Easily detachable electromagnetic flowmeter in food field
By designing limiting and fixing holes, slots, and locking blocks in the electromagnetic flowmeter, and embedding sealing rings of different diameters on the connecting valve seat, the problems of difficult disassembly and inconvenient cleaning of electromagnetic flowmeters in the food industry are solved, improving the stability and sealing performance of the equipment and reducing maintenance costs.
Patent Information
- Application Number
- CN202520449243.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-03-14
AI Technical Summary
Existing electromagnetic flowmeters are difficult to install and disassemble, and inconvenient to clean when used in the food industry. They are difficult to thoroughly clean, which affects product quality. Furthermore, maintenance and replacement of parts are inconvenient, leading to production stagnation and increased costs.
An easily detachable electromagnetic flowmeter was designed. By setting limiting and fixing holes, slots and blocks on the limiting and fixing plate and the connecting valve seat, the components are stably connected. Sealing rings of different diameters are embedded on the connecting valve seat to form double sealing protection.
This technology enables convenient disassembly and cleaning of electromagnetic flowmeters, improves equipment stability and sealing performance, reduces component shaking and displacement, and lowers maintenance costs and potential safety hazards.
Smart Images

Figure CN223769577U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electromagnetic flowmeter technology, and in particular to an easily detachable electromagnetic flowmeter for the food industry. Background Technology
[0002] In the food production process, it is necessary to accurately measure the flow rate of various liquid raw materials. Electromagnetic flow meters are widely used because of their advantages such as high measurement accuracy and fast response speed.
[0003] However, existing electromagnetic flow meters present some problems when used in the food industry. The food industry has extremely high hygiene requirements, and equipment needs to be cleaned and maintained regularly. Traditional electromagnetic flow meters are difficult to disassemble after installation, require a lot of time and manpower for cleaning, and are difficult to thoroughly clean internally, which can easily lead to food contamination and affect product quality.
[0004] At the same time, when a malfunction occurs, repairing and replacing parts is extremely inconvenient, leading to production stoppages and increased production costs.
[0005] Therefore, this utility model proposes an easily disassembled electromagnetic flowmeter for the food industry. Utility Model Content
[0006] The purpose of this invention is to overcome the shortcomings of existing technologies and propose an easily detachable electromagnetic flowmeter for the food industry.
[0007] To achieve the above objectives, this utility model adopts the following technical solution: an easily detachable electromagnetic flowmeter for the food industry, comprising:
[0008] An electromagnetic flowmeter assembly, comprising a display mechanism, a connecting mechanism, and a measuring mechanism, wherein the display mechanism is connected to the measuring mechanism via the connecting mechanism;
[0009] The disassembly assembly consists of mounting valve bodies, limiting and fixing plates, and connecting valve seats located on both sides of the measuring mechanism. The two connecting valve seats are respectively located on the opposite sides of the two mounting valve bodies. The limiting and fixing plate is located between the mounting valve bodies and the connecting valve seats. The bottom of the limiting and fixing plate is provided with a connecting plate that connects to the mounting valve bodies and the connecting valve seats. The bottom of the mounting valve body is provided with a first snap-fit groove, which is adapted to the size of the connecting plate.
[0010] Furthermore, the bottom of the connecting plate is provided with limiting and fixing holes that penetrate the valve body and the connecting valve seat. There are four limiting and fixing holes in total, and the four limiting and fixing holes are distributed in a rectangular shape.
[0011] The beneficial effects of adopting the above-mentioned further solution are as follows: the limiting and fixing holes opened at the bottom of the connecting plate play an important role. They penetrate through the valve body and the connecting valve seat, and there are four of them in a rectangular distribution. This design can make the connecting plate firmly connected to the valve body and the connecting valve seat, ensuring the stability and reliability of the structure. The four rectangular holes provide a balanced fixing force, which can effectively prevent the components from loosening or shifting during use, and improve the overall performance.
[0012] Furthermore, a snap-fit groove is provided on the side of the connecting valve seat near the limiting fixing plate, and strip-shaped snap-fit grooves are provided on both sides of the snap-fit groove on the connecting valve seat.
[0013] The beneficial effects of adopting the above-mentioned further solutions are as follows: the snap-fit groove and strip-shaped snap-fit groove opened on the connecting valve seat have significant beneficial effects. The snap-fit groove can achieve tight snap-fit with the corresponding component, enhance the stability of the connection, and effectively prevent the connection from loosening. The strip-shaped snap-fit groove located on both sides of the snap-fit groove can further provide additional snap-fit points, making the connection more secure and reliable, improving the stability of the overall structure, and ensuring that the connecting valve seat can play a safe and stable role in use.
