Portable water supply pipe flow monitoring equipment
By introducing a combination of electric push rod and drive motor into the water supply pipe flow monitoring equipment, automatic wipe and protection of the flowmeter probe is achieved, the probe erosion problem is solved, and the measurement accuracy and practicality of the equipment are improved.
Patent Information
- Application Number
- CN202422254237.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-14
AI Technical Summary
The existing water supply pipe flow monitoring equipment does not have the function of wiping protection for the flowmeter probe when in use, resulting in long-term accumulation of water stains on the surface of the probe, causing erosion and affecting the measurement accuracy.
A portable water supply pipe flow monitoring device is designed, and the driving motor moves the protective component through an electric push rod, which covers and rotates the probe of the flowmeter, and wipes the moisture on the surface of the probe with a rubber sleeve and a sponge ring to prevent erosion.
Effectively prevent the probe from being eroded after use, improves measurement accuracy and practicality of the equipment, and reduces shaking and probe damage during transportation.
Smart Images

Figure CN223204972U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water supply pipe flow monitoring, in particular to a portable water supply pipe flow monitoring device. Background Art
[0002] Water supply pipes can be used to transport and distribute water, which is equivalent to a transfer interface, responsible for connecting the starting end and the end end. During routine maintenance of water supply pipes, flow meters are usually used to monitor the flow and flow rate of water inside the pipes. Based on the measurement data, staff can make a rough judgment on the internal environment of the pipes and the quality of water supply.
[0003] When using existing water supply pipe flow monitoring equipment, the flow meter probe is usually inserted into a specified underwater liquid level for measurement. After use, the flow meter is returned to the inside of the tool box. However, the tool box does not have a wiping protection structure for the flow meter probe. The long-term accumulation of water stains on the surface of the flow meter probe will cause corrosion to the probe, affecting the measurement accuracy.
[0004] Therefore, in view of the above-mentioned existing water supply pipe flow monitoring equipment, which does not have the function of wiping and protecting the flow meter probe when in use, a portable water supply pipe flow monitoring equipment can be designed. By starting the electric push rod, its telescopic end drives the drive motor to move toward the probe end of the flow meter until the protective component at the output end of the drive motor covers the probe of the flow meter, and then starts the drive motor, and its output end drives the protective component to rotate, thereby wiping and protecting the probe of the flow meter. Utility Model Content
[0005] In order to overcome the problem that the existing water supply pipe flow monitoring equipment usually inserts the flow meter probe into the specified liquid level underwater for measurement during use, and then puts the flow meter back into the tool box after use, and the tool box does not have a wiping protection structure for the flow meter probe, the water stains on the surface of the flow meter probe accumulate over a long period of time and cause corrosion to the probe.
[0006] The technical solution of the utility model is: a portable water supply pipe flow monitoring device, including a protective shell; also including an electric push rod, a protective shell, a drive motor and a protective component, the upper surface of the protective shell is provided with a top cover, the middle position of the front surface of the top cover is provided with two symmetrical lock buckles, the inner bottom surface of the protective shell is provided with a rubber bottom plate, the right side of the upper surface of the rubber bottom plate is provided with an equipment slot, the inner rear position of the equipment slot is provided with a flow meter, the front right position of the inner surface of the protective shell is installed with an electric push rod, the outer surface of the electric push rod is engaged with the inner front position of the equipment slot, the telescopic end of the electric push rod is installed with a protective shell, the interior of the protective shell is provided with a drive motor, and the output end of the drive motor is connected to the protective component.
[0007] Preferably, an electric push rod is provided, and after the flow meter is used and placed inside the equipment slot, the electric push rod is started, and its telescopic end drives the drive motor to move toward the probe end of the flow meter until the protective component at the output end of the drive motor covers the probe of the flow meter, and then the drive motor is started, and its output end drives the protective component to rotate, thereby wiping and protecting the probe of the flow meter, thereby solving the problem that the existing water supply pipe flow monitoring equipment does not have the wiping and protection function of the detection equipment probe when in use, and long-term use can easily cause the probe to be corroded, resulting in a decrease in measurement accuracy.
