A combined socket type prefabricated concrete beam body reinforced house convenient to move

CN224621211UActive Publication Date: 2026-08-11新疆生产建设兵团公路基本建设工程质量安全监督站 +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]传统的预制梁体在制造浇筑过程中需要使用专门的厂棚,使梁体在一定温度湿度条件下进行养生,但是由于预制梁体的使用场景不同,每次换个工地都需寻找或搭建对应的厂棚,厂棚的位置或内部空间难以根据实际需求进行对应的调节,厂棚搭建耗费成本高,耗费时间长,难以满足市场需求

Benefits of technology

1、该强化房采用承插式轻钢骨架与卡接件结构,实现模块化设计与快速插接组装,无需重复搭建固定厂棚,大幅降低搭建时间与人力成本,适应不同工地需求,提升施工灵活性。

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Abstract

This utility model relates to the field of socket-type reinforced housing technology, and more particularly to a socket-type precast concrete beam reinforced housing that is easy to move and assemble. It includes a glass-plastic steel curtain laid on the surface of a light steel frame. The light steel frame consists of several sections, with adjacent sections connected by snap-fit ​​connectors. Each light steel frame includes two upright side steel frames, which are connected and fixed together by several square steel bars. This utility model's reinforced housing uses a socket-type light steel frame and snap-fit ​​connector structure, achieving modular design and rapid assembly. It eliminates the need for repeated construction of fixed sheds, significantly reducing construction time and labor costs, adapting to different construction site needs, and improving construction flexibility. By installing casters at the bottom of the light steel frame, the entire structure can be easily moved to different locations. The self-locking design of the positioning shaft and snap-fit ​​connectors ensures accurate docking and secure connection between modules.
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Description

Technical Field

[0001] This utility model relates to the field of socket-type reinforced housing technology, and in particular to a socket-type precast concrete beam reinforced housing that is easy to move and assemble. Background Technology

[0002] Precast concrete technology is a core component of modern industrialized construction (such as building industrialization and bridge industrialization). Precast concrete beams, such as bridge box girders, T-beams, I-beams, and building structural beams, are key load-bearing components in various infrastructures. Their manufacturing quality is directly related to the structural safety, durability, and service life of the overall project.

[0003] Traditional precast beams require specialized sheds for curing under specific temperature and humidity conditions during manufacturing and casting. However, due to the varying application scenarios of precast beams, each new construction site necessitates finding or constructing a corresponding shed. The location and internal space of these sheds are difficult to adjust to actual needs, resulting in high costs and time commitments, which fails to meet market demands. Therefore, a modular, socket-type precast concrete beam reinforcement system is needed to address these issues. Utility Model Content

[0004] The purpose of this invention is to solve the problems mentioned in the background section.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A reinforced precast concrete beam house with easy mobility and assembly includes a glass plastic steel curtain laid on the surface of a light steel frame. The light steel frame is provided in several parts, and two adjacent light steel frames are connected by snap-fit ​​connectors. The light steel frame includes two upright side steel frames, which are connected and fixed together by several square steel bars.

[0006] Preferably, the bottom end of the square steel is equipped with several casters, and the casters are equidistantly arranged on the bottom surface of the bottom end of the lowest square steel. By installing the casters on the bottom surface of the bottom square steel, the light steel frame can be easily pushed, the position of the light steel frame can be freely changed, and the assembly between multiple light steel frames can be controlled.

[0007] Preferably, four insert shafts are symmetrically connected to one side of the steel frame, and the insert shafts pass through the socket holes of the other side of the steel frame. When the two light steel frames are connected, the insert shaft of one side of the steel frame is inserted into the socket hole of the other side of the steel frame, which can ensure the neatness and balance between the two light steel frames.

