Auxiliary mounting device and method for anti-seismic damper
By designing an auxiliary installation device for seismic dampers, and utilizing components such as tracked drive wheels and hydraulic cylinders, the device enables precise positioning and angle adjustment of the dampers. This solves the problems of low efficiency and safety hazards in the existing installation process, and improves the installation quality and seismic performance.
Patent Information
- Application Number
- CN202511159105.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-19
- Publication Date
- 2025-11-18
AI Technical Summary
The existing seismic damper installation process is inefficient, poses safety hazards, and is difficult to accurately position and adjust the angle, thus affecting the seismic performance.
An auxiliary installation device for seismic dampers was designed, including components such as tracked drive wheels, hydraulic cylinders, clamping blocks, and universal balls. The device achieves precise positioning and angle adjustment of the damper through the movement of the tracked drive wheels, adjustment of the hydraulic cylinders, and rotation of the universal balls.
This improved the installation efficiency of seismic dampers, reduced safety hazards, ensured accurate positioning and angle adjustment, and enhanced seismic performance.
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Figure CN120968259A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of mounting devices, in particular to an auxiliary installation device for an anti-seismic damper and an installation method. BACKGROUND
[0002] An anti-seismic damper is a device used in building structures to reduce structural vibration and damage by dissipating seismic energy. It is an indispensable "safety guard" in modern building seismic design, allowing buildings to "move but not fall" during earthquakes through the "soft overcomes hard" approach, thereby maximizing the protection of life and property safety.
[0003] With the development of the construction industry, anti-seismic dampers play a key role in improving the seismic performance of buildings. Traditional buildings mainly rely on their own stiffness to resist earthquakes, while dampers can serve as an "additional defense line" to share structural loads and reduce the strength requirements of the main structure. Compared to simply increasing structural materials (such as increasing beam and column cross-sections), using dampers can achieve seismic goals more economically, especially for complex or super high-rise structures.
[0004] The existing installation process of anti-seismic dampers has many problems. Anti-seismic dampers are usually heavy, and manual handling and installation not only have low efficiency but also have great safety hazards. Traditional installation equipment cannot achieve precise positioning and angle adjustment of the damper, resulting in large installation errors and affecting the seismic effect, which is not conducive to the installation of anti-seismic dampers.
[0005] Therefore, we propose an auxiliary installation device for an anti-seismic damper and an installation method. SUMMARY
[0006] In view of the above and / or existing problems in the prior art, the present application is proposed.
[0007] Therefore, the purpose of the present application is to provide an auxiliary installation device for an anti-seismic damper and an installation method. By improving the existing auxiliary installation device for an anti-seismic damper, the above-mentioned problems in the prior art can be solved, i.e., the anti-seismic damper is usually heavy, manual handling and installation not only have low efficiency but also have great safety hazards, and traditional installation equipment cannot achieve precise positioning and angle adjustment of the damper, resulting in large installation errors and affecting the seismic effect, which is not conducive to the installation of anti-seismic dampers.
[0008] To solve the above technical problems, according to one aspect of the present application, the present application provides the following technical solutions:
[0009] The utility model provides an anti -seismic damper auxiliary installation device, including the installation board, the lower surface of installation board is equipped with crawler belt type drive wheel, the middle part of installation board upper surface is fixedly installed with fixed cylinder, the top of inner ring surface of fixed cylinder is rotatably installed with rotating disc, the middle part of one side of rotating disc upper surface is installed with first hydraulic cylinder, the output rod of first hydraulic cylinder is upwards and rotatably installed with first connecting plate, the both ends of first connecting plate upper surface are all slidably installed with first clamping block along the horizontal direction, the middle part of one side of rotating disc upper surface away from first hydraulic cylinder is installed with second hydraulic cylinder, the output rod of second hydraulic cylinder is upwards and rotatably installed with second connecting plate, the both ends of second connecting plate upper surface are all slidably installed with second clamping block along the horizontal direction, the middle part of one side arc surface of second clamping block is spacedly rotatably installed with a plurality of universal ball.
