Reinforcing and connecting device of building structure
By designing a building structure reinforcement connection device including main unit and reinforcement unit, the problem that reinforcement plates can only be supported by single point in the prior art is solved, multi-point reinforcement support is realized, and the reinforcement effect and operation convenience are improved.
Patent Information
- Application Number
- CN202510469488.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-06-06
AI Technical Summary
When the existing building structure reinforcement connection device is used, the reinforcement panel can only reinforce and support one point in the building, which has poor effect. It usually requires reinforcement and support for multiple points and needs to be fixed through multiple positioning cones, which is very troublesome to operate.
A building structure reinforcement connection device including a main body unit and a reinforcement unit is designed. The main body unit includes a base plate, a vertical plate and a rotating shaft. The reinforcement unit includes a rectangular cylinder, a support tooth plate, a reinforcement plate and an adjustment assembly. By rotating the rotating shaft and an adjustment assembly, the height and spacing of the reinforcement plate can be adjusted to achieve multi-point reinforcement support.
Through this device, the reinforcement support for buildings can be achieved, the reinforcement effect is improved, the operation process is simplified, the dependence on the positioning cone is reduced, and the convenience and stability of operation are improved.
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Figure CN120100214A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of building structure reinforcement, and in particular to a reinforcement connection device for a building structure. Background Art
[0002] Building structure reinforcement connection devices are key technologies for enhancing the structural stability, bearing capacity and seismic performance of buildings. They are widely used in scenarios such as renovation of old buildings, structural repair, and seismic reinforcement. In addition, in construction, common building support structures may also require relevant reinforcement connection devices to reinforce their structures due to foundation misalignment, concrete pouring quality accidents, and insufficient foundation bearing capacity to ensure foundation stability.
[0003] Publication No. CN214996322U discloses a building structure reinforcement connection device for construction, including a base, a sleeve fixedly connected to the top of the base, a threaded rod inserted into the top of the sleeve, the threaded rod provided with a slide groove along the axial direction, a slider slidably connected in the slide groove, the slider is fixedly connected to the inner wall of the sleeve, an adjusting screw sleeve is sleeved on the threaded rod, the adjusting screw sleeve is threadedly connected to the threaded rod, one end face of the adjusting screw sleeve is rotatably connected to the sleeve, a plurality of grooves are provided on the circumferential side of the adjusting screw sleeve, a first U-shaped frame is fixedly connected to the top of the threaded rod, a sliding sleeve is rotatably connected in the first U-shaped frame, and a support assembly is slidably connected in the sliding sleeve.
[0004] When the building structure reinforcement connection device in the above-mentioned prior art is in use, the reinforcement plate only reinforces and supports one point of the building. The effect of this support method after reinforcement is poor, and usually multiple points are required for reinforcement and support. When the building structure reinforcement connection device fixes the reinforcement plate at this point, it is also necessary to use a positioning cone to fix the reinforcement plate. If support is required from multiple reinforcement plates, it is necessary to use multiple positioning cones to fix it, which is very troublesome to operate. Summary of the invention
[0005] In view of this, the purpose of the present invention is to propose a reinforcement connection device for a building structure. The technical problem to be solved is that when the existing building structure reinforcement connection device is in use, the reinforcement plate only reinforces and supports one point of the building. The effect of this support method after reinforcement is poor, and usually multiple points are required for reinforcement and support. When the above-mentioned building structure reinforcement connection device fixes the reinforcement plate at this point, it is also necessary to use a positioning cone to fix the reinforcement plate. If support is required from multiple reinforcement plates, it is necessary to use multiple positioning cones to fix it, and the operation is very troublesome.
[0006] In order to achieve the above technical objectives, the technical solution adopted by the present invention is as follows.
[0007] The present invention provides a reinforcement connection device for a building structure:
[0008] It includes a main unit and a reinforcement unit, the main unit includes a bottom plate, two vertical plates are fixed on the top of the bottom plate, the two vertical plates are connected to each other by a first rotating shaft for rotation, the reinforcement unit includes two rectangular tubes, a connecting rod is fixed at one end of the rectangular tube, the first rotating shaft runs through the two connecting rods, the two connecting rods are both located on the outside of the first rotating shaft and slide, a supporting tooth plate is slidably connected in the rectangular tube, a hinge seat is fixed at one end of the supporting tooth plate away from the rectangular tube, a connecting block is rotatably connected in the hinge seat, a reinforcement plate is fixed on the side of the connecting block away from the hinge seat, an adjustment component for adjusting the distance between the two reinforcement plates is arranged between the two rectangular tubes, and an adjustment component for adjusting the height of the reinforcement plate is arranged on one side of one of the vertical plates.
