Special soaking device for brick making

By designing a special brick making soaking device with automatic stacking function, the problem of high position of the plate in the prior art resulting in high labor intensity for workers is solved, and a more efficient brick soaking and stacking process is achieved.

CN222891447UActive Publication Date: 2025-05-23YICHANG XINCHENG BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202421829878.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-05-23
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

In the existing special brick making soaking device, the placement plate is fixedly installed above the soaking box, resulting in high labor intensity when placing bricks, affecting the work efficiency and the soaking efficiency of the bricks.

Method used

A special brick-making soaking device including a mounting rack, a soaking box and a moving mechanism is designed. The moving mechanism consists of a first motor, a threaded rod and a slider. The motor drives the threaded rod to rotate, realizing automatic up and down movement of the placement plate, so that the bricks can be placed at a lower position, reducing the labor intensity of workers.

Benefits of technology

Through the automated stacking process, the labor intensity of workers is reduced, the work efficiency of workers is improved, and the bricks is soaked, reducing the possibility of bricks is damaged.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of brickmaking, and discloses a special soaking device for brickmaking, which comprises a mounting frame, a soaking box is placed below the mounting frame, a water outlet is fixedly mounted on the right surface of the soaking box and is communicated with the inside of the soaking box, a first rectangular groove is formed in the lower surface of the mounting frame, and a moving mechanism is arranged on the mounting frame. The moving mechanism comprises a first motor, a threaded rod and a sliding block, the first motor is fixedly mounted on the right surface of the mounting frame, the output end of the first motor rotationally penetrates into the mounting frame, the threaded rod is rotationally mounted in the first rectangular groove, the sliding block is slidably mounted on the inner wall of the first rectangular groove, and the sliding block is in threaded connection with the outer surface of the threaded rod; the first motor drives the threaded rod to rotate, the placing plate and the bricks on the placing plate can enter the soaking box to be soaked, a worker can place the bricks on the placing plate at a low position, the labor intensity of the worker is reduced, and therefore the working efficiency of the worker is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of brick making, in particular to a special soaking device for brick making. Background Art

[0002] After bricks are produced, they usually need to be cured for a period of time. During the curing period, the bricks need to be watered several times a day to avoid the occurrence of brick burning. However, the watering operation not only makes it difficult to fully wet the bricks stacked inside, but also wastes a lot of water resources.

[0003] When soaking bricks in the existing special soaking device for brick making, because the placing plate is fixedly installed above the soaking box, it is necessary to manually stack the bricks on the placing plate located above the soaking box so that the placing plate can place the bricks into the soaking box. However, because the placing plate is located at a high position, the labor intensity of workers is high when stacking the bricks, which affects the work efficiency of the workers and reduces the soaking efficiency of the bricks. Utility Model Content

[0004] 1. Technical issues to be solved

[0005] In view of the deficiencies in the prior art, the utility model provides a special soaking device for brick making, which solves the problem that the placing plates are fixedly installed above the soaking box, and the bricks need to be manually stacked on the placing plates located above the soaking box so that the placing plates can place the bricks into the soaking box. However, since the placing plates are located at a higher position, the labor intensity of workers is high when stacking the bricks, which affects the workers' work efficiency and reduces the soaking efficiency of the bricks.

[0006] (II) Technical solution

[0007] To achieve the above object, the utility model provides the following technical solutions: a special soaking device for brick making, comprising a mounting frame, a soaking box is placed below the mounting frame, a water outlet is fixedly installed on the right surface of the soaking box, the water outlet is communicated with the inside of the soaking box, and a first rectangular groove is opened on the lower surface of the mounting frame;

[0008] The moving mechanism is arranged on the mounting frame, and the moving mechanism includes a first motor, a threaded rod and a slider. The first motor is fixedly mounted on the right surface of the mounting frame, and the output end of the first motor rotates and penetrates into the interior of the mounting frame. The threaded rod is rotatably mounted inside the first rectangular groove. The first motor is fixedly connected to the threaded rod, and the slider is slidably mounted on the inner wall of the first rectangular groove. The slider is threadedly connected to the outer surface of the threaded rod.

