Enzymolysis storage device for compound deer blood wine
By introducing a motor-driven screw and threaded block structure into the enzymatic hydrolysis storage device, sticky matter on the inner wall of the enzymatic hydrolysis device can be automatically cleaned, solving the problem of time-consuming and labor-intensive cleaning of existing enzymatic hydrolysis devices and improving cleaning efficiency.
Patent Information
- Application Number
- CN202422591478.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-25
AI Technical Summary
When the products of the existing enzymatic hydrolysis device adhere to the inner wall after enzymatic hydrolysis, cleaning is time-consuming and labor-intensive, and the cleaning is not perfect.
An enzymatic hydrolysis storage device is designed, which is equipped with a motor-driven screw and threaded block structure to drive a cleaning scraper brush to automatically clean sticky matter on the inner wall.
The automatic cleaning of sticky materials on the inner wall of the enzymatic hydrolysis device is realized, which saves time and labor and improves work efficiency.
Smart Images

Figure CN223357632U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of enzymolysis of compound deer blood wine, in particular to an enzymolysis storage device for compound deer blood wine. Background Art
[0002] Deer blood wine is a medicinal food made with deer blood as the main ingredient. It has many therapeutic and health-care functions, such as beautifying the skin, treating anemia, regulating immunity, delaying aging, improving memory, resisting fatigue, and improving sexual function. It requires enzymatic extraction. Enzymatic extraction is an important technology used for the separation and extraction of natural products in recent years.
[0003] For example, patent No. 202221444151.2 discloses an enzymolysis device, the structure of which includes an enzymolysis box, a box cover is threadedly installed on the top of the enzymolysis box, a crushing box is provided on the top of the box cover, a measuring mechanism is provided on the box cover, a weighing mechanism is provided on the box cover, a crushing chamber is provided inside the crushing box, a return chamber is provided inside the crushing box, the inner cavity of the return chamber is rotatably connected to a spiral feeding rod, two material guide troughs are provided inside the crushing box, the inner cavity of the crushing chamber is rotatably connected to a filter screen, the inner cavity of the crushing chamber is rotatably connected to a cam, and the inner cavity of the crushing chamber is rotatably connected to a filter screen. Two crushing rollers are dynamically connected, and two first motors are fixedly installed on the outside of the crushing box. The output shaft of the first motor is connected to the rotating shaft of the crushing roller. The utility model crushes the sea cucumbers by the two crushing rollers, and screens the crushed sea cucumbers by using the cooperation of the cam and the filter screen. The smaller sea cucumber particles fall into the inner cavity of the enzymolysis barrel for enzymolysis, and the larger sea cucumbers enter the inner cavity of the return chamber, and are returned from the guide trough to the upper part of the inner cavity of the crushing chamber by the rotating spiral feeding rod to be crushed again, ensuring that the volume of the sea cucumber particles entering the enzymolysis solution is small, thereby improving the working efficiency of the sea cucumber enzymolysis.
[0004] Therefore, the above-mentioned enzymatic hydrolysis device uses a crushing mechanism to improve the efficiency of subsequent enzymatic hydrolysis. Since the products after enzymatic hydrolysis in the existing enzymatic hydrolysis device are mostly viscous, they adhere to the inner wall of the enzymatic hydrolysis device and rely solely on manual cleaning, which is time-consuming and labor-intensive. The cleaning is not perfect enough. An automatic cleaning mechanism can be designed to improve the cleaning of sticky materials on the inner wall of the enzymatic hydrolysis device without manual cleaning, saving time and effort and improving work efficiency. Utility Model Content
[0005] In order to overcome the problem that the enzymatic hydrolysis device uses a crushing mechanism to improve the efficiency of subsequent enzymatic hydrolysis, the existing enzymatic hydrolysis device has a problem that the products after enzymatic hydrolysis are mostly viscous and adhere to the inner wall of the enzymatic hydrolysis device. It relies solely on manual cleaning, which is time-consuming and labor-intensive, and the cleaning is not perfect.
