Tea rough cleaning device for large intestine processing
By designing the tea initial washing device, the synchronous movement of the spindle and the kneading part is used to drive the synchronous movement of the spindle and the kneading part, the manual kneading action is simulated, and the problem of unsatisfactory kneading effect is solved during the cleaning of fat intestines is achieved, the full discharge of tea juice and the effective adsorption of peculiar odors is achieved, and the cleaning efficiency is improved.
Patent Information
- Application Number
- CN202421462211.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-25
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-06-25
AI Technical Summary
In the prior art, the rubbing effect of fat intestines during cleaning is not ideal, and the tea juice is difficult to fully discharge, resulting in poor cleaning effect.
A tea primary washing device including a cleaning drum, a feed hopper, and a rubbing assembly is designed. The spindle is driven by a motor to rotate, and the kneading member and push rod are driven to synchronously move, simulate manual rubbing, increase the rubbing gap, and use protrusions to form a washboard-like concave and convex surface, realize multiple rubbing and impact, and promote the discharge of tea juice.
It improves the cleaning and odor adsorption effect of tea leaves on the large intestine, ensuring cleaning efficiency and effect.
Smart Images

Figure CN223110955U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food processing, in particular to a primary tea washing device for large intestine processing. Background Art
[0002] Pig large intestine, also known as fat intestine, is a common pig offal by-product. Before consumption or packaging, it needs to be cleaned and deodorized.
[0003] The prior art discloses a fat intestine cleaning and decontamination device (publication number: CN219205747U), which includes a workbench, an internal decontamination device and an external decontamination device. The workbench is provided with an internal decontamination device, and the external decontamination devices are arranged on both sides of the internal decontamination device. The workbench consists of a fixed box and a box door. The side of the fixed box is provided with a box door. One side of the box door is hinged to the side of the fixed box, and the other side of the box door is provided with a handle with a locking function. The upper wall surface of the fixed box is provided with an internal decontamination device and an external decontamination device.
[0004] In the prior art, the fat intestine is cleaned and purified by agitation. In some processes, tea leaves are proposed to be used to treat the odor of the fat intestine by using the adsorption effect of the tea leaves. However, when the fat intestine is stirred by the stirring rod, the rubbing effect on the fat intestine is not ideal. The rod body of the stirring rod is difficult to simulate the rubbing action of the relative movement of two hands in the manual cleaning process. Furthermore, for the cleaning method with the addition of tea leaves, the juice of the tea leaves is difficult to be fully discharged, and the fat intestine cannot be rubbed repeatedly. Therefore, there is room for optimizing the cleaning effect.
[0005] Therefore, we propose a primary tea washing device for large intestine processing. Content of the Utility Model
[0006] The utility model mainly solves the technical problem that the large intestine and tea leaves cannot be fully rubbed, resulting in an unsatisfactory cleaning effect, and provides a primary tea washing device for large intestine processing.
[0007] To achieve the above object, the utility model adopts the following technical scheme. A primary tea washing device for large intestine processing includes:
[0008] A cleaning cylinder, which forms a sealed cylindrical structure and is used for loading raw materials. An electric motor is fixedly arranged on the outer wall surface of the cleaning cylinder;
[0009] A feed hopper, which is fixedly installed on the top of the cleaning cylinder and is a funnel structure for adding raw materials;
[0010] The kneading assembly is arranged in the cavity of the cleaning cylinder and is used for kneading raw materials. The kneading assembly includes a main shaft, kneading members and extrusion push rods. The main shaft is rotationally connected to the cleaning cylinder and fixedly connected to the output end of the motor. A number of kneading members are arranged on the wall surface of the main shaft, and a number of extrusion push rods are fixedly arranged on the inner wall of the cleaning cylinder. The extrusion push rods can guide the kneading members to deform and bend.
[0011] As a preferred embodiment of the present invention, the kneading member includes a first deformation plate and an extension section. The extension section is connected to the first deformation plate to form a rod-shaped structure with a J-shaped cross section. There is a gap between the extension section and the inner wall of the cleaning cylinder to knead the raw materials.
[0012] As a preferred embodiment of the present invention, both the first deformation plate and the extension section are arc-shaped rod structures. The end face of the extension section is fixedly connected to one of the end faces of the first deformation plate, and the other end face of the first deformation plate is fixedly connected to the circumferential surface of the main shaft. The radius of the extension section is smaller than the radius of the first deformation plate, and the concave surface of the extension section bends and extends towards the main shaft.