[0009] As a preferred solution of the reinforcement connection device of a building structure described in the present invention, a connecting frame is fixed to the outer side of the middle part of the first rotating shaft, a long rod is fixed to one end of the connecting frame, a travel groove is opened in the long rod, and a moving block is slidably connected in the travel groove.
[0010] As a preferred solution of a reinforcement connection device for a building structure described in the present invention, the adjustment component includes a threaded rod rotatably engaged in a stroke groove, the threaded rod passes through a moving block and is threadedly connected to the moving block, a rotating handle is fixed to one end of the threaded rod extending outside the long rod, a second rotating shaft is hinged on both sides of the moving block, a cylindrical rod is fixed on the rectangular tube, the cylindrical rod passes through the second rotating shaft, the second rotating shaft is rotatably engaged with the outside of the cylindrical rod, a circular hole for the cylindrical rod to pass through is opened at one end of the second rotating shaft away from the moving block, an anti-slip block is fixed to the top of the cylindrical rod, and the diameter of the anti-slip block is larger than the diameter of the circular hole.
[0011] As a preferred solution of the reinforcement connection device of a building structure described in the present invention, a hollow plate is fixed and connected to one side of the rectangular tube, a positioning tooth plate is slidably connected inside the hollow plate, and the positioning tooth plate is meshed with the supporting tooth plate.
[0012] As a preferred solution of a reinforcement connection device for a building structure described in the present invention, wherein: a second pull rod is fixed to one side of the positioning tooth plate, the second pull rod passes through the hollow plate and slides inside the hollow plate, a third elastic member is sleeved on the outer side of the second pull rod, one end of the third elastic member is against the positioning tooth plate, and the other end of the third elastic member is against the hollow plate. It should be noted that the third elastic member can use elastic devices, and when the third elastic member is in a normal state, the positioning tooth plate and the supporting tooth plate are in a meshing state.
[0013] As a preferred solution of a reinforcement connection device for a building structure described in the present invention, the adjustment component includes an annular cylinder fixed to the top of one of the vertical plates, the first rotating shaft passes through the vertical plate and extends to one end of the annular cylinder with a connecting disk fixed thereon, a first end face tooth ring is fixed to the side of the connecting disk away from the first rotating shaft, a second end face tooth ring is arranged in the annular cylinder, and the second end face tooth ring can mesh with the first end face tooth ring.
[0014] As a preferred solution of the reinforcement connection device of a building structure described in the present invention, a plurality of guide plates are fixed on the outer side of the second end face tooth ring along its radial direction at equal intervals, a plurality of guide grooves are opened on the outer side of the circular ring cylinder along its radial direction at equal intervals, and the plurality of guide plates are respectively slidably fitted in the corresponding guide grooves.
[0015] As a preferred solution of a reinforcement connection device for a building structure described in the present invention, wherein: a first disc is arranged in the second end face tooth ring, and a plurality of first connecting plates are fixed at equal intervals along the radial direction of the outer side of the first disc, and the end of the first connecting plate away from the first disc is fixed to the inner wall of the second end face tooth ring; a second disc is arranged in the annular cylinder, and a plurality of second connecting plates are fixed at equal intervals along the radial direction of the outer side of the second disc, and the end of the second connecting plate away from the second disc is fixed to the inner wall of the annular cylinder; a first pull rod is fixed on one side of the first disc, the first pull rod passes through the second disc and slides in the second disc, a first elastic member is sleeved on the outer side of the first pull rod, one end of the first elastic member is abutted against the first disc, and the other end of the first elastic member is abutted against the second disc. It should be noted that the first elastic member can use elastic devices, and when the first elastic member is in a normal state, the first end face tooth ring and the second end face tooth ring are in a meshing state.
