Drying equipment for chondroitin and collagen peptide production

The eccentric connection and transmission component design realizes the self-rotation of the scraper in the drying equipment, which solves the problem of the existing equipment requiring an additional drive source, saves resources and ensures the drying effect.

CN223376211UActive Publication Date: 2025-09-23SICHUAN HUIGUKANG BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422880854.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-09-23
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

Existing drying equipment for chondroitin and collagen peptide production requires an additional drive source to drive the scraping parts, which increases resource consumption.

Method used

An eccentrically installed first connecting pipe is connected to the drying barrel, and hot air is used to blow the fan to drive the transmission component to achieve self-rotation of the scraper. Combined with the cross-shaped support and limit plate, the stability and effective scraping of the scraper are ensured.

Benefits of technology

The scraper can rotate without an additional driving source, saving resources and effectively scraping off the dried powder without affecting the atomization effect of the atomizer and the pressure control in the barrel.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a drying device for chondroitin and collagen peptide production, which comprises a drying barrel, a first connecting pipe is eccentrically mounted on one side of the upper end of the drying barrel, a supporting piece is mounted at the upper end of an inner cavity of the drying barrel, and a rotatable scraping piece is mounted in the center of the supporting piece. The first connecting pipe is eccentrically connected with the drying barrel, when hot air enters the drying barrel through the first connecting pipe to dry atomized feed liquid, the fan can be blown to rotate, and when the fan rotates, the rotary fan is driven to rotate, so that the atomized feed liquid can be dried, and the atomized feed liquid can be dried. When the drying barrel is dried, the second belt wheel can be driven to rotate, the first belt wheel can be driven to rotate through transmission of the belt, then the scraping piece can be driven to rotate, the inner wall of the drying barrel can be scraped, rotation of the scraping piece can be achieved without an additional driving source, resources can be effectively saved, and powder attached to the inner wall of the drying barrel after being dried can be conveniently scraped away.
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Description

Technical Field

[0001] The utility model relates to the technical field of drying equipment, in particular to drying equipment for producing chondroitin and collagen peptides. Background Art

[0002] In the production process of chondroitin and collagen peptides, drying is a crucial link. The drying equipment used in the production of chondroitin and collagen peptides usually adopts spray drying technology, which is an efficient, energy-saving and environmentally friendly drying method. The spray drying equipment can quickly atomize the liquid material into tiny droplets and quickly dry it in hot air to obtain powdered or granular products.

[0003] The drying barrels in the prior art generally have a conical bottom. In order to prevent the dried powdered product from adhering to the barrel wall, a scraper is generally provided for scraping. However, the scraper usually requires an additional drive source to drive it, further increasing resource consumption. Therefore, we propose a drying equipment for the production of chondroitin and collagen peptides. Utility Model Content

[0004] The purpose of the present invention is to provide a drying device for producing chondroitin and collagen peptides to solve the problems raised by the above-mentioned background technology.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a drying device for the production of chondroitin and collagen peptides, comprising a drying barrel, a first connecting pipe being eccentrically installed on one side of the upper end of the drying barrel, a support being installed on the upper end of the inner cavity of the drying barrel, a rotatable scraper being installed at the center position of the support, a rotatable fan being installed on one side of the support corresponding to the outlet of the first connecting pipe, and the scraper being connected to the fan through a transmission assembly.

[0006] Preferably, the transmission assembly includes a first pulley, a second pulley and a belt, the first pulley is sleeved on the outside of the top end of the scraper rotating rod, the second pulley is sleeved on the outside of the fan rotating rod, and the first pulley and the second pulley are connected through the belt transmission.

[0007] Preferably, the support member is a cross-shaped structural member, and a limiting plate is integrally formed at the center thereof, and the limiting plate is rotatably connected to the scraper member.

[0008] Preferably, the scraper includes a first scraper and a second scraper, the limiting plate is rotatably connected to the first scraper adapted to the inner cavity of the drying barrel, and the second scraper is installed at the bottom end of the first scraper.

[0009] Preferably, a second connecting pipe is installed at the bottom end of the drying barrel, and the second scraper can be inserted into the second connecting pipe and fits against the inner wall of the second connecting pipe.

