Camel milk preparation device with auxiliary blood sugar reduction function and preparation process

By introducing a servo motor-driven stirring component and transmission structure into the camel milk preparation device, combined with a scraping component and an auxiliary stirring component, the problem of low cleaning efficiency was solved, and a highly efficient stirring and cleaning effect was achieved.

CN121513699AInactive Publication Date: 2026-02-13INNER MONGOLIA MENGYITE DAIRY CO LTD
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Patent Information

Application Number
CN202512006079.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-29
Publication Date
2026-02-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In existing camel milk preparation equipment, the enclosed contours between the agitator blades during cleaning make it difficult for the cleaning solution to be effectively removed, thus affecting cleaning efficiency.

Method used

A camel milk preparation device with auxiliary blood sugar lowering function was designed. The stirring component driven by a servo motor, combined with the transmission structure of fixed ring, torsion spring block, teeth, gear and bevel gear, realizes the separation of stirring and cleaning. With the help of scraping component and auxiliary stirring component, the cleaning efficiency and stirring effect are improved.

Benefits of technology

While maintaining the mixing effect, it significantly improves the cleaning efficiency of the preparation chamber, prevents viscous material residue, enhances the scraping effect, and further improves the mixing effect of raw materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a camel milk preparation device with an auxiliary blood sugar reduction function and a preparation process, and relates to the technical field of camel milk preparation. The camel milk preparation device with the auxiliary blood sugar reduction function comprises a preparation bin, and a feeding pipe is assembled at the top of the preparation bin. According to the camel milk preparation device with the auxiliary blood sugar reduction function and the preparation process, during preparation, a stirring piece is started and rotates clockwise, and a fixing ring, a first torsional spring block, teeth, a first gear, a torsional spring rod, a first bevel gear, a second rotating rod, a second bevel gear and a stirring plate are matched, so that the stirring effect of a preparation bin can be maintained; and under the condition that cleaning liquid is introduced for cleaning, the stirring piece is started and rotated anticlockwise, the stirring piece and the stirring plate can be in a relatively static state, and corresponding cleaning operation can be rapidly carried out, so that the cleaning efficiency of the preparation bin during cleaning operation can be improved on the premise that the original stirring effect is kept.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of camel milk preparation, in particular to a camel milk preparation device with auxiliary blood sugar lowering function and a preparation process. BACKGROUND

[0002] Camel milk is a secretion of camel animals, and has been considered as a high-nutrition and low-allergy source dairy product for a long time. Camel milk is rich in various bioactive components, such as high-quality proteins, fats, vitamins, minerals and bioactive polypeptides. These components help to enhance immunity, promote intestinal health, antioxidant, antibacterial and the like.

[0003] A camel milk product preparation device and a preparation method thereof are disclosed in Chinese patent CN115886069B granted and announced on June 27, 2025, wherein a tank body is provided, a rotating cover plate is installed on the inside of the tank body, a tooth ring is arranged on the upper surface of the cover plate, a motor is engagedly connected to the inner side of the tooth ring, a motor frame is arranged above the tank body, a feed pipe is fixedly connected to the middle part of the cover plate, a rotating stirring mechanism is connected to the inside of the tank body through the extension of the feed pipe, a cleaning mechanism is arranged at the bottom of the stirring mechanism, and the cleaning mechanism is sleeved on the inner wall and bottom surface of the tank body.

