Aluminum mold cleaning release agent brushing device

By designing an aluminum formwork cleaning and release agent application device, the automated cleaning and release agent application of aluminum formwork has been achieved, solving the problem of slag adhesion and inclusion in high-rise building construction, improving construction efficiency and quality, and reducing environmental pollution and costs.

CN121047409APending Publication Date: 2025-12-02CHINA THIRD METALLURGICAL GRP
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Patent Information

Application Number
CN202511123992.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-12
Publication Date
2025-12-02

AI Technical Summary

Technical Problem

In high-rise building construction, aluminum formwork is prone to problems such as concrete sticking and slag inclusion, which affects construction quality and efficiency. In addition, traditional cleaning methods are inefficient, costly, and pollute the environment.

Method used

Design an aluminum mold cleaning and release agent application device, comprising a cleaning box, an application box, a cleaning mechanism, a collection mechanism, an application mechanism, a liquid supply mechanism, and a pressing mechanism. Through components such as sliding rollers, a cleaning roller, a dust pump, a release agent application roller, a stirring mechanism, and a vibration mechanism, automated cleaning and release agent application are achieved.

Benefits of technology

It improves the high turnover construction efficiency of aluminum formwork, ensures project quality, reduces secondary repairs and environmental pollution, meets the requirements of green construction, and reduces labor costs and pollution during the cleaning process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an aluminum mold cleaning release agent brushing device, and relates to the technical field of building aluminum mold cleaning. The aluminum mold cleaning release agent brushing device comprises a cleaning box and a brushing box, the cleaning box and the brushing box are fixed through a plurality of assembly buckles, and a plurality of sliding rollers are arranged at the bottom of the cleaning box and the bottom of the brushing box. According to the aluminum mold cleaning and release agent brushing device, aluminum mold cleaning and release agent brushing work can be conveniently achieved, the construction mode of a traditional aluminum mold structure is changed, the aluminum mold is not affected by mold sticking slag inclusion in a high turnover construction mode any more, and the quality of a wall surface after construction is completed is guaranteed; the construction quality is guaranteed from the source, the acceptance pass rate is improved, secondary repair is reduced, the economic benefit is improved, the cost generated by manual cleaning in the later period is reduced, the environmental pollution occurring in the cleaning process is reduced, and the requirements of green construction and low-carbon construction advocated by the country are met.
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Description

Technical Field

[0001] This invention relates to the field of aluminum formwork cleaning technology, specifically to an aluminum formwork cleaning and release agent application device. Background Technology

[0002] Aluminum formwork, as a new type of building formwork, has had a significant impact on the development and application of my country's construction industry. Its lightweight properties greatly improve construction efficiency in high-rise building construction and reduce labor costs to some extent. Furthermore, aluminum formwork has a relatively small environmental impact and good environmental performance. After use, it can be recycled and reused, reducing the consumption of resources such as wood in traditional construction processes. This not only helps alleviate pressure on forest resources but also reduces waste generation during construction, aligning with the pursuit of sustainable development in modern construction and meeting national low-carbon green building requirements. However, the application of aluminum formwork inevitably has its limitations. In high-rise buildings with high turnover, it is unavoidable that concrete may stick to the formwork and formwork, leading to slag inclusions. Therefore, a technical solution is needed to address these issues. Summary of the Invention

[0003] The purpose of this invention is to provide an aluminum mold cleaning and release agent application device to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, the present invention provides the following technical solution: an aluminum mold cleaning and release agent application device, comprising a cleaning box and a coating box, wherein the cleaning box and the coating box are fixed together by multiple assembly buckles, and both the cleaning box and the coating box are provided with multiple sliding rollers at their bottoms; the aluminum mold cleaning and release agent application device further includes:

[0005] A cleaning mechanism, located at the top of the cleaning box, is used to clean the aluminum mold;

[0006] A collection mechanism, located inside the cleaning box, is used to collect the cleaning residue;

[0007] A coating mechanism, located at the top of the coating box, is used to apply a release agent to the cleaned aluminum mold.

