A powder dehumidification device for seasoning production and processing

By introducing an automated powder removal structure into the dehumidification device, the problems of reduced air intake and poor drying effect caused by powder residue are solved, and the effects of automatic cleaning and efficient powder recovery are achieved.

CN116329145BActive Publication Date: 2025-10-03QINGDAO RUIKELAI CATERING INGREDIENTS CO LTD
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Patent Information

Application Number
CN202310226915.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-10
Publication Date
2025-10-03
Estimated Expiration
2043-03-10

AI Technical Summary

Technical Problem

During the seasoning production process, powdered seasonings remain at the air inlet, resulting in reduced air volume and poor drying effect. Manual cleaning is time-consuming and easy to forget.

Method used

A powder dehumidification device was designed, which included a dehumidification host and a powder removal structure. The powder removal system composed of a lifting drive part, a horizontal push part, a clamping structure and a scraper structure was used to automatically clean the powder on the air inlet and collect it in a collection tank.

Benefits of technology

It realizes automatic cleaning of powder at the air inlet, avoids powder scattering, improves dehumidification efficiency, reduces the frequency and time of manual cleaning, and facilitates powder recovery.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a powder dehumidification device for seasoning production and processing, which includes a dehumidification main unit and a powder removal structure. The dehumidification main unit includes a shell, and the shell has an air inlet, a water outlet pipe and a collection tank. The lifting structure enables the scraper structure to move up and down repeatedly along the outer wall surface of the air inlet, thereby scraping off the powder remaining on the air inlet; in addition, in the process of removing the powder, the powder will automatically fall into the collection tank at the lower position, and the collection tank can not only be used to collect the moisture in the water outlet pipe. Furthermore, when the scraper completes scraping or has been used for a certain period of time, its surface needs to be cleaned, or the residual powder on the scraper structure needs to be removed. At this time, the scraper structure can be moved downward and enter the collection tank. Through repeated movement, the scraper structure cleans the powder in the collection tank.
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Description

Technical Field

[0001] The invention relates to a condiment production technology, in particular to a powder dehumidification device used for condiment production. Background Art

[0002] In daily life, we need to use condiments. The state of condiments can be liquid, paste or powder. For powdered condiments, in order to keep them dry during the production and processing, air dehumidification is required.

[0003] Dehumidifiers are usually used for air dehumidification, that is, dehumidifiers are used to dry the air in the seasoning production workshop. The dehumidifier usually includes a shell structure with an air inlet. The air inlet is used to suck the humid air in the workshop into the main unit. After treatment, the moisture is condensed into water, and then the water is discharged through the outlet pipe on the shell for collection, and the dried air is discharged back into the workshop through the air outlet on the shell.

[0004] However, such a structure usually has certain problems, that is, powder will inevitably remain at the air inlet, that is, the powder seasoning dispersed in the workshop will remain on the outer surface of the air inlet when passing through the air inlet. This situation will continue to occur, which will not only cause the air intake of the air inlet to decrease, but also make the drying effect poor. Therefore, the air inlet needs to be manually cleaned, which is not only time-consuming but also easy to forget to clean. Summary of the Invention

[0005] In order to solve the problems existing in the above-mentioned technology, the present invention provides a technology for automatically cleaning the powder at the air inlet position.

[0006] The present invention provides a powder dehumidification device for seasoning production and processing, which includes a dehumidification main unit and a powder removal structure, the dehumidification main unit includes a shell, the shell has an air inlet, a water outlet pipe and a collection tank, the water outlet pipe is located at the lower side of the air inlet, and the collection tank is located at the lower side of the water outlet pipe; the powder removal structure is located on the rear side of the shell, and the powder removal structure has a lifting drive member, a horizontal pushing member, a closing structure and a scraper structure connected in sequence, the lifting drive member is used to drive the horizontal pushing member to perform a lifting movement to realize the scraper structure to perform a scraping action along the vertically arranged air inlet, the horizontal pushing member is used to drive the closing structure to perform a horizontal movement to make the scraper structure close to the air inlet or bypass the water outlet pipe, and the closing structure is used to drive the scraper structure to close and fit the air inlet.

[0007] The beneficial effects of the above scheme are as follows: the lifting structure enables the scraper structure to move up and down repeatedly along the outer wall surface of the air inlet, thereby scraping off the powder remaining on the air inlet; in addition, in the process of removing the powder, the powder will automatically fall into the collection tank at the lower position, and the collection tank can not only be used to collect the water from the outlet pipe, but also to collect the powder scraped by the scraper structure, and also prevent the scraped powder from being scattered on the ground. Furthermore, when the scraper finishes scraping or has been used for a certain period of time, its surface needs to be cleaned, or the residual powder on the scraper structure needs to be removed. At this time, the scraper structure can be moved downward and into the collection tank. By repeatedly moving, the scraper structure cleans the powder in the collection tank. This not only achieves the purpose of rinsing, but also allows the collected powder to be in the collection tank, which is convenient for subsequent further recycling and processing.

