Simple gutter channel hanging bracket for canal construction

By combining the two-way screw and nut seat with the design of hydraulic cylinder and limit plate, the problem of inconvenient adjustment of existing hangers is solved, realizing the rapid and precise hoisting of the water channel, and improving construction efficiency and convenience.

CN223852081UActive Publication Date: 2026-01-30房华萍
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Patent Information

Application Number
CN202520540378.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-01-30
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

The existing simple hangers are inconvenient to adjust when handling water channels of different sizes and weights, which requires operators to spend a lot of time and energy to adjust the hanger structure, and may even require the hanger to be replaced, reducing the ease of use and construction efficiency.

Method used

The system employs a combination of a two-way screw and a nut seat, enabling rapid adjustment of the hook spacing through threaded connection. It is also equipped with a hydraulic cylinder to move the load-bearing frame up and down. Combined with the use of a limit plate and a scale plate, it ensures stable hook position and precise hoisting of the water trough.

Benefits of technology

It improves the ease of use and construction efficiency of the hangers, enables rapid adjustment of hook spacing and precise hoisting of the drainage channel, saves manpower and resources, and improves the accuracy and efficiency of construction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of canal construction, in particular to a simple gutter channel hanging bracket for canal construction, and solves the problems that in the prior art, a hanging bracket is often fixed and is inconvenient to flexibly adjust according to the actual size and weight of a gutter channel, and when gutter channels of different specifications need to be hoisted, the hanging bracket is inconvenient to adjust. And an operator often needs to spend a lot of time and energy to adjust the structure of the hanging bracket, so that the use convenience of the hanging bracket is greatly reduced. A simple gutter channel hanging bracket for canal construction comprises a frame body, the inner side of the frame body is slidably connected with a bearing frame, the inner side of the bearing frame is rotatably connected with a two-way screw, and one end of the two-way screw penetrates through the side wall of the bearing frame. According to the utility model, an operator only needs to manually rotate the two-way screw rod to easily adjust the distance between the two hooks without spending a lot of time and energy to adjust the structure of the hanging bracket or replacing different hanging brackets to meet the construction requirements, so that the manpower and material resources are saved, and the construction efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of water channel construction, especially to a simple hanging bracket for water channel construction. BACKGROUND

[0002] Water channel construction is an important link in water conservancy projects, and its main purpose is to build channels for irrigation, drainage or water transportation. In the construction process, the flow tank as a key component to guide water flow, its installation position and stability directly affect the overall function and effect of the water channel. In order to facilitate the installation and displacement of the flow tank, the simple hanging bracket plays a crucial role in the water channel construction. As the core component of lifting and supporting the flow tank, the performance and convenience of the hanging bracket have a decisive influence on the construction progress and efficiency.

[0003] Especially in the core link of accurately hoisting the flow tank to the predetermined position, the existing simple hanging bracket gradually exposes a series of obvious limitations and technical problems when dealing with flow tanks of different specifications and weights. Specifically, the existing simple hanging bracket faces the prominent problem of inconvenient adjustment in the actual operation of water channel construction. The traditional hanging bracket is often fixed, which is not convenient for flexible adjustment according to the actual size and weight of the flow tank. When it is necessary to lift flow tanks of different specifications, the operator often needs to spend a lot of time and effort to adjust the structure of the hanging bracket, and even may need to replace different hanging brackets to meet the construction needs, which greatly reduces the convenience of using the hanging bracket. Therefore, in view of the many deficiencies in the prior art, we urgently need an innovative simple hanging bracket for water channel construction to solve these problems. SUMMARY

[0004] The utility model aims at providing a simple hanging bracket for water channel construction, which solves the problem that the existing hanging bracket is often fixed, which is not convenient for flexible adjustment according to the actual size and weight of the flow tank, and when it is necessary to lift flow tanks of different specifications, the operator often needs to spend a lot of time and effort to adjust the structure of the hanging bracket, and even may need to replace different hanging brackets to meet the construction needs, which greatly reduces the convenience of using the hanging bracket.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] A simple hanger for a water channel in waterworks construction includes a frame, a support frame slidably connected to the inner side of the frame, and a bidirectional screw rod rotatably connected to the inner side of the support frame. One end of the bidirectional screw rod passes through the side wall of the support frame. An adjusting plate is fixedly connected to one end of the bidirectional screw rod. A rod is provided on one side of the adjusting plate, and slots for the rod are provided on both the adjusting plate and one side of the support frame. Nut seats are threadedly connected to both ends of the bidirectional screw rod, and hooks are rotatably connected to the bottom of the two nut seats via pins. A hydraulic cylinder is fixedly connected to the top side of the frame by bolts, and the output shaft of the hydraulic cylinder passes through the top of the frame and is fixedly connected to the top of the support frame.

