A raw material storage device for tablet candy processing

By designing a storage device including a storage box, a driving mechanism, a discharge box and a scraping component, the sugar content is kept loose by using the high-frequency oscillation effect, and the agglomeration part is processed through automatic discharge and scraping components, the problem of difficulty in agglomeration and discharge of sugar powder in the raw material storage for tableting candy processing is solved, and the smooth discharge and continuous utilization of raw materials are achieved.

CN119460460BActive Publication Date: 2025-05-27GUANGDONG LUBAI FOOD CO LTD
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Patent Information

Application Number
CN202510058717.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2025-05-27
Estimated Expiration
2045-01-15

AI Technical Summary

Technical Problem

In the prior art, in the storage process of raw materials for tableting candy processing, it is difficult to effectively prevent the sugar from agglomerating, and once it agglomerates, the difficulty of ejecting raw materials increases, making it easy to cause clogging and jamming.

Method used

A storage device including a storage box, a driving mechanism, a discharge box and a scraping assembly is designed. The sugar remains loose by providing a high-frequency oscillation effect using a drive mechanism and a shock assembly. At the same time, the device can automatically achieve the purpose of discharge and fence, and re-form the agglomerated portion into powder form through the scraping assembly during the discharge process.

Benefits of technology

It effectively reduces the probability of sugar powdered sugar agglomeration during long-term storage, ensures that the raw materials can be discharged smoothly, avoids the problem of blockage and jams, and ensures the continuous utilization of raw materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a raw material storage device for tablet candy processing, which relates to the technical field of material storage. It includes a storage bin, a driving mechanism, a discharging bin, and a scraping component. A plurality of storage pallets are inserted into the interior of the storage bin, and the interior of the storage bin is divided into a plurality of independent storage cavities by the storage pallets. A plurality of sliding interlayers are provided on the side of the storage bin. The driving mechanism is screwed to one end of the storage bin, and a plurality of oscillating components are inserted at the end of the driving mechanism. The present invention can evenly spread the sugar raw materials on each storage layer inside the storage bin, and during the long-term storage process, with the help of the driving mechanism and the oscillating components to provide a high-frequency oscillation effect, so that the sugar always remains in a loose state, further reducing the probability of caking. Moreover, it can automatically achieve the purpose of discharging and enclosing. Even if a small amount of caking occurs subsequently, it can still ensure that all the raw materials can be discharged smoothly, and the caked part can be re-formed into powder.
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Description

Technical Field

[0001] The present invention relates to the technical field of material storage, and specifically to a raw material storage device for tablet candy processing. Background Art

[0002] ‌The main component of tablet candy is powdered sugar‌. Tablet candy is a mixture made from refined powdered sugar as the main body, adding fillers such as milk powder and spices, and binders such as starch syrup, dextrin, and gelatin, and formed by granulating and tableting. During the production process, the powdered sugar and syrup are mixed, fruit flavoring agents and pigments are added, and then granulated and compression molded. Powdered sugar has very strict requirements for temperature and humidity. The appropriate storage temperature should be controlled below 25°C, and the relative humidity should be maintained below 65% to prevent the powdered sugar from caking and oxidizing and deteriorating.

[0003] In the prior art, the equipment for storing raw materials for tablet candy processing only uses a large amount of desiccant materials to reduce humidity. However, even if the humidity is controlled within a low range, caking will still occur due to the pressure between the powdered sugars after a long storage time. Therefore, the existing moisture-proof storage technology has certain limitations. Moreover, once caking occurs, it will increase the difficulty of discharging the internal raw materials, and even cause problems such as clogging and jamming. Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the purpose of the present invention is to provide a raw material storage device for tablet candy processing to solve the problems raised in the above background art. The present invention can evenly spread the sugar raw materials on each storage layer inside the storage bin, and during the long-term storage process, with the help of the driving mechanism and the vibration component to provide a high-frequency vibration effect, so that the sugar always remains in a loose state, further reducing the probability of caking, and can automatically achieve the purpose of discharging and enclosing materials. Even if a small amount of caking occurs later, it can still ensure that all the raw materials can be discharged smoothly, and the small caking part can also be scraped and rubbed to reform into a powdery state.

