Raw material pre-homogenization treatment device based on aluminate cement processing and treatment method thereof

Through the combination of grinding and vibration motors and vacuuming devices, the problem of inconvenient dust removal and disassembly in the existing devices is solved, efficient and uniform mixing and environmentally friendly treatment of aluminate cement is achieved, and processing efficiency and maintenance convenience are improved.

CN120422355APending Publication Date: 2025-08-05GUANGXI BEITOU HIGHWAY & BRIDGE ENG CO LTD +2
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Patent Information

Application Number
CN202510665135.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-08-05

AI Technical Summary

Technical Problem

The existing pre-homogenization treatment device for cement processing has poor effect on dust removal and homogenization mixing, and the structure is fixed and is not convenient for disassembly, which affects the processing efficiency and maintenance of aluminate cement.

Method used

A device including a homogenization tank, a feeding tank and a discharge tank is designed. The raw materials are ground and evenly shaken by a grinding motor and a vibrating motor, and dust is removed by a vacuum cleaner box. The locking butt mechanism is used to facilitate disassembly, achieving uniform mixing and environmentally friendly treatment.

Benefits of technology

It improves the processing efficiency of aluminate cement, reduces dust overflow, enhances environmental protection, and facilitates the disassembly and maintenance of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a raw material pre-homogenization treatment device for aluminate cement processing and a treatment method thereof, and relates to the technical field of cement processing.The device comprises a homogenization tank, a feeding tank and a discharging tank are fixed to the upper end and the lower end of the homogenization tank in a butt joint mode through locking butt joint mechanisms respectively, and feeding pipes are symmetrically fixed to the top end of the feeding tank; a discharging pipe is fixed at the bottom end of the discharging tank; according to the invention, the grinding motor drives the grinding roller in the feeding tank to cooperate with the grinding seat to grind and process each raw material, and the vibration motor drives the conical vibration screen to uniformly shake off each raw material particle into the homogenizing tank for pre-homogenization, so that uniform feeding in the feeding process of each raw material is realized; the raw material homogenizing and mixing device has the advantages that the raw material homogenizing and mixing effect is improved, dust generated in the feeding tank is sucked and removed by the dust suction box through the dust suction cover and the dust suction pipe, the environmental protection property is improved, in addition, the feeding tank and the discharging tank are respectively butted and fixed at the upper end and the lower end of the homogenizing tank through the locking and butting mechanism, and the homogenizing tank, the feeding tank and the discharging tank are convenient to disassemble.
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Description

Technical Field

[0001] The present invention relates to the technical field of cement processing, in particular to a raw material pre-homogenization processing device for aluminate cement processing and a processing method thereof. Background Art

[0002] Cement is a commonly used building material. It is a powdered hydraulic inorganic gelling material formed by high-temperature calcination of raw materials such as limestone and clay. When cement is mixed with water, it forms a slurry. Over time, the slurry will gradually harden and eventually form a solid structure. Cement is an indispensable material in modern construction and is widely used in various construction projects.

[0003] Aluminate cement is a hydraulic cementitious material made from bauxite and limestone, which is calcined to produce a clinker with calcium aluminate as the main component and an alumina content of about 50%. It is often yellow or brown, and sometimes gray. Aluminate cement has the characteristics of high early strength, excellent refractory properties, and strong resistance to sulfate and weak acid corrosion. Therefore, it is widely used in the refractory industry.

[0004] During the production and processing of aluminate cement, it is necessary to pre-homogenize the raw materials through the corresponding homogenization treatment device, so that the raw materials can be pre-mixed, so that the chemical composition distribution in the raw materials is more uniform, and the fluctuations in the production process are reduced, thereby ensuring the quality stability of the cement products, helping to improve the subsequent cement production and processing efficiency, reduce energy consumption, and reduce production costs.

