Impurity removal equipment for ginger powder honey production

Through the coordination of power components and material distribution components, combined with self-cleaning and self-discharge components, the problem of sieve screens in the production of ginger powder honey is solved, and uniform screening and efficient removal of ginger powder honey is achieved, which significantly improves production efficiency.

CN120325518APending Publication Date: 2025-07-18WEIHAI JIANGBULAO FOOD TECH CO LTD
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Patent Information

Application Number
CN202510757798.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-09
Publication Date
2025-07-18

AI Technical Summary

Technical Problem

During the production process of existing ginger powder honey, the screen is easily blocked, resulting in low impurity removal efficiency and difficult to discharge impurities quickly, affecting the overall production efficiency.

Method used

The power component and the material distribution component are used to achieve uniform distribution of ginger powder and honey to the surface of the conical screening tank, and automatic cleaning and impurities discharge through self-cleaning components and self-discharge components to avoid local clogging and improve screening efficiency and cleaning speed.

Benefits of technology

The uniform screening of ginger powder honey is achieved, the blockage problem is reduced, the removal efficiency is improved, and the cleaning time is shortened through the automated process and the overall production efficiency is improved.

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Abstract

The invention belongs to the technical field of ginger powder honey production, and discloses an impurity removal device for ginger powder honey production, the impurity removal device comprises a treatment tank, a base circumferentially mounted at the bottom end of the treatment tank, and discharge ports formed in two sides of the bottom end of the treatment tank, and an impurity removal tank is mounted in the treatment tank through a locking frame; the bottom end of the impurity removal tank fixedly communicates with a conical screening tank, an impurity removal opening is formed in the bottom end of the conical screening tank, and a self-impurity-discharging assembly located below the impurity removal opening is installed at the bottom end of the conical screening tank. Through cooperation between the power assembly and the material distributing assembly and cooperation between the material distributing assembly and the conical screening tank, ginger powder honey can be evenly distributed to the surface of the conical screening tank and prevented from being concentrated in the middle and one position of the conical screening tank when being injected, so that the conical screening tank can achieve even screening, and the screening efficiency is improved. The problem of local blockage caused by concentrated feeding can be effectively reduced, the screening efficiency is remarkably improved, and the overall impurity removal efficiency is improved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of ginger powder honey production, and specifically relates to a impurity removal device for ginger powder honey production. Background Art

[0002] Ginger powder honey is a natural food that combines ginger powder and honey, with a unique taste and rich nutritional value. Ginger powder is made from fresh ginger roots through processes such as drying and grinding, retaining the natural ingredients of ginger, having a warm and spicy taste, and is widely used in food seasoning and health care. Honey, on the other hand, is a natural dessert collected by bees from flower nectar and brewed, containing various enzymes, vitamins, and minerals, with effects such as nourishing dryness and antibacterial inflammation. Ginger powder honey combines the two, retaining both the spicy and warm characteristics of ginger and incorporating the sweetness and nourishment of honey, forming a health food with a rich taste and comprehensive nutrition.

[0003] During the production process of ginger powder honey, in order to remove internal impurities, impurity removal operations are usually carried out. Conventional impurity removal devices mainly consist of a sieve mesh and a vibration device. The vibration device is used to vibrate the material, and screening is carried out through the sieve mesh. However, in this screening method, the material is easily concentrated in the middle of the sieve mesh, resulting in blockage in the middle of the sieve mesh and affecting the impurity removal efficiency.

[0004] At the same time, during the long-term impurity removal process, the sieve mesh is extremely likely to become blocked to a certain extent, resulting in a decrease in impurity removal efficiency. It is necessary to stop the machine for cleaning. At the same time, the screened impurities cannot be quickly discharged from the device, further affecting the impurity removal efficiency. Summary of the Invention

[0005] The purpose of the present invention is to provide an impurity removal device for ginger powder honey production to solve the problems raised in the above background art.