[0005] In order to achieve the above-mentioned purpose, the present invention is realized through the following technical scheme: a raw material storage device for tablet candy processing, comprising a storage device body, the storage device body comprising a storage box, a driving mechanism, a discharge box and a scraper assembly, a plurality of storage trays are inserted inside the storage box, and the interior of the storage box is divided into a plurality of independent storage cavities by the storage trays, a plurality of sliding interlayers are provided on the side of the storage box, the driving mechanism is screwed to one end of the storage box, and a plurality of oscillation assemblies are inserted at the end of the driving mechanism, the number of the oscillation assemblies is the same as the number of the sliding interlayers, and each oscillation assembly passes through the corresponding sliding interlayer, the discharge box is welded to the end of the storage box, each layer of storage cavity inside the storage box is provided with a discharge notch, and the interior of the discharge box is connected to the interior of the storage box through the discharge notch, a scraper assembly is inserted at the end of the discharge box, one end of the storage tray is inserted with a blocking mechanism, and the end of the driving mechanism is pressed against the two end positions of the blocking mechanism after translation.

[0006] Furthermore, a plurality of diversion channels are installed at one end of the top of the material storage box, and a feeding port is connected to the top of the diversion channel. A guide ramp is integrally formed at one end of each of the material storage trays, and the diversion channels pass through the surface of the guide ramp, and each diversion channel is respectively communicated with a cavity on one of the material storage trays.

[0007] Furthermore, a rotating shaft is welded to one end of the bottom of the storage box, a bottom plate is placed at the bottom of the storage box, a rotating base is welded to one end of the bottom plate, a hydraulic rod is screwed to the other end of the bottom plate surface, and both ends of the rotating shaft are inserted into the inner side of the rotating base.

[0008] Furthermore, the driving mechanism includes an electric telescopic rod and a push plate, an extension plate is welded to one end of the storage box, a fixed plate is integrally formed on the side of the push plate, one end of the electric telescopic rod is screwed to the surface of the extension plate, and the other end of the electric telescopic rod is screwed to the surface of the fixed plate.

[0009] Furthermore, the driving mechanism is symmetrically installed on both sides of the storage box, each push plate is in contact with the surface of the storage box, and both ends of each oscillation component are welded to the inner area of ​​the two push plates, and the oscillation component includes a sliding rod, a roller and a fixed cam.

[0010] Furthermore, the roller sleeve is arranged on the surface of the sliding rod, and the fixed cam is integrally formed on the sliding rod, the bottom of the material storage tray is integrally formed with a convex strip, the top end of the fixed cam is used to lean against the bottom of the material storage tray and the convex strip, and the material storage tray is made of elastic metal material as a whole.

[0011] Further, the enclosure mechanism includes a flip plate and extension columns. The two ends of the bottom of the flip plate are inserted into the inner wall of the storage bin, and the bottom end of the flip plate abuts against the end of the storage support plate. An arc-shaped groove is formed on the outer side of the storage bin, and the extension columns are welded to both ends of the flip plate.

[0012] Further, the extension columns penetrate outwards from the inside of the arc-shaped groove. A return spring is welded to one side of the flip plate, and the bottom end of the return spring is welded to the surface of the storage support plate. A sealing baffle is welded to the side of the extension plate. The sealing baffle is used to abut against the inner side of the arc-shaped groove, and the sealing baffle fits against the inner wall of the storage bin.

[0013] Further, a plurality of discharge interlayers are formed inside the discharge bin, and adjacent discharge interlayers are separated by partition plates. The end of the discharge bin is communicated with a converging channel, and the end of the converging channel is connected with a discharge port. The scraping assembly is inserted at the connection of the converging channel and the discharge port. The scraping assembly includes a motor and a scraping sleeve.

[0014] Further, a driving shaft is inserted at the output end of the motor, the scraping sleeve is sleeved on the surface of the driving shaft, and scraping strips and sealing ridges are attached to the side of the scraping sleeve. The scraping strips are used to push the raw materials inside the converging channel towards the position of the discharge port.

[0015] Advantages of the present invention:

[0016] 1. The raw material storage device for processing pressed candies can evenly spread the sugar raw materials on each storage layer inside the storage bin, and during the long-term storage process, with the help of the driving mechanism and the vibration assembly to provide a high-frequency vibration effect, so that the sugar always remains in a loose state, further reducing the probability of caking.