[0005] Most of the existing pre-homogenization treatment devices for raw materials used in cement processing have a single function and only have a single homogenization and mixing function, but are not environmentally friendly and are not convenient for effectively removing the dust generated by the raw materials during the homogenization process, resulting in the dust easily spilling into the outside air during the homogenization process. In addition, the particle sizes of the raw materials are different before homogenization, and it is impossible to ensure that the raw materials are evenly scattered inside the device, which has a bad impact on the homogenization and mixing effect of the raw materials, and to a certain extent reduces the processing efficiency of aluminate cement. In addition, the existing pre-homogenization treatment devices for raw materials used in cement processing have a fixed structure and are generally an integrated fixed design. They are not easy to disassemble, which brings inconvenience to the maintenance and repair work of the device and is not practical. Therefore, the present invention proposes a pre-homogenization treatment device for raw materials used in aluminate cement processing and a treatment method thereof to solve the problems existing in the prior art. Summary of the Invention

[0006] In response to the above problems, the purpose of the present invention is to propose a pre-homogenization treatment device for raw materials for aluminate cement processing and a treatment method thereof, which solves the problems that the existing pre-homogenization treatment device for raw materials for cement processing is not convenient for effectively removing the dust generated by the raw materials during the homogenization process, resulting in poor homogenization and mixing effects of the raw materials, and the device body structure is fixed and not convenient for disassembly.

[0007] In order to achieve the purpose of the present invention, the present invention is implemented through the following technical solutions: based on the raw material pre-homogenization processing device for aluminate cement processing, it includes a homogenization tank, the upper and lower ends of the homogenization tank are respectively docked with a feeding tank and a discharge tank by a locking docking mechanism, the top of the feeding tank is symmetrically fixed with a feeding pipe, and the bottom of the discharge tank is fixed with a discharge pipe, a stirring and homogenizing mechanism driven to rotate by a stirring motor is provided inside the homogenization tank, a grinding seat is fixed on the inner wall of the feeding tank, a grinding roller driven to rotate by a grinding motor and adapted to the grinding seat is provided on the inner side of the grinding seat, a discharge port is opened at the center position of the bottom end of the grinding seat, a conical vibrating screen is fixed inside the feeding tank and located below the grinding seat, a vibration motor is fixed at the center position of the bottom end of the conical vibrating screen, dust boxes are fixed on the outer walls of both sides of the feeding tank, a dust suction pipe is fixed on the top of the dust suction box, the end of the dust suction pipe away from the dust suction box passes through the feeding tank and is fixed with a dust suction hood located between the grinding seat and the conical vibrating screen.

[0008] Further improvements are: an annular base is fixed to the bottom end of the discharge tank, and supporting legs are symmetrically fixed to the bottom end of the annular base. A first sealing groove is provided at both the upper and lower ends of the homogenization tank, and a second sealing groove adapted to the first sealing groove is provided at the opposite end of the feeding tank and the discharge tank, and a sealing ring is embedded between the first sealing groove and the second sealing groove.

[0009] A further improvement is that the locking docking mechanism includes a drive box fixed to the outer walls on both sides of the homogenization tank and fixed blocks fixed to the outer walls on both sides of the feeding tank and the discharge tank. A bidirectional screw driven to rotate by a turning handle is provided inside the drive box, and threaded blocks are threadedly sleeved on both sides of the bidirectional screw. The end of the threaded block away from the homogenization tank slides through the outside of the drive box and is fixed with an L-shaped fixing plate. A plug is fixed to the side wall of the L-shaped fixing plate close to the fixed block, and a socket adapted to the plug is provided on the fixed block.

[0010] A further improvement is that the end of the turning handle close to the driving box passes through the rotating shaft to the inside of the driving box and is fixed with a driving bevel gear, and the middle position of the bidirectional screw is fixed with a driven bevel gear meshing with the driving bevel gear.

