Auxiliary positioning device for hydropower construction
By designing a combination of support plates, chutes, and moving components, the positioning support and stability of the hydropower construction auxiliary positioning device in multiple locations were achieved, solving the adaptability and safety issues of existing equipment when the position is obstructed.
Patent Information
- Application Number
- CN202520726513.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-04-17
AI Technical Summary
Existing hydropower construction auxiliary positioning equipment cannot provide positioning support when the equipment cannot be moved below the required installation location of the pipeline, and it is prone to tipping over when it is outside the support range at the bottom of the equipment, affecting the safety and adaptability of the equipment.
A hydroelectric construction auxiliary positioning device was designed, which includes a support plate, a slide, a moving component, a sliding component, a rotating component, a lifting component, and a positioning component. It utilizes a combination of a motor and a screw to realize the movement and rotation of the sliding plate and the positioning plate, enabling positioning and support at different positions, and maintaining the balance of the equipment through counterweights and batteries.
It improves the adaptability of the equipment, enabling effective positioning and support in various locations, avoiding the inability to support due to obstruction, and maintaining the stability of the equipment to prevent tipping.
Smart Images

Figure CN223839873U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of auxiliary positioning equipment for hydropower construction, specifically to an auxiliary positioning device for hydropower construction. Background Technology
[0002] During hydropower construction, auxiliary positioning equipment is often used to position and support pipelines for installation and fixation. Utility model patent application CN202321785018.8 discloses such equipment, which allows for the rotation of pipelines during installation. This enables longitudinal or lateral installation, as well as multi-angle installation, reducing limitations during installation and minimizing the frequency of worker movement. While increasing the device's practicality, it also reduces worker workload. Furthermore, it clamps the pipeline during installation, preventing it from falling during lifting or rotation, and increasing stability. However, existing auxiliary positioning equipment has limitations. Firstly, it often only supports pipelines above the equipment. When the equipment cannot be moved below the desired installation location, it cannot provide support. Secondly, when the pipeline is positioned outside the equipment's support range, it can easily tip over, compromising the equipment's safety.
[0003] Therefore, how to design auxiliary positioning devices for hydropower construction has become a problem we need to solve. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an auxiliary positioning device for hydropower construction to solve the problems mentioned in the background technology. This utility model is reasonably designed, convenient to use, and suitable for auxiliary positioning of pipelines in hydropower construction.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an auxiliary positioning device for hydropower construction, comprising a support plate and a sliding groove. A movable component is installed on the support plate, the movable component comprising a support plate and rollers. A sliding component is installed on the sliding groove, the sliding component comprising a sliding plate and a first motor. A rotating component is installed on the sliding plate, the rotating component comprising a guide sleeve and a support block. A lifting component is installed on the guide sleeve, the lifting component comprising a second motor and a first screw. A positioning component is installed on the first screw, the positioning component comprising a rib sleeve and a positioning plate. A support component is installed on the sliding plate, the support component comprising a screw sleeve and a second screw.
[0006] Furthermore, the support plates are welded to both ends of the support plate, the rollers are bolted to the bottom of the support plate, the slide groove is opened on the inner side of the support plate, the slide plate is locked in the inner side of the slide groove, and the top and bottom of the slide plate are locked in the outer side of the support plate.
[0007] Furthermore, the support block is welded to the top of the slide plate, the bottom end of the guide sleeve is mounted on the support block via a rotating shaft, the second motor is mounted on the inner wall of the bottom end of the guide sleeve via bolts, the first screw is welded to the output shaft of the second motor, the outer side of the prism sleeve is clamped on the inner wall of the guide sleeve, the top end of the prism sleeve extends to the top of the guide sleeve, the positioning plate is welded to the top end of the prism sleeve, and the prism sleeve is threaded onto the outer side of the first screw.
[0008] Furthermore, there are two screws, which are respectively mounted on the slide plate and the guide sleeve via a rotating shaft. Both ends of the screw sleeve are threaded onto the outer side of the two screws.
[0009] Furthermore, the motor is bolted to the outer side of the support plate, and a lead screw is mounted on the output shaft of the motor. The other end of the lead screw passes through a groove and is mounted on the inner side of the support plate through a bearing. The slide plate is threaded onto the outer side of the lead screw.
