Automatic slurry spraying production equipment

By designing automated grouting production equipment, automated grooving and grouting operations of boards are realized, solving the problems of low efficiency, high labor intensity and high cost of manual grouting, improving production efficiency and quality, and meeting diverse customization needs.

CN223493514UActive Publication Date: 2025-10-31KEDA INDUSTRIAL GROUP CO LTD
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Patent Information

Application Number
CN202422270305.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-10-31
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

Existing manual slurry application technology is inefficient, labor-intensive, and difficult to meet the needs of high-efficiency production. It is also difficult to control manually, prone to leakage, which affects quality. Furthermore, it is costly and time-consuming when facing diverse customized customer needs.

Method used

Design an automated grouting production equipment that combines a motor, grouting components, grooving cutter, and pneumatic vibrator via a connecting shaft and connecting plate to achieve synchronous grooving and grouting operations on the conveying system. Automated control is achieved using a control system and a pneumatic system, and a dust removal system is provided to prevent pollution.

Benefits of technology

It significantly reduces labor costs, improves production efficiency, ensures the accuracy and stability of the grouting process, reduces pollution, and enables rapid response to customer customization needs, thereby lowering production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses automatic production equipment for spraying slurry. The automatic production equipment comprises a slurry spraying system and a conveying system, the slurry spraying system moves above the conveying system; the slurry spraying system comprises a slurry spraying tool bit assembly; the slurry spraying cutter head assembly comprises a motor, a connecting shaft, a slurry spraying assembly, a slotting cutter, a pneumatic vibrator and a connecting plate; one end of the connecting shaft is connected with the motor; the other end of the connecting shaft faces the conveying system; the slurry spraying assembly is arranged at the other end of the connecting shaft; the connecting plate is mounted on the connecting shaft; one end of the grooving cutter is mounted on the connecting plate, and the other end of the grooving cutter faces the conveying system and is located below the side of the slurry spraying assembly; and the pneumatic vibrator is mounted on the connecting plate. According to the automatic slurry spraying production equipment, grooving and slurry spraying can be carried out on plates at the same time, and grooving and accurate slurry spraying operation can be synchronously completed without manual intervention in the slurry spraying process.
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Description

Technical Field

[0001] This utility model belongs to the field of automated slurry coating technology, and specifically relates to an automated slurry coating production equipment. Background Technology

[0002] As people's living standards improve, their aesthetic pursuit of living environments is increasing. They are no longer satisfied with the monotonous colors of artificial quartz stone, but instead crave the rich display of natural textures. While existing artificial quartz stone coating techniques have achieved manual mixing of colorants and pre-filling of mold slots, they place high demands on workers. Insufficient worker skill can lead to inconsistencies in the pattern of each slab, affecting the overall aesthetics of the finished artificial quartz stone. Furthermore, this technique also has the following drawbacks:

[0003] 1. Manual slurry application is inefficient, labor-intensive, and difficult to meet the demands of high-efficiency production;

[0004] 2. Manual grouting is difficult to control and is prone to leakage and dripping, which can contaminate the surface of the board and affect its quality.

[0005] 3. In the face of diverse customized needs of customers, traditional manual grouting requires a lot of resources to experiment and adjust before the production process can be determined, resulting in high costs and time consumption.

[0006] Therefore, there is an urgent need for an automated production equipment for slurry coating of artificial quartz stone. Utility Model Content

[0007] The purpose of this invention is to provide an automated grouting production equipment that can simultaneously complete trenching and precise grouting operations without manual intervention, thereby significantly reducing labor costs and improving production efficiency.