[0009] Preferably, the moving mechanism also includes a mounting plate, a second motor and a bidirectional threaded rod, the mounting plate is fixedly mounted on the lower surface of the slider, a second rectangular groove is opened on the lower surface of the mounting plate, the second motor is fixedly mounted on the front surface of the mounting plate, the output end of the second motor rotates and passes through the interior of the second rectangular groove, the bidirectional threaded rod is rotatably mounted on the inner wall of the second rectangular groove, and the bidirectional threaded rod is fixedly connected to the second motor.

[0010] Preferably, the moving mechanism also includes two T-shaped sliders, four first hydraulic telescopic rods and two clamping plates, the two T-shaped sliders are slidably mounted on the inner wall of the second rectangular groove, the two T-shaped sliders are threadedly connected to the outer surface of the bidirectional threaded rod, the four first hydraulic telescopic rods are respectively fixedly mounted on the lower surfaces of the two T-shaped sliders, and the two clamping plates are respectively fixedly mounted on the telescopic ends of the four first hydraulic telescopic rods.

[0011] Preferably, the moving mechanism also includes four rectangular plates and a placing plate. The four rectangular plates are respectively fixedly mounted on the corresponding surfaces of the two clamping plates. The placing plate is arranged between the two clamping plates. Rectangular grooves are opened on the front and rear surfaces of the placing plate at positions corresponding to the four rectangular plates. The four rectangular plates are respectively slidably plugged into the corresponding rectangular grooves.

[0012] Preferably, a T-shaped groove is provided at the left end of the front surface of the placing plate, and a similar T-shaped groove is provided at the right end of the rear surface of the placing plate. T-shaped limit blocks are slidably installed on the inner walls of the two T-shaped grooves, and L-shaped fixing plates are fixedly installed on the upper ends of the two T-shaped limit blocks. Two rectangular limit grooves are provided on the lower surface of the placing plate.

[0013] Preferably, two second hydraulic telescopic rods are fixedly mounted on the lower inner wall of the immersion box, and rectangular limit blocks are fixedly mounted on the upper ends of the two second hydraulic telescopic rods.

[0014] (III) Beneficial effects

[0015] Compared with the prior art, the utility model provides a special immersion device for brick making, which has the following features:

[0016] Beneficial effects:

[0017] 1. The special immersion device for brick making drives the threaded rod to rotate through the first motor, so that the placement plate and the bricks on the placement plate can be placed into the immersion box for immersion. Workers can place the bricks on the placement plate at a lower position, which reduces the labor intensity of the workers and improves their work efficiency.

[0018] 2. The special immersion device for brick making pushes the T-shaped slot into the interior of the T-shaped limit block, and fixes the two T-shaped slots to the interior of the two T-shaped limit blocks through two clamping plates, thereby fixing the two L-shaped fixing plates, so that the two L-shaped fixing plates will further fix the bricks, thereby improving the stability of the bricks and reducing the damage of the bricks. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the overall top view of the special immersion device for brick making of the utility model;

[0020] Figure 2 This is a schematic diagram of the internal section view of the special brick-making soaking device of the utility model;

[0021] Figure 3 This is a schematic diagram of the internal cutaway side view of the special brick-making soaking device of the utility model;

[0022] Figure 4 It is a schematic diagram of the internal cutaway top view of the clamping plate of the utility model.