[0013] As a preferred embodiment of the present invention, the extrusion push rod forms a columnar structure with a semi-circular cross section. The cross section of the extrusion push rod is fixedly connected to the inner wall of the cleaning cylinder, and the convex surface of the extrusion push rod faces the main shaft.
[0014] As a preferred embodiment of the present invention, at least two extrusion push rods are arranged on the inner wall of the cleaning cylinder. One extrusion push rod is close to the position of the inner bottom surface of the cleaning cylinder, and the other extrusion push rod is close to the position of the inner top surface of the cleaning cylinder.
[0015] As a preferred embodiment of the present invention, the kneading assembly further includes protrusions. A number of protrusions are equidistantly arranged on the inner wall of the cleaning cylinder, and a number of protrusions will form an uneven kneading surface on the inner wall of the cleaning cylinder.
[0016] As a preferred embodiment of the present invention, the protrusion forms a semi-cylindrical structure. The diameter of the protrusion is smaller than the diameter of the extrusion push rod, and the extrusion push rod is of the same length as the chamber of the cleaning cylinder.
[0017] As a preferred embodiment of the present invention, a discharge pipe is fixedly installed at the bottom of the cleaning cylinder, and a plug valve is provided on the discharge pipe.
[0018] Beneficial effects
[0019] The present invention provides a tea primary washing device for large intestine processing. It has the following beneficial effects:
[0020] 1. An initial tea washing device for large intestine processing drives the main shaft to rotate through a motor. The main shaft drives the first deformation plate and the extension section to perform synchronous circular motion. When the extension section moves to contact the extrusion push rod, the thrust given to the extension section by the extrusion push rod causes the extension section to deform and bend towards the main shaft. As a result, a larger gap is formed between the first deformation plate and the inner wall of the cleaning cylinder. Then, the raw materials on one side of the extrusion push rod, that is, large intestines and tea debris, can enter the space between the convex surface of the first deformation plate and the inner wall of the cleaning cylinder. As the main shaft continues to rotate, the extension section separates from the extrusion push rod. Then, the extension section and the first deformation plate recover their deformation and move towards the inner wall of the cleaning cylinder. The first deformation plate and the extension section can squeeze the raw materials, causing the large intestines and tea to collide, promoting the discharge of tea juice and thus better adsorbing the odor of the large intestines. Moreover, as the extension section and the first deformation plate move in a circular motion along with the main shaft, they can press the raw materials against the inner wall of the cleaning cylinder to simulate manual rubbing. When the extension section moves to contact another extrusion push rod, the extension section is deformed by extrusion again. As a result, the gap between the first deformation plate and the inner wall of the cleaning cylinder increases, and the large intestines pressed by the first deformation plate fall downward under the action of gravity, further promoting the rolling and rubbing of the large intestines and tea, and improving the cleaning and adsorption effect of tea on the large intestines.
[0021] 2. For the initial tea washing device for large intestine processing, by setting multiple protrusions, after the extension section separates from the extrusion push rod, the extension section continuously contacts each protrusion, and multiple protrusions form an uneven surface similar to a washboard shape on the inner wall of the cleaning cylinder, causing the large intestines to be continuously kneaded, ensuring the cleaning effect and cleaning efficiency. Brief Description of the Drawings
[0022] Figure 1 is one of the overall three-dimensional views of the present utility model;
[0023] Figure 2 is the second overall three-dimensional view of the present utility model;
[0024] Figure 3 is the schematic diagram of the internal structure of the cleaning cylinder of the present utility model;
[0025] Figure 4 is the three-dimensional view of the kneading part of the present utility model;
[0026] Figure 5 is the schematic diagram after the extrusion push rod and the protrusions are installed in the present utility model.
