Fully-prefabricated light steel keel composite wall-column synergistic shear-resistant component
By setting up a stable mechanism between the light steel keel wall and the column, and using a motor to drive the worm to rotate to plug the insertion block into the socket, the stability problem caused by the difference in the size of the light steel keel wall and the column is solved, and effective support and stability for cylinders of different sizes are achieved.
Patent Information
- Application Number
- CN202422534703.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-10-21
AI Technical Summary
Due to the different sizes of the light steel keel walls and columns, the spacing between the support components of the shear-resistant members is inconvenient to adjust, which makes it impossible to effectively support and stabilize the light steel keel walls and columns of different sizes, affecting the safety and stability of the billboard.
A fully prefabricated light steel keel combined wall-column collaborative shear member is designed. By setting a stable mechanism on the surface of the column, including components such as frame, worm gear ring, moving block and insert block, the worm is driven to rotate by a motor, so that the insert block can be plugged into the socket, achieving stability to the cylinders of different sizes and avoiding shaking.
It achieves a stable effect on cylinders and walls of different sizes, avoiding the equipment being affected by different directional forces during use, and ensuring the stability and normal use of the equipment.
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Figure CN223214778U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a fully prefabricated light steel keel combined wall-column coordinated shearing component, belonging to the technical field of light steel keels. Background Art
[0002] Light steel keel is a new type of building material. With the development of my country's modernization construction, light steel keel is widely used in hotels, terminal buildings, bus stations, stations, amusement parks, shopping malls, factories, office buildings, old building renovation, interior decoration, ceilings and other places. Light steel (painted) keel ceiling has the advantages of light weight, high strength, adaptability to waterproofing, shockproofing, dustproofing, sound insulation, sound absorption, constant temperature, etc. It also has the advantages of short construction period and simple construction.
[0003] Light steel keels are often used in the frames of outdoor billboards, and are usually made of columns and walls made of light steel keel materials. However, in order to ensure the stability of light steel keel walls and columns during use, they need to be equipped with shear components to prevent the light steel keel walls and columns from tilting, thereby affecting the safety of normal use of billboards. However, due to the different sizes of light steel keel walls and columns, when the spacing on the inner side of the supporting components in the shear components is not easy to adjust, it may not be possible to provide support and stability for light steel keel walls and columns of different sizes, which limits the scope of use of the shear components.
[0004] To this end, a fully prefabricated light steel keel composite wall-column collaborative shear-resistant component is proposed. Utility Model Content
[0005] In view of this, the present invention provides a fully prefabricated light steel keel composite wall-column coordinated shear member to solve or alleviate the technical problems existing in the prior art and at least provide a beneficial option.
[0006] The technical solution of the utility model is achieved as follows: a fully prefabricated light steel keel composite wall-column coordinated shear member includes a column, a wall is fixedly installed on the inner side of the two columns, and shear frames are fixedly installed on the left and right sides of the inner surface of the wall, and sockets are opened around the four sides of the two columns;
[0007] The bottom of the two columns is provided with a stabilizing mechanism, which includes a frame, a worm gear ring and a moving block. The frame is fixedly installed on the ground, and a circular frame is fixedly installed at the middle end of the inner cavity of the frame. The four moving blocks are all arranged in the inner cavity of the frame, and the inner sides of the four moving blocks are fixedly installed with connecting rods, and the inner sides of the four connecting rods are fixedly installed with fixed blocks. The inner sides of the four fixed blocks are fixedly installed with plug-in blocks, and the four plug-in blocks are all inserted into the inner cavities of the four jacks.
[0008] Further preferably, a motor is fixedly installed in the inner cavity of the frame, a worm is fixedly connected to the output end of the motor, the worm gear ring is arranged at the bottom of the inner cavity of the frame, and the surface of the worm gear ring is meshed with the surface of the worm.
[0009] Further preferably, a spiral plate is fixedly mounted on the top of the worm gear ring, and a mounting plate is fixedly mounted on the bottom of each of the four moving blocks, and the bottom of the mounting plate is slidably connected to the inner side of the spiral plate.
[0010] Further preferably, sliding rods are fixedly installed around the inner cavity of the frame, and the four moving blocks are slidably connected to the surfaces of the eight sliding rods.
