Reinforcing mechanism for high and large aqueduct in deep water area

The design of the bidirectional screw and chute structure simplifies the reinforcement process of the aqueduct, solves the problem of complex installation and maintenance caused by too many components, and achieves efficient and stable aqueduct fixing and easy maintenance.

CN223907369UActive Publication Date: 2026-02-13SICHUAN WATER CONSERVANCY & ELECTRIC POWER ENG BUREAU
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Patent Information

Application Number
CN202520508972.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-02-13
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

Existing aqueduct reinforcement structures have too many components, which increases the complexity of installation and maintenance, resulting in high maintenance costs and a large workload.

Method used

It adopts a bidirectional screw and slide groove structure. By turning the throttle, the bidirectional screw is driven to rotate, which drives the moving platform and its clamping plate to move towards or separate from the center, so as to achieve quick clamping and fixation. Combined with the use of limit posts and fixing bolts, the connection method is simplified and the number of parts is reduced.

Benefits of technology

This technology enables rapid clamping and fixation of the aqueduct, reducing the probability of malfunctions and maintenance costs, improving the convenience of installation and maintenance, enhancing stability and adaptability, and ensuring safety and reliability.

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Abstract

The utility model relates to the technical field of water diversion aqueducts, and discloses a reinforcing mechanism for a high and large aqueduct in a deep water area, the reinforcing mechanism comprises a fixed beam and two moving tables, a first sliding groove is formed in the fixed beam, a two-way screw rod is rotatably connected in the first sliding groove, and a rotating handle is rotatably arranged on one side of the two-way screw rod; first threaded holes are formed in the two sliding blocks in a penetrating mode, and clamping plates are fixedly connected to one sides of the upper ends of the two moving tables. The reinforcing mechanism for the high and large aqueduct in the deep water area can be adjusted according to the actual size and shape of the aqueduct, the structure of the device is relatively simple, the connection mode between components is clear, installation and maintenance are easy, meanwhile, due to the fact that the number of the components is relatively small, the fault occurrence probability and the maintenance cost are reduced, and the service life of the aqueduct is prolonged. The reinforcing mechanism for the high and large aqueduct in the deep water area has the advantages of being efficient in adjustment and fixation, high in stability and adaptability, easy to install and maintain, safe, reliable and the like.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of water diversion aqueducts, in particular to a reinforcing mechanism for a high and large aqueduct in a deep water area. BACKGROUND

[0002] An aqueduct refers to an overhead water channel for conveying water across rivers, valleys, depressions and roads, and is commonly used for irrigation and water delivery and also for flood and sand discharge, and large aqueducts can also be used for navigation, and the aqueduct is mainly built by using stone, concrete, reinforced concrete and stainless steel, and is also called an elevated channel and a water delivery bridge, and is a water delivery system composed of bridges, tunnels or ditches.

[0003] The prior art (publication number: CN221095024U) discloses a reinforcing mechanism for an arch aqueduct, which comprises two channel bodies, the bottom surface of each channel body is fixedly connected with a fixed column, the bottom surface of each fixed column is fixedly connected with an arch, the two ends of each arch are fixedly connected with a channel pier, the bottom surface of each arch is provided with a positioning plate, and the surface of each fixed plate is provided with a positioning rod connected with the channel body.

[0004] The arch aqueduct reinforcing mechanism is provided with clamping blocks, fixed plates, positioning rods, sliding grooves, fixed bolts, rollers, push-pull frames, protrusions, threaded rods, rollers, rotating wheels and leverage rods, when the aqueduct needs to be reinforced, the rotating wheel is rotated through the leverage rod, the threaded rod is moved downward through the threaded sleeve, the protrusion is driven by the threaded rod to make the roller on the push-pull frame slide downward through the sliding groove, the clamping block is clamped inward to tightly attach the fixed plate to the channel body and prevent the fixed plate from falling off, the positioning rod and the fixed bolt are arranged on the fixed plate and fixedly connected with the channel body, and the aqueduct is more stable during reinforcement, the device is cooperated with multiple components to enhance the stability, however, too many components may increase the complexity of installation and maintenance, the multiple components mean more maintenance points, regular inspection, lubrication and replacement of worn-out components are needed, the maintenance workload is increased, and the maintenance cost is also increased. Content of the utility model

