Fabricated building wall component with splicing guiding function
By introducing a splicing mechanism into prefabricated building wall components, and utilizing components such as magnetic buckles, iron buckles, springs, and guide rods to achieve rapid splicing and separation, the problem of increased labor and time caused by tightening bolts and nuts in existing technologies is solved, thereby improving splicing efficiency and sealing performance.
Patent Information
- Application Number
- CN202520163706.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-01-24
AI Technical Summary
Existing prefabricated building wall components with assembly guidance require workers to tighten multiple bolts and nuts for assembly, increasing labor and time and reducing efficiency.
The system employs a splicing mechanism, which includes components such as auxiliary plates, rectangular grooves, long rods, magnetic buckles, rectangular blocks, springs, and round rods. It achieves rapid splicing and separation through the cooperation of magnetic buckles and iron buckles, and uses the elastic deformation of springs and locking blocks to achieve automatic positioning. It also combines guide rods and guide grooves for positioning and sealing.
It reduces the workload and time of staff, improves splicing efficiency and sealing, simplifies the splicing process, and enhances the performance of prefabricated building wall components.
Smart Images

Figure CN223880556U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of fabricated building, especially a fabricated building wall component with splicing guide. BACKGROUND
[0002] The fabricated building refers to the building assembled by prefabricated components, and the building mode has many advantages such as high efficiency and environmental protection, and is widely applied in the building industry.
[0003] In the prior art, the existing fabricated building wall component with splicing guide is generally spliced by the cooperation of multiple bolts and multiple nuts, the splicing mode can tightly connect the wall components, thereby ensuring the stability of the building structure, but the multiple bolts and nuts need to be screwed by the workers in the use process, which not only increases the labor of the workers, but also increases the working time of the workers, reduces the use effect of the fabricated building wall component with splicing guide, and reduces the use efficiency of the fabricated building wall component with splicing guide.
[0004] Therefore, a fabricated building wall component with splicing guide is needed to solve the above technical problems. UTILITY MODEL CONTENT
[0005] The utility model discloses a fabricated building wall component with splicing guide.
[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme: a fabricated building wall component with splicing guide, comprising: a first wall, a second wall and a splicing mechanism.
[0007] The splicing mechanism comprises an auxiliary plate and a rectangular groove, the inner wall bottom of the rectangular groove is movably penetrated by two long rods, the top end face of each long rod is fixedly embedded with a magnetic buckle, the inside of the rectangular groove is provided with two rectangular blocks, the opposite faces of the two rectangular blocks are fixedly provided with clamping blocks, the opposite faces of the two rectangular blocks are movably provided with two first springs, the opposite faces of the two rectangular blocks are movably provided with two second springs, the inside of the rectangular groove is fixedly provided with two round rods, and the bottom of the auxiliary plate is fixedly embedded with two iron buckles.
[0008] Preferably, the auxiliary plate is movably sleeved in the inside of the rectangular groove, and the top of each magnetic buckle is in contact with the bottom of each iron buckle.
[0009] Preferably, the bottom end of each long rod is movably penetrated through the splicing end of the first wall body, and the opposite ends of each clamping block are movably penetrated through the outer surfaces of the long rods.
[0010] Preferably, the opposite ends of the two clamping blocks are movably embedded in the front surface of the inner wall of the rectangular groove and the rear surface of the inner wall of the rectangular groove, and one end of each round rod is movably penetrated through the front surfaces of the two rectangular blocks.
[0011] Preferably, the four first springs are divided into two groups, and each round rod is movably sleeved between the insides of each group of first springs.
[0012] Preferably, each round rod is movably sleeved in the inside of each second spring, and the opposite ends of each group of first springs are movably mounted on the front surface of the inner wall of the rectangular groove and the rear surface of the inner wall of the rectangular groove.
[0013] Preferably, the splicing end of the first wall body is connected with the splicing end of the second wall body, the rectangular groove is arranged on the top of the second wall body, and the bottom end of each long rod is movably penetrated through the splicing end of the second wall body.
[0014] Preferably, the top of the first wall body and the top of the second wall body are fixedly provided with two guide rods, and the bottom of the first wall body and the bottom of the second wall body are provided with two guide grooves.
[0015] Preferably, the centers of the cross sections of each guide rod are arranged on the same straight line with the centers of the cross sections of each guide groove, and the top of the auxiliary plate is provided with an annular groove.
[0016] Preferably, the inside of the annular groove is provided with a sealing ring, the top of the auxiliary plate is provided with two symmetrical auxiliary grooves, and the outer wall of the sealing ring is in contact with the inner wall of the rectangular groove.