[0007] Preferably, a limiting plate is fixedly connected to one side of the inner side of the load-bearing frame, and a scale plate is fixedly connected to one side of the limiting plate.

[0008] Preferably, a sliding block is fixedly connected to one side of each of the two nut seats, and the two sliding blocks are slidably connected to the limiting plate through a sliding groove.

[0009] Preferably, one end of the bidirectional screw is rotatably connected to the inner wall of the bearing frame via a rotating shaft, and the other end of the bidirectional screw passes through the side wall of the bearing frame via a bearing sleeve.

[0010] Preferably, a top block is fixedly connected to the top of each of the two nut seats, and the two top blocks are slidably connected to the top of the support frame through a top groove. A protrusion is fixedly connected to one side of the support frame, and the protrusion is slidably connected to the inner wall of the frame through a vertical groove.

[0011] Preferably, a side groove is provided on one side of the frame, and connecting plates are fixedly connected to both sides of the load-bearing frame. A slider is fixedly connected to one side of each of the two connecting plates, and the two sliders are slidably connected to the inner wall of the side groove through the sliding groove.

[0012] This utility model has the following beneficial effects:

[0013] The utility model effectively solves the outstanding problem of inconvenient adjustment of the prior simple hanging bracket when processing different specifications and weights of flow channels. The traditional hanging bracket is often fixed, and it is inconvenient to flexibly adjust according to the actual size and weight of the flow channel, but the present hanging bracket realizes the quick adjustment of the distance between hooks through the cooperation of the bidirectional screw rod and the nut seat, greatly improving the use convenience of the hanging bracket. The screw thread connection mode of the bidirectional screw rod and the nut seat enables the operator to easily adjust the distance between the two hooks by manually rotating the bidirectional screw rod, without spending a lot of time and effort to adjust the structure of the hanging bracket, and without the need to replace different hanging brackets to meet the construction requirements. This not only saves manpower and resources, but also significantly improves the construction efficiency. In addition, the adjusting plate and the inserting rod provide a reliable limiting and fixing mode for the bidirectional screw rod, ensuring the position stability of the hook during lifting, avoiding displacement caused by external force, and thus ensuring the accurate hoisting of the flow channel. The adoption of the hydraulic oil cylinder realizes the up-down movement of the bearing frame, enabling the flow channel to be easily hoisted to the predetermined position, further improving the accuracy and efficiency of the construction. BRIEF DESCRIPTION OF DRAWINGS

[0014] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings described in the following are some embodiments of the utility model, and other drawings can also be obtained by those skilled in the art without creative labor on the basis of these drawings.

[0015] Figure 1 It is the overall front view structural schematic diagram of the utility model;

[0016] Figure 2 It is the bearing frame bottom view structural schematic diagram of the utility model;

[0017] Figure 3 It is the bearing frame top view structural schematic diagram of the utility model;

[0018] Figure 4 It is the hook structure schematic diagram of the utility model;

[0019] Figure 5 It is the side frame structure schematic diagram of the utility model.

[0020] In the drawing: 1, frame body; 2, bearing frame; 3, hydraulic oil cylinder; 4, side groove; 5, connecting plate; 6, sliding block; 7, sliding groove; 8, limiting plate; 9, sliding block; 10, inserting groove; 11, sliding groove; 12, scale plate; 13, lug; 14, vertical groove; 15, bidirectional screw rod; 16, nut seat; 17, hook; 18, adjusting plate; 19, inserting rod; 20, top block; 21, top groove. DETAILED DESCRIPTION

[0021] In order to make the utility model purposes, technical solutions and advantages more clearly, the following will be further described in detail with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.

[0022] Referring to Figures 1-5 A water channel construction is used to flow groove simple hanger, including frame body 1, the inside of frame body 1 is slidably connected with bearing frame 2, and the inside of bearing frame 2 is rotatably connected with two-way screw 15, and one end of two-way screw 15 penetrates the side wall of bearing frame 2, wherein one end of two-way screw 15 is fixedly connected with adjusting plate 18, adjusting plate 18 is used as the rotating handle of two-way screw 15, which is convenient for the operator to manually adjust the rotation of two-way screw 15, one side of adjusting plate 18 is provided with plug rod 19, and plug rod 19 is used in the plug groove 10 formed in adjusting plate 18 and one side of bearing frame 2, plug rod 19 is used in the plug groove 10 for cooperation, limiting and fixing two-way screw 15, ensuring the position stability of hook 17, the two ends of two-way screw 15 are rotatably connected with nut seat 16 through thread, and the bottom of the two nut seats 16 is rotatably connected with hook 17 through pin shaft, hook 17 hangs flow groove, and the lifting of flow groove is realized by the up-down movement of bearing frame 2, one side of the top of frame body 1 is fixedly connected with hydraulic oil cylinder 3 through bolt, and the output shaft of hydraulic oil cylinder 3 is fixedly connected between the top of frame body 1 and the top of bearing frame 2.

