Device capable of automatically adjusting and controlling slurry flowing

By designing automatic adjustment and control slurry equipment, the problems of slurry splashing and precipitation in calcium silicate plate slurry equipment are solved, efficient slurry transport and mixing are achieved, and product quality and environmental protection are improved.

CN223173245UActive Publication Date: 2025-08-01SHANDONG LIANYINSHAN ENVIRONMENTAL PROTECTION BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202421960882.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-08-01
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

The existing calcium silicate plate slurry equipment has slurry splashing and precipitation problems during processing, which affects product quality and environmental pollution.

Method used

An automatic control slurry device is designed to ensure that the nozzle remains horizontally fit with the mold shell by the coordination of the adjustment assembly and the mixing assembly, avoiding slurry splashing, and preventing slurry precipitation by driving the motor and mixing blades.

Benefits of technology

Effectively avoid slurry splash, improve processing effect, reduce environmental pollution, and ensure product quality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223173245U_ABST
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Abstract

The utility model discloses slurry flowing equipment capable of being automatically adjusted and controlled, and relates to the technical field of calcium silicate board processing equipment. The device comprises a conveyor, a storage tank is arranged at the top of the conveyor, the bottom of the storage tank is communicated with a conveying pipe, and a mold shell is arranged at the top of the conveyor; an adjusting assembly is arranged at the top of the conveyor and comprises a supporting plate, and the supporting plate is arranged at the top of the conveyor. Through the arrangement of the adjusting assembly, the mold shell can drive the push plate to move while the conveyor drives the mold shell to move, the spray pipe can be pushed upwards after the push plate makes contact with the moving wheel, and when the mold shell continues to move, the moving wheel can be moved into the groove to adjust the height of the spray pipe; the spraying pipe is always located at the top of the mold shell and is in a horizontal attaching state, when the spraying pipe injects slurry into the mold shell, the slurry can be effectively prevented from splashing, and the machining effect is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of calcium silicate board processing equipment, and particularly relates to a slurry flow control device that can be automatically adjusted and controlled. Background Art

[0002] As a new type of green environmental protection building material, calcium silicate board not only has the functions of traditional gypsum board, but also has superior fire resistance, moisture resistance and extremely long service life. It is widely used in the suspended ceilings and partition walls of industrial and commercial engineering buildings, interior decoration of homes, lining boards of furniture, lining boards of billboards, shed boards of warehouses, network floors and wall boards of indoor projects such as tunnels. When producing calcium silicate board, a slurry flow device is needed to mix raw materials into slurry, and then it is pressed into shape through a mold.

[0003] However, in the processing of the existing calcium silicate board slurry flow device, a spray pipe is usually used to inject the slurry into the mold, and then it is pressed into shape. However, the spray pipe needs to maintain a certain distance from the mold. When injecting the slurry, due to the influence of the drop, splashing will occur, resulting in waste of the slurry and pollution of the working environment. Moreover, the slurry will precipitate to a certain extent during storage, affecting the quality of the product.

[0004] Therefore, we provide a slurry flow control device that can be automatically adjusted and controlled to solve the above problems. Summary of the Invention

[0005] The purpose of the utility model is to provide a slurry flow control device that can be automatically adjusted and controlled. Through the cooperation of an adjustment component and a mixing component, it solves the problems of the existing calcium silicate board slurry flow device in the processing process, lacking an adjustment function, splashing when injecting the slurry, and a certain amount of precipitation occurring during the storage of the slurry.

[0006] To solve the above technical problems, the utility model is realized through the following technical solutions:

[0007] The utility model is a slurry flow control device that can be automatically adjusted and controlled, including a conveyor. A storage tank is arranged on the top of the conveyor. A delivery pipe is communicated with the bottom of the storage tank. A mold shell is arranged on the top of the conveyor.

[0008] An adjustment component is arranged on the top of the conveyor. The adjustment component includes a support plate. The support plate is arranged on the top of the conveyor. A shunt pipe is communicated with the bottom of the delivery pipe. A spray pipe is slidably connected inside the shunt pipe. A moving plate is fixedly connected to one side of the spray pipe. A moving wheel is movably connected to the bottom of the moving plate. Push plates are fixedly connected to the front side and the rear side of the mold shell. Grooves are formed on the tops of the push plates.

[0009] A mixing component is provided at the top of the storage tank. The mixing component includes a driving motor which is arranged at the top of the storage tank. The output end of the driving motor is fixedly connected with a square column. A rotating rod is slidably connected to the surface of the square column. The bottom of the rotating rod penetrates into the storage tank and is fixedly connected with mixing blades.