[0004] In the above application file, the second stirring paddle and the first stirring paddle are arranged to form a closed contour between the bottom flap and the inner wall of the tank body after being close to each other, so as to filter and scatter the particulate matter in the mixed liquid in the middle part of the milk product in the tank body. However, when the device is cleaned with cleaning liquid after the preparation operation is completed, the closed contour formed between the two stirring paddles makes it difficult for the cleaning liquid to clean this place, thereby affecting the cleaning efficiency of the cleaning liquid on the device. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application provides a camel milk preparation device with auxiliary blood sugar lowering function and a preparation process, which solves the problems raised in the background art. To achieve the above purpose, the present application is implemented by the following technical scheme: a camel milk preparation device with auxiliary blood sugar lowering function and a preparation process, comprising: a preparation bin, a feed pipe is arranged on the top of the preparation bin, and a discharge pipe is arranged on the side of the preparation bin; a stirring member, the stirring member penetrates through the preparation bin and is driven by a servo motor; The inside of the preparation bin is fixedly connected with a fixed ring, the inner side of the fixed ring is rotationally connected with a gear through a torsion spring block one, the side of the stirring piece is rotationally connected with a gear one, the side of the stirring piece is rotationally connected with a rotating rod two, the gear one and the rotating rod two are assembled with a transmission member for transmission, the outer side of the rotating rod two is fixedly connected with a stirring plate, the inside of the preparation bin is assembled with a scraping assembly for scraping sundries on the inner wall, and the inside of the preparation bin is assembled with an auxiliary stirring assembly for auxiliary stirring.

[0006] Preferably, the transmission member comprises a torsion spring rod fixed at the bottom of the gear one, the outer side of the torsion spring rod is fixedly connected with a bevel gear one, and the side of the rotating rod two is fixedly connected with a bevel gear two. Through the arrangement of the device, the cleaning efficiency of the preparation bin during cleaning operation is improved on the premise of retaining the original stirring effect.

[0007] Preferably, the bevel gear two is located at the side of the bevel gear one and is in meshing state with the bevel gear one.

[0008] Preferably, the scraping assembly comprises a chain wheel one fixed on the outer side of the stirring piece, the outer side of the chain wheel one is assembled with a chain, the inside of the preparation bin is rotationally connected with a reciprocating screw rod, the outer side of the reciprocating screw rod is fixedly connected with a chain wheel two, the inside of the preparation bin is slidingly connected with a sliding table, the side of the sliding table is rotationally connected with a scraper, the inside of the scraper is assembled with a magnetic block, the inner wall of the preparation bin is rotationally connected with a limiting block through a torsion spring block two, and the inner wall of the preparation bin is assembled with a magnetic plate. Through the arrangement of the scraping assembly, when the scraper moves downward, normal scraping operation can be performed on the inner wall of the preparation bin, and when the scraper moves upward and resets, it does not contact the inner wall, so that the viscous material that may be left on the scraper is prevented from being re-stained on the inner wall, and the scraping effect of the scraper is improved.

[0009] Preferably, the chain is assembled at the outer side of the chain wheel two away from the chain wheel one.

[0010] Preferably, the reciprocating screw rod penetrates through the sliding table and is connected with the sliding table through a thread.

[0011] Preferably, the magnetic plate and the magnetic block in the scraper are in mutual adsorption state.

[0012] Preferably, the auxiliary stirring assembly comprises a power gear fixed at the bottom of the stirring piece, the inner part of the preparation bin is rotationally connected with sleeve one and sleeve two respectively, the top of the sleeve one is rotationally connected with a transmission gear, the top of the sleeve two is fixedly connected with a force receiving gear ring, and the outer side of the sleeve two is fixedly connected with a rotating plate. Through the arrangement of the auxiliary stirring assembly, the rotating plate can rotate in the opposite direction of the stirring piece, and the stirring effect of the preparation bin on the raw materials is further improved.

[0013] Preferably, the transmission gear is located between the force receiving gear ring and the power gear, and is engaged with the force receiving gear ring and the power gear at the same time.

[0014] A preparation process of a camel milk preparation device with auxiliary blood sugar lowering function, comprising the following steps: Step one, open the feeding pipe, close the discharging pipe, pour raw materials into the preparation bin through the feeding pipe; Step two, close the feeding pipe, start the stirring piece driven by the servo motor and heat the preparation bin; Step three, after completing the stirring and heating operation, maintain the temperature at thirty to thirty-two degrees Celsius, and perform fermentation; Step four, discharge the fermented material through the discharging pipe.