[0008] To achieve the above-mentioned objectives, the technical solution adopted by this utility model is as follows:

[0009] An automated grouting production device includes a grouting system and a conveying system; the grouting system moves above the conveying system; the grouting system includes a grouting cutter head assembly; the grouting cutter head assembly includes a motor, a connecting shaft, a grouting component, a grooving cutter, a pneumatic vibrator, and a connecting plate; one end of the connecting shaft is connected to the motor; the other end of the connecting shaft faces the conveying system; the grouting component is disposed on the other end of the connecting shaft; the connecting plate is mounted on the connecting shaft; one end of the grooving cutter is mounted on the connecting plate, and the other end of the grooving cutter faces the conveying system and is located to the side and below the grouting component; the pneumatic vibrator is mounted on the connecting plate.

[0010] This utility model discloses an automated grouting production equipment. A motor, grouting assembly, grooving knife, and pneumatic vibrator are integrated via a connecting shaft and connecting plate. When the sheet material is conveyed on the conveying system, the motor drives the grooving knife box and grouting assembly to rotate synchronously. Simultaneously, under the vibration of the pneumatic vibrator, the grooving knife cuts grooves in the sheet material, and the grouting assembly applies grout into the grooves, achieving simultaneous grooving and grouting. This grouting process can simultaneously complete grooving and precise grouting operations without manual intervention, significantly reducing labor costs and improving production efficiency.

[0011] Preferably, the grouting cutter head assembly further includes a first mounting plate and a sleeve; the first mounting plate connects the connecting plate and the grouting assembly; the sleeve is sleeved on the connecting shaft and is located between the motor and the grouting assembly.

[0012] This utility model discloses an automated grouting production equipment. By setting a first mounting plate to connect the connecting plate and the grouting assembly, the synchronous operation of the grouting assembly and the grooving knife on the connecting plate can be made more stable. By setting a sleeve, the synchronous rotation of the grouting assembly and the grooving knife can be made more stable.

[0013] Preferably, the grouting cutter head assembly further includes a mounting base, a second mounting plate, and a fixing plate; one side of the mounting base is mounted on one side of the second mounting plate, and the other side of the mounting base is mounted on the connecting shaft; one end of the fixing plate is connected to the other side of the mounting base, and the other end of the fixing plate is connected to the sleeve.

[0014] This utility model discloses an automated grouting production equipment. By setting up a mounting base, the motor and the matching grooving knife and grouting components can be assembled onto a second mounting plate; by setting up a fixing plate, the sleeve can also be fixed onto the second mounting plate.

[0015] Preferably, the grouting cutter head assembly further includes a lifting slider and a slide rail; the lifting slider is disposed on the other side of the second mounting plate; the slide rail is disposed through the lifting slider, and the slider and the lifting slider are slidably connected.

[0016] Preferably, the slurry spraying head assembly further includes a lifting cylinder, a connecting block, and a third mounting plate; the lifting cylinder is mounted on the third mounting plate; the bottom of the lifting cylinder is connected to the top of the second mounting plate via the connecting block.

[0017] This utility model discloses an automated slurry coating production equipment. By setting up a lifting slider and a slide rail, the stability of the movement process can be ensured when the lifting cylinder drives the slurry coating component to rise or fall.

[0018] Preferably, the slurry coating system further includes a first storage tank; the first storage tank includes a barrel body and a barrel cover; the barrel cover is installed on the top of the barrel body; the barrel cover is provided with a feed inlet; the bottom of the barrel body is provided with a discharge outlet; the barrel body is connected to the slurry coating assembly through the discharge outlet.

[0019] This utility model discloses an automated slurry production equipment. By setting an inlet on the barrel lid and an outlet at the bottom of the barrel, it can ensure that the slurry in the first storage tank moves downward until it enters the slurry coating component.

[0020] Preferably, the automated slurry production equipment further includes a pneumatic system, an air pipe, and an air inlet pressure reducing valve; the pneumatic system is connected to one end of the air pipe and the air inlet pressure reducing valve; the other end of the air inlet pressure reducing valve is connected to the first storage tank.

[0021] This utility model discloses an automated slurry production equipment that can provide air pressure to the first storage tank at any time through a pneumatic system, ensuring that the air pressure in the first storage tank is adjustable at any time.