[0010] The present utility model is further configured such that a moving component is provided at the top of the storage tank. The moving component includes adjusting rods which are respectively fixedly connected to both sides of the rotating rod. Rotating wheels are movably connected to the opposite sides of the adjusting rods. A convex block is fixedly connected to the top of the storage tank.

[0011] The present utility model is further configured such that a fixed disk is fixedly connected to the surface of the rotating rod and located inside the storage tank. A first spring is sleeved on the surface of the rotating rod.

[0012] The present utility model is further configured such that a bracket is fixedly connected to the rear side of the driving motor, and the other side of the bracket is fixedly connected to the storage tank.

[0013] The present utility model is further configured such that a feed pipe is communicated with one side of the storage tank, and an electromagnetic valve is sleeved on the surface of the conveying pipe.

[0014] The present utility model is further configured such that a sliding rod is fixedly connected to the top of the moving plate. A second spring is sleeved on the surface of the sliding rod. The top of the sliding rod penetrates through the support plate and is fixedly connected with a limiting block.

[0015] The present utility model is further configured such that support columns are fixedly connected to both the front side and the rear side of the support plate, and the tops of the support columns are fixedly connected to the storage tank.

[0016] The present utility model is further configured such that a connecting plate is fixedly connected to the surface of the conveyor, and one side of the shunt pipe is fixedly connected to the support plate.

[0017] The present utility model has the following beneficial effects:

[0018] Through the arrangement of the adjusting component, the present utility model can drive the push plate to move through the mold shell while the conveyor drives the mold shell to move. After the push plate contacts the moving wheel, the spray pipe can be pushed upward. When the mold shell continues to move, the moving wheel can move into the groove to adjust the height of the spray pipe, so that the height of the spray pipe is always located at the top of the mold shell and in a horizontal fitting state. When the spray pipe injects the slurry into the mold shell, the slurry splashing can be effectively avoided, and the processing effect can be improved.

[0019] Of course, it is not necessary for any product implementing the present utility model to achieve all the above-mentioned advantages simultaneously. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] To more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for describing the embodiments.

[0021] Figure 1 It is a three-dimensional structure diagram of a structure of a slurry flow control device that can be automatically adjusted and controlled;

[0022] Figure 2 It is a side view of the top structure of a conveyor in a slurry flow control device that can be automatically adjusted and controlled;

[0023] Figure 3 It is a partial cross-sectional view of a support plate and a flow dividing pipe in a slurry flow control device that can be automatically adjusted and controlled;

[0024] Figure 4 It is a partial side cross-sectional view of a storage tank in a slurry flow control device that can be automatically adjusted and controlled;

[0025] Figure 5 It is a partial cross-sectional view of a rotating rod in a slurry flow control device that can be automatically adjusted and controlled;

[0026] Figure 6 It is a schematic diagram of the adjustment of a nozzle in a slurry flow control device that can be automatically adjusted and controlled.

[0027] In the drawings: 1. Conveyor; 2. Storage tank; 3. Delivery pipe; 4. Mold shell; 5. Support plate; 6. Flow dividing pipe; 7. Nozzle; 8. Moving plate; 9. Moving wheel; 10. Pushing plate; 11. Groove; 12. Driving motor; 13. Square column; 14. Rotating rod; 15. Mixing blade; 16. Adjusting rod; 17. Runner; 18. Protrusion; 19. Fixed disk; 20. First spring; 21. Feed pipe; 22. Solenoid valve; 23. Slide bar; 24. Second spring; 25. Support column; 26. Connecting plate. Specific embodiments

[0028] The following will describe the technical solutions in the embodiments of the present utility model in combination with the drawings in the embodiments of the present utility model. The described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Specific embodiments

[0029] Please refer to Figure 1-6, the utility model is an automatically adjustable and controllable pulp flow equipment, including a conveyor 1. A storage tank 2 is arranged on the top of the conveyor 1. A delivery pipe 3 is communicated with the bottom of the storage tank 2. A die shell 4 is arranged on the top of the conveyor 1. An adjusting component is arranged on the top of the conveyor 1. The adjusting component includes a support plate 5. The support plate 5 is arranged on the top of the conveyor 1. A flow dividing pipe 6 is communicated with the bottom of the delivery pipe 3. A spray pipe 7 is slidably connected inside the flow dividing pipe 6. A moving plate 8 is fixedly connected to one side of the spray pipe 7. A moving wheel 9 is movably connected to the bottom of the moving plate 8. Push plates 10 are fixedly connected to the front side and the rear side of the die shell 4 respectively. Grooves 11 are formed on the top of the push plates 10. A mixing component is arranged on the top of the storage tank 2. The mixing component includes a driving motor 12. The driving motor 12 is arranged on the top of the storage tank 2. A square column 13 is fixedly connected to the output end of the driving motor 12. A rotating rod 14 is slidably connected to the surface of the square column 13. The bottom of the rotating rod 14 penetrates into the storage tank 2 and is fixedly connected with a mixing blade 15.