[0023] Further, the inside of bearing frame 2 is fixedly connected with limiting plate 8 on one side, and the limiting plate 8 is fixedly connected with scale plate 12 on one side, the inside of bearing frame 2 is fixedly connected with limiting plate 8 on one side, and the limiting plate 8 is fixedly connected with scale plate 12 on one side, when the operator adjusts the spacing between the two hooks 17, the scale on the scale plate 12 can be observed to accurately control the moving distance of nut seat 16.

[0024] Further, one side of the two nut seats 16 is fixedly connected with sliding block 9, and the two sliding blocks 9 are slidably connected between the limiting plate 8 and the sliding groove 11, one side of the two nut seats 16 is fixedly connected with sliding block 9, and the two sliding blocks 9 are slidably connected between the limiting plate 8 and the sliding groove 11, when the nut seat 16 moves along the axis of two-way screw 15, the sliding block 9 will slide in the sliding groove 11, which plays a guiding and limiting role.

[0025] Further, one end of two-way screw 15 is rotatably connected between the rotating shaft and the inner wall of bearing frame 2, and the other end of two-way screw 15 penetrates the side wall of bearing frame 2 through bearing sleeve.

[0026] Further, the top of the two nut seats 16 is fixedly connected with the top block 20, and the two top blocks 20 are slidably connected between the top of the bearing frame 2 and the top groove 21, one side of the bearing frame 2 is fixedly connected with the protrusion 13, and the protrusion 13 is slidably connected between the inner wall of the frame body 1 and the vertical groove 14, when the nut seat 16 moves, the top block 20 will slide in the top groove 21, and the top block 20 plays a supporting and guiding role.

[0027] Further, the frame body 1 is provided with a side groove 4 on one side, and the bearing frame 2 is fixedly connected with the connecting plate 5 on both sides, and the connecting plate 5 is fixedly connected with the sliding block 6 on one side, and the sliding block 6 is slidably connected between the inner wall of the side groove 4 and the sliding groove 7, and the sliding block 6 is slidably connected between the inner wall of the side groove 4 and the sliding groove 7, so that the bearing frame 2 can stably slide up and down in the frame body 1.

[0028] In summary:

[0029] First, the frame 1 is stably placed at the position of the water channel construction, ensuring the stability and firmness of the frame 1, providing a solid foundation for the subsequent lifting operation. When the flow channel needs to be lifted, the operator needs to adjust the distance between the two hooks 17 according to the length specification of the flow channel. This adjustment process is realized by manually rotating the bidirectional screw 15. The bidirectional screw 15 penetrates the side wall of the bearing frame 2, one end is rotatably connected with the inner wall of the bearing frame 2 through a rotating shaft, and the other end penetrates the side wall of the bearing frame 2 through a bearing sleeve, ensuring that the bidirectional screw 15 can stably rotate. One end of the bidirectional screw 15 is fixedly connected with an adjusting plate 18, and the operator rotates the adjusting plate 18 to drive the bidirectional screw 15 to rotate. With the rotation of the bidirectional screw 15, the two nut seats 16 threadedly connected at the two ends of the bidirectional screw 15 will move closer or farther away along the axis of the bidirectional screw 15. In order to enhance the stability of the movement of the nut seat 16, one side of each of the two nut seats 16 is fixedly connected with a sliding block 9, and the two sliding blocks 9 are slidably connected between the limiting plates 8 fixedly connected to the inner side of the bearing frame 2 through the sliding grooves 11, playing a guiding and limiting role. At the same time, one side of the limiting plate 8 is also fixedly connected with a scale plate 12, and the operator can accurately control the movement distance of the nut seat 16 by observing the scale on the scale plate 12. When the nut seat 16 moves, the top block 20 on the top of the nut seat 16 will slide in the top groove 21 opened on the top of the bearing frame 2, playing a supporting and guiding role, and further enhancing the stability of the movement of the nut seat 16. In addition, one side of the bearing frame 2 is also fixedly connected with a protrusion 13, which is slidably connected between the frame 1 through the vertical groove 14 opened in the inner wall of the frame 1, ensuring the stable sliding of the bearing frame 2 in the frame 1. After adjusting to the appropriate distance, the operator needs to limit and fix the bidirectional screw 15 through the cooperation of the inserting rod 19 and the inserting groove 10, to ensure the stability of the position of the two hooks 17, which will not change due to external force during lifting. After completing the distance adjustment and limiting fixation of the hooks 17, the operator can hang the two ends of the flow channel on the two hooks 17 respectively. At this time, the hydraulic oil cylinder 3 is started, and the output shaft of the hydraulic oil cylinder 3 drives the bearing frame 2 to move up and down. In order to ensure the stable sliding of the bearing frame 2 in the frame 1, the two sides of the bearing frame 2 are fixedly connected with the connecting plates 5, one side of each of the two connecting plates 5 is fixedly connected with the sliding block 6, and the two sliding blocks 6 are slidably connected between the inner wall of the side groove 4 opened on one side of the frame 1 through the sliding groove 7. This setting mode enables the bearing frame 2 to stably slide along the inner side of the frame 1, thereby driving the flow channel hung on the hooks 17 to move up and down, and accurately lifting it to the predetermined position. Through the cooperation of the bidirectional screw 15 and the nut seat 16, the distance between the hooks 17 is quickly adjusted, greatly improving the convenience and flexibility of the lifting frame. The setting of the limiting plate 8 and the scale plate 12 enables the operator to accurately control the movement distance of the nut seat 16, improving the accuracy of the distance adjustment of the hooks 17.The cooperation of the sliding block 9 and the sliding groove 11 and the cooperation of the top block 20 and the top groove 21 enhance the stability of the nut seat 16 movement, prevent the nut seat 16 from deviating or shaking during the movement. The cooperation of the convex block 13 and the vertical groove 14 and the cooperation of the sliding block 6 and the sliding groove 7 ensure the stable sliding of the bearing frame 2 in the frame body 1, improve the overall stability and reliability of the hanger. The adoption of the hydraulic oil cylinder 3 realizes the up and down movement of the bearing frame 2, so that the water channel can be easily hoisted to the predetermined position, further improving the accuracy and efficiency of the construction.