[0005] In view of the defects of the prior art, the reinforcing mechanism for the high and large aqueduct in the deep water area has the advantages of simple maintenance, solves the problems that the device is cooperated with multiple components to enhance the stability, too many components may increase the complexity of installation and maintenance, the multiple components mean more maintenance points, regular inspection, lubrication and replacement of worn-out components are needed, the maintenance workload is increased, and the maintenance cost is also increased.

[0006] To achieve the above object, the application provides the following technical scheme: a reinforcing mechanism for a high and large flume in a deep water area, comprising a fixed beam and two moving tables, the fixed beam is internally provided with a first sliding groove, the first sliding groove is internally rotatably connected with a bidirectional screw rod, the bidirectional screw rod is rotatably provided with a handle on one side, both sides of the fixed beam are internally provided with two second sliding grooves arranged in a mirror image, both the moving tables are fixedly connected with sliding blocks at the bottom ends, both the sliding blocks are internally provided with first threaded holes, both the moving tables are fixedly connected with two sliding strips arranged in a mirror image at the bottom ends, both the moving tables are fixedly connected with clamping plates on one side at the upper ends, both the clamping plates are fixedly connected with four limiting columns arranged in a rectangular array on one side, both the clamping plates are internally provided with mounting holes, both the clamping plates are fixedly connected with two first reinforcing ribs arranged in a mirror image on one side, and the two first reinforcing ribs in each group are fixedly connected with the moving tables at the ends away from the clamping plates.

[0007] Through the above scheme, the two moving tables can be moved and adjusted along the fixed beam through the arrangement of the bidirectional screw rod and the first sliding groove, and the handle can be rotated to drive the bidirectional screw rod to rotate, thereby driving the moving table and the clamping plate thereon to move closer to the center or separate, realizing the rapid clamping and fixing of the flume, and the actual size and shape of the flume can be adjusted, the structure of the device is relatively simple, the connection mode between the components is clear and easy to understand, and therefore the device is easy to install and maintain, meanwhile, the number of components is relatively small, and the probability of failure and maintenance cost are also reduced, and the reinforcing mechanism for the high and large flume in the deep water area has the advantages of efficient adjustment and fixing, strong stability, strong adaptability, easy installation and maintenance, safety and reliability, etc.

[0008] Further, the fixed beam is fixedly connected with support plates on both sides, the support plates are fixedly connected with second reinforcing ribs at the bottom ends, the two second reinforcing ribs in each group are fixedly connected with the fixed beam at the ends away from the support plates, and the support plates are provided with flume bodies at the upper ends.

[0009] Through the above scheme, the reinforcing ribs connect the support plates and the fixed beam together to form a more solid overall structure for supporting the vertical weight of the flume body, which can more effectively disperse the weight and stress generated by the flume body, thereby reducing the load pressure of a single component and prolonging the service life of the entire reinforcing mechanism.

[0010] Further, the flume body is provided with four positioning holes arranged in a rectangular array on both sides, the positioning holes are internally provided with second threaded holes at one end, the mounting holes are slidably provided with fixed bolts inside, and the fixed bolts are threadedly arranged in the second threaded holes at one end through the limiting columns.

[0011] Through the above scheme, the positioning holes opened on both sides of the aqueduct body can ensure that the clamping plates can be accurately clamped at the predetermined positions of the aqueduct body by corresponding the positioning holes with the limiting columns on the clamping plates, and the cooperation of the second threaded holes and the fixing bolts realizes the firm connection between the clamping plates and the aqueduct body, preventing loosening or displacement of the reinforcing mechanism during stress process.