[0008] Preferably, the lifting drive component includes a lifting cylinder and a lifting plate, the horizontal pushing component is fixedly arranged on the lifting plate, the horizontal pushing component is a horizontal pushing cylinder, the telescopic rod of the horizontal pushing cylinder is connected to the sliding plate, the outer side of the sliding plate is fixedly provided with a close-fitting structure, the sliding plate is connected to the horizontal slide, and the horizontal slide is slidably connected to the bottom of the lifting plate.

[0009] The lifting cylinder may also be other existing lifting structures such as an electric telescopic rod, and the function of the horizontal pushing member is to move the scraper structure outward to avoid touching the water outlet pipe below when descending.

[0010] Preferably, the clamping structure includes a clamping cylinder, the telescopic rod of the clamping cylinder is hinged on the first U-shaped plate, the first U-shaped plate is connected to the linkage rod, the linkage rod is connected to the linkage shaft of the second U-shaped plate, the linkage shaft can rotate relative to the second U-shaped plate, and a flip block is provided on the linkage shaft, and the flip block is connected to the scraper structure.

[0011] The flipping structure provided here allows the scraper to flip upward or flip downward. When flipped upward, it can better fit the outer wall of the air inlet. In addition, when flipped downward, the scraper structure can better enter the collection tank and then perform the washing action.

[0012] In the powder dehumidification device for seasoning production and processing of the present invention, the contact structure drives the scraper structure close to the air inlet, and the lifting drive member drives the horizontal pushing member and the scraper structure, so that the scraper structure performs a scraping action along the vertically arranged air inlet, so that the powder seasoning remaining on the surface of the air inlet is scraped off and falls off, and the fallen powder seasoning automatically falls into the collection tank below; in addition, after the dehumidification main unit completes dehumidification, moisture is generated, and the moisture flows out from the water outlet pipe into the collection tank below;

[0013] Furthermore, when it is necessary to clean the residual powder on the scraper structure, the scraper structure is made to bypass the water outlet pipe through the horizontal pushing member, and then the lifting structure drives the scraper structure to the collection tank below, and the scraper structure is repeatedly lifted and rinsed under the liquid in the collection tank to remove the powder on the surface of the scraper structure.

[0014] The powder dehumidification device for seasoning production and processing of the present invention drives the lifting plate to move up and down through the lifting cylinder, thereby causing the horizontal pushing member and the scraper structure to move up and down, and the telescopic movement of the horizontal pushing cylinder causes the sliding plate and the horizontal slide plate to slide horizontally, thereby causing the horizontal slide plate to move horizontally along the bottom of the lifting plate.

[0015] In the powder dehumidification device for seasoning production and processing of the present invention, the telescopic rod close to the cylinder moves, thereby causing the first U-shaped plate to move, and the first U-shaped plate drives the linkage rod to move, and the linkage rod drives the second U-shaped plate to move, thereby causing the flip block and the scraper structure to approach the air inlet or move away from it. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the powder dehumidification device used for seasoning production and processing of the present invention;

[0017] Figure 2 yes Figure 1 Schematic diagram of the enlarged structure of area A in the middle;

[0018] Figure 3 It is a front structural schematic diagram of a powder dehumidification device for seasoning production and processing according to the present invention;

[0019] Figure 4 It is a left-side structural schematic diagram of a powder dehumidification device for seasoning production and processing according to the present invention;

[0020] Figure 5 It is a schematic diagram of the three-dimensional structure of the powder removal structure of the powder dehumidification device used for seasoning production and processing of the present invention.

[0021] Description of Reference Numerals

[0022] 10. Dehumidification main unit; 11. Housing; 12. Air inlet; 13. Water outlet pipe; 14. Collection tank; 20. Powder removal structure; 21. Lifting drive member; 22. Lifting cylinder; 23. Lifting plate; 24. Horizontal pushing member; 25. Clamping structure; 26. Scraper structure; 27. Sliding plate; 28. Flipping block; 28. First U-shaped plate; 29. ​​Linkage rod; 30. Second U-shaped plate; 31. Horizontal slide plate; 32. Linkage shaft rod. Implementation Method

[0023] First embodiment:

