Building supporting column mounting and connecting device
By designing a building support column installation connection device that includes load-bearing, support, lifting and limiting components, the problem of difficulty in adjustment and lifting in the prior art is solved, and flexible installation and stable connection of support columns are achieved.
Patent Information
- Application Number
- CN202421770601.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-07-24
AI Technical Summary
It is difficult to adjust the existing building support column installation and connection devices accordingly according to the size of the support column, and it is not easy to lift and lower the support column.
An installation connection device including a bearing assembly, a support assembly, a lift assembly and a limit assembly is designed. The bearing assembly is fixed to the ground through the base plate and screw groove, the support assembly provides lateral support, the lift assembly adjusts the height of the support column through bolts and nuts, and the limit assembly realizes stable installation of support columns of different sizes through H-blocks and bolts.
It realizes flexible lifting and lowering of support columns and stable installation of different sizes, solving the problem of difficulty in adjusting and lifting of existing devices.
Smart Images

Figure CN222976117U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of the building installation industry, and particularly relates to a building support column installation and connection device. Background Art
[0002] In the building installation industry, the installation and connection device of a building support column is generally used to ensure a firm and reliable connection between the support column and the ground or other structures, so as to bear the weight of the building and provide stable support. In the prior art, when the conventional building support column installation and connection device connects the support column, it often needs to cut and weld the steel on site, which is difficult to make corresponding adjustments according to the sizes of different support columns. At the same time, it is not easy for the conventional device to realize the lifting of the support column to ensure the tight installation of the support column with the ground or the building. Content of the Utility Model
[0003] In order to overcome the problems that the conventional building support column installation and connection device is difficult to make corresponding adjustments according to the size of the support column and is not easy to realize the lifting of the support column.
[0004] The technical solution of the utility model is: a building support column installation and connection device, which comprises a bearing assembly, a support assembly, a lifting assembly and a limiting assembly; a support assembly for support is movably arranged at the upper end of the bearing assembly; a lifting assembly for facilitating lifting is arranged at the upper end of the bearing assembly; and a limiting assembly for limiting is arranged on the lifting assembly.
[0005] Preferably, through the setting of the bearing assembly, the whole device is fixed on the surface of the ground or the building to ensure the firm connection between the support column and the ground. Through the support assembly arranged on the bearing assembly, a lateral supporting force is provided for the bearing assembly, and at the same time, it is connected with the lifting assembly to ensure the overall stability of the device. Through the lifting assembly arranged on the bearing assembly, the support column can be raised or lowered according to the on-site requirements to adapt to the uneven situation of the ground or the building, thus solving the problem that it is not easy to realize the lifting of the support column. Through the limiting assembly arranged on the lifting assembly, the stable installation of support columns with different sizes can be realized, thus solving the problem that the conventional building support column installation and connection device is difficult to make corresponding adjustments according to the size of the support column.
[0006] As a preference, the bearing assembly comprises a bottom plate, a first screw groove and a second screw groove; the upper end of the bottom plate is provided with uniformly distributed first screw grooves and second screw grooves; through the setting of the first screw groove, the whole device can be fixed on a horizontal plane by using anchor bolts to ensure the stability of the structure.
[0007] Preferably, the support assembly includes a support block, a third screw groove, and a fourth screw groove; a support block is movably arranged at the upper end of the bottom plate; the lower end of the support block is in contact with the upper end of the bottom plate; a support foot is fixedly connected to the left end of the support block; the lower end of the support foot is in the same plane as the lower end of the bottom plate; uniformly distributed third screw grooves are formed through the left and right ends of the support foot; uniformly distributed fourth screw grooves are formed through the upper and lower ends of the support block; the fourth screw grooves correspond to the second screw grooves one by one; after the bearing assembly is installed, since the fourth screw grooves correspond to the second screw grooves one by one, bolts can be used to fixedly install the support block at the upper end of the bottom plate. The lower end of the support foot is in the same plane as the lower end of the bottom plate, which provides horizontal support for the bearing assembly and ensures the stability of the structure.