[0010] As a preferred scheme of the anti -seismic damper auxiliary installation device, wherein: the arc surface of the first clamping block is fixed with a matching limit pad, and the first clamping block and the limit pad help to clamp the anti -seismic damper, the second clamping block is provided with a matching groove hole corresponding to the universal ball, the universal ball is rotatably connected through the bearing between the corresponding groove holes on the second clamping block, and the outer ring surface of the rotating disc is rotatably connected with the top of the inner ring surface of the fixed cylinder through the bearing.
[0011] As a preferred scheme of the anti -seismic damper auxiliary installation device, wherein: the middle part of the installation board upper surface is installed with a rotating motor on the inner side of the fixed cylinder, the output shaft of the rotating motor is upwards, and the upper end of the output shaft of the rotating motor is fixedly installed with the middle part of the lower surface of the rotating disc, so that the rotating motor can drive the rotating disc to rotate, and the fixed ring is fixedly installed between the outer side of the rotating motor and the inner side of the fixed cylinder on the upper surface of the installation board.
[0012] As a preferred scheme of the anti -seismic damper auxiliary installation device, wherein: the upper surface of the fixed ring is provided with an arc surface annular groove, a plurality of limit balls are arranged in the arc surface annular groove of the fixed ring, the upper side of the outer ring surface of the limit ball is in contact with the corresponding position of the lower surface of the rotating disc, and the limit ball in the arc surface annular groove of the fixed ring can support and limit the rotating disc, so that the rotating disc can be stably rotated.
[0013] As a preferred scheme of the auxiliary installation device of the anti-seismic damper, the upper end of the output rod of the first hydraulic cylinder is fixedly provided with a first connecting block, the middle part of the two side surfaces of the first connecting block is fixedly provided with a first limiting rod, and the outer side of the outer ring surface of the first limiting rod is rotatably provided with a first rotating plate through a bearing.
[0014] As a preferred scheme of the auxiliary installation device of the anti-seismic damper, the upper end of the output rod of the second hydraulic cylinder is fixedly provided with a second connecting block, the middle part of the two side surfaces of the second connecting block is fixedly provided with a second limiting rod, and the outer side of the outer ring surface of the second limiting rod is rotatably provided with a second rotating plate through a bearing.
[0015] As a preferred scheme of the auxiliary installation device of the anti-seismic damper, the lower surface of the first clamping block is fixedly provided with a first moving block, the lower surface of the first moving block is fixedly provided with a first driving sliding block, the first driving sliding block is convenient for driving the first moving block and the first clamping block to move, the lower surface of the second clamping block is fixedly provided with a second moving block, and the lower surface of the second moving block is fixedly provided with a second driving sliding block.
[0016] As a preferred scheme of the auxiliary installation device of the anti-seismic damper, the middle part of the upper surface of the first connecting plate is fixedly provided with a first guide rail corresponding to the first driving sliding block, and the first driving sliding block is matched with the first guide rail and is slidably arranged in the horizontal direction.
[0017] As a preferred scheme of the auxiliary installation device of the anti-seismic damper, the middle part of the upper surface of the second connecting plate is fixedly provided with a second guide rail corresponding to the second driving sliding block, and the second driving sliding block is matched with the second guide rail and is slidably arranged in the horizontal direction.
