Drainage centralized control real-time monitoring device for constant-pressure water supply system

By simplifying the opening structure of the protective shell and utilizing the design of a return spring and a limit rod, the problem of complex operation of the protective shell of the existing constant pressure water supply system monitoring device has been solved, enabling convenient opening of the protective shell and improving operational efficiency.

CN224203173UActive Publication Date: 2026-05-05LUOYANG JIANGFEI ELECTRIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
LUOYANG JIANGFEI ELECTRIC CO LTD
Filing Date
2025-03-04
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The existing monitoring device of the constant pressure water supply system has a complex protective shell opening structure, which is laborious and time-consuming to operate.

Method used

A structure including a monitor, a protective shell, a fixing ring, a bracket, a return spring, and a limit rod is designed. The protective shell can be opened quickly by simplifying the operation, and the protective shell can be opened conveniently by the cooperation of the return spring and the limit rod.

Benefits of technology

It enables quick opening of the protective case, reduces operational complexity and time consumption, and improves operational convenience and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a drainage centralized control real-time monitoring device for a constant-pressure water supply system, which relates to the technical field of drainage monitoring and comprises a water pipe. The monitor is installed at the upper end of the exterior of the water pipe, a protective shell is movably clamped to the exterior of the monitor, the bottom end of the interior of the protective shell is open, the bottom structural shape of the protective shell is attached to the outer surface of the water pipe, a fixing ring is installed on the upper portion of the exterior of the monitor, and the upper end and the lower end of the interior of the fixing ring are open; the supports are symmetrically arranged on the two sides of the bottom of the fixing ring, the bottoms of the supports are fixed to the upper end surface of the water pipe, the supports are located on the two sides of the monitor, when the monitor needs to be used, the bolts are loosened, the limiting rods are turned over towards one side, at the moment, the protection shell can be rapidly jacked upwards under the action of the reset springs, and then the monitor can be exposed; tedious operation is not needed, and delayed time is shortened.
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Description

Technical Field

[0001] This utility model relates to the field of drainage monitoring technology, specifically a drainage centralized control real-time monitoring device for constant pressure water supply systems. Background Technology

[0002] In terms of technical functions, the entire water supply system should meet users' needs for water quality, quantity, and pressure. In addition, during the entire infrastructure construction and production operation, it is also necessary to have low infrastructure investment, low operating costs, convenient operation and management, safe production of towerless water supply equipment, and to fully realize the economic benefits of the entire water supply system. Therefore, the correct selection of a water supply system is of great importance.

[0003] For example, the announcement number CN214695885U is titled "A Pipeline Pressure Monitoring Device for Intelligent Water Supply System". The device includes a monitoring device, a protective shell, and a water pipe. The bottom of the protective shell is connected to a support rod. Through the setting of the support rod, fixing block, gasket, first spring, push block, push rod, limit block, gear, rack, positioning rod, wheel, motor, and support block, it mainly solves the problem that most monitoring devices are exposed to the outside, which makes them easy to be damaged by external objects, and they are prone to weathering after being exposed to wind and sun for a long time, which affects the service life of the monitoring device.

[0004] The aforementioned device has multiple opening mechanisms for its protective casing, making the operation complex, laborious, and time-consuming when it needs to be opened. Therefore, we propose a real-time monitoring device for drainage centralized control in a constant pressure water supply system to address the problems mentioned above. Utility Model Content

[0005] The purpose of this utility model is to provide a real-time monitoring device for drainage centralized control in a constant pressure water supply system, so as to solve the problem in the above-mentioned background technology that the protective shell has many opening structures, and the operation is complicated, laborious and time-consuming when the protective shell needs to be opened.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a real-time monitoring device for drainage centralized control in a constant pressure water supply system, comprising a water pipe;

[0007] Also includes:

[0008] The monitor is installed on the upper part of the water pipe. A protective shell is attached to the outside of the monitor. The bottom of the protective shell is open, and its bottom structure conforms to the outer surface of the water pipe. A fixing ring is installed on the upper part of the monitor. The upper and lower ends of the fixing ring are open. Supports are symmetrically arranged on both sides of the bottom of the fixing ring. The bottom of the support is fixed to the upper surface of the water pipe. The support is located on both sides of the monitor, and the fixing ring is installed on the outside of the water pipe through the support. Sliders are symmetrically arranged on both sides of the outside of the protective shell. The sliders have sliding holes inside. The sliders slide and engage with the outside of the support through the sliding holes. The protective shell slides up and down through the engagement of the sliders and the support.