[0008] Preferably, the lifting assembly includes a first sleeve, a first nut, a first bolt, a second nut, a second sleeve, a connecting plate, a chute, and a fifth screw groove; the first sleeve is fixedly connected to the upper end of the bottom plate; a first bolt is threadedly installed in the screw groove formed inside the first sleeve; a first nut and a second nut are threadedly installed on the first bolt; the other end of the first bolt is threadedly installed with a second sleeve; the upper end of the second sleeve is fixedly connected to the connecting plate; through the setting of the first bolt, when the height of the support column needs to be adjusted, the first nut can be rotated to screw the first bolt up or down, driving the connecting plate to move up and down synchronously, and then the second nut is used to lock the first bolt, solving the problem that it is difficult to lift and lower the support column.
[0009] Preferably, through holes are formed through the upper end of the connecting plate and are distributed in a cross shape with respect to the center of the connecting plate; uniformly distributed fifth screw grooves are formed on the outer wall of the connecting plate; the fifth screw grooves correspond to the third screw grooves one by one; since the fifth screw grooves correspond to the third screw grooves one by one, when the connecting plate is at different heights, through the third screw grooves vertically and uniformly distributed on the support foot, bolts can be used to lock the support foot and the connecting plate, providing certain support for the lifting assembly and ensuring the structural stability of the entire device.
[0010] Preferably, the limiting assembly includes an H-shaped block, a second bolt, a rubber block, a first screw rod, a second screw rod, a sixth screw groove, and a seventh screw groove; an H-shaped block is movably arranged inside the chute; the outer walls of the two ends of the middle part of the H-shaped block perpendicular to the center of the connecting plate are in contact with the inner wall of the chute; a second bolt is threadedly installed in the hole formed through the upper part of the H-shaped block near one end of the center of the connecting plate; rubber blocks are fixedly connected to the mutually approaching ends of the second bolts; by sliding the H-shaped block inside the chute, the position of the H-shaped block can be adjusted according to the size of the support column to be installed until the inner wall of the H-shaped block fits the outer wall of the support column, and then the second bolt is screwed and locked. The setting of the rubber block plays an anti-slip role to ensure firm clamping and solves the problem that conventional installation and connection devices are difficult to adjust according to the size of the support column.
[0011] Preferably, evenly distributed sixth screw grooves are penetrated and formed at one end close to the center of the connecting plate on the lower part of the H-shaped blocks facing the left and right ends of the connecting plate; evenly distributed seventh screw grooves are penetrated and formed at one end close to the center of the connecting plate on the lower part of the H-shaped blocks facing the front and rear ends of the connecting plate; a first screw is threadedly installed in the sixth screw groove; a second screw is threadedly installed in the seventh screw groove; the first screw is located above the second screw; the H-shaped blocks are fixed by the alternately installed first screw and second screw to prevent them from continuing to slide in the chute, ensuring the stability of the device.
[0012] The beneficial effects of the present utility model:
[0013] 1. An H-shaped block is movably arranged inside the chute. The outer wall of the middle part of the H-shaped block is in contact with the inner wall of the chute. A second bolt is threadedly installed in the hole penetrated through the upper part of the H-shaped block. Rubber blocks are fixedly connected to the mutually approaching ends of the second bolts. By sliding the H-shaped block inside the chute, the position of the H-shaped block can be adjusted according to the size of the support column to be installed until the inner wall of the H-shaped block is in contact with the outer wall of the support column, and then the second bolt is screwed and locked. The rubber blocks play a role in anti-sliding, ensuring the stable installation of the support column, and solving the problem that it is difficult for a conventional installation and connection device to be adjusted according to the size of the support column.
