Multi-seed fruit juice particle filtering equipment and filtering method thereof
By combining hollow mounting plates and a combination of air bubble unblocking, guide plate screening, guide rod pressing, and ultraviolet lamp disinfection, the problem of fruit residue clogging in multi-seed fruit juice granule filtration equipment is solved, achieving efficient filtration and resource utilization.
Patent Information
- Application Number
- CN202511374475.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2025-11-18
AI Technical Summary
Existing multi-seed fruit juice granule filtration equipment is prone to accumulating and clogging the filter screen when in use, resulting in low filtration efficiency. Although some equipment can speed up filtration by applying pressure, it is also prone to causing more serious clogging.
The system employs a hollow mounting plate frame, a pump, and an air pump. It uses agitation and air bubbles to clear the separation mesh, combined with pre-screening using guide plates and limiting rings. Residual particles are then squeezed out using guide rods and pressing blocks, and ultraviolet lamps are used for disinfection.
It improves filtration efficiency, avoids filter clogging, enhances resource utilization and product quality, and ensures hygienic processing.
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Figure CN120960869A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of fruit juice filtering equipment, in particular to a multi-seed fruit juice particle filtering equipment and a filtering method thereof. BACKGROUND
[0002] Multi-seed fruit juice is a type of non-alcoholic beverage made from multi-seed fruits, which retains a variety of vitamins, minerals, and antioxidants from the fruits. These juices are usually made through cold-pressing, juicing, or centrifugation to ensure maximum retention of the fruits' nutritional content and natural flavor. The multi-seed fruit juice particle filtering equipment is an industrial mechanical device specifically designed to filter and separate solid particles such as fruit pulp from the juice produced by juicing multi-seed fruits. It can efficiently extract clear juice and remove solid particles to improve juice quality, widely used in the fruit juice processing industry, helping to improve production efficiency and product quality.
[0003] The existing multi-seed fruit juice particle filtering equipment mainly uses a filter screen to filter the fruit juice and separate solid particles such as fruit pulp during use. However, during use, the fruit pulp and other solid particles will accumulate on the filter screen and gradually block the filter holes of the filter screen, resulting in poor overall particle filtering efficiency of the equipment. Although some equipment can accelerate the filtering efficiency by pressurization, pressurization can also easily cause the fruit pulp and other solid particles to be stuck in the filter holes of the filter screen and cause blockage, further affecting the particle filtering efficiency of the equipment.
[0004] Based on the above situation, the present application provides a multi-seed fruit juice particle filtering equipment with high filtering efficiency and a filtering method thereof. SUMMARY
[0005] In order to overcome the shortcomings of the existing multi-seed fruit juice particle filtering equipment, in which fruit pulp and other solid particles will accumulate on the filter screen and gradually block the filter holes of the filter screen during use, resulting in poor overall particle filtering efficiency of the equipment, and although some equipment can accelerate the filtering efficiency by pressurization, pressurization can also easily cause the fruit pulp and other solid particles to be stuck in the filter holes of the filter screen and cause blockage, further affecting the particle filtering efficiency of the equipment, the present application provides a multi-seed fruit juice particle filtering equipment with high filtering efficiency and a filtering method thereof.
[0006] The utility model provides a kind of multi-seed fruit juice particle filtering equipment, including rack, placement table, discharge port, servo motor, separation net, hollow mounting plate frame, air column, air pipe, sealing plate, pump, air pump and expansion air block, rack is fixedly connected with placement table, placement table is fixedly connected and is communicated with discharge port, placement table is fixedly connected with servo motor, placement table is rotatably connected with separation net, the output end of servo motor is fixedly connected with separation net, sealing plate is clamped to placement table, sealing plate is fixedly connected with circumferentially equidistant hollow mounting plate frame, and hollow mounting plate frame is contacted with separation net, and hollow mounting plate frame is fixedly connected and is communicated with air column, sealing plate is fixedly connected with circumferentially equidistant pump, sealing plate is fixedly connected with circumferentially equidistant air pump, and pump and air pump are fixedly connected and are communicated with air pipe between hollow mounting plate frame, and hollow mounting plate frame is fixedly connected and is communicated with expansion air block.