[0027] Legend Explanation: 10. Cleaning cylinder; 11. Feed hopper; 20. Main shaft; 21. Kneading part; 22. Extrusion push rod; 23. Protrusion; 30. First deformation plate; 31. Extension section. Detailed Embodiment
[0028] An initial tea washing device for large intestine processing, as Figure 1 shown, includes:
[0029] The cleaning cylinder 10 forms a sealed cylindrical structure and is used to load raw materials. An electric motor is fixedly provided on the outer wall surface of the cleaning cylinder 10;
[0030] The feed hopper 11 is a funnel structure fixedly installed at the top of the cleaning cylinder 10 and used for adding raw materials. Specifically, a bracket is fixedly installed on the side wall of the cleaning cylinder 10, the electric motor is fixedly installed on the bracket by bolts, and shaft sleeves are fixedly connected to both ends of the cleaning cylinder 10;
[0031] Such as Figure 3 、 Figure 4 And Figure 5As shown in the figure, a kneading component is arranged in the cavity of the cleaning cylinder 10 and is used for kneading raw materials. The kneading component includes a main shaft 20, kneading pieces 21 and extrusion push rods 22. The main shaft 20 is rotatably connected to the cleaning cylinder 10 and fixedly connected to the output end of the motor. A number of kneading pieces 21 are arranged on the wall surface of the main shaft 20. A number of extrusion push rods 22 are fixedly arranged on the inner wall of the cleaning cylinder 10. The extrusion push rods 22 can guide the kneading pieces 21 to deform and bend. The kneading piece 21 includes a first deformation plate 30 and an extension section 31. The extension section 31 is connected to the first deformation plate 30 to form a rod structure with a J-shaped cross-section. A gap is left between the extension section 31 and the inner wall of the cleaning cylinder 10 to knead the raw materials. Both the first deformation plate 30 and the extension section 31 are arc-shaped rod structures. One end face of the extension section 31 is fixedly connected to one end face of the first deformation plate 30. The other end face of the first deformation plate 30 is fixedly connected to the circumferential surface of the main shaft 20. The radius of the extension section 31 is smaller than that of the first deformation plate 30. The concave surface of the extension section 31 bends and extends towards the main shaft 20. The extrusion push rod 22 forms a columnar structure with a semi-circular cross-section. The cross-section of the extrusion push rod 22 is fixedly connected to the inner wall of the cleaning cylinder 10. The convex surface of the extrusion push rod 22 faces the main shaft 20. At least two extrusion push rods 22 are arranged on the inner wall of the cleaning cylinder 10. One extrusion push rod 22 is close to the position of the inner bottom surface of the cleaning cylinder 10, and the other extrusion push rod 22 is close to the position of the inner top surface of the cleaning cylinder 10. Specifically, the main shaft 20 passes through the shaft sleeve and is fixedly connected to the output shaft of the motor. The main shaft 20 is driven by the motor to rotate. The main shaft 20 drives the first deformation plate 30 and the extension section 31 to move in a synchronous circular motion. When the extension section 31 moves to contact the extrusion push rod 22, the thrust given to the extension section 31 by the extrusion push rod 22 causes the extension section 31 to deform and bend towards the main shaft 20. Further, a larger gap is formed between the first deformation plate 30 and the inner wall of the cleaning cylinder 10. Then, the raw materials on one side of the extrusion push rod 22, that is, the large intestine and tea debris, can enter the space between the convex surface of the first deformation plate 30 and the inner wall of the cleaning cylinder 10. As the main shaft 20 continues to rotate, the extension section 31 separates from the extrusion push rod 22. Then, the extension section 31 and the first deformation plate 30 recover their deformation and move towards the inner wall of the cleaning cylinder 10. The first deformation plate 30 and the extension section 31 can squeeze the raw materials, causing the large intestine and tea to collide, promoting the discharge of tea juice and thus better adsorbing the odor of the large intestine. The extension section 31 and the first deformation plate 30 move in a circular motion with the main shaft 20, and can press the raw materials against the inner wall of the cleaning cylinder 10 to simulate manual kneading. When the extension section 31 moves to contact the other extrusion push rod 22, the extension section 31 is deformed by extrusion again. Then, the gap between the first deformation plate 30 and the inner wall of the cleaning cylinder 10 increases. The large intestine pressed by the first deformation plate 30 falls downward under the action of gravity, further promoting the rolling and kneading of the large intestine and tea, and improving the cleaning and adsorption effect of the tea on the large intestine.
[0032] As Figure 5As shown in the figure, the kneading assembly further includes protrusions 23. A number of protrusions 23 are equidistantly arranged on the inner wall of the cleaning cylinder 10. The multiple protrusions 23 will form an uneven kneading surface on the inner wall of the cleaning cylinder 10. The protrusions 23 form a semi-cylindrical structure, and the diameter of the protrusions 23 is smaller than the diameter of the extrusion push rod 22. The extrusion push rod 22 is as long as the chamber of the cleaning cylinder 10. By arranging multiple protrusions 23, after the extension section 31 is separated from the extrusion push rod 22, the extension section 31 continuously contacts each protrusion 23. An uneven surface similar to the shape of a washboard is formed on the inner wall of the cleaning cylinder 10 by the multiple protrusions 23, so that the large intestine is continuously kneaded, ensuring the cleaning effect and cleaning efficiency.
[0033] As Figure 3 shown, a discharge pipe is fixedly installed at the bottom of the cleaning cylinder 10. The discharge pipe is provided with a flap valve. By providing the discharge pipe for discharging materials, it is convenient to discharge the large intestine and tea residue that have been cleaned in the cleaning cylinder 10, so as to facilitate adding materials again for use.