[0022] Preferably, the slurry coating system further includes a second storage tank; the second storage tank is connected to the slurry coating assembly.

[0023] This utility model discloses an automated slurry production equipment, which can meet the processing needs of artificial quartz stone by setting up a first storage tank to store slurry and a second storage tank to store powder.

[0024] Preferably, the automated grouting production equipment further includes a control system; the control system controls the grouting system.

[0025] This utility model discloses an automated slurry coating production equipment. By setting up a control system, the slurry coating system can process the board according to the pre-prepared board texture.

[0026] Preferably, the automated slurry production equipment further includes a dust removal system; the dust removal system is located on the side of the conveying system.

[0027] This utility model discloses an automated slurry production equipment. By setting up a dust removal system, it can effectively absorb the powder that flies out during the operation of the equipment, preventing excessive powder from causing pollution.

[0028] Beneficial effects:

[0029] This utility model discloses an automated grouting production equipment. A motor, grouting assembly, grooving knife, and pneumatic vibrator are integrated via a connecting shaft and connecting plate. When the sheet material is conveyed on the conveying system, the motor drives the grooving knife box and grouting assembly to rotate synchronously. Simultaneously, under the vibration of the pneumatic vibrator, the grooving knife cuts grooves in the sheet material, and the grouting assembly applies grout into the grooves, achieving simultaneous grooving and grouting. This grouting process can simultaneously complete grooving and precise grouting operations without manual intervention, significantly reducing labor costs and improving production efficiency. Attached Figure Description

[0030] Figure 1 The figure shown is an overall structural diagram of an automated slurry production equipment according to an embodiment;

[0031] Figure 2 The diagram shown is an internal structure diagram of an automated slurry production equipment according to an embodiment.

[0032] Figure 3 The diagram shown is a structural diagram of the spray cutter head assembly according to an embodiment;

[0033] Figure 4 As shown Figure 2 A magnified view of the local structure of part A.

[0034] Figure Labels

[0035] 100-Conveying system; 110-Pneumatic system; 120-Main drive of belt conveyor; 130-Pressure bar assembly; 140-Pre-compression device; 200-Control system; 300-Slurry application system; 310-First storage tank; 311-Discharge port; 312-Tank body; 313-Tank lid; 314-Safety valve; 315-Pressure relief valve; 316-Inlet; 317-Air inlet pressure reducing valve; 320-Slurry application cutter head assembly; 321-Lifting mechanism Cylinder; 322-Connecting block; 323-Lifting slider; 324-Second mounting plate; 325-Slide rail; 326-Mounting base; 327-Connecting shaft; 328-Slurry application assembly; 329-Grooving knife; 330-Pneumatic vibrator; 331-First mounting plate; 332-Connecting plate; 333-Sleeve; 334-Fixing plate; 335-Motor; 336-Third mounting plate; 360-Second storage tank; 400-Dust removal system. Detailed Implementation

[0036] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the specific implementation methods of this utility model will be described below with reference to the accompanying drawings. Obviously, the drawings described below are merely some embodiments of this utility model. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without any creative effort.

[0037] The technical solution of this utility model will be described in detail below with specific embodiments.

[0038] Example

[0039] like Figures 1-4 As shown, an automated grouting production device according to this embodiment includes a grouting system 300 and a conveying system 100. The grouting system 300 moves above the conveying system 100. The grouting system 300 includes a grouting cutter head assembly 320. The grouting cutter head assembly 320 includes a motor 335, a connecting shaft 327, a grouting component 328, a grooving cutter 329, a pneumatic vibrator 330, and a connecting plate 332. One end of the connecting shaft 327 is connected to the motor 335. The other end of the connecting shaft 327 faces the conveying system 100. The grouting component 328 is disposed on the other end of the connecting shaft 327. The connecting plate 332 is mounted on the connecting shaft 327. One end of the grooving cutter 329 is mounted on the connecting plate 332, and the other end of the grooving cutter 329 faces the conveying system 100 and is located to the side and below the grouting component 328. The pneumatic vibrator 330 is mounted on the connecting plate 332.