[0007] Further, the separation net is conical, and the middle part is low and the outer part is high.
[0008] Further, the utility model further comprises a screening mechanism, which is arranged on the sealing plate, and the screening mechanism comprises a guide plate, a flow distribution plate and a limiting ring, the circumferentially equidistant flow distribution plates are fixedly connected to the sealing plate, the guide plate is fixedly connected between the circumferentially equidistant flow distribution plates, and the limiting ring is uniformly distributed and fixedly connected to the guide plate.
[0009] Further, the guide plate is conical and is provided with uniformly distributed leakage holes.
[0010] Further, the utility model further comprises a pressing mechanism, which is arranged on the placement table, and the pressing mechanism comprises a guide rod, a sleeve, a pressing block, an electric push rod and a bearing block, the circumferentially equidistant guide rods are fixedly connected to the placement table, the guide rods are in contact with the separation net, the sleeve is fixedly connected between the circumferentially equidistant guide rods, the bearing block is fixedly connected to the sleeve, the electric push rod is fixedly connected to the guide plate, the telescopic end of the electric push rod is fixedly connected with the pressing block, and the pressing block is in sliding connection with the sleeve.
[0011] Further, the pressing block is provided with a conical recess.
[0012] Further, the utility model further comprises a guide mechanism, which is arranged on the placement table, and the guide mechanism comprises a push flow rod and a flow limiting block, the flow limiting block is rotatably connected to the placement table, the flow limiting block is fixedly connected to the output end of the servo motor, the circumferentially equidistant push flow rods are fixedly connected to the flow limiting block, and the push flow rods are in contact with the placement table.
[0013] Further, the push flow rods are U-shaped on the outer side.
[0014] Further, the utility model further comprises a disinfection mechanism, which is arranged on the discharge port, and the disinfection mechanism comprises an ultraviolet lamp and a fixing block, the pairs of fixing blocks are fixedly connected to the discharge port, and the uniformly distributed ultraviolet lamps are fixedly connected between the pairs of fixing blocks.
[0015] A kind of multi-seed fruit juice particle filtering method, using the multi-seed fruit juice particle filtering equipment described above, comprising the following steps:
[0016] S1: the multi-seed fruit juice is injected into the placement table and the solid large particles in the fruit juice are pre-screened by the guide plate and the limiting ring;
[0017] S2: the solid particles in the fruit juice are further filtered and separated by the separation net, and the hollow mounting plate frame stirs the solid particles under the action of the servo motor, and the pump and the air pump accelerate the filtering efficiency of the fruit juice by pumping and injecting air to avoid the separation net from being blocked;
[0018] S3: the accumulated solid particles are gathered by the guide rod, and the solid particles accumulated in the barrel sleeve are squeezed by the electric push rod and the briquetting, to further squeeze out the fruit juice in the solid particles;
[0019] S4: the processed fruit juice is gathered and discharged by the push-flow rod and the discharge port during the filtering process, and the processed fruit juice is sterilized by the ultraviolet lamp.
[0020] Beneficial effects: 1, the hollow mounting plate frame and the pump and other components can not only stir the fruit dregs and other solid particles accumulated on the separation net to avoid the separation net from being blocked, but also can dredge the blocked separation net with the air bubbles generated by pumping, so that the fruit juice can smoothly pass through the separation net, and the filtering efficiency of the particle filtering equipment is improved.
[0021] 2, the guide plate and the limiting ring and other components can screen the fruit juice in advance and remove the solid large particles therein, so as to avoid too much fruit dregs and other solid particles from accumulating on the separation net and causing blockage, and the filtering efficiency of the particle filtering equipment is improved.
