Anti-seismic damper mounting tool
By providing a shock-resistant damper installation tool including a bracket, a bracket, a rotating rod, an adjustment assembly and a clamping assembly, the cumbersome installation process in the prior art is solved, and a more efficient installation process and convenient bracket removal are achieved.
Patent Information
- Application Number
- CN202510259267.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-06-20
AI Technical Summary
In the prior art, the installation process of earthquake-resistant dampers is complicated, especially when the dampers are calibrated and fixedly installed, the pads need to be added to maintain stability, and the pads need to be removed after welding is completed, resulting in complex installation steps.
A shock-resistant damper mounting tool is provided, including a bracket, a bracket, a rotating rod, an adjustment assembly and a clamping assembly. Through the combination and coordinated work of these components, the stable installation and height adjustment of the damper is achieved, and the removal of the bracket is facilitated.
The installation process of the shock-resistant damper is simplified, the complexity of calibration and fixation installation is reduced, the installation efficiency is improved, and the bracket can be easily removed from the wall.
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Figure CN120174986A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of seismic dampers; specifically, the present invention relates to an installation tool for seismic dampers. Background Art
[0002] In the field of building earthquake resistance, the effective installation of seismic dampers is extremely crucial for enhancing the stability of building structures. After the foundation construction and the installation of embedded parts are completed, the subsequent installation process needs to be strictly controlled.
[0003] In the prior art, first, the hoisting and positioning of the damper are carried out. According to the weight and size of the damper, a suitable hoisting device, such as a crane or a tower crane, etc., is selected, and a reasonable lifting point position is determined to ensure the balance and stability of the damper during the hoisting process, preventing it from shaking and colliding, which may damage the internal precision structure or affect the external connection parts. The damper is accurately hoisted above the designed installation position and slowly lowered and initially positioned.
[0004] Then, precise position adjustment and calibration are carried out. Using high-precision measuring instruments, such as total stations and levels, etc., parameters such as the axis, elevation, and levelness of the damper are measured, and fine adjustments are made in accordance with the design requirements, so that the installation position deviation of the damper is controlled within a very small range, ensuring that it can accurately exert its mechanical properties under earthquake action and work in coordination with the building structure.
[0005] In the existing technology, the calibration of the damper is relatively cumbersome. Moreover, when the damper is fixedly installed, since the damper lacks support at this time, it is necessary to add pads to keep the damper stable during welding. At the same time, after the welding of the damper is completed, the pads need to be removed, making the welding step of the damper relatively cumbersome. Summary of the Invention
[0006] In view of this, the present invention provides an installation tool for seismic dampers, thereby solving or at least alleviating the above problems existing in the prior art.
[0007] To achieve the foregoing object, the present invention provides an installation tool for seismic dampers, including a bracket, a bracket, a rotating rod, an adjusting assembly, and a clamping assembly; there are two brackets, both of the two brackets are M-shaped, the two brackets are respectively arranged on the left and right sides of the bracket, and both ends of the damper are respectively placed on the two brackets. There are two groups of adjusting assemblies, and the two groups of adjusting assemblies are respectively arranged on the left and right sides of the bracket. The bracket on the same side is arranged on the adjusting assembly on the same side. The adjusting assembly is used to adjust the bracket to facilitate the adjustment of the height of the damper. There are two groups of clamping assemblies, and the two groups of clamping assemblies are respectively arranged on the left and right sides of the bracket. The clamping assembly on the same side can control the adjusting assembly on the same side to adjust. The clamping assembly can fixedly install the bracket on the wall, and the rotating rod is rotatably installed on the bracket.
[0008] In an anti-seismic damper installation tooling as described above, optionally, through slots are formed at the bottoms of both ends of the bracket, limiting plates are fixedly installed at both ends of the bracket, the adjusting assembly includes a mounting frame, a lifting plate, a lifting and lowering plate and a threaded sleeve, blocking plates are fixedly installed at the tops of both ends of the mounting frame, the end faces of the blocking plates are in contact with the outer surfaces of the bracket, the lifting plate is slidably installed inside the mounting frame, the lifting plate is located below the limiting plate, the lifting and lowering plate is located at the center of the mounting frame, both ends of the lifting and lowering plate are in contact with the outer surface of the mounting frame, and the threaded sleeve is arranged below the lifting and lowering plate and is located at the center of the mounting frame.