[0008] Preferably, the snap-fit ​​component includes a plate base fixed to the side of the side steel frame. A movable shaft is inserted from top to bottom on the surface of the plate base, and two end blocks are symmetrically connected to the upper and lower ends of the movable shaft. The bottom ends of the two end blocks are connected to a locking pin, and the locking pin is inserted into the shaft through a through groove. A limiting block is provided on the inner side of the side steel frame near the end block. The limiting block can limit the end block and prevent the movable shaft from rotating in the plate base.

[0009] Preferably, the end of the insertion shaft is designed with an inclined surface, a return spring is provided between the plate base and the end block, and the return spring is sleeved on the surface of the movable shaft. The upper half of the locking pin is provided with a rubber pad end. The inclined surface design allows the insertion shaft to automatically lift the locking pin during insertion. The return spring provides a rebound force after the locking pin aligns with the slot, so that it can quickly lock in and realize the self-locking function. The rubber pad enhances friction and buffering, and improves the tightness and durability of the connection.

[0010] Preferably, a locking bolt is inserted into the surface of the plate base through a threaded hole, and the shaft end of the locking bolt is inserted into the surface of the movable shaft through a rectangular groove. By rotating the shaft end of the locking bolt, the shaft end of the locking bolt can be inserted into the rectangular groove on the surface of the movable shaft. Through the cooperation between the rectangular groove and the locking bolt, the movable shaft can be prevented from moving significantly.

[0011] Preferably, one of the side steel frames is connected to the bottom inner side of the side steel frame, and the positioning shaft is inserted into the inner end face of the other side steel frame through a positioning hole. The positioning shaft can be inserted into the positioning hole on the outer side of the docking side steel frame to realize the docking positioning of the two side steel frames.

[0012] This utility model has at least the following beneficial effects: 1. This reinforced building adopts a socket-type light steel frame and snap-fit ​​structure, realizing modular design and quick plug-in assembly. It eliminates the need to repeatedly build fixed sheds, greatly reducing construction time and labor costs, adapting to the needs of different construction sites, and improving construction flexibility.

[0013] 2. By installing casters at the bottom of the light steel frame, the entire structure can be easily moved to different locations. Combined with the self-locking design of the positioning shaft and snap-fit ​​parts, it ensures accurate docking and firm connection between modules, preventing displacement during use and improving the stability and safety of the overall structure. Attached Figure Description

[0014] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1This utility model presents a schematic diagram of the external structure and light steel frame structure of a socket-type precast concrete beam reinforced house that is easy to move and assemble. Figure 2 A three-dimensional, bottom-view disassembly diagram of the light steel frame in a socket-type precast concrete beam reinforced room, which is easy to move and assemble, according to this utility model. Figure 3 A three-dimensional structural diagram of a socket-type precast concrete beam reinforced room snap-fit ​​component that is easy to move and assemble, as proposed in this utility model. Figure 4 This is a partial disassembly diagram of the snap-fit ​​structure of a socket-type precast concrete beam reinforced room that is easy to move and assemble, as proposed in this utility model.

[0016] In the diagram: 1. Glass plastic steel curtain; 2. Light steel frame; 21. Square steel; 22. Side steel frame; 23. Casters; 24. Positioning shaft; 25. Insert shaft; 3. Clip-on component; 31. Plate base; 32. Movable shaft; 33. End block; 34. Locking pin; 35. Return spring; 36. Locking bolt. Detailed Implementation

[0017] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0018] Reference Figures 1-4 A type of reinforced precast concrete beam house with easy mobility and assembly includes a glass plastic steel curtain 1 that is laid on the surface of a light steel frame 2. The light steel frame 2 is provided with several pieces, and two adjacent light steel frames 2 are connected by a snap-fit ​​3. The light steel frame 2 includes two upright side steel frames 22, which are connected and fixed together by several square steels 21.

[0019] Several casters 23 are installed at the bottom of the square steel 21, and the casters 23 are evenly spaced on the bottom surface of the lowest square steel 21.

[0020] Four insert shafts 25 are symmetrically connected to one of the side steel frames 22, and the insert shafts 25 pass through the socket holes to penetrate the interior of the other side steel frame 22.