[0022] 3, the guide rod and the briquetting and other components can gather and squeeze the fruit dregs and other solid particles after most of the fruit juice is filtered out, so as to further squeeze out the fruit juice from the fruit dregs, so as to avoid waste, and the practicability and resource utilization rate of the particle filtering equipment are improved.
[0023] 4, the push-flow rod and the flow-limiting block and other components can gather the fruit juice that passes through the separation net and falls on the bottom of the placement table, and make it pass through the discharge port and be discharged outward smoothly, so as to avoid part of the fruit juice from remaining on the bottom of the placement table and causing waste, and the practicability and resource utilization rate of the particle filtering equipment are improved.
[0024] 5、The fruit juice and particle filtering equipment can be sterilized and disinfected without chemical pollution by the ultraviolet lamp tube and the fixing block, so that the processing hygiene is ensured, the quality and safety of the fruit juice product are improved, and the practicality of the particle filtering equipment is improved. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is a schematic diagram of the three-dimensional structure of the application.
[0026] Figure 2 It is a schematic diagram of the three-dimensional structure of the rack, the placing table and the discharge port and other components of the application.
[0027] Figure 3 It is a schematic diagram of the three-dimensional structure of the placing table, the discharge port and the servo motor and other components of the application.
[0028] Figure 4 It is a schematic diagram of the three-dimensional structure of the hollow mounting plate rack, the air column and the air guide pipe and other components of the application.
[0029] Figure 5 It is a schematic diagram of the three-dimensional structure of the pump, the air pump and the expansion air block and other components of the application.
[0030] Figure 6 It is a schematic diagram of the three-dimensional structure of the rack, the flow distribution plate and the limiting ring and other components of the application.
[0031] Figure 7 It is a schematic diagram of the three-dimensional structure of the guide plate, the flow distribution plate and the limiting ring and other components of the application.
[0032] Figure 8 It is a schematic diagram of the three-dimensional structure of the guide rod, the sleeve and the pressing block and other components of the application.
[0033] Figure 9 It is a schematic diagram of the three-dimensional structure of the sleeve, the pressing block and the electric push rod and other components of the application.
[0034] Figure 10 It is a schematic diagram of the three-dimensional structure of the push flow rod, the flow limiting block and the placing table and other components of the application.
[0035] Figure 11 It is a schematic diagram of the three-dimensional structure of the ultraviolet lamp tube, the fixing block and the discharge port and other components of the application.
[0036] The meanings of the labels in the attached diagram are as follows: 1-Frame, 11-Placement platform, 12-Discharge port, 13-Servo motor, 1301-Separation net, 14-Hollow mounting plate frame, 15-Air column, 16-Air guide pipe, 17-Sealing plate, 18-Pump, 1801-Air pump, 19-Expansion block, 2-Guide plate, 21-Diverter plate, 22-Limiting ring, 3-Guide rod, 31-Sleeve, 32-Pressure block, 33-Electric push rod, 34-Bearing block, 4-Push rod, 41-Flow limiting block, 5-UV lamp tube, 51-Fixing block. Detailed Implementation
[0037] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings.
[0038] Example 1
[0039] A multi-seed fruit juice particle filtration device, such as Figures 1-5 As shown, the system includes a frame 1, a placement platform 11, a discharge port 12, a servo motor 13, a separation net 1301, a hollow mounting plate frame 14, an air column 15, an air guide pipe 16, a sealing plate 17, a pump 18, an air pump 1801, and an expansion block 19. The placement platform 11 is fixedly connected to the top of the frame 1. The discharge port 12 is fixedly connected to and connected to the bottom left side of the placement platform 11. The servo motor 13 is fixedly connected to the bottom of the placement platform 11. The separation net 1301 is rotatably connected inside the placement platform 11. The output end of the servo motor 13 is fixedly connected to the separation net 1301. The top of the placement platform 11... A sealing plate 17 is snapped in place. Hollow mounting brackets 14 are circumferentially distributed and fixed to the bottom of the sealing plate 17. The hollow mounting brackets 14 are in contact with the separation net 1301. An air column 15 is fixed to and connected to the top of the outer side of the hollow mounting brackets 14. A pump 18 is circumferentially distributed and fixed to the inside of the sealing plate 17. An air pump 1801 is circumferentially distributed and fixed to the inside of the sealing plate 17. A duct pipe 16 is fixed to and connected to the adjacent hollow mounting brackets 14. An expansion block 19 is fixed to and connected to the bottom of the hollow mounting brackets 14.