[0009] In an anti-seismic damper installation tooling as described above, optionally, a connecting rod is rotatably installed at the bottom end of the lifting and lowering plate, a first threaded rod is fixedly installed at the bottom end of the connecting rod, the threaded sleeve is semi-circular, the semi-circular threaded sleeves can be assembled into a complete threaded sleeve, internal threads are provided on the inner wall of the top end of the threaded sleeve, the threaded sleeve can be threadedly connected with the first threaded rod, and the threaded sleeve is sleeved outside the first threaded rod.
[0010] In an anti-seismic damper installation tooling as described above, optionally, the lifting plate is U-shaped, first sliding grooves are formed at both inner ends of the lifting plate, driving plates are rotatably installed outside both ends of the mounting frame, the top ends of the driving plates penetrate through the inner wall of the mounting frame, sliding rods are fixedly installed on both sides of the top ends of the driving plates, the sliding rods are slidably installed in the first sliding grooves, and an extension plate is fixedly installed at the bottom end of the driving plate.
[0011] In an anti-seismic damper installation tooling as described above, optionally, a moving plate is arranged outside the extension plate, a sloping plate is fixedly installed on the outer wall of the bottom end of the threaded sleeve, the sloping plate is slidably installed at the center of the mounting frame, a connecting plate is fixedly installed between the sloping plate on the same side and the moving plate on the same side, and the connecting plate is slidably installed on the outer surface of the mounting frame.
[0012] In an anti-seismic damper installation tooling as described above, optionally, the rotating rod includes a first rotating rod and a second rotating rod, the second rotating rod is fixedly installed at the end of the first rotating rod and is perpendicular to the first rotating rod, the second rotating rod can be in contact with the wall body, a driving rod is fixedly installed on the outer wall of the first rotating rod, the driving rod faces the opposite direction to the second rotating rod, and the driving rod can be in contact with the inclined surface of the sloping plate.
[0013] In an earthquake-resistant damper installation tooling as described above, optionally, the clamping assembly includes a clamping plate and a second threaded rod. The clamping plate is rotatably installed at the end of the second threaded rod. The end of the second threaded rod away from the clamping plate is threadedly connected to the bracket. The clamping plate is slidably installed on the bracket, and bumps are fixedly installed at both ends of the clamping plate.
[0014] In an earthquake-resistant damper installation tooling as described above, optionally, a threaded groove is provided at one end of the rotating rod close to the clamping plate. The end of the threaded groove is adapted to the end of the bracket. The included angle between both ends of the threaded groove is ninety degrees. A second chute is connected to the end of the threaded groove away from the bracket. The end of the bump penetrates the top surface of the bracket and is arranged in the threaded groove. The bump can slide in the threaded groove and the second chute. The threaded grooves on the same side are mirror-symmetrically arranged.
[0015] In an earthquake-resistant damper installation tooling as described above, optionally, the mounting frame is slidably installed on the top surface of the bracket. A sliding block is fixedly installed on the top surface of the bracket. A strip groove is formed on the bottom surface of the mounting frame. The sliding block is slidably installed in the strip groove. A baffle is fixedly installed on one side of the sliding block close to the clamping assembly.
[0016] In an earthquake-resistant damper installation tooling as described above, optionally, movable blocks are provided at both ends on one side of the sliding block away from the clamping assembly. The movable blocks are elastically installed on the top surface of the bracket. The top end of the movable block can be in contact with the top surface of the bracket. The movable block can contact the outer surface of the mounting frame. The mounting frame can be fixedly installed on the bracket by the baffle and the movable block.
[0017] For an earthquake-resistant damper installation tooling of the present invention, a bracket that can be detachably installed on a wall is adopted. The damper is placed on the bracket. When the first threaded rod is rotated, it can drive the movement at the rotating shaft of the bracket. By using the M-shaped bracket, when the height of the damper is adjusted, the damper always remains at the center of the wall. And by rotating the second threaded rod, the rotating rod rotates, so that the second rotating rod can be disengaged from the wall, facilitating the disassembly of the bracket from the wall. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Referring to the accompanying drawings, the disclosure of the present invention will be more apparent. It should be understood that these drawings are only for illustrative purposes and are not intended to limit the protection scope of the present invention. In the figures:
[0019] Figure 1 is a schematic diagram of the installation structure of the present invention;
[0020] Figure 2 is a schematic diagram of the structure on one side of the present invention;
[0021] Figure 3Schematic diagram of the internal structure of the mounting bracket of the present invention;
[0022] Figure 4 Schematic diagram of the connection structure between the drive plate and the lifting plate of the present invention;
[0023] Figure 5 Schematic diagram of the connection structure between the rotating rod and the clamping plate of the present invention.