[0017] Compared with the prior art, the utility model has the advantages and positive effects that,
[0018] Preferably, the top of the first wall body and the top of the second wall body are fixedly provided with two guide rods, and the bottom of the first wall body and the bottom of the second wall body are provided with two guide grooves.
[0015] Preferably, the centers of the cross sections of each guide rod are arranged on the same straight line with the centers of the cross sections of each guide groove, and the top of the auxiliary plate is provided with an annular groove.
[0016] Preferably, the inside of the annular groove is provided with a sealing ring, the top of the auxiliary plate is provided with two symmetrical auxiliary grooves, and the outer wall of the sealing ring is in contact with the inner wall of the rectangular groove.
[0017] Compared with the prior art, the utility model has the advantages and positive effects that,
[0018] 1. In this utility model, by setting up a splicing mechanism, the wall components can avoid the use of multiple bolts and nuts for splicing. This not only reduces the workload of workers but also reduces their working time. It improves the use effect and efficiency of the prefabricated building wall components with splicing guidance. With the cooperation of the round rod, the first spring, the second spring, the rectangular block and the locking block, the long rod can be prevented from moving automatically. With the cooperation of the magnetic buckle and the iron buckle, the auxiliary plate can be connected to the long rod.
[0019] 2. In this utility model, the sealing between the auxiliary plate and the rectangular groove can be increased by the cooperation of the annular groove and the sealing ring. With the cooperation of the two auxiliary grooves and the prepared tools, the auxiliary plate can be easily moved out of the rectangular groove. With the cooperation of the guide rod and the guide groove, multiple wall components can be easily positioned. Attached Figure Description
[0020] Figure 1 A perspective view of a prefabricated building wall component with splicing guidance is provided for this utility model;
[0021] Figure 2 This utility model presents another perspective view of a prefabricated building wall component with splicing guidance;
[0022] Figure 3 A partial perspective view of a prefabricated building wall component with splicing guidance is provided for this utility model;
[0023] Figure 4 This utility model provides a partial sectional perspective view of a prefabricated building wall component with splicing guidance.
[0024] Figure 5 This utility model provides a structural schematic diagram of a prefabricated building wall component with splicing guidance;
[0025] Figure 6 This utility model proposes a prefabricated building wall component with splicing guidance. Figure 5 Enlarged 3D view at point A in the middle;
[0026] Figure 7 This utility model provides another sectional perspective view of a prefabricated building wall component with splicing guidance.
[0027] Figure 8 This utility model presents a perspective view of the splicing mechanism of a prefabricated building wall component with splicing guidance.
[0028] Illustration: 1, first wall; 2, second wall; 3, guide rod; 4, guide groove; 5, splicing mechanism; 501, auxiliary plate; 502, rectangular groove; 503, long rod; 504, magnetic buckle; 505, rectangular block; 506, clamping block; 507, first spring; 508, second spring; 509, round rod; 510, iron buckle; 6, annular groove; 7, sealing ring; 8, auxiliary groove. DETAILED DESCRIPTION
[0029] In order to enable the above-mentioned purposes, features and advantages of the present application to be more clearly understood, the present application will be further described below in conjunction with the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0030] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be practiced without the specific details, which are different from the description, and therefore, the present application is not limited to the specific embodiments disclosed in the following description.