[0008] A liquid supply mechanism, located inside the coating box, is used to supply release agent to the coating mechanism;

[0009] A clamping mechanism is located above the cleaning box and the coating box, and is used to clamp and fix the aluminum mold.

[0010] Preferably, the cleaning mechanism includes a plurality of first rotating shafts rotatably connected to the inner sidewall of the cleaning box, and a cleaning roller is fixedly sleeved on the sidewall of each first rotating shaft.

[0011] Preferably, the collection mechanism includes a vacuum pump fixedly connected inside the cleaning box, and a residue storage box is provided at the bottom of the cleaning box, and the residue storage box is connected to the outlet of the vacuum pump.

[0012] Preferably, the coating mechanism includes two symmetrically arranged release agent storage boxes disposed on the top of the coating box, and each release agent storage box is rotatably connected to a release agent application roller brush via a second rotating shaft.

[0013] Preferably, the liquid supply mechanism includes a release agent storage box fixedly connected to the bottom of the coating box, and a release agent delivery pump fixedly connected inside the coating box. The inlet of the release agent delivery pump is fixedly connected to a liquid extraction pipe, which is inserted into the release agent storage box. Each of the release agent temporary storage boxes is connected to the outlet of the release agent delivery pump through a release agent delivery pipe.

[0014] Preferably, the clamping mechanism includes an adjusting gear for setting the cleaning box and the side wall of the coating box, the side wall of the adjusting gear is fixedly connected to a mounting plate, and the side wall of the mounting plate is rotatably connected to a fixed roller.

[0015] Preferably, the side wall of the extraction tube is provided with a stirring mechanism for stirring the release agent in the release agent storage box, and the stirring mechanism includes a rectangular box fixedly inserted into the side wall of the extraction tube, and a rotating fan is rotatably connected inside the rectangular box via a rotating rod. The lower end of the rotating rod is fixedly connected to a stirring shaft, and a plurality of arrayed stirring rods are fixedly connected to the side wall of the stirring shaft.

[0016] Preferably, the cleaning box is provided with a vibration mechanism for striking and vibrating the aluminum mold, and the vibration mechanism includes a connecting frame fixedly connected to the inner side wall of the cleaning box. The bottom of the connecting frame is connected to a lifting plate through a reset mechanism. The top of the lifting plate is fixedly connected to a plurality of arrayed striking rods, and the bottom of the connecting frame is provided with a pushing mechanism for pushing the lifting plate to move upward.

[0017] Preferably, the reset mechanism includes two symmetrically arranged T-shaped guide rods fixedly connected to the bottom of the connecting frame, and the side walls of the T-shaped guide rods are fitted with sliders, the sliders are fixed to the side walls of the lifting plate, and the side walls of each T-shaped guide rod are fitted with springs.

[0018] Preferably, the pushing mechanism includes a fixed plate fixedly connected to the bottom of the connecting frame, and a disc is rotatably connected to the side wall of the fixed plate via a drive shaft. A plurality of arrayed rubber protrusions are fixedly connected to the side wall of the disc, and a driven pulley is fixedly sleeved on the side wall of the drive shaft. A driving bevel gear is fixedly sleeved on the side wall of the first rotating shaft, and belts are sleeved on the side walls of the driving bevel gear and the driven pulley.

[0019] Compared with the prior art, the beneficial effects of the present invention are:

[0020] (1) This aluminum formwork cleaning and release agent application device, by setting up cleaning mechanism and application mechanism, facilitates the cleaning and release agent application of aluminum formwork, changes the traditional construction method of aluminum formwork structure, and realizes that aluminum formwork is no longer affected by sticking and slag in high turnover construction mode, so as to ensure the quality of the wall after construction, improve the acceptance rate of project quality from the source, reduce secondary repairs, improve economic benefits, reduce the cost of manual cleaning in the later stage, and reduce the environmental pollution in the cleaning process, which meets the requirements of green construction and low carbon construction advocated by the state.