[0024] like Figures 1 to 5 As shown, the present embodiment provides a powder dehumidification device for seasoning production and processing, which includes a dehumidification host 10 and a powder removal structure 20. The dehumidification host 10 includes a shell 11, and the shell 11 has an air inlet 12, a water outlet pipe 13 and a collection tank 14. The water outlet pipe 13 is located at the lower side of the air inlet 12, and the collection tank 14 is located at the lower side of the water outlet pipe 13; the powder removal structure 20 is located at the rear side of the shell 11, and the powder removal structure 20 has a lifting drive connected in sequence. Part 21, horizontal pushing part 24, close structure 25 and scraper structure 26, the lifting driving part 21 is used to drive the horizontal pushing part 24 to perform lifting movement so that the scraper structure 26 can scrape along the vertically arranged air inlet 12, the horizontal pushing part 24 is used to drive the close structure 25 to perform horizontal movement so that the scraper structure 26 is close to the air inlet 12 or bypasses the water outlet pipe 13, and the close structure 25 is used to drive the scraper structure 26 to be close to the air inlet 12.

[0025] In the powder dehumidification device for seasoning production and processing of the present invention, the contact structure 25 drives the scraper structure 26 close to the air inlet 12, and the lifting drive member 21 drives the horizontal pushing member 24 and the scraper structure 26, so that the scraper structure 26 performs a scraping action along the vertically arranged air inlet 12, so that the powder seasoning remaining on the surface of the air inlet 12 is scraped off and falls off. The fallen powder seasoning automatically falls into the collection tank 14 below. In addition, after the dehumidification host 10 completes dehumidification, moisture is generated, and the moisture flows out from the water outlet pipe 13 into the collection tank 14 below.

[0026] Furthermore, when it is necessary to clean the residual powder on the scraper structure 26, the scraper structure 26 is made to bypass the water outlet pipe 13 through the horizontal pushing member 24, and then the lifting structure drives the scraper structure 26 to the collection tank 14 below, and the scraper structure 26 is repeatedly lifted and rinsed under the liquid in the collection tank 14 to remove the powder on the surface of the scraper structure 26.

[0027] The lifting structure enables the scraper structure to move up and down repeatedly along the outer wall surface of the air inlet, thereby scraping off the powder remaining on the air inlet; in addition, in the process of removing the powder, the powder will automatically fall into the collection tank at the lower position, and the collection tank can not only be used to collect the water from the outlet pipe, but also to collect the powder scraped by the scraper structure, and also prevent the scraped powder from being scattered on the ground. Furthermore, when the scraper finishes scraping or has been used for a certain period of time, its surface needs to be cleaned, or the residual powder on the scraper structure needs to be removed. At this time, the scraper structure can be moved downward and into the collection tank. Through repeated movement, the scraper structure cleans the powder in the collection tank. This not only achieves the purpose of washing, but also allows the collected powder to be in the collection tank, which is also convenient for subsequent further recycling and processing.

[0028] Second embodiment:

[0029] The lifting drive member 21 includes a lifting cylinder 22 and a lifting plate 23. The horizontal pushing member 24 is fixedly arranged on the lifting plate 23. The horizontal pushing member 24 is a horizontal pushing cylinder. The telescopic rod of the horizontal pushing cylinder is connected to the sliding plate 27. The outer side of the sliding plate 27 is fixedly provided with a close structure 25. The sliding plate 27 is connected to the horizontal slide 31. The horizontal slide 31 is slidably connected to the bottom of the lifting plate 23.

[0030] The powder dehumidification device for seasoning production and processing of the present invention drives the lifting plate 23 to move up and down by the lifting cylinder 22, so that the horizontal pushing member 24 and the scraper structure 26 can move up and down, and the telescopic movement of the horizontal pushing cylinder causes the sliding plate 27 and the horizontal slide plate 31 to slide horizontally, thereby causing the horizontal slide plate 31 to move horizontally along the bottom of the lifting plate 23.

[0031] Third embodiment:

[0032] The clamping structure 25 includes a clamping cylinder 250, the telescopic rod of the clamping cylinder 250 is hinged on the first U-shaped plate 28, the first U-shaped plate 28 is connected to the linkage rod 29, the linkage rod 29 is connected to the linkage shaft 32 of the second U-shaped plate 30, the linkage shaft 32 can rotate relative to the second U-shaped plate 30, and a flip block 28 is provided on the linkage shaft 32, and the flip block 28 is connected to the scraper structure 26.

[0033] In the powder dehumidification device for seasoning production and processing of the present invention, the telescopic rod close to the cylinder moves, thereby causing the first U-shaped plate 28 to move, and the first U-shaped plate 28 drives the linkage rod 29 to move, and the linkage rod 29 drives the second U-shaped plate 30 to move, thereby causing the flip block 28 and the scraper structure 26 to approach the air inlet 12 or move away.

[0034] The flipping structure provided here allows the scraper to flip upward or flip downward. When flipped upward, it can better fit the outer wall of the air inlet. In addition, when flipped downward, the scraper structure can better enter the collection tank and then perform the washing action.