[0006] To achieve the above purpose, the present invention provides the following technical solution: An impurity removal device for ginger powder honey production, including a processing tank, a base installed in a circular shape at the bottom end of the processing tank, and discharge ports opened on both sides of the bottom end of the processing tank. An impurity removal tank is installed inside the processing tank through a locking frame. The bottom end of the impurity removal tank is fixedly connected and communicated with a conical screening tank. An impurity removal port is opened at the bottom end of the conical screening tank. A self-discharging impurity component is installed at the bottom end of the conical screening tank and is located below the impurity removal port. The bottom end of the self-discharging impurity component penetrates through the bottom end of the processing tank. A material distribution component is movably installed at the top end of the impurity removal tank. The material distribution component rotates relative to the impurity removal tank. A self-cleaning component located inside the conical screening tank is installed on the outer side of the material distribution component. A power component is installed on one side of the top end of the processing tank. One side of the power component is sleeved with the material distribution component. A three-way valve is fixedly connected and communicated at the top end of the material distribution component. One side of the three-way valve is fixedly connected and communicated with a feed pipe. The other end of the feed pipe is connected and communicated with the bottom end of the self-discharging impurity component; The material distribution component evenly distributes the material to the conical screening tank, and the self-cleaning component is linked to complete the self-cleaning of the conical screening tank. The three-way valve is used to distribute clean water to the inside of the conical screening tank and the self-draining component, and the impurities are discharged by the self-draining component. When the three-way valve is performing impurity removal, the top end thereof is connected to an external material delivery pipe, and when the three-way valve is performing self-cleaning, the top end thereof is connected to an external water delivery pipe.

[0007] Before removing impurities from the ginger powder honey, keep the valve on one side of the three-way valve in a closed state, while keeping the valve at the top of the three-way valve in an open state, and connect it to the external feed pipe for conveying ginger powder honey, inject ginger powder honey at the same time, and keep the discharge port at the bottom open to complete the preparations before removing impurities.

[0008] As a further technical solution of the present invention, the power assembly includes a frame, which is connected to the top of the processing tank, and a main motor is installed at the bottom of the frame. A driving gear is fixedly installed at the output end of the main motor, and a driven gear ring is meshed and connected to one side of the driving gear, and the driven gear ring is fixedly sleeved with the material distribution assembly.

[0009] When removing impurities, the main motor can be turned on to drive the driving gear to rotate. At this time, the driving gear rotates accordingly and transmits power to the material distribution component to assist the material distribution operation.

[0010] As a further technical solution of the present invention, the material distribution assembly includes a feed pipe, which is movably connected to the impurity removal tank. The feed pipe rotates relative to the impurity removal tank. The top end of the feed pipe is connected to the bottom end of the three-way valve, and the outer side of the feed pipe is fixedly sleeved between the part located in the impurity removal tank and the driven gear ring.

[0011] As a further technical solution of the present invention, the bottom end of the feed pipe is fixedly connected to a distribution pipe, and the bottom end of the distribution pipe is fixedly connected to a diffusion nozzle. The output end of the diffusion nozzle is located on the inner side of the conical screening tank, and the inclination angle is adapted to the inclination angle of the conical screening tank.

[0012] As a further technical solution of the present invention, when the feed pipe rotates, the diffusion nozzle is driven by the distribution pipe to rotate circumferentially relative to the conical screening tank, and the material is evenly distributed on the inner side of the conical screening tank.

[0013] When injecting ginger powder honey, the ginger powder honey guided out through the three-way valve can enter the interior of the feed pipe, and be guided out through the distribution pipe, and the discharge is completed through the diffusion nozzle. At this time, the rotation of the driven gear ring can drive the feed pipe to rotate synchronously. At this time, the distribution pipe at the bottom end rotates accordingly, and drives the diffusion nozzle to rotate circumferentially relative to the conical screening tank. At this time, the ginger powder honey can be evenly distributed to various parts of the conical screening tank, and screened and impurities are removed through the conical screening tank. The screened ginger powder honey can enter the interior of the processing tank, and be guided out through the discharge port at the bottom to complete the discharge process.

