Lateral supporting device of fabricated wall

By combining coarse and fine adjustment structures, the stability problem of wall support devices in prefabricated buildings in angle adjustment is solved, achieving stable support for walls at different angles and positions, and enhancing the adaptability and stability of the device.

CN224048732UActive Publication Date: 2026-03-27GUILIN JIANCHANG CONSTRUCTION CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing wall support devices for prefabricated buildings have gaps when adjusting the angle, resulting in poor support stability and inability to adapt to walls at different angles.

Method used

An adjustment structure consisting of a coarse adjustment sleeve, an adjustment rod, a fine adjustment sleeve, and a movable rod is adopted. By combining coarse and fine adjustments, the structure can be adapted to multiple angles and positions, thereby enhancing the adjustment accuracy and range.

Benefits of technology

It achieves stable support for walls at different angles and positions, improves the adaptability and stability of the support device, and ensures the effective application of the support structure in different environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lateral support device of assembly type wall, including bottom fixed structure, support structure and adjusting structure, the adjusting structure includes coarse adjusting sleeve, adjusting rod, fine adjusting sleeve, movable rod, adjusting rod and coarse adjusting sleeve sliding connection, fine adjusting sleeve sliding connection, fine adjusting sleeve sliding connection, fine adjusting sleeve sliding connection, fine adjusting sleeve sliding connection, fine adjusting sleeve sliding connection, fine adjusting sleeve sliding connection and fine adjusting sleeve sliding connection. The coarse adjusting sleeve is provided with a plurality of positioning holes distributed in the length direction of the coarse adjusting sleeve, the adjusting rod is detachably connected with positioning pins clamped with the positioning holes, the movable rod and the adjusting rod are in axial sliding connection and circumferential clamping connection, the fine adjusting sleeve and the movable rod are in circumferential rotating connection and axial clamping connection, and the adjusting rod is provided with a threaded section. And the fine adjusting sleeve is in threaded connection with the threaded section. The adjusting structure has the advantages that further fine adjustment can be achieved on the basis of coarse adjustment, the adjustable range of the adjusting structure is widened, the adjusting structure can better adapt to walls at different angles and positions, and the adjusting precision can be improved through fine adjustment.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of lateral support device, specifically relates to a lateral support device of assembly type wall. BACKGROUND

[0002] In the construction process of the assembly type building, the production of the wall is completed in the factory first, and then the produced wall is transported to the construction site to complete the installation construction of the wall, the standardized wall design can be used, which has the advantages of reliable structure, flat wall surface and reduction of noise and dust pollution in the construction site. When the assembly type wall is transported to the installation position, lateral support needs to be provided for the wall before the wall is fixed to prevent the wall from collapsing from one side.

[0003] The utility model discloses a kind of wall support devices for assembly type building, including first telescopic rod, first fixed plate, bottom plate and counterweight box, the bottom of the bottom plate is fixedly installed with fixed tooth by screw, and two fixed teeth are installed in the bottom of the bottom plate, thread sleeve is welded on the both sides of the bottom plate, and fixed screw rod is hinged in the inside of thread sleeve, four thread sleeves are provided on the side of the bottom plate, one end of the top of the bottom plate is welded with counterweight box, and a plurality of grooves are provided in the inside of counterweight box, counterweight block is provided in the inside of the groove, by pulling second telescopic rod, then according to the need of wall pulling to corresponding position, then by installing fixed bolt into bolt hole, then by installing fixed bolt into wall, then by pulling handle, handle drives limit rod to move, limit rod is inserted into first limit hole under the action of spring, the function of limiting is realized.

[0004] In the above-mentioned wall support device for assembly type building, there is a certain gap between the limit holes, if the angle to be adjusted is just between two limit holes, the first fixed plate cannot be attached to the wall, resulting in poor support stability. Therefore, the wall support device in the prior art has the technical problem that it cannot well adapt to walls of different angles. UTILITY MODEL CONTENTS

[0005] In order to solve the above technical problems, the purpose of the utility model is to provide a lateral support device for assembly type wall, which includes a bottom fixing structure, a support structure and an adjusting structure. The lateral support device for assembly type wall has the advantage of better adapting to walls of different angles and positions.

