An oscillation device for separating ultra-micro factors
By designing an oscillation device, using compression springs and a vibration motor to vibrate the tank, combined with the support structure of an arc-shaped seat and a bellows, the problem of low filtration efficiency in ultrafine particle separation equipment was solved, and the equipment was able to operate efficiently and stably.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JINGMEI LIFE TECH (HANGZHOU) CO LTD
- Filing Date
- 2025-07-07
- Publication Date
- 2026-05-29
AI Technical Summary
Existing ultrafine particle separation equipment has a slow natural permeation filtration efficiency and is inconvenient to operate during the filtration process.
An oscillating device for ultrafine factor separation was designed. The tank is supported by a compression spring A, and the tank is vibrated uniformly by a vibration motor. The primary filter cartridge and the ultrafiltration cartridge move under the vibration force, which enhances the filtration efficiency. The coordination of the arc-shaped seat, the spring seat and the bellows ensures stable vibration of the tank and reduces the risk of collision.
It improves the filtration efficiency of the ultrafine factor separation equipment, ensures stable operation of the equipment, avoids collisions between the tank and the machine body, and facilitates the transportation of raw liquid.
Smart Images

Figure CN224292738U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of ultra-micro factor separation equipment, specifically to an oscillation device for ultra-micro factor separation. Background Technology
[0002] Ultrafiltration, also known as ultrafiltration, is used to retain colloidal particles in water, while allowing water and low molecular weight solutes to permeate through the membrane. The mechanism of ultrafiltration involves a combination of mechanical sieving on the membrane surface, pore blockage, and adsorption on the membrane surface and pores, with sieving being the primary process. Ultrafiltration is an advanced membrane separation technology. Solvents and various small solutes in the feed solution permeate from the high-pressure feed side through the filter membrane to the low-pressure side, thus obtaining ultrafiltrate containing ultrafine particles. Patent CN202021629998.9 discloses an ultrafine particle separation device with the advantages of pre-filtration, preventing impurities from clogging the filter membrane and improving separation efficiency. However, in the process of using ultrafine particle separation equipment, the raw solution is filtered using a primary filter and an ultrafiltration tank. Natural osmosis filtration is slow and inconvenient to operate. Therefore, we propose a shaking device for ultrafine particle separation. Utility Model Content
[0003] To address the problems in the existing technology, this utility model provides an oscillation device for ultra-micro factor separation.
[0004] The technical solution adopted by this utility model to solve its technical problem is a vibration device for separating ultrafine factors, including a body. A compression spring A for support is bolted to the bottom surface of the body, and there are multiple sets of compression spring A. A tank for support is mounted on the top surface of the compression spring A, and a tank cover for sealing is mounted on the top surface of the tank. A vibration motor is mounted on the bottom surface of the tank, and there are multiple sets of vibration motors. A primary filter cartridge is bolted to the inside of the tank, and an ultrafiltration cartridge for separating ultrafine factors is bolted to the bottom surface of the primary filter cartridge.
[0005] The inner side of the machine body is equipped with an arc-shaped seat for support, and there are two sets of arc-shaped seats. Each arc-shaped seat is equipped with a spring seat for support on the side opposite to the tank body, and there are multiple sets of spring seats. A compression spring B for auxiliary support is installed between the two sets of spring seats. A branch pipe for guiding flow is installed on the top surface of the machine body, and a bend pipe for guiding flow is installed on the bottom surface of the machine body. Corrugated pipes for guiding flow are installed between the branch pipe and the feed end of the tank cover, and between the discharge end of the tank bottom and the bend pipe.
[0006] By adopting the above technical solution, during the use of the ultrafine factor separation equipment, the tank can be supported by the uniformly distributed compression springs A, and the multiple sets of vibration motors at the bottom of the tank can be operated to make the tank vibrate evenly. Subsequently, the primary filter cartridge and ultrafiltration cartridge inside the tank can vibrate stably. At the same time, the raw liquid inside the primary filter cartridge and ultrafiltration cartridge can move under the vibration force, and improve the efficiency of filtering the raw liquid, thereby improving the efficiency of the ultrafine factor separation equipment during operation.
