Round sleeve part fixing device for combined installation of reaction tank and sedimentation tank
By designing a round-seam part fixing device, the intelligent combination installation and automatic adjustment of the reaction tank and the sedimentation tank are achieved using multiple fixing methods, the problem of sediment interfering with the reaction process is solved and the wastewater treatment efficiency is improved.
Patent Information
- Application Number
- CN202422201671.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-09
AI Technical Summary
In the joint construction design of reaction tanks and precipitation tanks, it is difficult for the existing technology to effectively separate precipitation and reaction processes, prevent precipitates from interfering with the reaction process, and at the same time adapt to the combination installation and adjustment of pools of different sizes.
A round-seamed parts fixing device is designed, including an outer sleeve fixing rack and an inner sleeve fixing rack. Through multiple fixing methods, the height and distance of the reaction tank and the sedimentation tank are automatically adjusted to avoid the wastewater inside the sedimentation tank interfering with the reaction process.
The effective combination installation and automatic adjustment of the reaction tank and the precipitation tank are realized, which improves the efficiency of wastewater reaction and precipitation, and avoids the interference of the precipitate on the reaction process.
Smart Images

Figure CN223013015U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of equipment processing, in particular to a fixing device for a circular sleeve part for combined installation of a reaction tank and a sedimentation tank. Background Technique
[0002] The processing technology of sleeve parts varies according to their functions, structural shapes, materials, heat treatments, and dimensional sizes. Divided by their structural shapes, they can generally be classified into two categories: short sleeves and long sleeves. In their processing, their clamping methods and processing methods are very different. Sleeve parts generally consist of inner and outer circular surfaces.
[0003] Common materials for sleeve parts are steel, cast iron, bronze, or brass, etc. For sliding bearings with higher requirements, a bimetallic structure is adopted, that is, a layer of materials such as babbit alloy is cast on the inner wall of a steel or cast iron sleeve by centrifugal casting. While improving the bearing life, precious materials are also saved. The outer circular surface of the sleeve part is mostly fitted with the frame or the hole of the box body by interference or transitional fit to play a supporting role.
[0004] The sedimentation tank and the reaction tank are two common structures in the water treatment process. The sedimentation tank is mainly used to remove suspended solids in water, while the reaction tank is used for chemical or biological reactions to remove pollutants in water. In some cases, in order to save space and cost, the sedimentation tank and the reaction tank can be built together. This design is called a combined sedimentation and reaction tank. The combined tank reduces the space required for building a sedimentation tank and a reaction tank separately, which is particularly important for areas with limited land resources. Through optimized design, the efficiency of sedimentation and reaction can be improved. Through reasonable water flow design, the sedimentation effect and reaction rate can be improved.
[0005] However, when the reaction tank and the sedimentation tank are built together, it is necessary to ensure the effective separation of the sedimentation and reaction processes to prevent the interference of sediment on the reaction process. The purpose of this application is to combine and build the reaction tank and the sedimentation tank through the design of circular sleeve parts, and use multiple fixing methods to intelligently combine and install reaction tanks and sedimentation tanks of different sizes, automatically adjust the height and distance between the reaction tank and the sedimentation tank, avoid the interference of wastewater inside the sedimentation tank on the reaction process, and improve the efficiency of wastewater reaction and sedimentation. Summary of the Utility Model
[0006] The purpose of the utility model is to provide a fixing device for a circular sleeve part for combined installation of a reaction tank and a sedimentation tank to solve the problems in the prior art.
[0007] To achieve the above purpose, the utility model provides the following technical solutions:
[0008] A circular sleeve part fixing device for combined installation of a reaction tank and a sedimentation tank. The device includes a reaction tank and a sedimentation tank for wastewater treatment. An installation platform is provided at the top of the sedimentation tank for fixed installation with the reaction tank. A multiple fixing mechanism is provided between the reaction tank and the installation platform for intelligent combined installation of the reaction tank and the sedimentation tank. The multiple fixing mechanism includes an outer sleeve fixing frame for externally fixing the reaction tank and the sedimentation tank and an inner sleeve fixing frame for internally and intelligently fixing reaction tanks and sedimentation tanks of different sizes. The outer sleeve fixing frame includes a bidirectional fixing plate.
