Auxiliary supporting mechanism for reinforcing building structure
By designing a building structure reinforcement auxiliary support mechanism including rotating components and angle adjustment components, the problem that the prior art cannot perform angle adjustment is solved, and flexible angle adjustment and efficient reinforcement effects are achieved.
Patent Information
- Application Number
- CN202421443449.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-24
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-06-24
AI Technical Summary
The existing building structure reinforcement auxiliary support mechanism cannot be adjusted angle, resulting in the failure to provide the best reinforcement effect when the building structure is inclined or requires specific angle reinforcement, which has limitations in use.
An auxiliary support mechanism including a base, a load-bearing plate, a clamping assembly, a rotating assembly and an angle adjustment assembly is designed, and the rotation and angle adjustment of the component to be reinforced is realized through the combination of the rotation assembly and the angle adjustment assembly.
It realizes flexible angle adjustment according to actual conditions, meets the reinforcement needs of different directions, improves the flexibility and reinforcement effect of construction, and ensures the stability and accuracy of the reinforcement process.
Smart Images

Figure CN222879303U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building construction, in particular to an auxiliary supporting mechanism for reinforcing a building structure. Background Art
[0002] In modern building design and construction, due to various reasons, such as original design defects, environmental impact, increased service life, load changes, etc., the building structure may have problems such as reduced safety and weakened stability. In order to ensure the normal use of buildings and the safety of personnel, building structure reinforcement technology has emerged. As an important part of building reinforcement, the auxiliary support mechanism is used to provide additional bearing capacity, improve the stress state of the structure, prevent structural damage, and extend the service life of the building.
[0003] Some existing auxiliary support mechanisms, such as application number: CN202322790508.3, application date: 2023-10-18, propose an auxiliary support mechanism for strengthening building structures, which relates to the field of building construction technology. The utility model includes a supporting plate, a side plate, a reinforcement mechanism, a connecting seat, a driving machine and a supporting foot. After the hydraulic cylinder is started, the utility model can push the reinforcement plate to move inside the fixed frame. When the reinforcement plate moves, it will drive the moving block to move, and under the action of the positioning frame, the movement stability of the reinforcement plate and the moving block can be guaranteed. When the reinforcement plate moves, it will drive the limit column to move, and under the action of the fixed plate and the limit member, the movement stability of the reinforcement plate can be further guaranteed, and the force strength is large, that is, the reinforcement effect and quality can be further guaranteed; after starting the driving machine, the connecting seat can be made to perform a circular motion, and when the connecting seat rotates, the supporting plate will be made to perform a circular motion, so that the reinforcement purpose of different positions can be achieved, and the actual applicability is further improved.
[0004] Although the above-mentioned patent can realize reinforcement of different positions of the reinforced components, since this type of auxiliary support mechanism cannot adjust the angle, when the building structure is tilted or reinforcement is required at a specific angle, this fixed support mechanism may not provide the best reinforcement effect, resulting in certain limitations in the use of this type of auxiliary support mechanism. Utility Model Content
[0005] The purpose of the utility model is to provide an auxiliary support mechanism for reinforcing a building structure, which can effectively adjust the angle so that the auxiliary support mechanism can flexibly adjust the angle according to actual conditions, while also ensuring the effect of strengthening the building.
[0006] In order to solve the above technical problems, the utility model adopts a technical solution:
[0007] An auxiliary support mechanism for strengthening a building structure, comprising:
[0008] Base;
[0009] A bearing plate, arranged on the upper part of the base;
[0010] A clamping assembly, disposed on the carrying plate, for clamping the component to be reinforced;
[0011] A rotating assembly, disposed between the bearing plate and the base, and used to drive the component to be reinforced to rotate;
[0012] An angle adjustment component, disposed between the rotating component and the bearing plate, for adjusting the angle of the component to be reinforced;
[0013] The angle adjustment component comprises:
[0014] A first mounting frame is disposed on the upper portion of the rotating assembly;
[0015] A second mounting frame, disposed on one side of the first mounting frame;
[0016] A driving member, disposed between the first mounting frame and the second mounting frame;
[0017] A connecting plate, clamped on the output end of the driving member;
[0018] A mounting block, disposed on one side of the first mounting frame, the second mounting frame and the driving member;
[0019] A first rack is slidably disposed on the upper portion of the mounting block, and one side of the first rack is detachably connected to the connecting plate;
[0020] A frame, arranged on one side of the mounting block and the first rack;
[0021] A rotating shaft, rotatably mounted on the frame, the bearing plate being fixedly sleeved on the rotating shaft;
[0022] The first gear is fixedly sleeved on one end of the rotating shaft, and the first gear is meshed with the first rack.
