Multi-process linkage native honey purification processing device
Through a multi-process integrated honey purification and processing device, using technologies such as heating and stirring, coarse filtration, fine filtration, and scraper cleaning, the problem of removing tiny particles and crystal nuclei from honey has been solved, achieving efficient purification and impurity removal of honey, thereby enhancing its commercial value and shelf life.
Patent Information
- Application Number
- CN202511972934.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-25
- Publication Date
- 2026-02-17
AI Technical Summary
Existing technologies cannot completely remove tiny particles and crystal nuclei from honey, which means that purified honey may still contain impurities, affecting its appearance and shelf life.
Design a multi-process linkage honey purification and processing device. Through multiple steps such as heating and stirring, coarse filtration, fine filtration and scraper cleaning, combined with drive components and transmission components, achieve efficient filtration and impurity removal of honey.
It improves the purity and utilization rate of honey, enhances its commercial value and market circulation, and extends its shelf life.
Smart Images

Figure CN121534444A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to a honey purification processing device, in particular to a multi-process linkage honey purification processing device. BACKGROUND
[0002] Honey is a natural sweet substance, which is not only sweet and unique in flavor, but also rich in vitamins, minerals, amino acids and bioactive substances, and has the health care effects of moistening the lung to relieve cough, moistening the intestine to promote defecation and resisting bacteria and inflammation, and is deeply loved by consumers. However, during the collection and storage process, natural honey often mixes impurities such as beeswax, pollen and larva residues, and its water content is relatively high, generally between 18% and 25%, which not only affects the appearance and taste of honey, but also shortens the shelf life of honey, and limits the commercial value and market circulation of honey.
[0003] At present, honey purification processing technology is developing, and various purification processing methods and equipment appear on the market. Filtration is one of the commonly used methods, which removes solid impurities in honey through filter screens or filter devices of different mesh sizes. However, a single filtration method often cannot completely remove small particles and crystal nuclei, so that the purified honey may still contain impurities, and therefore a multi-process linkage honey purification processing device needs to be designed to solve this problem. SUMMARY
[0004] The application aims to provide a multi-process linkage honey purification processing device to solve the problems in the background.
[0005] To achieve the above-mentioned purpose, the application provides the following technical scheme: A multi-process linkage honey purification processing device, comprising a base, a shell mounted on the base, a storage cavity, a processing cavity and a heating cavity arranged in the shell, a heating lamp arranged in the heating cavity, a stirring rod arranged in the storage cavity, a conveying table arranged on the base, a conveying groove opened on the conveying table, a discharging port opened on the bottom wall of the conveying groove, a conveying block arranged in the conveying groove and slidably attached to the inner wall of the conveying groove, a conveying cavity opened on the conveying block, a discharging port mounted on the bottom wall of the processing cavity and slidably attached to the top wall of the conveying block, a through hole opened on the bottom wall of the storage cavity and provided with a valve, a filter frame arranged in the processing cavity and at the bottom of the through hole, a sliding groove opened on the side wall of the processing cavity and slidably provided with a sliding block, a fine filter plate mounted on one side of the sliding block and arranged below the filter frame, a driving assembly mounted on the shell, the conveying block, the stirring rod and the filter frame connected with the driving assembly, a transmission assembly connected with the driving assembly and connected with the sliding block at the end away from the driving assembly.
[0006] As a further aspect of the present invention: the driving assembly includes a driving component, the driving component is mounted on the housing, a driving shaft is mounted on the output end of the driving component, the end of the driving shaft away from the driving component passes through the storage cavity, the fine filter plate and the processing cavity and is connected to the conveying block, and the stirring rod and the filter frame are both mounted on the driving shaft.
[0007] As a further aspect of the present invention: the transmission assembly includes a driven shaft, one end of which is rotatably connected to the side wall of the processing cavity, and the other end is connected to a connecting unit. The end of the connecting unit away from the driven shaft is connected to the drive shaft. A cam is mounted on the driven shaft and is located at the bottom of the slider.