[0031] As Figures 1-8 shown, the present application provides a kind of assembly type building wall component with splicing guide, comprising: first wall 1, second wall 2 and splicing mechanism 5;
[0032] The splicing mechanism 5 comprises an auxiliary plate 501 and a rectangular groove 502, the inner wall bottom of the rectangular groove 502 movably penetrates two long rods 503, the top end face of each long rod 503 is fixedly embedded with a magnetic buckle 504, the inside of the rectangular groove 502 is provided with two rectangular blocks 505, the opposite faces of the two rectangular blocks 505 are fixedly provided with clamping blocks 506, the opposite faces of the two rectangular blocks 505 are movably provided with two first springs 507, the opposite faces of the two rectangular blocks 505 are movably provided with two second springs 508, the inside of the rectangular groove 502 is fixedly provided with two round rods 509, the bottom of the auxiliary plate 501 is fixedly embedded with two iron buckles 510, the auxiliary plate 501 is movably sleeved in the inside of the rectangular groove 502, the top of each magnetic buckle 504 is in contact with the bottom of each iron buckle 510 respectively, the bottom end of each long rod 503 movably penetrates the splicing end of the first wall body 1, the opposite ends of each clamping block 506 movably penetrate the outer surfaces of each long rod 503 respectively, the opposite ends of the two clamping blocks 506 are movably embedded in the inner wall front surface of the rectangular groove 502 and the inner wall rear surface of the rectangular groove 502 respectively, one end of each round rod 509 movably penetrates the front surfaces of the two rectangular blocks 505, the four first springs 507 are divided into two groups, each round rod 509 is movably sleeved between the inside of each group of first springs 507 respectively, each round rod 509 is movably sleeved in each second spring 508 respectively, the opposite ends of each group of first springs 507 are movably sleeved in the inner wall front surface of the rectangular groove 502 and the inner wall rear surface of the rectangular groove 502 respectively, the splicing end of the first wall body 1 is connected with the splicing end of the second wall body 2, the rectangular groove 502 is arranged at the top of the second wall body 2, the bottom end of each long rod 503 movably penetrates the splicing end of the second wall body 2, the top of the first wall body 1 and the top of the second wall body 2 are fixedly provided with two guide rods 3, the bottom of the first wall body 1 and the bottom of the second wall body 2 are provided with two guide grooves 4, the section centers of each guide rod 3 are in the same straight line with the section centers of each guide groove 4 respectively, the top of the auxiliary plate 501 is provided with an annular groove 6, the inside of the annular groove 6 is provided with a sealing ring 7, the top of the auxiliary plate 501 is provided with two symmetrical auxiliary grooves 8, the outer wall of the sealing ring 7 is in contact with the inner wall of the rectangular groove 502.
[0033] The effect achieved is that when the spliced wall components need to be separated, at this time, the prepared tool and the cooperation of the two auxiliary grooves 8 are used to exert a force on the auxiliary plate 501, so that the auxiliary plate 501 is vertically moved up, and the auxiliary plate 501 which is vertically moved up will drive the sealing ring 7 to move together under the cooperation of the annular groove 6, and the auxiliary plate 501 which is vertically moved up will also drive the two iron buckles 510 to move together, when the auxiliary plate 501 is completely removed from the inside of the rectangular groove 502, at this time, the two iron buckles 510 are separated from the corresponding magnetic buckle 504, and the auxiliary plate 501 is directly removed, then an force is applied to each of the two rectangular blocks 505, so that the two rectangular blocks 505 move towards each other, at this time, the two rectangular blocks 505 which move towards each other will drive the corresponding clamping block 506 to move, and the two rectangular blocks 505 which move towards each other will make the two second springs 508 elastically deform under the cooperation of the two circular rods 509, at the same time, the two rectangular blocks 505 which move towards each other will make the two groups of first springs 507 elastically deform under the cooperation of the two circular rods 509 and the rectangular groove 502, when the two moving clamping blocks 506 are separated from the corresponding long rod 503, at this time, the movement of the two rectangular blocks 505 is stopped first, then under the cooperation of the rectangular groove 502, an force is applied to each of the two long rods 503, so that the two long rods 503 are vertically moved up, when the two long rods 503 are removed from the inside of the rectangular groove 502, the two long rods 503 are directly removed, then an force is applied to each of the first wall body 1 and the second wall body 2, so that the first wall body 1 and the second wall body 2 move away from each other, until the first wall body 1 and the second wall body 2 are completely separated, that is, the separation operation of the wall components is completed, when the first wall body 1 and the second wall body 2 need to be spliced together, the reverse operation is directly performed according to the above operation steps, so that each part is reset to the original position.
[0034] Principle: when the need to separate the spliced wall components, at this time first use the prepared tools and two auxiliary groove 8 cooperation, auxiliary plate 501 exert a force, so that the auxiliary plate 501 vertical up, this is the vertical up auxiliary plate 501 will be in the cooperation of ring groove 6, sealing ring 7 will be moved together, while the vertical up auxiliary plate 501 will also drive two iron buckle 510 together to move, when the auxiliary plate 501 completely from the inside of the rectangular groove 502 removed, at this time two iron buckle 510 will be separated from the corresponding magnetic buckle 504, while directly remove the auxiliary plate 501, then each rectangular block 505 exert a force, so that the two rectangular block 505 move towards each other, this two rectangular block 505 will move towards each other will drive the corresponding block 506 moves, while two rectangular block 505 will be in the cooperation of two round bar 509 and rectangular groove 502, so that two groups of first spring 507 are elastically deformed, at the same time, two rectangular block 505 will move towards each other will be in the cooperation of two round bar 509 and rectangular groove 502, so that two groups of first spring 507 are elastically deformed, when two moving block 506 will be separated from the corresponding long rod 503, at this time first stop two rectangular block 505 movement, then in the cooperation of rectangular groove 502, each long rod 503 exert a force, so that the two long rod 503 are vertically up, when two long rod 503 are removed from the inside of the rectangular groove 502, directly remove the two long rod 503, then each first wall body 1 and second wall body 2 exert a force, so that the first wall body 1 and second wall body 2 move away from each other, until the first wall body 1 and second wall body 2 completely separate, that is, the separation operation of the wall components is completed, when the first wall body 1 and second wall body 2 are spliced together, directly reverse the above operation steps, so that the above components reset to the original position.