[0017] 2. The raw material storage device for processing pressed candies can keep the discharge notch part in an enclosed state during storage, ensuring that the raw materials can be restricted and stored inside the storage bin. During subsequent discharging, by controlling one end of the storage bin to tilt up and fully extending the driving mechanism, the enclosure mechanism part at the end can be unfolded, thus automatically realizing the purposes of discharging and enclosing. And during this process, the driving mechanism can still provide a vibration effect on the storage support plate to accelerate the discharge of materials.

[0018] 3. The raw material storage device for processing pressed candies is equipped with a scraping assembly at the end of the discharge bin. Therefore, even if a small amount of caking occurs inside the storage bin, with the assistance of the vibration assembly and the tilting treatment of the storage bin, all raw materials can still be smoothly discharged. And during the discharging process, the caking part is scraped and rubbed by the scraping assembly to make it re-form into powder, so that all the finally discharged raw materials can be directly utilized. Description of the Drawings

[0019] Figure 1 This is a schematic structural diagram of the outer shape of a raw material storage device for processing pressed candies according to the present invention;

[0020] Figure 2 This is a sectional view of the top of the storage bin of the present invention;

[0021] Figure 3 This is a schematic structural diagram of the driving mechanism part of the present invention;

[0022] Figure 4 It is Figure 2 an enlarged view of area A in

[0023] Figure 5 This is a schematic structural diagram of the vibration component part of the present invention;

[0024] Figure 6 This is a sectional view of the discharge bin part of the present invention;

[0025] Figure 7 This is a schematic structural diagram of the scraping component part of the present invention;

[0026] In the figure: 1, storage bin; 2, bottom plate; 3, feeding port; 4, diversion channel; 5, driving mechanism; 6, enclosure mechanism; 7, discharge bin; 8, scraping component; 9, hydraulic rod; 10, rotating base; 11, guiding inclined plate; 12, storage support plate; 13, discharge notch; 14, sliding interlayer; 15, extension plate; 16, electric telescopic rod; 17, push plate; 18, vibration component; 19, sliding rod; 20, roller; 21, fixed cam; 22, convex strip; 23, flipping plate; 24, extension column; 25, arc groove; 26, discharge interlayer; 27, partition board; 28, collecting channel; 29, discharge port; 30, motor; 31, driving shaft; 32, scraping sleeve; 33, scraping strip; 34, sealing convex strip; 35, fixing plate; 36, rotating shaft; 37, return spring; 38, blocking baffle. Detailed implementation manners

[0027] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.

[0028] Please refer to Figures 1 to 7The present invention provides the following technical solutions: a raw material storage device for tablet candy processing, comprising a storage device body, the storage device body comprising a storage box 1, a drive mechanism 5, a discharge box 7 and a scraper assembly 8, a plurality of storage support plates 12 are inserted into the interior of the storage box 1, and the interior of the storage box 1 is divided into a plurality of independent storage cavities by the storage support plates 12, a plurality of sliding interlayers 14 are opened on the side of the storage box 1, the drive mechanism 5 is screwed to one end of the storage box 1, and a plurality of oscillating assemblies 18 are inserted into the end of the drive mechanism 5, and the oscillating The number of components 18 is the same as the number of sliding interlayers 14, and each oscillating component 18 passes through the corresponding sliding interlayer 14. The discharge box 7 is welded to the end of the storage box 1. The storage cavity of each layer inside the storage box 1 is provided with a discharge notch 13, and the interior of the discharge box 7 is connected to the interior of the storage box 1 through the discharge notch 13. The end of the discharge box 7 is plugged with a scraper component 8, and one end of the storage support plate 12 is plugged with a containment mechanism 6. The end of the driving mechanism 5 is abutted against the two end positions of the containment mechanism 6 after translation. The raw material storage device for tablet candy processing is used for storing sugar powder raw materials and the subsequent process of taking and discharging.