[0006] To achieve the above-mentioned utility model purposes, the technical solutions adopted by the utility model are as follows:

[0007] The lateral support device of the prefabricated wall body comprises a bottom fixing structure, a support structure and an adjusting structure, the adjusting structure comprises a coarse adjusting sleeve, an adjusting rod, a fine adjusting sleeve and a movable rod, the adjusting rod is in sliding connection with the coarse adjusting sleeve, the coarse adjusting sleeve is provided with a plurality of positioning holes arranged along the length direction of the coarse adjusting sleeve, the adjusting rod is detachably connected with a positioning pin in clamping connection with the positioning hole, the movable rod is in axial sliding connection and circumferential clamping connection with the adjusting rod, the fine adjusting sleeve is in circumferential rotating connection and axial clamping connection with the movable rod, the adjusting rod is provided with a threaded section, the fine adjusting sleeve is in threaded connection with the threaded section, the coarse adjusting sleeve is in rotating connection with the bottom fixing structure, and the movable rod is in rotating connection with the support structure.

[0008] By such an arrangement, further fine adjustment on the basis of coarse adjustment is realized, the adjustable range of the adjusting structure is increased, the wall body of different angles and positions can be better adapted, and the adjustment accuracy can be increased through fine adjustment.

[0009] As a preferred arrangement, the support structure comprises a support column, a support plate, a lower support base and an upper support base, the support plate is fixedly installed on the side of the support column away from the adjusting structure, the upper support base and the lower support base are fixedly installed on the side of the support column close to the adjusting structure, the lower support base is in rotating connection with the bottom fixing structure, and the movable rod is in rotating connection with the upper support base.

[0010] By such an arrangement, the angle of the support structure can be adjusted.

[0011] As a preferred arrangement, two support columns are provided, a plurality of first fixing plates are arranged between the two support columns, the first fixing plates are fixedly connected with the two support columns respectively, and the first fixing plates are arranged along the length direction of the support column.

[0012] By such an arrangement, the stability and reliability of the two support column structures are ensured.

[0013] As a preferred arrangement, the upper support base and the lower support base are clamped with different first fixing plates respectively.

[0014] By such an arrangement, the structural stability of the upper support base and the lower support base is further improved.

[0015] As a preferred arrangement, the bottom fixing structure comprises a fixed beam, a movable base and a connecting base, the movable base is in sliding connection with the fixed beam, the support structure is in rotating connection with the movable base, the connecting base is fixedly connected with the fixed beam, and the coarse adjusting sleeve is in rotating connection with the connecting base.

[0016] By such an arrangement, the adjustment of the position of the support structure can be realized.

[0017] As preferred, the fixed beam is fixedly installed with a fixed seat, the fixed seat is fixedly connected with the fixed beam, the fixed seat is threadedly connected with a screw rod, the screw rod is rotationally connected with the movable seat and is axially clamped.

[0018] Through such an arrangement, the function of driving the movable seat to move on the fixed beam is realized.

[0019] As preferred, two fixed beams are arranged, a plurality of second fixed plates are arranged between the two fixed beams, the second fixed plates are respectively fixedly connected with the two fixed beams, and the second fixed plates are arranged along the length direction of the fixed beam.

[0020] Through such an arrangement, the structural stability between the two fixed beams is ensured.

[0021] As preferred, the connecting seat is clamped with the second fixed plate.

[0022] Through such an arrangement, the stability of the connecting seat is further improved.

[0023] As preferred, the length of the threaded section is not less than the interval of the adjacent two positioning holes and is less than 2 times the interval of the adjacent two positioning holes.

[0024] Through such an arrangement, it is ensured that the positioning on the angle and position of the support structure is continuous through the adjusting structure.

[0025] As preferred, the positioning hole is fixedly connected with a stud, the stud is threadedly connected with the adjusting rod, and the positioning pin is provided with an internal hexagonal groove at an end away from the adjusting rod.

[0026] Through such an arrangement, the positioning pin is fixed on the adjusting rod.

