Efficient juicing equipment for asparagus processing

The asparagus processing device addresses the inefficiency of solid-liquid separation by incorporating a shredding and separation mechanism with a rotating filter and stirring system, enhancing extraction efficiency and reducing waste.

CN223094697UActive Publication Date: 2025-07-15YONGJI BAICAO FOOD CO LTD
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Patent Information

Application Number
CN202422010610.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-07-15
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

The existing asparagus juicer equipment has poor solid-liquid separation effect, which leads to waste.

Method used

An efficient juice squeezing equipment for processing asparagus including crushing components and screening components is designed. The asparagus is crushed and squeezed through the crushing components, and agitated in the annular filter cartridge is agitated by a rotating motor and agitation shaft to achieve solid-liquid separation.

Benefits of technology

It improves the efficiency of solid-liquid separation, prevents clogging, extends the service life of the equipment, and improves the working efficiency of asparagus processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses efficient juicing equipment for asparagus processing, which relates to the technical field of asparagus processing and comprises a support, a separation box fixedly mounted on the inner side of the support and a crushing box fixedly connected to the outer top of the separation box in a penetrating manner, and a feeding cover is connected to the middle of the outer top of the crushing box in a penetrating manner. And a crushing assembly used for crushing and extruding the asparagus is arranged in the crushing box, a discharging cover is connected to the middle position of the outer bottom of the separating box in a penetrating mode, and a screening assembly used for fully separating the crushed asparagus is arranged in the separating box. According to the asparagus juice and solid residue solid-liquid separation device, juice and solid residues formed by smashing asparagus are fed into the annular filter cylinder to be filtered and separated, meanwhile, the auger shaft is driven to rotate in the annular filter cylinder under the cooperation of the rotating motor and the rotating shaft rod, and then the asparagus juice and the solid residues are stirred, so that the solid-liquid separation efficiency is improved, and the asparagus juice and solid residue solid-liquid separation efficiency is improved. Meanwhile, the annular filter cartridge can be prevented from being blocked.
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Description

Technical Field

[0001] The utility model relates to the technical field of asparagus processing, in particular to an efficient asparagus juice extraction device for asparagus processing. Background Art

[0002] Asparagus is rich in various amino acids, proteins and vitamins, and their contents are higher than those of general fruits and vegetables. Asparagus can be used to produce beverages. In the process of producing beverages from asparagus, the operation of extracting juice from asparagus is one of the essential processes.

[0003] For example, the Chinese patent publication number CN214774165U discloses an asparagus juice extraction device for asparagus processing, which includes a frame, and a root cutting mechanism and a juice extraction mechanism are sequentially arranged on the frame. In the above-mentioned published document, the roots of asparagus are cut before juice extraction, and the eccentric wheel drives the juice extraction block to repeatedly squeeze the asparagus to improve the juice extraction efficiency. However, when this patent is used, it is not conducive to fully separating the solid and liquid of asparagus during the juice extraction process, which not only results in poor solid-liquid separation effect, but also causes waste due to insufficient separation. Therefore, the technical personnel in this field provide an efficient asparagus juice extraction device for asparagus processing to solve the problems raised in the above background art. Summary of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the utility model provides an efficient asparagus juice extraction device for asparagus processing, which solves the problems that it is not conducive to fully separating the solid and liquid of asparagus during the juice extraction process, resulting in poor solid-liquid separation effect and waste due to insufficient separation as mentioned in the above background art.

[0005] To achieve the above purpose, the utility model is realized through the following technical solutions: An efficient asparagus juice extraction device for asparagus processing includes a bracket and a separation box fixedly installed inside the bracket, and a crushing box fixedly and through-connected to the outer top of the separation box. A feed cover is through-connected to the middle position of the outer top of the crushing box, and a crushing assembly for crushing and squeezing asparagus is arranged inside the crushing box;

[0006] A discharge cover is through-connected to the middle position of the outer bottom of the separation box, and a screening assembly for fully separating the crushed asparagus is arranged inside the separation box

[0007] As a further technical solution of the utility model, the screening assembly includes a through-type annular opening formed on the outer side wall of the separation box, and a semi-open annular filter cylinder is fixedly installed on the outer side wall of the separation box by bolts. One end of the annular filter cylinder extends into the separation box along the annular opening and is inserted into an annular slot formed on the inner side wall of the separation box.