[0029] When the present invention is used, the powdered sugar raw materials for tablet candy processing that need to be stored are put into the interior of the storage box 1 from the feeding port 3, and when putting them in, the guide inclined plate 11 on the inner side of the storage box 1 will make the powdered sugar raw materials evenly fall into each independent storage cavity inside the storage box 1, and then the driving mechanism 5 is started, and the driving mechanism 5 controls the oscillation component 18 to perform translational movement along the sliding interlayer 14 inside the storage box 1, so that the storage tray 12 can be partially oscillated during the translational movement, and the fallen materials can be spread on the surface of each storage tray 12 by means of the oscillation effect, and can be stored for a long time, and the driving mechanism 5 is regularly opened to provide the oscillation effect so that the materials in each layer can be loosened, and when discharge is required, the driving mechanism 5 is controlled to be fully extended, the enclosure mechanism 6 is opened, and the storage box 1 is controlled to be tilted, so that the raw materials inside the storage box 1 can be discharged in conjunction with the scraping component 8.

[0030] In this embodiment, a plurality of diversion channels 4 are inserted at one end of the top of the storage bin 1. The top of the diversion channel 4 is connected to a feeding port 3. One end of each storage pallet 12 is integrally formed with a guiding inclined plate 11. The diversion channel 4 passes through the surface of the guiding inclined plate 11, and each diversion channel 4 is respectively communicated with the cavity on one of the storage pallets 12. One end of the bottom of the storage bin 1 is welded with a rotating shaft 36. A bottom plate 2 is placed at the bottom of the storage bin 1. One end of the bottom plate 2 is welded with a rotating base 10. The other end of the surface of the bottom plate 2 is screwed with a hydraulic rod 9. Both ends of the rotating shaft 36 are inserted into the inner side of the rotating base 10. It can evenly spread the sugar raw materials on each storage layer inside the storage bin 1, and during the long-term storage process, with the help of the driving mechanism 5 and the vibration assembly 18 to provide a high-frequency vibration effect, so that the sugar always remains in a loose state, further reducing the probability of caking.

[0031] Specifically, since the feeding port 3 part can directly and equally transport the fed raw materials to each storage cavity through a plurality of diversion mechanisms, it is possible to make the subsequent vibration assembly 18 cooperate with the storage pallet 12 to provide an equivalent vibration effect on the equal amount of materials, avoiding the problem that the materials are concentrated during the process, resulting in an increase in pressure and an increase in the probability of caking. The bottom of the storage bin 1 is supported and rotated by a rotating shaft 36 at one end. After the hydraulic rod 9 at the other end lifts the entire storage bin 1 upward, the entire storage bin 1 can be tilted and lifted towards one end. At this time, the driving mechanism 5 and the vibration assembly 18 can assist the internal materials to be discharged.

[0032] In this embodiment, the driving mechanism 5 includes an electric telescopic rod 16 and a push plate 17. An extension plate 15 is welded at one end of the storage bin 1. A fixing plate 35 is integrally formed on the side of the push plate 17. One end of the electric telescopic rod 16 is screwed on the surface of the extension plate 15, and the other end of the electric telescopic rod 16 is screwed on the surface of the fixing plate 35. The driving mechanism 5 is installed on both sides of the storage bin 1 in a symmetrical form. Each push plate 17 is attached to the surface of the storage bin 1, and both ends of each vibration assembly 18 are welded in the inner area of the two push plates 17. The vibration assembly 18 includes a sliding rod 19, a roller 20 and a fixed cam 21. The roller 20 is sleeved on the surface of the sliding rod 19, and the fixed cam 21 is integrally formed on the sliding rod 19. A convex strip 22 is integrally formed at the bottom of the storage pallet 12. The top of the fixed cam 21 is used to abut against the bottom of the storage pallet 12 and the convex strip 22. The storage pallet 12 is made of elastic metal material.

[0033] Specifically, after the electric telescopic rod 16 is controlled to extend, the push plate 17 at the end can be pushed, and the entire oscillation assembly 18 can be directly pulled to move along the inside of the sliding interlayer 14 by means of the push plate 17, so as to achieve an oscillation effect on part of the material storage tray 12, and the electric telescopic rod 16 is controlled to repeatedly perform telescopic movements, so as to provide a continuous oscillation function in the process, and the bottom roller 20 is pressed on the bottom of the sliding interlayer 14, and only slides along the bottom of the material storage tray 12 through the high point position of the fixed cam 21. Therefore, after the top of the fixed cam 21 contacts the convex strip 22, an oscillation effect on part of the material storage tray 12 can be formed, and the entire material storage tray 12 is made of a relatively thin metal material.