[0008] As a further aspect of the present invention: an elastic component is installed on the top wall of the slide groove, and the end of the elastic component away from the slider is connected to the top wall of the slide groove.
[0009] As a further aspect of the present invention: a scraper is provided in the processing cavity, the scraper is located on one side of the filter frame and is in contact with the side wall of the processing cavity, a connecting rod is connected to the side of the scraper away from the side wall of the processing cavity, and the end of the connecting rod away from the scraper is connected to the drive shaft.
[0010] As a further aspect of the present invention: a protective box is installed on the rear wall of the processing cavity, and the connecting unit is disposed in the protective box.
[0011] As a further aspect of the present invention, the elastic component is a spring.
[0012] Compared with the prior art, the beneficial effects of this invention are as follows: Honey raw materials are placed in a storage chamber, and a heating lamp in the heating chamber heats the honey. During this process, a drive unit drives a drive shaft to rotate, which in turn drives a stirring rod and a filter frame to rotate. The stirring rod stirs the honey in the storage chamber, ensuring even heating. The evenly heated honey falls through a through-hole into the filter frame, which rotates in the processing chamber. Under centrifugal force, the filter frame coarsely filters the honey, removing larger impurities. The coarsely filtered raw material falls onto a fine filter plate at the bottom, where it is further filtered. When the drive shaft rotates, a connecting rod connected to the drive shaft drives a scraper in a circular motion. During this motion, the scraper continuously scrapes the sidewalls of the processing chamber, removing impurities adhering to the chamber, thus improving the utilization rate of the honey. The coarsely filtered honey falls onto the fine filter plate, and the connecting unit transmits the power of the drive shaft to the driven shaft, causing the driven shaft to rotate with the drive shaft. A cam mounted on the driven shaft rotates along with the shaft. The cam's unique shape causes it to periodically lift the slider during rotation. An elastic component mounted on the top wall of the chute is stretched when the slider is lifted by the cam. When the cam rotates to a certain position and stops lifting the slider, the elastic force of the component causes the slider to quickly fall back, thus achieving the reciprocating motion of the slider in the chute. Since a fine filter plate is mounted on one side of the slider and is located below the filter frame, the reciprocating motion of the slider drives the fine filter plate to reciprocate, further refining the coarsely filtered honey and improving its purity. A protective box mounted on the rear wall of the processing chamber protects the connecting unit, preventing impurities such as honey from entering and affecting its normal operation. The finely filtered honey falls to the bottom of the processing chamber and enters the conveying chamber through the discharge port. The quantitative conveying of the conveying chamber facilitates the honey's collection and filling after it falls from the discharge port, improving the practicality of the device. Attached Figure Description
[0013] Fig. 1 This is a schematic diagram of a multi-process linkage device for purifying and processing wild honey.
[0014] Fig. 2 This is a schematic diagram of the conveyor platform in a multi-process honey purification and processing device.
[0015] Fig. 3 This is a schematic diagram of the conveyor block in a multi-process linkage honey purification and processing device.
[0016] Fig. 4 This is a schematic diagram of the stirring rod in a multi-process linkage honey purification and processing device.
