Colla corii asini soup decocting device
By using the mixing leaves and scraper structure driven by the drive motor in the donkey-hide gelatin soup boiling device, the problem of cutting difficulties caused by the viscosity of donkey-hide gelatin soup is solved, and efficient mixing and discharge effects are achieved.
Patent Information
- Application Number
- CN202422820492.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-11-19
AI Technical Summary
After the existing donkey-hide gelatin soup boiling device is made of thick donkey-hide gelatin soup, it is difficult to cut and it is difficult to discharge efficiently.
A donkey-hide gelatin soup boiling device is designed, using a drive shaft driven by a driving motor to drive the mixing leaves and scrapers. The inclined surface of the mixing leaves is turned upward to prevent the bottom of the mixing leaves. When discharging materials, the mixing leaves rotate in reverse and squeeze downward. The scraper and the bottom of the boiling can be combined to push the donkey-hide gelatin soup into the discharge pipe, realizing the dual role of stirring and discharge materials.
The mixing effect and discharge efficiency of donkey-hide gelatin soup are improved, ensuring that donkey-hide gelatin soup can be discharged from the device quickly and completely, avoiding residues.
Smart Images

Figure CN223125817U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of donkey-hide gelatin paste boiling, and more specifically, it relates to a donkey-hide gelatin paste boiling device. Background Art
[0002] Donkey-hide gelatin paste is a nourishing product. The existing donkey-hide gelatin paste products on the market are finished products sold by manufacturers after boiling, filling, etc. The donkey-hide gelatin paste is mainly made by boiling a variety of nourishing materials such as donkey-hide gelatin, yellow rice wine, rock sugar, red dates, wolfberries, longans, walnuts, etc. for a long time.
[0003] During the boiling process of donkey-hide gelatin paste, as the water evaporates and the materials dissolve, the donkey-hide gelatin paste becomes viscous. At the same time, the existing donkey-hide gelatin paste boiling devices usually heat at the bottom. During the heating process, a stirring mechanism is usually set for stirring to prevent the phenomenon of the donkey-hide gelatin paste sticking to the bottom. However, after the donkey-hide gelatin paste is boiled, due to its high viscosity, it is difficult to discharge the donkey-hide gelatin paste, so the structure needs to be optimized. Summary of the Invention
[0004] The purpose of the utility model is to provide a donkey-hide gelatin paste boiling device with a simple structure and reasonable design to solve the above problems.
[0005] The utility model realizes the above purpose through the following technical solutions:
[0006] A donkey-hide gelatin paste boiling device includes a boiling tank. In the middle of the top of the boiling tank, a driving shaft penetrating into the interior of the boiling tank is provided. The top of the driving shaft is drivingly connected with a driving motor. At the bottom of the driving shaft, a linkage adjustment mechanism is provided. At the bottom of the linkage adjustment mechanism, a transmission shaft is synchronously drivingly connected. A plurality of groups of stirring blades are evenly distributed on the outer side of the transmission shaft, and the blades of the stirring blades are of an inclined structure;
[0007] At the bottom of the outer side of the transmission shaft, a scraping plate adapted to the bottom inside the boiling tank is provided, and the bottom of the transmission shaft is in a suspended state from the bottom inside the boiling tank;
[0008] At the bottom of the boiling tank, a discharge pipe is provided. On one side of the top of the boiling tank, a feeding unit is provided. On the outer side of the boiling tank, an observation window is provided.
[0009] As a further optimized scheme of the utility model, the linkage adjustment mechanism includes a support disk arranged at the bottom of the driving shaft. A linkage collar is sleeved on the outer side of the bottom of the driving shaft. The linkage collar rotates and displaces along with the driving shaft and slides up and down along the outer side of the driving shaft. A plurality of groups of synchronous rings are evenly distributed at the edge position of the bottom of the linkage collar. The bottom of the synchronous ring is tightly connected with the top of the transmission shaft.