[0040] This embodiment of an automated grouting production equipment combines a motor 335, a grouting assembly 328, a grooving cutter 329, and a pneumatic vibrator 330 via a connecting shaft 327 and a connecting plate 332. When the sheet material is conveyed on the conveying system 100, the motor 335 drives the grooving cutter 329 and the grouting assembly 328 to rotate synchronously. Simultaneously, under the vibration of the pneumatic vibrator 330, the grooving cutter 329 can cut grooves on the sheet material, and the grouting assembly 328 can apply grout into the grooves, achieving simultaneous grooving and grouting of the sheet material. This grouting process can simultaneously complete grooving and precise grouting operations without manual intervention, significantly reducing labor costs and improving production efficiency.

[0041] Preferably, the grouting cutter head assembly 320 further includes a first mounting plate 331 and a sleeve 333; the first mounting plate 331 connects the connecting plate 332 and the grouting assembly 328; the sleeve 333 is sleeved on the connecting shaft 327 and is located between the motor 335 and the grouting assembly 328.

[0042] In this embodiment, an automated grouting production device is provided. By setting a first mounting plate 331 to connect the connecting plate 332 and the grouting assembly 328, the synchronous operation of the grouting assembly 328 and the grooving knife 329 on the connecting plate 332 can be made more stable. By setting a sleeve 333, the synchronous rotation of the grouting assembly 328 and the grooving knife 329 can be made more stable.

[0043] Preferably, the grouting cutter head assembly 320 further includes a mounting base 326, a second mounting plate 324, and a fixing plate 334; one side of the mounting base 326 is mounted on one side of the second mounting plate 324, and the other side of the mounting base 326 is mounted on the connecting shaft 327; one end of the fixing plate 334 is connected to the other side of the mounting base 326, and the other end of the fixing plate 334 is connected to the sleeve 333.

[0044] In this embodiment, an automated grouting production equipment can assemble a motor 335, a matching grooving knife 329, and a grouting component 328 onto a second mounting plate 324 by setting a mounting base 326; and can also fix a sleeve 333 onto the second mounting plate 324 by setting a fixing plate 334.

[0045] Preferably, the grouting cutter head assembly 320 further includes a lifting slider 323 and a slide rail 325; the lifting slider 323 is provided on the other side of the second mounting plate 324; the slide rail 325 is disposed through the lifting slider 323, and the slider and the lifting slider 323 are slidably connected.

[0046] Preferably, the slurry cutter head assembly 320 further includes a lifting cylinder 321, a connecting block 322, and a third mounting plate 336; the lifting cylinder 321 is mounted on the third mounting plate 336; the bottom of the lifting cylinder 321 is connected to the top of the second mounting plate 324 via the connecting block 322.

[0047] The automated slurry coating production equipment of this embodiment, by setting up a lifting slider 323 and a slide rail 325, can ensure the stability of the movement process when the lifting cylinder 321 drives the slurry coating component 328 to rise or fall.

[0048] Preferably, the slurry coating system 300 further includes a first storage tank 310; the first storage tank 310 includes a barrel body 312 and a barrel cover 313; the barrel cover 313 is installed on the top of the barrel body 312; the barrel cover 313 is provided with a feed inlet 316; the bottom of the barrel body 312 is provided with a discharge outlet 311; the barrel body 312 is connected to the slurry coating assembly 328 through the discharge outlet 311.

[0049] This embodiment of an automated slurry production equipment ensures that the slurry in the first storage tank 310 moves downwards until it enters the slurry coating component 328 by setting an inlet 316 on the tank cover 313 and an outlet 311 at the bottom of the tank body 312.

[0050] Preferably, the automated slurry production equipment also includes a pneumatic system 110, an air pipe, and an air inlet pressure reducing valve 317; the pneumatic system 110 is connected to one end of the air inlet pressure reducing valve 317 via the air pipe; the other end of the air inlet pressure reducing valve 317 is connected to the first storage tank 310.