[0015] The present application provides a camel milk preparation device with auxiliary blood sugar lowering function and a preparation process. It has the following beneficial effects: (1) The camel milk preparation device with auxiliary blood sugar lowering function and the preparation process, when preparing, the stirring piece is started and rotates clockwise, cooperating with the fixed ring, torsional spring block one, teeth, gear one, torsional spring rod, bevel gear one, rotating rod two, bevel gear two and stirring plate, the stirring effect of the preparation bin can be maintained; when washing with washing liquid, the stirring piece is started and rotates counterclockwise, the stirring piece and the stirring plate are in a relatively static state, and the corresponding washing operation can be quickly performed, so that the washing efficiency of the preparation bin during the washing operation is improved under the premise of maintaining the original stirring effect.

[0016] (2) The camel milk preparation device with auxiliary blood sugar lowering function and the preparation process, when the stirring piece is in a rotating state, the chain wheel one is driven to rotate, cooperating with the chain, reciprocating screw rod, chain wheel two, sliding table, magnetic block, torsional spring block two, limiting block and magnetic plate, so that the scraper can normally scrape the inner wall of the preparation bin when moving downward, and does not contact the inner wall when moving upward and resetting, preventing the viscous material possibly remaining on the scraper from being re-stuck on the inner wall, and improving the scraping effect of the scraper.

[0017] (3) The camel milk preparation device and preparation process with the auxiliary blood sugar lowering function, when the stirring part is in the rotating state, the power gear fixedly connected with the stirring part can be driven to rotate, cooperating with the sleeve one, the sleeve two, the transmission gear and the stress gear, the rotating plate can be rotated in the opposite direction of the stirring part, further improving the stirring effect of the raw materials in the preparation bin. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the whole appearance three-dimensional structure schematic diagram of the application; Figure 2 It is the whole appearance three-dimensional structure schematic diagram of the application; Figure 3 It is the whole appearance three-dimensional structure schematic diagram of the application; Figure 4 It is the whole appearance three-dimensional structure schematic diagram of the application; Figure 5 It is the whole appearance three-dimensional structure schematic diagram of the application; Figure 4 It is the whole appearance three-dimensional structure schematic diagram of the application; Figure 6 It is the whole appearance three-dimensional structure schematic diagram of the application; Figure 7 It is the whole appearance three-dimensional structure schematic diagram of the application; Figure 8 It is the whole appearance three-dimensional structure schematic diagram of the application; Figure 9 It is the whole appearance three-dimensional structure schematic diagram of the application;

[0019] In the figure: 100, preparation bin;200, feed pipe;300, discharge pipe;400, stirring part;501, fixed ring;502, torsional spring block one;503, tooth;504, gear one;505, torsional spring rod;506, bevel gear one;507, rotating rod two;508, bevel gear two;509, stirring plate; 600, scraping assembly;601, chain wheel one;602, chain;603, reciprocating screw rod;604, chain wheel two;605, sliding table;606, scraper;607, magnetic block;608, torsional spring block two;609, limiting block;610, magnetic plate; 700, auxiliary stirring assembly;701, power gear;702, sleeve one;703, sleeve two;704, transmission gear;705, stress gear;706, rotating plate. DETAILED DESCRIPTION

[0020] Clearly, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application.

[0021] Embodiment one, please refer to Figures 1-5 A camel milk preparation device with auxiliary blood sugar lowering function and preparation process, comprising: Preparation bin 100, the top of the preparation bin 100 is equipped with a feeding pipe 200, and the side of the preparation bin 100 is equipped with a discharge pipe 300; Stirring part 400, stirring part 400 penetrates preparation bin 100, and is driven by a servo motor; The inside of the preparation bin 100 is fixedly connected with a fixed ring 501, the inside of the fixed ring 501 is rotatably connected with a tooth 503 by setting a torsion spring block one 502, the side of the stirring part 400 is rotatably connected with a gear one 504, the side of the stirring part 400 is rotatably connected with a rotating rod two 507, a transmission part for transmission is arranged between the gear one 504 and the rotating rod two 507, and the transmission part comprises a torsion spring rod 505 fixed at the bottom of the gear one 504. Figures three to five The inside of the preparation bin 100 is fixedly connected with a fixed ring 501, the inside of the fixed ring 501 is rotatably connected with a tooth 503 by setting a torsion spring block one 502, the side of the stirring part 400 is rotatably connected with a gear one 504, the side of the stirring part 400 is rotatably connected with a rotating rod two 507, a transmission part for transmission is arranged between the gear one 504 and the rotating rod two 507, and the transmission part comprises a torsion spring rod 505 fixed at the bottom of the gear one 504.