[0011] Further preferably, an annular groove is provided at the bottom of the inner cavity of the frame, and mounting blocks are fixedly mounted around the bottom of the worm gear ring, and the bottoms of the four mounting blocks are slidably connected to the inner cavity of the annular groove.
[0012] Further preferably, movable grooves are formed on the surfaces of the circular frame, and the four connecting rods pass through the inner cavities of the four movable grooves and extend to the inner side of the circular frame.
[0013] Further preferably, a matching groove is opened on the top of the circular frame according to the size of the column, and the column passes through the matching groove, the circular frame and the inner cavity of the frame and extends to the ground.
[0014] Further preferably, the sizes of the four plug blocks match the sizes of the four plug holes, and the four plug blocks and the four plug holes are in the same horizontal direction.
[0015] The embodiment of the present invention has the following advantages due to the adoption of the above technical solution:
[0016] 1. The utility model provides a stabilizing mechanism. After the column is inserted into the inner cavity of the circular frame, the worm is rotated through the output end of the motor. As the worm rotates, the worm gear ring rotates. At this time, due to the rotation of the worm gear ring, the position of the spiral plate is rotated synchronously. At this time, the moving block moves inward through the cooperation of the mounting plate and the spiral plate. As the moving block moves, the connecting rod, the fixed block and the plug block are moved inward synchronously, and the plug block is inserted into the inner cavity of the socket, thereby completing the stabilization of the column. Through the adjustment of the stabilizing mechanism, the fixed block and the plug block can be moved inward, and the columns of different sizes can be supported and stabilized, effectively preventing the equipment from being affected by forces in different directions during use, causing the equipment to shake, thereby affecting the normal use of the column and the wall.
[0017] The present invention can limit the movement of the movable block by arranging the sliding rod, so as to avoid the direction deviation of the movable block when the movable block moves, thereby affecting the stability of the column. By arranging the mounting block and the annular groove, the worm gear ring can be limited, so as to avoid the direction deviation of the worm gear ring when rotating, thereby affecting the stability of the column. By arranging the movable groove, the movement of the connecting rod can be limited, so as to avoid the deviation of the connecting rod when moving, thereby reducing the stability of the column. By arranging the matching groove, since its size is opened according to the size of the column, when the column is inserted into the matching groove, there will be no shaking in the inner cavity of the matching groove, thereby affecting the stability of the column. By arranging the plug block and the plug hole, since the plug block and the plug hole are in the same horizontal direction and have matching sizes, the plug block can be freely inserted and exited from the inner cavity of the plug hole, and shaking of the plug block in the inner cavity of the plug hole, which reduces the stability of the column, can be avoided.
[0018] The above summary is for the purpose of description only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments and features described above, further aspects, embodiments and features of the present invention will be readily apparent by reference to the accompanying drawings and the following detailed description. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0020] Figure 1 This is a schematic diagram of the three-dimensional front view structure of the utility model;
[0021] Figure 2 This is a schematic diagram of the internal structure of the wall of the present utility model;
[0022] Figure 3 This is a schematic diagram of the stabilizing mechanism structure of the present utility model;
[0023] Figure 4 This is a schematic diagram of the worm gear ring structure of the present utility model;
[0024] Figure 5 This is a schematic diagram of the worm gear ring disassembly structure of the present utility model.
[0025] Figure numerals: 1. Column; 2. Stabilizing mechanism; 201. Frame; 202. Circular frame; 203. Motor; 204. Worm; 205. Worm gear ring; 206. Spiral plate; 207. Moving block; 208. Mounting plate; 209. Connecting rod; 210. Fixed block; 211. Insert block; 212. Sliding rod; 213. Movable groove; 214. Annular groove; 215. Mounting block; 216. Matching groove; 3. Wall; 4. Shear frame; 5. Socket. DETAILED DESCRIPTION
[0026] Hereinafter, only certain exemplary embodiments are briefly described. As will be appreciated by those skilled in the art, the described embodiments may be modified in various ways without departing from the spirit or scope of the present invention. Therefore, the drawings and description are to be regarded as illustrative in nature and not restrictive.