[0016] As a preferred solution of the reinforcement connection device of a building structure described in the present invention, rolling wheels are installed at the four corners of the bottom of the base plate, a rectangular groove is opened in the base plate, a water tank is slidably connected in the rectangular groove, a plurality of conical nails are fixed to the bottom of the water tank, a water supply pipe is fixed to and connected to the top of the water tank, a first pipe cap is threadedly connected to the water supply pipe, a drain pipe is fixed to and connected to the bottom of the water tank, and a second pipe cap is threadedly connected to the drain pipe.
[0017] As a preferred solution of the reinforcement connection device of a building structure described in the present invention, wherein: a rectangular plate is fixed to the outer side of the top of the water tank, a plurality of limit rods are fixed to the top of the bottom plate, the limit rods penetrate the rectangular plate, the rectangular plate is slidably fitted to the outside of the limit rods, an anti-slip plate is fixed to the top of the limit rods, a second elastic member is sleeved on the outer side of the limit rod, one end of the second elastic member is abutted against the rectangular plate, and the other end of the second elastic member is abutted against the bottom plate. It should be noted that the second elastic member can use elastic devices, and in the normal form of the second elastic member, the distance between the bottom of the conical nail and the bottom of the bottom plate is smaller than the distance between the bottom of the rolling wheel and the bottom plate, that is, the conical nail is away from the ground at this time.
[0018] It can be seen from the above technical solutions that the present application has the following beneficial effects:
[0019] 1: Pull the first pull rod to drive the second end face gear ring and the first disc to move. When the second end face gear ring is separated from the first end face gear ring, the first rotating shaft can be rotated. When the first rotating shaft rotates, it drives the connecting frame, the long rod, and the second rotating shaft to rotate longitudinally. When the second rotating shaft rotates, it drives the supporting gear plate and the reinforcement plate to rotate longitudinally, thereby adjusting the height of the reinforcement plate so that the reinforcement plate can reach the position where it needs to be reinforced and supported.
[0020] 2: According to the required length of the building, rotate the rotating handle to drive the threaded rod to rotate, and when the threaded rod rotates, it drives the moving block to move, and when the moving block moves, it drives the second rotating shaft to rotate horizontally, and when the second rotating shaft rotates horizontally, it drives the rectangular tube and the supporting tooth plate to move, and when the supporting tooth plate moves, it drives the reinforcement plate to move, thereby adjusting the distance between the two reinforcement plates, that is, adjusting the position of the two reinforcement plates for reinforcement support.
[0021] 3: When the reinforcement plate and the building to be reinforced and supported are offset against each other, water is injected into the water tank. After the water is injected into the water tank, the weight increases, thereby driving the water tank to move downward, and when the water tank moves downward, it will drive the conical nails to move toward the ground. Due to the setting of the conical nails, the friction between the device and the ground is increased, thereby improving the stability of the device. When the device is not needed for reinforcement and support, the water in the water tank is discharged, and the water tank is driven to move upward under the rebound force of the second elastic member, so that the conical nails are away from the ground, thereby facilitating the movement of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative labor. Among them:
[0023] Figure 1 A structural schematic diagram of a reinforcement connection device for a building structure provided by the present invention;
[0024] Figure 2 A schematic diagram of a partial structure of a reinforcement connection device for a building structure provided by the present invention;
[0025] Figure 3 A schematic diagram of the partial structural disassembly of a reinforcement connection device for a building structure provided by the present invention;
[0026] Figure 4 The present invention provides Figure 3 The structural diagram at A in the middle;
[0027] Figure 5 A structural schematic diagram of a reinforcement connection device for a building structure provided by the present invention from another perspective;
[0028] Figure 6 The present invention provides Figure 5 The structural diagram at B in the middle;
[0029] Figure 7 This is a schematic diagram of the structure of the water storage tank and the bottom plate provided by the present invention when viewed from above.
[0030] Description of the drawings: 100, main unit; 101, bottom plate; 102, vertical plate; 103, first rotating shaft; 104, annular cylinder; 105, connecting plate; 106, first end face tooth ring; 107, second end face tooth ring; 108, guide plate; 109, guide groove; 110, first connecting plate; 111, first disc; 112, second connecting plate; 113, second disc; 114, first pull rod; 115, first elastic member; 116, rolling wheel; 117, rectangular groove; 118, water storage tank; 119, rectangular plate; 120, conical nail; 121, water supply pipe; 122, first pipe cap; 123, drainage Water pipe; 124, second pipe cap; 125, limit rod; 126, anti-drop plate; 127, second elastic member; 200, reinforcement unit; 201, rectangular tube; 202, connecting rod; 203, supporting tooth plate; 204, hinge seat; 205, connecting block; 206, reinforcement plate; 207, connecting frame; 208, long rod; 209, stroke groove; 210, moving block; 211, threaded rod; 212, rotating handle; 213, second rotating shaft; 215, cylindrical rod; 216, round hole; 217, anti-drop block; 218, hollow plate; 219, positioning tooth plate; 220, second pull rod; 221, third elastic member. DETAILED DESCRIPTION
[0031] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below in conjunction with the accompanying drawings.