[0006] The technical solution of the utility model is: an enzymatic hydrolysis storage device for compound deer blood wine, comprising an enzymatic hydrolysis storage device body, inner grooves being provided on both left and right sides of the interior of the enzymatic hydrolysis storage device body, motors being provided at one end of the two inner grooves, screw rods being connected at one end of the two motors being provided at the interior of the inner grooves, threaded blocks being meshed and sleeved on the exteriors of the two screw rods, a cleaning mechanism being provided between the two threaded blocks and being located on the inner wall of the enzymatic hydrolysis storage device body, a plurality of evenly arranged cleaning scraper brushes being provided on the exterior of the cleaning mechanism through a diameter, and mounting blocks being fixedly provided on the left and right sides of the cleaning mechanism.
[0007] Preferably, when the inner wall of the enzymatic storage device body is being cleaned, the motor at one end of the two sides starts to run, and the motor drives the lower screw to start rotating while running. When the screw rotates, the threaded block that is sleeved on the outside of the screw and meshed with it starts to move up and down, and the cleaning mechanism between the two threaded blocks is also driven to start displacement. Then, multiple cleaning scraper brushes uniformly arranged in diameter on the outside of the cleaning mechanism will clean the inner wall of the enzymatic storage device body from sticky substances. Through the automatic cleaning mechanism, the cleaning of sticky substances on the inner wall of the enzymatic storage device is improved, and manual cleaning is unnecessary, which saves time and effort and improves work efficiency.
[0008] Preferably, a sealing cover is provided above the body of the enzymatic hydrolysis storage device, and a vent opening is provided above the sealing cover.
[0009] Preferably, a connecting block is provided on one side of the body of the enzymatic hydrolysis storage device, a movable portion located above the sealing cover is provided above the connecting block, and a movable shaft is movably connected between the movable portion and the connecting block.
[0010] Preferably, the four end legs below the enzymatic hydrolysis storage device body are fixedly provided with supporting legs, and a connecting pipe is provided above the enzymatic hydrolysis storage device body.
[0011] Preferably, an arc-shaped insertion rod is fixedly provided on one side of the mounting block, and fixing grooves are provided on both the left and right sides of the interior of the arc-shaped insertion rod.
[0012] Preferably, a mounting groove is provided inside the threaded block, the mounting block is inserted into the mounting groove, a guide rod is provided inside the mounting groove, guide blocks are slidably sleeved on the left and right sides of the outside of the guide rod, and a spring is provided on one side of the two guide blocks and sleeved on the outside of the guide rod.
[0013] Preferably, an arc-shaped slot is provided on one side of the mounting groove and is located inside the threaded block. A through hole is provided inside the guide rod. The arc-shaped insertion rod and the guide rod pass through the through hole and are inserted into the arc-shaped slot. A fixing rod is provided at one end of the guide block and is inserted into the fixing slot.
[0014] Beneficial effects of the utility model:
[0015] When the inner wall of the enzymatic storage device is being cleaned, the motor at one end of the two sides of the interior starts to run, and the motor drives the screw rod below to start rotating while running. As the screw rod rotates, the threaded block that is sleeved on the outside of the screw rod and meshed with it starts to move up and down, and the cleaning mechanism between the two threaded blocks is also driven to start displacement. Then, multiple cleaning scraper brushes uniformly arranged in diameter on the outside of the cleaning mechanism will clean the inner wall of the enzymatic storage device body of the sticky matter. Through the automatic cleaning mechanism, the cleaning of the sticky matter on the inner wall of the enzymatic storage device is improved, and manual cleaning is unnecessary, which saves time and effort and improves work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a schematic diagram of the three-dimensional structure of the enzymatic hydrolysis storage device of the present invention;
[0017] Figure 2 Shown is a partially enlarged three-dimensional structural schematic diagram of the enzymatic hydrolysis storage device A of the present invention;
[0018] Figure 3 Shown is a schematic diagram of the internal structure of the enzymatic hydrolysis storage device of the present invention;
[0019] Figure 4 Shown is a schematic diagram of the three-dimensional structure of the cleaning mechanism of the present utility model;
[0020] Figure 5 Shown is a schematic diagram of the cross-sectional structure of the connection portion of the cleaning mechanism of the present invention;
[0021] Figure 6 Shown is a partially enlarged structural schematic diagram of the cross section B at the connection of the cleaning mechanism of the present invention.