[0051] The automated slurry production equipment of this embodiment can provide air pressure to the first storage tank 310 at any time through the pneumatic system 110, so as to ensure that the air pressure in the first storage tank 310 can be adjusted at any time.

[0052] Preferably, the grouting system 300 further includes a second storage tank 360; the second storage tank 360 is connected to the grouting assembly 328.

[0053] This embodiment of an automated slurry production equipment, by setting a first storage tank 310 to store slurry and a second storage tank 360 to store powder, can meet the processing requirements of artificial quartz stone.

[0054] Preferably, the automated grouting production equipment also includes a control system 200; the control system 200 controls the grouting system 300.

[0055] This embodiment of an automated sizing production equipment enables the sizing system 300 to process the board according to a pre-prepared board texture by setting up a control system 200.

[0056] Preferably, the automated slurry production equipment also includes a dust removal system 400; the dust removal system 400 is located on the side of the conveying system 100.

[0057] This embodiment of an automated slurry production equipment, by setting up a dust removal system 400, can effectively absorb the powder that flies out during the operation of the equipment, preventing excessive powder from causing pollution.

[0058] Specifically, the conveying system 100 of this embodiment includes a belt conveyor main drive 120, a pressure bar assembly 130, and a pre-compression device 140. The conveying system 100 can be selected, but is not limited to, a robust frame-type flat mechanical structure. The conveying system 100 realizes the rotation of the drive roller by the belt conveyor main drive 120 through the pressure bar assembly 130 and the pre-compression device 140, and simultaneously relies on the friction between the drive roller and the belt to move the sheet material on the belt. The friction on the belt conveyor main drive 120 can be adjusted by adjusting the position of the driven roller; that is, the larger the center distance between the drive roller and the driven roller, the greater the friction between the belt and the roller. Since the belt conveyor main drive 120 uses a servo motor to drive the drive roller, the belt running speed can be adjusted at any time within a certain range, and the drive can be stopped as the reading is read.

[0059] Specifically, in this embodiment, the slurry application system 300 is installed above the conveying system 100, and the slurry application system 300 can move along the X-axis or Y-axis direction; the control system 200 is placed on the left side of the machine in the form of an electrical cabinet, and casters are provided at the bottom of the electrical cabinet so that the electrical cabinet can be pushed at any time. It is the core of the equipment's motion control and controls the movement of the mechanical parts; when the equipment is in slurry application or powder spraying operation, the dust removal system 400's dust removal motor 335 is turned on to start collecting dust and splashed slurry to prevent contamination of the board surface.

[0060] Furthermore, in this embodiment, the grouting system 300 drives the grouting cutter head assembly 320, the first storage tank 310 and the second storage tank 360 to perform grouting or powder spraying operations above the servo conveying system 100.

[0061] Specifically, in this embodiment, after the control system 200 energizes the solenoid valve, the lifting cylinder 321 descends, causing the grouting cutter head assembly 320 to descend to the working surface. The motor 335 then drives the connecting shaft 327, the grouting assembly 328, the grooving cutter 329, the pneumatic vibrator 330, the first mounting plate 331, the connecting plate 332, and the rotating sleeve 333 to move along the trajectory set by the control system 200. Under the vibration of the pneumatic vibrator 330, the grooving cutter 329 creates grooves on the board material, while the grouting assembly 328 pours grout into the grooves, simultaneously grooving and grouting. The grouting assembly 328 can be quickly opened and closed without dripping, greatly reducing contamination of the board surface; the short distance between the control end and the discharge end reduces the amount of grout remaining in the pipeline.