[0032] In the following description, many specific details are set forth to facilitate a full understanding of the present invention, but the present invention may also be implemented in other ways different from those described herein, and those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0033] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The term "in one embodiment" that appears in different places in this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive with other embodiments.
[0034] Secondly, the present invention is described in detail with reference to the schematic diagram. When describing the embodiments of the present invention in detail, for the sake of convenience, the cross-sectional diagrams showing the device structure will not be partially enlarged according to the general scale, and the schematic diagrams are only examples, which should not limit the scope of protection of the present invention. In addition, in actual production, the three-dimensional dimensions of length, width and depth should be included.
[0035] Reference Figure 1-Figure 7 :
[0036] In one embodiment of the present invention, a reinforcement connection device for a building structure is provided, including a main unit 100 and a reinforcement unit 200. The main unit 100 includes a bottom plate 101, two vertical plates 102 are fixed on the top of the bottom plate 101, and a first rotation axis 103 is connected between the two vertical plates 102 for common rotation. The reinforcement unit 200 includes two rectangular tubes 201, a connecting rod 202 is fixed at one end of the rectangular tube 201, and the first rotation axis 103 passes through the two connecting rods 202. The two connecting rods 202 are both located at the first The rotating shaft 103 slides on the outside, and a supporting tooth plate 203 is slidably connected inside the rectangular tube 201. A hinge seat 204 is fixed to the end of the supporting tooth plate 203 away from the rectangular tube 201. A connecting block 205 is rotatably connected inside the hinge seat 204. A reinforcing plate 206 is fixed to the side of the connecting block 205 away from the hinge seat 204. An adjusting component for adjusting the distance between the two reinforcing plates 206 is arranged between the two rectangular tubes 201, and an adjusting component for adjusting the height of the reinforcing plate 206 is arranged on one side of one of the vertical plates 102.
[0037] Among them, the adjustment component includes an annular cylinder 104 fixed on the top of one of the vertical plates 102, the first rotating shaft 103 passes through the vertical plate 102 and extends to one end of the annular cylinder 104 with a connecting disk 105 fixed thereon, a first end face gear ring 106 is fixed on the side of the connecting disk 105 away from the first rotating shaft 103, a second end face gear ring 107 is arranged in the annular cylinder 104, the second end face gear ring 107 can mesh with the first end face gear ring 106, a plurality of guide plates 108 are fixed to the outer side of the second end face gear ring 107 at equal intervals along its radial direction, a plurality of guide grooves 109 are opened at equal intervals along its radial direction on the outer side of the annular cylinder 104, and the plurality of guide plates 108 are slidably fitted in the corresponding guide grooves 109 respectively, a first disc 111 is arranged in the second end face gear ring 107, a plurality of first connecting plates 110 are fixed to the outer side of the first disc 111 at equal intervals along its radial direction, and the first connecting plates 110 are far away from the first rotating shaft 103. One end away from the first disc 111 is fixed to the inner wall of the second end face toothed ring 107, a second disc 113 is arranged in the annular tube 104, a plurality of second connecting plates 112 are fixed to the outer side of the second disc 113 along its radial direction at equal intervals, one end of the second connecting plate 112 away from the second disc 113 is fixed to the inner wall of the annular tube 104, a first pull rod 114 is fixed to one side of the first disc 111, the first pull rod 114 passes through the second disc 113 and slides in the second disc 113, a first elastic member 115 is sleeved on the outer side of the first pull rod 114, one end of the first elastic member 115 is abutted against the first disc 111, and the other end of the first elastic member 115 is abutted against the second disc 113. It should be noted that the first elastic member 115 can use elastic devices, and when the first elastic member 115 is in a normal state, the first end face toothed ring 106 and the second end face toothed ring 107 are in a meshing state.