[0010] As a further optimized solution of the present utility model, a spring sleeving the outside of the driving shaft is arranged on the top of the support disk. The top of the spring is in mutual contact with the bottom of the linkage collar. A linkage shaft inserted into the inside of the transmission shaft is arranged at the bottom of the support disk. A slot engaged with the linkage shaft is arranged inside the top of the transmission shaft. The linkage shaft slides up and down inside the slot and drives the slot to rotate.
[0011] As a further optimized solution of the present utility model, an extrusion collar is rollingly supported on the top of the linkage collar. Rolling grooves are arranged at the edge positions of the top of the linkage collar. A plurality of groups of balls adapted to the rolling grooves are evenly distributed at the bottom of the extrusion collar. The extrusion collar sleevs the outside of the driving shaft, and the inner diameter of the center of the extrusion collar is larger than the outer diameter of the driving shaft.
[0012] As a further optimized solution of the present utility model, hinge rods are evenly hinged at the edge positions of the top of the extrusion collar. Limit posts are hinged at the tops of the hinge rods. The tops of the limit posts vertically penetrate to the outside of the top of the decocting tank. A long round hole adapted to the limit post is arranged through the top of the decocting tank. A turntable is rollingly supported on the top of the decocting tank. The top ends of the limit posts penetrate to the top of the turntable. A plurality of groups of arc-shaped guiding holes adapted to the limit posts are evenly arranged at the edge positions of the upper and lower ends of the turntable.
[0013] As a further optimized solution of the present utility model, a displacement connecting rod is arranged on the outside of the turntable. A positioning and locking mechanism adapted to the displacement connecting rod is arranged on the outside of the decocting tank. A limit cap in mutual contact with the top surface of the turntable is arranged at the top end of the limit post.
[0014] The beneficial effects of the present utility model are as follows: By arranging stirring blades and scraping plates on the outside of the transmission shaft, during the decocting process of the donkey-hide gelatin paste, the driving motor drives the scraping plates and stirring blades to stir the donkey-hide gelatin paste. Due to the upward rotation direction of the inclined surface of the stirring blade, the donkey-hide gelatin paste at the bottom is turned upward. When discharging, the driving motor drives the scraping plates and stirring blades to rotate in the reverse direction. Due to the downward inclined surface structure of the stirring blade, a downward extrusion force is generated on the donkey-hide gelatin paste. At the same time, the linkage adjustment mechanism drives the entire transmission shaft to move downward so that the scraping plate is in contact with the bottom of the decocting tank, and then the donkey-hide gelatin paste is pushed towards the input end of the discharge pipe by the scraping plate, promoting the discharge of the donkey-hide gelatin paste, thereby realizing the dual functions of stirring and discharging, and improving the functionality of the structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;
[0016] Figure 2 is a three-dimensional structural sectional view of the present utility model;
[0017] Figure 3 It is an enlarged schematic diagram of the internal structure of the boiling tank in the present utility model;
[0018] Figure 4 It is an enlarged cross-sectional view of the top structure of the boiling tank in the present utility model;
[0019] Figure 5 It is an enlarged schematic diagram of the structure at the turntable in the present utility model;
[0020] Figure 6 It is an enlarged cross-sectional view of the structure at the linkage adjustment mechanism in the present utility model;
[0021] Figure 7 It is an enlarged cross-sectional view of the connection structure at the extrusion collar in the present utility model;
[0022] Figure 8 It is an enlarged cross-sectional view of the connection structure between the transmission shaft and the linkage collar in the present utility model;
[0023] Figure 9 It is an enlarged schematic diagram of the bottom connection structure at the drive shaft in the present utility model.
[0024] In the figure: 1. Boiling tank; 2. Observation window; 3. Discharge pipe; 4. Displacement connecting rod; 5. Turntable; 6. Drive motor; 7. Transmission shaft; 8. Scraper; 9. Stirring blade; 10. Linkage collar; 11. Drive shaft; 12. Limit post; 13. Hinge rod; 14. Long circular hole; 15. Arc-shaped guide hole; 16. Extrusion collar; 17. Spring; 18. Support plate; 19. Linkage shaft; 20. Slot; 21. Ball; 22. Raceway; 23. Synchronous ring. Detailed implementation manners
[0025] Now, the subject matter described herein will be discussed with reference to example embodiments. It should be understood that discussing these embodiments is only to enable those skilled in the art to better understand and thus implement the subject matter described herein. Without departing from the scope of protection of the content of this specification, changes can be made to the functions and arrangements of the elements discussed. Each example can omit, substitute, or add various processes or components as needed. Additionally, the features described relative to some examples can also be combined in other examples.
