Fabricated concrete member

By using the sliding connection between the guide and the chute and the spring design, the problem of mold damage during demolding of prefabricated concrete components is solved, achieving more efficient demolding and mold protection.

CN223493508UActive Publication Date: 2025-10-31JIANGSU HANNENG ELECTRIC CO LTD
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Patent Information

Application Number
CN202423034406.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-10-31
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Existing prefabricated concrete components are prone to mold damage during demolding, affecting the integrity of the mold.

Method used

The guide and the slide are connected by a sliding connection. Combined with the elastic force of the spring, the friction is increased to ensure that the steel plate frame is not easily shifted when fixed. The square connecting frame is driven by the steel plate frame to demold.

Benefits of technology

It improves the integrity of concrete shaping and demolding efficiency, protects the integrity of the mold, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223493508U_ABST
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Abstract

The utility model relates to the technical field of concrete processing, and discloses an assembly type concrete member which comprises a foundation cushion layer and a left inclined mounting plate, a foundation beam is arranged on the outer wall of the foundation cushion layer, a connecting groove is formed in the outer wall of the foundation beam, a square connecting frame is arranged on the inner wall of the connecting groove, and a left inclined mounting plate is arranged on the left inclined mounting plate. Limiting holes are formed in the outer wall of the square connecting frame, and inclined beams are arranged on the outer wall of the square connecting frame. According to the fabricated concrete member, through the sliding connection effect between the guider and the sliding groove and the elastic force released by the spring, the friction force between the base plate and the inner wall of the sliding groove can be increased, so that when the steel plate frame is fixed, the steel plate frame is not prone to position deviation, and then the integrity of concrete during shaping is improved; and the square connecting frame can be directly pulled, so that the square connecting frame can directly drive the steel plate frame to demould concrete, and then the demoulding efficiency of the equipment is improved.
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Description

Technical Field

[0001] This utility model relates to the field of concrete processing technology, specifically to a prefabricated concrete component. Background Technology

[0002] By using prefabricated concrete structures, a large amount of on-site work in traditional construction methods is transferred to the factory. This not only reduces the working time and the complexity of the construction site, but also ensures construction safety and improves construction efficiency.

[0003] In the existing production and processing of prefabricated concrete components, prefabricated components are required to shape the concrete. Since the prefabricated components need to wrap the concrete on all sides, the concrete is prone to sticking to the mold during demolding, which can damage the mold and affect its integrity. Therefore, a prefabricated concrete component is proposed. Utility Model Content

[0004] This utility model provides the following technical solution: a prefabricated concrete component, including a foundation pad and a left-sloping mounting plate. The outer wall of the foundation pad is provided with a foundation beam. The outer wall of the foundation beam is provided with a connecting groove. The inner wall of the connecting groove is provided with a square connecting frame. The outer wall of the square connecting frame is provided with a limiting hole. The outer wall of the square connecting frame is provided with a sloping beam. The sloping beams are symmetrically distributed on the outer wall of the square connecting frame. The inner wall of the sloping beam is provided with a sliding groove. The inner wall of the sliding groove is provided with a steel plate guiding mechanism.

[0005] As a preferred embodiment of this utility model, the inner wall of the chute is provided with a guide, the outer wall of the guide is provided with a telescopic rod, the end of the telescopic rod away from the guide is provided with a spring, the outer wall of the telescopic rod is provided with a pad, the outer wall of the guide is provided with a steel plate frame, and the steel plate frame is slidably connected to the inclined beam.

[0006] As a preferred embodiment of this utility model, the outer wall of the foundation beam is provided with a threaded groove, and the threaded groove is connected to the limiting hole. The outer wall of the foundation beam is provided with a screw, and the screw is fixed to the foundation pad layer by a threaded connection.

[0007] As a preferred embodiment of this utility model, the outer wall of the foundation beam is provided with a groove, and the foundation beam is slidably connected to the square connecting frame.

[0008] As a preferred embodiment of this utility model, the foundation beam is provided with a right inclined mounting plate on the side away from the left inclined mounting plate, and the left inclined mounting plate and the right inclined mounting plate are made of the same material.

[0009] As a preferred embodiment of this utility model, the number of steel plate guiding mechanisms is four, and the steel plate guiding mechanisms are symmetrically distributed on the outer wall of the foundation beam, and the steel plate frame is mainly made of steel.

[0010] Compared with the prior art, the present invention has the following beneficial effects:

[0011] This prefabricated concrete component, through the sliding connection between the guide and the chute, the elastic force released by the spring can increase the friction between the pad and the inner wall of the chute, so that the steel plate frame is not prone to displacement when it is fixed, thereby improving the integrity of the concrete during molding. Moreover, during loading and unloading, the square connecting frame can be pulled directly, so that the square connecting frame can directly drive the steel plate frame to demold the concrete, thereby improving the demolding efficiency of the equipment. Attached Figure Description

[0012] Figure 1 This is a three-dimensional structural diagram of a prefabricated concrete component;

[0013] Figure 2 This is a schematic diagram of a groove in a prefabricated concrete component;

[0014] Figure 3 This is a structural schematic diagram of a left-sloping mounting plate in a prefabricated concrete component;

[0015] Figure 4 This is a schematic diagram of a steel plate guide mechanism in a prefabricated concrete component.