[0038] In addition, a connecting frame 207 is fixed to the outer side of the middle of the first rotating shaft 103, a long rod 208 is fixed to one end of the connecting frame 207, a travel groove 209 is opened in the long rod 208, a moving block 210 is slidably connected in the travel groove 209, and the adjustment component includes a threaded rod 211 that is rotatably matched in the travel groove 209, the threaded rod 211 passes through the moving block 210 and is threadedly connected to the moving block 210, and a rotating handle is fixed to one end of the threaded rod 211 extending outside the long rod 208 212, the second rotating shaft 213 is hinged on both sides of the moving block 210, a cylindrical rod 215 is fixed on the rectangular tube 201, the cylindrical rod 215 passes through the second rotating shaft 213, the second rotating shaft 213 is rotatably matched with the outside of the cylindrical rod 215, and a circular hole 216 for the cylindrical rod 215 to pass through is opened at one end of the second rotating shaft 213 away from the moving block 210, and an anti-slip block 217 is fixed on the top of the cylindrical rod 215, and the diameter of the anti-slip block 217 is larger than the diameter of the circular hole 216.
[0039] When in use, after the pushing device moves it to the desired position, the height of the reinforcement plate 206 is first adjusted, and the first pull rod 114 is pulled to drive the second end face tooth ring 107 and the first disc 111 to move. When the first disc 111 moves, it will compress the first elastic member 115. When the second end face tooth ring 107 and the first end face tooth ring 106 are separated, the first rotating shaft 103 can be rotated. When the first rotating shaft 103 rotates, it drives the connecting frame 207 to rotate longitudinally. When the connecting frame 207 rotates, it drives the long rod 208 to rotate longitudinally. When the long rod 208 rotates, it drives the second rotating shaft 213 to rotate longitudinally. When the second rotating shaft 213 rotates, it drives the supporting tooth plate 203 and the reinforcement plate 206 to rotate longitudinally, thereby adjusting the height of the reinforcement plate 206 so that the reinforcement plate 206 can reach the position where it needs to be reinforced and supported.
[0040] When the first pull rod 114 is pulled to drive the first disk 111 and the second end face toothed ring 107 to move, the setting of the guide plate 108 and the guide groove 109 constrains the moving path of the second end face toothed ring 107, so that when the first pull rod 114 is released, the second end face toothed ring 107 is driven to move toward the first end face toothed ring 106 under the rebound force of the first elastic member 115, so that the second end face toothed ring 107 can mesh with the first end face toothed ring 106, so that the first end face toothed ring 106 is fixed, that is, the first rotating shaft 103 is fixed, and then the first end face toothed ring 106 is adjusted to the required height and then fixed.
[0041] Furthermore, a hollow plate 218 is fixed and connected to one side of the rectangular tube 201, and a positioning tooth plate 219 is slidably connected inside the hollow plate 218. The positioning tooth plate 219 and the supporting tooth plate 203 are meshed with each other. A second pull rod 220 is fixed to one side of the positioning tooth plate 219. The second pull rod 220 passes through the hollow plate 218 and slides inside the hollow plate 218. A third elastic member 221 is sleeved on the outer side of the second pull rod 220. One end of the third elastic member 221 is abutted against the positioning tooth plate 219, and the other end of the third elastic member 221 is abutted against the hollow plate 218. It should be noted that the third elastic member 221 can use elastic devices, and when the third elastic member 221 is in a normal state, the positioning tooth plate 219 and the supporting tooth plate 203 are in a meshing state.
[0042] When in use, after the reinforcement plate 206 is adjusted to the required height, the spacing between the reinforcement plates 206 is adjusted according to the required length of the building. At this time, the rotating handle 212 is rotated to drive the threaded rod 211 to rotate. When the threaded rod 211 rotates, it drives the moving block 210 to move. When the moving block 210 moves, it drives the second rotating shaft 213 to rotate horizontally. When the second rotating shaft 213 rotates horizontally, it drives the rectangular tube 201 to move. When the rectangular tube 201 moves, it drives the supporting tooth plate 203 to move. When the supporting tooth plate 203 moves, it drives the reinforcement plates 206 to move, thereby adjusting the spacing between the two reinforcement plates 206, thereby adjusting The two reinforcement plates 206 are used to reinforce the support position, and then the second pull rod 220 is pulled to drive the positioning tooth plate 219 to move, and the positioning tooth plate 219 is moved into the hollow plate 218, so that the positioning tooth plate 219 and the rectangular tube 201 are separated. At this time, the rectangular tube 201 can be moved. When the rectangular tube 201 moves, it drives the reinforcement plate 206 to move, so that the reinforcement plate 206 is pressed against the building that needs to be reinforced, and then the second pull rod 220 is released. At this time, the positioning tooth plate 219 is driven to approach the rectangular tube 201 under the rebound force of the third elastic member 221, so that the positioning tooth plate 219 and the rectangular tube 201 are meshed.