[0030] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection required by the present application is defined by the appended claims and their equivalents.

Claims

1. A simple hanging bracket for a flow channel for water channel construction, comprising a frame (1), characterized in that, The inner side of the frame (1) is slidably connected with a bearing frame (2), and the inner side of the bearing frame (2) is rotatably connected with a bidirectional screw rod (15), and one end of the bidirectional screw rod (15) penetrates the side wall of the bearing frame (2), wherein one end of the bidirectional screw rod (15) is fixedly connected with an adjusting plate (18), one side of the adjusting plate (18) is provided with a plug rod (19), and the adjusting plate (18) and one side of the bearing frame (2) are both provided with plug grooves (10) for the plug rod (19), both ends of the bidirectional screw rod (15) are threadedly connected with nut seats (16), and the bottoms of the two nut seats (16) are rotatably connected with hooks (17) through pin shafts, one side of the top of the frame (1) is fixedly connected with a hydraulic oil cylinder (3) through bolts, and the output shaft of the hydraulic oil cylinder (3) is fixedly connected between the top of the frame (1) and the top of the bearing frame (2).

2. A simple hanging bracket for a flow channel of a water channel construction according to claim 1, characterized in that, The inner side of the bearing frame (2) is fixedly connected with a limiting plate (8), and one side of the limiting plate (8) is fixedly connected with a scale plate (12).

3. A simple hanging bracket for a flow channel of a water channel construction according to claim 2, characterized in that, One side of each of the two nut seats (16) is fixedly connected with a sliding block (9), and the two sliding blocks (9) are slidably connected between the limiting plate (8) and the slide grooves (11).

4. The simple hanging bracket for flow channel of water channel construction according to claim 1, characterized in that, One end of the bidirectional screw rod (15) is rotatably connected between the inner wall of the bearing frame (2) and the rotating shaft, and the other end of the bidirectional screw rod (15) penetrates the side wall of the bearing frame (2) through the bearing sleeve.

5. The simple hanging bracket for flow channel of water channel construction according to claim 1, characterized in that, The top of each of the two nut seats (16) is fixedly connected with a top block (20), and the two top blocks (20) are slidably connected between the top of the bearing frame (2) and the top grooves (21), one side of the bearing frame (2) is fixedly connected with a protruding block (13), and the protruding block (13) is slidably connected between the inner wall of the frame (1) and the vertical grooves (14).

6. The simple hanging bracket for flow channel of water channel construction according to claim 1, characterized in that, One side of the frame (1) is provided with a side groove (4), and the two sides of the bearing frame (2) are fixedly connected with connecting plates (5), one side of each of the two connecting plates (5) is fixedly connected with a sliding block (6), and the two sliding blocks (6) are slidably connected between the inner wall of the side groove (4) and the slide grooves (7).