[0009] By adopting the above technical solution: The reaction tank and the sedimentation tank are used for purifying wastewater. The installation platform can combine and fix the sedimentation tank and the reaction tank. The multiple fixing mechanism includes an outer sleeve fixing frame that can be combined and fixed outside the reaction tank and the sedimentation tank, and the inner sleeve fixing frame can be installed and fixed between reaction tanks and sedimentation tanks of different sizes by setting a number of circular sleeve parts. The bidirectional fixing plate can connect and fix the reaction tank and the sedimentation tank.
[0010] Further setting: The outer sleeve fixing frame includes a number of positioning circular sleeve pipes for positioning and connecting the positions of the reaction tank and the sedimentation tank. The positioning circular sleeve pipes are respectively arranged at opposite positions on both sides of the reaction tank and the sedimentation tank and are detachably connected to the reaction tank and the sedimentation tank. The bidirectional fixing plate is arranged on both sides of the positioning circular sleeve pipe and is respectively connected to the reaction tank and the sedimentation tank by bolts. A long screw for adjusting the height between the reaction tank and the sedimentation tank is provided between adjacent positioning circular sleeve pipes. A threaded port is provided inside the positioning circular sleeve pipe, and the long screw is engaged inside the threaded port.
[0011] By adopting the above technical solution: The positioning circular sleeve pipe can connect and position the reaction tank and the sedimentation tank. By arranging the positioning circular sleeve pipe at opposite positions on both sides of the reaction tank and the sedimentation tank and fixing it by engaging the long screw inside the threaded port of the positioning circular sleeve pipe, the reaction tank and the sedimentation tank can be fixed. The long screw can adapt to the connection height and distance of the reaction tank and the sedimentation tank for adjustment, so that reaction tanks and sedimentation tanks of different heights can be combined and installed.
[0012] Further setting: The inner kit fixing rack includes a bidirectional connecting platform for connecting and fixing reaction tanks and sedimentation tanks of different sizes. The bidirectional connecting platforms are respectively arranged at the bottom of the reaction tank and the top of the installation platform. The bidirectional connecting platform includes telescopic platforms on both sides and a traction platform. The traction platform is slidably connected inside the telescopic platform. A telescopic cylinder is arranged inside the telescopic platform. The traction platform is detachably connected to the adjacent traction platform. Positioning blocks are arranged at positions of the telescopic platforms close to the reaction tank and the installation platform respectively. The positioning blocks are integrally connected with the telescopic platforms. A number of positioning holes are arranged on the positioning blocks. A number of limiting holes for combined installation of the reaction tank and the installation platform are arranged at positions of the reaction tank and the installation platform close to the positioning holes. A clamping block for limiting and fixing the reaction tank and the installation platform is arranged between the positioning block and the adjacent positioning block. Notch openings are arranged on both sides of the top and bottom of the clamping block. Lifting blocks are arranged inside both sides of the notch openings. A number of cylinders for driving the lifting blocks to lift are arranged inside the notch openings. A number of socket cylinders for respectively inserting into the positioning holes and the limiting holes for clamping are arranged on the lifting blocks.
[0013] By adopting the above technical solution: The bidirectional connecting platform can respectively connect and fix the reaction tank and the installation platform. The telescopic cylinder can drive the traction platform to expand and contract inside the telescopic platform, so that the size of the bidirectional connecting platform can be adjusted, and thus it can be adapted to reaction tanks and sedimentation tanks of different sizes for combined installation and fixing. The positioning block can position the reaction tank and the installation platform at the same time, so as to be adapted through the positioning holes and the limiting holes. The cylinders inside the clamping block can drive the lifting blocks to move on both sides of the clamping block, and can drive the socket cylinders on both sides of the lifting blocks to move at the same time, so as to be clamped inside the positioning holes of the positioning block and the limiting holes inside the reaction tank and the installation platform, and complete the combined installation of the reaction tank and the sedimentation tank.
[0014] Further setting: A number of auxiliary platforms for assisting the combined installation of the reaction tank and the installation platform are arranged between the positioning block and the adjacent positioning block. Threaded round sleeves for fixing are arranged on both sides of the reaction tank and the installation platform close to the auxiliary platform. A bidirectional telescopic block for driving the threaded round sleeve to move and rotate for fixing is arranged inside the auxiliary platform. Motors for driving the threaded round sleeve to rotate and be limited are arranged at positions of the bidirectional telescopic block close to the threaded round sleeves on both sides.