[0035] Wherein, the guide rod 3 and the guide groove 4 are matched.
[0036] Wherein, when the spliced wall components need to be stacked, the guide rod 3 and the guide groove 4 can be used to position the wall components to be stacked.
[0037] The above is only the preferred embodiment of the present application, not other forms of the present application, any skilled in the art of the technical personnel may use the above disclosed technology to change or modify the equivalent embodiment applied to other fields, but any simple modification, equivalent change and modification of the above embodiment without departing from the technical scheme of the present application, according to the technical essence of the present application, still belongs to the protection scope of the present application technical scheme.
Claims
1. A fabricated building wall element with splice guidance, characterized in that, Include: First wall (1), second wall (2) and splicing mechanism (5); The splicing mechanism (5) includes auxiliary plate (501) and rectangular groove (502), the inner wall bottom of the rectangular groove (502) is movably penetrated by two long rods (503), the top end face of each long rod (503) is fixedly embedded with a magnetic buckle (504), the inside of the rectangular groove (502) is provided with two rectangular blocks (505), the opposite sides of the two rectangular blocks (505) are fixedly provided with clamping blocks (506), the opposite sides of the two rectangular blocks (505) are provided with two first springs (507), the opposite sides of the two rectangular blocks (505) are provided with two second springs (508), the inside of the rectangular groove (502) is fixedly provided with two round rods (509), and the bottom of the auxiliary plate (501) is fixedly embedded with two iron buckles (510).
2. The fabricated building wall element with splice guidance of claim 1, wherein: The auxiliary plate (501) is movably sleeved in the rectangular groove (502), and the top of each magnetic buckle (504) is in contact with the bottom of each iron buckle (510).
3. The fabricated building wall element with splice guidance of claim 1, wherein: The bottom end of each long rod (503) movably penetrates the splicing end of the first wall (1), and the opposite ends of each clamping block (506) movably penetrate the outer surface of each long rod (503).
4. The fabricated building wall element with splice guidance of claim 1, wherein: The opposite ends of the two clamping blocks (506) are movably embedded in the inner wall front surface of the rectangular groove (502) and the inner wall rear surface of the rectangular groove (502), and one end of each round rod (509) movably penetrates the front surface of the two rectangular blocks (505).
5. The fabricated building wall element with splice guidance of claim 1, wherein: Four first springs (507) are divided into two groups, and each round rod (509) is movably sleeved between each group of first springs (507).
6. The fabricated building wall element with splice guidance of claim 1, wherein: Each round rod (509) is movably sleeved in each second spring (508), and the opposite ends of each group of first springs (507) are movably sleeved in the inner wall front surface of the rectangular groove (502) and the inner wall rear surface of the rectangular groove (502).
7. The fabricated building wall element with splice guidance of claim 1, wherein: The splicing end of the first wall (1) is connected with the splicing end of the second wall (2), the rectangular groove (502) is arranged on the top of the second wall (2), and the bottom end of each long rod (503) movably penetrates the splicing end of the second wall (2).
8. The fabricated building wall element with splice guidance of claim 1, wherein: The top of the first wall (1) and the top of the second wall (2) are fixedly provided with two guide rods (3), and the bottom of the first wall (1) and the bottom of the second wall (2) are provided with two guide grooves (4).
9. The fabricated building wall element with splice guidance of claim 8, wherein: The center of the cross section of each guide rod (3) is arranged on the same straight line with the center of the cross section of each guide groove (4), and the top of the auxiliary plate (501) is provided with an annular groove (6).
10. The fabricated building wall element with splice guidance of claim 9, wherein: The inside of the annular groove (6) is provided with a sealing ring (7), the top of the auxiliary plate (501) is provided with two symmetrical auxiliary grooves (8), and the outer wall of the sealing ring (7) is in contact with the inner wall of the rectangular groove (502).