[0011] Further improvements are: the stirring motor is fixed in the motor box, support rods are symmetrically fixed between the outer wall of the motor box and the inner wall of the homogenization tank, the top of the motor box is designed as an arc dome, the grinding motor is fixed to the top of the homogenization tank, and the output shaft of the grinding motor passes through the interior of the homogenization tank through a bearing and is fixed to the top of the grinding roller.

[0012] Further improvements are: the stirring and homogenizing mechanism includes a stirring rod fixed on the output shaft of the stirring motor and a first stirring blade symmetrically fixed to the outer wall of the stirring rod, the inner wall of the homogenizing tank is symmetrically fixed with a second stirring blade staggered and adapted to the first stirring blade, and the bottom end of the stirring rod is fixed with a spiral conveying shaft extending to the inside of the discharge pipe.

[0013] A further improvement is that connecting rods are symmetrically fixed between the dust collection box and the feeding tank, a dust filter is fixed inside the dust collection box below the air outlet at the output end of the dust collection pipe, and an exhaust fan is fixed at the bottom of the dust collection box.

[0014] The processing method based on the pre-homogenization processing device for raw materials for aluminate cement processing includes the following steps: first, the raw materials for aluminate cement processing to be pre-homogenized are added into the feeding tank through the feeding pipe, then the grinding motor is started to drive the grinding roller to cooperate with the grinding seat to grind the raw materials, and the ground raw material particles fall from the discharge port onto the conical vibrating screen. At this time, the vibration motor is started to drive the conical vibrating screen to vibrate, so that the raw material particles are evenly shaken off along the conical vibrating screen into the homogenization tank. While the raw material particles are being shaken off, the dust generated in the feeding tank is sucked away through the dust hood and the dust suction pipe by the dust collection box. At this time, the stirring motor is started again to drive the stirring and homogenizing mechanism to stir the raw material particles entering the homogenization tank until the raw material particles are mixed and homogenized, and then the control valve on the discharge pipe is opened to discharge the mixed raw materials after homogenization out of the discharge tank, thereby completing the pre-homogenization processing of the raw materials for aluminate cement processing.

[0015] A further improvement is that when the homogenizing tank, the feeding tank and the discharge tank need to be separated, the locking docking mechanism is first used to release the clamping between the L-shaped fixing plate and the fixed block, and then the feeding tank is removed from the top of the homogenizing tank, and then the homogenizing tank is removed from the top of the discharge tank, thus completing the separation of the homogenizing tank, the feeding tank and the discharge tank.

[0016] The beneficial effects of the present invention are as follows: the present invention drives the grinding roller in the feeding tank to cooperate with the grinding seat to grind each raw material through the grinding motor, and drives the conical vibrating screen through the vibration motor to evenly shake off the raw material particles into the homogenization tank for pre-homogenization, thereby achieving uniform feeding of each raw material in the feeding process, thereby improving the homogenization and mixing effect of each raw material, and improving the processing efficiency of aluminate cement to a certain extent, and the dust generated in the feeding tank is sucked away by the dust collection box through the dust collection hood and the dust collection pipe, which can effectively prevent the dust from being dispersed into the outside air during the homogenization of each raw material, thereby improving environmental protection. In addition, the feeding tank and the discharge tank are respectively docked and fixed at the upper and lower ends of the homogenization tank through the locking docking mechanism, so that the homogenization tank, the feeding tank and the discharge tank are easy to disassemble, thereby bringing convenience to the maintenance and repair of the raw material pre-homogenization processing device for aluminate cement processing, and it is easy to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a front view of a raw material pre-homogenization processing device for aluminate cement processing according to the present invention;

[0018] Figure 2 This is a front cross-sectional view of a raw material pre-homogenization processing device for aluminate cement processing according to the present invention;

[0019] Figure 3 The present invention Figure 2 A magnified view of point A in the figure;

[0020] Figure 4 The present invention Figure 2 Enlarged view of point B in FIG.