[0035] In other embodiments, the water outlet pipe is an elastic structure, and the scraper structure does not need to move horizontally when moving downward, that is, there is no need to provide a horizontal pusher. In this case, the scraper structure can directly contact the scraper structure when moving downward and then continue to move downward. That is, the elastic structure of the water outlet pipe can elastically contact and then automatically reset. In addition, the contact of the elastic structure of the water outlet pipe can better shake off the residual powder on the scraper structure. In addition, the scraper structure can be repeatedly raised and lowered to repeatedly contact the elastic structure of the water outlet pipe, thereby allowing the powder to fall off more effectively. Alternatively, the water outlet pipes can be arranged in a row, and this row of structures are all elastic structures. Multiple water outlet pipes in a row are used for water discharge, but the coverage area of ​​the multiple water outlet pipes is increased. In this way, when the water outlet pipes contact the scraper structure, the scraper structure can form a better contact and shake-off effect, thereby better removing residual powder.

Claims

1. A powder dehumidification device for seasoning production and processing, characterized in that: The dehumidifier comprises a main body and a powder removal structure, the main body comprising a shell, the shell having an air inlet, a water outlet pipe and a collection tank, the water outlet pipe is located at the lower side of the air inlet, and the collection tank is located at the lower side of the water outlet pipe; the powder removal structure is located at the rear side of the shell, and the powder removal structure comprises a lifting drive member, a horizontal pushing member, a close-fitting structure and a scraper structure connected in sequence, the lifting drive member is used to drive the horizontal pushing member to perform a lifting movement to realize the scraper structure to perform a scraping action along the vertically arranged air inlet, the horizontal pushing member is used to drive the close-fitting structure to perform a horizontal movement so that the scraper structure approaches the air inlet or bypasses the water outlet pipe, and the close-fitting structure is used to drive the scraper structure to approach and fit the air inlet; When the residual powder on the scraper structure needs to be cleaned, the scraper structure is made to bypass the water outlet pipe through the horizontal pushing member, and then the lifting structure drives the scraper structure to the collection tank below, and the scraper structure is repeatedly lifted and rinsed under the liquid in the collection tank to remove the powder on the scraper structure surface; The close-fitting structure includes a close-fitting cylinder, a telescopic rod of the close-fitting cylinder is hinged on the first U-shaped plate, the first U-shaped plate is connected to a linkage rod, the linkage rod is connected to a linkage shaft of the second U-shaped plate, the linkage shaft can rotate relative to the second U-shaped plate, a flip block is provided on the linkage shaft, and the flip block is connected to the scraper structure; The flipping structure enables the scraper to flip upward or flip downward. When flipped upward, it adheres to the outer wall of the air inlet. In addition, when flipped downward, the scraper structure enters the collection tank and then performs a washing action.

2. The powder dehumidification device for seasoning production and processing according to claim 1, characterized in that: The lifting drive component includes a lifting cylinder and a lifting plate. The horizontal pushing component is fixedly arranged on the lifting plate. The horizontal pushing component is a horizontal pushing cylinder. The telescopic rod of the horizontal pushing cylinder is connected to the sliding plate. A close-fitting structure is fixedly arranged on the outer side of the sliding plate. The sliding plate is connected to the horizontal slide plate. The horizontal slide plate is slidably connected to the bottom of the lifting plate.

3. The powder dehumidification device for seasoning production and processing according to claim 2, characterized in that: The pressing structure drives the scraper structure close to the air inlet, and the lifting drive member drives the horizontal pushing member and the scraper structure, so that the scraper structure performs a scraping action along the vertically arranged air inlet, so that the powder seasoning remaining on the surface of the air inlet is scraped off, and the fallen powder seasoning will automatically fall into the collection tank below; in addition, the dehumidification host forms moisture after completing dehumidification, and the moisture flows out from the outlet pipe to the collection tank below.

4. The powder dehumidification device for seasoning production and processing according to claim 3, characterized in that: The lifting plate is driven to move up and down by the lifting cylinder, so that the horizontal pushing member and the scraper structure are moved up and down. The sliding plate and the horizontal slide are moved horizontally by the telescopic movement of the horizontal pushing cylinder, thereby making the horizontal slide move horizontally along the bottom of the lifting plate.

5. The powder dehumidification device for seasoning production and processing according to claim 4, characterized in that: The telescopic rod close to the cylinder moves, thereby causing the first U-shaped plate to move, and the first U-shaped plate drives the linkage rod to move, and the linkage rod drives the second U-shaped plate to move, thereby causing the flip block and the scraper structure to move closer to the air inlet or away from it.

Citation Information

Patent Citations

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