[0008] As a further technical solution of the present utility model, a rotating shaft rod is rotatably connected to the outer side wall of the separation box, and one end of the rotating shaft rod is fixedly connected to the output end of a rotating motor fixedly installed on the outer side wall of the separation box. At the same time, the other end of the rotating shaft rod penetrates through the separation box and extends into the interior of the annular filter cartridge, and is fixedly connected to an auger shaft rotatably connected to the inner bottom surface of the annular filter cartridge.

[0009] As a further technical solution of the present utility model, the crushing assembly includes two driving shaft rods and two rotating shaft rods respectively and rotatably connected to the inner side walls on both sides of the crushing box. Connecting sleeves are fixedly sleeved on the outer peripheral surfaces of the two driving shaft rods. Crushing blades arranged in a mutually corresponding and crosswise manner are equidistantly installed on the outer peripheral surfaces of the two groups of connecting sleeves. The two ends of the two driving shaft rods respectively extend to the tops of the outer side walls on both sides of the crushing box, and a first gear is fixedly installed on the outer side wall of the crushing box and on the outer peripheral surface of one end of the two driving shaft rods. The two first gears are meshed with each other. At the same time, a first pulley is fixedly installed on the outer peripheral surface of the other end of one of the driving shaft rods, and a driving motor is also fixedly installed on the outer side wall of the crushing box. The output end of the driving motor is fixedly connected to one of the driving shaft rods.

[0010] As a further technical solution of the present utility model, extrusion rollers are fixedly sleeved on the outer peripheral surfaces of the two rotating shaft rods. The two ends of the two extrusion rollers respectively extend to the bottoms of the outer side walls on both sides of the crushing box. Second gears are fixedly installed on the outer peripheral surfaces of one end of the two rotating shaft rods outside the crushing box, and the two second gears are meshed with each other. At the same time, a second pulley is fixedly installed on the outer peripheral surface of the other end of one of the rotating shaft rods. The second pulley and the first pulley are rotationally connected to each other through a transmission belt.

[0011] As a further technical solution of the present utility model, an openable and closable first sealing door and a second sealing door are respectively arranged on the outer side wall of the crushing box and the outer side wall of the separation box, and a first filter plate and a second filter plate are respectively fixedly installed on the inner bottom surfaces of the crushing box and the separation box.

[0012] The present utility model provides an efficient asparagus processing and juicing device, which has the following beneficial effects compared with the prior art:

[0013] 1. An efficient asparagus juice extraction device in this design, during solid-liquid separation, the juice and solid residues formed by crushing asparagus are fed into an annular filter cylinder for filtration and separation. At the same time, under the cooperation of a rotating motor and a rotating shaft rod, the auger shaft is driven to rotate inside the annular filter cylinder, thereby agitating the asparagus juice and fixed residues to accelerate the efficiency of solid-liquid separation and prevent blockage of the annular filter cylinder, which is conducive to the long-term use and promotion of this device.

[0014] An efficient asparagus juice extraction device in this design, during crushing, by using a driving motor as a power source, driving the crushing blades and extrusion rollers on the driving shaft rod and the rotating shaft rod to rotate, thereby crushing the asparagus and squeezing out the excess juice, facilitating subsequent differential separation and improving the working efficiency of asparagus processing. Brief Description of the Drawings

[0015] Figure 1 It is a three-dimensional structural schematic diagram of an efficient asparagus juice extraction device;

[0016] Figure 2 It is a sectional three-dimensional structural schematic diagram of an efficient asparagus juice extraction device;

[0017] Figure 3 It is an overall structural decomposition schematic diagram of an efficient asparagus juice extraction device.