[0008] Preferably, the protective component includes a rubber sleeve and a sponge ring. The output end of the drive motor is connected to the rubber sleeve, and the rear surface of the rubber sleeve is connected to the sponge ring. By setting the rubber sleeve and the sponge ring, under the rotation of the drive motor and the push of the electric push rod, the sponge ring will first contact the probe, thereby wiping the moisture on its surface, and then the rubber sleeve contacts the probe and covers it, reducing damage to the probe during the movement of the equipment.
[0009] Preferably, baffles are installed on the inner surfaces of the left and right sides of the middle position of the equipment slot, a switch is installed on the front surface of the left baffle, and a controller is provided at the lower right corner of the upper surface of the rubber base plate. The controller is electrically connected to the switch, electric push rod and drive motor. By setting the baffle, after the electric push rod pushes the drive motor to a certain distance, the rear surface of the protective shell will contact the switch on the baffle surface and trigger the switch. At this time, the controller receives and transmits the signal to control the drive motor and the electric push rod to stop working. At this time, the probe is just completely wrapped by the rubber sleeve, so as to avoid the problem of the electric push rod extending too long and causing the probe to be squeezed.
[0010] Preferably, the upper surface of the rubber base plate is located on the left side of the equipment slot and is provided with a mounting groove, the internal rotation of the mounting groove is connected to a damping shaft, the outer surface of the damping shaft is wound with an elastic band, the end of the elastic band is connected with a buckle, and the upper surface of the rubber base plate is located on the right side of the equipment slot and is provided with mutually symmetrical slots, the slots and the buckles match, by setting the elastic band, after placing the flow meter inside the placement slot, pulling the buckle at the end of the elastic band and snapping the buckle into the inside of the slot, the flow meter can be assisted in positioning to reduce shaking during transportation. When it needs to be used, the buckle is pulled out from the inside of the slot, and the damping shaft will rotate, thereby winding the elastic band again.
[0011] Preferably, a telescopic rod is provided inside the placement groove at the lower left side of the upper surface of the rubber base plate, a threaded connection seat is installed on the left end surface of the telescopic rod, and a connecting screw is installed on the rear surface of the flow meter, and the connecting screw matches the threaded connection seat. By setting the threaded connection seat, the flow meter can be easily installed through the connecting screw, and then the telescopic rod can be used to facilitate the staff to send the flow meter to the measuring liquid level for measurement operations.
[0012] Preferably, mutually symmetrical tool grooves are opened at the upper left corner of the upper surface of the rubber base plate, and retaining rings are installed on the right side of the bottom surface of the two tool grooves. By providing tool grooves and retaining rings, tools such as screwdrivers can be easily fixed, thereby improving the overall practicality of the device.
[0013] Preferably, a carrying handle is installed in the middle position of the front surface of the protective shell, and the outer surface of the horizontal bar of the carrying handle is provided with an anti-slip cover. The provision of the carrying handle can facilitate the staff to carry the entire device, and the provision of the anti-slip cover provides greater friction and comfort for the staff's grip.
[0014] Beneficial effects of the utility model:
[0015] 1. By setting an electric push rod, after using the flow meter and placing it into the equipment slot, start the electric push rod, and its telescopic end drives the drive motor to move toward the probe end of the flow meter until the protective component at the output end of the drive motor covers the probe of the flow meter. Then start the drive motor, and its output end drives the protective component to rotate, thereby wiping and protecting the probe of the flow meter. This solves the problem that the existing water supply pipe flow monitoring equipment does not have the wiping protection function for the detection equipment probe during use, and long-term use can easily cause the probe to be corroded, resulting in a decrease in measurement accuracy. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a schematic diagram of the three-dimensional structure of a portable water supply pipe flow monitoring device of the present utility model;
[0017] Figure 2 Shown is a schematic diagram of the internal three-dimensional structure of a protective shell of a portable water supply pipe flow monitoring device of the present invention;
[0018] Figure 3 Shown is a schematic diagram of the explosion structure of a protective component of a portable water supply pipe flow monitoring device of the present utility model;
[0019] Figure 4 Shown is a schematic diagram of the explosion structure of a protective shell of a portable water supply pipe flow monitoring device of the present utility model;
[0020] Figure 5The utility model is a portable water supply pipe flow monitoring device Figure 2 The enlarged structural diagram of point A is shown.