[0027] Compared with the prior art, the utility model has obtained beneficial technical effects:

[0028] When the length of the adjusting structure needs to be greatly adjusted, the adjusting rod is slid on the coarse adjusting sleeve, the length of the adjusting structure can be quickly adjusted, coarse adjustment is realized, after the coarse adjustment is completed, the adjusting rod is locked to the coarse adjusting sleeve through the positioning pin. Then the length of the adjusting structure is finely adjusted, the fine adjusting sleeve is rotated, the fine adjusting sleeve drives the threaded section and the adjusting rod threadedly connected with the fine adjusting sleeve to move, the adjusting rod and the movable rod relatively move along the axial direction, so that the adjustment of the overall length of the adjusting structure is realized, further fine adjustment on the basis of coarse adjustment is realized, the adjustable range of the adjusting structure is increased, the advantages that the adjusting structure can better adapt to wall bodies of different angles and positions are achieved, and the adjusting accuracy can be increased through fine adjustment. BRIEF DESCRIPTION OF DRAWINGS

[0029] Fig. 1 is a structure schematic view of a lateral support device of an assembled wall body in the embodiment of the utility model.

[0030] Fig. 2 is the structural schematic diagram of the adjusting structure in the embodiment of the utility model.

[0031] Among them, the technical features referred by each figure mark are as follows:

[0032] 11, coarse adjustment sleeve; 12, adjusting rod; 13, fine adjustment sleeve; 14, movable rod; 15, threaded section; 16, positioning pin; 17, stud; 18, internal hex recess; 19, positioning hole; 21, support column; 22, support plate; 23, lower support base; 24, upper support base; 25, first fixed plate; 31, fixed beam; 32, movable seat; 33, connecting seat; 34, fixed seat; 35, screw rod; 36, second fixed plate. DETAILED DESCRIPTION

[0033] In order to make the purpose, technical scheme and advantages of the utility model more clear and obvious, the utility model is further described in detail below combining with the embodiment, but the scope of protection required by the utility model is not limited to the following specific embodiments.

[0034] Reference Figs. 1-2 A kind of lateral bracing device of fabricated wall, including bottom fixed structure, support structure and adjusting structure, adjusting structure two ends are respectively connected with bottom fixed structure and support structure rotation, support structure lower end is connected with bottom fixed structure rotation.Carry out bottom fixed structure on floor, when adjusting structure lengthens and shortens, the inclination angle of support structure can be adjusted, so that support structure can be attached wall, so that the lateral bracing device can stably support wall side wall.

[0035] The adjusting structure comprises a coarse adjusting sleeve 11, an adjusting rod 12, a fine adjusting sleeve 13 and a movable rod 14. The adjusting rod 12 is in sliding connection with the coarse adjusting sleeve 11. The coarse adjusting sleeve 11 is provided with a plurality of positioning holes 19 arranged along the length direction of the coarse adjusting sleeve 11. The adjusting rod 12 is detachably connected with a positioning pin 16 in clamping connection with the positioning holes 19. The movable rod 14 is in axial sliding connection with the adjusting rod 12 and in circumferential clamping connection. The fine adjusting sleeve 13 is in circumferential rotating connection with the movable rod 14 and in axial clamping connection. The adjusting rod 12 is provided with a threaded section 15. The fine adjusting sleeve 13 is in threaded connection with the threaded section 15. The coarse adjusting sleeve 11 is in rotating connection with the bottom fixed structure. The movable rod 14 is in rotating connection with the supporting structure. The length of the threaded section 15 is not less than the interval of two adjacent positioning holes 19 and less than twice the interval of two adjacent positioning holes 19. The distance by which the fine adjusting sleeve 13 drives the adjusting rod 12 to move is greater than the interval of two adjacent positioning holes 19. The distance by which the fine adjusting sleeve 13 is driven to move through the threaded section 15 can compensate for the distance difference of coarse adjustment through two adjacent positioning holes 19. The adjusting structure ensures the continuous positioning of the supporting structure in terms of angle and position. The positioning hole 19 is fixedly connected with a stud 17 in threaded connection with the adjusting rod 12. The end of the positioning pin 16 away from the adjusting rod 12 is provided with an internal hexagonal groove 18. An internal hexagonal wrench is clamped in the internal hexagonal groove 18, so that the internal hexagonal wrench is clamped with the positioning pin 16. The internal hexagonal wrench drives the positioning pin 16 to rotate, and the stud 17 is tightened on the adjusting rod 12, so that the positioning pin 16 is fixed on the adjusting rod 12.