[0018] In the figure: 1. Bracket; 2. Separation box; 3. Crushing box; 4. Feeding cover; 5. Discharging cover; 6. Annular opening; 7. Annular filter cylinder; 8. Rotating shaft rod; 9. Rotating motor; 10. Auger shaft; 11. Driving shaft rod; 12. Rotating shaft rod; 13. Connecting sleeve; 14. Crushing blade; 15. First gear; 16. First pulley; 17. Driving motor; 18. Extrusion roller; 19. Second gear; 20. Second pulley; 21. Transmission belt; 22. First sealing door; 23. Second sealing door; 24. First filter plate; 25. Second filter plate. Detailed Description of the Invention

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0020] Please refer to Figures 1-3The utility model provides a technical solution for an efficient juicing device for processing asparagus: it comprises a bracket 1 and a separation box 2 fixedly mounted on the inner side of the bracket 1, and a crushing box 3 fixedly and through-connected to the outer top of the separation box 2, a feed cover 4 is through-connected at the middle position of the outer top of the crushing box 3, a crushing assembly for crushing and squeezing the asparagus is arranged inside the crushing box 3, the crushing assembly comprises two driving shafts 11 and two rotating shafts 12 which are respectively and jointly connected to the inner side walls on both sides of the crushing box 3, a connecting sleeve 13 is fixedly sleeved on the outer circumferential surface of the two driving shafts 11, and crushing blades 14 corresponding to each other and crossed are installed on the outer circumferential surfaces of the two groups of connecting sleeves 13 at equal intervals, the two ends of the two driving shafts 11 extend to the tops of the outer side walls of both sides of the crushing box 3 respectively, and the outer wall of the crushing box 3 and the outer circumferential surface of one end of the two driving shafts 11 are fixed A first gear 15 is installed, and the two first gears 15 are meshedly connected. At the same time, a first pulley 16 is fixedly installed on the outer circumferential surface of the other end of one of the driving shafts 11, and a driving motor 17 is also fixedly installed on the outer wall of the crushing box 3, and the output end of the driving motor 17 is fixedly connected to one of the driving shafts 11. Extrusion rollers 18 are fixedly sleeved on the outer circumferential surfaces of the two rotating shafts 12, and the two ends of the two extrusion rollers 18 extend to the bottom of the outer walls of both sides of the crushing box 3 respectively, and second gears 19 are fixedly installed on the outer circumferential surface of one end of the two rotating shafts 12 outside the crushing box 3, and the two second gears 19 are meshedly connected. At the same time, a second pulley 20 is fixedly installed on the outer circumferential surface of the other end of one of the rotating shafts 12, and the second pulley 20 and the first pulley 16 are rotatably connected to each other through a transmission belt 21. First, the processed asparagus is conveyed to the inside of the crushing box 3 along the feed cover 4, and then the drive motor 17 is started, and under the meshing characteristics of the first gear 15, the connecting sleeves 13 on the two driving shafts 11 are driven to be linked, and then the corresponding and crossed crushing blades 14 are driven to crush the asparagus, and then the first pulley 16 drives the first transmission belt 21 to drive the second pulley 20 to rotate, and under the meshing characteristics of the second gear 19, the two rotating shafts 12 drive the squeezing roller 18 and the two crushing blades 14 to rotate synchronously, and then the water in the crushed asparagus is squeezed out and flows into the separation box 2 for sufficient solid-liquid separation, which is beneficial to improve the subsequent separation work efficiency.