[0021] Explanation of the accompanying symbols: 1. Protective shell; 2. Top cover; 3. Lock; 4. Rubber bottom plate; 5. Equipment slot; 6. Flow meter; 7. Electric push rod; 8. Protective shell; 9. Drive motor; 101. Rubber sleeve; 102. Sponge ring; 11. Baffle; 12. Switch; 13. Controller; 14. Mounting slot; 15. Damping shaft; 16. Elastic strap; 17. Buckle; 18. Slot; 19. Telescopic rod; 20. Threaded connection seat; 21. Connecting screw; 22. Tool slot; 23. Snap ring; 24. Handle bar; 25. Anti-slip sleeve. DETAILED DESCRIPTION
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] See also Figure 1-Figure 5 The utility model provides an embodiment: a portable water supply pipe flow monitoring device, including a protective shell 1; also including an electric push rod 7, a protective shell 8, a drive motor 9 and a protective component, the upper surface of the protective shell 1 is provided with a top cover 2, the middle position of the front side surface of the top cover 2 is provided with two symmetrical lock buckles 3, the inner bottom surface of the protective shell 1 is provided with a rubber bottom plate 4, the upper surface right side of the rubber bottom plate 4 is provided with a device slot 5, the inner rear position of the device slot 5 is provided with a flow meter 6, the inner surface of the protective shell 1 is provided with an electric push rod 7 on the right side of the front side, the outer surface of the electric push rod 7 is aligned with the device slot 5 is engaged in the internal front position, and the telescopic end of the electric push rod 7 is installed with a protective shell 8. A drive motor 9 is provided inside the protective shell 8. The output end of the drive motor 9 is connected with a protective component. By setting the electric push rod 7, after using the flow meter 6 and placing it inside the equipment slot 5, the electric push rod 7 is started, and its telescopic end drives the drive motor 9 to move toward the probe end of the flow meter 6 until the protective component at the output end of the drive motor 9 covers the probe of the flow meter 6, and then the drive motor 9 is started, and its output end drives the protective component to rotate, thereby wiping and protecting the probe of the flow meter 6.
[0024] See also Figure 2-Figure 5In this embodiment, the protective component includes a rubber sleeve 101 and a sponge ring 102. The output end of the driving motor 9 is connected to the rubber sleeve 101, and the rear surface of the rubber sleeve 101 is connected to the sponge ring 102. By setting the rubber sleeve 101 and the sponge ring 102, when the driving motor 9 rotates and the electric push rod 7 is pushed, the sponge ring 102 will first contact the probe, thereby wiping the moisture on its surface, and then the rubber sleeve 101 contacts the probe and covers it, reducing the damage to the probe during the movement of the equipment. Baffles 11 are installed on the inner surfaces of the left and right sides of the middle section of the equipment slot 5, and a switch 12 is installed on the front surface of the left baffle 11. A controller 13 is provided at the lower right corner of the upper surface of the rubber bottom plate 4. The controller 13 is electrically connected to the switch 12, the electric push rod 7 and the driving motor 9. By setting the baffle 11, after the electric push rod 7 pushes the driving motor 9 to move to a certain distance, the rear surface of the protective shell 8 will contact the switch 12 on the surface of the baffle 11 and trigger the switch 12. At this time, the controller 13 Receive and transmit signals, control the drive motor 9 and the electric push rod 7 to stop working, at this time the probe is just completely wrapped by the rubber sleeve 101, so as to avoid the problem that the electric push rod 7 is extended too long and causes the probe to be squeezed, the upper surface of the rubber base plate 4 is located on the left side of the equipment slot 5 and has a mounting slot 14, the internal rotation of the mounting slot 14 is connected to the damping shaft 15, the outer surface of the damping shaft 15 is wound with an elastic band 16, the end of the elastic band 16 is connected with a buckle 17, the upper surface of the rubber base plate 4 is located at Symmetrical slots 18 are provided on the right side of the equipment slot 5, and the slots 18 match the buckles 17. By setting the elastic strap 16, after the flow meter 6 is placed inside the placement slot, the buckle 17 at the end of the elastic strap 16 is pulled, and the buckle 17 is snapped into the inside of the slot 18, so that the flow meter 6 can be assisted in positioning to reduce shaking during transportation. When it needs to be used, the buckle 17 is pulled out from the inside of the slot 18, and the damping shaft 15 will rotate, thereby winding the elastic strap 16 again.