[0021] (2) This aluminum mold cleaning and release agent application device, by setting a stirring mechanism, etc., when applying the release agent, can use the fixed roller to press the aluminum mold on the top of the application box and make it contact the release agent application roller when the adjusting gear is rotated. Then, the release agent delivery pump is started, and the release agent in the release agent storage box can be put into the release agent delivery pump through the liquid extraction pipe and sent into the release agent temporary storage box through the release agent delivery pipe. The rotating release agent application roller dips in the release agent and applies it evenly to the surface of the cleaned aluminum mold, which is more convenient and faster. At the same time, when the release agent enters the liquid extraction pipe, it can be squeezed into the rectangular box and impact the surface of the rotating fan, causing the rotating rod to rotate. When the rotating rod rotates, it can drive the stirring shaft to rotate, so that the release agent in the release agent storage box can be stirred by the stirring rod, making it more uniform, thereby making the application effect better.

[0022] (3) This aluminum mold cleaning and release agent application device, by setting a vibration mechanism, when the aluminum mold needs to be cleaned, can use the fixed roller to press the aluminum mold tightly against the top of the cleaning box and into contact with the cleaning roller by rotating the adjusting gear. Then, when the power control switch is turned on, the steel brush cleaning roller rotates at high speed to sweep away the residue and dust on the surface of the aluminum mold. The dust pump sucks the residue and dust swept off the surface of the aluminum mold into the residue storage box located at the bottom of the cleaning box. At the same time, when the cleaning roller rotates, it can drive the active bevel gear to rotate through the first rotating shaft, thereby enabling the belt to carry The driven pulley and drive shaft rotate. When the drive shaft rotates, it drives the disc to rotate. When the rubber protrusion abuts against the bottom of the slider, it pushes the slider upward. At the same time, the spring is compressed. When the rubber protrusion passes the bottom of the slider, the slider can move downward and reset under the action of the spring. This process is repeated to make the slider move up and down. Meanwhile, the lifting plate drives the tapping rod to move up and down, so that the bottom of the aluminum mold can be tapped and vibrated repeatedly during cleaning, which facilitates the removal of residue and makes the cleaning more efficient and effective. Attached Figure Description

[0023] Figure 1This is a schematic diagram of the overall structure of the present invention;

[0024] Figure 2 This is a schematic diagram of the vibration mechanism in this invention;

[0025] Figure 3 This is a partial cross-sectional view of the rectangular box in this invention.

[0026] Figure 4 for Figure 1 Enlarged structural diagram at point A;

[0027] Figure 5 for Figure 1 Enlarged structural diagram at point B;

[0028] Figure 6 for Figure 2 Enlarged structural diagram at point C;

[0029] Figure 7 for Figure 3 A magnified structural diagram at point D.

[0030] In the diagram: 101. Cleaning box; 102. Coating box; 103. Sliding roller; 104. Assembly buckle; 201. First rotating shaft; 202. Cleaning roller; 301. Dust pump; 302. Residue storage box; 401. Release agent temporary storage box; 402. Second rotating shaft; 403. Release agent application roller; 501. Release agent delivery pump; 502. Liquid extraction pipe; 503. Release agent delivery pipe; 504. Release agent storage box; 601. Adjusting gear; 602. Mounting plate 603. Fixed roller; 701. Rectangular box; 702. Stirring shaft; 703. Stirring rod; 705. Rotating rod; 706. Rotating fan; 801. Connecting frame; 802. Lifting plate; 803. Striking rod; 901. T-shaped guide rod; 902. Slider; 903. Spring; 1001. Fixed plate; 1002. Drive shaft; 1003. Disc; 1004. Rubber protrusion; 1005. Driven pulley; 1006. Driven bevel gear; 1007. Belt. Detailed Implementation