[0014] 2. A first sleeve is fixedly connected to the upper end of the bottom plate. A first bolt is threadedly installed in the screw groove formed inside the first sleeve. A first nut and a second nut are threadedly installed on the first bolt. The other end of the first bolt is threadedly installed with a second sleeve. The upper end of the second sleeve is fixedly connected with a connecting plate. When it is necessary to adjust the height of the support column, the first nut can be rotated to screw the first bolt up or down, driving the connecting plate to rise and fall synchronously, and then the second nut is used to lock the first bolt, solving the problem that it is difficult to raise and lower the support column.
[0015] 3. Evenly distributed third screw grooves are penetrated through the left and right ends of the support feet. Since the fifth screw groove corresponds to the third screw groove one by one, when the connecting plate is at different heights, bolts can be used to lock the support feet and the connecting plate to give a certain support to the lifting assembly, ensuring the structural stability of the whole device. Description of the drawings
[0016] Figure 1 Shown is a three-dimensional structural schematic diagram of an installation and connection device for a building support column of the present utility model;
[0017] Figure 2 Shown is a three-dimensional structural schematic diagram of the load-bearing assembly and the support assembly of an installation and connection device for a building support column of the present utility model;
[0018] Figure 3 Shown is a three-dimensional structural schematic diagram of the lifting assembly of an installation and connection device for a building support column of the present utility model;
[0019] Figure 4 Shown is a top-down perspective structural schematic diagram of a limiting component of an installation and connection device for a building support column of the present utility model;
[0020] Figure 5 Shown is a bottom-up perspective structural schematic diagram of a limiting component of an installation and connection device for a building support column of the present utility model;
[0021] Figure 6 Shown is a perspective structural schematic diagram of the left and right H-shaped blocks in the limiting component of an installation and connection device for a building support column of the present utility model;
[0022] Figure 7 Shown is a perspective structural schematic diagram of the front and rear H-shaped blocks in the limiting component of an installation and connection device for a building support column of the present utility model.
[0023] The reference signs in the drawings are: 1 - load-bearing component, 101 - bottom plate, 102 - first screw groove, 103 - second screw groove, 2 - support component, 201 - support block, 202 - third screw groove, 203 - fourth screw groove, 204 - support foot, 3 - lifting component, 301 - first sleeve, 302 - first nut, 303 - first bolt, 304 - second nut, 305 - second sleeve, 306 - connecting plate, 307 - sliding groove, 308 - fifth screw groove, 4 - limiting component, 401 - H-shaped block, 402 - second bolt, 403 - rubber block, 404 - first screw rod, 405 - second screw rod, 406 - sixth screw groove, 407 - seventh screw groove. Detailed implementation manners
[0024] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0025] Please refer to Figure 1 , the present utility model provides an embodiment: an installation and connection device for a building support column, including a load-bearing component 1, a support component 2, a lifting component 3, and a limiting component 4; a support component 2 for support is movably arranged at the upper end of the load-bearing component 1; a lifting component 3 for facilitating lifting is arranged at the upper end of the load-bearing component 1; and a limiting component 4 for limiting is arranged on the lifting component 3.
[0026] Please refer to Figure 2, in this embodiment, the bearing assembly 1 includes a bottom plate 101, a first screw groove 102 and a second screw groove 103; the upper end of the bottom plate 101 is penetrated and provided with uniformly distributed first screw grooves 102 and second screw grooves 103; the support assembly 2 includes a support block 201, a third screw groove 202 and a fourth screw groove 203; the upper end of the bottom plate 101 is movably provided with a support block 201; the lower end of the support block 201 is in contact with the upper end of the bottom plate 101; the left end of the support block 201 is fixedly connected with a support foot 204; the lower end of the support foot 204 is in the same plane as the lower end of the bottom plate 101; the left and right ends of the support foot 204 are penetrated and provided with uniformly distributed third screw grooves 202; the upper and lower ends of the support block 201 are penetrated and provided with uniformly distributed fourth screw grooves 203; the fourth screw grooves 203 correspond to the second screw grooves 103 one by one.