[0012] Further, the two side ends of the fixed beam are fixedly connected with two vertical columns, the bottom ends of the two vertical columns are fixedly connected with two fixed piers, an arcuate plate is fixedly connected between the two vertical columns, a plurality of support columns arranged in a straight line array are fixedly connected to the upper end of the arcuate plate, and the upper ends of the plurality of support columns are fixedly connected with the fixed beam.

[0013] Through the above scheme, the vertical columns and the fixed piers provide a solid support foundation for the reinforcing mechanism, and transfer the weight and load of the reinforcing mechanism to the ground. In the deep water area environment, the stable support foundation is used to prevent displacement or overturning of the aqueduct body due to water flow scouring or foundation settlement.

[0014] Further, the two side ends of the fixed beam are fixedly connected with two vertical columns, the bottom ends of the two vertical columns are fixedly connected with two fixed piers, an arcuate plate is fixedly connected between the two vertical columns, a plurality of support columns arranged in a straight line array are fixedly connected to the upper end of the arcuate plate, and the upper ends of the plurality of support columns are fixedly connected with the fixed beam.

[0015] Through the above scheme, by rotating the bidirectional screw rod, the distance between the two sliding blocks and the moving table connected thereto can be controlled, so as to realize accurate clamping and fixing of the aqueduct body, and simplify the operation process of the reinforcing mechanism.

[0016] Further, the four sliding strips are slidably arranged in the second sliding groove in two groups.

[0017] Through the above scheme, the four sliding strips are slid in the second sliding groove in two groups, providing good guidance for the moving table and ensuring stable movement of the moving table in the horizontal direction, preventing reinforcement failure caused by deviation or shaking.

[0018] Further, the four limiting columns are slidably arranged in the positioning hole in groups of four, and the aqueduct body is fixedly arranged between the two clamping plates.

[0019] Through the above scheme, the four limiting columns provide stable clamping force for the aqueduct body, and by being slidably arranged in the positioning hole, the aqueduct body is prevented from being displaced in the horizontal or vertical direction, enhancing the support and fixing effect of the reinforcing mechanism on the aqueduct body.

[0020] Further, one end of the handle penetrating the fixed beam is fixedly connected with the bidirectional screw rod.

[0021] Through the above scheme, the setting of the rotating handle enables the operator to easily rotate the bidirectional screw rod, and the operator can control the bidirectional screw rod by rotating the rotating handle, thereby adjusting the positions of the sliding blocks and the moving table, simplifying the operation process of the reinforcing mechanism, and improving the work efficiency.

[0022] Compared with the prior art, the technical scheme of the application has the following beneficial effects:

[0023] The reinforcing mechanism of the high and large aqueduct in the deep water area is provided with the bidirectional screw rod and the first sliding groove, so that the two moving tables can move and adjust along the fixed beam, the rotating handle can drive the bidirectional screw rod to rotate, thereby driving the moving tables and the clamping plates thereon to move closer to the center or separate from each other, the aqueduct can be quickly clamped and fixed, the actual size and shape of the aqueduct can be adjusted, the structure of the device is relatively simple, the connection mode between the components is clear and simple, and therefore the device is easy to install and maintain, the number of components is relatively small, the probability of failure and the maintenance cost are also reduced, and the reinforcing mechanism of the high and large aqueduct in the deep water area has the advantages of efficient adjustment and fixation, strong stability, strong adaptability, easy installation and maintenance, safety and reliability, and the like. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is a whole structure schematic view of the structure of the application;

[0025] Figure 2 It is a fixed beam structure schematic view of the structure of the application;

[0026] Figure 3 It is a clamping device structure schematic view of the structure of the application;

[0027] Figure 4 It is an aqueduct fixing structure schematic view of the structure of the application;

[0028] Figure 5 It is a support structure schematic view of the structure of the application.

[0029] In the drawings:

[0030] 1, fixed beam; 2, first sliding groove; 3, bidirectional screw rod; 4, rotating handle; 5, second sliding groove; 6, moving table; 7, sliding block; 8, first threaded hole; 9, sliding bar; 10, clamping plate; 11, limiting column; 12, mounting hole; 13, first reinforcing rib; 14, support plate; 15, second reinforcing rib; 16, aqueduct body; 17, positioning hole; 18, second threaded hole; 19, fixing bolt; 20, stand column; 21, fixed pier; 22, arched plate; 23, support column. DETAILED DESCRIPTION

[0031] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of the present application.

