Green brick pressure forming equipment

By designing a brick blank press forming equipment that uses hydraulic telescopic columns and counterweight division frames, the problem that existing equipment is not suitable for mass production is solved, and simultaneous molding and efficient production of multiple brick blanks are achieved.

CN222874859UActive Publication Date: 2025-05-16DASHIQIAO FULI REFRACTORY MATERIAL FACTORY
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Patent Information

Application Number
CN202421439227.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-21
Publication Date
2025-05-16
Estimated Expiration
2034-06-21

AI Technical Summary

Technical Problem

The existing press molding equipment for the production and processing of sintered bricks is not suitable for mass production of brick blanks and has low production efficiency.

Method used

A brick blank press forming equipment is designed, using hydraulic telescopic columns and counterweight division frames, the upper template is driven down through hydraulic telescopic columns A, and the pressure block is inserted into the counterweight division frame for extrusion and molding of raw materials, so as to achieve the simultaneous forming of multiple brick blanks.

Benefits of technology

Mass production of brick blanks has been realized, production efficiency has been significantly improved, and is suitable for efficient production of multiple brick blanks.

✦ Generated by Eureka AI based on patent content.

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Abstract

Green brick pressure forming equipment belongs to the technical field of green brick pressure forming and comprises a C-shaped mounting platform deck, a mold frame is fixedly mounted in the middle of an inner cavity of the C-shaped mounting platform deck, a hydraulic telescopic column A is fixedly arranged at the top of the inner cavity of the C-shaped mounting platform deck in a hoisting mode, and an upper mold plate is fixedly mounted on the lower surface of the hydraulic telescopic column A; a plurality of pressing blocks are fixedly installed on the lower surface of the upper mold plate, a plurality of lifting rods are slidably installed on the lower surface of the upper mold plate, balance weight dividing frames are fixedly installed between the lower surfaces of the lifting rods, the balance weight dividing frames and the pressing blocks are arranged in a staggered mode, and hydraulic telescopic columns B are fixedly installed on the lower surface of an inner cavity of the C-shaped installation carrying table; a lifting plate is fixedly mounted on the upper surface of the hydraulic telescopic column B, and a lower mold plate is detachably mounted on the upper surface of the lifting plate. According to the green brick pressing device, a plurality of green bricks can be manufactured through one-time pressurization, the green brick pressing device is suitable for batch production, and the production efficiency of the green bricks can be greatly improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of brick blank pressing and forming, and in particular relates to brick blank pressing and forming equipment. Background Art

[0002] After searching, the authorized patent in the relevant field, the patent publication number is: CN219634070U, the patent name is: A pressing and forming equipment for the production and processing of sintered bricks, the equipment moves the movable seat to the lower surface of the lower mold for fitting, then introduces the raw material into the lower mold, and then presses down the upper mold to realize the molding of the brick in the lower mold, and finally moves the movable seat downward to realize the overall and complete removal of the brick. However, although the equipment is conducive to the removal of the molded brick from the mold, it is not suitable for the mass production of bricks, and the production efficiency of a single brick is low. For this reason, a brick pressurizing and forming equipment is provided to solve the above technical problems. Utility Model Content

[0003] In view of the problem that the pressing and forming equipment used for the production and processing of sintered bricks in the prior art is not suitable for the mass production of brick blanks and has low production efficiency, the utility model provides a brick blank pressurizing and forming equipment, which can use the hydraulic telescopic column B to drive the lower template to seal the bottom opening of the mold frame through the lifting plate, and then inject the raw materials into the mold frame, and then use the weight of the counterweight dividing frame and the hydraulic telescopic column A to move down to the size of the bricks installed in the mold frame to divide the raw materials, and then use the hydraulic telescopic column A to drive the upper template to move down, insert the pressing block into the counterweight dividing frame to extrude and form the raw materials, and finally form brick blanks. Multiple brick blanks can be manufactured by one pressurization, which is suitable for mass production and can greatly improve the production efficiency of brick blanks, effectively solving the problem that the pressing and forming equipment used for the production and processing of sintered bricks in the prior art is not suitable for the mass production of brick blanks and has low production efficiency. Its specific technical scheme is as follows:

[0004] A brick blank pressurizing forming device comprises a C-shaped mounting platform, a mold frame is fixedly mounted in the middle of the inner cavity of the C-shaped mounting platform, a hydraulic telescopic column A is fixedly mounted on the top of the inner cavity of the C-shaped mounting platform, an upper template is fixedly mounted on the lower surface of the hydraulic telescopic column A, a plurality of pressure blocks are fixedly mounted on the lower surface of the upper template, a plurality of lifting rods are slidably mounted on the lower surface of the upper template, a counterweight splitting frame is fixedly mounted between the lower surfaces of the plurality of lifting rods, the size of the counterweight splitting frame is adapted to the size of the inner cavity of the upper template, and the counterweight splitting frame and the pressure blocks are staggered, a hydraulic telescopic column B is fixedly mounted on the lower surface of the inner cavity of the C-shaped mounting platform, a lifting plate is fixedly mounted on the upper surface of the hydraulic telescopic column B, a lower template is detachably mounted on the upper surface of the lifting plate, and the lower template is used to seal the bottom of the mold frame.