[0007] When using the tank, the arc-shaped seat inside the machine body facilitates the support of the compression spring B on the spring seat. The limited range of motion of the compression spring allows the tank to vibrate more stably inside the machine body and reduces the possibility of collisions between the tank and the machine body. At the same time, the bellows is easy to extend and retract, so that the delivery of the raw liquid will not be affected when the tank vibrates, thus enabling the ultrafine factor separation equipment to operate more stably.
[0008] Specifically, solenoid valves are installed at the connection points between the tank body and the bellows, and at the connection points between the tank cover and the bellows.
[0009] By adopting the above technical solution, the solenoid valve can easily control the opening and closing of the feed end of the tank cover and the discharge end at the bottom of the tank, facilitating liquid drainage or discharge of the ultrafiltration solution.
[0010] Specifically, the inner wall surface of the tank is integrally constructed with a rib-shaped plate that abuts against the ultrafiltration cartridge, and there are multiple sets of rib-shaped plates.
[0011] By adopting the above technical solution, the multiple sets of shaped plates inside the tank can easily abut against each other with the ultrafiltration cartridge, thereby improving the stability of the ultrafiltration cartridge inside the tank.
[0012] Specifically, the outer periphery of the ultrafiltration cartridge is provided with grooves that fit the shaped plate, and there are multiple sets of grooves.
[0013] By adopting the above technical solution, the groove on the outer periphery of the ultrafiltration cartridge fits into each other, which helps to improve the stability when the ultrafiltration cartridge and the groove on the outer periphery come into contact with each other, and enables the tank to drive the ultrafiltration cartridge to vibrate more stably.
[0014] Specifically, the outer wall surface of the machine body is bolted with a cover plate for maintenance.
[0015] By adopting the above technical solution, the cover plate is easy to disassemble and assemble, facilitating the maintenance of the internal structure of the machine.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] 1. The technical solution of this application, through the design of compression spring A, tank body, vibration motor, tank cover, primary filter cartridge and ultrafiltration cartridge, enables the uniformly distributed compression spring A to support the tank body during the use of the ultrafine factor separation equipment. This allows multiple sets of vibration motors at the bottom of the tank body to operate and make the tank body vibrate evenly. Subsequently, the primary filter cartridge and ultrafiltration cartridge inside the tank body can vibrate stably. At the same time, the raw liquid inside the primary filter cartridge and ultrafiltration cartridge can move under the vibration force, improving the efficiency of filtering the raw liquid, thereby improving the efficiency of the ultrafine factor separation equipment during operation.