[0036] The support structure comprises a support column 21, a support plate 22, a lower support base 23 and an upper support base 24. The support plate 22 is fixedly installed on the side of the support column 21 away from the adjusting structure. The upper support base 24 and the lower support base 23 are fixedly installed on the side of the support column 21 close to the adjusting structure. The lower support base 23 is rotationally connected with the bottom fixing structure. The movable rod 14 is rotationally connected with the upper support base 24. The support column 21 serves as a main structural member to ensure the structural reliability of the whole support structure. The support plate 22 is used to be attached to the wall to increase the contact area between the support structure and the wall. The upper support base 24 and the lower support base 23 are respectively rotationally connected with the adjusting structure and the bottom fixing structure, so that when the adjusting structure is elongated or shortened, the support structure can be flipped on the bottom fixing structure to adjust the angle of the support structure. Two support columns 21 are provided. A plurality of first fixing plates 25 are arranged between the two support columns 21. The first fixing plates 25 are respectively fixedly connected with the two support columns 21. The first fixing plates 25 are arranged along the length direction of the support column 21. By providing two support columns 21, the structural reliability of the support structure can be improved. The first fixing plates 25 are used to connect the two support columns 21 to ensure the structural stability and reliability of the two support columns 21. The upper support base 24 and the lower support base 23 are respectively clamped with different first fixing plates 25. By clamping the upper support base 24 and the lower support base 23 with different first fixing plates 25, the support force can be provided for the upper support base 24 and the lower support base 23 to further improve the structural stability of the upper support base 24 and the lower support base 23.

[0037] The bottom fixing structure comprises a fixing beam 31, a movable seat 32 and a connecting seat 33, the movable seat 32 is in sliding connection with the fixing beam 31, the supporting structure is in rotary connection with the movable seat 32, the connecting seat 33 is in fixed connection with the fixing beam 31, and the coarse adjustment sleeve 11 is in rotary connection with the connecting seat 33. The fixing beam 31 serves as a main structural member of the bottom fixing structure and bears a supporting function, thereby maintaining the structural stability of the bottom fixing structure. The fixing beam 31 is provided with a plurality of bolt holes for installing foundation bolts, and the fixing beam 31 is fixed to the ground through the foundation bolts. The movable seat 32 is in rotary connection with the lower supporting seat 23, and the movable seat 32 is driven to slide on the fixing beam 31, thereby realizing the function of adjusting the position of the lower end of the supporting structure and enabling the supporting structure to adapt to wall bodies at different positions. After the movable seat 32 drives the lower end of the supporting structure to move, the structure of the upper end of the supporting structure is adjusted through the adjustment structure, thereby realizing the adjustment of the position of the supporting structure. The fixing beam 31 is fixedly provided with a fixing seat 34, and the fixing seat 34 is in fixed connection with the fixing beam 31. The fixing seat 34 is threadedly connected with a screw rod 35, and the screw rod 35 is in rotary connection with the movable seat 32 and is axially clamped. The screw rod 35 is rotated to drive the movable seat 32 in threaded connection therewith to move, thereby realizing the function of driving the movable seat 32 to move on the fixing beam 31. The fixing beam 31 is provided with two fixing beams 31, and a plurality of second fixing plates 36 are arranged between the two fixing beams 31. The second fixing plates 36 are respectively in fixed connection with the two fixing beams 31, and the second fixing plates 36 are arranged along the length direction of the fixing beam 31. Through the arrangement of the two fixing beams 31, the structural reliability of the bottom fixing structure is improved, the two fixing beams 31 are connected through the second fixing plates 36, and the structural stability between the two fixing beams 31 is ensured. The connecting seat 33 is clamped with the second fixing plate 36. The second fixing plate 36 clamps the connecting seat 33 to provide support force for the connecting seat 33, thereby further improving the stability of the connecting seat 33.

[0038] The embodiment has the following advantages:

[0039] When it is necessary to greatly adjust the length of the adjustment structure, the adjustment rod 12 is slid on the coarse adjustment sleeve 11 to quickly adjust the length of the adjustment structure, thereby realizing coarse adjustment. After the coarse adjustment is completed, the adjustment rod 12 is locked to the coarse adjustment sleeve 11 through the positioning pin 16. Then, the length of the adjustment structure is finely adjusted, the fine adjustment sleeve 13 is rotated, the fine adjustment sleeve 13 drives the threaded section 15 and the adjustment rod 12 in threaded connection therewith to move, the adjustment rod 12 and the movable rod 14 are relatively moved along the axial direction, thereby realizing the adjustment of the overall length of the adjustment structure, realizing further fine adjustment on the basis of coarse adjustment, increasing the adjustable range of the adjustment structure, achieving the advantage of better adapting to wall bodies at different angles and positions, and being capable of increasing the adjustment accuracy through fine adjustment.