[0025] See also Figures 1-4In this embodiment, a telescopic rod 19 is provided inside the placement groove at the lower left side of the upper surface of the rubber base plate 4. A threaded connection seat 20 is installed on the left end surface of the telescopic rod 19. A connecting screw 21 is installed on the rear surface of the flow meter 6. The connecting screw 21 matches the threaded connection seat 20. By providing the threaded connection seat 20, the flow meter 6 can be easily installed through the connecting screw 21. Then, the telescopic rod 19 can be used to facilitate the staff to send the flow meter 6 to the measurement liquid level for measurement operations. The upper left corner of the upper surface of the rubber base plate 4 Symmetrical tool slots 22 are provided, and a snap ring 23 is installed on the right side of the bottom surface of the two tool slots 22. By setting the tool slots 22 and the snap ring 23, tools such as screwdrivers can be easily fixed, thereby improving the overall practicality of the device. A carrying rod 24 is installed in the middle position of the front surface of the protective shell 1, and the outer surface of the cross bar of the carrying rod 24 is provided with an anti-slip sleeve 25. The provision of the carrying rod 24 can facilitate the staff to carry the entire device, and the provision of the anti-slip sleeve 25 provides greater friction and comfort for the staff's grip.
[0026] During operation, by setting the rubber sleeve 101 and the sponge ring 102, under the rotation of the drive motor 9 and the push of the electric push rod 7, the sponge ring 102 will first contact with the probe, thereby wiping the moisture on its surface, and then the rubber sleeve 101 will contact with the probe and cover it, reducing the damage to the probe during the movement of the equipment, and by setting the baffle 11, after the electric push rod 7 pushes the drive motor 9 to move to a certain distance, the rear surface of the protective shell 8 will contact the switch 12 on the surface of the baffle 11 and trigger the switch 12. At this time, the controller 13 receives and transmits the signal to control the drive motor 9 and the electric push rod 7 to stop working. At this time, the probe is just completely wrapped by the rubber sleeve 101, so as to avoid the problem of the electric push rod 7 extending too long and causing the probe to be squeezed, and by setting the elastic strap 16, after the flow meter 6 is placed inside the placement slot, By pulling the buckle 17 at the end of the elastic band 16 and snapping the buckle 17 into the inside of the slot 18, the flow meter 6 can be assisted in positioning to reduce shaking during transportation. When it needs to be used, the buckle 17 is pulled out from the inside of the slot 18, and the damping shaft 15 will rotate, thereby winding the elastic band 16 again. By setting the threaded connection seat 20, the flow meter 6 can be easily installed through the connecting screw 21, and then the telescopic rod 19 can be used to facilitate the staff to send the flow meter 6 to the measuring liquid level for measurement operations. By setting the tool slot 22 and the snap ring 23, tools such as screwdrivers can be easily fixed, thereby improving the overall practicality of the device. By setting the carrying rod 24, the staff can carry the entire device easily. At the same time, by setting the anti-slip sleeve 25, the staff's grip is provided with greater friction and comfort.