[0024] Reference numerals: 1, bracket; 1-1, sliding block; 1-2, baffle; 1-3, movable block; 2, bracket; 2-1, through groove; 2-2, limiting plate; 3, rotating rod; 3-1, first rotating rod; 3-2, second rotating rod; 3-3, driving rod; 3-4, threaded groove; 3-5, second chute; 4, adjusting assembly; 4-1, mounting bracket; 4-11, blocking plate; 4-2, lifting plate; 4-21, first chute; 4-3, lifting plate; 4-31, connecting rod; 4-32, first threaded rod; 4-4, threaded sleeve; 4-5, drive plate; 4-51, sliding rod; 4-52, extension plate; 4-53, inclined plate; 4-54, connecting plate; 4-55, moving plate; 5, clamping assembly; 5-1, clamping plate; 5-2, second threaded rod; 5-3, convex block. Detailed implementation manners
[0025] The technical solutions in the embodiments of the present invention will be clearly and completely described below. Apparently, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0026] As Figures 1 to 5 shown, a typical embodiment of the present invention provides an anti-seismic damper installation tooling, including a bracket 1, brackets 2, a rotating rod 3, an adjusting assembly 4 and a clamping assembly 5; there are two brackets 2, both of the two brackets 2 are M-shaped, the two brackets 2 are respectively arranged on the left and right sides of the bracket 1, and the two ends of the damper are respectively placed on the two brackets 2. There are two groups of adjusting assemblies 4, and the two groups of adjusting assemblies 4 are respectively arranged on the left and right sides of the bracket 1. The brackets 2 on the same side are arranged on the adjusting assembly 4 on the same side. The adjusting assembly 4 is used to adjust the bracket 2 to facilitate adjusting the height of the damper. There are two groups of clamping assemblies 5, and the two groups of clamping assemblies 5 are respectively arranged on the left and right sides of the bracket 1. The clamping assembly 5 on the same side can control the adjusting assembly 4 on the same side to make adjustments. The clamping assembly 5 can fixedly install the bracket 1 on the wall, and the rotating rod 3 is rotatably installed on the bracket 1.
[0027] During use, the bracket 1 is clamped to the lower wall by the clamping assembly 5, so that the clamping assembly 5 fixedly connects the bracket 1 to the wall. After the bracket 1 is clamped, the damper is hoisted onto the bracket 2, and by adjusting the adjustment assembly 4, the bracket 2 is positioned at the center of the bracket 1. By further adjusting the adjustment assembly 4, the deformation of the bracket 2 can be controlled, enabling the height of the damper on the wall to be controlled, facilitating the installation of the damper. At the same time, it can support the damper, keeping the damper in a supported state during installation, facilitating the welding process of the damper. After welding is completed, by adjusting the adjustment assembly 4, the rotating rod 3 rotates, making it easy to disassemble the bracket 1 from the wall.
[0028] Through slots 2-1 are provided at the bottom ends of both sides of the bracket 2. Limiting plates 2-2 are fixedly installed at both ends of the bracket 2. The adjustment assembly 4 includes a mounting frame 4-1, a lifting plate 4-2, a lifting and lowering plate 4-3, and a threaded sleeve 4-4. Blocking plates 4-11 are fixedly installed at the top ends of both ends of the mounting frame 4-1. The end face of the blocking plate 4-11 contacts the outer surface of the bracket 2. The lifting plate 4-2 is slidably installed inside the mounting frame 4-1. The lifting plate 4-2 is located below the limiting plate 2-2. The lifting and lowering plate 4-3 is located at the center of the mounting frame 4-1. The two ends of the lifting and lowering plate 4-3 contact the outer surface of the mounting frame 4-1. The threaded sleeve 4-4 is arranged below the lifting and lowering plate 4-3 and is located at the center of the mounting frame 4-1.