[0021] The snap-fit ​​component 3 includes a plate base 31 fixed to the side of the side steel frame 22. A movable shaft 32 is inserted from top to bottom on the surface of the plate base 31. Two end blocks 33 are symmetrically connected to the upper and lower ends of the movable shaft 32. The bottom ends of the two end blocks 33 are connected to a locking pin 34. The locking pin 34 is inserted into the insert shaft 25 through a through groove.

[0022] The end of the insert shaft 25 is designed with an inclined surface. A return spring 35 is provided between the plate base 31 and the end block 33, and the return spring 35 is sleeved on the surface of the movable shaft 32. A rubber pad end is provided on the upper half of the surface of the locking pin 34.

[0023] A locking bolt 36 is inserted into the surface of the plate base 31 through a threaded hole, and the shaft end of the locking bolt 36 is inserted into the surface of the movable shaft 32 through a rectangular groove.

[0024] One of the side steel frames 22 has a positioning shaft 24 connected to the bottom inner side, and the positioning shaft 24 is inserted into the inner end face of the other side steel frame 22 through a positioning hole.

[0025] The casters 23 are installed on the bottom surface of the lowest square steel 21, which facilitates the pushing of the light steel frame 2 and allows the position of the light steel frame 2 to be freely changed. The assembly of multiple light steel frames 2 can be controlled. In a single light steel frame 2, the vertical end of the left side steel frame 22 is provided with a pin 25, and the inner side of the right side steel frame 22 is provided with a snap-fit ​​3. The figure is only a schematic structure. When two light steel frames 2 are connected, the pin 25 of one side steel frame 22 is inserted into the socket of the other side steel frame 22, which can ensure the neatness and balance between the two light steel frames 2.

[0026] A limiting block is installed on the inner side of the side steel frame 22 near the end block 33. The limiting block can limit the end block 33 to prevent the movable shaft 32 from rotating in the plate base 31. At the same time, the movable shaft 32 can be guided through the through hole of the plate base 31 to ensure the stability of the movable shaft 32 during its up and down movement in the plate base 31. When the two side steel frames 22 are connected, the locking pin 34 moves down and can be inserted into the through groove of the insertion shaft 25 to realize the connection and fixation of the two adjacent side steel frames 22. The inclined surface design of the insertion shaft 25 can facilitate the insertion shaft 25 to apply pressure to the locking pin 34 after it is inserted into the receiving hole of the side steel frame 22, so that the locking pin 34 can gradually move upward. When the locking pin 34 moves up to the position of the through groove at the top of the insertion shaft 25, it can control the end block 33 to move downward under the rebound force of the return spring 35. The end block 33 controls the locking pin 34 to be quickly inserted into the through groove of the insertion shaft 25, realizing the autonomous and rapid insertion of the two adjacent light steel frames 2.

[0027] After the movable shaft 32 has been moved and adjusted in the through hole of the plate base 31, the shaft end of the locking bolt 36 can be rotated so that the shaft end of the locking bolt 36 can be inserted into the rectangular groove on the surface of the movable shaft 32. Through the cooperation of the rectangular groove and the locking bolt 36, the movable shaft 32 can be prevented from moving significantly, ensuring the stable engagement of the locking pin 34 and the insert shaft 25. When the two light steel frames 2 are connected, the two adjacent side steel frames 22 are close to each other. The positioning shaft 24 can be inserted into the positioning hole on the outside of the side steel frame 22 at the connection end to realize the connection and positioning of the two side steel frames 22 and prevent the side steel frames 22 from easily shaking and shifting.