[0005] In the above technical solution, a plurality of lifting plates are fixedly mounted on the upper surface of the lower template, a slot is formed between the plurality of lifting plates, and the counterweight split frame is located directly above the slot.

[0006] In the above technical solution, two L-shaped limit plates are symmetrically fixedly installed on the upper surface of the lifting plate, and the lower template is inserted and installed between the two L-shaped limit plates.

[0007] In the above technical solution, pin holes are provided on the right surface of the lifting plate and the right surface of the lower template, and a pin rod is inserted and installed between the two pin holes.

[0008] In the above technical solution, a handle is fixedly mounted on the right surface of the lower template.

[0009] In the above technical solution, the upper and lower surfaces of the mold frame are symmetrically fixed with directional rods between the C-shaped mounting platform, the upper mold plate is slidably connected to the directional rods at the upper end, and the lifting plate slides between the directional rods at the lower end.

[0010] Compared with the prior art, the brick blank pressurizing forming equipment of the utility model has the following beneficial effects:

[0011] The utility model can utilize the hydraulic telescopic column B to drive the lower template to seal the bottom opening of the mold frame through the lifting plate, and then inject the raw material into the mold frame. Then, utilize the deadweight of the counterweight dividing frame and the hydraulic telescopic column A to move down to the size of the bricks installed in the mold frame to divide the raw material. Then, utilize the hydraulic telescopic column A to drive the upper template to move down, insert the pressing block into the counterweight dividing frame to extrude and shape the raw material, and finally form a brick blank. Multiple brick blanks can be manufactured by one pressurization, which is suitable for batch production and can greatly improve the production efficiency of brick blanks. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a schematic diagram of the main structure of the utility model.

[0013] Figure 2 It is a schematic diagram of the cross-sectional structure of the utility model.

[0014] Figure 3 It is a schematic diagram of the explosion structure of the utility model.

[0015] Figure 1-3 Among them: 1. C-type mounting platform; 11. Hydraulic telescopic column A; 2. Mold frame; 3. Upper template; 31. Lifting rod; 4. Pressure block; 5. Counterweight split frame; 6. Lifting plate; 61. L-shaped limit plate; 7. Lower template; 71. Lifting plate; 711. Card slot; 72. Pin hole; 73. Pin rod; 8. Hydraulic telescopic column B; 9. Orienting rod. DETAILED DESCRIPTION

[0016] 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.

[0017] See also Figure 1-Figure 3 , the utility model provides a technical solution:

[0018] A brick blank pressurizing and forming device comprises a C-shaped mounting platform 1, a mold frame 2 is fixedly mounted in the middle of the inner cavity of the C-shaped mounting platform 1, a hydraulic telescopic column A11 is fixedly mounted on the top of the inner cavity of the C-shaped mounting platform 1, an upper template 3 is fixedly mounted on the lower surface of the hydraulic telescopic column A11, a plurality of pressing blocks 4 are fixedly mounted on the lower surface of the upper template 3, a plurality of lifting rods 31 are slidably mounted on the lower surface of the upper template 3, a counterweight splitting frame 5 is fixedly mounted between the lower surfaces of the plurality of lifting rods 31, the size of the counterweight splitting frame 5 is adapted to the size of the inner cavity of the upper template 3, and the counterweight splitting frame 5 and the pressing blocks 4 are staggered, a hydraulic telescopic column B8 is fixedly mounted on the lower surface of the inner cavity of the C-shaped mounting platform 1, a lifting plate 6 is fixedly mounted on the upper surface of the hydraulic telescopic column B8, a lower template 7 is detachably mounted on the upper surface of the lifting plate 6, and the lower template 7 is used to seal the bottom of the mold frame 2;

[0019] It should be noted that if Figure 3 As shown, a plurality of lifting plates 71 are fixedly mounted on the upper surface of the lower template 7, and a slot 711 is formed between the plurality of lifting plates 71. The counterweight splitting frame 5 is located directly above the slot 711. During production, the bottom of the counterweight splitting frame 5 is snapped into the slot 711.