[0014] Furthermore, a second slot is provided on the limiting and fixing plate at the strip slot, and the second slot is the same size as the strip slot.
[0015] The beneficial effects of adopting the above-mentioned further solution are: the second slot opened on the limit fixing plate is the same size as the strip slot of the connecting valve seat. This design has many benefits. The two are size-matched and can achieve precise docking, allowing the limit fixing plate and the connecting valve seat to be tightly connected. This tight connection can enhance the stability of the overall structure, reduce the shaking and displacement between components, effectively improve the reliability of the equipment, and ensure that it can perform its functions safely and stably during operation.
[0016] Furthermore, a strip-shaped locking block is provided on the side of the mounting valve body near the limiting fixing plate. The size of the strip-shaped locking block is adapted to the size of the second locking groove and the strip-shaped locking groove. The mounting valve body is engaged with the second locking groove and the strip-shaped locking groove through the strip-shaped locking block.
[0017] The beneficial effects of adopting the above-mentioned further solution are: the size of the strip-shaped locking block for installing the valve body is adapted to the second locking groove and the strip-shaped locking groove and they are interlocked with each other, which has significant advantages. The precise adaptation ensures the tightness of the interlocking, so that the valve body, the limiting fixing plate and the connecting valve seat are firmly connected. This enhances the stability of the overall structure, can effectively resist the action of external forces, and reduce the risk of loosening and displacement. At the same time, the installation process is more convenient and efficient, improving the quality and efficiency of equipment installation.
[0018] Furthermore, a flange is provided on the side of the connecting valve seat away from the mounting valve body, and the flange has connecting holes arranged in a ring, with the included angle between two adjacent connecting holes being equal.
[0019] The beneficial effects of adopting the above-mentioned further solutions are: the flange and connection hole design on the valve seat is very practical. The flange facilitates the connection of the valve seat with other components. The connection holes, which are distributed in a ring and have equal included angles, make the connection more uniform and stable. In use, the valve seat can be tightly connected with other components by passing bolts and other connecting parts through the connection holes, which enhances the reliability of the connection, effectively avoids loosening or leakage caused by uneven force on the connection parts, and improves the stability and safety of the overall device.
[0020] Furthermore, a first sealing ring and a second sealing ring are embedded on the side of the connecting valve seat away from the limiting fixing plate, and the diameter of the second sealing ring is larger than the diameter of the first sealing ring.
[0021] The beneficial effects of adopting the above-mentioned further solution are as follows: the first and second sealing rings embedded on the side of the connecting valve seat away from the limit fixing plate play a significant role. The design with different diameters can form a double sealing protection. The first sealing ring initially blocks the leakage of the medium, and the second sealing ring further strengthens the sealing effect. The double protection effectively improves the sealing performance of the connecting valve seat, prevents the leakage of the medium, ensures the stability and safety of the system operation, and reduces maintenance costs and potential safety hazards.
[0022] Compared with the prior art, the advantages and positive effects of this utility model are as follows:
[0023] 1. In this utility model, the second slot on the limiting and fixing plate is the same size as the strip slot of the connecting valve seat. This design has many benefits. The two are size-matched and can achieve precise docking, allowing the limiting and fixing plate and the connecting valve seat to be tightly connected. This tight connection can enhance the stability of the overall structure, reduce the shaking and displacement between components, effectively improve the reliability of the equipment, and ensure that it can perform its functions safely and stably during operation.
[0024] 2. In this utility model, the first and second sealing rings embedded on the side of the connecting valve seat away from the limiting fixing plate play a significant role. The design with different diameters can form a double sealing protection. The first sealing ring initially blocks the leakage of the medium, and the second sealing ring further strengthens the sealing effect. The double protection effectively improves the sealing performance of the connecting valve seat, prevents the leakage of the medium, ensures the stability and safety of the system operation, and reduces maintenance costs and potential safety hazards. Attached Figure Description
[0025] Figure 1 This is a front view of an easily detachable electromagnetic flowmeter for the food industry according to this utility model;
[0026] Figure 2 This is an exploded view of an easily disassembled electromagnetic flowmeter for the food industry according to this utility model;
[0027] Figure 3 This is a structural diagram of the electromagnetic flowmeter assembly in an easily detachable electromagnetic flowmeter for the food industry according to this utility model;
[0028] Figure 4 This is a disassembled diagram of the disassembly components in an easily disassembled electromagnetic flowmeter for the food industry according to this utility model.