[0014] By utilizing the coordination between the power component and the material distribution component, and between the material distribution component and the conical screening tank, when the ginger powder honey is injected, it can be evenly distributed on the surface of the conical screening tank, avoiding concentration in the middle and one place of the conical screening tank, so that the conical screening tank can achieve uniform screening, effectively reduce the local blockage problem caused by centralized feeding, significantly improve the screening efficiency, and improve the overall impurity removal efficiency.

[0015] As a further technical solution of the present invention, the self-cleaning component includes a fixed sleeve, which is fixedly connected to the outer side of the distribution pipe, and an extension frame is fixedly installed on the bottom end of the fixed sleeve, and a scraper is fixedly installed on the bottom end of the extension frame.

[0016] As a further technical solution of the present invention, the inclination angle of the scraper is matched with the inclination angle of the conical screening tank, and the outer side surface of the scraper is in contact with the inner side surface of the conical screening tank.

[0017] At the same time, during the screening process of ginger powder honey, due to the rotation of the feed pipe, the fixed sleeve can be driven to rotate synchronously. When the fixed sleeve rotates, the extension frame can be driven to rotate circumferentially synchronously, and finally the scraper can be driven to rotate relative to the conical screening tank. At this time, the scraper can rub the inner side of the conical screening tank and complete the active cleaning process of the inner side of the conical screening tank through friction.

[0018] By utilizing the cooperation between the material distribution component and the self-cleaning component, the device can actively clean the conical screening tank while spreading the ginger powder honey. At the same time, the friction between the scraper and the conical screening tank can assist in pressurizing the ginger powder honey, so that it can quickly complete the screening process. The entire process can be completed automatically, which can effectively reduce the subsequent maintenance process and improve the impurity removal efficiency.

[0019] As a further technical solution of the present invention, the self-discharging component includes a locking frame, the bottom end of the locking frame is connected to the bottom end of the conical screening tank, the interior of the locking frame is fixedly sleeved with a temporary storage tube, and the bottom end of the temporary storage tube is connected to the feed pipe.

[0020] As a further technical solution of the present invention, the interior of the temporary storage tube is movably sleeved with a piston plate, the top of the piston plate is fixedly connected to a piston rod, the top of the piston rod passes through the top of the temporary storage tube and is fixedly connected to a plug located inside the impurity removal port, and the outer side surface of the piston rod is movably sleeved with a limit spring, and the upper and lower ends of the limit spring are respectively connected to one end of the inner cavity of the temporary storage tube and one end of the piston plate.

[0021] As a further technical solution of the present invention, when the limit spring is in the initial state, the piston plate and the plug are located at the lowest point, and the plug completely seals the impurity removal port.

[0022] After the impurity removal is completed, clean water can be injected into the three-way valve. At this time, the clean water can enter the interior of the conical screening tank through the material dividing component to complete active cleaning. At the same time, the clean water can be discharged through the side of the three-way valve and enter the interior of the temporary storage pipe through the feed pipe. At this time, a thrust can be applied to the piston plate, and the limit spring is compressed, driving the piston rod and the plug to rise. When the plug rises, the impurity removal port is no longer sealed, the channel of the impurity removal port is opened, and impurities are discharged through the impurity removal port to complete the automatic impurity removal process.

[0023] By utilizing the cooperation between the three-way valve and the material distribution component, as well as the function of the self-impurity discharge component, the device can automatically open the channel of the impurity removal port through the function of the self-impurity discharge component during cleaning to complete the automatic discharge of impurities. The automatic discharge of impurities can be quickly completed without disassembling the device. The entire process can be completed automatically, which can significantly shorten the cleaning time and improve the overall impurity removal efficiency.

[0024] The beneficial effects of the present invention are as follows: (1) The present invention utilizes the coordination between the power component and the material distribution component, and utilizes the coordination between the material distribution component and the conical screening tank, so that when the ginger powder honey is injected, it can be evenly distributed on the surface of the conical screening tank, avoiding concentration in the middle and one place of the conical screening tank, so that the conical screening tank can achieve uniform screening, effectively reduce the local blockage problem caused by centralized feeding, significantly improve the screening efficiency, and improve the overall impurity removal efficiency.