[0018] In the present application, an installation method of an auxiliary installation device of an anti-seismic damper is provided, and the installation method comprises the following steps:
[0019] Step one: when the anti-seismic damper needs to be transported and installed, the anti-seismic damper is located between the first clamping block and the second clamping block, and the first drive slider and the second drive slider are further opened, and in the opened state of the first drive slider, the first drive slider moves towards the first guide rail, and the first clamping block and the limiting pad are moved by the first moving block, and the first clamping block clamps and limits the anti-seismic damper;
[0020] Step two: in the opened state of the second drive slider, the second drive slider moves towards the second guide rail, and the second clamping block and the universal ball are moved by the second moving block, and the second clamping block clamps and limits the anti-seismic damper;
[0021] Step three: when the anti-seismic damper needs to be transported, the track-type drive wheel is opened, and in the opened state of the track-type drive wheel, the track-type drive wheel can drive the installation device and the clamped and limited anti-seismic damper to move, so as to transport the anti-seismic damper, and when the installation direction of the anti-seismic damper needs to be adjusted, the output shaft of the motor can drive the rotating disc and the clamped and limited anti-seismic damper to rotate, so as to adjust the installation direction of the anti-seismic damper;
[0022] Step four: when the installation angle of the anti-seismic damper needs to be adjusted, the first hydraulic cylinder and the second hydraulic cylinder are controlled and adjusted, so as to adjust the height of the two ends of the anti-seismic damper, so that the anti-seismic damper has different angles, which helps to adjust the installation angle of the anti-seismic damper to the required angle, and helps to install the anti-seismic damper.
[0023] Compared with the prior art, the present application has the following advantages:
[0024] 1、The auxiliary installation device can conveniently install the anti-seismic damper, which is convenient for installing the anti-seismic damper with large mass, and is conducive to ensuring the work efficiency of transporting and installing the anti-seismic damper, saving the manpower and material resources required for transporting and installing the anti-seismic damper, avoiding safety hazards during transportation and installation of the anti-seismic damper, and facilitating precise positioning and angle adjustment during installation of the anti-seismic damper, so as to avoid large installation errors and ensure the anti-seismic effect of the installed anti-seismic damper.
[0025] 2. In this invention, when the angle of the seismic damper changes, the part of the seismic damper held by the second clamping block and the universal ball will move along the universal ball, causing the universal ball to rotate in all directions along the second clamping block. This allows the seismic damper to move along the inner side of the second clamping block and the universal ball, while the second clamping block and the universal ball can maintain the clamping limit of the seismic damper. During use, the seismic damper can be easily transported, and the installation position, installation direction and installation angle of the seismic damper can be easily adjusted, which helps to assist in the installation of the seismic damper.
[0026] 3. In this invention, when the first hydraulic cylinder rotates, it can drive one end of the seismic damper to rotate through the first connecting block, the first limiting rod, the first rotating plate, the first connecting plate, the first guide rail, the first driving slider, the first moving block, the first clamping block, and the limiting pad. When the second hydraulic cylinder rotates, it can drive the other end of the seismic damper to rotate through the second connecting block, the second limiting rod, the second rotating plate, the second connecting plate, the second guide rail, the second driving slider, the second moving block, the second clamping block, and the universal ball, so as to adjust the orientation of the seismic damper and help to adjust the installation direction of the seismic damper. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the structure of the present invention;
[0028] Figure 2 This is a schematic diagram of the fixing ring structure of the present invention;
[0029] Figure 3 This is a schematic diagram of the limiting ball structure of the present invention;
[0030] Figure 4 This is a schematic diagram of the universal ball structure of the present invention;
[0031] Figure 5 This is a schematic diagram of the limiting pad structure of the present invention;
[0032] Figure 6 This is a schematic diagram of the fixed cylinder structure of the present invention;
[0033] Figure 7 This is a side view of the structure of the present invention;
[0034] Figure 8 This is a schematic diagram of the second clamping block structure of the present invention.