[0022] The outer side of the torsion spring rod 505 is fixedly connected with a bevel gear one 506, the side of the rotating rod two 507 is fixedly connected with a bevel gear two 508, the bevel gear two 508 is located at the side of the bevel gear one 506 and is in meshing state with the bevel gear one 506, and the outer side of the rotating rod two 507 is fixedly connected with the stirring plate 509. When the torsion spring rod 505 is in the state of reciprocating rotation at a certain angle, the torsion spring rod 505 can drive the bevel gear one 506 fixedly connected therewith to rotate, so that the bevel gear one 506 drives the bevel gear two 508 meshed therewith to rotate, the bevel gear two 508 in the state of rotation can drive the rotating rod two 507 fixedly connected therewith to rotate, so that the rotating rod two 507 drives the stirring plate 509 fixedly connected therewith to rotate, so as to maintain the stirring effect of the preparation bin 100 on the raw materials; After the stirring and heating operations are completed, the temperature is maintained at thirty to thirty-two degrees Celsius, fermentation is carried out, and the material after fermentation is discharged through the discharge pipe 300; when the preparation bin 100 is completed and the cleaning liquid is introduced for cleaning, the stirring part 400 driven by the servo motor is started and counterclockwise rotation is performed, when the gear one 504 rotates counterclockwise to the gear teeth 503, the gear teeth 503 can rotate around the torsion spring block one 502 as the axis, so as to avoid the gear one 504, so that the stirring part 400 and the stirring plate 509 are in a relatively static state, and the cleaning operation is quickly performed in cooperation with the introduced cleaning liquid. In this way, the cleaning efficiency of the preparation bin 100 during the cleaning operation is improved while the original stirring effect is retained.

[0023] In use, the feeding pipe 200 is opened, the raw materials are poured into the preparation bin 100 through the feeding pipe 200, the stirring part 400 driven by the servo motor is started, and the stirring plate 509 is rotated, so as to stir the raw materials in the preparation bin 100. Figures three to fiveWhen the stirring member 400 is rotated clockwise, the gear one 504 fixedly connected to the side of the stirring member 400 is rotated clockwise, and when the gear one 504 is rotated clockwise to the gear teeth 503 on the fixed ring 501, the gear teeth 503 are pressed, and in this case, the gear teeth 503 are limited by the fixed ring 501 and cannot rotate around the torsion spring block one 502, so that the gear one 504 rotates under the action of the gear teeth 503, and the gear one 504 in the rotating state drives the torsion spring rod 505 fixedly connected thereto to rotate; when the gear one 504 rotates to the position where no gear teeth 503 are arranged on the fixed ring 501, the gear one 504 and the torsion spring rod 505 are no longer limited and can be reversely rotated under the action of the torsion spring rod 505 to reset. In this way, the torsion spring rod 505 is in a state of reciprocating rotation at a certain angle, and the bevel gear one 506 fixedly connected to the torsion spring rod 505 is driven to rotate, so that the bevel gear two 508 meshing with the bevel gear one 506 is driven to rotate, and the rotating rod two 507 fixedly connected to the bevel gear two 508 is driven to rotate, so that the stirring plate 509 fixedly connected to the rotating rod two 507 is driven to rotate, thereby maintaining the stirring effect of the preparation bin 100 on the raw materials; when the preparation bin 100 is cleaned after preparation, the stirring member 400 driven by the servo motor is rotated counterclockwise, and when the gear one 504 is rotated counterclockwise to the gear teeth 503, the gear teeth 503 can rotate around the torsion spring block one 502 to avoid the gear one 504, so that the stirring member 400 and the stirring plate 509 are in a relatively static state, and the cleaning operation is quickly performed in cooperation with the cleaning liquid.