[0023] According to some embodiments, a first slide rail is provided on the mounting block, a slider is fixedly provided at the lower portion of the first rack, and the slider is slidably embedded in the first slide rail.
[0024] According to some embodiments, the sliding block and the first sliding rail are both in a convex shape.
[0025] According to some embodiments, the rack comprises:
[0026] Fourth mounting frame;
[0027] The fifth mounting frame is arranged at one side of the fourth mounting frame, the rotating shaft is rotatably arranged between the fourth mounting frame and the fifth mounting frame, and one end of the rotating shaft passes through the fourth mounting frame and is fixedly sleeved with the first gear.
[0028] According to some embodiments, the driving member is a telescopic cylinder.
[0029] According to some embodiments, a mounting plate is fixedly provided at the lower portion of the supporting plate, and the mounting plate is fixedly sleeved on the rotating shaft.
[0030] According to some embodiments, a mounting cavity is clamped on the carrier plate, a first column is fixedly disposed in the mounting cavity, the clamping assembly is disposed in the mounting cavity, and the clamping assembly includes:
[0031] A second gear is rotatably sleeved on the first column, and the second gear is located in the installation cavity;
[0032] a second rack, disposed on one side of the second gear, the second rack meshing with the second gear;
[0033] a third rack, disposed on the other side of the second gear, the third rack meshing with the second gear, and the third rack and the second rack being arranged in a staggered manner;
[0034] A first connecting rod is fixedly arranged on the upper part of the second rack, the top end of the first connecting rod passes through the upper part of the bearing plate and is fixedly connected with a first clamping plate, and the first clamping plate is slidably arranged on the upper part of the bearing plate;
[0035] A second connecting rod is fixedly arranged on the upper part of the third rack, the top end of the second connecting rod passes through the upper part of the bearing plate and is fixedly connected with a second clamping plate, the second clamping plate is slidably arranged on the upper part of the bearing plate, and the second clamping plate is arranged opposite to the first clamping plate;
[0036] The electric push rod is arranged on one side of the bearing plate, and the output end of the electric push rod is connected to the second clamping plate.
[0037] According to some embodiments, a second slide rail connected to the installation cavity is further provided on the supporting plate, a third slide rail is provided on one side of the second slide rail, the first connecting rod is slidably embedded in the second slide rail, and the second connecting rod is slidably embedded in the third slide rail.
[0038] According to some embodiments, a first rubber plate is disposed on one side of the first clamping plate, and a second rubber plate is disposed on one side of the second clamping plate.
[0039] According to some embodiments, the rotating assembly is disposed between the angle adjustment assembly and the base, and the rotating assembly includes:
[0040] A driving motor is arranged at the lower part of the base, and an output end of the driving motor passes through the base and extends to the upper fixed sleeve of the base where a third gear is arranged;
[0041] A fourth gear is disposed on the upper portion of the base, the fourth gear is meshed with the third gear, a second column is fixedly disposed on the upper portion of the base, and the fourth gear is rotatably sleeved on the second column;
[0042] A turntable is fixedly arranged on the upper part of the fourth gear, and the angle adjustment component is arranged on the upper part of the turntable.
[0043] Beneficial effects:
[0044] 1. By arranging a rotating assembly and an angle adjustment assembly between the base and the bearing plate, the components to be reinforced can be rotated and the angles can be adjusted according to the actual situation under the combined action of the rotating assembly and the angle adjustment assembly, which meets the reinforcement requirements in different directions and improves the flexibility of construction. At the same time, a clamping assembly is arranged on the bearing plate, so that the clamping assembly can stably fix the components to be reinforced, and then cooperate with the angle adjustment assembly for precise adjustment, thereby ensuring the stability and accuracy of the reinforcement process, thereby improving the reinforcement effect.
[0045] 2. By utilizing the gear transmission mechanism, the driving member drives the first rack to slide, and then the first gear meshing with it rotates, thereby driving the load-bearing plate to rotate, so that the load-bearing plate can drive the components to be reinforced to adjust the angle according to the actual reinforcement situation. This design improves the accuracy and efficiency of the angle adjustment, reduces the difficulty of operation, and makes the equipment easier to control.