[0027] The embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0028] Example 1
[0029] like Figure 1-5 As shown, the embodiment of the present invention provides a fully prefabricated light steel keel composite wall-column coordinated shear member, including a column 1, a wall 3 fixedly installed on the inner side of the two columns 1, and a shear frame 4 fixedly installed on the left and right sides of the inner surface of the wall 3, and a socket 5 is opened around the surface of the two columns 1;
[0030] The bottom of the two columns 1 is provided with a stabilizing mechanism 2, which includes a frame 201, a worm gear ring 205 and a moving block 207. The frame 201 is fixedly installed on the ground. A circular frame 202 is fixedly installed at the middle end of the inner cavity of the frame 201. The four moving blocks 207 are all arranged in the inner cavity of the frame 201. Connecting rods 209 are fixedly installed on the inner sides of the four moving blocks 207. Fixed blocks 210 are fixedly installed on the inner sides of the four connecting rods 209. Insert blocks 211 are fixedly installed on the inner sides of the four fixed blocks 210. The four plug blocks 211 are all inserted into the inner cavities of the four jacks 5. The inner cavity of the frame 201 is fixedly installed with a motor 203. The output end of the motor 203 is fixedly connected to the worm 204. The worm gear ring 205 is arranged at the bottom of the inner cavity of the frame 201. The surface of the worm gear ring 205 is engaged with the surface of the worm 204. The top of the worm gear ring 205 is fixedly installed with a spiral plate 206. The bottom of the four moving blocks 207 is fixedly installed with a mounting plate 208. The bottom of the mounting plate 208 is slidably connected to the inner side of the spiral plate 206.
[0031] By setting up the stabilizing mechanism 2, after the column 1 is inserted into the inner cavity of the circular frame 202, the worm 204 is rotated through the output end of the motor 203. As the worm 204 rotates, the worm gear ring 205 rotates. At this time, due to the rotation of the worm gear ring 205, the position of the spiral plate 206 is rotated synchronously. At this time, the moving block 207 moves inward through the cooperation of the mounting plate 208 and the spiral plate 206. As the moving block 207 moves, the connecting rod 209, the fixed block 210 and the plug block 211 are moved inward synchronously, and the plug block 211 is inserted into the inner cavity of the socket 5, completing the stabilization of the column 1. By adjusting the stabilizing mechanism 2, the fixed block 210 and the plug block 211 can be moved inward, and the columns 1 of different sizes can be supported and stabilized, effectively preventing the equipment from being affected by forces in different directions during use, causing the equipment to shake, thereby affecting the normal use of the column 1 and the wall 3.
[0032] Example 2
[0033] In one embodiment, sliding rods 212 are fixedly installed around the inner cavity of the frame 201, and the four moving blocks 207 are slidably connected to the surfaces of the eight sliding rods 212. An annular groove 214 is provided at the bottom of the inner cavity of the frame 201, and mounting blocks 215 are fixedly installed around the bottom of the worm ring 205. The bottoms of the four mounting blocks 215 are slidably connected to the inner cavity of the annular groove 214. Movable grooves 213 are provided on the surface of the circular frame 202. The four connecting rods 209 pass through the inner cavity of the four movable grooves 213 and extend to the inner side of the circular frame 202. A matching groove 216 is provided on the top of the circular frame 202 according to the size of the column 1. The column 1 passes through the matching groove 216, the circular frame 202 and the inner cavity of the frame 201, and extends to the ground. The sizes of the four plug blocks 211 match the sizes of the four sockets 5, and the four plug blocks 211 and the four sockets 5 are in the same horizontal direction.
[0034] By setting the slide bar 212, the movement of the moving block 207 can be limited to avoid the direction of the moving block 207 being offset when it moves, thereby affecting the stability of the column 1. By setting the mounting block 215 and the annular groove 214, the worm ring 205 can be limited to avoid the direction of the worm ring 205 being offset when it rotates, thereby affecting the stability of the column 1. By setting the movable groove 213, the movement of the connecting rod 209 can be limited to avoid the direction of the connecting rod 209 being offset when it moves, thereby causing the stability of the column 1 to be changed. The difference is that by setting the matching groove 216, since its size is opened according to the size of the column 1, when the column 1 is inserted into the matching groove 216, there will be no shaking in the inner cavity of the matching groove 216, thereby affecting the stability of the column 1. By setting the plug 211 and the socket 5, since the plug 211 and the socket 5 are in the same horizontal direction and have matching sizes, the plug 211 can freely enter and exit the inner cavity of the socket 5, and avoid the plug 211 shaking in the inner cavity of the socket 5, which makes the stability of the column 1 worse.