[0026] Example 1
[0027] As Figure 1 , Figure 2 , Figure 6As shown in the figure, an Ejiao paste boiling device includes a boiling tank 1. In the middle of the top of the boiling tank 1, a driving shaft 11 penetrating into the interior of the boiling tank 1 is provided. At the top of the driving shaft 11, a driving motor 6 is drivingly connected. At the bottom of the driving shaft 11, a linkage adjustment mechanism is provided. At the bottom of the linkage adjustment mechanism, a transmission shaft 7 is synchronously drivingly connected. The linkage adjustment mechanism includes a support disk 18 provided at the bottom of the driving shaft 11. At the bottom of the outer side of the driving shaft 11, a linkage collar 10 is sleeved. The linkage collar 10 rotates and displaces along with the driving shaft 11 and slides up and down along the outer side of the driving shaft 11;
[0028] At the bottom of the boiling tank 1, a discharge pipe 3 is provided. On one side of the top of the boiling tank 1, a feeding unit is provided. On the outer side of the boiling tank 1, an observation window 2 is provided;
[0029] As Figure 2 and Figure 3 shown in the figure, a number of groups of stirring blades 9 are evenly distributed on the outer side of the transmission shaft 7. The blades of the stirring blades 9 are of an inclined structure. At the bottom of the outer side of the transmission shaft 7, a scraping plate 8 adapted to the inner bottom of the boiling tank 1 is provided. The bottom of the transmission shaft 7 is in a suspended state from the inner bottom of the boiling tank 1;
[0030] As Figure 6 and Figure 8 shown in the figure, a number of groups of synchronous rings 23 are evenly distributed at the edge position of the bottom of the linkage collar 10. The bottom of the synchronous rings 23 is fixedly connected to the top of the transmission shaft 7. On the top of the support disk 18, a spring 17 sleeved on the outer side of the driving shaft 11 is provided. The top of the spring 17 is in mutual contact with the bottom of the linkage collar 10. At the bottom of the support disk 18, a linkage shaft 19 inserted into the interior of the transmission shaft 7 is provided. Inside the top of the transmission shaft 7, a slot 20 engaged with the linkage shaft 19 is provided. The linkage shaft 19 slides up and down inside the slot 20 and drives the slot 20 to rotate;
[0031] As Figure 7 and Figure 8 shown in the figure, a pressing collar 16 is rollingly supported on the top of the linkage collar 10. At the edge position of the top of the linkage collar 10, a rolling groove 22 is provided. At the bottom of the pressing collar 16, a number of groups of balls 21 adapted to the rolling groove 22 are evenly distributed. The pressing collar 16 is sleeved on the outer side of the driving shaft 11, and the inner diameter of the center of the pressing collar 16 is larger than the outer diameter of the driving shaft 11;
[0032] As Figure 4 , Figure 5 , Figure 7As shown in the figure, hinge rods 13 are evenly hinged at the edge position of the top of the extrusion collar 16. The tops of the hinge rods 13 are all hinged with limit posts 12. The tops of the limit posts 12 vertically penetrate to the outside of the top of the boiling tank 1. A long circular hole 14 adapted to the limit post 12 is provided through the top of the boiling tank 1. A turntable 5 is rotatably supported on the top of the boiling tank 1. The top end of the limit post 12 penetrates to the top of the turntable 5. A number of groups of arc-shaped guide holes 15 adapted to the limit post 12 are evenly provided at the edge positions of the upper and lower ends of the turntable 5;
[0033] A displacement connecting rod 4 is arranged on the outside of the turntable 5, and a positioning and locking mechanism adapted to the displacement connecting rod 4 is arranged on the outside of the boiling tank 1. A limit cap that fits and limits the top surface of the turntable 5 is arranged at the top end of the limit post 12.