[0025] (2) The present invention utilizes the coordination between the three-way valve and the material distribution component, as well as the function of the self-impurity discharge component, so that when the device is being cleaned, the channel of the impurity removal port can be automatically opened through the function of the self-impurity discharge component to automatically discharge impurities. The automatic discharge of impurities can be quickly completed without disassembling the device. The entire process can be completed automatically, which can significantly shorten the cleaning time and improve the overall impurity removal efficiency.

[0026] (3) By utilizing the cooperative effect between the material distribution component and the self-cleaning component, the present invention enables the device to actively clean the conical screening tank while conducting the cloth spreading of ginger powder honey. Meanwhile, the friction between the scraper and the conical screening tank can assist in pressurizing the ginger powder honey, enabling it to quickly complete the screening process. The entire process can be automatically completed, effectively reducing subsequent maintenance processes and improving the impurity removal efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the bottom end of the overall structure of the present invention; Figure 3 is a schematic diagram of the cooperation of the three-way valve and the material conveying pipe structure of the present invention; Figure 4 is a separate schematic diagram of the power component structure of the present invention; Figure 5 is a sectional schematic diagram of the internal structure of the treatment tank of the present invention; Figure 6 is a schematic diagram of the cooperation of the impurity removal tank, the conical screening tank, and the self-discharging impurity component structure of the present invention; Figure 7 is a sectional schematic diagram of the internal structures of the impurity removal tank and the conical screening tank of the present invention; Figure 8 is a separate schematic diagram of the self-cleaning component structure of the present invention; Figure 9 is a separate sectional schematic diagram of the material distribution component structure of the present invention; Figure 10 is a partial sectional schematic diagram of the self-discharging impurity component structure of the present invention.

[0028] In the figure: 1. Treatment tank; 2. Base; 3. Three-way valve; 4. Material conveying pipe; 5. Power component; 501. Frame; 502. Main motor; 503. Driving gear; 504. Driven gear ring; 6. Impurity removal tank; 7. Conical screening tank; 8. Impurity removal port; 9. Material distribution component; 901. Feed pipe; 902. Distribution pipe; 903. Diffusion nozzle; 10. Self-cleaning component; 101. Fixed sleeve; 102. Extension frame; 103. Scraper; 11. Self-discharging impurity component; 111. Plug; 112. Locking frame; 113. Temporary storage pipe; 114. Piston plate; 115. Piston rod; 116. Limit spring; 12. Discharge port. DETAILED DESCRIPTION OF THE INVENTION

[0029] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0030] like Figures 1 to 10 As shown, in the embodiment of the present invention, a de-impurity device for ginger powder honey production comprises a processing tank 1 and a base 2 which is circumferentially installed at the bottom of the processing tank 1 and discharge ports 12 which are provided at both sides of the bottom of the processing tank 1. A de-impurity tank 6 is installed inside the processing tank 1 through a locking frame. A conical screening tank 7 is fixedly connected to the bottom end of the de-impurity tank 6. A de-impurity port 8 is provided at the bottom end of the conical screening tank 7. A self-impurity discharge component 11 which is located below the de-impurity port 8 is installed at the bottom end of the conical screening tank 7. The bottom end of the self-impurity discharge component 11 passes through the processing tank 1. At the bottom of the tank 1, a material distribution component 9 is movably installed on the top of the impurity removal tank 6. The material distribution component 9 rotates relative to the impurity removal tank 6. The outer side of the material distribution component 9 is installed with a self-cleaning component 10 located inside the conical screening tank 7. A power component 5 is installed on one side of the top of the processing tank 1. One side of the power component 5 and the material distribution component 9 are mutually sleeved. The top of the material distribution component 9 is fixedly connected with a three-way valve 3. One side of the three-way valve 3 is fixedly connected with a feed pipe 4. The other end of the feed pipe 4 is connected to the bottom end of the self-impurity removal component 11; The material distribution component 9 evenly distributes the material to the conical screening tank 7, and the self-cleaning component 10 is linked to complete the self-cleaning of the conical screening tank 7. The three-way valve 3 is used to distribute clean water to the conical screening tank 7 and the interior of the self-draining component 11, and the impurities are discharged by the self-draining component 11. When the three-way valve 3 is performing impurity removal, the top end thereof is connected to the external material delivery pipe, and when the three-way valve 3 is performing self-cleaning, the top end thereof is connected to the external water delivery pipe.