[0021] Figure 5 It is a schematic diagram of the three-dimensional structure of the grinding seat and the grinding roller of the present invention.

[0022] Among them: 1. Homogenizing tank; 2. Feeding tank; 3. Discharge tank; 4. Feeding pipe; 5. Discharge pipe; 6. Stirring motor; 7. Grinding seat; 8. Grinding motor; 9. Grinding roller; 10. Discharge port; 11. Conical vibrating screen; 12. Vibrating motor; 13. Dust box; 14. Dust pipe; 15. Dust hood; 16. Ring base; 17. Support legs; 18. First sealing groove; 19. Second sealing groove; 20. Sealing ring; 21. Drive box; 22. Fixed block; 23. Turning handle; 24. Bidirectional screw; 25. Threaded block; 26. L-shaped fixing plate; 27. Insert column; 28. Socket; 29. Active bevel gear; 30. Driven bevel gear; 31. Motor box; 32. Support rod; 33. Stirring rod; 34. First stirring blade; 35. Second stirring blade; 36. Screw conveyor shaft; 37. Dust filter; 38. Exhaust fan. DETAILED DESCRIPTION

[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0024] Aluminate cement is composed of mineral phase calcium aluminate, tri-aluminate phase calcium aluminate, mullite, and β-silica. Calcium aluminate is the main hardening substance. Unlike the silicate in Portland cement, the calcium aluminate in aluminate cement exists within a wider pH range. After complete hydration, hexagonal hydrated aluminate is obtained. Due to its unique composition and manufacturing process, aluminate cement has advantages such as wear resistance, sulfate erosion resistance, corrosion resistance, and improved concrete strength.

[0025] The raw material pre-homogenization device for aluminate cement processing is a key equipment in the production and processing of aluminate cement. It is used to mix and homogenize raw materials of different sources and properties to ensure the uniformity of the chemical composition of cement clinker, thereby improving the quality of cement products. Based on the findings in the prior art, most of the existing raw material pre-homogenization devices for aluminate cement processing have the problems of being not environmentally friendly, having poor homogenization and mixing effects, and being inconvenient to disassemble.

[0026] Example 1

[0027] Regarding the problems existing in the above-mentioned prior art, see Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5The present embodiment provides a raw material pre-homogenization processing device for aluminate cement processing, comprising a homogenizing tank 1 with upper and lower openings, a feeding tank 2 and a discharge tank 3 fixed at the upper and lower ends of the homogenizing tank 1, wherein the homogenizing tank 1 is used for mixing and homogenizing the raw materials for aluminate cement processing, the feeding tank 2 is used for uniformly feeding the raw materials for aluminate cement processing, and the discharge tank 3 is used for discharging the raw materials after homogenization, and the feeding tank 2, the discharge tank 3 and the homogenizing tank 1 are fixed together by a locking docking mechanism to form a complete raw material pre-homogenization processing device, and the top of the feeding tank 2 is fixed with four groups of A symmetrically distributed feeding pipe 4 is used for feeding raw materials. A discharge pipe 5 with a control valve is fixed at the center of the bottom end of the discharge tank 3 for discharging raw materials. A stirring and homogenizing mechanism is provided inside the homogenizing tank 1, and the stirring and homogenizing mechanism is driven to rotate by a stirring motor 6 to stir and pre-homogenize the raw materials. The feeding tank 2 and the discharge tank 3 are respectively docked and fixed at the upper and lower ends of the homogenizing tank 1 by a locking docking mechanism, so that the homogenizing tank 1, the feeding tank 2 and the discharge tank 3 are easy to disassemble, thereby bringing convenience to the maintenance and repair of the raw material pre-homogenization processing device for processing aluminate cement;