[0017] In the diagram: 1. Shell; 2. Heating lamp; 3. Heating chamber; 4. Drive component; 5. Stirring rod; 6. Storage chamber; 7. Through hole; 8. Processing chamber; 9. Scraper; 10. Connecting rod; 11. Filter frame; 12. Drive shaft; 14. Elastic component; 15. Slider; 16. Fine filter plate; 17. Driven shaft; 18. Cam; 19. Connecting unit; 20. Conveying table; 21. Discharge port; 22. Conveying block; 23. Conveying chamber; 24. Discharge port; 25. Base. Detailed Implementation
[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0019] Please see Figs. 1-4 As an embodiment of the present invention, a multi-process linkage honey purification and processing device includes a base 25, on which a housing 1 is mounted. The housing 1 contains a storage chamber 6, a processing chamber 8, and a heating chamber 3. A heating lamp 2 is installed in the heating chamber 3. A stirring rod 5 is installed in the storage chamber 6. A conveyor platform 20 is mounted on the base 25. A conveying trough is formed on the conveyor platform 20. A discharge port 21 is formed on the bottom wall of the conveying trough. A conveying block 22 is arranged in the conveying trough and slides against the inner wall of the conveying trough. A conveying cavity 23 is formed on the conveying block 22. A discharge port is installed on the bottom wall of the processing chamber 8. 24. The discharge port 24 slides against the top wall of the conveying block 22. A through hole 7 is provided on the bottom wall of the storage cavity 6. A valve is installed in the through hole 7. A filter frame 11 is provided in the processing cavity 8. The filter frame 11 is located at the bottom of the through hole 7. A sliding groove is provided on the side wall of the processing cavity 8. A slider 15 is slidably installed in the sliding groove. A fine filter plate 16 is installed on one side of the slider 15. The fine filter plate 16 is located below the filter frame 11. A drive assembly is installed on the housing 1. The conveying block 22, the stirring rod 5 and the filter frame 11 are all connected to the drive assembly. A transmission assembly is connected to the drive assembly. The end of the transmission assembly away from the drive assembly is connected to the slider 15.
[0020] In this embodiment, the honey raw material is placed in the storage chamber 6. The heating lamp 2 in the heating chamber 3 heats the honey in the storage chamber 6. During this process, the drive component drives the stirring rod 5 and the filter frame 11 to rotate. The stirring rod 5 rotates and stirs the honey in the storage chamber 6, so that the honey in the storage chamber 6 is heated evenly. The evenly heated honey falls into the filter frame 11 through the through hole 7. The filter frame 11 rotates in the processing chamber 8 and performs coarse filtration on the honey under the action of centrifugal force, removing larger impurity particles. The raw material after coarse filtration falls onto the fine filter plate 16 at the bottom, where it is filtered. The transmission component, under the action of the drive component, drives the slider 15 to reciprocate in the slide groove. Since a fine filter plate 16 is installed on one side of the slider 15 and the fine filter plate 16 is located under the filter frame 11, the reciprocating motion of the slider 15 drives the fine filter plate 16 to reciprocate, further filtration of the honey after coarse filtration, improving the purity of the honey. The finely filtered honey falls to the bottom of the processing chamber 8 and falls into the conveying chamber 23 through the feeding port 24. The quantitative conveying of the conveying chamber 23 facilitates the honey to fall from the feeding port 21 for subsequent collection and filling, improving the practicality of the device.
[0021] As an embodiment of the present invention, the driving assembly includes a driving component 4, which is mounted on the housing 1. A driving shaft 12 is mounted on the output end of the driving component 4. The end of the driving shaft 12 away from the driving component 4 passes through the storage cavity 6, the fine filter plate 16 and the processing cavity 8 and is connected to the conveying block 22. The stirring rod 5 and the filter frame 11 are both mounted on the driving shaft 12.
[0022] In this embodiment, the drive unit 4 is mounted on the housing 1 as a power source. When the drive unit 4 is activated, its output end drives the drive shaft 12 to rotate. The drive shaft 12 passes through the storage cavity 6, the fine filter plate 16, and the processing cavity 8, and one end is connected to the conveying block 22, so that when the drive shaft 12 rotates, it can drive the conveying block 22 to slide in the conveying groove, realizing the function of conveying honey. At the same time, the stirring rod 5 and the filter frame 11 are both mounted on the drive shaft 12. When the drive shaft 12 rotates, the stirring rod 5 stirs the honey in the storage cavity 6, so that the honey in the storage cavity 6 is heated evenly. The filter frame 11 rotates in the processing cavity 8, and under the action of centrifugal force, it coarsely filters the honey to remove larger impurity particles.
[0023] Furthermore, the driving component 4 can be a stepper motor or a servo motor, etc., which will not be described in detail here.