[0029] When the lifting plate 4-2 rises, it can drive the limiting plate 2-2 to move upward, and at the same time drive the two ends of the bracket 2 to move upward, and the limiting plate 2-2 is clamped by the lifting plate 4-2 and the blocking plate 4-11, enabling the bracket 2 to be located on the top of the mounting frame 4-1, facilitating the stable installation of the bracket 2 on the mounting frame 4-1. When controlling the lifting and lowering plate 4-3 to rise, it can drive the rotating shaft of the bracket 2 to rotate upward, and at the same time facilitate the control of the damper to move in the height direction. When the lifting and lowering plate 4-3 descends, the gravity of the damper will press the rotating shaft of the bracket 2, causing the damper to descend in the height direction.
[0030] A connecting rod 4-31 is rotatably installed at the bottom end of the lifting and lowering plate 4-3. A first threaded rod 4-32 is fixedly installed at the bottom end of the connecting rod 4-31. The threaded sleeve 4-4 is semi-circular, and the semi-circular threaded sleeves 4-4 can be assembled into a complete threaded sleeve 4-4. Internal threads are provided on the inner wall of the top end of the threaded sleeve 4-4. The threaded sleeve 4-4 can be threadedly connected to the first threaded rod 4-32. The threaded sleeve 4-4 is sleeved outside the first threaded rod 4-32.
[0031] When the threaded sleeves 4-4 are combined, the threads on the threaded sleeves 4-4 come into contact with the connecting rod 4-31. At this time, lift the lifting plate 4-3 upward and rotate the connecting rod 4-31 so that the first threaded rod 4-32 is threadedly connected, facilitating the control of the movement of the lifting plate 4-3 in the height direction, facilitating the adjustment of the deformation of the bracket 2, and causing the height of the damper to change;
[0032] When the threaded sleeves 4-4 are separated, the threads on the threaded sleeves 4-4 are separated from the first threaded rod 4-32. Under the action of gravity, the lifting plate 4-3 slides downward along the outer wall of the mounting frame 4-1, causing the bottom end of the first threaded rod 4-32 to contact the center of the top surface of the mounting frame 4-1, facilitating the loss of support at the rotating shaft of the bracket 2 and facilitating the subsequent disassembly of the bracket 1.
[0033] The lifting plate 4-2 is U-shaped. First chutes 4-21 are opened at both inner ends of the lifting plate 4-2. Driving plates 4-5 are rotatably mounted outside both ends of the mounting frame 4-1. The top ends of the driving plates 4-5 penetrate the inner wall of the mounting frame 4-1. Sliding rods 4-51 are fixedly mounted on both sides of the top ends of the driving plates 4-5. The sliding rods 4-51 are slidably mounted in the first chutes 4-21. Extension plates 4-52 are fixedly mounted at the bottom ends of the driving plates 4-5.
[0034] When the extension plate 4-52 rotates, it can drive the driving plate 4-5 to flip. When the driving plate 4-5 flips, it can drive the sliding rod 4-51 to slide in the first chute 4-21, enabling the end of the driving plate 4-5 to drive the lifting plate 4-2 to slide up and down inside the mounting frame 4-1, facilitating the control of the up and down movement of the bracket 2. When the lifting plate 4-2 is at the highest point, it is convenient to move the bracket 2 to the highest point. When the lifting plate 4-2 is at the lowest point, the bracket 2 loses the support of the lifting plate 4-2, enabling the bracket 2 to quickly drop inside the mounting frame 4-1, facilitating the disassembly of the bracket 1 from the wall.
[0035] A moving plate 4-55 is provided outside the extension plate 4-52. An inclined plate 4-53 is fixedly mounted on the outer wall of the bottom end of the threaded sleeve 4-4. The inclined plate 4-53 is slidably mounted at the center of the mounting frame 4-1. A connecting plate 4-54 is fixedly mounted between the inclined plate 4-53 on the same side and the moving plate 4-55 on the same side. The connecting plate 4-54 is slidably mounted on the outer surface of the mounting frame 4-1.