[0046] Additional aspects and advantages of the utility model will be given in part in the following description, and in part will become apparent from the following description, or will be learned through the practice of the utility model. BRIEF DESCRIPTION OF THE DRAWINGS
[0047] In order to more clearly illustrate the specific implementation of the utility model or the technical solution in the prior art, the following is a brief introduction to the drawings required for the specific implementation or the prior art description. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, each element or part is not necessarily drawn according to the actual scale.
[0048] Figure 1 It is a schematic diagram of the utility model;
[0049] Figure 2 for Figure 1A schematic diagram of the angle adjustment assembly shown in;
[0050] Figure 3 for Figure 2 A perspective cutaway view of the mounting block and the first rack shown in ;
[0051] Figure 4 for Figure 1 A perspective cutaway view of the base and rotating assembly shown in FIG.
[0052] Figure 5 for Figure 1 A perspective cutaway view of the carrier plate and the clamping assembly shown in FIG.
[0053] Figure 6 for Figure 5 A schematic diagram of the clamping assembly shown in;
[0054] Figure 7 for Figure 5 A perspective cross-sectional view of the carrier plate shown in FIG.
[0055] In the figure, 1 is a base, 11 is a second column, 2 is a bearing plate, 21 is a mounting plate, 22 is a mounting cavity, 23 is a first column, 24 is a second slide rail, 25 is a third slide rail, 3 is a clamping assembly, 31 is a second gear, 32 is a second rack, 33 is a third rack, 34 is a first connecting rod, 35 is a first clamping plate, 35 is a first rubber plate, 36 is a second connecting rod, 37 is a second clamping plate, 37 is a second rubber plate, 38 is an electric push rod, 4 is a rotating assembly, 41 is a driving motor, 42 is a third gear, 43 is a fourth gear, 44 is a turntable, 5 is an angle adjustment assembly, 51 is a first mounting frame, 52 is a second mounting frame, 53 is a driving member, 54 is a connecting plate, 55 is a mounting block, 55 is a first slide rail, 56 is a first rack, 56 is a slider, 57 is a frame, 57 is a fourth mounting frame, 572 is a fifth mounting frame, 58 is a rotating shaft, and 59 is a first gear. DETAILED DESCRIPTION
[0056] This section will describe in detail the specific embodiments of the utility model. The preferred embodiments of the utility model are shown in the accompanying drawings. The purpose of the accompanying drawings is to supplement the description of the text part of the specification with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the utility model, but it cannot be understood as a limitation on the protection scope of the utility model.
[0057] In the description of the present invention, it should be understood that descriptions involving orientation, such as up, down, front, back, left, right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0058] In the description of the present utility model, "greater than", "less than", "exceed" etc. are understood as not including the number itself, and "above", "below", "within" etc. are understood as including the number itself. If there is a description of "first" or "second", it is only used for the purpose of distinguishing the technical features, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features or implicitly indicating the order of the indicated technical features.
[0059] In the description of the present invention, unless otherwise clearly defined, terms such as setting, installing, connecting, etc. should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above terms in the present invention based on the specific content of the technical solution.
[0060] Combination Figures 1 to 7 As shown, an auxiliary support mechanism for strengthening a building structure includes a base 1, a bearing plate 2, a clamping assembly 3, a rotating assembly 4 and an angle adjustment assembly 5.
[0061] The bearing plate 2 is arranged on the upper part of the base 1; the clamping assembly 3 is arranged on the bearing plate 2, and is used to clamp the parts to be reinforced; the rotating assembly 4 is arranged between the bearing plate 2 and the base 1, and is used to drive the parts to be reinforced to rotate; the angle adjustment assembly 5 is arranged between the rotating assembly 4 and the bearing plate 2, and is used to adjust the angle of the parts to be reinforced; the angle adjustment assembly 5 includes: a first mounting frame 51, a second mounting frame 52, a driving member 53, a connecting plate 54, a mounting block 55, a first rack 56, a frame 57, a rotating shaft 58 and a first gear 59. The first mounting frame 51 is arranged on the upper part of the rotating component 4; the second mounting frame 52 is arranged on one side of the first mounting frame 51; the driving member 53 is arranged between the first mounting frame 51 and the second mounting frame 52; the connecting plate 54 is clamped on the output end of the driving member 53; the mounting block 55 is arranged on one side of the first mounting frame 51, the second mounting frame 52 and the driving member 53; the first rack 56 is slidably arranged on the upper part of the mounting block 55, and one side of the first rack 56 is detachably connected to the connecting plate 54; the frame 57 is arranged on one side of the mounting block 55 and the first rack 56; the rotating shaft 58 is rotatably arranged on the frame 57, and the rotating shaft 58 is fixedly sleeved with a bearing plate 2; the first gear 59 is fixedly sleeved on one end of the rotating shaft 58, and the first gear 59 is meshed with the first rack 56.