[0009] Preferably, a return spring is installed on the outer surface of the bracket, and the return spring is located between the slider and the water pipe.

[0010] Preferably, a limiting rod is installed on the upper surface of the fixing ring, and the limiting rod is movably fitted against the upper end of the protective shell. One end of the limiting rod is connected to a rotating shaft, and the limiting rod rotates through the rotating shaft.

[0011] Preferably, the other end of the limiting rod is provided with a round hole, the surface of the fixing ring is provided with a threaded hole, and the threaded hole is located below the other end of the limiting rod. The other end of the limiting rod and the fixing ring are connected and fixed by a limiting bolt, and the limiting bolt passes through the round hole and the threaded hole for threaded connection.

[0012] Preferably, the surface of the protective shell is provided with ventilation grooves, and the ventilation grooves are connected to the interior of the protective shell.

[0013] Preferably, the outer surface of the protective shell is provided with a slide rail, and two slide rails are symmetrically arranged and distributed on both sides of the outer side of the ventilation slot. A sealing plate is installed on the inner side of the slide rail, the sealing plate is located on the outer surface of the ventilation slot, and the sealing plate slides up and down through the slide rail.

[0014] Preferably, a rubber pad is provided on the bottom surface of the protective shell.

[0015] Compared with the prior art, the beneficial effects of this utility model are:

[0016] (1) By installing the monitor outside the water pipe, setting a protective shell on the outside of the monitor, and installing a fixing ring on the top of the monitor, the fixing ring is fixed on the top of the monitor by the bracket, the protective shell slides and engages between the brackets, and a return spring is set on the surface of the bracket. When it is needed to use, the protective shell is pushed upward, and the protective shell is lifted up under the action of the return spring, so that the monitor can be exposed. Thus, the protective shell can be picked up quickly without cumbersome operation, reducing the time wasted.

[0017] (2) By installing a limiting rod above the fixed ring, the limiting rod rotates above the fixed ring via a rotating shaft. The protective shell is tightly attached to the outside of the monitor by the locking of the limiting rod. At the same time, the other end of the limiting rod is fixed to the surface of the fixed ring by bolts. When it is necessary to open the protective shell, loosen the bolts and flip the limiting rod to one side. At this time, the protective shell can be pushed up by the action of the return spring, so that the monitor is exposed. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model in its closed state;

[0019] Figure 2 This is a schematic diagram of the overall structure of this utility model in the open state;

[0020] Figure 3 This is a schematic diagram of the protective shell of this utility model when closed;

[0021] Figure 4 This is a schematic diagram showing the opening of the protective shell of this utility model;

[0022] In the diagram: 1. Water pipe; 2. Monitor; 3. Protective shell; 4. Fixing ring; 5. Ventilation slot; 6. Bracket; 7. Return spring; 8. Limiting rod; 9. Rotating shaft; 10. Round hole; 11. Limiting bolt; 12. Threaded hole; 13. Slider; 14. Sliding hole; 15. Sealing plate; 16. Slide rail; 17. Rubber pad. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0024] This utility model provides a real-time monitoring device for drainage centralized control in a constant pressure water supply system, which includes a water pipe 1. The main problem addressed by this utility model is that the protective shell has multiple opening structures, making the operation complex, laborious, and time-consuming when opening the protective shell.

[0025] For the device provided by this utility model, please refer to Figure 1-4 The following is a detailed introduction.

[0026] The monitor 2 is installed on the upper part of the water pipe 1. A protective shell 3 is movably engaged with the monitor 2. The bottom of the protective shell 3 is open, and its bottom structure conforms to the outer surface of the water pipe 1. A rubber pad 17 is provided on the bottom surface of the protective shell 3 to reduce friction between the bottom of the protective shell 3 and the surface of the water pipe 1. A fixing ring 4 is installed on the upper part of the monitor 2. The upper and lower ends of the fixing ring 4 are open, and brackets are symmetrically arranged on both sides of the bottom of the fixing ring 4. 6. The bottom of the bracket 6 is fixed to the upper surface of the water pipe 1. The bracket 6 is located on both sides of the monitor 2, and the fixing ring 4 is installed on the outside of the water pipe 1 through the bracket 6. The outer sides of the protective shell 3 are symmetrically provided with sliders 13. The sliders 13 are provided with sliding holes 14 inside. The sliders 13 are slidably engaged with the outside of the bracket 6 through the sliding holes 14, and the protective shell 3 slides up and down through the engagement of the sliders 13 and the bracket 6. The outer surface of the bracket 6 is equipped with a return spring 7, and the return spring 7 is located between the slider 13 and the water pipe 1.