[0010] Preferably, an atomizer is installed at the center of the top of the drying barrel, and a pressure relief valve is installed on one side of the top of the drying barrel.

[0011] Compared with the prior art, the beneficial effects of the present invention are:

[0012] 1. The first connecting pipe of the utility model is eccentrically connected to the drying barrel. When hot air enters the drying barrel through the first connecting pipe to dry the atomized liquid, it will also blow the fan to rotate. When the fan rotates, it will drive the second pulley to rotate. Through the transmission of the belt, it can drive the first pulley to rotate, and then drive the scraper to rotate, so as to scrape the inner wall of the drying barrel. Compared with the existing technology, the rotation of the scraper can be achieved without an additional drive source, which can effectively save resources and conveniently scrape off the powder attached to the inner wall of the drying barrel after drying.

[0013] 2. The limit plate of the utility model can increase the stability of the cross-shaped support member. The atomizer can be connected to the feeding device in the prior art to atomize the liquid material in the drying barrel for drying. The cross-shaped support frame leaves enough space and will not affect the drying of the liquid atomized by the atomizer in the drying barrel. The pressure relief valve can relieve the pressure of the drying barrel to prevent excessive internal pressure. The first scraper is adapted to the inner cavity of the drying barrel, and the second scraper is adapted to the inner wall of one end of the second connecting pipe. When the scraper rotates, it can scrape the inner wall of the drying barrel and the inner wall of the second connecting pipe. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a side sectional view of the overall structure of the utility model;

[0015] Figure 2 It is a bottom sectional view of the overall structure of the utility model;

[0016] Figure 3 It is a schematic diagram of the overall structure of the utility model.

[0017] In the figure: 1. Drying barrel, 2. First connecting pipe, 3. Support member, 4. Scraper, 5. Fan, 6. First pulley, 7. Second pulley, 8. Belt, 9. Limiting plate, 10. First scraper, 11. Second scraper, 12. Second connecting pipe, 13. Atomizer, 14. Pressure relief valve. DETAILED DESCRIPTION

[0018] 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 embodiments described 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 making creative efforts are within the scope of protection of the present invention.

[0019] Example 1

[0020] Please refer to Figure 1-3 As shown, the utility model provides a drying device for the production of chondroitin and collagen peptides, comprising a drying barrel 1, a first connecting pipe 2 being eccentrically mounted on one side of the upper end of the drying barrel 1, a support member 3 being mounted on the upper end of the inner cavity of the drying barrel 1, a rotatable scraper 4 being mounted at the center position of the support member 3, a rotatable fan 5 being mounted on one side of the support member 3 corresponding to the outlet of the first connecting pipe 2, and the scraper 4 and the fan 5 being connected via a transmission assembly.

[0021] In this embodiment, the first connecting pipe 2 is eccentrically connected to the drying barrel 1. When hot air enters the interior of the drying barrel 1 through the first connecting pipe 2 to dry the atomized liquid, it will also blow the fan 5 to rotate, and cooperate with the transmission component to drive the scraper 4 to rotate, so as to scrape the inner wall of the drying barrel 1. Compared with the existing technology, the rotation of the scraper 4 can be achieved without an additional driving source, which can effectively save resources and is also convenient for scraping off the powder attached to the inner wall of the drying barrel 1 after drying.

[0022] Please refer to Figure 1-3 As shown, the transmission assembly includes a first pulley 6, a second pulley 7 and a belt 8. The first pulley 6 is sleeved on the outside of the top of the rotating rod of the scraper 4, and the second pulley 7 is sleeved on the outside of the rotating rod of the fan 5. The first pulley 6 and the second pulley 7 are connected by the belt 8.

[0023] In this embodiment, when the fan 5 rotates, it drives the second pulley 7 to rotate, which in turn drives the first pulley 6 to rotate through the transmission of the belt 8, thereby driving the scraping member 4 to rotate.