[0020] When using, Figure 1As shown, the hydraulic telescopic column B8 is first extended, and the lower template 7 is driven to move upward through the lifting plate 6, and the bottom of the mold frame 2 is sealed by the lower template 7. Then, the raw material is injected into the mold frame 2. After injecting a proper amount of raw material, the hydraulic telescopic column A11 is driven to extend, and the upper template 3 and the pressing block 4 are driven to move downward. During the downward movement, the counterweight dividing frame 5 moves into the mold frame 2 first with its own weight to divide the raw material according to the size of the brick. Then, the upper template 3 continues to move downward, and the pressing block 4 is inserted between the mold frame 2 and the counterweight dividing frame 5 to pressurize the raw material to form a brick. Afterwards, the hydraulic telescopic column B8 and the hydraulic telescopic column A11 are driven to contract. The hydraulic telescopic column A11 first drives the upper template 3 and the pressure block 4 to move upward. After moving a certain distance, the counterweight split frame 5 is lifted up and separated from the mold frame 2 by the lifting rod 31. The hydraulic telescopic column B8 drives the lifting plate 6 and the lower template 7 to move downward, and the formed bricks are moved out of the mold frame 2 together with the lifting plate 71. Finally, the formed bricks are transferred to the next process. Compared with the prior art, the entire operation process of the equipment is simple and convenient, and can realize mass production of bricks, which can effectively improve production efficiency.

[0021] After production, in order to facilitate the transfer of the whole brick after one processing, such as Figure 3 As shown, two L-shaped limit plates 61 are symmetrically fixedly installed on the upper surface of the lifting plate 6, and the lower template 7 is inserted and installed between the two L-shaped limit plates 61. Pin holes 72 are opened on the right surface of the lifting plate 6 and the right surface of the lower template 7. A pin rod 73 is inserted and installed between the two pin holes 72. The pin rod 73 fixes the lower template 7 inserted between the two L-shaped limit plates 61. After pulling it out of the pin hole 72, the lower template 7 can be pulled out of the lifting plate 6, so that the bricks carried on the lower template 7 can be moved as a whole.

[0022] Specifically, in order to facilitate the removal of the lower template 7, a handle is fixedly installed on the right surface of the lower template 7, and the lower template 7 can be pulled and moved by the handle.

[0023] Finally, if Figure 1 As shown, the upper and lower surfaces of the mold frame 2 are symmetrically fixed with directional rods 9 between the C-shaped mounting platform 1, the upper mold plate 3 is slidably connected to the upper directional rod 9, and the lifting plate 6 slides with the lower directional rod 9. The directional rods 9 can be used to improve the accuracy and stability of the vertical lifting of the upper mold plate 3 and the lifting plate 6.

Claims

1. A brick press forming device, comprising a C-shaped mounting platform (1), characterized in that: A mold frame (2) is fixedly installed in the middle of the inner cavity of the C-shaped mounting platform (1), a hydraulic telescopic column A (11) is fixedly installed on the top of the inner cavity of the C-shaped mounting platform (1), an upper template (3) is fixedly installed on the lower surface of the hydraulic telescopic column A (11), a plurality of pressing blocks (4) are fixedly installed on the lower surface of the upper template (3), a plurality of lifting rods (31) are slidably installed on the lower surface of the upper template (3), and a counterweight distribution rod (31) is fixedly installed between the lower surfaces of the plurality of lifting rods (31). The size of the counterweight splitting frame (5) is adapted to the size of the inner cavity of the upper template (3), and the counterweight splitting frame (5) and the pressing block (4) are offset. A hydraulic telescopic column B (8) is fixedly mounted on the lower surface of the inner cavity of the C-shaped mounting platform (1), and a lifting plate (6) is fixedly mounted on the upper surface of the hydraulic telescopic column B (8). A lower template (7) is detachably mounted on the upper surface of the lifting plate (6), and the lower template (7) is used to seal the bottom of the mold frame (2).

2. The brick pressing and forming equipment according to claim 1, characterized in that: A plurality of lifting plates (71) are fixedly mounted on the upper surface of the lower template (7), a slot (711) is formed between the plurality of lifting plates (71), and the counterweight split frame (5) is located directly above the slot (711).

3. The brick press forming equipment according to claim 2 is characterized in that: Two L-shaped limit plates (61) are symmetrically fixedly mounted on the upper surface of the lifting plate (6), and the lower template (7) is plugged and mounted between the two L-shaped limit plates (61).

4. The brick press forming equipment according to claim 3 is characterized in that: The right surface of the lifting plate (6) and the right surface of the lower template (7) are both provided with pin holes (72), and a pin rod (73) is inserted and installed between the two pin holes (72).

5. The brick press forming equipment according to claim 4, characterized in that: A handle is fixedly mounted on the right surface of the lower template (7).

6. The brick pressing and forming equipment according to claim 1, characterized in that: Orientation rods (9) are symmetrically fixedly installed between the upper and lower surfaces of the mold frame (2) and the C-shaped mounting platform (1); the upper mold plate (3) is slidably connected to the upper end of the orientation rod (9); and the lifting plate (6) slides with the lower end of the orientation rod (9).

Citation Information

Patent Citations

  • Compression molding equipment for sintered brick production and processing

    CN219634070U