[0010] Furthermore, a counterweight is placed on the top of the support plate, and a motor is bolted to one side of the support plate. A lead screw is mounted on the output shaft of the motor, and one end of the lead screw passes through the counterweight via a thread and is mounted on the support plate via a bearing.
[0011] Furthermore, a battery is bolted to the top of the counterweight, and a switch assembly is bolted to one side of the support plate.
[0012] Furthermore, the battery is connected to the switch assembly via wires, and the switch assembly is connected to motor one, motor two, and motor three via wires.
[0013] Beneficial effects: 1. When using this auxiliary positioning device for hydropower construction, the support plate and the strut plate are moved to the bottom of the pipe to be installed and fixed, or close to the bottom of the installation position, by means of rollers. Motor 1 pushes the sliding plate on the support plate to move left and right through the lead screw 1. Motor 2 drives the rib sleeve to move up and down under the limit of the guide sleeve through the screw 1. In this way, the positioning plate is supported on the bottom of the pipe, and the pipe is positioned and supported at the installation position. If the installation position is outside the support plate, the sliding plate is moved to the leftmost side of the support plate. The screw sleeve is rotated. The screw sleeve pushes the two screws 2 outward through the thread, which causes the guide sleeve to rotate to the left on the support block through the rotating shaft. This causes the positioning plate to rotate to the outside of the support range of the support plate and the strut plate. This can improve the positioning and support range of the pipe and avoid the inability to effectively position and support the pipe due to the bottom of the installation position being blocked. This improves the adaptability of the equipment.
[0014] 2. When the auxiliary positioning device for hydropower construction is used to position and support the pipe outside the support range of the support plate and the spur plate, the motor three pushes the counterweight to the right through the lead screw two. The counterweight drives the battery to move to the rightmost side of the spur plate, thereby effectively using the weight of the counterweight and the battery to maintain the balance of the equipment. This prevents the positioning plate from tipping over due to the pressure of the pipe after it moves to the left side of the spur plate, thus ensuring the safety of the equipment support.
[0015] 3. This hydropower construction auxiliary positioning device is reasonably designed, highly efficient and convenient to use, and is suitable for auxiliary positioning of pipelines in hydropower construction. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of an auxiliary positioning device for hydropower construction according to the present invention;
[0017] Figure 2 This is a cross-sectional view of an auxiliary positioning device for hydropower construction according to this utility model;
[0018] Figure 3 This is a schematic diagram of the guide sleeve of an auxiliary positioning device for hydropower construction according to this utility model;
[0019] In the diagram: 1. Support plate; 2. Slide groove; 3. Support plate; 4. Roller; 5. Slide plate; 6. Lead screw one; 7. Motor one; 8. Support block; 9. Guide sleeve; 10. Motor two; 11. Screw one; 12. Rib sleeve; 13. Positioning plate; 14. Screw sleeve; 15. Screw two; 16. Counterweight; 17. Motor three; 18. Lead screw two; 19. Battery; 20. Switch assembly. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] Please see Figures 1 to 3 This utility model provides a technical solution: an auxiliary positioning device for hydropower construction, including a support plate 1 and a sliding groove 2. A moving component is installed on the support plate 1, the moving component including a support plate 3 and rollers 4. A sliding component is installed on the sliding groove 2, the sliding component including a sliding plate 5 and a motor 7. A rotating component is installed on the sliding plate 5, the rotating component including a guide sleeve 9 and a support block 8. A lifting component is installed on the guide sleeve 9, the lifting component including a motor 10 and a screw 11. A positioning component is installed on the screw 11, the positioning component including a rib sleeve 12 and a positioning plate 13. A support component is installed on the sliding plate 5, the support component including a screw sleeve 14 and a screw 15. The motor 7 is bolted to the outer side of the support plate 3. A lead screw 6 is installed on the output shaft of the motor 7. The other end of the lead screw 6 passes through the sliding groove 2 and is mounted on the inner side of the support plate 3 through a bearing. The sliding plate 5 is threaded onto the outer side of the lead screw 6. A counterweight 16 is placed on the top of the support plate 1. A motor 17 is bolted to one side of the support plate 3. A lead screw 18 is mounted on the output shaft of the motor 17. One end of the lead screw 18 passes through the counterweight 16 and is mounted on the support plate 3 via a bearing. A battery 19 is bolted to the top of the counterweight 16. A switch assembly 20 is bolted to one side of the support plate 3. When positioning and supporting the pipe outside the support range of the support plate 3 and the support plate 1, the motor 17 pushes the counterweight 16 to the right via the lead screw 18. The counterweight 16 drives the battery 19 to the rightmost side of the support plate 1, thereby effectively using the weight of the counterweight 16 and the battery 19 to maintain the balance of the equipment. This prevents the positioning plate 13 from tipping over due to the pressure of the pipe after it moves to the left side of the support plate 1, ensuring the safety of the equipment support.