[0035] In the figure: 1, track drive wheel; 2, mounting plate; 3, fixed cylinder; 4, rotating motor; 5, fixed ring; 6, cambered annular groove; 7, limit ball; 8, rotating disc; 9, first hydraulic cylinder; 10, second hydraulic cylinder; 11, first connecting block; 12, second connecting block; 13, first limit rod; 14, second limit rod; 15, first rotating plate; 16, second rotating plate; 17, first connecting plate; 18, second connecting plate; 19, first guide rail; 20, second guide rail; 21, first drive sliding block; 22, second drive sliding block; 23, first moving block; 24, second moving block; 25, first clamping block; 26, second clamping block; 27, limit pad; 28, universal ball. DETAILED DESCRIPTION
[0036] In order to make the purpose, technical scheme and advantages of the present application clearer, the embodiments of the present application will be further described in detail below with reference to the drawings.
[0037] The present application provides an anti-seismic damper auxiliary installation device and installation method, which has the advantages that the anti-seismic damper can be conveniently installed, the installation of the anti-seismic damper with large mass is facilitated, the work efficiency of transporting and installing the anti-seismic damper is ensured, the human and material resources consumed in transporting and installing the anti-seismic damper are saved, safety hazards in transporting and installing the anti-seismic damper are avoided, accurate positioning and angle adjustment are facilitated during installation of the anti-seismic damper, large installation errors are avoided, and the seismic effect of the installed anti-seismic damper is ensured.
[0038] Please refer to Figures 1-8 An anti-seismic damper auxiliary installation device, comprising a mounting plate 2, a track drive wheel 1 is installed on the lower surface of the mounting plate 2, a fixed cylinder 3 is fixedly installed on the middle part of the upper surface of the mounting plate 2, a rotating disc 8 is rotatably installed on the top of the inner ring surface of the fixed cylinder 3, a first hydraulic cylinder 9 is installed on the middle part of one side of the upper surface of the rotating disc 8, a first connecting plate 17 is rotatably installed on the output rod of the first hydraulic cylinder 9 upwards, first clamping blocks 25 are slidably installed on both ends of the upper surface of the first connecting plate 17 in the horizontal direction, a second hydraulic cylinder 10 is installed on the middle part of the side of the upper surface of the rotating disc 8 away from the first hydraulic cylinder 9, a second connecting plate 18 is rotatably installed on the output rod of the second hydraulic cylinder 10 upwards, second clamping blocks 26 are slidably installed on both ends of the upper surface of the second connecting plate 18 in the horizontal direction, and a plurality of universal balls 28 are rotatably installed on the middle part of the arc surface of the side of the second clamping block 26 close to each other.
[0039] The arc surface of the first clamping block 25 is fixed with a matching limiting pad 27, and the first clamping block 25 and the limiting pad 27 help to clamp and limit the damping device. The second clamping block 26 is provided with a matching slot hole corresponding to the universal ball 28. The universal ball 28 is rotatably connected between the corresponding slot holes on the second clamping block 26 through a bearing. The outer ring surface of the rotating disc 8 is rotatably connected between the top of the inner ring surface of the fixed cylinder 3 through a bearing. The upper surface of the mounting plate 2 is provided with a rotating motor 4 on the inner side of the fixed cylinder 3. The output shaft of the rotating motor 4 is upward. The upper end of the output shaft of the rotating motor 4 is fixedly installed with the lower surface of the rotating disc 8. The rotating motor 4 helps to drive the rotating disc 8 to rotate. The mounting plate 2 is fixedly installed with a fixed ring 5 between the outer side of the rotating motor 4 and the inner side of the fixed cylinder 3.
[0040] The upper surface of the fixed ring 5 is provided with an arc surface annular groove 6. A plurality of limiting balls 7 are arranged in the arc surface annular groove 6 of the fixed ring 5. The outer ring surface of the limiting ball 7 is in contact with the corresponding position of the lower surface of the rotating disc 8. The limiting ball 7 in the arc surface annular groove 6 of the fixed ring 5 helps to support and limit the rotating disc 8, and facilitates the stable rotation of the rotating disc 8. The upper end of the output rod of the first hydraulic cylinder 9 is fixedly installed with a first connecting block 11. The middle of the two side surfaces of the first connecting block 11 is fixedly provided with a first limiting rod 13. The outer side of the outer ring surface of the first limiting rod 13 is rotatably installed with a first rotating plate 15 through a bearing. The first limiting rod 13 on the first connecting block 11 helps to limit the first rotating plate 15. The upper side of the first rotating plate 15 is fixedly connected with the corresponding position of the lower surface of the first connecting plate 17.