[0034] In this embodiment, the enclosure mechanism 6 includes a flip plate 23 and an extension column 24. The two ends of the bottom of the flip plate 23 are inserted on the inner wall of the material storage box 1, and the bottom end of the flip plate 23 is in contact with the end of the material storage support plate 12. The outer side of the material storage box 1 is provided with an arc groove 25, and the extension column 24 is welded to the two ends of the flip plate 23. The extension column 24 passes outward from the inside of the arc groove 25, a reset spring 37 is welded on one side of the flip plate 23, and the bottom end of the reset spring 37 is welded on the surface of the material storage support plate 12. The side of the extension plate 15 is welded with a blocking baffle 38, and the blocking baffle 38 is used to abut against the inner side of the arc groove 25, and the blocking baffle 38 is in contact with the inner wall of the material storage box 1. During the storage process, the discharge gap 13 can be partially kept in an enclosure state to ensure that the raw materials can be stored in the storage box 1 within a limited manner. During the subsequent discharge, one end of the storage box 1 is controlled to tilt up, and the enclosure mechanism 6 at the end can be partially unfolded by fully extending the driving mechanism 5, thereby automatically achieving the purpose of discharge and enclosure. In the process, the driving mechanism 5 can still be used to provide a shaking effect to the storage tray 12 to accelerate the discharge of the material.

[0035] Specifically, when the material inside the storage box 1 needs to be discharged, the electric telescopic rod 16 is extended to the longest position, the support plate can be pressed against the side of the extension column 24, and the extension column 24 can be rotated along the arc groove 25. This process can rotate the flip plate 23 toward the rear end, thereby releasing the blocking effect on the raw materials on the storage support plate 12. At the same time, the arc groove 25 can also be partially closed from the inside with the help of the blocking baffle 38. At this time, the storage box 1 as a whole has formed an inclined state, and the raw materials inside the storage box 1 can be directly moved over the flip plate 23 after the flipping, toward the position of the discharge notch 13, and finally enter the interior of the discharge box 7.

[0036] In this embodiment, a plurality of discharge interlayers 26 are formed inside the discharge box 7, and adjacent discharge interlayers 26 are separated by partition plates 27. The end of the discharge box 7 is communicated with a collection channel 28, and the end of the collection channel 28 is connected to a discharge port 29. The scraping assembly 8 is inserted at the connection of the collection channel 28 and the discharge port 29. The scraping assembly 8 includes a motor 30 and a scraping sleeve 32. The output end of the motor 30 is inserted with a driving shaft 31, and the scraping sleeve 32 is sleeved on the surface of the driving shaft 31. A scraping strip 33 and a sealing rib 34 are attached to the side of the scraping sleeve 32. The scraping strip 33 is used to push the raw materials inside the collection channel 28 towards the discharge port 29. A scraping assembly 8 is installed at the end of the discharge box 7. Therefore, even if a small amount of caking occurs inside the storage box 1, all the raw materials can still be smoothly discharged with the assistance of the vibration assembly and the tilting treatment of the storage box 1. During the discharging process, the caking part is scraped and rubbed by the scraping assembly 8 to form powder again, so that the finally discharged raw materials can be directly utilized.

[0037] Specifically, after the raw materials move from the inside of the discharge box 7 to the inside of the discharge interlayer 26 and then are concentrated in the collection channel 28, the motor 30 is started at this time. The driving shaft 31 drives the scraping sleeve 32 to rotate, and then the raw materials filled inside the collection channel 28 can be scraped by the scraping strip 33 on the surface and pushed towards the discharge port 29 for discharge. Even if there is a caking part, the caking part can be squeezed and scraped under the effect of the scraping strip 33 scraping layer by layer, so that the caking part is loosened again.

[0038] The above shows and describes the basic principles, main features and advantages of the present invention. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic features of the present invention.