[0028] Working principle: According to Figure 2 and Figure 3 As shown, when the light steel frame 2 needs to be assembled and connected, by pushing the side steel frame 22, the side steel frame 22 can drive the square steel 21 to move, which in turn drives the caster wheel 23 to move on the ground surface. When it is moved to a suitable position, the side steel frames 22 of two adjacent light steel frames 2 are connected, so that the insertion shaft 25 is inserted into the socket hole of the side steel frame 22 at the connection end. As the insertion shaft 25 passes through the socket hole, its inclined surface contacts and applies pressure to the locking pin 34. After the locking pin 34 is subjected to force, it moves upward, causing the locking pin 34 to move along the ground. The moving end block 33 moves, and the movement of end block 33 can drive the lower end block 33 to move upward synchronously through the movable shaft 32. During the upward movement, the movable shaft 32 can stretch the return spring 35. When the locking pin 34 moves to the top of the insertion shaft 25 through slot, the return force of the return spring 35 can drive the end block 33 to move downward. The movement of end block 33 drives the locking pin 34 to move downward, thereby controlling the locking pin 34 to be inserted into the through slot of the insertion shaft 25, thereby realizing the rapid docking of the two light steel frames 2. Secondly, according to Figure 3 and Figure 4 As shown, after the locking pin 34 and the insert shaft 25 are engaged, when the locking bolt 36 rotates and moves in the threaded hole on the surface of the plate base 31, the locking bolt 36 is inserted into the surface of the movable shaft 32 through the rectangular groove, thereby locking and fixing the movable shaft 32. When the two light steel frames 2 are connected, the positioning shaft 24 on the inner side of the bottom end of one side steel frame 22 can be inserted into the positioning hole on the inner side of the other side steel frame 22 to complete the connection and fixing of the two light steel frames 2.

[0029] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A socket-type precast concrete beam reinforced house that is easy to move and assemble, characterized in that, It includes a glass plastic steel curtain (1) that is erected and laid on the surface of a light steel frame (2). The light steel frame (2) is provided with several of them, and two adjacent light steel frames (2) are connected by snap-fit ​​pieces (3). The light steel frame (2) includes two upright side steel frames (22), which are connected and fixed together by a number of square steels (21).

2. The socket-type precast concrete beam reinforced house with easy mobility and assembly according to claim 1, characterized in that, The bottom end of the square steel (21) is equipped with several casters (23), and the casters (23) are equidistantly arranged on the bottom surface of the lowest square steel (21).

3. The socket-type precast concrete beam reinforced house with easy-to-move and assemble structure according to claim 1, characterized in that, One of the side steel frames (22) has four insert shafts (25) symmetrically connected on its side, and the insert shafts (25) pass through the socket holes to penetrate the interior of the other side steel frame (22).

4. A socket-type precast concrete beam reinforced house with easy mobility and assembly according to claim 1, characterized in that, The snap-fit ​​component (3) includes a plate base (31) fixed to the side of the side steel frame (22). A movable shaft (32) is inserted from top to bottom on the surface of the plate base (31). Two end blocks (33) are symmetrically connected at the upper and lower ends of the movable shaft (32). The bottom ends of the two end blocks (33) are connected to a locking pin (34), and the locking pin (34) is inserted into the insert shaft (25) through a through groove.

5. A socket-type precast concrete beam reinforced house with easy mobility and assembly according to claim 4, characterized in that, The end of the insert shaft (25) is designed with an inclined surface. A reset spring (35) is provided between the plate base (31) and the end block (33), and the reset spring (35) is sleeved on the surface of the movable shaft (32). The upper half of the locking pin (34) is provided with a rubber pad end.

6. A socket-type precast concrete beam reinforced house with easy mobility and assembly according to claim 5, characterized in that, The plate base (31) has a locking bolt (36) inserted through a threaded hole on its surface, and the shaft end of the locking bolt (36) is inserted into the surface of the movable shaft (32) through a rectangular groove.

7. A socket-type precast concrete beam reinforced house with easy mobility and assembly according to claim 2, characterized in that, One of the side steel frames (22) has a positioning shaft (24) connected to its inner bottom end, and the positioning shaft (24) is inserted into the inner end face of the other side steel frame (22) through a positioning hole.