[0021] At the middle position of the outer bottom of the separation box 2, there is a through connection with a discharge cover 5. Inside the separation box 2, there is a screening assembly for fully separating the crushed asparagus. The screening assembly includes a through-type annular opening 6 formed on the outer side wall of the separation box 2. On the outer side wall of the separation box 2, a semi-open annular filter cylinder 7 is fixedly installed by bolts. One end of the annular filter cylinder 7 extends into the separation box 2 along the annular opening 6 and is inserted into an annular slot formed on the inner side wall of the separation box 2. A rotating shaft rod 8 is rotatably connected to the outer side wall of the separation box 2, and one end of the rotating shaft rod 8 is fixedly connected to the output end of a rotating motor 9 fixedly installed on the outer side wall of the separation box 2. At the same time, the other end of the rotating shaft rod 8 penetrates through the separation box 2 and extends into the annular filter cylinder 7, and is fixedly connected to an auger shaft 10 rotatably connected to the inner bottom surface of the annular filter cylinder 7. When the asparagus is crushed and squeezed into the annular filter cylinder 7 inside the separation box 2, immediately start the rotating motor 9 to drive the rotating shaft rod 8 to drive the auger shaft 10 to rotate, thereby stirring the incoming asparagus juice and fixed residues to accelerate the full solid-liquid separation of the asparagus juice and fixed residues falling into the annular filter cylinder 7, and then discharging through the discharge cover 5. This is beneficial to fully perform solid-liquid separation treatment on asparagus during the juicing process, improving the working efficiency of processing. At the same time, after use, by loosening the bolts, the annular filter cylinder 7 can be taken out of the separation box 2 along the annular opening 6, which is convenient for cleaning and maintenance.

[0022] On the outer side walls of the crushing box 3 and the separation box 2, there are respectively an openable first sealing door 22 and a second sealing door 23, and on the inner bottom surfaces of the crushing box 3 and the separation box 2, there are respectively fixedly installed a first filter plate 24 and a second filter plate 25. After juicing is completed, open the first sealing door 22 and the second sealing door 23 on the crushing box 3 and the separation box 2 in sequence, and the solid residues of the crushed and separated asparagus can be recovered and cleaned. At the same time, the solid residues can be crushed and screened again to fully separate the juice in the asparagus, thereby improving the working efficiency of solid-liquid separation and the utilization efficiency of resource recycling. At the same time, the asparagus juice and solid residues after crushing and separation are respectively subjected to layered treatment by the first filter plate 24 and the second filter plate 25. Through multi-level filtration and separation, the working efficiency of processing is greatly improved.

[0023] The working principle of the utility model is as follows: when in use, the processed asparagus is first transported along the feed cover 4 to the inside of the crushing box 3, and then the drive motor 17 is started, and under the meshing characteristics of the first gear 15, the connecting sleeves 13 on the two driving shafts 11 are driven to be linked, and then the corresponding and crossed crushing blades 14 are driven to crush the asparagus, and then the first belt pulley 16 drives the first transmission belt 21 to drive the second belt pulley 20 to rotate, and under the meshing characteristics of the second gear 19, the two rotating shafts 12 are driven to drive the squeezing roller 18 and the two crushing blades 14 to rotate synchronously, and then the water in the crushed asparagus is squeezed out, and after separation by the first filter plate 24, it flows into the separation box 2 for sufficient solid-liquid separation.

[0024] At the same time, after the crushing and squeezing are completed, the first sealing door 22 can be opened to collect and clean the asparagus solid residues on the crushing box 3 and the first filter plate 24, and the crushing and squeezing process can be performed again to fully extract the juice in the asparagus residues.

[0025] At the same time, when the asparagus is crushed and squeezed into the annular filter cartridge 7 inside the separation box 2, the rotating motor 9 is started immediately to drive the rotating shaft 8 to drive the auger shaft 10 to rotate, thereby stirring the asparagus juice and fixed residue transported in, so as to accelerate the asparagus juice and fixed residue falling into the annular filter cartridge 7 for sufficient solid-liquid separation, and then pass through the second filter plate 25 for the final filtering and separation treatment, and discharge through the discharge cover 5.

[0026] After use, the annular filter cartridge 7 can be taken out from the separation box 2 along the annular opening 6 by tightening the bolts, so as to facilitate cleaning and maintenance. At the same time, the second sealing door 23 can be opened to collect and clean the asparagus solid residue in the separation box 2 and the second filter plate 25, and the juicing process can be repeated to fully separate the asparagus solid residue.