[0036] When the inclined plate 4-53 moves, it can drive the threaded sleeve 4-4 to move. At the same time, the inclined plate 4-53 can drive the connecting plate 4-54 to move on the mounting frame 4-1. When the connecting plate 4-54 moves, it can control the moving plate 4-55 to move;
[0037] When the moving plate 4-55 moves towards the mounting bracket 4-1, it can drive the extension plate 4-52 to move towards the mounting bracket 4-1, so that the driving plate 4-5 can drive the lifting plate 4-2 to rise to the highest point of the mounting bracket 4-1;
[0038] When the moving plate 4-55 moves away from the mounting bracket 4-1, the lifting plate 4-2 is affected by gravity and can drive the driving plate 4-5 to move downward. At this time, the extension plate 4-52 loses the block of the moving plate 4-55, enabling the lifting plate 4-2 to descend to the lowest point of the mounting bracket 4-1.
[0039] The rotating rod 3 includes a first rotating rod 3-1 and a second rotating rod 3-2. The second rotating rod 3-2 is fixedly installed at the end of the first rotating rod 3-1 and is perpendicular to the first rotating rod 3-1. The second rotating rod 3-2 can contact the wall. A driving rod 3-3 is fixedly installed on the outer wall of the first rotating rod 3-1. The driving rod 3-3 is opposite to the orientation of the second rotating rod 3-2, and the driving rod 3-3 can contact the inclined surface of the inclined plate 4-53.
[0040] When the first rotating rod 3-1 rotates, it can drive the second rotating rod 3-2 to rotate, enabling the second rotating rod 3-2 to switch from a state perpendicular to the wall surface and parallel to the plane, and at the same time, it can drive the driving rod 3-3 to rotate;
[0041] When the second rotating rod 3-2 is perpendicular to the wall surface, the second rotating rod 3-2 can contact the wall surface, enabling the bracket 1 to be fixedly installed on the wall. At this time, the driving rod 3-3 contacts the inclined surface of the inclined plate 4-53, making the inclined sides on the same side approach each other, facilitating the threaded sleeve 4-4 to be in a spliced state;
[0042] When the second rotating rod 3-2 is parallel to the wall, the driving rod 3-3 moves away from the inclined plate 4-53, causing the inclined plate 4-53 to lose the support of the driving rod 3-3, enabling the moving plate 4-55 to be pushed by the extension plate 4-52, facilitating the separation of the threaded sleeve 4-4. At the same time, when the second rotating rod 3-2 is in a parallel state, it is convenient to disassemble the bracket 1 from the wall.
[0043] The clamping assembly 5 includes a clamping plate 5-1 and a second threaded rod 5-2. The clamping plate 5-1 is rotatably installed at the end of the second threaded rod 5-2. The end of the second threaded rod 5-2 away from the clamping plate 5-1 is threadedly connected to the bracket 1. The clamping plate 5-1 is slidably installed on the bracket 1, and convex blocks 5-3 are fixedly installed at both ends of the clamping plate 5-1.
[0044] When the bracket 1 is installed on the wall, rotate the second threaded rod 5-2 so that the second threaded rod 5-2 drives the clamping plate 5-1 to displace. When the clamping plate 5-1 moves towards the wall, both the clamping plate 5-1 and the second rotating rod 3-2 are in contact with the wall, enabling the bracket 1 to be stably installed on the wall. At the same time, the clamping plate 5-1 can drive the convex block 5-3 to move when it moves.
[0045] One end of the rotating rod 3 close to the clamping plate 5-1 is provided with a threaded groove 3-4. The end of the threaded groove 3-4 is adapted to the end of the bracket 1. The included angle between the two ends of the threaded groove 3-4 is ninety degrees. The end of the threaded groove 3-4 far from the bracket 1 is connected to a second chute 3-5. The end of the convex block 5-3 penetrates the top surface of the bracket 1 and is arranged in the threaded groove 3-4. The convex block 5-3 can slide in the threaded groove 3-4 and the second chute 3-5. The threaded grooves 3-4 on the same side are mirror images.
[0046] When the clamping plate 5-1 moves, it drives the convex block 5-3 to move. When the convex block 5-3 moves from the end of the threaded groove 3-4 to the connection between the threaded groove 3-4 and the second chute 3-5, the rotating rod 3 can be rotated by ninety degrees, so that the second rotating rod 3-2 is switched from parallel to the wall surface to perpendicular to the wall surface. When the convex block 5-3 slides into the second chute 3-5, the rotating rod 3 can maintain the state of being clamped on the wall.
[0047] The mounting frame 4-1 is slidably installed on the top surface of the bracket 1. A sliding block 1-1 is fixedly installed on the top surface of the bracket 1. A slot is formed on the bottom surface of the mounting frame 4-1. The sliding block 1-1 is slidably installed in the slot. A baffle 1-2 is fixedly installed on one side of the sliding block 1-1 close to the clamping assembly 5.