[0027] To further explain, a limiting rod 8 is installed on the upper surface of the fixing ring 4, and the limiting rod 8 is movably fitted against the upper end of the protective shell 3. One end of the limiting rod 8 is connected to a rotating shaft 9, and the limiting rod 8 rotates through the rotating shaft 9. The limiting rod 8 can limit the protective shell 3. The other end of the limiting rod 8 is provided with a round hole 10. The surface of the fixing ring 4 is provided with a threaded hole 12, and the threaded hole 12 is located below the other end of the limiting rod 8. The other end of the limiting rod 8 is connected and fixed to the fixing ring 4 by a limiting bolt 11, and the limiting bolt 11 passes through the round hole 10 and is threadedly connected to the threaded hole 12. The limiting rod 8 is fixed above the fixing ring 4 by the bolt.

[0028] To further explain, the protective shell 3 has ventilation slots 5 on its surface, and the ventilation slots 5 are connected to the interior of the protective shell 3. The outer surface of the protective shell 3 is provided with slide rails 16, and two slide rails 16 are symmetrically arranged and distributed on the outer sides of the ventilation slots 5. A sealing plate 15 is installed on the inner side of the slide rails 16. The sealing plate 15 is located on the outer surface of the ventilation slots 5, and the sealing plate 15 slides up and down through the slide rails 16. The ventilation slots 5 can dissipate heat for the monitor 2, and the sealing plate 15 can close the ventilation slots 5 when it rains.

[0029] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A real-time monitoring device for drainage control in a constant pressure water supply system, comprising a water pipe (1); Its features are: Also includes: The monitor (2) is installed on the upper part of the water pipe (1). The monitor (2) is movably engaged with a protective shell (3). The bottom of the protective shell (3) is open, and the bottom structure of the protective shell (3) fits the outer surface of the water pipe (1). A fixing ring (4) is installed on the upper part of the monitor (2). The upper and lower ends of the fixing ring (4) are open. Supports (6) are symmetrically arranged on both sides of the bottom of the fixing ring (4). The bottom of the support (6) is fixed to the upper surface of the water pipe (1). The support (6) is located on both sides of the monitor (2). The fixing ring (4) is installed on the outside of the water pipe (1) through the support (6). Slider (13) is symmetrically arranged on both sides of the outside of the protective shell (3). The slider (13) is provided with a sliding hole (14). The slider (13) is slidably engaged with the outside of the support (6) through the sliding hole (14). The protective shell (3) slides up and down through the engagement of the slider (13) and the support (6).

2. The real-time monitoring device for drainage centralized control in a constant pressure water supply system according to claim 1, characterized in that: A reset spring (7) is installed on the outer surface of the bracket (6), and the reset spring (7) is located between the slider (13) and the water pipe (1).

3. The real-time monitoring device for drainage centralized control in a constant pressure water supply system according to claim 1, characterized in that: A limiting rod (8) is installed on the upper surface of the fixed ring (4), and the limiting rod (8) is movably attached to the upper end of the protective shell (3). One end of the limiting rod (8) is connected to a rotating shaft (9), and the limiting rod (8) rotates through the rotating shaft (9).

4. The real-time monitoring device for drainage centralized control in a constant pressure water supply system according to claim 3, characterized in that: The other end of the limiting rod (8) is provided with a round hole (10), and the surface of the fixing ring (4) is provided with a threaded hole (12). The threaded hole (12) is located below the other end of the limiting rod (8). The other end of the limiting rod (8) is connected and fixed to the fixing ring (4) by a limiting bolt (11), and the limiting bolt (11) passes through the round hole (10) and is threadedly connected to the threaded hole (12).

5. The real-time monitoring device for drainage centralized control in a constant pressure water supply system according to claim 1, characterized in that: The surface of the protective shell (3) is provided with ventilation grooves (5), and the ventilation grooves (5) are connected to the interior of the protective shell (3).

6. The real-time monitoring device for drainage centralized control in a constant pressure water supply system according to claim 1, characterized in that: The outer surface of the protective shell (3) is provided with a slide rail (16), and two slide rails (16) are symmetrically arranged and distributed on the outer sides of the ventilation slot (5). A sealing plate (15) is installed on the inner side of the slide rail (16). The sealing plate (15) is located on the outer surface of the ventilation slot (5), and the sealing plate (15) slides up and down through the slide rail (16).

7. The real-time monitoring device for drainage centralized control in a constant pressure water supply system according to claim 1, characterized in that: A rubber pad (17) is provided on the bottom surface of the protective shell (3).