[0023] In the figure: 1. mounting frame; 2. immersion tank; 3. water outlet; 4. first rectangular groove; 5. first motor; 6. threaded rod; 7. slider; 8. mounting plate; 9. second rectangular groove; 10. second motor; 11. bidirectional threaded rod; 12. T-shaped slider; 13. first hydraulic telescopic rod; 14. clamping plate; 15. rectangular plate; 16. placement plate; 17. rectangular groove; 18. T-shaped groove; 19. T-shaped limit block; 20. L-shaped fixing plate; 21. rectangular limit groove; 22. second hydraulic telescopic rod; 23. rectangular limit block. DETAILED DESCRIPTION

[0024] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0025] See also Figures 1-4 The utility model provides a new technical solution: a special soaking device for brick making, comprising a mounting frame 1, a soaking box 2 is placed below the mounting frame 1, a water outlet 3 is fixedly installed on the right surface of the soaking box 2, the water outlet 3 is communicated with the inside of the soaking box 2, and a first rectangular groove 4 is opened on the lower surface of the mounting frame 1;

[0026] The moving mechanism is arranged on the mounting frame 1, and the moving mechanism includes a first motor 5, a threaded rod 6 and a slider 7. The first motor 5 is fixedly mounted on the right surface of the mounting frame 1, and the output end of the first motor 5 rotates and penetrates into the interior of the mounting frame 1. The threaded rod 6 is rotatably mounted inside the first rectangular groove 4. The first motor 5 is fixedly connected to the threaded rod 6, and the slider 7 is slidably mounted on the inner wall of the first rectangular groove 4. The slider 7 is threadedly connected to the outer surface of the threaded rod 6.

[0027] Furthermore, the moving mechanism also includes a mounting plate 8, a second motor 10 and a bidirectional threaded rod 11. The mounting plate 8 is fixedly mounted on the lower surface of the slider 7. A second rectangular groove 9 is provided on the lower surface of the mounting plate 8. The second motor 10 is fixedly mounted on the front surface of the mounting plate 8. The output end of the second motor 10 rotates and passes through the interior of the second rectangular groove 9. The bidirectional threaded rod 11 is rotatably mounted on the inner wall of the second rectangular groove 9. The bidirectional threaded rod 11 is fixedly connected to the second motor 10.

[0028] Furthermore, the moving mechanism also includes two T-shaped sliders 12, four first hydraulic telescopic rods 13 and two clamping plates 14. The two T-shaped sliders 12 are slidably installed on the inner wall of the second rectangular groove 9. The two T-shaped sliders 12 are threadedly connected to the outer surface of the bidirectional threaded rod 11. The four first hydraulic telescopic rods 13 are respectively fixedly installed on the lower surfaces of the two T-shaped sliders 12, and the two clamping plates 14 are respectively fixedly installed on the telescopic ends of the four first hydraulic telescopic rods 13.

[0029] Furthermore, the moving mechanism also includes four rectangular plates 15 and a placement plate 16. The four rectangular plates 15 are respectively fixedly mounted on the corresponding surfaces of the two clamping plates 14. The placement plate 16 is arranged between the two clamping plates 14. Rectangular grooves 17 are opened on the front and rear surfaces of the placement plate 16 at positions corresponding to the four rectangular plates 15. The four rectangular plates 15 are respectively slidably plugged into the corresponding rectangular grooves 17.

[0030] Furthermore, by driving the threaded rod 6 to rotate through the first motor 5, the placement plate 16 and the bricks on the placement plate 16 can be placed in the immersion box 2 for immersion. Workers can place the bricks on the placement plate 16 at a lower position, thereby reducing the labor intensity of the workers and improving their work efficiency.

[0031] Furthermore, a T-shaped groove 18 is opened at the left end of the front surface of the placement plate 16, and a similar T-shaped groove 18 is opened at the right end of the rear surface of the placement plate 16. T-shaped limit blocks 19 are slidably installed on the inner walls of the two T-shaped grooves 18, and L-shaped fixing plates 20 are fixedly installed on the upper ends of the two T-shaped limit blocks 19. Two rectangular limit grooves 21 are opened on the lower surface of the placement plate 16.

[0032] Furthermore, two second hydraulic telescopic rods 22 are fixedly installed on the lower inner wall of the immersion box 2, and rectangular limit blocks 23 are fixedly installed on the upper ends of the two second hydraulic telescopic rods 22.