[0024] In example two, please refer to Figures 1-7 On the basis of example one, the preparation bin 100 is internally provided with a scraping assembly 600 for scraping the sundries on the inner wall, and the scraping assembly 600 comprises a chain wheel one 601 fixed to the outside of the stirring member 400, a chain 602 arranged on the outside of the chain wheel one 601, and a reciprocating screw rod 603 rotatably connected in the inside of the preparation bin 100 and fixedly connected with a chain wheel two 604 on the outside thereof. When the stirring member 400 is in a rotating state, the chain wheel one 601 fixedly connected thereto is rotated, and the chain 602 arranged on the outside of the chain wheel one 601 is rotated, so that the chain wheel two 604 drivingly connected with the chain 602 is rotated, and the reciprocating screw rod 603 fixedly connected with the chain wheel two 604 is rotated.

[0025] The inside of the preparation bin 100 is slidably connected with a sliding table 605, the reciprocating wire rod 603 penetrates through the sliding table 605 and is connected with the sliding table 605 through setting threads, and the side surface of the sliding table 605 is rotationally connected with a scraper 606. When the reciprocating wire rod 603 rotates, and the sliding table 605 assembled on the reciprocating wire rod 603 is simultaneously limited by the inner wall of the preparation bin 100 slidably connected therewith, so that the reciprocating wire rod 603 rotates in the process, the sliding table 605 reciprocates in the vertical direction, and the scraper 606 rotationally connected with the sliding table 605 reciprocates in the vertical direction.

[0026] The inside of the scraper 606 is assembled with a magnetic block 607, the inner wall of the preparation bin 100 is rotationally connected with a limiting block 609 through setting a torsion spring block two 608, the inner wall of the preparation bin 100 is assembled with a magnetic plate 610, and the magnetic plate 610 and the magnetic block 607 in the scraper 606 are in a mutual adsorption state. When the scraper 606 moves upward to the limiting block 609, the scraper 606 can be extruded by the limiting block 609, at this time, the limiting block 609 is limited by the preparation bin 100 and cannot rotate with the torsion spring block two 608 as the axis, so that the limiting block 609 is extruded by the limiting block 609 to rotate when it continues to move upward, and the mutual attraction between the magnetic block 607 and the magnetic plate 610 can rotate the scraping surface of the scraper 606 to the side close to the inner wall of the preparation bin 100, and limit it in this state through the magnetic block 607 and the magnetic plate 610. Subsequently, when the scraper 606 moves downward to the limiting block 609, the limiting block 609 can extrude the torsion spring block two 608 to rotate, so that the scraper 606 can directly pass through the limiting block 609, and the scraper 606 can scrape the residual material on the inner wall of the preparation bin 100; and the relatively symmetrical torsion spring block two 608 and limiting block 609 are arranged at the inner wall close to the bottom of the preparation bin 100, so that the scraper 606 rotates to the other side when moving upward, and is in a state of not contacting the inner wall of the preparation bin 100. In this way, the scraper 606 can normally scrape the inner wall of the preparation bin 100 when moving downward, and does not contact the inner wall when moving upward to reset, preventing the viscous material that may be left on the scraper 606 from being re-stuck on the inner wall, and improving the scraping effect of the scraper 606.

