Industrial flowmeter convenient to mount quickly
By using a connecting pipe and groove design, and utilizing a threaded rod and gear meshing mechanism, the industrial flow meter can be quickly installed and stably connected to the pipeline, solving the problem of cumbersome installation in existing technologies.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHAANXI SAIDE AUTOMATION EQUIP MFG CO LTD
- Filing Date
- 2025-06-18
- Publication Date
- 2026-04-21
AI Technical Summary
The installation process of existing industrial flow meters is cumbersome, requiring multiple tightening and loosening of bolts, which makes disassembly and installation inconvenient.
The design employs a connecting pipe and a sliding groove. By rotating the threaded rod, it drives the spur gear and face gear to mesh, enabling multiple threaded rods to rotate synchronously. Combined with stabilizing components and a control mechanism, this allows for the rapid fixing of the flow meter to the pipeline.
It enables rapid installation of flow meters and pipelines, improves installation stability, and simplifies the dismantling and installation process.
Smart Images

Figure CN224151785U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of industrial flow meter installation technology, and in particular to an industrial flow meter that is easy to install quickly. Background Technology
[0002] Industrial flow meters are industrial instruments used to measure fluid flow rate, velocity, or cumulative volume. They are widely used in chemical, petroleum, water treatment, and energy fields and are core equipment for process control and metering management. They convert fluid motion into quantifiable signals through physical principles and are mainly divided into mechanical, electromagnetic, ultrasonic, thermal, and Coriolis mass flow meters.
[0003] Existing industrial flow meters typically use bolts to secure the connection between the flow meter and the pipeline. This connection method is complex and requires operators to tighten and loosen the bolts multiple times. Therefore, when it is necessary to inspect or replace the flow meter, the disassembly and installation of the flow meter is very cumbersome and cannot meet the needs of operators. Utility Model Content
[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing an industrial flow meter that is easy to install quickly.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] An industrial flow meter that is easy to install quickly includes a pipe and a flow meter. A connecting pipe 1 is fixedly installed on the pipe, and a connecting pipe 2 is fixedly installed on the flow meter. The connecting pipe 1 has a placement port, and the connecting pipe 2 is slidably connected to the placement port. The connecting pipe 2 has multiple installation ports. The connecting pipe 1 has a groove corresponding to the installation port. An installation block matching the installation port is slidably connected in the groove. A threaded rod is threadedly connected to the installation block. The threaded rod is rotatably connected in the groove. The connecting pipe 1 has an opening, and a face gear is rotatably connected in the opening. A spur gear 1 is fixedly installed on each threaded rod. Multiple spur gears 1 mesh with face gears. A stabilizing component matching the spur gear 1 is installed on the connecting pipe 1.
[0007] Preferably, the stabilizing component includes two extension blocks fixedly mounted on the connecting pipe, the two extension blocks are rotatably mounted on a rotating shaft, a stabilizing block is fixedly mounted on the rotating shaft, and a control mechanism for controlling the rotation of the stabilizing block is mounted on the connecting pipe.
[0008] Preferably, the control mechanism includes a fixed block fixedly mounted on the connecting pipe, a rotating shaft rotatably mounted on the fixed block, a spur gear 2 fixedly mounted on the rotating shaft 2, the spur gear 2 meshing with the spur gear 1, and bevel gears fixedly mounted on both the rotating shaft 2 and the rotating shaft 1, the two bevel gears meshing and transmitting power to each other.
[0009] Preferably, a knob is fixedly mounted on one of the threaded rods, and a rubber sleeve is threaded onto the knob.
[0010] Preferably, the rear end of the mounting block is square-shaped, the slide groove is also square-shaped, and the mounting block matches the slide groove.
[0011] Preferably, a protective layer is fixedly installed on each of the plurality of stabilizing blocks.
[0012] 1. Compared with the prior art, the beneficial effects of this utility model are: by rotating a threaded rod, a spur gear is driven to rotate, thereby driving the face gear to rotate, so that multiple spur gears rotate at the same time, and thus multiple threaded rods rotate at the same time, and multiple mounting blocks slide into the mounting port of the connecting pipe at the same time, thereby completing the quick installation of the connecting pipe.
[0013] 2. The rotation of spur gear one drives the meshing spur gear two to rotate, which in turn drives shaft two to rotate. Through the meshing of two bevel gears, shaft one rotates, which in turn drives the stabilizing block to fix and clamp the connecting pipe two, further improving the stability of the installation between the flow meter and the pipeline. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of an industrial flow meter that is easy to install quickly, as proposed in this utility model.