[0034] It should be noted that when the donkey-hide gelatin paste boiling device is in use, the donkey-hide gelatin paste ingredients to be boiled are added into the boiling tank 1 through the feeding unit. At this time, the extrusion collar 16 is at the topmost position, so there is no downward extrusion force on the entire transmission shaft 7, making the bottoms of the transmission shaft 7 and the scraper 8 suspended from the bottom inside the boiling tank 1;
[0035] Then start the driving motor 6 to drive the driving shaft 11 to rotate. Drive the linkage collar 10 to rotate through the driving shaft 11, thereby driving the transmission shaft 7 fixedly connected to the bottom of the synchronous ring 23 to rotate. Drive the scraper 8 and the stirring blade 9 to rotate through the transmission shaft 7. At this time, the upper inclined surface of the stirring blade 9 is in the same direction as the rotation direction of the transmission shaft 7. Then drive the stirring blade 9 to rotate through the transmission shaft 7, so that the upper inclined surface of the stirring blade 9 generates an upward driving force on the donkey-hide gelatin paste, thereby turning the donkey-hide gelatin paste at the bottom of the boiling tank 1 upward to prevent the raw materials from sticking to the bottom;
[0036] During the process of the scraper 8 and the stirring blade 9 rotating with the transmission shaft 7, the scraper 8 and the stirring blade 9 will receive the reaction force generated by the donkey-hide gelatin paste, so that the stirring blade 9 has the power to displace downward. At this time, the stirring blade 9 drives the transmission shaft 7 to displace downward, thereby pulling the linkage collar 10 to displace downward. The downward displacement of the linkage collar 10 compresses the spring 17 to generate a reaction force. During the process of stirring the donkey-hide gelatin paste, the downward acting force received by the scraper 8 and the stirring blade 9 is changing. Then, in cooperation with the reaction force of the spring 17, the transmission shaft 7 as a whole generates the power to displace up and down, so that the transmission shaft 7 as a whole synchronously follows the driving shaft 11 to rotate and also displace up and down, thereby improving the stirring effect of the donkey-hide gelatin cake;
[0037] Further, during the discharging process of the donkey-hide gelatin cake, the displacement connecting rod 4 is rotated to drive the turntable 5 to rotate, so that the turntable 5 pushes the limit post 12 to move accordingly. Under the guiding action of the long circular hole 14, the limit post 12 moves closer to the center position of the driving shaft 11, and then pushes the articulated rod 13 to move. The articulated rod 13 pushes the extrusion collar 16 to move downward to squeeze the top of the linkage collar 10. Then, the linkage collar 10 drives the transmission shaft 7 at the bottom of the synchronous ring 23 to move downward, so that the bottom of the scraper 8 is in mutual contact with the bottom of the inner wall of the boiling tank 1;
[0038] Then, the driving motor 6 is reversely started to drive the driving shaft 11 to rotate, and drive the transmission shaft 7, the scraper 8, and the stirring blade 9 to rotate reversely. At the same time, the discharge pipe 3 is opened. Due to the reverse rotation of the stirring blade 9, the downward inclined surface of the stirring blade 9 generates a downward driving force on the donkey-hide gelatin paste, thereby promoting the discharge of the donkey-hide gelatin paste. At the same time, due to the driving force of the scraper 8 on the bottom of the inner wall of the boiling tank 1, the donkey-hide gelatin paste is transported to the input end of the discharge pipe 3 faster, thus improving the discharge efficiency of the donkey-hide gelatin paste. And when the discharge is about to be completed, the scraper 8 can scrape and clean the remaining donkey-hide gelatin paste at the bottom of the boiling tank 1, discharging the donkey-hide gelatin paste to the greatest extent.