[0048] When a damper needs to be installed, pull the mounting frame 4-1 so that the sliding block 1-1 slides in the slot, enabling the bracket 2 to be withdrawn from the wall, facilitating the hoisting of the damper onto the bracket 2.
[0049] After the damper is hoisted, slide the mounting frame 4-1 towards the bracket 1. At this time, the mounting frame 4-1 is blocked by the baffle 1-2, restricting one end of the mounting frame 4-1, facilitating the control of the damper at the center of the wall.
[0050] Both ends on one side of the sliding block 1-1 far from the clamping assembly 5 are provided with movable blocks 1-3. The movable blocks 1-3 are elastically installed on the top surface of the bracket 1. The top end of the movable block 1-3 can be in contact with the top surface of the bracket 1. The movable block 1-3 can be in contact with the outer surface of the mounting frame 4-1. The mounting frame 4-1 can be fixedly installed on the bracket 1 by the baffle 1-2 and the movable block 1-3.
[0051] When it is necessary to pull out the mounting bracket 4-1, press the movable block 1-3 downward so that the mounting bracket 4-1 loses the block of the movable block 1-3, facilitating the extraction of the mounting bracket 4-1. Then move the mounting bracket 4-1 towards the bracket 1. When the mounting bracket 4-1 is blocked by the baffle 1-2, the movable block 1-3 pops up upward, so that the mounting bracket 4-1 is clamped by the baffle 1-2 and the movable block 1-3, and the mounting bracket 4-1 is fixedly installed on the bracket 1.
[0052] The technical scope of the present invention is not limited to the content in the above specification. Those skilled in the art can make various deformations and modifications to the above embodiments without departing from the technical idea of the present invention, and these deformations and modifications should all fall within the scope of the present invention.
Claims
1. A seismic damper installation tool, characterized in that: The invention comprises a bracket (1), a support (2), a rotating rod (3), an adjustment component (4) and a clamping component (5); the bracket (2) is provided with two, both of which are M-shaped, and the two brackets (2) are respectively arranged on the left and right sides of the bracket (1), and the two ends of the damper are respectively placed on the two brackets (2); the adjustment component (4) is provided with two groups, and the two groups of the adjustment components (4) are respectively arranged on the left and right sides of the bracket (1), and the bracket (2) on the same side is arranged on the adjustment component (4) on the same side; the adjustment component (4) is used to adjust the bracket (2) to facilitate the adjustment of the height of the damper; the clamping component (5) is provided with two groups, and the two groups of the clamping components (5) are respectively arranged on the left and right sides of the bracket (1), and the clamping components (5) on the same side can control the adjustment components (4) on the same side to adjust; the clamping component (5) can fix the bracket (1) on the wall; and the rotating rod (3) is rotatably mounted on the bracket (1).
2. The anti-seismic damper installation tool as claimed in claim 1, characterized in that: The bottoms of both ends of the bracket (2) are provided with through grooves (2-1), and both ends of the bracket (2) are fixedly mounted with limit plates (2-2). The adjustment assembly (4) comprises a mounting frame (4-1), a lifting plate (4-2), a lifting plate (4-3) and a threaded sleeve (4-4). The tops of both ends of the mounting frame (4-1) are fixedly mounted with blocking plates (4-11), and the end faces of the blocking plates (4-11) are in contact with the outer surface of the bracket (2). The lifting plate (4-2) is slidably mounted inside the mounting frame (4-1), and the lifting plate (4-2) is located below the limit plates (2-2). The lifting plate (4-3) is located at the center of the mounting frame (4-1), and both ends of the lifting plate (4-3) are in contact with the outer surface of the mounting frame (4-1). The threaded sleeve (4-4) is arranged below the lifting plate (4-3) and is located at the center of the mounting frame (4-1).
3. The anti-seismic damper installation tool as claimed in claim 2, characterized in that: A connecting rod (4-31) is rotatably mounted on the bottom end of the lifting plate (4-3), a first threaded rod (4-32) is fixedly mounted on the bottom end of the connecting rod (4-31), the threaded sleeve (4-4) is set to be semicircular, the semicircular threaded sleeve (4-4) can be assembled into a complete threaded sleeve (4-4), the top inner wall of the threaded sleeve (4-4) is provided with threads, the threaded sleeve (4-4) can be threadedly connected with the first threaded rod (4-32), and the threaded sleeve (4-4) is sleeved on the outside of the first threaded rod (4-32).