[0027] When in use, on the basis of Embodiment One, when the stirring piece 400 is in a rotating state, it can drive the sprocket wheel I 601 fixedly connected thereto to rotate, cooperate with the chain 602 assembled outside the sprocket wheel I 601, so that the sprocket wheel II 604 connected with the chain 602 and the sprocket wheel I 601 in transmission drives to rotate, the sprocket wheel II 604 can drive the reciprocating screw rod 603 fixedly connected thereto to rotate, and the sliding table 605 threaded on the reciprocating screw rod 603 is limited by the inner wall of the preparation bin 100 at the same time, so that the sliding table 605 moves reciprocally in the vertical direction in the process of rotation of the reciprocating screw rod 603, and drives the scraper 606 connected with the sliding table 605 to move reciprocally in the vertical direction, and when the scraper 606 moves upward to the limiting block 609, the scraper 606 can be extruded by the limiting block 609, at this time, the limiting block 609 is limited by the preparation bin 100 and cannot rotate around the torsional spring block II 608 as the axis, so that the limiting block 609 is extruded by the limiting block 609 to rotate when it continues to move upward, and cooperates with the mutual attraction between the magnetic block 607 and the magnetic plate 610, so that the scraping surface of the scraper 606 is rotated to the side close to the inner wall of the preparation bin 100, and is limited in this state by the magnetic block 607 and the magnetic plate 610, and then when the scraper 606 moves downward to the limiting block 609, the limiting block 609 can extrude the torsional spring block II 608 to rotate, so that the scraper 606 can directly pass through the limiting block 609, and the scraper 606 can scrape the residual material on the inner wall of the preparation bin 100; and the relatively symmetrical torsional spring block II 608 and limiting block 609 are arranged at the inner wall close to the bottom of the preparation bin 100, so that the scraper 606 rotates to the other side when it moves upward, and is in a state not in contact with the inner wall of the preparation bin 100.

[0028] Embodiment Three, please refer to Figures 1-9 On the basis of Embodiment One and Embodiment Two, the inside of the preparation bin 100 is assembled with an auxiliary stirring assembly 700 for auxiliary stirring, the auxiliary stirring assembly 700 comprises a power gear 701 fixed at the bottom of the stirring piece 400, the inside of the preparation bin 100 is rotatably connected with a sleeve I 702 and a sleeve II 703, and the top of the sleeve I 702 is rotatably connected with a transmission gear 704. When the stirring piece 400 is in a rotating state, it can drive the power gear 701 fixedly connected with the stirring piece 400 to rotate, because the sleeve I 702 is rotatably connected with the preparation bin 100, and the transmission gear 704 is rotatably connected with the sleeve I 702, so that the power gear 701 can drive the transmission gear 704 to rotate in the process of rotation.

[0029] The top of the sleeve two 703 is fixedly connected with a stress gear ring 705, the transmission gear 704 is located between the stress gear ring 705 and the power gear 701, and is engaged with the stress gear ring 705 and the power gear 701 at the same time, and the outer side of the sleeve two 703 is fixedly connected with a rotating plate 706. When the transmission gear 704 rotates, because the sleeve two 703 is rotatably connected with the preparation bin 100, and the stress gear ring 705 is fixedly connected with the sleeve two 703, the stress gear ring 705 rotates in the opposite direction of the power gear 701 in this case, so that the rotating plate 706 fixedly connected with the sleeve two 703 is driven to rotate by the sleeve two 703, and the rotating plate 706 rotates in the opposite direction of the stirring piece 400, further improving the stirring effect of the raw materials in the preparation bin 100.

[0030] In use, on the basis of the first and second embodiments, when the stirring piece 400 is in a rotating state, the power gear 701 fixedly connected with the stirring piece 400 can be driven to rotate, because the sleeve one 702 is rotatably connected with the preparation bin 100, and the transmission gear 704 is rotatably connected with the sleeve one 702, so that the power gear 701 can drive the transmission gear 704 to rotate in the process of rotating, and because the sleeve two 703 is rotatably connected with the preparation bin 100, and the stress gear ring 705 is fixedly connected with the sleeve two 703, the stress gear ring 705 rotates in the opposite direction of the power gear 701 in this case, so that the rotating plate 706 fixedly connected with the sleeve two 703 is driven to rotate by the sleeve two 703, and the rotating plate 706 rotates in the opposite direction of the stirring piece 400.