[0041] The upper end of the output rod of the second hydraulic cylinder 10 is fixedly installed with a second connecting block 12. The middle of the two side surfaces of the second connecting block 12 is fixedly provided with a second limiting rod 14. The outer side of the outer ring surface of the second limiting rod 14 is rotatably installed with a second rotating plate 16 through a bearing. The second limiting rod 14 on the second connecting block 12 helps to limit the second rotating plate 16. The upper side of the second rotating plate 16 is fixedly connected with the corresponding position of the lower surface of the second connecting plate 18. The lower surface of the first clamping block 25 is fixedly installed with a first moving block 23. The lower surface of the first moving block 23 is fixedly installed with a first drive sliding block 21. The first drive sliding block 21 facilitates the movement of the first moving block 23 and the first clamping block 25. The lower surface of the second clamping block 26 is fixedly installed with a second moving block 24. The lower surface of the second moving block 24 is fixedly installed with a second drive sliding block 22. The second drive sliding block 22 helps to drive the second moving block 24 and the second clamping block 26 to move.
[0042] The middle part of the upper surface of the first connecting plate 17 is fixedly provided with a first guide rail 19 corresponding to a first driving sliding block 21, the first driving sliding block 21 is matched with the first guide rail 19 and is slidably arranged in the horizontal direction, the first guide rail 19 can limit the first driving sliding block 21, and the first driving sliding block 21 is moved stably; the middle part of the upper surface of the second connecting plate 18 is fixedly provided with a second guide rail 20 corresponding to a second driving sliding block 22, the second driving sliding block 22 is matched with the second guide rail 20 and is slidably arranged in the horizontal direction, the second guide rail 20 can limit the second driving sliding block 22, and the second driving sliding block 22 is moved stably.
[0043] In the application, the installation method of the auxiliary installation device of the anti-seismic damper comprises the following steps:
[0044] Step one: when the anti-seismic damper needs to be transported and installed, the anti-seismic damper is placed between the first clamping block 25 and the second clamping block 26, and the first driving sliding block 21 and the second driving sliding block 22 are opened, the first driving sliding block 21 moves towards the first guide rail 19 in the opening state, the first driving sliding block 21 drives the first clamping block 25 and the limiting pad 27 to move, and the first clamping block 25 clamps and limits the anti-seismic damper through the limiting pad 27;
[0045] Step two: in the opening state of the second driving sliding block 22, the second driving sliding block 22 moves towards the second guide rail 20, the second driving sliding block 22 drives the second clamping block 26 and the universal ball 28 to move, and the second clamping block 26 clamps and limits the anti-seismic damper through the universal ball 28;
[0046] Step three: when the anti-seismic damper needs to be transported, the track-type driving wheel 1 is opened, the track-type driving wheel 1 drives the installation device and the clamped and limited anti-seismic damper to move in the opening state, so as to transport the anti-seismic damper, when the installation direction of the anti-seismic damper needs to be adjusted, the output shaft of the motor 4 drives the rotating disc 8 and the clamped and limited anti-seismic damper to rotate, so as to adjust the installation direction of the anti-seismic damper;
[0047] Step four: when the installation angle of the anti-seismic damper needs to be adjusted, the first hydraulic cylinder 9 and the second hydraulic cylinder 10 are controlled and adjusted, so as to adjust the height of the two ends of the anti-seismic damper, so that the anti-seismic damper has different angles, which helps to adjust the installation angle of the anti-seismic damper to the required angle, and helps to install the anti-seismic damper.