[0031] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0032] Please see Figures 1-7This invention provides an aluminum mold cleaning and release agent application device, including a cleaning box 101 and a coating box 102. The cleaning box 101 and the coating box 102 are fixed together by multiple assembly clips 104, and both the cleaning box 101 and the coating box 102 are provided with multiple sliding rollers 103 at their bottoms. The cleaning box 101 and the coating box 102 are assembled by the assembly clips 104, which solves the transportation inconvenience caused by the influence of the working space during construction. The sliding rollers 103 at the bottom further provide convenience during construction. The aluminum mold cleaning and release agent application device also includes:

[0033] A cleaning mechanism, located on top of the cleaning box 101, is used to clean the aluminum mold;

[0034] A collection mechanism, located inside the cleaning box 101, is used to collect the cleaning residue;

[0035] The coating mechanism, located on the top of the coating box 102, is used to apply release agent to the cleaned aluminum mold.

[0036] A liquid supply mechanism, located inside the coating box 102, is used to supply release agent to the coating mechanism;

[0037] The clamping mechanism, located above the cleaning box 101 and the coating box 102, is used to clamp and fix the aluminum formwork, facilitating the cleaning of the aluminum formwork and the application of release agent. This changes the traditional construction method of aluminum formwork structures, ensuring that the aluminum formwork is no longer affected by sticking and slag in a high-turnover construction mode, thus guaranteeing the quality of the wall surface after construction. This improves the project quality and acceptance rate from the source, reduces secondary repairs, increases economic efficiency, reduces the cost of manual cleaning in the later stage, and also reduces environmental pollution during the cleaning process, in line with the national requirements for green and low-carbon construction.

[0038] The cleaning mechanism includes multiple first rotating shafts 201 rotatably connected to the inner side wall of the cleaning box 101, and a cleaning roller 202 is fixedly sleeved on the side wall of each first rotating shaft 201. The steel brush cleaning roller 202 is rotated by an electric control switch. During the process of pushing the aluminum mold template surface from the cleaning box 101 to the coating box 102, the steel brush cleaning roller 202 brushes the inner surface of the aluminum mold template at high speed under the drive of the rotor motor, removing the residue of the mold sticking to the surface and cleaning the aluminum mold surface.

[0039] The collection mechanism includes a vacuum pump 301 fixedly connected inside the cleaning box 101. A residue storage box 302 is provided at the bottom of the cleaning box 101, and the residue storage box 302 is connected to the outlet of the vacuum pump 301. The high-speed vacuum pump 301 located inside the cleaning box 101 sucks the cleaned residue into the residue storage box 302 located at the bottom of the cleaning box 101 for centralized storage, thereby reducing environmental pollution generated during the aluminum mold cleaning process.

[0040] The coating mechanism includes two symmetrically arranged release agent storage boxes 401 located on the top of the coating box 102. Each release agent storage box 401 is rotatably connected to a release agent application roller 403 via a second rotating shaft 402. As the roller 403 rotates, it picks up the release agent from the storage box 401 and evenly applies it to the cleaned aluminum mold surface. This process reduces the uneven application of release agent that is common with traditional manual application and minimizes waste. It also avoids environmental pollution from the work surface.

[0041] The liquid supply mechanism includes a release agent storage box 504 fixedly connected to the bottom of the coating box 102, and a release agent delivery pump 501 fixedly connected inside the coating box 102. The inlet of the release agent delivery pump 501 is fixedly connected to a liquid extraction pipe 502, and the liquid extraction pipe 502 is inserted into the release agent storage box 504. Each release agent temporary storage box 401 is connected to the outlet of the release agent delivery pump 501 through a release agent delivery pipe 503. When the electric control switch is activated, the release agent delivery pump 501 is started, so that the release agent in the release agent storage box 504 can be drawn in through the liquid extraction pipe 502, and then input into the release agent temporary storage box 401 through the release agent delivery pump 501 and the release agent delivery pipe 503.