[0022] In this embodiment, the support plates 3 are welded to both ends of the support plate 1, the rollers 4 are bolted to the bottom of the support plates 3, the sliding groove 2 is formed on the inner side of the support plate 1, the sliding plate 5 is locked inside the sliding groove 2, and the top and bottom of the sliding plate 5 are locked to the outer side of the support plate 1. The support block 8 is welded to the top of the sliding plate 5, the bottom end of the guide sleeve 9 is mounted on the support block 8 via a rotating shaft, the second motor 10 is bolted to the inner wall of the bottom end of the guide sleeve 9, and the first screw 11 is welded to the output of the second motor 10. On the output shaft, the outer side of the prism sleeve 12 is engaged with the inner wall of the guide sleeve 9, and the top end of the prism sleeve 12 extends to the top of the guide sleeve 9. The positioning plate 13 is welded to the top end of the prism sleeve 12. The prism sleeve 12 is threaded onto the outer side of the first screw 11. There are two second screws 15, which are respectively mounted on the slide plate 5 and the guide sleeve 9 via a rotating shaft. Both ends of the screw sleeve 14 are threaded onto the outer sides of the two second screws 15. The battery 19 is connected to the switch assembly 2 via wires. The switch group 20 is connected to motor 7, motor 10, and motor 17 via wires. In use, the support plate 1 and the support plate 3 are moved to the bottom of the pipe to be installed and fixed, or close to the bottom of the installation position, via rollers 4. Motor 7 pushes the sliding plate 5 to move left and right on the support plate 1 via screw 6. Motor 10 drives the rib sleeve 12 to move up and down under the limit of the guide sleeve 9 via screw 11, thereby supporting the positioning plate 13 at the bottom of the pipe and positioning the pipe at the installation position. If the installation position is outside the support plate 1, the sliding plate 5 is moved to the leftmost side on the support plate 1, and the screw sleeve 14 is rotated. The screw sleeve 14 pushes the two screws 15 outward through the thread, thereby causing the guide sleeve 9 to rotate to the left on the support block 8 via the rotating shaft. This causes the positioning plate 13 to rotate to the outside of the support range of the support plate 1 and the support plate 3, which can improve the positioning support range of the pipe and avoid the inability to effectively position and support the pipe due to the bottom of the installation position being blocked, thus improving the adaptability of the equipment.
[0023] This hydropower construction auxiliary positioning device provides power to all electrical equipment via battery 19. In use, the support plate 1 and support plate 3 are moved to the bottom of the pipe to be installed and fixed, or close to the bottom of the installation position, via rollers 4. Motor 7 pushes the sliding plate 5 on the support plate 1 to move left and right via screw 6. Motor 10 drives the rib sleeve 12 to move up and down under the limit of guide sleeve 9 via screw 11, thereby supporting the positioning plate 13 at the bottom of the pipe and positioning the pipe at the installation position. If the installation position is outside the support plate 1, the sliding plate 5 is moved to the leftmost side of the support plate 1, and the screw sleeve 14 is rotated. The screw sleeve 14 pushes the two screws 15 outward via threads, thereby causing the guide sleeve 9 to rotate via the shaft on the support block 8. The positioning plate 13 rotates to the left, thus moving to the outside of the support range of the support plate 1 and the support plate 3. This increases the range of positioning support for the pipeline and prevents the pipeline from being blocked at the bottom of its installation position, thus improving the adaptability of the equipment. When positioning support for the pipeline outside the support range of the support plate 3 and the support plate 1, the motor 17 pushes the counterweight 16 to the right through the lead screw 18. The counterweight 16 drives the battery 19 to the rightmost side of the support plate 1, thus effectively using the weight of the counterweight 16 and the battery 19 to maintain the balance of the equipment. This prevents the positioning plate 13 from tipping over due to the pressure of the pipeline after it moves to the left side of the support plate 1, ensuring the safety of the equipment support.