[0039] The above describes the embodiments of this embodiment, but this embodiment is not limited to the above specific implementation manners. The above specific implementation manners are merely illustrative rather than restrictive. Under the inspiration of this embodiment, those of ordinary skill in the art can also make many forms, all of which fall within the protection scope of this embodiment.
Claims
1. An apparatus for boiling donkey-hide gelatin paste, characterized in that, It includes a boiling tank (1). In the middle of the top of the boiling tank (1), a driving shaft (11) penetrating into the inside of the boiling tank (1) is provided. At the top of the driving shaft (11), a driving motor (6) is drivingly connected. At the bottom of the driving shaft (11), a linkage adjusting mechanism is provided. At the bottom of the linkage adjusting mechanism, a transmission shaft (7) is synchronously drivingly connected. A number of groups of stirring blades (9) are evenly distributed on the outer side of the transmission shaft (7), and the blades of the stirring blades (9) are of an inclined structure. At the bottom of the outer side of the transmission shaft (7), a scraping plate (8) adapted to the inner bottom of the boiling tank (1) is provided, and the bottom of the transmission shaft (7) is in a suspended state from the inner bottom of the boiling tank (1). At the bottom of the boiling tank (1), a discharge pipe (3) is provided. On one side of the top of the boiling tank (1), a feeding unit is provided. On the outer side of the boiling tank (1), an observation window (2) is provided.
2. The donkey-hide gelatin paste boiling device according to claim 1, wherein The linkage adjusting mechanism includes a support disk (18) provided at the bottom of the driving shaft (11). At the bottom of the outer side of the driving shaft (11), a linkage collar (10) is sleeved. The linkage collar (10) rotates and displaces along with the driving shaft (11) and slides up and down along the outer side of the driving shaft (11). At the edge position of the bottom of the linkage collar (10), a number of groups of synchronous rings (23) are evenly distributed. The bottom of the synchronous ring (23) is fixedly connected to the top of the transmission shaft (7).
3. The donkey-hide gelatin paste boiling device according to claim 2, characterized in that, At the top of the support disk (18), a spring (17) sleeved on the outer side of the driving shaft (11) is provided. The top of the spring (17) is in mutual contact with the bottom of the linkage collar (10). At the bottom of the support disk (18), a linkage shaft (19) inserted into the inside of the transmission shaft (7) is provided. Inside the top of the transmission shaft (7), a slot (20) engaged with the linkage shaft (19) is provided. The linkage shaft (19) slides up and down inside the slot (20) and drives the slot (20) to rotate.
4. The donkey-hide gelatin paste cooking device according to claim 2, wherein, At the top of the linkage collar (10), an extrusion collar (16) is rollingly supported. At the edge position of the top of the linkage collar (10), a rolling groove (22) is provided. At the bottom of the extrusion collar (16), a number of groups of balls (21) adapted to the rolling groove (22) are evenly distributed. The extrusion collar (16) is sleeved on the outer side of the driving shaft (11), and the inner diameter of the center of the extrusion collar (16) is larger than the outer diameter of the driving shaft (11).
5. An Ejiao paste boiling device according to claim 4, characterized in that, At the edge position of the top of the extrusion collar (16), hinge rods (13) are evenly hinged. At the top of each hinge rod (13), a limit post (12) is hinged. The top of the limit post (12) vertically penetrates to the outside of the top of the boiling tank (1). The top of the boiling tank (1) is penetrated with an oblong hole (14) adapted to the limit post (12). On the top of the boiling tank (1), a turntable (5) is rollingly supported. The top end of the limit post (12) penetrates to the top of the turntable (5). At the edge positions of the upper and lower ends of the turntable (5), a number of groups of arc-shaped guiding holes (15) adapted to the limit post (12) are evenly provided.
6. The donkey-hide gelatin paste boiling device according to claim 5, characterized in that, A displacement connecting rod (4) is arranged on the outer side of the turntable (5), a positioning and locking mechanism adapted to the displacement connecting rod (4) is arranged on the outer side of the boiling tank (1), and a limiting cap that is mutually attached to the top surface of the turntable (5) is arranged at the top end of the limiting column (12).