[0043] In addition, rolling wheels 116 are installed at the four corners of the bottom of the bottom plate 101, a rectangular groove 117 is opened in the bottom plate 101, a water tank 118 is slidably connected in the rectangular groove 117, a plurality of conical nails 120 are fixed to the bottom of the water tank 118, a water supply pipe 121 is fixed to the top of the water tank 118 and connected, a first pipe cap 122 is threadedly connected to the water supply pipe 121, a drain pipe 123 is fixed to the bottom of the water tank 118 and connected, a second pipe cap 124 is threadedly connected to the drain pipe 123, a rectangular plate 119 is fixed to the outside of the top of the water tank 118, a plurality of limit rods 125 are fixed to the top of the bottom plate 101, and the limit rods 125 The rectangular plate 119 passes through the rectangular plate 119, and the rectangular plate 119 is slidably fitted on the outside of the limiting rod 125. An anti-slip plate 126 is fixed on the top of the limiting rod 125. A second elastic member 127 is sleeved on the outside of the limiting rod 125, and one end of the second elastic member 127 is against the rectangular plate 119, and the other end of the second elastic member 127 is against the bottom plate 101. It should be noted that the second elastic member 127 can use elastic devices, and the second elastic member 127 is in a normal state. The distance from the bottom of the conical nail 120 to the bottom of the bottom plate 101 is smaller than the distance between the bottom of the rolling wheel 116 and the bottom plate 101, that is, the conical nail 120 is away from the ground at this time.
[0044] During use, after the reinforcement plate 206 and the building to be reinforced and supported are abutted against each other, the first pipe cap 122 is rotated to remove it from the water supply pipe 121, and then water is injected into the water tank 118 from the water supply pipe 121. After water is injected into the water tank 118, the weight increases, thereby driving the water tank 118 to move downward. When the water tank 118 moves downward, the second elastic member 127 is compressed, and when the water tank 118 moves downward, the conical nail 120 is driven to move toward the ground. Due to the provision of the conical nail 120, the friction between the device and the ground is increased, thereby improving the stability of the device. When the device is not needed for reinforcement support, the second pipe cap 124 is rotated to remove it from the drain pipe 123. At this time, the water in the water tank 118 is discharged from the drain pipe 123, and then the water tank 118 is driven upward under the rebound force of the second elastic member 127, so that the conical nail 120 is away from the ground, thereby facilitating the movement of the device.
[0045] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any form. Although the present invention has been disclosed as a preferred embodiment as above, it is not used to limit the present invention. Any technical personnel in this field can make some changes or modify the technical contents disclosed above into equivalent embodiments without departing from the scope of the technical solution of the present invention. However, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention are still within the scope of the technical solution of the present invention.
Claims
1. A reinforcement connection device for a building structure, characterized in that: include: The main body unit comprises a bottom plate, two vertical plates are fixed on the top of the bottom plate, and a first rotating shaft is connected between the two vertical plates for common rotation; The reinforcement unit includes two rectangular tubes, a connecting rod is fixed at one end of the rectangular tubes, the first rotating shaft passes through the two connecting rods, the two connecting rods are both located outside the first rotating shaft and slide, a supporting tooth plate is slidably connected in the rectangular tube, an articulated seat is fixed at one end of the supporting tooth plate away from the rectangular tube, a connecting block is rotatably connected in the articulated seat, a reinforcement plate is fixed on the side of the connecting block away from the articulated seat, an adjustment component for adjusting the distance between the two reinforcement plates is arranged between the two rectangular tubes, and an adjustment component for adjusting the height of the reinforcement plate is arranged on one side of one of the vertical plates.