[0032] Please refer to Figure 1 , Figure 2 and Figure 3 A reinforcing mechanism for a high and large flume in a deep water area in the embodiment includes a fixed beam 1 and two moving tables 6. The fixed beam 1 is internally provided with a first sliding groove 2. The first sliding groove 2 is internally rotatably connected with a bidirectional screw rod 3. The bidirectional screw rod 3 is rotatably provided with a handle 4 on one side. Through the arrangement of the bidirectional screw rod 3 and the first sliding groove 2, the two moving tables 6 can move and adjust along the fixed beam 1. Rotating the handle 4 can drive the bidirectional screw rod 3 to rotate, thereby driving the moving table 6 and the clamping plate 10 thereon to move closer to the center or separate, so as to realize quick clamping and fixing of the flume. The fixed beam 1 is internally provided with two second sliding grooves 5 which are mirror image distributed on both sides. The two moving tables 6 are fixedly connected with sliding blocks 7 at the bottom ends. The two sliding blocks 7 are internally and transversely provided with first threaded holes 8. The two moving tables 6 are fixedly connected with two sliding strips 9 which are mirror image distributed at the bottom ends. The two moving tables 6 are fixedly connected with clamping plates 10 on one side at the upper ends. The two clamping plates 10 are fixedly connected with four limiting columns 11 which are arranged in a rectangular array on one side. The two clamping plates 10 are internally and transversely provided with mounting holes 12. The two clamping plates 10 are fixedly connected with two first reinforcing ribs 13 which are mirror image distributed on one side. The four first reinforcing ribs 13 are fixedly connected with the moving tables 6 at the ends away from the clamping plates 10. The connection mode between the components is clear and unambiguous, so it is easy to install and maintain. At the same time, since the number of components is relatively small, the probability of failure and maintenance cost are also reduced.

[0033] Please refer to Figure 1 , Figure 3 and Figure 4The fixed beam 1 is fixedly connected with the support plates 14 on both sides, the bottom ends of the two support plates 14 are fixedly connected with the second reinforcing ribs 15, the two second reinforcing ribs 15 are fixedly connected with the fixed beam 1 at the ends away from the support plates 14, the upper ends of the two support plates 14 are provided with the aqueduct bodies 16, the reinforcing ribs connect the support plates 14 and the fixed beam 1 together to form a more solid overall structure for supporting the vertical weight of the aqueduct bodies 16, which can more effectively disperse the weight and stress generated by the aqueduct bodies 16, thereby reducing the load pressure of a single component, prolonging the service life of the entire reinforcing mechanism, the two sides of the aqueduct bodies 16 are provided with four positioning holes 17 arranged in a rectangular array, the inner ends of the plurality of positioning holes 17 are provided with second threaded holes 18, the plurality of fixing bolts 19 are slidably arranged in the plurality of mounting holes 12, the plurality of fixing bolts 19 are threadedly arranged in the second threaded holes 18 at one end of the limiting column 11, the positioning holes 17 provided on the two sides of the aqueduct bodies 16 correspond to the limiting columns 11 on the clamping plates 10, which can ensure that the clamping plates 10 can be accurately clamped at the predetermined positions of the aqueduct bodies 16, and the cooperation of the second threaded holes 18 and the fixing bolts 19 realizes the firm connection between the clamping plates 10 and the aqueduct bodies 16, preventing the reinforcing mechanism from loosening or moving during the stress process.