[0027] Please refer to Figure 3 , in this embodiment, the lifting assembly 3 includes a first sleeve 301, a first nut 302, a first bolt 303, a second nut 304, a second sleeve 305, a connecting plate 306, a chute 307 and a fifth screw groove 308; the upper end of the bottom plate 101 is fixedly connected with a first sleeve 301; the screw groove opened inside the first sleeve 301 is internally threaded with a first bolt 303; the first bolt 303 is threadedly installed with a first nut 302 and a second nut 304; the other end of the first bolt 303 is threadedly installed with a second sleeve 305; the upper end of the second sleeve 305 is fixedly connected with a connecting plate 306; the upper end of the connecting plate 306 is penetrated and provided with a chute 307 distributed in a cross shape with respect to the center of the connecting plate 306; the outer wall of the connecting plate 306 is provided with uniformly distributed fifth screw grooves 308; the fifth screw grooves 308 correspond to the third screw grooves 202 one by one.
[0028] Please refer to Figure 4 , Figure 5 , Figure 6 and Figure 7, in this embodiment, the limiting component 4 includes an H-shaped block 401, a second bolt 402, a rubber block 403, a first screw rod 404, a second screw rod 405, a sixth screw groove 406 and a seventh screw groove 407; an H-shaped block 401 is movably arranged inside the sliding groove 307; the outer walls at both ends of the middle part of the H-shaped block 401 perpendicular to the center of the connecting plate 306 are in contact with the inner wall of the sliding groove 307; a second bolt 402 is threadedly installed in the hole penetrating through one end of the upper part of the H-shaped block 401 close to the center of the connecting plate 306; rubber blocks 403 are fixedly connected to the mutually approaching ends of the second bolts 402; uniformly distributed sixth screw grooves 406 are penetratingly opened at one end of the lower part of the H-shaped block 401 facing the left and right ends of the connecting plate 306 close to the center of the connecting plate 306; uniformly distributed seventh screw grooves 407 are penetratingly opened at one end of the lower part of the H-shaped block 401 facing the front and rear ends of the connecting plate 306 close to the center of the connecting plate 306; a first screw rod 404 is threadedly installed in the sixth screw groove 406; a second screw rod 405 is threadedly installed in the seventh screw groove 407; the first screw rod 404 is located above the second screw rod 405.
[0029] When working, place the bottom plate 101 on the ground where the support column needs to be installed, and use the anchor bolts to fix the bottom plate 101 on the ground plane through the first screw groove 102. Place the support column at the center position of the connecting plate 306, push the H-shaped block 401 to slide in the sliding groove 307 so that the H-shaped block 401 clamps the support column, screw the second bolt 402 tightly so that the rubber block 403 tightly adheres to the outer surface of the support column to ensure the stable installation of the support column. Then pass the first screw rod 404 through the sixth screw groove 406, pass the second screw rod 405 through the seventh screw groove 407, and use the screw cap to lock it on the H-shaped block 401 to ensure that the H-shaped block 401 will not slide.
[0030] When it is necessary to raise or lower the support column according to the on-site situation, rotate the first nut 302 to raise or lower the first bolt 303, then tighten the second nut 304 to lock the first bolt 303. Then place the support block 201 on the bottom plate 101, align the fourth screw groove 203 with the second screw groove 103, and install and fasten it with screws to ensure that the lower end of the support foot 204 is in contact with the ground plane. Then use screws to pass through the third screw groove 202 until it is tightened inside the fifth screw groove 308 to connect the load-bearing component 1, the support component 2 and the lifting component 3 into a whole to ensure the firm installation of the device.
[0031] Through the above steps, by setting the bearing component 1, the whole device is fixed on the ground or the surface of a building, ensuring that the support column is firmly connected to the ground. By providing the support component 2 on the bearing component 1, a lateral supporting force is provided to the bearing component 1, and at the same time, it is connected to the lifting component 3 to ensure the overall stability of the device. By providing the lifting component 3 on the bearing component 1, the support column can be raised or lowered according to on-site requirements to adapt to the unevenness of the ground or the building, solving the problem that it is difficult to realize the lifting of the support column. By providing the limiting component 4 on the lifting component 3, the stable installation of support columns of different sizes can be achieved, solving the problem that it is difficult for conventional building support column installation and connection devices to make corresponding adjustments according to the size of the support column.