[0062] Among them, by arranging a rotating component 4 and an angle adjustment component 5 between the base 1 and the supporting plate 2, under the combined action of the rotating component 4 and the angle adjustment component 5, the parts to be reinforced can be rotated and the angle can be adjusted according to the actual situation, which meets the reinforcement requirements in different directions and improves the flexibility of construction. At the same time, a clamping component 3 is arranged on the supporting plate 2, so that the clamping component 3 can stably fix the parts to be reinforced, and then cooperate with the angle adjustment component 5 for precise adjustment to ensure the stability and accuracy of the reinforcement process, thereby improving the reinforcement effect; by utilizing the gear transmission mechanism, the driving member 53 drives the first rack 56 to slide, and then the first gear 59 meshing with it rotates, thereby driving the supporting plate 2 to rotate, so that the supporting plate 2 can drive the parts to be reinforced to adjust the angle according to the actual reinforcement situation. This design improves the accuracy and efficiency of angle adjustment, reduces the difficulty of operation, and makes the equipment easier to control.
[0063] When adjusting the component to be reinforced, first, place the component to be reinforced on the carrier plate 2 and firmly fix it by the clamping assembly 3 to ensure that the component will not move during the reinforcement process. When the component needs to be rotated to adapt to different reinforcement positions, the rotating assembly 4 is started to rotate the carrier plate 2 relative to the base 1 to facilitate reinforcement operations from various angles. When it is necessary to fine-tune the angle of the component, the angle adjustment assembly 5 comes into play. The driving member 53 drives the first rack 56 to slide along the track of the mounting block 55. Since the first rack 56 is meshed with the first gear 59, the sliding of the rack will cause the first gear to rotate, and then drive the carrier plate 2 and the components thereon to adjust the angle through the rotating shaft 58.
[0064] Combination Figure 3 As shown, a first slide rail 551 is provided on the mounting block 55, and a slider 561 is fixedly provided at the lower portion of the first rack 56. The slider 561 is slidably embedded in the first slide rail 551. The slider 561 slides in the first slide rail 551, ensuring that the first rack 56 maintains linear motion when moving, while also limiting the maximum movement range of the first rack 56 to prevent mechanical damage caused by excessive sliding, thereby ensuring the safe operation of the equipment.
[0065] To further explain, the slider 561 and the first slide rail 551 are both convex structures, so that under such a design, the slider and the slide rail form a slot structure, which increases the stability of the structure and prevents the slider from derailing due to external force during use.
[0066] Combination Figure 1 and Figure 2As shown, the frame 57 includes: a fourth mounting frame 571 and a fifth mounting frame 572. The fifth mounting frame 572 is disposed on one side of the fourth mounting frame 571, and the rotating shaft 58 is rotatably disposed between the fourth mounting frame 571 and the fifth mounting frame 572, and one end of the rotating shaft 58 passes through the fourth mounting frame 571 and is fixedly sleeved with a first gear 59. The fourth mounting frame 571 and the fifth mounting frame 572 together provide a stable support structure for the rotating shaft 58, ensuring that the rotating shaft will not deviate or loosen during rotation, thereby ensuring the stability of the rotation of the bearing plate 2.
[0067] To further explain, the driving member 53 is a telescopic cylinder, which can realize linear motion, and by adjusting the air pressure, the telescopic speed and stroke of the cylinder can be accurately controlled, thereby accurately controlling the sliding distance of the first rack 56 to ensure the accuracy of angle adjustment.