[0062] Specifically, in this embodiment, the feed inlet 316 is preferably located at the center of the barrel cover 313. Before the slurry application begins, the prepared colored slurry is placed into the first storage tank 310. The slurry is viscous and generally settles at the bottom of the barrel 312. During operation, the barrel 312 and the barrel cover 313 are sealed with bolts, the pressure relief valve is closed to ensure no air leakage, the air source is connected to the air inlet pressure reducing valve 317, and the air pressure is adjusted from low to high. The discharge port 311 is then opened, and the slurry from the discharge port 311 is delivered to the slurry application assembly 328. In this embodiment, the opening and closing of the slurry application assembly 328 is controlled by the control system 200.

[0063] Specifically, in this embodiment of an automated slurry coating production equipment, at the slurry coating front end, a material placing machine has already placed the material on the mold, and then it is conveyed to the conveying system 100 via a belt conveyor or roller conveyor. The main drive 120 of the belt conveyor starts counting after the proximity switch contacts the material and stops at the working position of the conveying system 100. The pre-prepared material texture is imported into the control system 200 in drawing format. By editing on the control system 200, a machine-executable language is exported. The control system 200 controls the travel path of the slurry coating system 300, the lifting and lowering of the lifting cylinder 321, the start and stop of the slurry coating assembly 328, and the swing trajectory of the motor 335 according to the material texture. The first storage tank 310 is fixed to the slurry coating system 300 by a rigid connection but can be detached. The first storage tank 310 is ready to feed the slurry into the slurry coating assembly 328 at any time. Through the action control of the control system 200, the grooving and slurry coating work of each material is completed in a complete and continuous manner. This improves the working efficiency of the entire line and ensures the accuracy and stability of the slurry coating texture.

[0064] Specifically, in this embodiment of an automated slurry production equipment, one slurry cutter head assembly 320 corresponds to one first storage tank 310, and one unit can be equipped with one or more sets. Depending on customer needs or the requirements of the board material, different colors can be placed on different first storage tanks 310 to enrich the color diversity of the board material. The first storage tank 310 can be selected from barrels 312 of the same or different volumes as needed, storing slurry with different capacities and colors.

[0065] Specifically, the pneumatic system 110 in this embodiment is mainly a pressure regulating valve for the entire machine's air circuit, controlling the air pressure of the pneumatic vibrator 330, the opening and closing of the slurry application assembly 328, and the air pressure of the first storage tank 310. The pneumatic system 110 is connected to the inlet pressure reducing valve 317 via an air pipe, allowing the pneumatic system 110 to provide air pressure to the first storage tank 310 at any time, ensuring that the air pressure inside the first storage tank 310 can be adjusted at any time. The tank cover 313 is also equipped with an installation valve 314 and a pressure relief valve 315. Due to the function of the installation valve 314 and the pressure relief valve 315, the pressure can be automatically released when the pressure reaches the upper limit of the first storage tank 310, preventing safety accidents.

[0066] This embodiment of an automated grouting production equipment revolutionizes the artificial quartz stone production line by introducing an automated grouting device. This equipment eliminates the need for manual intervention in the mold grooving and grouting processes after the slabs are delivered to the grouting station. Simply pre-fill the first storage tank 310 with the prepared color paste, then preset the grooving path and grouting color scheme in the system, and start with a single button to simultaneously complete the grooving and precise grouting operations. This significantly reduces labor costs, improves production efficiency, and paves the way for the digital and intelligent management of the entire production line.

[0067] This embodiment of an automated slurry coating production device cleverly integrates CNC motion components, a storage tank system, an intelligent discharge solenoid valve, and a high-performance slurry coating head. The two storage tanks are meticulously designed, featuring convenient on / off ball valves at the bottom and safety valves, pressure regulating valves, and air inlets at the top, along with control valves to ensure operational safety and efficiency. The slurry coating head has been optimized for flexible opening and closing and drip-free operation, further improving production quality. This equipment enables a fully automated production process for artificial quartz stone, significantly improving production efficiency and enhancing process controllability. Furthermore, it can easily produce artificial quartz stone with diverse and naturally realistic patterns, meeting the growing market demand for high-quality, personalized artificial quartz stone products.