[0015] By adopting the above technical solution: The auxiliary platforms are arranged at the four corners of the reaction tank and the installation platform to assist in the combined installation of the reaction tank and the sedimentation tank. The bidirectional telescopic block inside the auxiliary platform can move the threaded round sleeve, and the motor can rotate the threaded round sleeve into the holes reserved at the four corners of the reaction tank and the installation platform for fixing.
[0016] Further setting: A number of proximity sensors for positioning and detecting the positions of the positioning holes and the limiting holes are arranged inside the positioning block. Each proximity sensor is electrically connected to the cylinder inside the lifting block.
[0017] By adopting the above technical solution: The proximity sensor enables the positioning holes on the positioning block to be inductively adapted to the limiting holes inside the two-sided reaction tank and the mounting table, so that the socket cylinder moves, and the socket cylinder is clamped inside the positioning hole of the positioning block and the limiting holes inside the reaction tank and the mounting table, completing the combined installation of the reaction tank and the sedimentation tank.
[0018] Further setting: A diversion pipe for guiding the wastewater after reaction treatment in the reaction tank into the sedimentation tank for sedimentation is provided inside the reaction tank, and a water pump for connecting to the diversion pipe is provided inside the reaction tank.
[0019] By adopting the above technical solution: The diversion pipe can guide the wastewater inside the reaction tank into the sedimentation tank through the water pump for sedimentation, avoiding the interference of the wastewater inside the sedimentation tank on the reaction process.
[0020] Compared with the prior art, the beneficial effects of the present utility model are: It aims to combine and construct the reaction tank and the sedimentation tank by designing circular sleeve-like parts, and through the use of multiple fixing methods, intelligently combine and install reaction tanks and sedimentation tanks of different sizes, automatically adjust the height and distance between the reaction tank and the sedimentation tank, avoid the interference of the wastewater inside the sedimentation tank on the reaction process, and improve the efficiency of wastewater reaction and sedimentation. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to make the content of the present utility model be more clearly understood, the following further describes the present utility model in detail according to specific embodiments in conjunction with the drawings.
[0022] Figure 1 It is a schematic diagram of the external structure of a circular sleeve part fixing device for combining and installing a reaction tank and a sedimentation tank of the present utility model;
[0023] Figure 2 It is a partial cross-sectional view of a circular sleeve part fixing device for combining and installing a reaction tank and a sedimentation tank of the present utility model;
[0024] Figure 3 It is a schematic diagram of the specific structure at position A of a circular sleeve part fixing device for combining and installing a reaction tank and a sedimentation tank of the present utility model;
[0025] Figure 4 It is an overall cross-sectional view of a circular sleeve part fixing device for combining and installing a reaction tank and a sedimentation tank of the present utility model.
[0026] In the figure, 1. Reaction tank; 2. Sedimentation tank; 3. Diversion pipe; 4. Mounting table; 5. Bidirectional fixing plate; 6. Positioning circular sleeve; 7. Longitudinal screw; 8. Telescopic table; 9. Traction table; 10. Positioning block; 11. Clamping block; 12. Lifting block; 13. Socket cylinder; 14. Auxiliary table; 15. Threaded circular sleeve; 16. Bidirectional telescopic block. Detailed implementation mode
[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0028] Please refer to Figures 1 to 4 , in the embodiment of the present invention, a fixing device for a circular sleeve part for combined installation of a reaction tank and a sedimentation tank. The device includes a reaction tank 1 and a sedimentation tank 2 for wastewater treatment. A diversion pipe 3 for guiding the wastewater treated in the reaction tank into the sedimentation tank 2 for sedimentation is provided inside the reaction tank 1, and a water pump for connecting to the diversion pipe 3 is provided inside the reaction tank 1.
[0029] The diversion pipe 3 can guide the wastewater inside the reaction tank 1 into the sedimentation tank 2 through the water pump for sedimentation, avoiding the interference of the wastewater inside the sedimentation tank 2 on the reaction process.