[0015] Figure 2 This is a three-dimensional structural diagram of a stabilizing component for an industrial flow meter that is easy to install quickly, as proposed in this utility model.
[0016] Figure 3 This is a three-dimensional cross-sectional view of the threaded rod of an industrial flow meter that is easy to install quickly, as proposed in this utility model.
[0017] Figure 4 This is a three-dimensional cross-sectional view of the face gear of an industrial flow meter that is easy to install according to this utility model.
[0018] In the diagram: 1. Pipe, 2. Flow meter, 3. Connecting pipe one, 4. Connecting pipe two, 5. Placement port, 6. Installation port, 7. Mounting block, 8. Threaded rod, 9. Face gear, 10. Spur gear one, 11. Extension block, 12. Shaft one, 13. Stabilizing block, 14. Shaft two, 15. Spur gear two, 16. Bevel gear, 17. Knob, 18. Slide groove. Detailed Implementation
[0019] Reference Figures 1-4 An industrial flow meter that is easy to install quickly includes a pipe 1 and a flow meter 2. The pipe 1 is an inlet for flow passage. The flow meter 2 monitors the flow and records the data visually on a screen. This is existing technology. A connecting pipe 1 3 is fixedly installed on the pipe 1, and a connecting pipe 2 4 is fixedly installed on the flow meter 2. The connecting pipe 1 3 has a placement port 5, and the connecting pipe 2 4 is slidably connected within the placement port 5. The connecting pipe 2 4 has multiple installation ports 6, and the connecting pipe 1 3 has a groove 18 corresponding to the installation ports 6. An installation device is slidably connected within the groove 18. Mounting blocks 7 are slidably connected to mounting openings 6. Threaded rods 8 are threadedly connected to mounting blocks 7 and rotatably connected to sliding grooves 18. The rotatable connection between the threaded rods 8 and sliding grooves 18 has a friction layer, so the threaded rods 8 can self-lock after rotation and will not rotate on their own. Connecting pipe 3 has an opening, and face gears 9 are rotatably connected inside the opening. Each threaded rod 8 is fixedly mounted with a spur gear 10, and multiple spur gears 10 mesh with face gears 9. A stabilizing component matching the spur gears 10 is installed on connecting pipe 3.
[0020] By rotating the threaded rod 8, the threaded rod 8 drives the spur gear 10 fixedly installed on it to rotate. The spur gear 10 drives the meshing face gear 9 to rotate in the opening. Therefore, the face gear 9 drives the other meshing spur gears 10 to rotate, so that multiple spur gears 10 rotate at the same time. This drives multiple threaded rods 8 to rotate at the same time, so that multiple mounting blocks 7 can slide in the slide groove 18 at the same time and enter the mounting port 6 at the same time to fix and install the connecting pipe 2 4.
[0021] The stabilizing component includes two extension blocks 11 fixedly mounted on the connecting pipe 3. The two extension blocks 11 are rotatably mounted on a rotating shaft 12. A stabilizing block 13 is fixedly mounted on the rotating shaft 12. A control mechanism for controlling the rotation of the stabilizing block 13 is mounted on the connecting pipe 3.
[0022] The control mechanism drives the rotation of the rotating shaft 12. When the mounting block 7 fixes the connecting pipe 2 4, the rotating shaft 12 drives the stabilizing block 13 to clamp the connecting pipe 2 4, which further improves the stability of the installation of the connecting pipe 2 4 and the flow meter 2 with the connecting pipe 1 3 and the pipeline 1.
[0023] The control mechanism includes a fixed block that is fixedly installed on the connecting pipe 3. A rotating shaft 14 is rotatably installed on the fixed block. A spur gear 15 is fixedly installed on the rotating shaft 14. The spur gear 15 meshes with the spur gear 10. A bevel gear 16 is fixedly installed on both the rotating shaft 14 and the rotating shaft 12. The two bevel gears 16 mesh with each other for transmission.
[0024] When the threaded rod 8 drives the spur gear 10 to rotate, the spur gear 10 drives the meshing spur gear 2 15 to rotate, thereby causing the rotating shaft 2 14 fixedly mounted on the spur gear 2 15 to rotate. This causes the bevel gear 16 on the rotating shaft 2 14 to rotate, and the meshing bevel gear 16 to rotate, thereby driving the rotating shaft 12 to rotate.