4. The anti-seismic damper installation tool as claimed in claim 3, characterized in that: The lifting plate (4-2) is set to be U-shaped, and the inner two ends of the lifting plate (4-2) are both provided with first sliding grooves (4-21), and the driving plates (4-5) are rotatably installed on the outside of the two ends of the mounting frame (4-1), and the top of the driving plate (4-5) passes through the inner wall of the mounting frame (4-1), and the two sides of the top of the driving plate (4-5) are fixedly installed with sliding rods (4-51), and the sliding rods (4-51) are slidably installed in the first sliding grooves (4-21), and the bottom end of the driving plate (4-5) is fixedly installed with an extension plate (4-52).
5. The anti-seismic damper installation tool as claimed in claim 4, characterized in that: A movable plate (4-55) is provided on the outside of the extension plate (4-52), an inclined plate (4-53) is fixedly installed on the outer wall of the bottom end of the threaded sleeve (4-4), and the inclined plate (4-53) is slidably installed at the center of the mounting frame (4-1), and a connecting plate (4-54) is fixedly installed between the inclined plate (4-53) and the movable plate (4-55) on the same side, and the connecting plate (4-54) is slidably installed on the outer surface of the mounting frame (4-1).
6. The anti-seismic damper installation tool as claimed in claim 5, characterized in that: The rotating rod (3) comprises a first rotating rod (3-1) and a second rotating rod (3-2); the second rotating rod (3-2) is fixedly mounted on the end of the first rotating rod (3-1) and is perpendicular to the first rotating rod (3-1); the second rotating rod (3-2) can contact a wall; a driving rod (3-3) is fixedly mounted on the outer wall of the first rotating rod (3-1); the driving rod (3-3) and the second rotating rod (3-2) are in opposite directions; the driving rod (3-3) can contact the inclined surface of the inclined plate (4-53).
7. The anti-seismic damper installation tool as claimed in claim 1, characterized in that: The clamping assembly (5) comprises a clamping plate (5-1) and a second threaded rod (5-2); the clamping plate (5-1) is rotatably mounted on the end of the second threaded rod (5-2); one end of the second threaded rod (5-2) away from the clamping plate (5-1) is threadedly connected to the bracket (1); the clamping plate (5-1) is slidably mounted on the bracket (1); and protrusions (5-3) are fixedly mounted on both ends of the clamping plate (5-1).
8. The anti-seismic damper installation tool as claimed in claim 7, characterized in that: A thread groove (3-4) is provided at one end of the rotating rod (3) close to the clamping plate (5-1), the end of the thread groove (3-4) is adapted to the end of the bracket (1), the angle between the two ends of the thread groove (3-4) is ninety degrees, the end of the thread groove (3-4) away from the bracket (1) is connected to the second slide groove (3-5), the end of the protrusion (5-3) passes through the top surface of the bracket (1) and is arranged in the thread groove (3-4), the protrusion (5-3) can slide in the thread groove (3-4) and the second slide groove (3-5), and the thread grooves (3-4) on the same side are mirror-imaged.
9. The anti-seismic damper installation tool as claimed in claim 2, characterized in that: The mounting frame (4-1) is slidably mounted on the top surface of the bracket (1), a sliding block (1-1) is fixedly mounted on the top surface of the bracket (1), a groove is provided on the bottom surface of the mounting frame (4-1), the sliding block (1-1) is slidably mounted in the groove, and a baffle (1-2) is fixedly mounted on one side of the sliding block (1-1) close to the clamping assembly (5).
10. The anti-seismic damper installation tool as claimed in claim 2, characterized in that: Both ends of the sliding block (1-1) on one side away from the clamping assembly (5) are provided with movable blocks (1-3); the movable blocks (1-3) are elastically mounted on the top surface of the bracket (1); the top end of the movable block (1-3) can be in contact with the top surface of the bracket (1); the movable block (1-3) can be in contact with the outer surface of the mounting frame (4-1); and the mounting frame (4-1) can be fixedly mounted on the bracket (1) by the baffle (1-2) and the movable block (1-3).
Citation Information
Cited By
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