[0030] An installation platform 4 for fixedly installing with the reaction tank 1 is provided at the top of the sedimentation tank 2. The reaction tank 1 and the sedimentation tank 2 are used for purifying wastewater. The installation platform 4 can fixedly install and combine the sedimentation tank 2 and the reaction tank 1. A multiple fixing mechanism for intelligently combining and installing the reaction tank 1 and the sedimentation tank 2 is provided between the reaction tank 1 and the installation platform 4. The multiple fixing mechanism includes an outer sleeve fixing frame for externally fixing the reaction tank 1 and the sedimentation tank 2 and an inner sleeve fixing frame for internally and intelligently fixing reaction tanks 1 and sedimentation tanks 2 of different sizes;
[0031] The outer sleeve fixing frame can be fixedly combined outside the reaction tank 1 and the sedimentation tank 2, and the inner sleeve fixing frame can be installed and fixed between reaction tanks 1 and sedimentation tanks 2 of different sizes by setting a number of circular sleeve parts,
[0032] The outer sleeve fixing frame includes a bidirectional fixing plate 5. The bidirectional fixing plate 5 can connect and fix the reaction tank 1 and the sedimentation tank 2. The outer sleeve fixing frame also includes a number of positioning circular sleeve pipes 6 for positioning and connecting the positions of the reaction tank 1 and the sedimentation tank 2. The positioning circular sleeve pipes 6 are respectively arranged at opposite positions on both sides of the reaction tank 1 and the sedimentation tank 2 and are detachably connected to the reaction tank 1 and the sedimentation tank 2. The bidirectional fixing plate 5 is arranged on both sides of the positioning circular sleeve pipes 6 and is respectively bolted to the reaction tank 1 and the sedimentation tank 2. A long screw 7 for adjusting the height between the reaction tank 1 and the sedimentation tank 2 is provided between adjacent positioning circular sleeve pipes 6. A threaded port is provided inside the positioning circular sleeve pipe 6, and the long screw 7 is engaged inside the threaded port.
[0033] The positioning circular sleeve 6 can connect and position the reaction tank 1 and the sedimentation tank 2. The positioning circular sleeve 6 is arranged on both sides of the reaction tank 1 and the sedimentation tank 2, and is fixed by the long screw 7 engaged with the threaded opening inside the positioning circular sleeve 6. The long screw 7 can adapt to the connection height and distance of the reaction tank 1 and the sedimentation tank 2 to adjust, so that the reaction tank 1 and the sedimentation tank 2 of different heights can be combined and installed.
[0034] The inner set fixing frame includes a two-way connecting platform for connecting and fixing reaction pools 1 and sedimentation pools 2 of different sizes. The two-way connecting platforms are respectively arranged at the bottom of the reaction pool 1 and the top of the mounting platform 4. The two-way connecting platform includes telescopic platforms 8 and traction platforms 9 on both sides. The traction platform 9 is slidably connected inside the telescopic platform 8. A telescopic cylinder is arranged inside the telescopic platform 8. The traction platform 9 is detachably connected to the adjacent traction platform 9. The telescopic platform 8 is respectively provided with positioning blocks 10 near the reaction pool 1 and the mounting platform 4. The positioning blocks 10 are integrally connected to the telescopic platform 8. The positioning blocks 10 are provided with a plurality of Positioning holes, reaction pool 1 and mounting platform 4 are provided with a plurality of limiting holes for combined installation of reaction pool 1 and mounting platform 4 near the positioning holes, and a clamping block 11 for limiting and fixing reaction pool 1 and mounting platform 4 is provided between the positioning block 10 and the adjacent positioning block 10, and slots are provided on both sides of the top and bottom of the clamping block 11, and lifting blocks 12 are provided inside the slots on both sides, and a plurality of cylinders for driving the lifting blocks 12 to lift and lower are provided inside the slots, and a plurality of sockets 13 for respectively embedding into the positioning holes and the limiting holes for clamping are provided on the lifting blocks 12.
[0035] A plurality of proximity sensors for locating and detecting the positions of the positioning holes and the limit holes are arranged inside the positioning block 10 , and each proximity sensor is electrically connected to the cylinder inside the lifting block 12 .