[0068] Combination Figure 5 As shown, a mounting plate 21 is fixedly provided at the lower part of the supporting plate 2, and the mounting plate 21 is fixedly sleeved on the rotating shaft 58. The mounting plate 21 serves as a connection point between the supporting plate 2 and the rotating shaft 58, so that the supporting plate can rotate freely around the rotating shaft, thereby realizing precise angle control of the supporting plate by the angle adjustment component.
[0069] Combination Figure 5 , Figure 6 and Figure 7 As shown, a mounting cavity 22 is provided on the bearing plate 2, a first column 23 is fixedly provided in the mounting cavity 22, a clamping assembly 3 is provided in the mounting cavity 22, and the clamping assembly 3 includes: a second gear 31, a second rack 32, a third rack 33, a first connecting rod 34, a first clamping plate 35, a second connecting rod 36, a second clamping plate 37 and an electric push rod 38. The second gear 31 is rotatably sleeved on the first column 23, and the second gear 31 is located in the mounting cavity 22; the second rack 32 is provided on one side of the second gear 31, and the second rack 32 is meshed with the second gear 31; the third rack 33 is provided on the other side of the second gear 31, and the third rack 33 is meshed with the second gear 31, and the third rack 33 and the second rack 32 are arranged in a staggered manner; the first connecting rod 34 is fixedly provided on the upper part of the second rack 32, and the top end of the first connecting rod 34 passes through the upper part of the bearing plate 2, It is fixedly connected to a first clamping plate 35, which is slidably arranged on the upper part of the supporting plate 2; a second connecting rod 36 is fixedly arranged on the upper part of the third rack 33, and the top end of the second connecting rod 36 passes through the upper part of the supporting plate 2 and is fixedly connected to a second clamping plate 37, which is slidably arranged on the upper part of the supporting plate 2, and the second clamping plate 37 is arranged opposite to the first clamping plate 35; an electric push rod 38 is arranged on one side of the supporting plate 2, and the output end of the electric push rod 38 is connected to the second clamping plate 37.
[0070] Among them, the operator controls the switch of the electric push rod 38, and the electric push rod starts to work, and its output end pushes the second clamping plate 37, and the second clamping plate 37 drives the second connecting rod 36 and the third rack 33 to move along the preset trajectory of its supporting plate 2 along the supporting plate 2, so that the third rack 33 is meshed with the second gear 31 during the movement, and the second gear 31 is meshed with the second rack 32, so that the second rack 32 moves in the opposite direction, and then the second rack 32 drives the first connecting rod 34 and the first clamping plate 35 to move together, so that the second clamping plate 37 is close to the first clamping plate 35, and clamps the part to be reinforced on the supporting plate 2 to ensure that it will not move during the reinforcement process, providing stable support.
[0071] Combination Figure 7 As shown, the supporting plate 2 is also provided with a second slide rail 24 connected with the mounting cavity 22, and a third slide rail 25 is provided on one side of the second slide rail 24. The first connecting rod 34 is slidably embedded in the second slide rail 24, and the second connecting rod 36 is slidably embedded in the third slide rail 25. The second slide rail 24 and the third slide rail 25 provide a precise guiding path for the first connecting rod 34 and the second connecting rod 36 to ensure that they move along a preset straight line trajectory.
[0072] Combination Figure 6 As shown, a first rubber plate 351 is provided on one side of the first clamping plate 35, and a second rubber plate 371 is provided on one side of the second clamping plate 37. The use of the rubber plate can prevent the metal clamping plate from directly contacting the surface of the component, prevent scratches or wear, and protect the appearance and structural integrity of the component. The rubber material has a good friction coefficient, which can increase the friction between the clamping plate and the component to be reinforced, prevent the component from sliding during the reinforcement process, and ensure the stability of the clamping.
[0073] Combination Figure 4 As shown, a rotating assembly 4 is provided between the angle adjustment assembly 5 and the base 1, and the rotating assembly 4 includes: a driving motor 41, a third gear 42, a fourth gear 43 and a turntable 44. The driving motor 41 is provided at the lower part of the base 1, and the output end of the driving motor 41 passes through the base 1 and extends to the upper part of the base 1, where the third gear 42 is fixedly sleeved; the fourth gear 43 is provided at the upper part of the base 1, and the fourth gear 43 is meshed with the third gear 42; the upper part of the base 1 is fixedly provided with a second column 11, and the fourth gear 43 is rotatably sleeved on the second column 11; the turntable 44 is fixedly provided at the upper part of the fourth gear 43, and the angle adjustment assembly 5 is provided at the upper part of the turntable 44.