[0035] When the present invention is in operation: after the column 1 is inserted into the inner cavity of the circular frame 202, the worm 204 is rotated through the output end of the motor 203. As the worm 204 rotates, the worm gear ring 205 rotates. At this time, due to the rotation of the worm gear ring 205, the position where the spiral plate 206 is located is rotated synchronously. At this time, the moving block 207 moves inward through the cooperation of the mounting plate 208 and the spiral plate 206. As the moving block 207 moves, the connecting rod 209, the fixed block 210 and the insert block 211 are moved inward synchronously, and the insert block 211 is inserted into the inner cavity of the socket 5, completing the stabilization of the column 1.
[0036] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any person skilled in the art can easily conceive of various modifications or substitutions within the technical scope disclosed in the present invention, and such modifications or substitutions are intended to be within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be based on the scope of protection of the claims.
Claims
1. A fully prefabricated light steel keel composite wall-column coordinated shear member, comprising a column (1), characterized in that: A wall (3) is fixedly installed on the inner side of the two columns (1), and shear frames (4) are fixedly installed on the left and right sides of the inner surface of the wall (3). Sockets (5) are provided around the surfaces of the two columns (1); The bottoms of the two columns (1) are each provided with a stabilizing mechanism (2), the stabilizing mechanism (2) comprising a frame (201), a worm gear ring (205) and a moving block (207), the frame (201) being fixedly mounted on the ground, a circular frame (202) being fixedly mounted at the middle end of the inner cavity of the frame (201), the four moving blocks (207) being each provided in the inner cavity of the frame (201), a connecting rod (209) being fixedly mounted on the inner side of the four moving blocks (207), a fixing block (210) being fixedly mounted on the inner side of the four connecting rods (209), an inserting block (211) being fixedly mounted on the inner side of the four fixing blocks (210), and the four inserting blocks (211) being plugged into the inner cavities of the four sockets (5).
2. The fully prefabricated light steel keel composite wall-column coordinated shear member according to claim 1 is characterized in that: A motor (203) is fixedly installed in the inner cavity of the frame (201), an output end of the motor (203) is fixedly connected to a worm (204), the worm gear ring (205) is arranged at the bottom of the inner cavity of the frame (201), and the surface of the worm gear ring (205) is meshed with the surface of the worm (204).
3. The fully prefabricated light steel keel composite wall-column coordinated shear member according to claim 1, characterized in that: A spiral plate (206) is fixedly mounted on the top of the worm gear ring (205), and a mounting plate (208) is fixedly mounted on the bottom of each of the four moving blocks (207), wherein the bottom of the mounting plate (208) is slidably connected to the inner side of the spiral plate (206).
4. The fully prefabricated light steel keel composite wall-column coordinated shear member according to claim 1, characterized in that: Sliding rods (212) are fixedly installed around the inner cavity of the frame (201), and the four moving blocks (207) are slidably connected to the surfaces of the eight sliding rods (212).
5. The fully prefabricated light steel keel composite wall-column coordinated shear member according to claim 1, characterized in that: An annular groove (214) is provided at the bottom of the inner cavity of the frame (201), and mounting blocks (215) are fixedly installed around the bottom of the worm gear ring (205), and the bottoms of the four mounting blocks (215) are slidably connected to the inner cavity of the annular groove (214).
6. The fully prefabricated light steel keel composite wall-column coordinated shear member according to claim 1, characterized in that: The surface of the circular frame (202) is provided with movable grooves (213), and the four connecting rods (209) pass through the inner cavities of the four movable grooves (213) and extend to the inner side of the circular frame (202).
7. The fully prefabricated light steel keel composite wall-column coordinated shear member according to claim 1, characterized in that: The top of the circular frame (202) is provided with a matching groove (216) according to the size of the column (1), and the column (1) passes through the matching groove (216), the circular frame (202) and the inner cavity of the frame (201), and extends to the ground.
8. The fully prefabricated light steel keel composite wall-column coordinated shear member according to claim 1, characterized in that: The sizes of the four inserting blocks (211) match the sizes of the four inserting holes (5), and the four inserting blocks (211) and the four inserting holes (5) are in the same horizontal direction.