[0036] The two-way connecting platform can connect and fix the reaction pool 1 and the mounting platform 4 respectively. The telescopic cylinder can drive the traction platform 9 to be telescopic inside the telescopic platform 8, so that the size of the two-way connecting platform can be adjusted, so that the reaction pools 1 and sedimentation tanks 2 of different sizes can be adapted for combined installation and fixation. The positioning block 10 can simultaneously position the reaction pool 1 and the mounting platform 4, so as to adapt through the positioning hole and the limiting hole. The cylinder inside the clamping block 11 can drive the lifting block 12 to move on both sides of the clamping block 11, and can simultaneously drive the sleeve 13 on the lifting blocks 12 on both sides to move, so as to be clamped in the positioning hole of the positioning block 10 and the limiting hole inside the reaction pool 1 and the mounting platform 4. The proximity sensor can make the positioning hole on the positioning block 10 sense and adapt to the limiting hole inside the reaction pool 1 and the mounting platform 4 on both sides, so that the cylinder drives the sleeve 13 to move, and the sleeve 13 is clamped in the positioning hole of the positioning block 10 and the limiting hole inside the reaction pool 1 and the mounting platform 4, so as to complete the combined installation of the reaction pool 1 and the sedimentation tank 2.
[0037] A plurality of auxiliary tables 14 for assisting the reaction pool 1 and the mounting table 4 in combined installation are arranged between the positioning block 10 and the adjacent positioning blocks 10. Threaded circular sleeves 15 for fixing are arranged on both sides of the reaction pool 1 and the mounting table 4 near the auxiliary tables 14. Reserved holes are arranged at positions of the reaction pool 1 and the mounting table 4 near the threaded circular sleeves 15. A bidirectional telescopic block 16 for driving the threaded circular sleeves 15 to move, rotate and fix is arranged inside the auxiliary table 14. A motor for driving the threaded circular sleeves 15 to rotate and limit is arranged at positions of the bidirectional telescopic block 16 near the threaded circular sleeves 15 on both sides.
[0038] The auxiliary table 14 is arranged at the four corners of the reaction tank 1 and the mounting table 4 to assist in the combined installation of the reaction tank 1 and the sedimentation tank 2. The threaded circular sleeve 15 can be moved by the bidirectional telescopic block 16 inside the auxiliary table 14, and the threaded circular sleeve 15 can be rotated by the motor to enter the reserved holes at the four corners of the reaction tank 1 and the mounting table 4 for fixation.
[0039] The working principle of the utility model is as follows: the operator can adjust the telescopic cylinder according to the size of the reaction tank 1 and the sedimentation tank 2, and the telescopic cylinder drives the traction platform 9 to telescope inside the telescopic platform 8, so as to adjust the size of the two-way connecting platform, so as to adapt to the reaction tanks 1 and sedimentation tanks 2 of different sizes for combined installation and fixation, and at the same time, according to the positions of the internal positioning holes of the positioning blocks 10 on both sides of the two-way connecting platform, holes are drilled and marked as limit holes, and the positioning holes on the positioning blocks 10 are aligned with a plurality of limit holes, and the proximity sensor inside the positioning blocks 10 can make the positioning holes on the positioning blocks 10 sense and adapt to the limit holes inside the reaction tanks 1 and the mounting platform 4 on both sides, and the cylinder inside the clamping block 11 can drive the lifting block 12 to move on both sides of the clamping block 11, and can simultaneously drive the sleeve 13 on the lifting blocks 12 on both sides to move, so as to be clamped in the positioning holes of the positioning block 10 and the internal limit holes of the reaction tank 1 and the mounting platform 4, so as to complete the combined installation of the reaction tank 1 and the sedimentation tank 2;
[0040] At the same time, the bidirectional telescopic block 16 inside the auxiliary table 14 is turned on to move the threaded circular sleeve 15. The motor can be turned on to rotate the threaded circular sleeve 15 into the holes reserved at the four corners of the reaction tank 1 and the mounting table 4 for fixation. After the fixation is completed, according to the reserved distance and height between the reaction tank 1 and the sedimentation tank 2, the long screw 7 is engaged with the threaded opening inside the positioning circular sleeve 6 for fixation, so that the reaction tank 1 and the sedimentation tank 2 can be fixed, and the reaction tank 1 and the sedimentation tank 2 at different heights can be combined and installed.
[0041] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-mentioned exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.
Claims
1. A round sleeve parts fixing device for combining and installing a reaction tank and a sedimentation tank, characterized in that: The device comprises a reaction tank (1) and a sedimentation tank (2) for treating wastewater, wherein a mounting platform (4) for fixing the reaction tank (1) is provided on the top of the sedimentation tank (2), and a multiple fixing mechanism for intelligently combining and installing the reaction tank (1) and the sedimentation tank (2) is provided between the reaction tank (1) and the mounting platform (4), wherein the multiple fixing mechanism comprises an outer set fixing frame for externally fixing the reaction tank (1) and the sedimentation tank (2) and an inner set fixing frame for internally intelligently fixing reaction tanks (1) and sedimentation tanks (2) of different sizes, and the outer set fixing frame comprises a bidirectional fixing plate (5).