[0040] like Figures 2-4 As shown, the separation net 1301 is conical in shape with a low center and a high outer surface.
[0041] When the worker needs to filter the juice of the multi-seed fruit juice produced by the juicer and separate the solid particles such as fruit dregs, the fruit juice can be first injected into the placement table 11 through the feed port in the middle of the sealing plate 17, and then the feed port is closed after the fruit juice is added. At this time, the fruit juice will pass through the separation net 1301 and be discharged outward along the discharge port 12, while the solid particles such as fruit dregs in the fruit juice will be blocked and accumulated on the top of the separation net 1301, thereby gradually blocking the separation net 1301. Therefore, the worker can start the servo motor 13, which will drive the separation net 1301 and the solid particles such as fruit dregs to rotate clockwise. Since the circumferentially equidistant hollow mounting plate frame 14 does not rotate and is in contact with the separation net 1301, the hollow mounting plate frame 14 will rotate relative to the separation net 1301 and agitate the solid particles such as fruit dregs accumulated on the top of the separation net 1301, thereby preventing the separation net 1301 from being blocked. During this period, the worker can first start the air pump 1801 connected to the external nitrogen storage device through the air inlet, at this time the air pump 1801 will inject nitrogen in the external nitrogen storage device into the placement table 11 through the air guide pipe 16, the hollow mounting plate frame 14 and the air column 15 and other components, thereby increasing the air pressure on the upper side of the inside of the placement table 11, and improving the filtering efficiency of the fruit juice by means of the increased air pressure. After the air pump 1801 runs for a period of time, it will automatically shut down and start the exhaust pump 18 connected to the outside through the air outlet. The exhaust pump 18 will then exhaust the gas inside the upper side of the placement table 11 through the air guide pipe 16, the hollow mounting plate frame 14 and the air column 15 and other components. The air pressure on the upper side of the inside of the placement table 11 decreases and gradually falls below the atmospheric pressure. At this time, the air on the lower side of the inside of the placement table 11 will first pass through the separation net 1301 and form bubbles, and then pass through the fruit juice and enter the upper side of the inside of the placement table 11. In this way, the bubbles generated by the air exhaust can be used to unblock the separation net 1301 that is blocked due to the increased pressure, thereby ensuring that the fruit juice can smoothly pass through the separation net 1301. After a period of time, the exhaust pump 18 will automatically shut down and restart the air pump 1801. In this way, the filtering efficiency can be improved while preventing the separation net 1301 from being blocked. During this period, since the air holes of the air column 15 are too small, the nitrogen injected by the air pump 1801 is difficult to quickly discharge from the air holes of the air column 15. Therefore, the nitrogen will gradually accumulate in the hollow mounting plate frame 14 and the expansion gas block 19. The expansion gas block 19 will then rapidly expand and press the fruit juice that has seeped into the hollow mounting plate frame 14 and the separation net 1301, and make the fruit juice quickly pass through the separation net 1301, thereby improving the filtering efficiency of the fruit juice. When the exhaust pump 18 is exhausting, the expansion gas block 19 will gradually become smaller and return to its original state as the accumulated nitrogen decreases. After the fruit juice is filtered, the servo motor 13, the exhaust pump 18 and the air pump 1801 and other components can be turned off, and then the sealing plate 17 and other components can be removed and the inside of the placement table 11 can be cleaned.