[0033] Furthermore, by pushing the T-slot 18 into the interior of the T-shaped limit block 19 and fixing the two T-slots 18 to the interior of the two T-shaped limit blocks 19 through two clamping plates 14, the two L-shaped fixing plates 20 are fixed, so that the two L-shaped fixing plates 20 will further fix the bricks, thereby improving the stability of the bricks and reducing damage to the bricks.

[0034] Working principle: When using the soaking device, place the placement plate 16 on the left end of the lower surface of the mounting frame 1, and stack the bricks on the upper surface of the placement plate 16. After placing, pick up the L-shaped fixing plate 20, and align the two T-shaped limit blocks 19 on the lower surfaces of the two L-shaped fixing plates 20 with the two T-shaped slots 18 respectively, and push the two T-shaped limit blocks 19 into the two T-shaped slots 18. After pushing in, start the first motor 5 to rotate the output end of the first motor 5. The output end of the first motor 5 rotates and the threaded rod 6 fixedly connected to the first motor 5 rotates at the same time. The rotation of the threaded rod 6 drives the threaded rod 6 to rotate. The slider 7 threadedly connected to the outer surface of the threaded rod 6 moves to the left. When the mounting plate 8 fixedly installed on the lower surface of the slider 7 moves to the top of the placement plate 16, the four first hydraulic telescopic rods 13 move downward, and the two clamping plates 14 fixedly installed at the lower ends of the four first hydraulic telescopic rods 13 move downward. When the two clamping plates 14 move downward to the position of the placement plate 16, the rectangular plates 15 on the corresponding surfaces of the two clamping plates 14 move to the corresponding rectangular groove 17 position, the second motor 10 is started, and the output end of the second motor 10 rotates. The rotation of the output end of the second motor 10 drives the bidirectional threaded rod 11 to rotate The two T-shaped sliders 12 threadedly connected on the outer surfaces of the two-way threaded rod 11 are moved closer to each other, and the first hydraulic telescopic rods 13 fixedly installed at the lower ends of the two T-shaped sliders 12 are moved closer to each other, and the clamping plates 14 fixedly installed at the lower ends of the first hydraulic telescopic rods 13 are moved closer to each other, so that the rectangular plates 15 on the corresponding surfaces of the clamping plates 14 enter the corresponding rectangular grooves 17 respectively, thereby fixing the two L-shaped fixing plates 20 on the placement plate 16. At this time, the four first hydraulic telescopic rods 13 are started again, so that the first hydraulic telescopic rods 13 drive the clamping plates 14 and the rectangular plates 15 as well as the placement plate 16. The placing plate 16 moves upward, so that the bricks above the placing plate 16 move upward, and when the placing plate 16 moves to the upper part, the first motor 5 is started again, so that the output end of the first motor 5 rotates in the opposite direction, thereby driving the slider 7 to move rightward, the mounting plate 8 fixedly mounted on the slider 7 moves rightward, and the placing plate 16 clamped between the two clamping plates 14 at the lower end of the mounting plate 8 moves rightward synchronously, so that the bricks on the placing plate 16 move rightward, so that the placing plate 16 and the bricks on the placing plate 16 reach the upper part of the soaking box 2, so that the two rectangular limiting grooves 21 at the lower end of the placing plate 16 are aligned with the two rectangular limiting blocks 23, and then the four first hydraulic telescopic rods 13 are started again, so that the four first hydraulic telescopic rods 13 move downward, so that the placing plate 16 and the bricks on the placing plate 16 move downward, so that the two rectangular limiting blocks.23 reaches the inside of the rectangular limit groove 21. At this time, the second motor 10 is started again to rotate the output end of the second motor 10, driving the bidirectional threaded rod 11 fixedly connected to the second motor 10 to rotate, so that the two T-shaped sliders 12 on the outer surface of the bidirectional threaded rod 11 move away from each other, thereby making the two clamping plates 14 move away from each other, so that the rectangular plate 15 leaves the corresponding rectangular groove 17. At this time, the two second hydraulic telescopic rods 22 are started to move downward, thereby driving the placement plate 16 and the bricks on the placement plate 16 to move downward and enter the interior of the immersion box 2, so that the water in the immersion box 2 soaks the bricks on the placement plate 16. When taking out, the two second hydraulic telescopic rods 22 move the placement plate 16 and the bricks on the placement plate 16 out of the interior of the immersion box 2, and then the rectangular plate 15 enters the corresponding rectangular groove 17. Then the first motor 5 drives the threaded rod 6 to rotate, and brings the placement plate 16 and the bricks on the placement plate 16 to the left end, and the bricks are taken out.