[0048] The working principle of the present application: in the process of use, the lower side of the track drive wheel 1 is placed in the position where it needs to be used, and the anti-vibration damper to be installed is further placed between the side close to the first clamping block 25 and the side close to the second clamping block 26, and then the first drive sliding block 21 is opened, which will move along the first guide rail 19 in the direction of approaching, and the first drive sliding block 21 can drive the first clamping block 25 and the limiting pad 27 to move towards the anti-vibration damper, and the first clamping block 25 can clamp and limit the anti-vibration damper through the limiting pad 27, and then the second drive sliding block 22 is opened, which will move along the second guide rail 20 in the direction of approaching, and the second drive sliding block 22 can drive the second clamping block 26 and the universal ball 28 to move towards the anti-vibration damper, and the second clamping block 26 can clamp and limit the anti-vibration damper through the universal ball 28.
[0049] When the anti-vibration damper needs to be transported, the track drive wheel 1 is opened, which will drive the auxiliary installation device and the clamped and limited anti-vibration damper to move, so as to transport the anti-vibration damper and adjust the position of the anti-vibration damper, and then when the installation direction of the anti-vibration damper needs to be adjusted, the rotating motor 4 is opened, the output shaft of the rotating motor 4 can drive the rotating disc 8 to rotate, and the rotating disc 8 can rotate along the inner side of the fixed cylinder 3 through the bearing when rotating, and the rotating disc 8 can rotate along the upper side of the limiting ball 7, and the limiting ball 7 in the arc surface annular groove 6 of the fixed ring 5 can support and limit the rotating disc 8, which helps to stably rotate the rotating disc 8.
[0050] The rotating disc 8 can drive the first hydraulic cylinder 9 and the second hydraulic cylinder 10 to rotate when rotating, the first hydraulic cylinder 9 can drive one end of the anti-vibration damper to rotate through the first connecting block 11, the first limiting rod 13, the first rotating plate 15, the first connecting plate 17, the first guide rail 19, the first drive sliding block 21, the first moving block 23, the first clamping block 25 and the limiting pad 27 when rotating, and the second hydraulic cylinder 10 can drive the other end of the anti-vibration damper to rotate through the second connecting block 12, the second limiting rod 14, the second rotating plate 16, the second connecting plate 18, the second guide rail 20, the second drive sliding block 22, the second moving block 24, the second clamping block 26 and the universal ball 28 when rotating, so as to adjust the direction of the anti-vibration damper, which helps to adjust the installation direction of the anti-vibration damper.
[0051] When the installation angle of the seismic damper needs to be adjusted, the first hydraulic cylinder 9 and the second hydraulic cylinder 10 are adjusted, the output rod of the first hydraulic cylinder 9 will drive one end of the seismic damper to move in the vertical direction through the first connecting block 11, the first limiting rod 13, the first rotating plate 15, the first connecting plate 17, the first guide rail 19, the first drive sliding block 21, the first moving block 23, the first clamping block 25 and the limiting pad 27, and the output rod of the second hydraulic cylinder 10 will drive the other end of the seismic damper to move in the vertical direction through the second connecting block 12, the second limiting rod 14, the second rotating plate 16, the second connecting plate 18, the second guide rail 20, the second drive sliding block 22, the second moving block 24, the second clamping block 26 and the universal ball 28.
[0052] When the angle of the seismic damper is adjusted, the first clamping block 25 and the limiting pad 27 will drive the first rotating plate 15 to rotate along the first limiting rod 13 through the first moving block 23, the first drive sliding block 21, the first guide rail 19 and the first connecting plate 17, so that the first clamping block 25 and the limiting pad 27 can rotate with the seismic damper when the angle of the seismic damper is adjusted, and the second clamping block 26 and the universal ball 28 will drive the second rotating plate 16 to rotate along the second limiting rod 14 through the second moving block 24, the second drive sliding block 22, the second guide rail 20 and the second connecting plate 18 when the angle of the seismic damper is adjusted.
