are collected into collection tank 414 and waste liquid suction tank 428 respectively for subsequent unified treatment.

[0061] Reset: After the cleaning operation is completed, the cleaning mechanism 300 automatically resets, ready for the next use.

[0062] The technical features of this utility model not described can be implemented by or by using existing technology, and will not be repeated here. Of course, the above description is not a limitation of this utility model, and this utility model is not limited to the examples above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this utility model should also be within the protection scope of this utility model.

Claims

1. A cold press for ecological boards with automatic cleaning function, characterized in that: It includes a cold pressing base (100), a cold pressing frame (110) is provided on the cold pressing base (100), a cold pressing pressure mechanism (200) for providing cold pressing compression is provided on the cold pressing frame (110), and a cleaning base (120) is provided at the rear end of the cold pressing base (100), and a cleaning mechanism (300) for cleaning the cold-pressed ecological board is provided on the cleaning base (120). The cleaning mechanism (300) includes a cleaning base frame (310), cleaning arms (320) for cleaning the ecological board are provided on both sides of the cleaning base frame (310), a linear drive member for driving the cleaning base frame (310) to approach the ecological board is provided on the cleaning base (120), and a synchronous drive assembly (330) for driving the two cleaning arms (320) to move towards each other and relative to each other is provided on the cleaning base frame (310). A horizontal track (340) is horizontally arranged on the cleaning base (310). A cleaning base (350) that cooperates with the horizontal track (340) is arranged on the horizontal track (340). A cleaning arm (360) is arranged on the cleaning base (350). A telescopic control component (370) for controlling the extension and retraction of the cleaning arm (360) is arranged on the cleaning base (350). A cleaning head (380) is arranged at the end of the cleaning arm (360) away from the horizontal track (340). The cleaning base (350) is provided with a first cleaning component (410) for cleaning the back of the ecological board, the cleaning arm (320) is provided with a second cleaning component (420) for cleaning the side of the ecological board, the cleaning arm (360) is provided with a third cleaning component (430) for cleaning the top surface of the ecological board, and the cleaning head (380) is provided with a fourth cleaning component (440) for cleaning the front of the ecological board.

2. The eco-friendly cold press with automatic cleaning function as described in claim 1, characterized in that: The cold pressing base frame (110) includes a cold pressing bracket (111) symmetrically arranged on the cold pressing base (100). The cold pressing bracket (111) is provided with a pressure frame (113) that cooperates with the cold pressing pressure mechanism (200), and the cold pressing bracket (111) is provided with a storage groove (112) that cooperates with the cleaning arm (320). The cold pressing mechanism (200) includes two sets of hydraulic drive rods (210) symmetrically arranged on the pressure frame (113), and the moving ends of the two sets of hydraulic drive rods (210) are connected to the same cold pressing plate (220).

3. The eco-friendly board cold press with automatic cleaning function as described in claim 1, characterized in that: The first cleaning component (410) includes a negative pressure suction groove (411) formed on one end face of the cleaning base (310) facing the ecological board, a collection groove (412) connected to the negative pressure suction groove (411) formed on the cleaning base (310), and a closed cover (413) that cooperates with the collection groove (412) provided on the collection groove (412); a collection chamber (414) is provided in the collection groove (412), a plurality of negative pressure suction pipes (415) that cooperate with the collection chamber (414) are provided on the cleaning base (310), a filter screen (416) that cooperates with the negative pressure suction pipes (415) is provided in the collection chamber (414), and a negative pressure machine (417) that cooperates with the negative pressure suction pipes (415) is provided on the cleaning base (120).

4. The eco-friendly board cold press with automatic cleaning function as described in claim 3, characterized in that: The synchronous drive assembly (330) includes a synchronous cavity (331) formed in the cleaning base frame (310). The cleaning base frame (310) has a synchronous groove (332) connected to the synchronous cavity (331) on one end face facing the ecological board. A synchronous gear (333) is provided in the synchronous cavity (331). A drive motor that meshes with the synchronous gear (333) is provided in the synchronous cavity (331). A drive rack (334) that meshes with the synchronous gear (333) is provided in the synchronous cavity (331). The drive rack (334) is provided with a connecting plate (335) that passes through the synchronization groove (332). The synchronization groove (332) is provided with a drive seat (336) that slides with the negative pressure suction groove (411) and is fixedly connected to the cleaning arm (320). The drive seat (336) is fixedly connected to the connecting plate (335).

5. The eco-friendly board cold press with automatic cleaning function as described in claim 1, characterized in that: The second cleaning assembly (420) includes a cleaning groove (421) opened on the side of the cleaning arm (320) facing the ecological board. A cleaning frame (422) is provided in the cleaning groove (421) and slides in cooperation with the cleaning groove (421). A scraper (423) is provided on the cleaning frame (422) and a cleaning water gun (424) is provided on the cleaning frame (422) and cooperates with the scraper (423). A drive screw (425) is provided in the cleaning groove (421) for driving the scraper (423) to move along the length direction of the cleaning arm (320). A suction head (426) is provided at one end of the cleaning tank (421), and a suction pipe (427) is provided on the suction head (426). A waste liquid suction chamber (428) connected to the suction pipe (427) is provided on the cleaning base (120). A waste liquid suction cylinder (429) for collecting cleaning waste is provided in the waste liquid suction chamber (428). A negative pressure suction pump is provided on the waste liquid suction chamber (428).

6. The eco-friendly board cold press with automatic cleaning function as described in claim 1, characterized in that: The telescopic control assembly (370) includes a fixed frame (371) disposed on the cleaning base (350), a movable groove (372) disposed on the fixed frame (371), a movable frame (373) slidably engaged with the movable groove (372) disposed in the movable groove (372), the cleaning arm (360) is fixedly connected to the movable frame (373), a telescopic hydraulic rod (374) disposed on the fixed frame (371), and a fixed connection is provided at the moving end of the telescopic hydraulic rod (374) to the movable frame (373).

7. The eco-friendly board cold press with automatic cleaning function as described in claim 1, characterized in that: The third cleaning component (430) includes a sweeping arm (360), a sweeping frame (431) is provided directly below the sweeping arm (360), a plurality of lifting electric rods (432) are provided on the sweeping arm (360) and fixedly connected to the sweeping frame (431), a shock-absorbing frame (433) is provided on the sweeping frame (431), a plurality of shock-absorbing rods (434) are provided on the sweeping frame (431), and the shock-absorbing frame (433) has openings for connecting to the sweeping frame (431). The shock-absorbing rod (434) is fitted with a shock-absorbing groove (435). A stabilizing seat (436) is provided at the bottom end of the shock-absorbing rod (434) to cooperate with the shock-absorbing frame (433). A shock-absorbing spring (437) is fitted on the shock-absorbing rod (434) to cooperate with the shock-absorbing frame (433). A cleaning roller (438) is provided on the shock-absorbing frame (433). A cleaning scraper (439) is provided on the shock-absorbing frame (433) to cooperate with the cleaning roller (438).

8. The eco-friendly board cold press with automatic cleaning function as described in claim 1, characterized in that: The fourth cleaning component (440) includes a scraper groove (441) formed on one side of the cleaning head (380), a negative pressure suction head (442) that cooperates with the scraper groove (441) is provided on the other side of the cleaning head (380), a cleaning scraper (443) that cooperates with the negative pressure suction head (442) is provided in the cleaning head (380), and a negative pressure suction tube (444) that communicates with the negative pressure suction head (442) and cooperates with the second cleaning component (420) is provided on the cleaning arm (360).