[0028] The inner wall of the feeding tank 2 is fixed with a grinding seat 7 by bolts, and a grinding groove with a conical design is provided on the inner side of the grinding seat 7. A grinding motor 8 is fixed to the top of the feeding tank 2 by bolts. A grinding roller 9 is provided in the grinding groove inside the grinding seat 7. The grinding roller 9 is adapted to the grinding seat 7 and can cooperate with the grinding seat 7 to grind each raw material so that the raw materials can be fully mixed later. A guide plate is fixed to the top of the feeding tank 2 to guide the raw materials between the grinding roller 9 and the grinding seat 7. A discharge port 10 is provided at the center of the bottom end of the grinding seat 7 so that the ground raw materials can be discharged. 2 is fixed with a conical vibrating screen 11 by bolts, and the conical vibrating screen 11 is located below the grinding seat 7. The mesh aperture of the conical vibrating screen 11 is larger than the particle size of each raw material to be ground. A vibration motor 12 is fixed to the center of the bottom end of the conical vibrating screen 11 by bolts. The grinding motor 8 drives the grinding roller 9 in the feeding tank 2 to cooperate with the grinding seat 7 to grind each raw material, and the vibration motor 12 drives the conical vibrating screen 11 to evenly shake off the crushed particles of each raw material into the homogenizing tank 1 for pre-homogenization, thereby achieving uniform feeding of each raw material during the feeding process;

[0029] Dust boxes 13 with dust collection function are fixed to the outer walls on both sides of the feeding tank 2. A dust collection pipe 14 is fixed to the top of the dust collection box 13. The end of the dust collection pipe 14 away from the dust collection box 13 is the input dust collection port. The input dust collection port of the dust collection pipe 14 passes through the feeding tank 2 and is fixed with a dust collection hood 15. The dust collection hood 15 is located between the grinding seat 7 and the conical vibrating screen 11 so as to remove the dust generated during the vibration of each raw material and improve environmental protection.

[0030] An annular base 16 is fixed to the bottom of the discharge tank 3, and four groups of symmetrically distributed support legs 17 are welded and fixed to the bottom of the annular base 16 to provide stable support for the device. A circular first sealing groove 18 is provided at the upper and lower ends of the homogenization tank 1, and a second sealing groove 19 is provided at the bottom of the feeding tank 2 and the top of the discharge tank 3. The first sealing groove 18 and the second sealing groove 19 are adapted to each other, and a sealing ring 20 is embedded between the first sealing groove 18 and the second sealing groove 19 to improve the sealing between the homogenization tank 1, the feeding tank 2 and the discharge tank 3.

[0031] The locking docking mechanism includes a drive box 21 and a fixed block 22, wherein the drive box 21 is provided with two groups and is fixed to the left and right outer walls of the homogenizing tank 1 by bolts, and the fixed block 22 is provided with four groups and is fixed to the left and right outer walls of the feeding tank 2 and the discharge tank 3 by bolts, and the drive box 21 is provided with a handle 23 on the side away from the homogenizing tank 1. The inside of the drive box 21 is rotatably connected to a bidirectional screw rod 24 through a bearing, and the bidirectional screw rod 24 is driven to rotate by the handle 23. Both sides of the bidirectional screw rod 24 are threaded with thread blocks 25 and the threaded connection directions are opposite. The end of the thread block 25 away from the homogenizing tank 1 slides through the outside of the drive box 21 and is fixed with an L-shaped fixed plate 26 by bolts. The side wall of the drive box 21 on the side away from the homogenizing tank 1 is provided with a through groove adapted to the thread block 25 for the thread block 25 to slide through. The L-shaped fixed plate 26 A plug post 27 is welded and fixed to the side wall near the fixed block 22, and a socket 28 is provided on the fixed block 22, and the socket 28 is adapted to the plug post 27. The end of the turning handle 23 near the drive box 21 passes through the inside of the drive box 21 through the rotating shaft and is fixed with a driving bevel gear 29. A driven bevel gear 30 is fixed at the middle position of the two-way screw rod 24, and the driven bevel gear 30 and the driving bevel gear 29 are meshed and adapted with each other. The two-way screw rod 24 is driven to rotate by turning the turning handle 23, so that the threaded blocks 25 threaded on both sides of the two-way screw rod 24 drive the two groups of L-shaped fixing plates 26 to move toward or in opposite directions, so as to drive the plug post 27 to insert into or disengage from the socket 28, thereby realizing or releasing the clamping fixation between the L-shaped fixing plate 26 and the fixed block 22, that is, realizing or releasing the docking fixation between the homogenizing tank 1, the feeding tank 2 and the discharge tank 3.