[0042] The clamping mechanism includes an adjusting gear 601 set on the side wall of the cleaning box 101 and the coating box 102. The side wall of the adjusting gear 601 is fixedly connected to the mounting plate 602, and the side wall of the mounting plate 602 is rotatably connected to the fixed roller 603. The adjusting gear 601 on the side of the adjusting module realizes the clamping of the fixed roller 603 on the aluminum mold, so as to avoid uneven cleaning on the surface of the aluminum mold during the cleaning process.

[0043] The side wall of the extraction pipe 502 is provided with a stirring mechanism for stirring the release agent in the release agent storage box 504. The stirring mechanism includes a rectangular box 701 fixedly inserted into the side wall of the extraction pipe 502. A rotating fan 706 is rotatably connected to the rectangular box 701 via a rotating rod 705. A stirring shaft 702 is fixedly connected to the lower end of the rotating rod 705. A plurality of arrayed stirring rods 703 are fixedly connected to the side wall of the stirring shaft 702. When the release agent enters the extraction pipe 502, it can be squeezed into the rectangular box 701 and impact the surface of the rotating fan 706, causing the rotating rod 705 to rotate. When the rotating rod 705 rotates, it can drive the stirring shaft 702 to rotate, thereby using the stirring rods 703 to stir the release agent in the release agent storage box 504, making it more uniform and thus improving the coating effect.

[0044] The cleaning box 101 is equipped with a vibration mechanism for striking and vibrating the aluminum mold. The vibration mechanism includes a connecting frame 801 fixedly connected to the inner side wall of the cleaning box 101. The bottom of the connecting frame 801 is connected to a lifting plate 802 through a reset mechanism. The top of the lifting plate 802 is fixedly connected to a plurality of arrayed striking rods 803. The bottom of the connecting frame 801 is equipped with a pushing mechanism for pushing the lifting plate 802 upward. Through the pushing mechanism and the reset mechanism, the lifting plate 802 and the striking rods 803 move up and down reciprocally, which can reciprocate and vibrate the bottom of the aluminum mold during cleaning, making it easier for residue to be removed, and making the cleaning more efficient and effective.

[0045] The reset mechanism includes two symmetrically arranged T-shaped guide rods 901 fixedly connected to the bottom of the connecting frame 801, and a slider 902 is sleeved on the side wall of the T-shaped guide rod 901. The slider 902 is fixed to the side wall of the lifting plate 802, and a spring 903 is sleeved on the side wall of each T-shaped guide rod 901, which guides and resets the movement of the lifting plate 802.

[0046] The driving mechanism includes a fixed plate 1001 fixedly connected to the bottom of the connecting frame 801, and a disc 1003 rotatably connected to the side wall of the fixed plate 1001 via a drive shaft 1002. Multiple arrayed rubber protrusions 1004 are fixedly connected to the side wall of the disc 1003. A driven pulley 1005 is fixedly sleeved on the side wall of the drive shaft 1002, and a driving bevel gear 1006 is fixedly sleeved on the side wall of the first rotating shaft 201. The side walls of the driving bevel gear 1006 and the driven pulley 1005 are... A belt 1007 is fitted on the cleaning roller 202. When the cleaning roller 202 rotates, it can drive the driving bevel gear 1006 to rotate through the first rotating shaft 201. In turn, the belt 1007 drives the driven pulley 1005 and the drive shaft 1002 to rotate. When the drive shaft 1002 rotates, it can drive the disc 1003 to rotate. When the rubber protrusion 1004 abuts against the bottom of the slider 902, it can push the slider 902 to move upward. At the same time, the spring 903 is compressed.

[0047] Working principle: During use, it facilitates the cleaning of aluminum formwork and the application of release agent, changing the traditional construction method of aluminum formwork structure. Under the high turnover construction mode, the aluminum formwork is no longer affected by sticky residue, thus ensuring the quality of the wall surface after construction. It guarantees the quality of the project from the source, improves the acceptance rate, reduces secondary repairs, improves economic efficiency, reduces the cost of manual cleaning in the later stage, and also reduces the environmental pollution caused by the cleaning process, which meets the requirements of green construction and low-carbon construction advocated by the state.