[0068] The embodiments of the automated slurry production equipment provided by this utility model have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the core ideas of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principles of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. An automated slurry production equipment, characterized in that, include: Conveying system (100); A grouting system (300) moves above the conveying system (100); the grouting system (300) includes a grouting cutter head assembly (320); the grouting cutter head assembly (320) includes a motor (335), a connecting shaft (327), a grouting component (328), a connecting plate (332), a grooving cutter (329), and a pneumatic vibrator (330); one end of the connecting shaft (327) is connected to the motor (335); the other end of the connecting shaft (327) faces the... The conveying system (100) is described above; the grouting assembly (328) is disposed on the other end of the connecting shaft (327); the connecting plate (332) is mounted on the connecting shaft (327); one end of the grooving knife (329) is mounted on the connecting plate (332), and the other end of the grooving knife (329) faces the conveying system (100) and is located on the side and below the grouting assembly (328); the pneumatic vibrator (330) is mounted on the connecting plate (332).

2. The automated slurry production equipment according to claim 1, characterized in that, The grouting cutter head assembly (320) also includes a first mounting plate (331) and a sleeve (333); the first mounting plate (331) connects the connecting plate (332) and the grouting assembly (328); the sleeve (333) is sleeved on the connecting shaft (327), and the sleeve (333) is located between the motor (335) and the grouting assembly (328).

3. The automated slurry production equipment according to claim 2, characterized in that, The grouting cutter head assembly (320) further includes a mounting base (326), a second mounting plate (324), and a fixing plate (334); one side of the mounting base (326) is mounted on one side of the second mounting plate (324), and the other side of the mounting base (326) is mounted on the connecting shaft (327); one end of the fixing plate (334) is connected to the other side of the mounting base (326), and the other end of the fixing plate (334) is connected to the sleeve (333).

4. The automated slurry production equipment according to claim 3, characterized in that, The grouting cutter head assembly (320) also includes a lifting slider (323) and a slide rail (325); the lifting slider (323) is disposed on the other side of the second mounting plate (324); the slide rail (325) is disposed through the lifting slider (323), and the slider and the lifting slider (323) are slidably connected.

5. The automated slurry production equipment according to claim 4, characterized in that, The grouting cutter head assembly (320) also includes a lifting cylinder (321), a connecting block (322), and a third mounting plate (336); the lifting cylinder (321) is mounted on the third mounting plate (336); the bottom of the lifting cylinder (321) is connected to the top of the second mounting plate (324) through the connecting block (322).

6. The automated slurry production equipment according to any one of claims 1 to 5, characterized in that, The slurry application system also includes a first storage tank (310); the first storage tank (310) includes a barrel body (312) and a barrel cover (313); the barrel cover (313) is installed on the top of the barrel body (312); the barrel cover (313) is provided with a feed inlet (316); the bottom of the barrel body (312) is provided with a discharge outlet (311); the barrel body (312) is connected to the slurry application assembly (328) through the discharge outlet (311).

7. The automated slurry production equipment according to claim 6, characterized in that, The automated slurry production equipment also includes a pneumatic system (110), an air pipe, and an air inlet pressure reducing valve (317); the pneumatic system (110) is connected to one end of the air inlet pressure reducing valve (317) through the air pipe; the other end of the air inlet pressure reducing valve (317) is connected to the first storage tank (310).

8. The automated slurry production equipment according to any one of claims 1 to 5, characterized in that, The grouting system (300) also includes a second storage tank (360); the second storage tank (360) is connected to the grouting assembly (328).

9. The automated slurry production equipment according to any one of claims 1 to 5, characterized in that, The automated grouting production equipment also includes a control system (200); the control system (200) controls the grouting system (300).

10. The automated slurry coating production equipment according to any one of claims 1 to 5, characterized in that, The automated slurry production equipment also includes a dust removal system (400); the dust removal system (400) is located on the side of the conveying system (100).