[0024] In one embodiment of the present invention, the transmission assembly includes a driven shaft 17, one end of which is rotatably connected to the side wall of the processing cavity 8, and the other end is connected to a connecting unit 19. The end of the connecting unit 19 away from the driven shaft 17 is connected to the drive shaft 12. A cam 18 is mounted on the driven shaft 17 and is disposed at the bottom of the slider 15. An elastic member 14 is mounted on the top wall of the slide groove, and the end of the elastic member 14 away from the slider 15 is connected to the top wall of the slide groove. A protective box is mounted on the rear wall of the processing cavity 8, and the connecting unit 19 is disposed in the protective box.
[0025] In this embodiment, the coarsely filtered honey falls onto the fine filter plate 16. The connecting unit 19 transmits the power from the drive shaft 12 to the driven shaft 17, causing the driven shaft 17 to rotate along with the drive shaft 12. The cam 18 mounted on the driven shaft 17 rotates together with the driven shaft 17. The special shape of the cam 18 causes it to periodically lift the slider 15 during rotation. The elastic component 14 mounted on the top wall of the chute is stretched when the slider 15 is lifted by the cam 18. When the cam 18 rotates to a certain position and no longer lifts the slider 15, the elastic force of the elastic component 14 causes the slider 15 to fall back quickly, thereby realizing the reciprocating motion of the slider 15 in the chute. Since the fine filter plate 16 is mounted on one side of the slider 15 and the fine filter plate 16 is located on the lower side of the filter frame 11, the reciprocating motion of the slider 15 drives the fine filter plate 16 to reciprocate, further refining the coarsely filtered honey and improving the purity of the honey. The protective box installed on the rear wall of the processing cavity 8 is used to protect the connection unit 19 and prevent impurities such as honey from entering and affecting the normal operation of the connection unit 19.
[0026] Furthermore, the elastic component 14 is a spring or an elastic sheet, preferably a spring, which will not be described in detail here.
[0027] Furthermore, the connecting unit 19 can be a gear set or a worm gear and worm wheel combination, which will not be described in detail here.
[0028] As an embodiment of the present invention, a scraper 9 is provided in the processing cavity 8. The scraper 9 is disposed on one side of the filter frame 11 and is in contact with the side wall of the processing cavity 8. A connecting rod 10 is connected to the side of the scraper 9 away from the side wall of the processing cavity 8. The end of the connecting rod 10 away from the scraper 9 is connected to the drive shaft 12.
[0029] In this embodiment, the scraper 9 is disposed on one side of the filter frame 11 and is in contact with the side wall of the processing chamber 8. When the drive shaft 12 rotates, the connecting rod 10 connected to the drive shaft 12 drives the scraper 9 to perform a circular motion. During the movement of the scraper 9, it continuously scrapes the side wall of the processing chamber 8, scraping off the impurities attached to the processing chamber 8, thereby improving the utilization rate of honey.