[0074] Among them, the operator starts the driving motor 41, the motor starts to rotate, and its output end drives the third gear 42 to rotate, and the third gear 42 is meshed with the fourth gear 43. When the third gear rotates, the fourth gear will also rotate synchronously. This gear transmission design can efficiently transfer the rotational torque of the motor to the fourth gear, and the rotation of the fourth gear will drive the turntable 44 fixed to it to rotate. The turntable 44 serves as a rotating platform, and an angle adjustment component 5 is arranged on it. The rotation of the turntable 44 causes the angle adjustment component 5 to rotate accordingly, thereby realizing the rotation of the bearing plate 2 and the parts to be reinforced thereon on the horizontal plane to meet the reinforcement requirements at different angles.
[0075] The working mode of the utility model is as follows:
[0076] When adjusting the component to be reinforced, first, place the component to be reinforced on the carrier plate 2, and the operator controls the switch of the electric push rod 38, and the electric push rod starts to work, and its output end pushes the second clamping plate 37, and the second clamping plate 37 drives the second connecting rod 36 and the third rack 33 along the carrier plate 2 to move along the preset track of the carrier plate 2, so that the third rack 33 is meshed with the second gear 31 during the movement, and the second gear 31 is meshed with the second rack 32, so that the second rack 32 moves in the opposite direction. , and then the second rack 32 drives the first connecting rod 34 and the first clamping plate 35 to move together, so that the second clamping plate 37 is close to the first clamping plate 35, and clamps the part to be reinforced on the carrier plate 2, ensuring that it will not move during the reinforcement process, providing stable support, when the part needs to be rotated to adapt to different reinforcement positions, the operator starts the drive motor 41, the motor starts to rotate, and its output end drives the third gear 42 to rotate, the third gear 42 is meshed with the fourth gear 43, when the third gear rotates, the fourth gear will also rotate synchronously. This gear transmission design can efficiently transfer the rotational torque of the motor to the fourth gear, and the rotation of the fourth gear will drive the turntable 44 fixed thereto to rotate. The turntable 44 serves as a rotating platform, on which an angle adjustment component 5 is arranged, and the rotation of the turntable 44 causes the angle adjustment component 5 to rotate with it, thereby realizing the rotation of the carrier plate 2 and the part to be reinforced thereon on the horizontal plane, adapting to the reinforcement requirements of different angles, and when the angle of the component needs to be fine-tuned, the angle adjustment component 5 plays a role. The driving member 53 drives the first rack 56 to slide along the track of the mounting block 55. Since the first rack 56 is meshed with the first gear 59, the sliding of the first rack 56 causes the first gear to rotate, thereby driving the bearing plate 2 and the components thereon to adjust the angle through the rotating shaft 58.
[0077] The embodiments of the present invention are described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge scope of ordinary technicians in the technical field without departing from the purpose of the present invention.
Claims
1. An auxiliary support mechanism for strengthening a building structure, characterized in that: include: Base (1); A bearing plate (2) is arranged on the upper part of the base (1); A clamping assembly (3), arranged on the carrying plate (2), and used for clamping the component to be reinforced; A rotating assembly (4), disposed between the bearing plate (2) and the base (1), and used for driving the component to be reinforced to rotate; An angle adjustment component (5) is disposed between the rotating component (4) and the bearing plate (2) and is used to adjust the angle of the component to be reinforced; The angle adjustment component (5) comprises: A first mounting frame (51) is disposed on the upper portion of the rotating assembly (4); A second mounting frame (52) is disposed on one side of the first mounting frame (51); A driving member (53) is disposed between the first mounting frame (51) and the second mounting frame (52); A connecting plate (54) is clamped on the output end of the driving member (53); A mounting block (55) is arranged on one side of the first mounting frame (51), the second mounting frame (52) and the driving member (53); A first rack (56) is slidably disposed on the upper portion of the mounting block (55), and one side of the first rack (56) is detachably connected to the connecting plate (54); A frame (57) is arranged on one side of the mounting block (55) and the first rack (56); A rotating shaft (58) is rotatably mounted on the frame (57), and the bearing plate (2) is fixedly sleeved on the rotating shaft (58); The first gear (59) is fixedly sleeved on one end of the rotating shaft (58), and the first gear (59) is meshed with the first rack (56).