[0032] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the gist of the present invention.
Claims
1. A building support column installation and connection device, comprising a load-bearing assembly (1); characterized in that: It also comprises a support component (2), a lifting component (3) and a limit component (4); the upper end of the bearing component (1) is movably provided with a support component (2) for supporting; the upper end of the bearing component (1) is provided with a lifting component (3) for facilitating lifting; and the lifting component (3) is provided with a limit component (4) for limiting. The bearing assembly (1) comprises a bottom plate (101), a first screw groove (102) and a second screw groove (103); The upper end of the bottom plate (101) is penetrated by a first screw groove (102) and a second screw groove (103) which are evenly distributed; The support assembly (2) comprises a support block (201), a third screw groove (202) and a fourth screw groove (203); the upper end of the bottom plate (101) is movably provided with the support block (201); the lower end of the support block (201) is in contact with the upper end of the bottom plate (101); the left end of the support block (201) is fixedly connected with a support foot (204); the lower end of the support foot (204) and the lower end of the bottom plate (101) are in the same plane; the left and right ends of the support foot (204) are penetrated by the third screw grooves (202) which are evenly distributed; the upper and lower ends of the support block (201) are penetrated by the third screw grooves (202) which are evenly distributed. The fourth screw groove (203) of the cloth; the fourth screw groove (203) corresponds to the second screw groove (103) one by one; the lifting assembly (3) includes a first sleeve (301), a first nut (302), a first bolt (303), a second nut (304), a second sleeve (305), a connecting plate (306), a sliding groove (307) and a fifth screw groove (308); the upper end of the bottom plate (101) is fixedly connected to the first sleeve (301); the first bolt (303) is threadedly installed in the screw groove provided inside the first sleeve (301); the first bolt (303) is threadedly installed on the first bolt (303); a nut (302) and a second nut (304); the other end of the first bolt (303) is threadedly mounted with a second sleeve (305); the upper end of the second sleeve (305) is fixedly connected with a connecting plate (306); the upper end of the connecting plate (306) is penetrated by a sliding groove (307) distributed in a cross shape about the center of the connecting plate (306); the outer wall of the connecting plate (306) is provided with a fifth screw groove (308) distributed evenly; the fifth screw groove (308) corresponds to the third screw groove (202) one by one; the limiting assembly (4) includes an H-shaped block (401), a second bolt (402) , a rubber block (403), a first screw rod (404), a second screw rod (405), a sixth screw groove (406) and a seventh screw groove (407); an H-shaped block (401) is movably arranged inside the slide groove (307); the outer walls of both ends of the middle part of the H-shaped block (401) perpendicular to the center of the connecting plate (306) are in contact with the inner wall of the slide groove (307); a second bolt (402) is threadedly installed in a hole through one end of the upper part of the H-shaped block (401) close to the center of the connecting plate (306); and the rubber block (403) is fixedly connected to the ends of the second bolt (402) close to each other.
2. A building support column installation and connection device according to claim 1, characterized in that: A sixth screw groove (406) is formed through one end of the lower part of the H-shaped block (401) facing the left and right ends of the connecting plate (306) and close to the center of the connecting plate (306) and is evenly distributed; a seventh screw groove (407) is formed through one end of the lower part of the H-shaped block (401) facing the front and rear ends of the connecting plate (306) and close to the center of the connecting plate (306) and is evenly distributed; a first screw rod (404) is installed in the internal thread of the sixth screw groove (406); a second screw rod (405) is installed in the internal thread of the seventh screw groove (407); and the first screw rod (404) is located above the second screw rod (405).