[0030] The working principle of this invention is as follows: Honey raw material is placed in storage chamber 6, and heating lamp 2 in heating chamber 3 heats the honey in storage chamber 6. During this process, drive component 4 drives drive shaft 12 to rotate, drive shaft 12 drives stirring rod 5 and filter frame 11 to rotate. Stirring rod 5 rotates in storage chamber 6 to stir the honey, so that the honey in storage chamber 6 is heated evenly. The evenly heated honey falls into filter frame 11 through through hole 7. Filter frame 11 rotates in processing chamber 8 and performs coarse filtration on honey under the action of centrifugal force to remove larger impurity particles. The raw material after coarse filtration falls onto fine filter plate 16 at the bottom, where it is filtered. When drive shaft 12 rotates, connecting rod 10 connected to drive shaft 12 drives scraper 9 to perform circumferential motion. During the movement of scraper 9, it continuously scrapes the side wall of processing chamber 8, removing impurities adhering to the processing chamber 8, thereby improving the utilization rate of honey. The honey that has passed coarse filtration falls onto fine filter plate 16. Connecting unit 19 transmits the power of drive shaft 12 to driven shaft 17, causing driven shaft 17 to rotate with drive shaft 12. Cam 18 mounted on driven shaft 17 rotates together with driven shaft 17. The special shape of cam 18 causes it to periodically lift slider 15 during rotation. Elastic component 14 mounted on the top wall of the chute is stretched when slider 15 is lifted by cam 18. When cam 18 rotates to a certain position and no longer lifts slider 15, the elastic force of elastic component 14 causes slider 15 to fall back quickly, thereby realizing the reciprocating motion of slider 15 in the chute. Since a fine filter plate 16 is installed on one side of the slider 15 and is located below the filter frame 11, the reciprocating motion of the slider 15 drives the fine filter plate 16 to reciprocate, further refining the honey that has undergone coarse filtration and improving its purity. A protective box installed on the rear wall of the processing chamber 8 protects the connecting unit 19, preventing impurities such as honey from entering and affecting its normal operation. The finely filtered honey falls to the bottom of the processing chamber 8 and enters the conveying chamber 23 through the discharge port 24. The quantitative conveying by the conveying chamber 23 facilitates the honey's subsequent collection and filling from the discharge port 21, enhancing the device's practicality.
[0031] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0032] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A multi-flow linked soil honey purification processing device comprising a base, characterized in that, The base is provided with a shell, a storage cavity, a processing cavity and a heating cavity are arranged in the shell, a heating lamp is arranged in the heating cavity, a stirring rod is arranged in the storage cavity, a conveying table is arranged on the base, a conveying groove is formed on the conveying table, a blanking port is formed on the bottom wall of the conveying groove, a conveying block is arranged in the conveying groove and slidably attached to the inner wall of the conveying groove, a conveying cavity is formed on the conveying block, a blanking port is arranged on the bottom wall of the processing cavity and slidably attached to the top wall of the conveying block, a through hole is formed on the bottom wall of the storage cavity and provided with a valve, a filter frame is arranged in the processing cavity and located at the bottom of the through hole, a sliding slot is formed on the side wall of the processing cavity and slidably provided with a sliding block, a fine filter plate is arranged on one side of the sliding block and located below the filter frame, a driving assembly is arranged on the shell, the conveying block, the stirring rod and the filter frame are connected with the driving assembly, a transmission assembly is connected with the driving assembly and connected with the sliding block at the end away from the driving assembly.
2. A multi-flow linked soil honey purification processing device according to claim 1, characterized in that, The driving assembly comprises a driving member, the driving member is installed on the shell, a driving shaft is installed on the output end of the driving member, the driving shaft is connected with the conveying block at the end away from the driving member and penetrates the storage cavity, the fine filter plate and the processing cavity, the stirring rod and the filter frame are installed on the driving shaft.
3. A multi-flow linked soil honey purification processing device according to claim 2, characterized in that, The transmission assembly comprises a driven shaft, one end of the driven shaft is rotatably connected with the side wall of the processing cavity, the other end is connected with a connecting unit, the connecting unit is connected with the driving shaft at the end away from the driven shaft, a cam is installed on the driven shaft and located at the bottom of the sliding block.
4. A multi-flow linked soil honey purification processing device according to claim 3, characterized in that, An elastic member is installed on the top wall of the sliding slot and connected with the top wall of the sliding slot at the end away from the sliding block.
5. A multi-process linked soil honey purification processing device according to claim 1, characterized in that, A scraper is arranged in the processing cavity and located at one side of the filter frame, the scraper is attached to the side wall of the processing cavity, a connecting rod is connected with the scraper at the side away from the side wall of the processing cavity, and the connecting rod is connected with the driving shaft at the end away from the scraper.
6. A multi-process linked earth honey purification processing device according to claim 3, characterized in that, A protection box is installed on the rear wall of the processing cavity, and the connecting unit is arranged in the protection box.
7. A multi-process linked earth honey purification processing device according to claim 4, characterized in that, The elastic member is a spring.