[0024] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A hydropower construction auxiliary positioning device, comprising a support plate (1) and a sliding groove (2), wherein a moving component is installed on the support plate (1), the moving component comprising a support plate (3) and rollers (4), characterized in that: A sliding assembly is installed on the slide (2), the sliding assembly includes a slide plate (5) and a motor (7), a rotating assembly is installed on the slide plate (5), the rotating assembly includes a guide sleeve (9) and a support block (8), a lifting assembly is installed on the guide sleeve (9), the lifting assembly includes a motor (2) and a screw (11), a positioning assembly is installed on the screw (11), the positioning assembly includes a prism sleeve (12) and a positioning plate (13), and a support assembly is installed on the slide plate (5), the support assembly includes a screw sleeve (14) and a screw (2) (15).
2. The auxiliary positioning device for hydropower construction according to claim 1, characterized in that: The support plate (3) is welded to both ends of the support plate (1). The roller (4) is installed at the bottom of the support plate (3) by bolts. The groove (2) is opened on the inner side of the support plate (1). The slide plate (5) is stuck on the inner side of the groove (2). The top and bottom of the slide plate (5) are both stuck on the outer side of the support plate (1).
3. The auxiliary positioning device for hydropower construction according to claim 2, characterized in that: The support block (8) is welded to the top of the slide plate (5). The bottom end of the guide sleeve (9) is mounted on the support block (8) via a rotating shaft. The second motor (10) is mounted on the inner wall of the bottom end of the guide sleeve (9) by bolts. The first screw (11) is welded to the output shaft of the second motor (10). The outer side of the prism sleeve (12) is clamped on the inner wall of the guide sleeve (9). The top end of the prism sleeve (12) extends to the top of the guide sleeve (9). The positioning plate (13) is welded to the top end of the prism sleeve (12). The prism sleeve (12) is threaded onto the outer side of the first screw (11).
4. The auxiliary positioning device for hydropower construction according to claim 3, characterized in that: There are two screws (15). The two screws (15) are mounted on the slide plate (5) and the guide sleeve (9) respectively through the rotating shaft. Both ends of the screw sleeve (14) are threaded onto the outer side of the two screws (15).
5. The auxiliary positioning device for hydropower construction according to claim 1, characterized in that: The motor (7) is bolted to the outer side of the support plate (3). A lead screw (6) is mounted on the output shaft of the motor (7). The other end of the lead screw (6) passes through the slide groove (2) and is mounted on the inner side of the support plate (3) through a bearing. The slide plate (5) is threaded onto the outer side of the lead screw (6).
6. The auxiliary positioning device for hydropower construction according to claim 5, characterized in that: A counterweight (16) is placed on the top of the support plate (1). A motor (17) is installed on one side of the support plate (3) by bolts. A lead screw (18) is installed on the output shaft of the motor (17). One end of the lead screw (18) passes through the counterweight (16) by thread and is installed on the support plate (3) by bearing.
7. The auxiliary positioning device for hydropower construction according to claim 6, characterized in that: A battery (19) is bolted to the top of the counterweight (16), and a switch assembly (20) is bolted to one side of the support plate (3).
8. The auxiliary positioning device for hydropower construction according to claim 7, characterized in that: The battery (19) is connected to the switch group (20) via wires, and the switch group (20) is connected to motor one (7), motor two (10) and motor three (17) via wires.
Citation Information
Patent Citations
Auxiliary positioning equipment for hydropower construction
CN220745257U