[0018] 2. The technical solution of this application, through the design of spring seat, arc seat, compression spring B, branch pipe, bend pipe and bellows, allows the arc seat inside the machine body to support the compression spring B on the spring seat when the tank is in use. The limited range of motion of the compression spring allows the tank to vibrate more stably inside the machine body and reduces the possibility of collision between the tank and the machine body. At the same time, the bellows is easy to extend and retract, so that the delivery of the raw liquid will not be affected when the tank vibrates, thus enabling the ultrafine factor separation equipment to operate more stably. Attached Figure Description
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0020] Figure 1 This is an isometric view of the present invention;
[0021] Figure 2 This is a schematic plan view of the internal structure of the machine body of this utility model;
[0022] Figure 3 This is a schematic plan view of the connection structure between the body and the tank of this utility model;
[0023] In the diagram: 1. Machine body; 2. Compression spring A; 3. Tank body; 4. Vibration motor; 5. Tank cover; 6. Primary filter cartridge; 7. Ultrafiltration cartridge; 8. Spherical plate; 9. Arc-shaped seat; 10. Spring seat; 11. Compression spring B; 12. Branch pipe; 13. Bend; 14. Bellows; 15. Solenoid valve; 16. Groove; 17. Cover plate. Detailed Implementation
[0024] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0025] Please see Figure 1-3This utility model provides a technical solution: a vibration device for ultrafine factor separation, comprising a body 1, with multiple sets of compression springs A2 bolted to the bottom inner surface of the body 1 for support, a tank 3 for support mounted on the top surface of the compression springs A2, a tank cover 5 for sealing mounted on the top surface of the tank 3, a vibration motor 4 with multiple sets of vibration motors 4 mounted on the bottom surface of the tank 3, and a primary filter cartridge 6 bolted to the inner side of the tank 3, with a device for ultrafine factor separation bolted to the bottom surface of the primary filter cartridge 6. The ultrafiltration cartridge 7 for factor separation; the inner side of the body 1 is equipped with an arc-shaped seat 9 for support, and there are two sets of arc-shaped seats 9. The side of the arc-shaped seat 9 opposite to the tank body 3 is equipped with a spring seat 10 for support, and there are multiple sets of spring seats 10. A compression spring B11 for auxiliary support is installed between the two sets of spring seats 10. The top surface of the body 1 is equipped with a branch pipe 12 for guiding the flow, and the bottom surface of the body 1 is equipped with a bend pipe 13 for guiding the flow. A corrugated pipe 14 for guiding the flow is installed between the branch pipe 12 and the feed end of the tank cover 5 and between the bottom discharge end of the tank body 3 and the bend pipe 13.
[0026] During use, the uniformly distributed compression springs A2 support the tank 3, and the multiple sets of vibration motors 4 at the bottom of the tank 3 operate, causing the tank 3 to vibrate evenly. Subsequently, the primary filter cartridge 6 and the ultrafiltration cartridge 7 inside the tank 3 can vibrate stably. At the same time, the raw liquid inside the primary filter cartridge 6 and the ultrafiltration cartridge 7 can move under the vibration force, improving the efficiency of filtering the raw liquid, thereby improving the efficiency of the ultrafiltration equipment during operation.
[0027] When the tank 3 is in use, the arc-shaped seat 9 inside the machine body 1 provides convenient support for the compression spring B11 on the spring seat 10. The limited range of motion of the compression spring allows the tank 3 to vibrate more stably inside the machine body 1 and reduces the collision between the tank 3 and the machine body 1. At the same time, the bellows 14 is easy to extend and retract, so that the vibration of the tank 3 will not affect the delivery of the raw liquid, making the ultrafine factor separation equipment operate more stably.
[0028] like Figure 2 As shown, solenoid valves 15 are installed at the connection between the tank body 3 and the bellows 14 and at the connection between the tank cover 5 and the bellows 14.
[0029] When in use, the solenoid valve 15 allows for easy control of the opening and closing of the feed end of the tank cover 5 and the discharge end at the bottom of the tank body 3, facilitating liquid drainage or discharge of the ultrafiltration solution.
[0030] like Figure 2 and Figure 3 As shown, the inner wall surface of the tank 3 is integrally constructed with a rib-shaped plate 8 that abuts against the ultrafiltration cartridge 7, and there are multiple sets of rib-shaped plates 8.
[0031] During use, the multiple sets of ribbed plates 8 inside the tank 3 facilitate contact with the ultrafiltration cartridge 7 and improve the stability of the ultrafiltration cartridge 7 inside the tank 3.
[0032] like Figure 3 As shown, the outer periphery of the ultrafiltration cartridge 7 is provided with grooves 16 that fit with the shaped plate 8, and there are multiple sets of grooves 16.
[0033] When in use, the groove 16 on the outer periphery of the ultrafiltration cartridge 7 fits into each other, which helps to improve the stability when the ultrafiltration cartridge 7 and the groove 8 come into contact with each other, and allows the tank body 3 to drive the ultrafiltration cartridge 7 to vibrate more stably.