[0042] Embodiment 2
[0043] On the basis of Embodiment 1, as shown in Figure 6 and Figure 7 The screening mechanism is further included, which is arranged on the sealing plate 17 and includes the guide plate 2, the shunt plate 21 and the limiting ring 22. The circumferentially equidistant shunt plates 21 are fixedly connected to the bottom of the sealing plate 17, the guide plate 2 is fixedly connected between the bottoms of the circumferentially equidistant shunt plates 21, and the limiting ring 22 is fixedly connected to the top of the guide plate 2.
[0044] As shown in Figure 6 and Figure 7 The guide plate 2 is conical and is provided with uniformly distributed leakage holes.
[0045] When the fruit juice enters the placing table 11 through the feed port in the middle of the sealing plate 17, the fruit juice will first pass through the intervals between the circumferentially equidistant shunt plates 21 and fall on the conical guide plate 2. Part of the fruit juice will pass through the uniformly distributed leakage holes on the guide plate 2 and fall to the separation net 1301, and the other part of the fruit juice will flow obliquely downward along the conical guide plate 2 and fall on the separation net 1301. The solid large particles such as pomace will be blocked by the leakage holes and the limiting ring 22 and accumulated on the top of the guide plate 2 when they flow with the fruit juice, so that the fruit juice can be screened in advance and the solid large particles can be removed, thereby avoiding the blockage of the separation net 1301 caused by the accumulation of too much pomace and other solid particles. The pomace and other solid particles on the guide plate 2 need to be cleaned after the fruit juice is filtered.
[0046] As shown in Figure 8 and Figure 9 The pressing mechanism is further included, which is arranged on the placing table 11 and includes the guide rod 3, the sleeve 31, the pressing block 32, the electric push rod 33 and the bearing block 34. The circumferentially equidistant guide rods 3 are fixedly connected to the inside of the placing table 11 and are in contact with the separation net 1301. The sleeve 31 is fixedly connected between the circumferentially equidistant guide rods 3. The bearing block 34 is fixedly connected to the bottom of the sleeve 31. The electric push rod 33 is fixedly connected to the bottom of the guide plate 2. The pressing block 32 is fixedly connected to the extension end of the electric push rod 33 and is in sliding connection with the sleeve 31.
[0047] As shown in Figure 9 The bottom of the pressing block 32 is provided with a conical recess.
[0048] Due to the conical shape of the separation net 1301 and the low middle and high outer part, the guide rod 3 is obliquely arranged and the straight line does not pass through the center of the circular cross section of the separation net 1301, so that the solid particles such as pomace in the fruit juice will not only gradually gather to the middle of the separation net 1301 under the action of gravity, but also will be guided by the obliquely arranged guide rod 3 which will rotate relative to the separation net 1301 when the servo motor 13 is started and guide the accumulated solid particles such as pomace, so that the solid particles such as pomace gradually gather to the inside of the cylinder sleeve 31, when most of the fruit juice is filtered out, the worker can start the electric push rod 33, the electric push rod 33 will intermittently move up and down and squeeze the solid particles such as pomace in the cylinder sleeve 31, so as to further squeeze the fruit juice from the pomace, so as to avoid waste, wherein the conical recess at the bottom of the pressing block 32 is used to limit and gather the solid particles such as pomace, so as to avoid the solid particles such as pomace in the cylinder sleeve 31 from easily leaking due to pressure, and the electric push rod 33 is closed after the squeezing is completed.
[0049] As shown in Figure 2 and Figure 10 , it further comprises a guide mechanism, the guide mechanism is arranged on the placement table 11, the guide mechanism comprises a push flow rod 4 and a flow limiting block 41, the flow limiting block 41 is rotationally connected to the inner bottom of the placement table 11, the flow limiting block 41 is fixedly connected with the output end of the servo motor 13, a plurality of push flow rods 4 are circumferentially and equidistantly arranged on the top of the flow limiting block 41, and the push flow rods 4 are in contact with the placement table 11.