[0032] A motor box 31 is provided at the center of the homogenizing tank 1. The stirring motor 6 is fixed in the motor box 31 by bolts. Support rods 32 are symmetrically fixed between the outer wall of the motor box 31 and the inner wall of the homogenizing tank 1. The support rods 32 provide support for the motor box 31, so that the stirring motor 6 is fixed inside the homogenizing tank 1. The top of the motor box 31 is designed as an arc-shaped dome to facilitate the sliding of various raw materials. The output shaft of the grinding motor 8 passes through the interior of the homogenizing tank 1 through a bearing and is fixed to the top of the grinding roller 9. The grinding motor 8 drives the grinding roller 9 to rotate inside the grinding seat 7 to achieve the grinding of various raw materials.

[0033] The stirring and homogenizing mechanism includes a stirring rod 33 and a first stirring blade 34, wherein the stirring rod 33 is fixed to the output shaft of the stirring motor 6 by bolts, the first stirring blade 34 is symmetrically fixed to the outer wall of the stirring rod 33, and the inner wall of the homogenizing tank 1 is symmetrically fixed with a second stirring blade 35, and the second stirring blade 35 is staggered and adapted with the first stirring blade 34. The stirring motor 6 drives the stirring rod 33 to drive the first stirring blade 34 to rotate, and the first stirring blade 34 cooperates with the second stirring blade 35 to fully stir the raw materials to improve the homogenization effect. The screw conveying shaft 36 is fixed to the bottom end of the stirring rod 33, and the screw conveying shaft 36 extends to the inside of the discharge pipe 5 so that the homogenized raw materials can be smoothly discharged from the discharge pipe 5.

[0034] Connecting rods are symmetrically fixed between the dust box 13 and the feeding tank 2 to fix the dust box 13 on the outer wall of the feeding tank 2. A dust filter 37 is fixed inside the dust box 13 for filtering and intercepting the dust sucked into the dust box 13, and the dust filter 37 is located below the air outlet at the output end of the dust suction pipe 14. An exhaust fan 38 is fixed at the bottom end of the dust box 13, and the exhaust fan 38 is used to exhaust the inside of the dust box 13, so that suction is generated inside the dust box 13, and the dust suction function is provided.

[0035] Example 2

[0036] With respect to Example 1, this embodiment provides a processing method based on a raw material pre-homogenization processing device for aluminate cement processing, comprising the following steps:

[0037] Step 1: Raw material grinding pretreatment

[0038] First, the raw materials for processing aluminate cement are added into the feeding tank 2 from the four groups of feeding pipes 4 at the top of the feeding tank 2. When the raw materials fall between the grinding roller 9 and the grinding seat 7, the grinding motor 8 is started to drive the grinding roller 9 to rotate, and cooperate with the grinding seat 7 to grind the raw materials.

[0039] Step 2: Vibrate and shake off the raw materials

[0040] The raw material particles ground by the grinding roller 9 and the grinding seat 7 fall from the discharge port 10 onto the conical vibrating screen 11. At this time, the vibration motor 12 is started to drive the conical vibrating screen 11 to vibrate. Due to the conical design of the conical vibrating screen 11, the raw material particles can be evenly shaken off along the conical vibrating screen 11 into the interior of the homogenizing tank 1;

[0041] Step 3: Homogenization and dust removal

[0042] When the conical vibrating screen 11 vibrates the raw materials, dust is inevitably generated. At this time, the exhaust fan 38 at the bottom of the dust box 13 is started to generate suction inside the dust box 13, and the dust is sucked into the dust box 13 through the dust pipe 14 by the dust hood 15 to achieve dust removal.