[0031] Before removing impurities from the ginger powder honey, the valve on one side of the three-way valve 3 can be kept in a closed state, while the valve at the top of the three-way valve 3 can be kept in an open state, and connected to the feed pipe for externally conveying the ginger powder honey, and the ginger powder honey can be injected at the same time, and the discharge port 12 at the bottom can be kept in an open state to complete the preparations before removing impurities.

[0032] like Figure 1 and Figure 3 As shown, the power assembly 5 includes a frame 501, which is connected to the top of the processing tank 1, and a main motor 502 is installed at the bottom of the frame 501. A driving gear 503 is fixedly installed at the output end of the main motor 502, and a driven gear ring 504 is meshedly connected to one side of the driving gear 503. The driven gear ring 504 is fixedly sleeved with the material distribution assembly 9.

[0033] When removing impurities, the main motor 502 can be turned on to drive the driving gear 503 to rotate. At this time, the driving gear 503 rotates accordingly and transmits power to the material distribution component 9 to assist in the material distribution operation.

[0034] like Figure 1 and Figure 5 as well as Figure 7 and Figure 9 As shown, the material distribution component 9 includes a feed pipe 901, which is movably connected with the impurity removal tank 6, and the feed pipe 901 rotates relative to the impurity removal tank 6. The top of the feed pipe 901 is connected to the bottom end of the three-way valve 3, and the outer side of the feed pipe 901 is fixedly sleeved between the part of the impurity removal tank 6 and the driven gear ring 504. The bottom end of the feed pipe 901 is fixedly connected with a distribution pipe 902, and the bottom end of the distribution pipe 902 is fixedly connected with a diffusion nozzle 903. The output end of the diffusion nozzle 903 is located on the inner side of the conical screening tank 7, and the inclination angle is adapted to the inclination angle of the conical screening tank 7. When the feed pipe 901 rotates, the diffusion nozzle 903 is driven by the distribution pipe 902 to rotate circumferentially relative to the conical screening tank 7, and the material is evenly distributed on the inner side of the conical screening tank 7.

[0035] Embodiment: When injecting ginger powder honey, the ginger powder honey discharged through the three-way valve 3 can enter the interior of the feed pipe 901, and is discharged through the distribution pipe 902, and the discharge is completed through the diffusion nozzle 903. At this time, the rotation of the driven gear ring 504 can drive the feed pipe 901 to rotate synchronously. At this time, the distribution pipe 902 at the bottom rotates accordingly, and drives the diffusion nozzle 903 to rotate circumferentially relative to the conical screening tank 7. At this time, the ginger powder honey can be evenly distributed to various parts of the conical screening tank 7, and is screened and removed by the conical screening tank 7. The screened ginger powder honey can enter the interior of the processing tank 1, and is discharged through the discharge port 12 at the bottom to complete the discharge process.

[0036] By utilizing the cooperation between the power component 5 and the material distribution component 9, and the cooperation between the material distribution component 9 and the conical screening tank 7, when the ginger powder honey is injected, it can be evenly distributed on the surface of the conical screening tank 7, avoiding concentration in the middle and one place of the conical screening tank 7, so that the conical screening tank 7 can achieve uniform screening, which can effectively reduce the local blockage problem caused by centralized feeding, significantly improve the screening efficiency, and improve the overall impurity removal efficiency.

[0037] like Figure 7 and Figure 8 As shown, the self-cleaning component 10 includes a fixed sleeve 101, which is fixedly connected to the outer side surface of the distribution pipe 902, and an extension frame 102 is fixedly installed on the bottom end of the fixed sleeve 101. A scraper 103 is fixedly installed on the bottom end of the extension frame 102. The inclination angle of the scraper 103 is adapted to the inclination angle of the conical screening tank 7, and the outer side surface of the scraper 103 is in contact with the inner side surface of the conical screening tank 7.