[0050] As shown in Figure 10 , the outer side of the push flow rod 4 is in U shape.
[0051] When the worker starts the servo motor 13, the servo motor 13 will also drive the flow limiting block 41 and the push flow rod 4 to rotate clockwise, and the clockwise rotation of the push flow rod 4 with the outer side in U shape will gather the fruit juice passing through the separation net 1301 and falling on the bottom of the placement table 11, and make it pass through the discharge port 12 and be discharged outward smoothly, so as to avoid part of the fruit juice remaining on the bottom of the placement table 11 and causing waste, and the flow limiting block 41 and the push flow rod 4 also stop rotating after the servo motor 13 is closed.
[0052] As shown in Figure 2 and Figure 11 , it further comprises a disinfection mechanism, the disinfection mechanism is arranged on the discharge port 12, the disinfection mechanism comprises an ultraviolet lamp 5 and a fixing block 51, two fixing blocks 51 are fixedly connected to the left and right sides inside the discharge port 12, and a plurality of ultraviolet lamps 5 are fixedly connected between the left and right fixing blocks 51.
[0053] In the filtering process of fruit juice, the worker can also start the ultraviolet lamp 5, which will emit ultraviolet rays and sterilize the fruit juice and the particle filtering device without chemical pollution, thereby ensuring the hygiene of the processing and improving the quality and safety of the fruit juice product. The ultraviolet lamp 5 can be turned off after the filtering process is completed.
[0054] A method for filtering particles in multi-seed fruit juice, comprising the following steps:
[0055] S1: Inject the multi-seed fruit juice into the placement table 11 and pre-screen the solid large particles in the fruit juice through the guide plate 2 and the limiting ring 22;
[0056] S2: Further filter and separate the solid particles in the fruit juice through the separation net 1301, during which the hollow mounting plate frame 14 stirs the solid particles under the action of the servo motor 13, and the suction pump 18 and the air pump 1801 accelerate the filtering efficiency of the fruit juice and avoid the clogging of the separation net 1301 through suction and injection;
[0057] S3: Accumulate the accumulated solid particles through the guide rod 3, and squeeze the solid particles accumulated in the barrel sleeve 31 through the electric push rod 33 and the pressing block 32 to further squeeze out the fruit juice in the solid particles;
[0058] S4: During the filtering process, the processed fruit juice is gathered and discharged through the push flow rod 4 and the discharge port 12, and the processed fruit juice is sterilized and disinfected through the ultraviolet lamp 5.
[0059] The above is only an embodiment of the present application and is not intended to limit the present application. Any equivalent replacement within the principles of the present application shall be included in the protection scope of the present application. The contents of the present application not described in detail belong to the prior art known to those skilled in the art.
Claims
1. A multi-seed fruit juice particle filtration device, characterized in that: The machine includes a frame (1), a placement platform (11), a discharge port (12), a servo motor (13), a separation net (1301), a hollow mounting plate frame (14), an air column (15), an air guide pipe (16), a sealing plate (17), a pump (18), an air pump (1801), and an expansion block (19). The frame (1) is fixedly connected to the placement platform (11), which is fixedly connected to and connected to the discharge port (12). The placement platform (11) is fixedly connected to the servo motor (13), and the placement platform (11) is rotatably connected to the separation net (1301). The output end of the servo motor (13) is fixedly connected to the separation net (1301). The platform (11) is fitted with a sealing plate (17), and the sealing plate (17) is fixedly connected to a hollow mounting frame (14) with equidistant circumference. The hollow mounting frame (14) is in contact with the separation net (1301). The hollow mounting frame (14) is fixedly connected to and connected to an air column (15). The sealing plate (17) is fixedly connected to a pump (18) with equidistant circumference. The sealing plate (17) is fixedly connected to an air pump (1801) with equidistant circumference. The pump (18) and the air pump (1801) are fixedly connected to and connected to the hollow mounting frame (14) with an air guide pipe (16). The hollow mounting frame (14) is fixedly connected to and connected to an expansion gas block (19).