[0034] like Figure 1 and Figure 3 As shown, a maintenance cover 17 is bolted to the outer wall surface of the body 1.
[0035] During use, the cover plate 17 is easy to disassemble and assemble, facilitating the maintenance of the internal structure of the machine body 1.
[0036] The working principle and usage process of this utility model are as follows: In use, first, install the corresponding structural components in suitable positions. During the use of the ultrafine factor separation equipment, the uniformly distributed compression springs A2 support the tank 3, causing multiple sets of vibration motors 4 at the bottom of the tank 3 to operate and making the tank 3 vibrate uniformly. Subsequently, the primary filter cartridge 6 and ultrafiltration cartridge 7 inside the tank 3 vibrate stably, and the filtration structure inside the primary filter cartridge 6 and ultrafiltration cartridge 7 filters the raw liquid. Simultaneously, the raw liquid inside the primary filter cartridge 6 and ultrafiltration cartridge 7 is subjected to vibration... The device operates at a lower temperature and improves the efficiency of filtering the raw liquid, thereby increasing the efficiency of the ultrafine factor separation equipment. At the same time, when using the tank 3, the arc-shaped seat 9 inside the machine body 1 facilitates the support of the compression spring B11 on the spring seat 10. The limited range of motion of the compression spring allows the tank 3 to vibrate more stably inside the machine body 1 and reduces the possibility of collisions between the tank 3 and the machine body 1. Meanwhile, the bellows 14 is easy to extend and retract, so that the vibration of the tank 3 will not affect the delivery of the raw liquid, making the ultrafine factor separation equipment operate more stably.
[0037] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. An oscillating device for separating ultra-micro factors, characterized in that, The device includes a body (1), on the inner bottom surface of the body (1) a compression spring A (2) for support is bolted on, and there are multiple sets of compression spring A (2). The top surface of the compression spring A (2) is fitted with a tank (3) for support, and the top surface of the tank (3) is fitted with a tank cover (5) for sealing. The bottom surface of the tank (3) is fitted with a vibration motor (4), and there are multiple sets of vibration motors (4). The inner side of the tank (3) is fitted with a primary filter cartridge (6) by bolts, and the bottom surface of the primary filter cartridge (6) is fitted with an ultrafiltration cartridge (7) for ultrafine factor separation by bolts. The inner side of the machine body (1) is equipped with an arc-shaped seat (9) for support, and there are two sets of arc-shaped seats (9). The side of the arc-shaped seat (9) opposite to the tank body (3) is equipped with a spring seat (10) for support, and there are multiple sets of spring seats (10). A compression spring B (11) for auxiliary support is installed between the two sets of spring seats (10). A branch pipe (12) for guiding flow is installed on the top surface of the machine body (1), and a bent pipe (13) for guiding flow is installed on the bottom surface of the machine body (1). A corrugated pipe (14) for guiding flow is installed between the branch pipe (12) and the feed end of the tank cover (5) and between the discharge end of the tank body (3) and the bent pipe (13).
2. The oscillating device for ultra-micro factor separation according to claim 1, characterized in that, Solenoid valves (15) are installed at the connection between the tank body (3) and the bellows (14) and at the connection between the tank cover (5) and the bellows (14).
3. The oscillation device for ultra-micro factor separation according to claim 1, characterized in that, The inner wall surface of the tank (3) is integrally constructed with a scalloped plate (8) that abuts against the ultrafiltration cartridge (7), and there are multiple sets of scalloped plates (8).
4. The oscillating device for ultra-micro factor separation according to claim 3, characterized in that, The ultrafiltration cartridge (7) has a groove (16) on its outer periphery that fits the shaped plate (8), and there are multiple sets of grooves (16).
5. The oscillating device for ultra-micro factor separation according to claim 1, characterized in that, The outer wall surface of the body (1) is fitted with a cover plate (17) for maintenance by bolts.