[0035] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A special soaking device for brick making, comprising a mounting frame (1), a soaking box (2) is placed below the mounting frame (1), a water outlet (3) is fixedly mounted on the right surface of the soaking box (2), and the water outlet (3) is communicated with the interior of the soaking box (2), characterized in that: The lower surface of the mounting frame (1) is provided with a first rectangular groove (4); The moving mechanism is arranged on a mounting frame (1), and comprises a first motor (5), a threaded rod (6) and a slider (7); the first motor (5) is fixedly mounted on the right surface of the mounting frame (1); the output end of the first motor (5) rotates and penetrates into the interior of the mounting frame (1); the threaded rod (6) is rotatably mounted in the interior of the first rectangular groove (4); the first motor (5) is fixedly connected to the threaded rod (6); the slider (7) is slidably mounted on the inner wall of the first rectangular groove (4); and the slider (7) is threadedly connected to the outer surface of the threaded rod (6).

2. A special immersion device for brick making according to claim 1, characterized in that: The moving mechanism further comprises a mounting plate (8), a second motor (10) and a bidirectional threaded rod (11); the mounting plate (8) is fixedly mounted on the lower surface of the slider (7); a second rectangular groove (9) is provided on the lower surface of the mounting plate (8); the second motor (10) is fixedly mounted on the front surface of the mounting plate (8); an output end of the second motor (10) rotates to penetrate the interior of the second rectangular groove (9); the bidirectional threaded rod (11) is rotatably mounted on the inner wall of the second rectangular groove (9); and the bidirectional threaded rod (11) is fixedly connected to the second motor (10).

3. A special immersion device for brick making according to claim 2, characterized in that: The moving mechanism further comprises two T-shaped sliders (12), four first hydraulic telescopic rods (13) and two clamping plates (14); the two T-shaped sliders (12) are both slidably mounted on the inner wall of the second rectangular groove (9); the two T-shaped sliders (12) are both threadedly connected to the outer surface of the bidirectional threaded rod (11); the four first hydraulic telescopic rods (13) are respectively fixedly mounted on the lower surfaces of the two T-shaped sliders (12); and the two clamping plates (14) are respectively fixedly mounted on the telescopic ends of the four first hydraulic telescopic rods (13).

4. A special immersion device for brick making according to claim 3, characterized in that: The moving mechanism further comprises four rectangular plates (15) and a placement plate (16). The four rectangular plates (15) are respectively fixedly mounted on the corresponding surfaces of the two clamping plates (14). The placement plate (16) is arranged between the two clamping plates (14). Rectangular grooves (17) are provided on the front and rear surfaces of the placement plate (16) at positions corresponding to the four rectangular plates (15). The four rectangular plates (15) are respectively slidably plugged into the corresponding rectangular grooves (17).

5. A special immersion device for brick making according to claim 4, characterized in that: A T-shaped groove (18) is provided at the left end of the front surface of the placement plate (16), and a similar T-shaped groove (18) is provided at the right end of the rear surface of the placement plate (16). T-shaped limiting blocks (19) are slidably mounted on the inner walls of the two T-shaped grooves (18), and L-shaped fixing plates (20) are fixedly mounted on the upper ends of the two T-shaped limiting blocks (19). Two rectangular limiting grooves (21) are provided on the lower surface of the placement plate (16).

6. A special immersion device for brick making according to claim 1, characterized in that: Two second hydraulic telescopic rods (22) are fixedly mounted on the lower inner wall of the soaking box (2), and rectangular limit blocks (23) are fixedly mounted on the upper ends of the two second hydraulic telescopic rods (22).