[0048] When the aluminum mold needs to be cleaned, the adjusting gear 601 is rotated to press the aluminum mold against the top of the cleaning box 101 and into contact with the cleaning roller 202 using the fixed roller 603. Then, the electric control switch is turned on, and the steel brush cleaning roller 202 rotates at high speed to sweep away the residue and dust on the surface of the aluminum mold. The dust pump 301 sucks the residue and dust swept off the surface of the aluminum mold into the residue storage box 302 located at the bottom of the cleaning box 101.

[0049] Meanwhile, when the cleaning roller 202 rotates, it drives the active bevel gear 1006 to rotate via the first rotating shaft 201, which in turn drives the driven pulley 1005 and the drive shaft 1002 to rotate via the belt 1007. When the drive shaft 1002 rotates, it drives the disc 1003 to rotate. When the rubber protrusion 1004 abuts against the bottom of the slider 902, it pushes the slider 902 to move upward. At the same time, the spring 903 is compressed. When the rubber protrusion 1004 passes the bottom of the slider 902, the slider 902 can move downward to reset under the action of the spring 903. This process is repeated, allowing the slider 902 to move up and down. At the same time, the lifting plate 802 drives the striking rod 803 to move up and down, thereby reciprocating and vibrating the bottom of the aluminum mold during cleaning, which facilitates the removal of residue and makes the cleaning more efficient and effective.

[0050] Furthermore, the high-speed dust pump 301 located inside the cleaning box 101 sucks the cleaned residue into the residue storage box 302 located at the bottom of the cleaning box 101 for centralized storage, thereby reducing environmental pollution generated during the aluminum mold cleaning process.

[0051] After cleaning, when applying the release agent, the adjusting gear 601 is rotated to press the aluminum mold against the top of the coating box 102 and into contact with the release agent application roller 403. Then, the release agent delivery pump 501 is started, which allows the release agent in the release agent storage box 504 to enter the release agent delivery pump 501 through the liquid extraction pipe 502, and then be sent into the release agent temporary storage box 401 through the release agent delivery pipe 503. The rotating release agent application roller 403 dips in the release agent and applies it evenly to the cleaned aluminum mold surface, which is more convenient and faster.

[0052] Meanwhile, when the release agent enters the extraction tube 502, it can be squeezed into the rectangular box 701 and impact the surface of the rotating fan 706, causing the rotating rod 705 to rotate. When the rotating rod 705 rotates, it can drive the stirring shaft 702 to rotate, thereby using the stirring rod 703 to stir the release agent in the release agent storage box 504, making it more uniform and thus improving the coating effect.

Claims

1. An aluminum mold cleaning and release agent application device, comprising a cleaning box (101) and a coating box (102), wherein the cleaning box (101) and the coating box (102) are fixed together by a plurality of assembly buckles (104), and both the cleaning box (101) and the coating box (102) are provided with a plurality of sliding rollers (103) at their bottoms, characterized in that: The aluminum mold cleaning and release agent application device also includes: A cleaning mechanism is located on the top of the cleaning box (101) and is used to clean the aluminum mold; A collection mechanism, located inside the cleaning box (101), is used to collect the cleaning residue; A coating mechanism is located on the top of the coating box (102) and is used to apply a release agent to the cleaned aluminum mold. A liquid supply mechanism is provided inside the coating box (102) for supplying release agent to the coating mechanism; A clamping mechanism is located above the cleaning box (101) and the coating box (102) for clamping and fixing the aluminum mold.

2. The aluminum mold cleaning and release agent application device according to claim 1, characterized in that: The cleaning mechanism includes a plurality of first rotating shafts (201) rotatably connected to the inner side wall of the cleaning box (101), and a cleaning roller (202) is fixedly sleeved on the side wall of each first rotating shaft (201).