[0034] Please refer to Figure 2 , Figure 4 and Figure 5The two sides of the bottom end of the fixed beam 1 are fixedly connected with the stand columns 20, the bottom ends of the two stand columns 20 are fixedly connected with the fixed piers 21, the two stand columns 20 are fixedly connected with the arched plates 22, the upper ends of the arched plates 22 are fixedly connected with a plurality of support columns 23 arranged in a straight line array, the upper ends of the plurality of support columns 23 are fixedly connected with the fixed beam 1, and the stand columns 20 and the fixed piers 21 provide a solid support foundation for the reinforcing mechanism, and the weight and the load borne by the reinforcing mechanism are transmitted to the ground. In the deep water area environment, the stable support foundation is used to prevent displacement or overturning of the aqueduct body 16 due to water flow scouring or foundation settlement. The two sliding blocks 7 are slidingly arranged in the first sliding groove 2, and the two ends of the bidirectional screw rod 3 are threadedly arranged in the first threaded hole 8. By rotating the bidirectional screw rod 3, the distance between the two sliding blocks 7 and the moving table 6 connected thereto can be controlled, so that the aqueduct body 16 can be accurately clamped and fixed, and the operation process of the reinforcing mechanism is simplified. The four sliding strips 9 are slidingly arranged in the second sliding groove 5 in pairs, and the four sliding strips 9 slidingly arranged in the second sliding groove 5 in pairs provide good guidance for the moving table 6, ensuring the stable movement of the moving table 6 in the horizontal direction, preventing reinforcement failure due to deviation or shaking, and the plurality of limiting columns 11 are slidingly arranged in the positioning hole 17 in groups of four, and the aqueduct body 16 is fixedly arranged between the two clamping plates 10. The four limiting columns 11 provide stable clamping force for the aqueduct body 16, and by slidingly arranging in the positioning hole 17, the displacement of the aqueduct body 16 in the horizontal or vertical direction is prevented, and the support and fixing effect of the reinforcing mechanism on the aqueduct body 16 is enhanced. The handle 4 is fixedly connected with the bidirectional screw rod 3 at one end of the fixed beam 1. The handle 4 is arranged to enable the operator to easily rotate the bidirectional screw rod 3. By rotating the handle 4, the operator can control the bidirectional screw rod 3, thereby adjusting the positions of the sliding blocks 7 and the moving table 6, simplifying the operation process of the reinforcing mechanism and improving the work efficiency.

[0035] In the embodiment, the bidirectional screw rod 3 and the first sliding groove 2 are arranged to enable the two moving tables 6 to move and adjust along the fixed beam 1. Rotating the handle 4 drives the bidirectional screw rod 3 to rotate, thereby driving the moving tables 6 and the clamping plates 10 thereon to move closer to the center or separate from each other, achieving quick clamping and fixing of the aqueduct. The actual size and shape of the aqueduct can be adjusted. The structure of the device is relatively simple, the connection mode between the components is clear and simple, and therefore the device is easy to install and maintain. In addition, the number of components is relatively small, which reduces the probability of failure and maintenance cost. The reinforcing mechanism for the high and large aqueduct in the deep water area has the advantages of efficient adjustment and fixing, strong stability, strong adaptability, easy installation and maintenance, safety and reliability, etc.

[0036] The working principle of the above embodiment is as follows:

[0037] Firstly, the aqueduct body 16 is placed on the two support plates 14 and the fixed beam 1 upper end, the operator holds the handle 4, and rotates gently, because the handle 4 and the bidirectional screw rod 3 are fixedly connected, rotating the handle 4 will drive the bidirectional screw rod 3 to rotate in the first sliding groove 2, the rotation of the bidirectional screw rod 3 will drive the two sliding blocks 7 to move along the first sliding groove 2 to the center point, in turn drive the two moving tables 6 and the clamping plates 10 on them to close to the aqueduct body 16, ensure that the positioning hole 17 on the aqueduct body 16 corresponds to the limiting column 11 on the clamping plate 10, then, the fixed bolt 19 is passed through the limiting column 11 and screwed into the second threaded hole 18 on the aqueduct body 16, to firmly connect the clamping plate 10 and the aqueduct body 16, according to the need, the operator can further adjust the position of the moving table 6 to ensure that the clamping plate 10 can tightly clamp the aqueduct body 16, regularly check and maintain the reinforcing mechanism to ensure that it is in good working condition.