[0025] A knob 17 is fixedly installed on one of the threaded rods 8. A rubber sleeve is threaded onto the knob 17. The operator can rotate the threaded rod 8 more easily by turning the knob 17. After long-term use, the rubber sleeve will wear out. When it needs to be replaced, the operator can quickly remove and replace the rubber sleeve by threading it onto the knob 17. The rear end of the mounting block 7 is square-shaped, and the slide groove 18 is also square-shaped. The mounting block 7 and the slide groove 18 match. Due to the square shape matching between the mounting block 7 and the slide groove 18, the mounting block 7 can slide stably in the slide groove 18 without shaking. A protective layer is fixedly installed on each of the multiple stabilizing blocks 13. The protective layer can reduce the clamping damage of the stabilizing blocks 13 to the connecting pipe 4.
[0026] In this invention, the working principle is as follows: The operator slides the second connecting pipe 4 into the placement port 5 on the first connecting pipe 3. By rotating the threaded rod 8, the threaded rod 8 drives the spur gear 10 fixed on it to rotate. The spur gear 10 drives the meshing face gear 9 to rotate in the opening. Therefore, the face gear 9 drives the other meshing spur gears 10 to rotate, thus causing multiple spur gears 10 to rotate simultaneously. This, in turn, drives multiple threaded rods 8 to rotate simultaneously, allowing multiple mounting blocks 7 to slide simultaneously in the slide groove 18 and enter the mounting port 6 at the same time, thus securing the second connecting pipe 4. When the threaded rod 8 drives the spur gear 10 to rotate, the spur gear 10 drives the meshing spur gear 15 to rotate, thereby causing the rotating shaft 14 fixedly mounted on the spur gear 15 to rotate. This, in turn, drives the bevel gear 16 on the rotating shaft 14 to rotate, and the meshing bevel gear 16 to rotate, which in turn drives the rotating shaft 12 to rotate. When the mounting block 7 fixes the connecting pipe 2 4, the rotating shaft 12 drives the stabilizing block 13 to clamp and fix the connecting pipe 2 4, further improving the stability of the installation of the connecting pipe 2 4 and the flow meter 2 with the connecting pipe 3 and the pipeline 1.
Claims
1. An industrial flowmeter for easy and quick installation comprising a pipe (1) and a flowmeter (2), characterized in that, A connecting pipe 1 (3) is fixedly installed on the pipe (1), and a connecting pipe 2 (4) is fixedly installed on the flow meter (2). A placement port (5) is opened on the connecting pipe 1 (3), and the connecting pipe 2 (4) is slidably connected in the placement port (5). Multiple installation ports (6) are opened on the connecting pipe 2 (4). A sliding groove (18) corresponding to the installation port (6) is opened on the connecting pipe 1 (3). An installation block (7) matching the installation port (6) is slidably connected in the sliding groove (18). A threaded rod (8) is threadedly connected on the installation block (7). The threaded rod (8) is rotatably connected in the sliding groove (18). An opening is opened on the connecting pipe 1 (3), and a face gear (9) is rotatably connected in the opening. A spur gear 1 (10) is fixedly installed on each threaded rod (8). Multiple spur gears 1 (10) mesh with face gears (9). A stabilizing component matching the spur gear 1 (10) is installed on the connecting pipe 1 (3).
2. An industrial flow meter for easy and quick installation according to claim 1, characterized in that, The stabilizing component includes two extension blocks (11) fixedly installed on the connecting pipe (3). The two extension blocks (11) are rotatably mounted on a rotating shaft (12). A stabilizing block (13) is fixedly installed on the rotating shaft (12). A control mechanism for controlling the rotation of the stabilizing block (13) is installed on the connecting pipe (3).
3. An industrial flow meter for easy and quick installation according to claim 2, characterized in that, The control mechanism includes a fixed block fixedly installed on the connecting pipe (3), a rotating shaft (14) rotatably installed on the fixed block, a spur gear (15) fixedly installed on the rotating shaft (14), and a bevel gear (16) fixedly installed on both the rotating shaft (14) and the rotating shaft (12).
4. A flow meter according to claim 1, wherein, A knob (17) is fixedly installed on one of the threaded rods (8), and a rubber sleeve is threaded onto the knob (17).
5. A flow meter according to claim 1, wherein, The rear end of the mounting block (7) is square-shaped, and the slide groove (18) is also square-shaped. The mounting block (7) matches the slide groove (18).
6. An industrial flow meter for easy and quick installation according to claim 2, wherein, Each of the aforementioned stabilizing blocks (13) is fixedly fitted with a protective layer.