[0039] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard 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 raw material storage device for tablet candy processing, comprising a storage device body, characterized in that: The storage device body comprises a material storage box (1), a driving mechanism (5), a material discharge box (7) and a material scraping assembly (8); a plurality of material storage support plates (12) are inserted into the interior of the material storage box (1), and the interior of the material storage box (1) is divided into a plurality of independent storage cavities by the material storage support plates (12); a plurality of sliding interlayers (14) are provided on the side of the material storage box (1); the driving mechanism (5) is screwed to one end of the material storage box (1), and a plurality of oscillating assemblies (18) are inserted into the end of the driving mechanism (5); the number of the oscillating assemblies (18) is the same as the number of the sliding interlayers (14), and each oscillating assembly (18) The material discharging box (7) is welded to the end of the material storage box (1), and a discharging notch (13) is provided at one end of the storage cavity of each layer inside the material storage box (1), and the interior of the material discharging box (7) is connected to the interior of the material storage box (1) through the discharging notch (13). A scraper assembly (8) is inserted at the end of the material discharging box (7), and a retaining mechanism (6) is inserted at one end of the material storage support plate (12). The end of the driving mechanism (5) is pressed against the two end positions of the retaining mechanism (6) after translation. A rotating shaft (36) is welded at one end of the bottom of the material storage box (1). A bottom plate (2) is placed at the bottom of (1), a rotating base (10) is welded to one end of the bottom plate (2), a hydraulic rod (9) is screwed to the other end of the surface of the bottom plate (2), both ends of the rotating shaft (36) are inserted into the inner side of the rotating base (10), the driving mechanism (5) includes an electric telescopic rod (16) and a push plate (17), an extension plate (15) is welded to one end of the storage box (1), a fixed plate (35) is integrally formed on the side of the push plate (17), one end of the electric telescopic rod (16) is screwed to the surface of the extension plate (15), and the other end of the electric telescopic rod (16) is screwed to the fixed plate (35). ), the oscillating assembly (18) comprises a sliding rod (19), a roller (20) and a fixed cam (21), the roller (20) is sleeved on the surface of the sliding rod (19), and the fixed cam (21) is integrally formed on the sliding rod (19), the bottom of the material storage support plate (12) is integrally formed with a convex strip (22), the enclosure mechanism (6) comprises a flip plate (23) and an extension column (24), and the side of the scraper sleeve (32) is attached with a scraper strip (33) and a sealing convex strip (34), and the scraper strip (33) is used to push the raw material inside the collecting channel (28) toward the position of the discharge port (29).

2. A raw material storage device for tablet candy processing according to claim 1, characterized in that: A plurality of flow diversion channels (4) are inserted at one end of the top of the material storage box (1), the top of the flow diversion channel (4) is connected to a feeding port (3), one end of each material storage support plate (12) is integrally formed with a guide inclined plate (11), the flow diversion channel (4) passes through the surface of the guide inclined plate (11), and each flow diversion channel (4) is respectively connected to a cavity on one of the material storage support plates (12).

3. A raw material storage device for tablet candy processing according to claim 1, characterized in that: The driving mechanism (5) is symmetrically mounted on both sides of the material storage box (1), each push plate (17) is in contact with the surface of the material storage box (1), and both ends of each oscillating assembly (18) are welded to the inner side areas of the two push plates (17).

4. A raw material storage device for tablet candy processing according to claim 3, characterized in that: The top end of the fixed cam (21) is used to abut against the bottom of the material storage support plate (12) and the convex strip (22), and the material storage support plate (12) is made of elastic metal material as a whole.

5. A raw material storage device for tablet candy processing according to claim 1, characterized in that: The two ends of the bottom of the flip plate (23) are inserted into the inner wall of the material storage box (1), and the bottom end of the flip plate (23) is in contact with the end of the material storage support plate (12). The outer side of the material storage box (1) is provided with an arc groove (25), and the extension column (24) is welded to the two ends of the flip plate (23).

6. A raw material storage device for tablet candy processing according to claim 5, characterized in that: A plurality of discharge interlayers (26) are provided inside the discharge box (7), and adjacent discharge interlayers (26) are separated by partitions (27). The end of the discharge box (7) is connected to a collecting channel (28), and the end of the collecting channel (28) is connected to a discharge port (29). A scraper assembly (8) is inserted at the connection between the collecting channel (28) and the discharge port (29), and the scraper assembly (8) comprises a motor (30) and a scraper sleeve (32).

7. A raw material storage device for tablet candy processing according to claim 6, characterized in that: A drive shaft (31) is inserted into the output end of the motor (30), and a scraper sleeve (32) is sleeved on the surface of the drive shaft (31).

Citation Information

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