2. The auxiliary support mechanism for strengthening a building structure according to claim 1, characterized in that: The mounting block (55) is provided with a first slide rail (551), the lower part of the first rack (56) is fixedly provided with a slider (561), and the slider (561) is slidably embedded in the first slide rail (551).
3. The auxiliary support mechanism for strengthening a building structure according to claim 2, characterized in that: The sliding block (561) and the first sliding rail (551) are both in a convex shape.
4. The auxiliary support mechanism for strengthening a building structure according to claim 1, characterized in that: The frame (57) comprises: A fourth mounting frame (571); The fifth mounting frame (572) is arranged on one side of the fourth mounting frame (571), the rotating shaft (58) is rotatably arranged between the fourth mounting frame (571) and the fifth mounting frame (572), and one end of the rotating shaft (58) passes through the fourth mounting frame (571) and is fixedly sleeved with the first gear (59).
5. The auxiliary support mechanism for strengthening a building structure according to claim 1, characterized in that: The driving member (53) is a telescopic cylinder.
6. The auxiliary support mechanism for strengthening a building structure according to claim 1, characterized in that: A mounting plate (21) is fixedly arranged at the lower part of the bearing plate (2), and the mounting plate (21) is fixedly sleeved on the rotating shaft (58).
7. An auxiliary support mechanism for strengthening a building structure according to claim 1 or 6, characterized in that: The carrier plate (2) is provided with a mounting cavity (22), a first column (23) is fixedly arranged in the mounting cavity (22), the mounting cavity (22) is provided with the clamping assembly (3), and the clamping assembly (3) comprises: A second gear (31) is rotatably sleeved on the first column (23), and the second gear (31) is located in the installation cavity (22); A second rack (32) is disposed on one side of the second gear (31), and the second rack (32) is meshed with the second gear (31); A third rack (33) is arranged on the other side of the second gear (31), the third rack (33) is meshed with the second gear (31), and the third rack (33) and the second rack (32) are arranged in a staggered manner; A first connecting rod (34) is fixedly arranged on the upper part of the second rack (32), the top end of the first connecting rod (34) passes through the upper part of the bearing plate (2) and is fixedly connected to a first clamping plate (35), and the first clamping plate (35) is slidably arranged on the upper part of the bearing plate (2); A second connecting rod (36) is fixedly arranged on the upper part of the third rack (33), the top end of the second connecting rod (36) passes through the upper part of the bearing plate (2) and is fixedly connected to a second clamping plate (37), the second clamping plate (37) is slidably arranged on the upper part of the bearing plate (2), and the second clamping plate (37) is arranged opposite to the first clamping plate (35); An electric push rod (38) is arranged on one side of the bearing plate (2), and an output end of the electric push rod (38) is connected to the second clamping plate (37).
8. The auxiliary support mechanism for strengthening a building structure according to claim 7, characterized in that: The bearing plate (2) is also provided with a second slide rail (24) connected to the mounting cavity (22); a third slide rail (25) is provided on one side of the second slide rail (24); the first connecting rod (34) is slidably embedded in the second slide rail (24); and the second connecting rod (36) is slidably embedded in the third slide rail (25).
9. The auxiliary support mechanism for strengthening a building structure according to claim 7, characterized in that: A first rubber plate (351) is provided on one side of the first clamping plate (35), and a second rubber plate (371) is provided on one side of the second clamping plate (37).
10. The auxiliary support mechanism for strengthening a building structure according to claim 1, characterized in that: The rotating assembly (4) is arranged between the angle adjustment assembly (5) and the base (1), and the rotating assembly (4) comprises: A driving motor (41) is arranged at the lower part of the base (1); an output end of the driving motor (41) passes through the base (1) and extends to the upper part of the base (1) where a third gear (42) is fixedly mounted; a fourth gear (43) disposed on the upper portion of the base (1), the fourth gear (43) meshing with the third gear (42), a second column (11) being fixedly disposed on the upper portion of the base (1), the fourth gear (43) being rotatably sleeved on the second column (11); A rotating disk (44) is fixedly arranged on the upper part of the fourth gear (43), and the angle adjustment assembly (5) is arranged on the upper part of the rotating disk (44).
Citation Information
Patent Citations
Auxiliary support mechanism for strengthening building structure
CN221031634U