2. A reinforcement connection device for a building structure according to claim 1, characterized in that: A connecting frame is fixed on the outer side of the middle part of the first rotating shaft, a long rod is fixed on one end of the connecting frame, a travel groove is provided in the long rod, and a moving block is slidably connected in the travel groove.
3. A reinforcement connection device for a building structure according to claim 2, characterized in that: The adjustment assembly includes a threaded rod rotatably engaged in the travel groove, the threaded rod passes through the moving block and is threadedly connected to the moving block, a rotating handle is fixed to one end of the threaded rod extending outside the long rod, and a second rotating shaft is hinged on both sides of the moving block, a cylindrical rod is fixed on the rectangular tube, the cylindrical rod passes through the second rotating shaft, the second rotating shaft is rotatably engaged with the outside of the cylindrical rod, a circular hole for the cylindrical rod to pass through is opened at the end of the second rotating shaft away from the moving block, an anti-slip block is fixed to the top of the cylindrical rod, and the diameter of the anti-slip block is larger than the diameter of the circular hole.
4. The reinforcement connection device for a building structure according to claim 1, characterized in that: A hollow plate is fixed and connected to one side of the rectangular tube, a positioning tooth plate is slidably connected inside the hollow plate, and the positioning tooth plate is meshed with the supporting tooth plate.
5. A reinforcement connection device for a building structure according to claim 4, characterized in that: A second pull rod is fixed to one side of the positioning tooth plate, the second pull rod passes through the hollow plate and slides inside the hollow plate, a third elastic member is sleeved on the outer side of the second pull rod, one end of the third elastic member abuts against the positioning tooth plate, and the other end of the third elastic member abuts against the hollow plate.
6. The reinforcement connection device for a building structure according to claim 1, characterized in that: The adjustment assembly includes an annular cylinder fixed to the top of one of the vertical plates, the first rotating shaft passes through the vertical plate and extends to one end of the annular cylinder where a connecting disk is fixed, a first end face gear ring is fixed on the side of the connecting disk away from the first rotating shaft, a second end face gear ring is arranged in the annular cylinder, and the second end face gear ring can mesh with the first end face gear ring.
7. A reinforcement connection device for a building structure according to claim 6, characterized in that: A plurality of guide plates are fixed at equal intervals along the radial direction on the outer side of the second end face gear ring, a plurality of guide grooves are opened at equal intervals along the radial direction on the outer side of the annular cylinder, and the plurality of guide plates are slidably fitted in the corresponding guide grooves respectively.
8. A reinforcement connection device for a building structure according to claim 7, characterized in that: A first disk is arranged inside the second end face gear ring, and a plurality of first connecting plates are fixed at equal intervals along the radial direction on the outer side of the first disk, and an end of the first connecting plate away from the first disk is fixed to the inner wall of the second end face gear ring; a second disk is arranged inside the annular cylinder, and a plurality of second connecting plates are fixed at equal intervals along the radial direction on the outer side of the second disk, and an end of the second connecting plate away from the second disk is fixed to the inner wall of the annular cylinder; a first pull rod is fixed to one side of the first disk, and the first pull rod passes through the second disk and slides inside the second disk; a first elastic member is sleeved on the outer side of the first pull rod, and one end of the first elastic member abuts against the first disk, and the other end of the first elastic member abuts against the second disk.
9. The reinforcement connection device for a building structure according to claim 1, characterized in that: Rolling wheels are installed at the four corners of the bottom of the base plate, a rectangular groove is opened in the base plate, a water tank is slidably connected in the rectangular groove, a plurality of conical nails are fixed to the bottom of the water tank, a water filling pipe is fixed to the top of the water tank and connected, a first pipe cap is threadedly connected to the water filling pipe, a drain pipe is fixed to the bottom of the water tank and connected, and a second pipe cap is threadedly connected to the drain pipe.
10. A reinforcement connection device for a building structure according to claim 9, characterized in that: A rectangular plate is fixed to the outside of the top of the water tank, a plurality of limit rods are fixed to the top of the bottom plate, the limit rods penetrate the rectangular plate, the rectangular plate is slidably fitted outside the limit rods, an anti-slip plate is fixed to the top of the limit rods, a second elastic member is sleeved on the outside of the limit rods, one end of the second elastic member is against the rectangular plate, and the other end of the second elastic member is against the bottom plate.