[0027] Through the above steps, by setting the electric push rod 7, after using the flow meter 6 and placing it into the equipment slot 5, start the electric push rod 7, and its telescopic end drives the drive motor 9 to move toward the probe end of the flow meter 6 until the protective component at the output end of the drive motor 9 covers the probe of the flow meter 6, and then start the drive motor 9, and its output end drives the protective component to rotate, thereby wiping and protecting the probe of the flow meter 6, thereby solving the problem that the existing water supply pipe flow monitoring equipment does not have the wiping protection function for the probe of the detection equipment when in use, and long-term use can easily cause the probe to be corroded, resulting in a decrease in measurement accuracy.
Claims
1. A portable water supply pipe flow monitoring device, comprising a protective shell (1); characterized in that: The utility model also includes an electric push rod (7), a protective shell (8), a drive motor (9) and a protective assembly. The upper surface of the protective shell (1) is provided with a top cover (2), and two symmetrical lock buckles (3) are provided at the middle position of the front side surface of the top cover (2). The inner bottom surface of the protective shell (1) is provided with a rubber bottom plate (4), and an equipment slot (5) is provided on the right side of the upper surface of the rubber bottom plate (4). A flow meter (6) is provided at the rear position inside the equipment slot (5). An electric push rod (7) is installed at the right position on the front side of the inner surface of the protective shell (1), and the outer surface of the electric push rod (7) is engaged with the inner front side position of the equipment slot (5). The telescopic end of the electric push rod (7) is provided with a protective shell (8), and the interior of the protective shell (8) is provided with a drive motor (9). The output end of the drive motor (9) is connected to the protective assembly.
2. A portable water supply pipe flow monitoring device according to claim 1, characterized in that: The protective component comprises a rubber sleeve (101) and a sponge ring (102); the output end of the driving motor (9) is connected to the rubber sleeve (101); and the rear surface of the rubber sleeve (101) is connected to the sponge ring (102).
3. The portable water supply pipe flow monitoring device according to claim 1, characterized in that: Baffles (11) are installed on the inner surfaces of the left and right sides of the middle section of the equipment slot (5), a switch (12) is installed on the front surface of the left baffle (11), and a controller (13) is provided at the lower right corner of the upper surface of the rubber bottom plate (4). The controller (13) is electrically connected to the switch (12), the electric push rod (7) and the drive motor (9).
4. The portable water supply pipe flow monitoring device according to claim 1, characterized in that: The upper surface of the rubber base plate (4) is located at the left side of the equipment slot (5) and is provided with a mounting slot (14); the interior of the mounting slot (14) is rotatably connected to a damping shaft (15); an elastic band (16) is wound around the outer surface of the damping shaft (15); the end of the elastic band (16) is connected to a buckle (17); the upper surface of the rubber base plate (4) is located at the right side of the equipment slot (5) and is provided with mutually symmetrical clamping slots (18); the clamping slots (18) match the buckle (17).
5. The portable water supply pipe flow monitoring device according to claim 1, characterized in that: A telescopic rod (19) is provided inside a placement groove at a lower position on the left side of the upper surface of the rubber base plate (4), a threaded connection seat (20) is installed on the left end surface of the telescopic rod (19), and a connecting screw (21) is installed on the rear side surface of the flow meter (6), and the connecting screw (21) matches the threaded connection seat (20).
6. The portable water supply pipe flow monitoring device according to claim 1, characterized in that: A tool groove (22) symmetrical to each other is provided at the upper left corner of the upper surface of the rubber base plate (4), and a clamping ring (23) is installed at the right side of the bottom surface of the two tool grooves (22).
7. The portable water supply pipe flow monitoring device according to claim 1, characterized in that: A carrying rod (24) is installed at the middle position of the front side surface of the protective shell (1), and the outer surface of the cross bar of the carrying rod (24) is covered with an anti-slip cover (25).