[0024] Please refer to Figure 1-3 As shown, the support member 3 is a cross-shaped structural member, and a limit plate 9 is integrally formed at its center position. The limit plate 9 is rotatably connected to the scraper member 4. The scraper member 4 includes a first scraper 10 and a second scraper 11. The limit plate 9 is rotatably connected to the first scraper 10 adapted to the inner cavity of the drying barrel 1. The second scraper 11 is installed at the bottom end of the first scraper 10. A second connecting pipe 12 is installed at the bottom end of the drying barrel 1. The second scraper 11 can be inserted into the second connecting pipe 12 and fits with the inner wall of the second connecting pipe 12. An atomizer 13 is installed at the center position of the top of the drying barrel 1, and a pressure relief valve 14 is installed on one side of the top of the drying barrel 1.

[0025] In this embodiment, the limit plate 9 can increase the stability of the cross-shaped support member 3, and the atomizer 13 can be connected to the feeding device in the prior art so that the liquid material is atomized and dried in the drying barrel 1. The cross-shaped support frame 3 leaves enough space and will not affect the drying of the liquid atomized by the atomizer 13 in the drying barrel 1. The pressure relief valve 14 can relieve the pressure of the drying barrel 1 to prevent the internal pressure from being too high. The first scraper 10 is adapted to the inner cavity of the drying barrel 1, and the second scraper 11 is adapted to the inner wall of one end of the second connecting pipe 12. When the scraper 4 rotates, it can scrape the inner wall of the drying barrel 1 and the inner wall of the second connecting pipe 12.

[0026] Working principle: First, the first connecting pipe 2 is eccentrically connected to the drying barrel 1. When the hot air enters the drying barrel 1 through the first connecting pipe 2 to dry the atomized liquid, it will also blow the fan 5 to rotate. When the fan 5 rotates, it will drive the second pulley 7 to rotate. Through the transmission of the belt 8, it can drive the first pulley 6 to rotate, and then drive the scraper 4 to rotate. The first scraper 10 is adapted to the inner cavity of the drying barrel 1, and the second scraper 11 is adapted to the inner wall of one end of the second connecting pipe 12. When the scraper 4 rotates, it can scrape the inner wall of the drying barrel 1 and the inner wall of the second connecting pipe 12.

[0027] The contents not described in detail in this specification belong to the prior art known to those skilled in the art.

[0028] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A drying device for producing chondroitin and collagen peptides, comprising a drying barrel (1), characterized in that: A first connecting pipe (2) is eccentrically mounted on one side of the upper end of the drying barrel (1); a support member (3) is mounted on the upper end of the inner cavity of the drying barrel (1); a rotatable scraper (4) is mounted at the center of the support member (3); a rotatable fan (5) is mounted on one side of the support member (3) corresponding to the outlet of the first connecting pipe (2); and the scraper (4) and the fan (5) are connected via a transmission assembly.

2. The drying equipment for producing chondroitin and collagen peptides according to claim 1, characterized in that: The transmission assembly comprises a first pulley (6), a second pulley (7) and a belt (8); the first pulley (6) is sleeved on the outer side of the top end of the rotating rod of the scraper (4); the second pulley (7) is sleeved on the outer side of the rotating rod of the fan (5); the first pulley (6) and the second pulley (7) are connected by transmission via the belt (8).

3. The drying equipment for producing chondroitin and collagen peptides according to claim 2, characterized in that: The support member (3) is a cross-shaped structural member, and a limiting plate (9) is integrally formed at its center position. The limiting plate (9) is rotatably connected to the scraping member (4).

4. The drying equipment for producing chondroitin and collagen peptides according to claim 3, characterized in that: The scraper (4) includes a first scraper (10) and a second scraper (11); the limiting plate (9) is rotatably connected to the first scraper (10) adapted to the inner cavity of the drying barrel (1); and the second scraper (11) is installed at the bottom end of the first scraper (10).

5. The drying equipment for producing chondroitin and collagen peptides according to claim 4, characterized in that: A second connecting pipe (12) is installed at the bottom end of the drying barrel (1), and the second scraper (11) can be inserted into the second connecting pipe (12) and fits against the inner wall of the second connecting pipe (12).

6. The drying equipment for producing chondroitin and collagen peptides according to claim 1, characterized in that: An atomizer (13) is installed at the center of the top of the drying barrel (1), and a pressure relief valve (14) is installed on one side of the top of the drying barrel (1).