[0040] According to the disclosure and teaching of the above description, the skilled in the art of the utility model can also change and modify the above-mentioned embodiments. Therefore, the utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes of the utility model should fall within the protection scope of the claims of the utility model. In addition, although some specific terms are used in the specification, these terms are only for convenience of description and do not constitute any limitation on the utility model.

Claims

1. A lateral bracing device for a fabricated wall, characterised in that: The application relates to a bottom fixing structure, a supporting structure and an adjusting structure, wherein the adjusting structure comprises a coarse adjusting sleeve (11), an adjusting rod (12), a fine adjusting sleeve (13) and a movable rod (14), the adjusting rod (12) is in sliding connection with the coarse adjusting sleeve (11), the coarse adjusting sleeve (11) is provided with a plurality of positioning holes (19) arranged along the length direction of the coarse adjusting sleeve (11), the adjusting rod (12) is detachably connected with a positioning pin (16) in clamping connection with the positioning holes (19), the movable rod (14) is in axial sliding connection and circumferential clamping connection with the adjusting rod (12), the fine adjusting sleeve (13) is in circumferential rotating connection and axial clamping connection with the movable rod (14), the adjusting rod (12) is provided with a threaded section (15), the fine adjusting sleeve (13) is in threaded connection with the threaded section (15), the coarse adjusting sleeve (11) is in rotating connection with the bottom fixing structure, and the movable rod (14) is in rotating connection with the supporting structure.

2. The lateral bracing device for fabricated wall panels of claim 1, wherein: The supporting structure comprises a supporting column (21), a supporting plate (22), a lower supporting base (23) and an upper supporting base (24), the supporting plate (22) is fixedly installed on the side of the supporting column (21) away from the adjusting structure, the upper supporting base (24) and the lower supporting base (23) are fixedly installed on the side of the supporting column (21) close to the adjusting structure, the lower supporting base (23) is in rotating connection with the bottom fixing structure, and the movable rod (14) is in rotating connection with the upper supporting base (24).

3. The lateral bracing device for fabricated wall panels of claim 2, wherein: The two supporting columns (21) are provided with a plurality of first fixing plates (25), the first fixing plates (25) are fixedly connected with the two supporting columns (21) respectively, and the first fixing plates (25) are arranged along the length direction of the supporting column (21).

4. The lateral bracing device for fabricated wall panels of claim 3, wherein: The upper supporting base (24) and the lower supporting base (23) are clamped with different first fixing plates (25) respectively.

5. The lateral bracing device for fabricated wall panels of claim 1, wherein: The bottom fixing structure comprises a fixed beam (31), a movable base (32) and a connecting base (33), the movable base (32) is in sliding connection with the fixed beam (31), the supporting structure is in rotating connection with the movable base (32), the connecting base (33) is fixedly connected with the fixed beam (31), and the coarse adjusting sleeve (11) is in rotating connection with the connecting base (33).

6. The lateral bracing device for a fabricated wall of claim 5, wherein: The fixed beam (31) is fixedly installed with a fixed base (34), the fixed base (34) is fixedly connected with the fixed beam (31), the fixed base (34) is in threaded connection with a screw rod (35), the screw rod (35) is in rotating connection and axial clamping connection with the movable base (32).

7. The lateral bracing device for a fabricated wall of claim 5, wherein: The two fixed beams (31) are provided with a plurality of second fixing plates (36), the second fixing plates (36) are fixedly connected with the two fixed beams (31) respectively, and the second fixing plates (36) are arranged along the length direction of the fixed beam (31).

8. The lateral bracing device for fabricated wall panels of claim 7, wherein: The connecting base (33) is clamped with the second fixing plate (36).

9. The lateral bracing device for assembled walls of claim 1, wherein: The length of the threaded section (15) is not less than the interval of two adjacent positioning holes (19) and less than twice the interval of two adjacent positioning holes (19).

10. The lateral bracing device for fabricated wall panels of claim 1, wherein: The positioning hole (19) is fixedly connected with a stud (17), the stud (17) is in threaded connection with the adjusting rod (12), and the positioning pin (16) is provided with an internal hex recess (18) at an end away from the adjusting rod (12).

Citation Information

Patent Citations

  • Wall supporting device for fabricated building

    CN213038909U