[0053] When the angle of the seismic damper changes, the part of the seismic damper clamped by the second clamping block 26 and the universal ball 28 will move along the universal ball 28, so that the universal ball 28 rotates omnidirectionally along the second clamping block 26, and the second clamping block 26 and the universal ball 28 can keep clamping and limiting the seismic damper while the seismic damper moves along the inner side of the second clamping block 26 and the universal ball 28, which facilitates the transportation of the seismic damper and the adjustment of the installation position, installation direction and installation angle of the seismic damper, and helps to assist the installation of the seismic damper.
[0054] In use, the auxiliary installation device can conveniently install the seismic damper, facilitate the installation of the seismic damper with large mass, improve the work efficiency of transporting and installing the seismic damper, save the manpower and material resources consumed in transporting and installing the seismic damper, avoid safety hazards in transporting and installing the seismic damper, help to accurately position and adjust the angle during installation of the seismic damper, and avoid large installation errors to ensure the seismic effect of the installed seismic damper.
[0055] Although the present application has been described with reference to the embodiments above, various changes and modifications can be suggested to one skilled in the art, and it is intended that the present application encompass such changes and modifications as fall within the scope of the appended claims. Particularly, each feature disclosed in the description and / or the claims can be used in the combination with each of the features disclosed in the description and / or the claims, unless specifically stated otherwise. Therefore, the present application is not intended to be limited to the particular embodiments disclosed in the description and / or the claims.
Claims
1. An auxiliary installation device for a seismic damper, comprising an installation plate (2), characterized in that, A tracked drive wheel (1) is installed on the lower surface of the mounting plate (2). A fixed cylinder (3) is fixedly installed in the middle of the upper surface of the mounting plate (2). A rotating disk (8) is rotatably installed on the top of the inner ring surface of the fixed cylinder (3). A first hydraulic cylinder (9) is installed in the middle of one side of the upper surface of the rotating disk (8). A first connecting plate (17) is rotatably installed with the output rod of the first hydraulic cylinder (9) facing upward. A first clamping block (25) is slidably installed at both ends of the upper surface of the first connecting plate (17) in the horizontal direction. A second hydraulic cylinder (10) is installed in the middle of the side of the upper surface of the rotating disk (8) away from the first hydraulic cylinder (9). A second connecting plate (18) is rotatably installed with the output rod of the second hydraulic cylinder (10) facing upward. A second clamping block (26) is slidably installed at both ends of the upper surface of the second connecting plate (18) in the horizontal direction. Several universal balls (28) are rotatably installed at intervals in the middle of the arc surface of the second clamping block (26) on one side close to it.
2. The seismic damper auxiliary installation device according to claim 1, characterized in that, On the arc surface of the first clamping block (25) on the side close to each other, there are matching and fitting limiting pads (27). On the second clamping block (26), there are matching slots for the universal ball (28). The universal ball (28) is located in the corresponding slot on the second clamping block (26) and is rotatably connected to each other by bearings. The outer ring surface of the rotating disk (8) is rotatably connected to the top of the inner ring surface of the fixed cylinder (3) by bearings.
3. The seismic damper auxiliary installation device according to claim 2, characterized in that, A rotating motor (4) is installed in the middle of the upper surface of the mounting plate (2) inside the fixed cylinder (3). The output shaft of the rotating motor (4) faces upward. The upper end of the output shaft of the rotating motor (4) is fixedly installed between the middle of the lower surface of the rotating disk (8). A fixing ring (5) is fixedly installed between the outer side of the rotating motor (4) and the inner side of the fixed cylinder (3) on the upper surface of the mounting plate (2).
4. The seismic damper auxiliary installation device according to claim 3, characterized in that, The upper surface of the fixing ring (5) is provided with an arc-shaped annular groove (6), and a number of limiting balls (7) are provided at intervals in the arc-shaped annular groove (6) on the fixing ring (5). The upper side of the outer ring surface of the limiting balls (7) is in contact with the corresponding position on the lower surface of the rotating disk (8).