[0038] Meanwhile, during the screening process of ginger powder honey, due to the rotation of the feed pipe 901, the fixed sleeve 101 can be driven to rotate synchronously at this time. When the fixed sleeve 101 rotates, the extension frame 102 can be driven to rotate circumferentially synchronously, and finally the scraping plate 103 is driven to rotate relative to the conical screening tank 7. At this time, the scraping plate 103 can rub the inner side surface of the conical screening tank 7, and through the rubbing action, the active cleaning process of the inner side surface of the conical screening tank 7 is completed.

[0039] By utilizing the cooperation between the material distribution component 9 and the self-cleaning component 10, the device can actively clean the conical screening tank 7 while performing the cloth laying of ginger powder honey. At the same time, the friction between the scraping plate 103 and the conical screening tank 7 can assist in pressurizing the ginger powder honey, enabling it to quickly complete the screening process. The whole process can be automatically completed, effectively reducing subsequent maintenance processes and improving the impurity removal efficiency.

[0040] Such as Figure 5 and Figure 6 and Figure 7 and Figure 10 As shown, the self-discharging impurity component 11 includes a locking frame 112. The bottom end of the locking frame 112 is connected to the bottom end of the conical screening tank 7. A temporary storage pipe 113 is fixedly sleeved inside the locking frame 112. The bottom end of the temporary storage pipe 113 is communicated with the feed pipe 4. A piston plate 114 is movably sleeved inside the temporary storage pipe 113. The top end of the piston plate 114 is fixedly connected to a piston rod 115. The top end of the piston rod 115 penetrates through the top end of the temporary storage pipe 113 and is fixedly connected to a plug 111 located inside the impurity removal port 8. The outer side surface of the piston rod 115 is movably sleeved with a limiting spring 116. The upper and lower ends of the limiting spring 116 are respectively connected to one end of the inner cavity of the temporary storage pipe 113 and one end of the piston plate 114. When the limiting spring 116 is in the initial state, the piston plate 114 and the plug 111 are located at the lowest point position, and the plug 111 completely seals the impurity removal port 8.

[0041] Embodiment: After the impurity removal is completed, clean water can be injected into the three-way valve 3. At this time, the clean water can enter the inside of the conical screening tank 7 through the material distribution component 9 to complete the active cleaning. At the same time, the clean water can be discharged from the side of the three-way valve 3 and enter the inside of the temporary storage pipe 113 through the feed pipe 4. At this time, a thrust can be applied to the piston plate 114, and the limiting spring 116 is compressed accordingly, driving the piston rod 115 and the plug 111 to rise. When the plug 111 rises, it no longer seals the impurity removal port 8, and the channel of the impurity removal port 8 is opened. The impurities are then discharged through the impurity removal port 8 to complete the automatic impurity discharge process.

[0042] By utilizing the cooperation between the three-way valve 3 and the material distribution component 9, as well as the function of the self-impurity discharge component 11, when the device is being cleaned, the channel of the impurity removal port 8 can be automatically opened through the function of the self-impurity discharge component 11 to automatically discharge impurities. The automatic discharge of impurities can be quickly completed without disassembling the device. The entire process can be completed automatically, which can significantly shorten the cleaning time and improve the overall impurity removal efficiency.

[0043] A high-purity ginger powder honey formula includes ginger powder and honey, wherein the ginger powder is made from Yunnan small yellow ginger powder, which is made using a nine-steaming and nine-drying process, and the gingerol content is 2-3 times that of ordinary ginger. The fineness is ultrafine powder above 100 mesh, and the dosage is 50 grams of high-activity concentrated powder. The honey is natural locust flower honey or jujube flower honey, which is not high-temperature sterilized, has a Baume degree ≥42°, and a basic ratio of 500 grams, forming a golden ratio of 1:10 with the ginger powder. Two SKUs are used, including a low-spicy version and a strong version. The low-spicy version has its honey increased to 600 grams, with ginger powder: honey = 1:12, and the strong version has its honey reduced to 400 grams, with ginger powder: honey = 1:8.