[0029] Figure Labels
[0030] 1. Electromagnetic flowmeter assembly; 11. Display mechanism; 12. Connecting mechanism; 13. Measuring mechanism;
[0031] 2. Disassemble the components; 21. Install the valve body; 211. First snap-fit groove; 212. Strip-shaped snap-fit block; 22. Limiting and fixing plate; 221. Second snap-fit groove; 23. Connect the valve seat; 231. Flange; 232. Connecting hole; 233. Snap-fit groove; 234. Strip-shaped snap-fit groove; 24. First sealing ring; 25. Second sealing ring; 26. Connecting plate; 261. Limiting and fixing hole. Detailed Implementation
[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0033] like Figure 1-4 As shown, this utility model provides a technical solution: an easily detachable electromagnetic flowmeter for the food industry, comprising:
[0034] Electromagnetic flowmeter assembly 1 is composed of a display mechanism 11, a connecting mechanism 12 and a measuring mechanism 13. The display mechanism 11 is connected to the measuring mechanism 13 through the connecting mechanism 12.
[0035] The disassembly assembly 2 consists of mounting valve bodies 21, limiting and fixing plates 22, and connecting valve seats 23, located on both sides of the measuring mechanism 13. The two connecting valve seats 23 are respectively located on opposite sides of the two mounting valve bodies 21. The limiting and fixing plate 22 is positioned between the mounting valve bodies 21 and the connecting valve seats 23. The bottom of the limiting and fixing plate 22 has a connecting plate 26 that connects to the mounting valve bodies 21 and the connecting valve seats 23. The bottom of the mounting valve body 21 has a first locking groove 211 that matches the size of the connecting plate 26. The bottom of the connecting plate 26 has four limiting and fixing holes 261 that penetrate the mounting valve bodies 21 and the connecting valve seats 23, arranged in a symmetrical pattern. The valve body 21 is mounted in a rectangular configuration. A strip-shaped locking block 212 is provided on the side of the valve body 21 near the limiting and fixing plate 22. The size of the strip-shaped locking block 212 is adapted to the size of the second locking groove 221 and the strip-shaped locking groove 234. The valve body 21 is engaged with the second locking groove 221 and the strip-shaped locking groove 234 through the strip-shaped locking block 212. The second locking groove 221 on the limiting and fixing plate 22 is the same size as the strip-shaped locking groove 234 of the connecting valve seat 23. This design has many advantages. The size matching of the two can achieve precise docking, allowing the limiting and fixing plate 22 and the connecting valve seat 23 to be tightly connected. This tight connection can enhance the stability of the overall structure, reduce the shaking and displacement between components, effectively improve the reliability of the equipment, and ensure that it can perform its functions safely and stably during operation.
[0036] A snap-fit groove 233 is provided on the side of the connecting valve seat 23 near the limiting fixing plate 22. A strip-shaped snap-fit groove 234 is provided on both sides of the snap-fit groove 233 on the connecting valve seat 23. The snap-fit groove 233 and the strip-shaped snap-fit groove 234 provided on the connecting valve seat 23 have significant beneficial effects. The snap-fit groove 233 can be tightly snapped with the corresponding component, which enhances the stability of the connection and effectively prevents the connection from loosening. The strip-shaped snap-fit groove 234 located on both sides of the snap-fit groove 233 can further provide additional snap-fit points, making the connection more secure and reliable, improving the stability of the overall structure, and ensuring that the connecting valve seat 23 can play a safe and stable role in use.
[0037] A second slot 221 is provided on the limiting and fixing plate 22 at the strip slot 234. The second slot 221 is the same size as the strip slot 234. The second slot 221 on the limiting and fixing plate 22 is the same size as the strip slot 234 of the connecting valve seat 23. This design has many benefits. The two are size-matched and can achieve precise docking, so that the limiting and fixing plate 22 and the connecting valve seat 23 are tightly connected. This tight connection can enhance the stability of the overall structure, reduce the shaking and displacement between components, effectively improve the reliability of the equipment, and ensure that it can perform its functions safely and stably during operation.
[0038] Furthermore, such as Figure 2 - Figure 4As shown: A first sealing ring 24 and a second sealing ring 25 are embedded on the side of the connecting valve seat 23 away from the limiting fixing plate 22. The diameter of the second sealing ring 25 is larger than the diameter of the first sealing ring 24. The first and second sealing rings embedded on the side of the connecting valve seat away from the limiting fixing plate play a significant role. The design of different diameters can form a double sealing protection. The first sealing ring initially blocks the leakage of the medium, and the second sealing ring further strengthens the sealing effect. The double protection effectively improves the sealing performance of the connecting valve seat, prevents the leakage of the medium, ensures the stability and safety of the system operation, and reduces maintenance costs and potential safety hazards.