[0022] Explanation of the accompanying reference numerals: 1. Enzyme storage device body; 2. Sealing cover; 3. Movable part; 4. Connecting block; 5. Movable shaft; 6. Inner groove; 7. Motor; 8. Screw rod; 9. Threaded block; 10. Cleaning mechanism; 11. Cleaning scraper brush; 12. Mounting block; 13. Mounting groove; 14. Guide rod; 15. Spring; 16. Guide block; 17. Arc-shaped plug rod; 18. Arc-shaped slot; 19. Through hole; 20. Fixing rod; 21. Fixing groove. DETAILED DESCRIPTION
[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0024] See also Figures 1-6The utility model provides an embodiment: an enzymatic hydrolysis and storage device for compound deer blood wine, comprising an enzymatic hydrolysis and storage device body 1, inner grooves 6 are provided on both sides of the left and right sides of the interior of the enzymatic hydrolysis and storage device body 1, motors 7 are provided at one end of the two inner grooves 6, one end of the two motors 7 is connected to a screw rod 8 located inside the inner groove 6, the outsides of the two screw rods 8 are meshed and sleeved with threaded blocks 9, a cleaning mechanism 10 located on the inner wall of the enzymatic hydrolysis and storage device body 1 is provided between the two threaded blocks 9, a plurality of evenly arranged cleaning scraper brushes 11 are provided on the outside of the cleaning mechanism 10 through the diameter, and mounting blocks 12 are fixedly provided on the left and right sides of the cleaning mechanism 10.
[0025] See also Figure 1-Figure 2 In this embodiment, a sealing cover 2 is provided above the enzymatic storage device body 1, and a vent port is provided above the sealing cover 2. A connecting block 4 is provided on one side of the enzymatic storage device body 1, and a movable part 3 located above the sealing cover 2 is provided above the connecting block 4. A movable shaft 5 is movably connected between the movable part 3 and the connecting block 4. The four end feet below the enzymatic storage device body 1 are fixedly provided with supporting feet, and a connecting pipe is provided above the enzymatic storage device body 1. When the inner wall of the enzymatic storage device body 1 is cleaned, the motor 7 at one end of the internal sides starts to run, and the motor 7 drives the screw rod 8 below to start rotating while running. When the screw rod 8 rotates, the threaded block 9 that is sleeved on the outside of the screw rod 8 and meshed with it starts to move up and down, and the cleaning mechanism 10 between the two threaded blocks 9 is also driven to start displacement.
[0026] See also Figure 5-Figure 6 In this embodiment, an arc-shaped plug rod 17 is fixedly provided on one side of the mounting block 12, and a fixing groove 21 is provided on the left and right sides of the interior of the arc-shaped plug rod 17. A mounting groove 13 is provided inside the threaded block 9, and the mounting block 12 is inserted into the mounting groove 13. A guide rod 14 is provided inside the mounting groove 13, and a guide block 16 is slidably sleeved on the left and right sides of the exterior of the guide rod 14. A spring 15 sleeved on the exterior of the guide rod 14 is provided on one side of the two guide blocks 16. A arc-shaped plug rod 17 is provided on one side of the mounting groove 13, and a fixing groove 21 is provided on the left and right sides of the interior of the threaded block 9. The slot 18 and the guide rod 14 are provided with a through hole 19, the arc-shaped insertion rod 17 and the guide rod 14 pass through the through hole 19 and are inserted into the arc-shaped slot 18, and one end of the guide block 16 is provided with a fixed rod 20 inserted into the fixed groove 21. The cleaning mechanism 10 has multiple cleaning scraper brushes 11 evenly arranged in diameter on the outside to clean the inner wall of the enzymatic storage device body 1 for sticky substances. The automatic cleaning mechanism can improve the cleaning of sticky substances on the inner wall of the enzymatic storage device without manual cleaning, saving time and effort and improving work efficiency.
[0027] During operation, when the inner wall of the enzymatic storage device body 1 is being cleaned, the motor 7 at one end of the inner side starts to run, and the motor 7 drives the screw rod 8 below to start rotating while running. When the screw rod 8 rotates, the threaded block 9 that is sleeved on the outside of the screw rod 8 and meshed with it starts to move up and down, and the cleaning mechanism 10 between the two threaded blocks 9 is also driven to start displacement. The cleaning mechanism 10 is outside. Multiple cleaning scraper brushes 11 with uniform diameters will clean the inner wall of the enzymatic storage device body 1 for sticky objects. The automatic cleaning mechanism can improve the cleaning of sticky objects on the inner wall of the enzymatic device, without manual cleaning, saving time and effort, and improving work efficiency.