5. The seismic damper auxiliary installation device according to claim 4, characterized in that, A first connecting block (11) is fixedly installed on the upper end of the output rod of the first hydraulic cylinder (9). A first limiting rod (13) is fixed on the middle of both sides of the first connecting block (11). A first rotating plate (15) is rotatably installed on the outer side of the outer ring surface of the first limiting rod (13) through a bearing. The upper side of the first rotating plate (15) is fixedly connected to the corresponding position on the lower surface of the first connecting plate (17).
6. The seismic damper auxiliary installation device according to claim 5, characterized in that, The upper end of the output rod of the second hydraulic cylinder (10) is fixedly installed with a second connecting block (12). The middle of both sides of the second connecting block (12) is fixed with a second limiting rod (14). The outer side of the outer ring of the second limiting rod (14) is rotatably installed with a second rotating plate (16) through a bearing. The upper side of the second rotating plate (16) is fixedly connected to the corresponding position of the lower surface of the second connecting plate (18).
7. The seismic damper auxiliary installation device according to claim 6, characterized in that, The lower surface of the first clamping block (25) is fixedly equipped with a first moving block (23), the lower surface of the first moving block (23) is fixedly equipped with a first driving slider (21), the lower surface of the second clamping block (26) is fixedly equipped with a second moving block (24), and the lower surface of the second moving block (24) is fixedly equipped with a second driving slider (22).
8. The seismic damper auxiliary installation device according to claim 7, characterized in that, The first guide rail (19) is fixedly installed on the middle part of the upper surface of the first connecting plate (17) corresponding to the first driving slider (21). The first driving slider (21) is matched with the first guide rail (19) and is slidably installed in the horizontal direction.
9. The seismic damper auxiliary installation device according to claim 8, characterized in that, The second guide rail (20) is fixedly installed on the middle part of the upper surface of the second connecting plate (18) corresponding to the second drive slider (22). The second drive slider (22) is matched with the second guide rail (20) and is slidably installed in the horizontal direction.
10. An installation method for an auxiliary installation device for a seismic damper as described in any one of claims 1-9, the installation method comprising the following steps: Step 1: When it is necessary to transport and install the seismic damper, align the seismic damper with the side of the first clamping block (25) and the side of the second clamping block (26) that are close to each other. Then, open the first drive slider (21) and the second drive slider (22). When the first drive slider (21) is open, the first drive slider (21) will move along the first guide rail (19) in the direction of close proximity. When the first drive slider (21) moves, it can drive the first clamping block (25) and the limiting pad (27) to move through the first moving block (23). The first clamping block (25) can clamp and limit the seismic damper through the limiting pad (27). Step 2: When the second drive slider (22) is open, the second drive slider (22) will move along the second guide rail (20) in the direction of approach. When the second drive slider (22) moves, it can drive the second clamping block (26) and the universal ball (28) to move through the second moving block (24). The second clamping block (26) can clamp and limit the shock damper through the universal ball (28). Step 3: When it is necessary to transport the seismic damper, the tracked drive wheel (1) is opened. When the tracked drive wheel (1) is open, the tracked drive wheel (1) can drive the installation device and the seismic damper that is clamped and limited to move, so as to transport the seismic damper. When it is necessary to adjust the installation direction of the seismic damper, the output shaft of the rotating motor (4) can drive the rotating disk (8) and the seismic damper that is clamped and limited to rotate, so as to adjust the installation direction of the seismic damper. Step 4: When it is necessary to adjust the installation angle of the seismic damper, control and adjust the first hydraulic cylinder (9) and the second hydraulic cylinder (10) to adjust the height of both ends of the seismic damper so that the seismic damper is at different angles. This helps to adjust the installation angle of the seismic damper to the required angle and facilitates the installation of the seismic damper.