[0027] The above is only a preferred embodiment of the present invention. It should be noted that, for ordinary technicians in the technical field, several improvements and modifications can be made without departing from the principle of the present invention, and these improvements and modifications should also be regarded as the protection scope of the present invention. The structures, devices and operating methods not specifically described and explained in the present invention shall be implemented according to the conventional means in the field unless otherwise specified and limited.

Claims

1. An efficient juice extraction device for asparagus processing, characterized in that, It includes a bracket (1), a separation box (2) fixedly installed inside the bracket (1), and a crushing box (3) fixedly and through-connected to the outer top of the separation box (2). A feed cover (4) is through-connected to the middle position of the outer top of the crushing box (3). A crushing assembly for crushing and extruding asparagus is arranged inside the crushing box (3). An outlet cover (5) is through-connected to the middle position of the outer bottom of the separation box (2). A screening assembly for fully separating the crushed asparagus is arranged inside the separation box (2). The crushing assembly includes two driving shaft rods (11) and two rotating shaft rods (12) respectively and commonly rotatably connected to the inner side walls of both sides of the crushing box (3). Connecting sleeves (13) are fixedly sleeved on the outer peripheral surfaces of the two driving shaft rods (11). Crushing blades (14) arranged in a mutually corresponding and crossed manner are equidistantly installed on the outer peripheral surfaces of the two groups of connecting sleeves (13). The two ends of the two driving shaft rods (11) respectively extend to the tops of the outer side walls of both sides of the crushing box (3). A first gear (15) is fixedly installed on the outer side wall of the crushing box (3) and on the outer peripheral surface of one end of the two driving shaft rods (11). The two first gears (15) are meshed with each other. At the same time, a first pulley (16) is fixedly installed on the outer peripheral surface of the other end of one of the driving shaft rods (11). A driving motor (17) is also fixedly installed on the outer side wall of the crushing box (3). The output end of the driving motor (17) is fixedly connected to one of the driving shaft rods (11). Pressing rollers (18) are fixedly sleeved on the outer peripheral surfaces of the two rotating shaft rods (12). The two ends of the two pressing rollers (18) respectively extend to the bottoms of the outer side walls of both sides of the crushing box (3). Second gears (19) are fixedly installed on the outer peripheral surfaces of one end of the two rotating shaft rods (12) outside the crushing box (3). The two second gears (19) are meshed with each other. At the same time, a second pulley (20) is fixedly installed on the outer peripheral surface of the other end of one of the rotating shaft rods (12). The second pulley (20) and the first pulley (16) are rotatably connected to each other through a transmission belt (21).

2. The highly efficient asparagus juice extraction device according to claim 1, wherein, The screening assembly includes a through-type annular opening (6) formed in the outer side wall of the separation box (2). A semi-open annular filter cylinder (7) is fixedly installed on the outer side wall of the separation box (2) through bolts. One end of the annular filter cylinder (7) extends into the separation box (2) along the annular opening (6) and is inserted into an annular slot formed in the inner side wall of the separation box (2).

3. The efficient asparagus juice extraction device according to claim 2, characterized in that, A rotating shaft rod (8) is rotatably connected to the outer side wall of the separation box (2), and one end of the rotating shaft rod (8) is fixedly connected to the output end of a rotating motor (9) fixedly installed on the outer side wall of the separation box (2). At the same time, the other end of the rotating shaft rod (8) penetrates through the separation box (2) and extends into the interior of the annular filter cartridge (7), and is fixedly connected to an auger shaft (10) rotatably connected to the inner bottom surface of the annular filter cartridge (7).

4. An efficient asparagus juice extraction device according to claim 1, characterized in that, A first sealable door (22) and a second sealable door (23) are respectively arranged on the outer side walls of the crushing box (3) and the separation box (2), and a first filter plate (24) and a second filter plate (25) are respectively fixedly installed on the inner bottom surfaces of the crushing box (3) and the separation box (2).

Citation Information

Patent Citations

  • Asparagus processing and juicing equipment

    CN214774165U