[0028] Through the above steps, when the inner wall of the enzymatic storage device body 1 is being cleaned, the motor 7 at one end of the inner side starts to run, and the motor 7 drives the screw rod 8 below to start rotating while running. When the screw rod 8 rotates, the threaded block 9 that is sleeved on the outside of the screw rod 8 and meshed with it starts to move up and down, and the cleaning mechanism 10 between the two threaded blocks 9 is also driven to start displacement. Then, the multiple cleaning scraper brushes 11 uniformly arranged by diameter on the outside of the cleaning mechanism 10 will clean the inner wall of the enzymatic storage device body 1 of the sticky matter. Through the automatic cleaning mechanism, the cleaning of the sticky matter on the inner wall of the enzymatic hydrolysis device is improved, and manual cleaning is not required, which saves time and effort and improves work efficiency to solve the problem that the enzymatic hydrolysis device can improve the work efficiency of subsequent enzymolysis by using a crushing mechanism. Since the products after enzymolysis in the existing enzymatic hydrolysis device are mostly viscous, they adhere to the inner wall of the enzymatic hydrolysis device and rely solely on manual cleaning, which is time-consuming and labor-intensive, and the cleaning is not perfect enough.
Claims
1. An enzymatic hydrolysis storage device for compound deer blood wine, comprising an enzymatic hydrolysis storage device body (1), characterized in that: An inner groove (6) is provided on both the left and right sides of the enzymatic storage device body (1), a motor (7) is provided at one end of each inner groove (6), one end of each motor (7) is connected to a screw rod (8) located inside the inner groove (6), the outsides of each screw rod (8) are meshed with a threaded block (9), a cleaning mechanism (10) is provided between the two threaded blocks (9) and is located on the inner wall of the enzymatic storage device body (1), a plurality of cleaning scraper brushes (11) arranged evenly on the diameter of the outside of the cleaning mechanism (10), and mounting blocks (12) are fixedly provided on both the left and right sides of the cleaning mechanism (10).
2. The enzymatic hydrolysis storage device for compound deer blood wine according to claim 1, characterized in that: A sealing cover (2) is provided above the enzymatic hydrolysis storage device body (1), and a vent opening is provided above the sealing cover (2).
3. The enzymatic hydrolysis storage device for compound deer blood wine according to claim 2, characterized in that: A connecting block (4) is provided on one side of the enzymatic hydrolysis storage device body (1); a movable portion (3) located above the sealing cover (2) is provided above the connecting block (4); and a movable shaft (5) is movably connected between the movable portion (3) and the connecting block (4).
4. The enzymatic hydrolysis storage device for compound deer blood wine according to claim 1, characterized in that: The four end legs below the enzymatic hydrolysis storage device body (1) are all fixedly provided with supporting legs, and a connecting pipe is provided above the enzymatic hydrolysis storage device body (1).
5. The enzymatic hydrolysis and storage device for compound deer blood wine according to claim 1, characterized in that: An arc-shaped inserting rod (17) is fixedly provided on one side of the mounting block (12), and fixing grooves (21) are provided on both left and right sides of the interior of the arc-shaped inserting rod (17).
6. The enzymatic hydrolysis and storage device for compound deer blood wine according to claim 5, characterized in that: The threaded block (9) is provided with a mounting groove (13) inside, the mounting block (12) is inserted into the mounting groove (13), a guide rod (14) is provided inside the mounting groove (13), guide blocks (16) are slidably sleeved on the left and right sides of the guide rod (14), and a spring (15) sleeved on the outside of the guide rod (14) is provided on one side of the two guide blocks (16).
7. The enzymatic hydrolysis and storage device for compound deer blood wine according to claim 6, characterized in that: An arc-shaped slot (18) located inside the threaded block (9) is provided on one side of the mounting groove (13); a through hole (19) is provided inside the guide rod (14); the arc-shaped insert rod (17) and the guide rod (14) pass through the through hole (19) and are inserted into the arc-shaped slot (18); and a fixing rod (20) is provided at one end of the guide block (16) and is inserted into the fixing groove (21).
Citation Information
Patent Citations
Enzymolysis device
CN218561471U