[0016] In the diagram: 1. Foundation pad; 2. Foundation beam; 3. Left inclined mounting plate; 31. Square connecting frame; 32. Limiting hole; 33. Inclined beam; 34. Slide groove; 4. Screw; 5. Steel plate guide mechanism; 51. Steel plate frame; 52. Guide; 53. Telescopic rod; 54. Spring; 55. Pad; 6. Right inclined mounting plate; 7. Connecting groove; 8. Threaded groove; 9. Groove. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0018] Please see Figure 1-4A prefabricated concrete component includes a foundation pad 1 and a left-sloping mounting plate 3. The outer wall of the foundation pad 1 is provided with a foundation beam 2. A connecting groove 7 is formed on the outer wall of the foundation beam 2. A square connecting frame 31 is formed on the inner wall of the connecting groove 7. Limiting holes 32 are formed on the outer wall of the square connecting frame 31. Inclined beams 33 are symmetrically distributed on the outer wall of the square connecting frame 31. A sliding groove 34 is formed on the inner wall of the inclined beam 33. A steel plate guide mechanism 5 is provided on the inner wall of the sliding groove 34. The length of the outer inclined beam 33 is much greater than the length of the inner inclined beam 33, and inclined frames are provided on the outer walls of all inclined beams 33. This allows the inclined beam 33 to seal the edge of the mold when it is fixed to the right inclined mounting plate 6. The inner wall of the slide groove 34 is equipped with a guide 52, and the outer wall of the guide 52 is equipped with a telescopic rod 53. A spring 54 is located at the end of the telescopic rod 53 furthest from the guide 52. A pad 55 is located on the outer wall of the telescopic rod 53, and a steel plate frame 51 is located on the outer wall of the guide 52. The steel plate frame 51 is slidably connected to the inclined beam 33. An inclined slider is provided on the outer wall of the pad 55, allowing the slider to guide the pad 55 when it is inserted into the inclined beam 33, facilitating the loading and unloading of the steel plate frame 51 and the inclined beam 33. The outer wall of beam 2 is provided with a threaded groove 8, which is connected to the limiting hole 32. Screws 4 are provided on the outer wall of foundation beam 2, and the screws 4 are fixed to the foundation pad 1 by a threaded connection. The threaded connection between foundation beam 2 and screws 4 improves the connection stability of the square connecting frame 31 during fixing. A groove 9 is provided on the outer wall of foundation beam 2, allowing for a sliding connection between foundation beam 2 and the square connecting frame 31. This sliding connection facilitates the later loading and unloading of the square connecting frame 31. A right-angled mounting plate 6 is provided on the side of foundation beam 2 away from the left-angled mounting plate 3, and the left-angled... The left and right inclined mounting plates 3 and 6 are made of the same material. The left and right inclined mounting plates 3 and 6 are made of the same shape and material. This ensures the integrity of the appearance of the paired left and right inclined mounting plates 3 and 6 when the component is molded and demolded. There are four steel plate guide mechanisms 5, which are symmetrically distributed on the outer wall of the foundation beam 2. The steel plate frame 51 is mainly made of steel. Since steel has high rigidity and a smooth outer wall, cement does not easily adhere to the outside of the steel plate frame 51 when the equipment is demolded.

[0019] Working principle: When the equipment is needed, the worker inserts the guide 52 into the inclined beam 33, aligns the square connecting frame 31 with the connecting groove 7, and screws down the screw 4 to fix the left inclined mounting plate 3 to the foundation beam 2. After fixing the right inclined mounting plate 6 in the same way, cement is poured into the groove 9 and shaped.

[0020] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A prefabricated concrete component, comprising a foundation pad (1) and a left-angled mounting plate (3), characterized in that: The outer wall of the foundation pad (1) is provided with a foundation beam (2), the outer wall of the foundation beam (2) is provided with a connecting groove (7), the inner wall of the connecting groove (7) is provided with a square connecting frame (31), the outer wall of the square connecting frame (31) is provided with a limit hole (32), the outer wall of the square connecting frame (31) is provided with an inclined beam (33), the inclined beam (33) is symmetrically distributed on the outer wall of the square connecting frame (31), the inner wall of the inclined beam (33) is provided with a sliding groove (34), and the inner wall of the sliding groove (34) is provided with a steel plate guide mechanism (5).

2. A prefabricated concrete component according to claim 1, characterized in that: The inner wall of the chute (34) is provided with a guide (52), the outer wall of the guide (52) is provided with a telescopic rod (53), the end of the telescopic rod (53) away from the guide (52) is provided with a spring (54), the outer wall of the telescopic rod (53) is provided with a pad (55), the outer wall of the guide (52) is provided with a steel plate frame (51), and the steel plate frame (51) is slidably connected to the inclined beam (33).

3. A prefabricated concrete component according to claim 1, characterized in that: The outer wall of the foundation beam (2) is provided with a threaded groove (8), and the threaded groove (8) is connected to the limiting hole (32). The outer wall of the foundation beam (2) is provided with a screw (4), and the screw (4) is fixed to the foundation pad (1) by a threaded connection.

4. A prefabricated concrete component according to claim 1, characterized in that: The outer wall of the foundation beam (2) is provided with a groove (9), and the foundation beam (2) is slidably connected to the square connecting frame (31).

5. A prefabricated concrete component according to claim 1, characterized in that: The foundation beam (2) has a right oblique mounting plate (6) on the side away from the left oblique mounting plate (3), and the left oblique mounting plate (3) and the right oblique mounting plate (6) are made of the same material.

6. A prefabricated concrete component according to claim 2, characterized in that: The number of steel plate guiding mechanisms (5) is four, and the steel plate guiding mechanisms (5) are symmetrically distributed on the outer wall of the foundation beam (2), and the steel plate frame (51) is mainly made of steel.