3. The aluminum mold cleaning and release agent application device according to claim 1, characterized in that: The collection mechanism includes a vacuum pump (301) fixedly connected inside the cleaning box (101). The bottom of the cleaning box (101) is provided with a residue storage box (302), and the residue storage box (302) is connected to the outlet of the vacuum pump (301).

4. The aluminum mold cleaning and release agent application device according to claim 1, characterized in that: The coating mechanism includes two symmetrically arranged release agent storage boxes (401) on the top of the coating box (102), and each release agent storage box (401) is rotatably connected to a release agent application roller (403) via a second rotating shaft (402).

5. The aluminum mold cleaning and release agent application device according to claim 4, characterized in that: The liquid supply mechanism includes a release agent storage box (504) fixedly connected to the bottom of the coating box (102), and a release agent delivery pump (501) fixedly connected inside the coating box (102). The inlet of the release agent delivery pump (501) is fixedly connected to a liquid extraction pipe (502), and the liquid extraction pipe (502) is inserted into the release agent storage box (504). Each of the release agent temporary storage boxes (401) is connected to the outlet of the release agent delivery pump (501) through a release agent delivery pipe (503).

6. The aluminum mold cleaning and release agent application device according to claim 1, characterized in that: The clamping mechanism includes an adjusting gear (601) that is set on the side wall of the cleaning box (101) and the coating box (102). The side wall of the adjusting gear (601) is fixedly connected to the mounting plate (602), and the side wall of the mounting plate (602) is rotatably connected to the fixed roller (603).

7. The aluminum mold cleaning and release agent application device according to claim 5, characterized in that: The side wall of the extraction tube (502) is provided with a stirring mechanism for stirring the release agent in the release agent storage box (504). The stirring mechanism includes a rectangular box (701) fixedly inserted into the side wall of the extraction tube (502). A rotating fan (706) is rotatably connected inside the rectangular box (701) via a rotating rod (705). A stirring shaft (702) is fixedly connected to the lower end of the rotating rod (705). A plurality of stirring rods (703) arranged in an array are fixedly connected to the side wall of the stirring shaft (702).

8. The aluminum mold cleaning and release agent application device according to claim 2, characterized in that: The cleaning box (101) is equipped with a vibration mechanism for striking and vibrating the aluminum mold. The vibration mechanism includes a connecting frame (801) fixedly connected to the inner side wall of the cleaning box (101). The bottom of the connecting frame (801) is connected to a lifting plate (802) through a reset mechanism. The top of the lifting plate (802) is fixedly connected to a plurality of arrayed striking rods (803). The bottom of the connecting frame (801) is equipped with a pushing mechanism for pushing the lifting plate (802) to move upward.

9. The aluminum mold cleaning and release agent application device according to claim 8, characterized in that: The reset mechanism includes two symmetrically arranged T-shaped guide rods (901) fixedly connected to the bottom of the connecting frame (801), and a slider (902) is sleeved on the side wall of the T-shaped guide rod (901). The slider (902) is fixed to the side wall of the lifting plate (802), and a spring (903) is sleeved on the side wall of each T-shaped guide rod (901).

10. The aluminum mold cleaning and release agent application device according to claim 8, characterized in that: The pushing mechanism includes a fixed plate (1001) fixedly connected to the bottom of the connecting frame (801), and a disc (1003) is rotatably connected to the side wall of the fixed plate (1001) via a drive shaft (1002). A plurality of arrayed rubber protrusions (1004) are fixedly connected to the side wall of the disc (1003), and a driven pulley (1005) is fixedly sleeved on the side wall of the drive shaft (1002). A driving bevel gear (1006) is fixedly sleeved on the side wall of the first rotating shaft (201), and a belt (1007) is sleeved on the side walls of the driving bevel gear (1006) and the driven pulley (1005).