[0031] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical solution and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A camel milk preparation device having a supplementary blood sugar lowering function, characterized in that, Include: Preparation of the preparation of the top of the pipe, the side of the preparation of the discharge pipe; Stirring, stirring through the preparation of the warehouse, and driven by servo motor; The inside of the preparation of the warehouse is fixedly connected with a fixed ring, the inner side of the fixed ring is rotatably connected with a tooth by setting a torsion spring block, the side of the stirring piece is rotatably connected with a gear one, the side of the stirring piece is rotatably connected with a rotating rod two, the gear one and the rotating rod two are equipped with a transmission member for transmission, the outer side of the rotating rod two is fixedly connected with a stirring plate, the inside of the preparation of the warehouse is equipped with a scraping assembly for scraping the sundries on the inner wall, and the inside of the preparation of the warehouse is equipped with an auxiliary stirring assembly for auxiliary stirring.

2. The camel milk preparation device having the auxiliary blood sugar lowering function according to claim 1, characterized in that: The transmission member includes a torsion spring rod fixed at the bottom of the gear one, the outer side of the torsion spring rod is fixedly connected with a bevel gear one, and the side of the rotating rod two is fixedly connected with a bevel gear two.

3. The camel milk preparation device with auxiliary blood sugar lowering function according to claim 2, characterized in that: The bevel gear two is located at the side of the bevel gear one, and is in meshing state with the bevel gear one.

4. The camel milk preparation device having the auxiliary blood sugar lowering function according to claim 2, characterized in that: The scraping assembly includes a chain wheel one fixed on the outer side of the stirring piece, the outer side of the chain wheel one is equipped with a chain, the inside of the preparation of the warehouse is rotatably connected with a reciprocating screw rod, the outer side of the reciprocating screw rod is fixedly connected with a chain wheel two, the inside of the preparation of the warehouse is slidably connected with a sliding table, the side of the sliding table is rotatably connected with a scraper, the inside of the scraper is equipped with a magnetic block, the inner wall of the preparation of the warehouse is rotatably connected with a limiting block by setting a torsion spring block two, and the inner wall of the preparation of the warehouse is equipped with a magnetic plate.

5. The camel milk preparation device having the auxiliary blood sugar lowering function according to claim 4, characterized in that: The chain is equipped on the outer side of the chain wheel two away from the end of the chain wheel one.

6. The camel milk preparation device having the auxiliary blood sugar reduction function according to claim 4, characterized in that: The reciprocating screw rod penetrates through the sliding table and is connected with the sliding table by setting threads.

7. The camel milk preparation device having the auxiliary blood sugar lowering function according to claim 4, characterized in that: The magnetic plate and the magnetic block in the scraper are in mutual adsorption state.

8. The camel milk preparation device having the auxiliary blood sugar lowering function according to claim 4, characterized in that: The auxiliary stirring assembly includes a power gear fixed at the bottom of the stirring piece, the inside of the preparation of the warehouse is rotatably connected with a sleeve one and a sleeve two, the top of the sleeve one is rotatably connected with a transmission gear, the top of the sleeve two is fixedly connected with a stress gear ring, and the outer side of the sleeve two is fixedly connected with a rotating plate.

9. The camel milk preparation device having the auxiliary blood sugar reduction function according to claim 8, characterized in that: The transmission gear is located between the stress gear ring and the power gear, and is in meshing state with the stress gear ring and the power gear.

10. The preparation process of the camel milk preparation device with the auxiliary blood sugar reduction function according to any one of claims 1 to 9, characterized in that, The steps include: Step one, open the feeding pipe, close the discharge pipe, pour the raw materials into the preparation of the warehouse through the feeding pipe; Step two, close the feeding pipe, enable the stirring piece driven by the servo motor and heat the preparation of the warehouse; Step three, after completing the stirring and heating operation, the temperature is maintained at thirty to thirty-two degrees Celsius, and the fermentation is carried out; Step four, the material after completing the fermentation is discharged through the discharge pipe.

Citation Information

Patent Citations

  • A camel milk product preparation device and its preparation method

    CN115886069B