[0038] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one from another entity or action, without necessarily requiring or implying that the entities or actions are in any way mutually exclusive or in any way in a sequence. Moreover, the terms "comprising", "including", or any other variant thereof are intended to cover a non-exclusive inclusion, such that a process, method, article or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article or apparatus. Without further limitation, an element preceded by "comprises a" does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article or apparatus that comprises the recited element.

[0039] Although the embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to the embodiments without departing from the principles and spirit of the present application, the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. Reinforcement mechanism of high flume in deep water area, comprising a fixed beam (1) and two mobile tables (6), characterized in that: The fixed beam (1) is internally provided with a first sliding groove (2), the first sliding groove (2) is internally rotatably connected with a bidirectional screw rod (3), the bidirectional screw rod (3) is rotatably provided with a handle (4) on one side, the fixed beam (1) is internally provided with two second sliding grooves (5) which are mirror image distributed on both sides, two movable platforms (6) are fixedly connected with sliding blocks (7) at the bottom ends, two first threaded holes (8) are formed in the sliding blocks (7), two movable platforms (6) are fixedly connected with two slide bars (9) which are mirror image distributed on both sides at the bottom ends, two clamping plates (10) are fixedly connected with the movable platforms (6) on one side at the upper ends, four limiting columns (11) are fixedly connected with the clamping plates (10) on one side in a rectangular array, two first reinforcing ribs (13) are fixedly connected with the clamping plates (10) on one side in a mirror image distribution, and the first reinforcing ribs (13) are fixedly connected with the movable platforms (6) away from the clamping plates (10) on one end in groups of two.

2. The reinforcement mechanism of a high large penstock in a deep water area according to claim 1, characterized in that: The fixed beam (1) is fixedly connected with support plates (14) on both sides, the support plates (14) are fixedly connected with second reinforcing ribs (15) at the bottom ends, the second reinforcing ribs (15) are fixedly connected with the fixed beam (1) away from the support plates (14) on one end in groups of two, and the support plates (14) are provided with aquarry body (16) at the upper ends.

3. The reinforcement mechanism of a high large penstock in a deep water area according to claim 2, characterized in that: The quarry body (16) is provided with four positioning holes (17) which are arranged in a rectangular array on both sides, a second threaded hole (18) is formed in one end of the positioning hole (17) inside, a fixing bolt (19) is slidably arranged in the mounting hole (12) inside, and one end of the fixing bolt (19) is threadedly arranged in the second threaded hole (18) inside.

4. The reinforcement mechanism of a high large penstock in a deep water area according to claim 1, characterized in that: The fixed beam (1) is fixedly connected with stand columns (20) on both sides at the bottom ends, the stand columns (20) are fixedly connected with fixed piers (21) at the bottom ends, an arched plate (22) is fixedly connected between the stand columns (20), the arched plate (22) is fixedly connected with a plurality of support columns (23) which are arranged in a straight line array at the upper end, and the support columns (23) are fixedly connected with the fixed beam (1) at the upper end.

5. The reinforcement mechanism of a high large penstock in a deep water area according to claim 1, characterized in that: The sliding blocks (7) are slidably arranged in the first sliding groove (2), and the bidirectional screw rod (3) is threadedly arranged in the first threaded hole (8) at both ends.

6. The reinforcement mechanism of a high large penstock in a deep water area according to claim 1, characterized in that: The slide bars (9) are slidably arranged in the second sliding groove (5) in groups of two.

7. The reinforcement mechanism of a high large penstock in a deep water area according to claim 2, characterized in that: The limiting columns (11) are slidably arranged in the positioning holes (17) in groups of four, and the quarry body (16) is fixedly arranged between the clamping plates (10).

8. The reinforcement mechanism of a high large penstock in a deep water area according to claim 1, characterized in that: One end of the handle (4) penetrating the fixed beam (1) is fixedly connected with the bidirectional screw rod (3).

Citation Information

Patent Citations

  • Reinforcing mechanism of lagging jack aqueduct

    CN221095024U