2. The multi-seed fruit juice particle filtration device according to claim 1, characterized in that: The separation net (1301) is conical in shape with a low center and a high outer surface.
3. The multi-seed fruit juice particle filtration device according to claim 2, characterized in that: It also includes a screening mechanism, which is set on the sealing plate (17). The screening mechanism includes a guide plate (2), a diverting plate (21) and a limiting ring (22). The diverting plates (21) distributed circumferentially are all fixed to the sealing plate (17). The guide plates (2) are fixed between the diverting plates (21) distributed circumferentially. The guide plates (2) are fixed with uniformly distributed limiting rings (22).
4. The multi-seed fruit juice particle filtration device according to claim 3, characterized in that: The guide plate (2) is conical and has evenly distributed holes.
5. The multi-seed fruit juice particle filtration device according to claim 4, characterized in that: It also includes a pressing mechanism, which is set on the placement platform (11). The pressing mechanism includes a guide rod (3), a sleeve (31), a pressing block (32), an electric push rod (33), and a bearing block (34). The guide rods (3) distributed circumferentially are all fixed to the placement platform (11). The guide rods (3) are in contact with the separation net (1301). The sleeve (31) is fixed between the guide rods (3) distributed circumferentially. The bearing block (34) is fixed to the sleeve (31). The electric push rod (33) is fixed to the guide plate (2). The pressing block (32) is fixed to the telescopic end of the electric push rod (33). The pressing block (32) is slidably connected to the sleeve (31).
6. The multi-seed fruit juice particle filtration device according to claim 5, characterized in that: The pressure block (32) has a conical recess.
7. The multi-seed fruit juice particle filtration device according to claim 6, characterized in that: It also includes a guiding mechanism, which is set on the placement platform (11). The guiding mechanism includes a push rod (4) and a flow limiting block (41). The flow limiting block (41) is rotatably connected to the placement platform (11). The flow limiting block (41) is fixedly connected to the output end of the servo motor (13). The flow limiting block (41) is fixedly connected with push rods (4) that are circumferentially distributed. The push rods (4) are in contact with the placement platform (11).
8. The multi-seed fruit juice particle filtration device according to claim 7, characterized in that: The outer side of the push rod (4) is U-shaped.
9. A multi-seed fruit juice particle filtration device according to claim 8, characterized in that: It also includes a disinfection mechanism, which is located at the discharge port (12). The disinfection mechanism includes an ultraviolet lamp tube (5) and a fixing block (51). The pair of fixing blocks (51) are fixed to the discharge port (12), and the pair of fixing blocks (51) are fixed with evenly distributed ultraviolet lamp tubes (5).
10. A method for filtering multi-seeded fruit juice particles, using the multi-seeded fruit juice particle filtering equipment according to any one of claims 1-9, comprising the following steps: S1: Inject the multi-seed fruit juice into the placement platform (11) and pre-screen the large solid particles in the fruit juice through the guide plate (2) and the limiting ring (22); S2: The solid particles in the fruit juice are further filtered and separated by the separation net (1301). During this process, the hollow mounting plate (14) will agitate the solid particles under the action of the servo motor (13), while the pump (18) and the air pump (1801) will accelerate the filtration efficiency of the fruit juice and prevent the separation net (1301) from clogging by pumping and injecting air. S3: The solid particles are gathered by the guide rod (3), and the solid particles gathered inside the sleeve (31) are pressed by the electric push rod (33) and the pressing block (32) to further extract the fruit juice from the solid particles. S4: During the filtration process, the processed fruit juice is gathered and discharged through the push rod (4) and the discharge port (12), and the processed fruit juice is sterilized and disinfected through the ultraviolet lamp tube (5).
Citation Information
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