[0043] Step 4: Pre-homogenization of raw materials

[0044] When the raw material particles enter the homogenization tank 1, the stirring motor 6 is started to drive the stirring and homogenizing mechanism to stir the raw material particles until the raw material particles are mixed and homogenized. Then, the control valve on the discharge pipe 5 is opened to discharge the homogenized mixed raw materials into the discharge tank 3, completing the pre-homogenization treatment of the raw materials for aluminate cement processing;

[0045] When it is necessary to separate the homogenizing tank 1, the feeding tank 2 and the discharge tank 3, first use the locking docking mechanism to release the clamping between the L-shaped fixing plate 26 and the fixing block 22, then remove the feeding tank 2 from the top of the homogenizing tank 1, and then remove the homogenizing tank 1 from the top of the discharge tank 3, thus completing the separation of the homogenizing tank 1, the feeding tank 2 and the discharge tank 3, so as to carry out corresponding maintenance and repair work.

[0046] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the foregoing embodiments. The foregoing embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A raw material pre-homogenization device for aluminate cement processing, comprising a homogenization tank (1), characterized in that: The upper and lower ends of the homogenizing tank (1) are respectively fixedly connected to a feeding tank (2) and a discharge tank (3) by a locking docking mechanism. A feeding pipe (4) is symmetrically fixed to the top of the feeding tank (2), and a discharge pipe (5) is fixed to the bottom of the discharge tank (3). A stirring and homogenizing mechanism driven to rotate by a stirring motor (6) is provided inside the homogenizing tank (1). A grinding seat (7) is fixed to the inner wall of the feeding tank (2). A grinding roller (9) is provided on the inner side of the grinding seat (7) and is driven to rotate by a grinding motor (8) and adapted to the grinding seat (7). The bottom end of the grinding seat (7) is provided with a grinding roller (9). A discharge port (10) is provided at the center position of the feeding tank (2), a conical vibrating screen (11) located below the grinding seat (7) is fixed inside the feeding tank (2), a vibration motor (12) is fixed at the center position of the bottom end of the conical vibrating screen (11), dust collection boxes (13) are fixed on the outer walls of both sides of the feeding tank (2), a dust collection pipe (14) is fixed on the top of the dust collection box (13), and the end of the dust collection pipe (14) away from the dust collection box (13) passes through the feeding tank (2) and is fixed with a dust collection cover (15) located between the grinding seat (7) and the conical vibrating screen (11).

2. The raw material pre-homogenization treatment device for processing aluminate cement according to claim 1, characterized in that: The bottom end of the discharge tank (3) is fixed with an annular base (16), and the bottom end of the annular base (16) is symmetrically fixed with supporting legs (17). The upper and lower ends of the homogenization tank (1) are both provided with first sealing grooves (18). The opposite ends of the feeding tank (2) and the discharge tank (3) are both provided with second sealing grooves (19) adapted to the first sealing groove (18). A sealing ring (20) is embedded between the first sealing groove (18) and the second sealing groove (19).

3. The raw material pre-homogenization treatment device for processing aluminate cement according to claim 1, characterized in that: The locking docking mechanism comprises a driving box (21) fixed to the outer walls on both sides of the homogenizing tank (1) and a fixing block (22) fixed to the outer walls on both sides of the feeding tank (2) and the discharge tank (3); a bidirectional screw rod (24) driven to rotate by a turning handle (23) is provided inside the driving box (21); threaded blocks (25) are threadedly sleeved on both sides of the bidirectional screw rod (24); the threaded block (25) slides through the outside of the driving box (21) at one end away from the homogenizing tank (1) and is fixed with an L-shaped fixing plate (26); a plug post (27) is fixed to the side wall of the L-shaped fixing plate (26) close to the fixing block (22); and a socket (28) adapted to the plug post (27) is provided on the fixing block (22).