[0030] Specifically: The conveyor 1 is a belt conveyor. A connecting plate 26 is fixed to the conveyor belt on the surface of the conveyor 1 and can move along with the conveyor belt. The die shell 4 is provided with a thrust by the moving connecting plate 26. There are three discharge ports at the bottom of the flow dividing pipe 6. The spray pipe 7 is slidably connected to the inner wall of the flow dividing pipe 6 and keeps sealed and communicated. The moving wheel 9 is in contact with the surface of the push plate 10. The square column 13 is slidably connected to the inner wall of the rotating rod 14 to ensure that the rotating rod 14 can move up and down while rotating. The mixing blade 15 can rotate along with the rotation of the rotating rod 14 to increase the fluidity of the slurry in the storage tank 2. Specific embodiment

[0031] Please refer to Figure 1-6 , on the basis of the specific embodiment one, a moving component is arranged on the top of the storage tank 2. The moving component includes adjusting rods 16. The adjusting rods 16 are respectively fixedly connected to both sides of the rotating rod 14. Rotating wheels 17 are movably connected to the opposite sides of the adjusting rods 16. A convex block 18 is fixedly connected to the top of the storage tank 2. A fixed disk 19 is fixedly connected to the surface of the rotating rod 14 and inside the storage tank 2. A first spring 20 is sleeved on the surface of the rotating rod 14. A bracket is fixedly connected to the rear side of the driving motor 12. The other side of the bracket is fixedly connected to the storage tank 2. A feed pipe 21 is communicated with one side of the storage tank 2. An electromagnetic valve 22 is sleeved on the surface of the delivery pipe 3. A sliding rod 23 is fixedly connected to the top of the moving plate 8. A second spring 24 is sleeved on the surface of the sliding rod 23. The top of the sliding rod 23 penetrates through the support plate 5 and is fixedly connected with a limiting block. Support columns 25 are fixedly connected to the front side and the rear side of the support plate 5 respectively. The top of the support columns 25 is fixedly connected to the storage tank 2. A connecting plate 26 is fixedly connected to the surface of the conveyor 1. One side of the flow dividing pipe 6 is fixedly connected to the support plate 5.

[0032] Specifically: The rotating wheel 17 is movably connected to the adjusting rod 16. When the rotating rod 14 rotates, it can drive the two groups of rotating wheels 17 to contact the convex blocks 18. At this time, the convex blocks 18 will push the rotating wheels 17 upward to realize the adjustment of the height of the mixing blades 15. The first spring 20 has the function of compressing and storing energy. It can store elastic potential energy when the rotating rod 14 moves upward and release the elastic energy storage when the rotating wheels 17 do not contact the convex blocks 18, which is convenient for resetting the mixing blades 15. A through hole is provided at the top of the storage tank 2 to ensure the up and down movement of the rotating rod 14. The solenoid valve 22 can control the opening and closing of the conveying pipe 3, and the second spring 24 can elastically support the moving plate 8.

[0033] The working principle of the present utility model is as follows: The staff injects the calcium silicate board slurry into the storage tank 2 through the feed pipe 21, and then starts the driving motor 12 through the external controller. The driving motor 12 cooperates with the square column 13 to drive the rotating rod 14 to rotate. The rotating rod 14 drives the mixing blades 15 to rotate to stir the slurry, avoiding precipitation of the slurry during storage;

[0034] While the rotating rod 14 rotates, it drives the adjusting rod 16 and the rotating wheel 17 to rotate. When the rotating wheel 17 contacts the convex block 18, it pushes the rotating rod 14 upward. The rotating rod 14 drives the fixed disk 19 to squeeze the first spring 20. While the rotating rod 14 moves, it drives the mixing blades 15 to move to adjust the mixing range of the slurry and improve the anti-precipitation effect;

[0035] After that, start the conveyor 1. The conveyor 1 drives the connecting plate 26 to push the mold shell 4. The mold shell 4 drives the push plate 10 to move. When the push plate 10 contacts the moving wheel 9, it pushes the moving wheel 9 upward. The moving wheel 9 drives the moving plate 8 to move and squeeze the second spring 24. While the moving plate 8 moves, it drives the spray pipe 7 to move upward. Then continue to control the conveyor 1 to drive the mold shell 4 to move;

[0036] When the moving wheel 9 moves into the groove 11, the second spring 24 resets the moving plate 8, causing the moving plate 8 to drive the spray pipe 7 to move downward, so that the spray pipe 7 is horizontally attached to the mold shell 4 to reduce the influence of the drop. Then start the solenoid valve 22 to open the conveying pipe 3, and inject the slurry into the mold shell 4 through the shunt pipe 6 and the spray pipe 7, which can effectively avoid splashing of the slurry and improve the processing effect.