[0039] The above solutions also have the problem of connecting the device to the pipeline, such as... Figure 4 As shown: In this design, a flange 231 is provided on the side of the valve seat 23 away from the valve body 21. The flange 231 has connecting holes 232 arranged in a ring, and the included angle between two adjacent connecting holes 232 is equal. The design of the flange 231 and connecting holes 232 on the valve seat 23 is very practical. The flange 231 facilitates the connection of the valve seat 23 with other components. The ring-shaped connecting holes 232 with equal included angles make the connection more uniform and stable. In use, the valve seat 23 can be tightly connected with other components by passing bolts or other connecting parts through the connecting holes 232, which enhances the reliability of the connection, effectively avoids loosening or leakage caused by uneven force on the connection parts, and improves the stability and safety of the overall device.
[0040] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.
Claims
1. A food field detachable electromagnetic flowmeter characterized by, The utility model relates to an electromagnetic flowmeter assembly (1) is connected with the measuring mechanism (13) through the connecting mechanism (12) by the display mechanism (11), and the utility model relates to a dismounting assembly (2) is connected with the connecting valve seat (23) through the installation valve body (21) and the limiting fixed plate (22) of setting in the measuring mechanism (13) both sides, and the utility model relates to a connecting plate (26) is set up in the bottom of the limiting fixed plate (22), and the utility model relates to a first clamping groove (211) is set up in the bottom of the installation valve body (21), and the utility model relates to a limiting fixed hole (261) is set up in the bottom of the connecting plate (26), and the utility model relates to a clamping groove (233) is set up in the side of the connecting valve seat (23) near the limiting fixed plate (22), and the utility model relates to a second clamping groove (221) is set up in the limiting fixed plate (22) near the connecting valve seat (23), and the utility model relates to a strip clamping groove (234) is set up in the connecting valve seat (23) on both sides of the clamping groove (233), and the utility model relates to a strip clamping block (212) is set up in the installation valve body (21) near the limiting fixed plate (22), and the utility model relates to a flange plate (231) is set up in the connecting valve seat (23) away from the installation valve body (21), and the utility model relates to a connecting hole (232) is set up in the flange plate (231), and the utility model relates to a first sealing ring (24) and a second sealing ring (25) are embedded in the connecting valve seat (23) away from the limiting fixed plate (22) side. The utility model relates to an electromagnetic flowmeter assembly (1) is connected with the measuring mechanism (13) through the connecting mechanism (12) by the display mechanism (11), and the utility model relates to a dismounting assembly (2) is connected with the connecting valve seat (23) through the installation valve body (21) and the limiting fixed plate (22) of setting in the measuring mechanism (13) both sides, and the utility model relates to a connecting plate (26) is set up in the bottom of the limiting fixed plate (22), and the utility model relates to a first clamping groove (211) is set up in the bottom of the installation valve body (21), and the utility model relates to a limiting fixed hole (261) is set up in the bottom of the connecting plate (26), and the utility model relates to a clamping groove (233) is set up in the side of the connecting valve seat (23) near the limiting fixed plate (22), and the utility model relates to a second clamping groove (221) is set up in the limiting fixed plate (22) near the connecting valve seat (23), and the utility model relates to a strip clamping groove (234) is set up in the connecting valve seat (23) on both sides of the clamping groove (233), and the utility model relates to a strip clamping block (212) is set up in the installation valve body (21) near the limiting fixed plate (22), and the utility model relates to a flange plate (231) is set up in the connecting valve seat (23) away from the installation valve body (21), and the utility model relates to a connecting hole (232) is set up in the flange plate (231), and the utility model relates to a first sealing ring (24) and a second sealing ring (25) are embedded in the connecting valve seat (23) away from the limiting fixed plate (22) side. 2. A food industry disposable electromagnetic flowmeter according to claim 1, characterized in that: 3. A food industry disposable electromagnetic flowmeter according to claim 1, characterized in that: 4. A food industry disposable electromagnetic flowmeter according to claim 1, characterized in that: 5. A food industry disposable electromagnetic flowmeter according to claim 1, characterized in that: 6. A food industry disposable electromagnetic flowmeter according to claim 1, characterized in that: 7. A food industry disposable electromagnetic flowmeter according to claim 1, characterized in that: