Building inclined support structure for building construction

Through the design of the adjustment mechanism and protective shell structure, the problem of the inclined support structure and the contact area between the wall and the threaded rod is susceptible to rainwater erosion, and the stability and service life of the support structure are improved.

CN223227124UActive Publication Date: 2025-08-15SICHUAN LIXIANG CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202422554662.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-08-15
Estimated Expiration
2034-10-22

AI Technical Summary

Technical Problem

The contact area between the existing inclined support structure and the wall cannot be adjusted, resulting in unstable support effect and the threaded rod is susceptible to rainwater erosion, which affects the service life and difficulty of dismantling.

Method used

The adjustment mechanism and protective shell structure are adopted, and the stress area is adjusted through the adjustment mechanism, and the protective shell is used to block the threaded rod to prevent rainwater contact, enhance support stability and protection of the threaded rod.

Benefits of technology

It improves the stability of the contact area between the inclined support structure and the wall, prevents the rust of the threaded rod, simplifies the disassembly process, and extends the service life.

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Abstract

The utility model relates to the technical field of building construction, and discloses a building inclined support structure for building construction, which comprises a mounting pipe and a sleeve mounted at one end of the mounting pipe, and further comprises a threaded rod in threaded connection with the inner wall of the sleeve, an adjusting mechanism is mounted in an inner cavity of the mounting shell, and a positioning shell is fixedly connected to the surface of the mounting pipe; through the cooperation of the adjusting mechanism, the stress area between the structure and the wall can be adjusted, so that the structure is more stable when supporting the wall, the applicability of the structure is effectively improved, meanwhile, under the cooperation of the protective shell and the blocking plate, the threaded rod can be shielded, and the service life of the threaded rod is prolonged. The supporting structure is convenient for subsequent workers to disassemble, the service life of the supporting structure is prolonged, and the problems that an existing supporting structure is poor in applicability and short in service life during use are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of building construction, in particular to a building inclined support structure for building construction. Background Art

[0002] Construction refers to the production activities during the implementation phase of construction projects. It is the process of building various types of buildings. It can also be said to be the process of turning various lines on the design drawings into physical objects at designated locations. It includes foundation engineering construction, main structure construction, roofing engineering construction, decoration engineering construction, etc. The place where construction work is carried out is called a "construction site" or "construction site", also known as a construction site. With the rapid development of the construction industry, in order to quickly build the required houses, prefabricated buildings are often used. The advantage of prefabricated buildings is that they can directly build the frame and install the board layer, which is quick and convenient. Most of the existing ones use columns and inclined supports, which are more stable and firm.

[0003] Some existing inclined support structures use threaded rods and sleeves that cooperate with each other to change their lengths, thereby improving their applicability. However, during use, the force-bearing area between the existing structure and the wall cannot be adjusted, resulting in a small contact area between the existing structure and the wall. This easily causes the support to break and the wall to tilt, which not only affects the support effect of the structure, but also affects the accuracy of the wall position, resulting in poor applicability.

[0004] Moreover, some construction sites use this structure in the open air, and the threaded rods that can adjust the length of the structure are directly exposed to the air. When it rains, the threaded rods are prone to rust after contact with rainwater. This situation not only makes it more difficult to dismantle the structure, but also reduces the service life of the entire structure. Utility Model Content

[0005] The purpose of the utility model is to provide a building inclined support structure for building construction, so as to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: a building inclined support structure for construction, comprising a mounting pipe and a sleeve mounted at one end thereof, and further comprising:

[0007] A threaded rod is threadedly connected to the inner wall of the sleeve, one end of the mounting tube and one end of the threaded rod are hingedly connected to a mounting shell, an adjustment mechanism is installed in the inner cavity of the mounting shell, and a positioning shell is fixedly connected to the surface of the mounting tube;

[0008] A positioning block slides in the inner cavity of the positioning shell, the surface of the positioning block is fixedly connected to the protective shell, the surface of the protective shell is provided with a positioning groove, one side of the upper mounting shell is fixedly connected to a blocking plate, and one side of the blocking plate is rotatably connected to the positioning frame.

[0009] Preferably, the adjustment mechanism includes a spur gear rotating on the inner wall of the mounting shell and a rack plate meshed with both sides of the surface thereof, and one end of the rack plate is fixedly connected to a support plate.

[0010] Preferably, a positioning block is fixedly connected to one side of the support plate, and positioning grooves slidably connected to the surface of the positioning block are provided on both upper and lower sides of one side of the mounting shell.

[0011] Preferably, guide grooves are provided on both sides of the inner cavity of the mounting tube, and the inner walls of the guide grooves are slidably connected to the surface of the rack plate.

[0012] Preferably, the cross-sectional shapes of the inner cavity of the positioning shell and the positioning block are both T-shaped structures, and the positioning shell and the positioning block are used in conjunction with each other.

[0013] Preferably, the protective shell is designed as an arc-shaped structure, and the diameter of the inner cavity of the protective shell is greater than the width of the sleeve.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0015] The utility model can adjust the force area between the structure and the wall through the cooperation of the adjustment mechanism, so that the structure is more stable when supporting the wall, effectively improving the applicability of the structure. At the same time, with the cooperation of the protective shell and the blocking plate, the threaded rod can be shielded, so that when the structure encounters rainy days during use, rainwater will not easily come into contact with the threaded rod, which not only makes it convenient for subsequent staff to disassemble the structure, but also improves the service life of the structure, solving the problems of poor applicability and poor service life of existing support structures when in use. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the present utility model;

[0017] Figure 2 It is a schematic diagram of a partial three-dimensional structure in the utility model;

[0018] Figure 3 It is a schematic diagram of a partial three-dimensional cross-sectional structure of the present utility model;

[0019] Figure 4 It is a schematic diagram of a partial three-dimensional cross-sectional structure from another perspective of the present invention.

[0020] In the figure: 1. Mounting tube; 2. Sleeve; 3. Threaded rod; 4. Mounting shell; 5. Positioning shell; 6. Positioning block; 7. Protective shell; 8. Positioning groove; 9. Blocking plate; 10. Positioning frame; 11. Adjustment mechanism; 111. Spur gear; 112. Rack plate; 113. Support plate; 12. Positioning groove; 13. Positioning block; 14. Guide groove. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] See also Figure 1-4As shown, a building inclined support structure for construction includes a mounting tube 1, a sleeve 2 is installed at one end of the mounting tube 1, a threaded rod 3 is threadedly connected to the inner wall of the sleeve 2, and the surface of the threaded rod 3 is movably connected to the inside of the mounting tube 1. Under this action, the position of the threaded rod 3 can be adjusted by the sleeve 2, thereby adjusting the height of the structure, thereby facilitating the use of the structure. One end of the mounting tube 1 and one end of the threaded rod 3 are both hingedly connected with a mounting shell 4, and with the cooperation of the mounting shell 4, the wall of the building can be supported, thereby reducing the tilt of the wall. The inner cavity of the mounting shell 4 is installed with an adjustment mechanism 11, and when the adjustment mechanism 11 is adjusted The width of the bracket 5 can be changed according to the space, so as to adjust the force-bearing area of the structure, thereby improving the supporting effect of the structure on the wall and effectively improving the applicability of the structure. The surface of the mounting tube 1 is fixedly connected with the positioning shell 5, and the inner cavity of the positioning shell 5 is slidably connected with the positioning block 6. The cross-sectional shapes of the inner cavity of the positioning shell 5 and the positioning block 6 are both T-shaped structural designs. The positioning shell 5 is used in conjunction with the positioning block 6. Under this action, the positioning block 6 can slide in the inner cavity of the positioning shell 5, but the positioning block 6 cannot be detached from the inside of the positioning shell 5, so as to avoid the positioning block 6 detaching from the inside of the positioning shell 5 and affecting the normal use of the structure. The surface of 6 is fixedly connected with a protective shell 7, which is designed as an arc structure. The diameter of the inner cavity of the protective shell 7 is larger than the width of the sleeve 2. Under this effect, the sleeve 2 will not affect the normal movement of the protective shell 7, and under the effect of its shape, it can block rainwater, so that rainwater will not easily contact the surface of the threaded rod 3, thereby reducing the rust on the threaded rod 3 and effectively improving the service life of the threaded rod 3. A clamping groove 8 is opened on the surface of the protective shell 7, and one side of the clamping groove 8 is designed as an arc structure. A blocking plate 9 is fixedly connected to one side of the upper mounting shell 4, and the top of the blocking plate 9 is designed as an inclined structure. Under this effect, The rainwater can be guided, thereby reducing the contact between the rainwater and the threaded rod 3, and the threaded rod 3 can be further protected. One side of the blocking plate 9 is rotatably connected to the positioning frame 10, and the positioning frame 10 is designed as an L-shaped structure. The surface of the positioning frame 10 is movably connected to the inside of the positioning groove 8. Under this function, the protective shell 7 can be hooked through the cooperation of the positioning frame 10 and the positioning groove 8, so that the protective shell 7 will not move easily, effectively reducing the situation of the protective shell 7 moving at will, and improving the protection effect of the threaded rod 3. Moreover, after the threaded rod 3 is adjusted, the position of the protective shell 7 can also be adjusted, thereby improving the applicability of the structure.