[0037] The standard parts used in the present utility model can all be purchased from the market, and can also be customized according to the descriptions in the specification and the attached drawings. The specific connection methods of each part all adopt conventional means such as bolts, rivets, welding, etc. that are mature in the prior art. The machinery, parts and equipment all adopt conventional models in the prior art. The control method is automatically controlled by a control unit. The control circuit of the control unit can be realized by simple programming by those skilled in the art, which belongs to the common general knowledge in this field. Therefore, the control method and the circuit connection are not explained in detail in the present utility model.

[0038] The preferred embodiments of the present utility model disclosed above are only used to help illustrate the present utility model. The preferred embodiments do not describe all the details in detail, nor do they limit the present utility model to the specific embodiments described. The present specification selects and specifically describes these embodiments in order to better explain the principle and practical application of the present utility model, so that those skilled in the relevant technical field can well understand and utilize the present utility model.

Claims

1. An automatically adjustable and controllable pulp flow device, comprising a conveyor (1), characterized in that: A storage tank (2) is provided at the top of the conveyor (1). A delivery pipe (3) is connected to the bottom of the storage tank (2). A mold shell (4) is provided at the top of the conveyor (1). An adjustment assembly is provided at the top of the conveyor (1). The adjustment assembly includes a support plate (5). The support plate (5) is arranged at the top of the conveyor (1). A shunt pipe (6) is connected to the bottom of the delivery pipe (3). A spray pipe (7) is slidably connected inside the shunt pipe (6). A moving plate (8) is fixedly connected to one side of the spray pipe (7). A moving wheel (9) is movably connected to the bottom of the moving plate (8). Push plates (10) are fixedly connected to the front and rear sides of the mold shell (4). Grooves (11) are formed at the tops of the push plates (10). A mixing assembly is provided at the top of the storage tank (2). The mixing assembly includes a driving motor (12). The driving motor (12) is arranged at the top of the storage tank (2). A square column (13) is fixedly connected to the output end of the driving motor (12). A rotating rod (14) is slidably connected to the surface of the square column (13). The bottom of the rotating rod (14) penetrates into the storage tank (2) and is fixedly connected to a mixing blade (15).

2. The automatic adjustable control headbox device according to claim 1, wherein: A moving assembly is provided at the top of the storage tank (2). The moving assembly includes adjustment rods (16). The adjustment rods (16) are respectively fixedly connected to both sides of the rotating rod (14). Rotating wheels (17) are movably connected to the opposite sides of the adjustment rods (16). A convex block (18) is fixedly connected to the top of the storage tank (2).

3. The automatic adjustable flow control slurry equipment according to claim 2, wherein: A fixed disk (19) is fixedly connected to the surface of the rotating rod (14) and inside the storage tank (2). A first spring (20) is sleeved on the surface of the rotating rod (14).

4. The automatic adjustable flow control device according to claim 1, wherein: A bracket is fixedly connected to the rear side of the driving motor (12). The other side of the bracket is fixedly connected to the storage tank (2).

5. A flow control device capable of automatic adjustment according to claim 1, characterized in that: A feed pipe (21) is connected to one side of the storage tank (2). An electromagnetic valve (22) is sleeved on the surface of the delivery pipe (3).

6. The automatic control adjustable headbox device according to claim 1, wherein: A sliding rod (23) is fixedly connected to the top of the moving plate (8). A second spring (24) is sleeved on the surface of the sliding rod (23). The top of the sliding rod (23) penetrates through the support plate (5) and is fixedly connected to a limiting block.

7. The automatic adjustable control headbox device according to claim 1, characterized in that: Supports (25) are fixedly connected to the front and rear sides of the support plate (5). The tops of the supports (25) are fixedly connected to the storage tank (2).

8. A flowbox device capable of automatically adjusting control according to claim 1, characterized in that: A connecting plate (26) is fixedly connected to the surface of the conveyor (1). One side of the shunt pipe (6) is fixedly connected to the support plate (5).