4. The raw material pre-homogenization treatment device for processing aluminate cement according to claim 3, characterized in that: One end of the turning handle (23) close to the driving box (21) passes through the interior of the driving box (21) through a rotating shaft and is fixed with a driving bevel gear (29); a driven bevel gear (30) meshing with the driving bevel gear (29) is fixed in the middle position of the bidirectional screw rod (24).

5. The raw material pre-homogenization treatment device for processing aluminate cement according to claim 1, characterized in that: The stirring motor (6) is fixed in a motor box (31), and a support rod (32) is symmetrically fixed between the outer wall of the motor box (31) and the inner wall of the homogenizing tank (1). The top of the motor box (31) is designed as an arc dome. The grinding motor (8) is fixed to the top of the homogenizing tank (1), and the output shaft of the grinding motor (8) passes through the interior of the homogenizing tank (1) through a bearing and is fixed to the top of the grinding roller (9).

6. The raw material pre-homogenization treatment device for processing aluminate cement according to claim 1, characterized in that: The stirring and homogenizing mechanism comprises a stirring rod (33) fixed on the output shaft of a stirring motor (6) and a first stirring blade (34) symmetrically fixed to the outer wall of the stirring rod (33); a second stirring blade (35) staggered and adapted to the first stirring blade (34) is symmetrically fixed to the inner wall of the homogenizing tank (1); and a spiral conveying shaft (36) extending to the interior of a discharge pipe (5) is fixed to the bottom end of the stirring rod (33).

7. The raw material pre-homogenization treatment device for processing aluminate cement according to claim 1, characterized in that: A connecting rod is symmetrically fixed between the dust collection box (13) and the feeding tank (2), a dust filter (37) located below the air outlet of the output end of the dust collection pipe (14) is fixed inside the dust collection box (13), and an exhaust fan (38) is fixed at the bottom end of the dust collection box (13).

8. The processing method based on the raw material pre-homogenization processing device for aluminate cement processing according to any one of claims 1 to 7, characterized in that: The following steps are involved: First, the raw materials for processing aluminate cement to be pre-homogenized are added to the feeding tank (2) through the feeding pipe (4), and then the grinding motor (8) is started to drive the grinding roller (9) to cooperate with the grinding seat (7) to grind the raw materials. The ground raw material particles fall from the discharge port (10) onto the conical vibrating screen (11). At this time, the vibration motor (12) is started to drive the conical vibrating screen (11) to vibrate, so that the raw material particles are evenly shaken off along the conical vibrating screen (11) and dropped into the homogenizing tank (1). Inside, while the raw material particles are shaken off, the dust generated in the feeding tank (2) is sucked away through the dust hood (15) and the dust pipe (14) by using the dust box (13). At this time, the stirring motor (6) is started to drive the stirring and homogenizing mechanism to stir the raw material particles entering the homogenizing tank (1) until the raw material particles are mixed and homogenized. Then, the control valve on the discharge pipe (5) is opened to discharge the mixed raw materials after homogenization treatment into the discharge tank (3), thereby completing the pre-homogenization treatment of the raw materials for aluminate cement processing.

9. The processing method based on the raw material pre-homogenization treatment device for aluminate cement processing according to claim 8, characterized in that: When it is necessary to separate the homogenizing tank (1), the feeding tank (2) and the discharge tank (3), the locking docking mechanism is first used to release the clamping connection between the L-shaped fixing plate (26) and the fixing block (22), and then the feeding tank (2) is removed from the top of the homogenizing tank (1), and then the homogenizing tank (1) is removed from the top of the discharge tank (3), thus completing the separation of the homogenizing tank (1), the feeding tank (2) and the discharge tank (3).