2. A round sleeve parts fixing device for combining and installing a reaction tank and a sedimentation tank according to claim 1, characterized in that The outer set fixing frame comprises a plurality of positioning circular sleeves (6) for positioning and connecting the reaction tank (1) and the sedimentation tank (2). The positioning circular sleeves (6) are respectively arranged at opposite positions on both sides of the reaction tank (1) and the sedimentation tank (2), and are detachably connected to the reaction tank (1) and the sedimentation tank (2). A bidirectional fixing plate (5) is arranged on both sides of the positioning circular sleeve (6), and is respectively connected to the reaction tank (1) and the sedimentation tank (2) by bolts. A long screw (7) for adjusting the height between the reaction tank (1) and the sedimentation tank (2) is arranged between the positioning circular sleeve (6) and the adjacent positioning circular sleeve (6). A threaded opening is arranged inside the positioning circular sleeve (6), and the long screw (7) is meshed inside the threaded opening.
3. A round sleeve parts fixing device for combining and installing a reaction tank and a sedimentation tank according to claim 1, characterized in that The inner set fixing frame comprises a two-way connecting platform for connecting and fixing reaction pools (1) and sedimentation pools (2) of different sizes, the two-way connecting platform being respectively arranged at the bottom of the reaction pool (1) and the top of the mounting platform (4), the two-way connecting platform comprising telescopic platforms (8) on both sides and a traction platform (9), the traction platform (9) being slidably connected inside the telescopic platform (8), a telescopic cylinder being arranged inside the telescopic platform (8), the traction platform (9) being detachably connected to an adjacent traction platform (9), the telescopic platform (8) being respectively provided with positioning blocks (10) at positions close to the reaction pool (1) and the mounting platform (4), the positioning blocks (10) being integrally connected to the telescopic platform (8), the positioning blocks (10) A plurality of positioning holes are provided on the upper surface, and a plurality of limiting holes for combined installation of the reaction pool (1) and the mounting platform (4) are provided at positions near the positioning holes on the reaction pool (1) and the mounting platform (4). A clamping block (11) for limiting and fixing the reaction pool (1) and the mounting platform (4) is provided between the positioning block (10) and the adjacent positioning block (10). Notches are provided on both sides of the top and bottom of the clamping block (11), and lifting blocks (12) are provided inside the notches on both sides. A plurality of cylinders for driving the lifting blocks (12) to be lifted and lowered are provided inside the notches. The lifting blocks (12) are provided with a plurality of sleeves (13) for respectively embedding into the positioning holes and the limiting holes for clamping.
4. A round sleeve parts fixing device for combining and installing a reaction tank and a sedimentation tank according to claim 3, characterized in that A plurality of auxiliary tables (14) for assisting the reaction pool (1) and the mounting table (4) in combined mounting are arranged between the positioning block (10) and the adjacent positioning block (10); threaded round sleeves (15) for fixing are arranged on both sides of the reaction pool (1) and the mounting table (4) near the auxiliary tables (14); a bidirectional telescopic block (16) for driving the threaded round sleeves (15) to move, rotate and fix is arranged inside the auxiliary table (14); a motor for driving the threaded round sleeves (15) to rotate and limit is arranged at a position of the bidirectional telescopic block (16) near the threaded round sleeves (15) on both sides.
5. A round sleeve parts fixing device for combining and installing a reaction tank and a sedimentation tank according to claim 3, characterized in that A plurality of proximity sensors for locating and detecting the positions of the positioning holes and the limit holes are arranged inside the positioning block (10), and each proximity sensor is electrically connected to a cylinder inside the lifting block (12).
6. A round sleeve parts fixing device for combining and installing a reaction tank and a sedimentation tank according to claim 1, characterized in that The reaction tank (1) is provided with a guide pipe (3) for guiding the wastewater from the reaction treatment into the sedimentation tank (2) for sedimentation, and the reaction tank (1) is provided with a water pump for connecting to the guide pipe (3).