[0044] Working principle and usage process: Before removing impurities from the ginger powder honey, the valve on one side of the three-way valve 3 can be kept in a closed state, while the valve at the top of the three-way valve 3 is kept in an open state, and connected to the feed pipe for externally conveying the ginger powder honey, and the ginger powder honey is injected at the same time, and the discharge port 12 at the bottom is kept in an open state, completing the preparation before removing impurities; When removing impurities, the main motor 502 can be turned on to drive the driving gear 503 to rotate. At this time, the driving gear 503 rotates accordingly and transmits power to the material distribution component 9 to assist in the material distribution operation. When the ginger powder honey is injected, the ginger powder honey guided out through the three-way valve 3 can enter the interior of the feed pipe 901, and is guided out through the distribution pipe 902, and the discharging is completed through the diffusion nozzle 903. At this time, the rotation of the driven gear ring 504 can drive the feed pipe 901 to rotate synchronously, and the distribution pipe 902 at the bottom end rotates accordingly, and drives the diffusion nozzle 903 to rotate circumferentially relative to the conical screening tank 7. At this time, the ginger powder honey can be evenly distributed to various parts of the conical screening tank 7, and is screened and removed by the conical screening tank 7. The screened ginger powder honey can enter the interior of the processing tank 1, and is guided out through the discharge port 12 at the bottom to complete the discharge process; At the same time, during the screening process of ginger powder honey, due to the rotation of the feed pipe 901, the fixed sleeve 101 can be driven to rotate synchronously. When the fixed sleeve 101 rotates, the extension frame 102 can be driven to rotate circumferentially synchronously, and finally the scraper 103 can be driven to rotate relative to the conical screening tank 7. At this time, the scraper 103 can rub the inner side of the conical screening tank 7, and complete the active cleaning process of the inner side of the conical screening tank 7 through friction. After the impurity removal is completed, clean water can be injected into the inside of the three-way valve 3. At this time, the clean water can enter the inside of the conical screening tank 7 through the material distribution assembly 9 to complete the active cleaning. At the same time, the clean water can be exported from the side of the three-way valve 3 and enter the inside of the temporary storage pipe 113 through the feeding pipe 4. At this time, a thrust can be applied to the piston plate 114, and the limiting spring 116 is compressed accordingly, driving the piston rod 115 and the plug 111 to rise. When the plug 111 rises, the impurity removal port 8 is no longer sealed, and the channel of the impurity removal port 8 is opened, and the impurities are exported through the impurity removal port 8, completing the automatic impurity removal process.

[0045] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An impurity removal device for ginger powder honey production, comprising a processing tank (1), a base (2) circumferentially installed at the bottom end of the processing tank (1), and discharge ports (12) opened on both sides of the bottom end of the processing tank (1), characterized in that: A de-impurity tank (6) is installed inside the processing tank (1) via a locking frame. The bottom end of the de-impurity tank (6) is fixedly connected to a conical screening tank (7). The bottom end of the conical screening tank (7) is provided with a de-impurity port (8). The bottom end of the conical screening tank (7) is provided with a self-impurity discharge component (11) located below the de-impurity port (8). The bottom end of the self-impurity discharge component (11) passes through the bottom end of the processing tank (1). A material distribution component (9) is movably installed at the top end of the de-impurity tank (6). The material distribution component (9) is arranged relative to the de-impurity tank. The impurity tank (6) rotates, the outer side surface of the material distribution component (9) is installed with a self-cleaning component (10) located inside the conical screening tank (7), the top side of the processing tank (1) is installed with a power component (5), one side of the power component (5) and the material distribution component (9) are mutually sleeved, the top of the material distribution component (9) is fixedly connected to a three-way valve (3), one side of the three-way valve (3) is fixedly connected to a material delivery pipe (4), and the other end of the material delivery pipe (4) is connected to the bottom end of the self-impurity removal component (11); The material distribution component (9) evenly distributes the material to the conical screening tank (7), and is linked to the self-cleaning component (10) to complete the self-cleaning of the conical screening tank (7); the three-way valve (3) is used to distribute clean water to the inside of the conical screening tank (7) and the self-draining component (11), and the impurities are discharged through the self-draining component (11); When the three-way valve (3) is performing impurity removal, its top end is connected to an external material delivery pipe; when the three-way valve (3) is performing self-cleaning, its top end is connected to an external water delivery pipe.