[0023] The adjustment mechanism 11 includes a spur gear 111, the surface of the spur gear 111 is rotatably connected to the inner wall of the mounting shell 4, and rack plates 112 are meshed on both sides of the surface of the spur gear 111. The other end of the rack plate 112 is fixedly connected to a support plate 113. One side of the support plate 113 is at the same horizontal line as one side of the mounting shell 4. Under this action, the two support plates 113 can be moved in opposite directions at the same time through the cooperation of the spur gear 111, so as to facilitate the adjustment of the position of the support plate 113, increase the force-bearing area of the structure, and effectively improve the support effect of the structure on the wall. Guide grooves 14 are provided on both sides of the inner cavity of the mounting tube 1, and the inner wall of the guide groove 14 is slidably connected to the surface of the rack plate 112. Under this action, the rack plate 112 can be guided when it moves with the cooperation of the guide groove 14, so that the rack plate 112 can be more stable when moving, avoiding the rack plate 112 being unstable when moving and affecting the meshing effect with the spur gear 111. A positioning block 13 is fixedly connected to one side of the support plate 113, and positioning grooves 12 are provided on the upper and lower sides of one side of the mounting shell 4. The inner wall of the positioning groove 12 is slidably connected to the surface of the positioning block 13. Under this action, the support plate 113 can be supported, so that the support plate 113 can be more stable when moving, effectively improving the stability of the support plate 113 when moving, avoiding the support plate 113 being unstable when moving and affecting the accuracy of its position.

[0024] Working principle: First, rotate the sleeve 2, and adjust the position of the threaded rod 3 under the action of the sleeve 2. After the threaded rod 3 is adjusted to the appropriate position, the staff fixes the upper mounting shell 4 on the wall, and the lower mounting shell 4 is installed on the ground. When the force area needs to be adjusted, the staff can directly pull the support plate 113 to drive the rack plate 112 to move. When the rack plate 112 moves, the support plate 113 on the other side can also move through the cooperation of the spur gear 111. After the position of the support plate 113 is adjusted to the appropriate position, the support plate 113 is fixed. After the installation is completed, pull the protective shell 7 to move it above the threaded rod 3, and then the staff rotates the positioning frame 10 to hook it inside the positioning groove 8 to limit the protective shell 7. When it rains, the blocking plate 9 cooperates with the protective shell 7 to block the surface of the threaded rod 3, thereby reducing the contact between the threaded rod 3 and rainwater, effectively improving the service life of the threaded rod 3.

[0025] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply the existence of any such actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or device comprising the element.

[0026] Although the 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 variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A building inclined support structure for construction, comprising a mounting pipe (1) and a sleeve (2) mounted on one end thereof, characterized in that: Also includes: A threaded rod (3) is threadedly connected to the inner wall of the sleeve (2); one end of the mounting tube (1) and one end of the threaded rod (3) are both hingedly connected to a mounting shell (4); an adjustment mechanism (11) is installed in the inner cavity of the mounting shell (4); and a positioning shell (5) is fixedly connected to the surface of the mounting tube (1); A positioning block (6) slides in the inner cavity of the positioning shell (5), the surface of the positioning block (6) is fixedly connected to a protective shell (7), the surface of the protective shell (7) is provided with a positioning groove (8), one side of the upper mounting shell (4) is fixedly connected to a blocking plate (9), and one side of the blocking plate (9) is rotatably connected to a positioning frame (10).

2. The building inclined support structure for construction according to claim 1, characterized in that: The adjustment mechanism (11) comprises a spur gear (111) rotating on the inner wall of the mounting shell (4) and a rack plate (112) meshed with both sides of the surface thereof, one end of the rack plate (112) being fixedly connected to a support plate (113).

3. The inclined support structure for building construction according to claim 2, characterized in that: A positioning block (13) is fixedly connected to one side of the support plate (113), and positioning grooves (12) slidably connected to the surface of the positioning block (13) are provided on both upper and lower sides of one side of the mounting shell (4).

4. The inclined support structure for building construction according to claim 2, characterized in that: Guide grooves (14) are provided on both sides of the inner cavity of the installation tube (1), and the inner walls of the guide grooves (14) are slidably connected to the surface of the rack plate (112).

5. The inclined support structure for building construction according to claim 1, characterized in that: The cross-sectional shapes of the inner cavity of the positioning shell (5) and the positioning block (6) are both T-shaped structural designs, and the positioning shell (5) and the positioning block (6) are used in conjunction with each other.

6. The inclined support structure for building construction according to claim 1, characterized in that: The protective shell (7) is designed as an arc-shaped structure, and the diameter of the inner cavity of the protective shell (7) is greater than the width of the sleeve (2).