2. The impurity removal device for ginger powder honey production according to claim 1, characterized in that: The power assembly (5) comprises a frame (501), the frame (501) being connected to the top of the processing tank (1), a main motor (502) being mounted on the bottom of the frame (501), a driving gear (503) being fixedly mounted on the output end of the main motor (502), a driven gear ring (504) being meshingly connected to one side of the driving gear (503), and the driven gear ring (504) being fixedly sleeved to the material distribution assembly (9).

3. The impurity removal device for ginger powder honey production according to claim 2, characterized in that: The material distribution assembly (9) comprises a feed pipe (901), the feed pipe (901) being movably connected to the impurity removal tank (6), the feed pipe (901) rotating relative to the impurity removal tank (6), the top end of the feed pipe (901) being connected to the bottom end of the three-way valve (3), and the outer side surface of the feed pipe (901) being fixedly sleeved between a portion located in the impurity removal tank (6) and a driven gear ring (504).

4. The impurity removal device for ginger powder honey production according to claim 3, characterized in that: The bottom end of the feed pipe (901) is fixedly connected to a distribution pipe (902), and the bottom end of the distribution pipe (902) is fixedly connected to a diffusion nozzle (903). The output end of the diffusion nozzle (903) is located on the inner side of the conical screening tank (7), and the inclination angle is adapted to the inclination angle of the conical screening tank (7).

5. The impurity removal device for producing ginger powder honey according to claim 4, characterized in that: When the feed pipe (901) rotates, it drives the diffusion nozzle (903) to rotate circumferentially relative to the conical screening tank (7) through the distribution pipe (902), and evenly distributes the material to the inner side of the conical screening tank (7).

6. The impurity removal device for ginger powder honey production according to claim 5, characterized in that: The self-cleaning component (10) includes a fixed sleeve (101), the fixed sleeve (101) is fixedly sleeved on the outer side of the material distribution pipe (902), an extension frame (102) is fixedly installed at the bottom end of the fixed sleeve (101), and a scraper (103) is fixedly installed at the bottom end of the extension frame (102).

7. The impurity removal device for ginger powder honey production according to claim 6, characterized in that: The inclination angle of the scraper (103) is adapted to the inclination angle of the conical screening tank (7), and the outer side of the scraper (103) is in contact with the inner side of the conical screening tank (7).

8. The impurity removal device for ginger powder honey production according to claim 7, characterized in that: The self-discharging impurity component (11) includes a locking frame (112), the bottom end of the locking frame (112) is connected to the bottom end of the conical screening tank (7), a temporary storage pipe (113) is fixedly sleeved inside the locking frame (112), and the bottom end of the temporary storage pipe (113) is communicated with the material conveying pipe (4).

9. The impurity removal device for ginger powder honey production according to claim 8, characterized in that: A piston plate (114) is movably sleeved inside the temporary storage pipe (113), a piston rod (115) is fixedly connected to the top end of the piston plate (114), the top end of the piston rod (115) penetrates through the top end of the temporary storage pipe (113) and is fixedly connected to a plug (111) located inside the impurity removal port (8), and a limiting spring (116) is movably sleeved on the outer side of the piston rod (115). The upper and lower ends of the limiting spring (116) are respectively connected to one end of the inner cavity of the temporary storage pipe (113) and one end of the piston plate (114).

10. The impurity removal device for ginger powder honey production according to claim 9, characterized in that: When the limiting spring (116) is in the initial state, the piston plate (114) and the plug (111) are located at the lowest point, and the plug (111) completely seals the impurity removal port (8).

Citation Information

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