[0034] The working principle of the present utility model: Add the large intestine and tea leaves from the feed hopper 11, connect the motor to the power supply and energize it. The main shaft 20 is driven to rotate by the motor. The main shaft 20 drives the first deformation plate 30 and the extension section 31 to perform synchronous circular motion. When the extension section 31 moves to contact the extrusion push rod 22, the thrust given to the extension section 31 by the extrusion push rod 22 causes the extension section 31 to deform and bend towards the main shaft 20. Furthermore, a larger gap is formed between the first deformation plate 30 and the inner wall of the cleaning cylinder 10. Then, the raw materials on one side of the extrusion push rod 22, that is, the large intestine and tea debris, can enter the space between the convex surface of the first deformation plate 30 and the inner wall of the cleaning cylinder 10. As the main shaft 20 continues to rotate, the extension section 31 is separated from the extrusion push rod 22. Then, the extension section 31 and the first deformation plate 30 recover their deformation and move towards the inner wall of the cleaning cylinder 10. The first deformation plate 30 and the extension section 31 can squeeze the raw materials, causing the large intestine and tea to collide, promoting the discharge of tea juice and thus being able to better adsorb the odor of the large intestine. The extension section 31 and the first deformation plate 30 perform circular motion with the main shaft 20, and the extension section 31 continuously contacts each protrusion 23. An uneven surface similar to the shape of a washboard is formed on the inner wall of the cleaning cylinder 10 by the multiple protrusions 23, so that the large intestine is continuously kneaded, and the raw materials can be pressed against the inner wall of the cleaning cylinder 10 to simulate manual kneading. When the extension section 31 moves to contact another extrusion push rod 22, the extension section 31 is deformed by extrusion again. Then, the gap between the first deformation plate 30 and the inner wall of the cleaning cylinder 10 increases, and the large intestine pressed by the first deformation plate 30 falls to the lower part under the action of gravity. In this way, the cleaning and odor removal are repeatedly realized.
[0035] The foregoing has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments, and what is described in the above embodiments and the specification only illustrates the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and all such changes and improvements fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.
Claims
1. A primary tea washing device for large intestine processing, characterized in that, Comprising: A cleaning cylinder (10), forming a sealed cylindrical structure and used for loading raw materials, and a motor is fixedly arranged on the outer wall surface of the cleaning cylinder (10); A feed hopper (11), fixedly installed at the top of the cleaning cylinder (10) and being a funnel structure for filling raw materials; A kneading assembly, arranged in the cavity of the cleaning cylinder (10) and used for kneading raw materials. The kneading assembly includes a main shaft (20), a kneading member (21) and a squeezing push rod (22). The main shaft (20) is rotatably connected to the cleaning cylinder (10) and fixedly connected to the output end of the motor. A plurality of kneading members (21) are arranged on the wall surface of the main shaft (20), and a plurality of squeezing push rods (22) are fixedly arranged on the inner wall of the cleaning cylinder (10). The squeezing push rod (22) can guide the kneading member (21) to deform and bend.
2. The tea primary washing device for large intestine processing according to claim 1, characterized in that: The kneading member (21) includes a first deformation plate (30) and an extension section (31). The extension section (31) is connected to the first deformation plate (30) to form a rod structure with a J-shaped cross section. A gap is left between the extension section (31) and the inner wall of the cleaning cylinder (10) to knead the raw materials.
3. The tea primary washing device for large intestine processing according to claim 2, wherein: Both the first deformation plate (30) and the extension section (31) are arc-shaped rod structures. The end face of the extension section (31) is fixedly connected to one of the end faces of the first deformation plate (30), and the other end face of the first deformation plate (30) is fixedly connected to the circumferential surface of the main shaft (20). The radius of the extension section (31) is smaller than the radius of the first deformation plate (30), and the concave surface of the extension section (31) bends and extends towards the main shaft (20).
4. The tea primary washing device for large intestine processing according to claim 1, characterized in that: The squeezing push rod (22) forms a columnar structure with a semi-circular cross section. The cross section of the squeezing push rod (22) is fixedly connected to the inner wall of the cleaning cylinder (10), and the convex surface of the squeezing push rod (22) faces the main shaft (20).
5. The tea primary washing device for large intestine processing according to claim 1, characterized in that: At least two squeezing push rods (22) are arranged on the inner wall of the cleaning cylinder (10). One squeezing push rod (22) is close to the position of the inner bottom surface of the cleaning cylinder (10), and the other squeezing push rod (22) is close to the position of the inner top surface of the cleaning cylinder (10).
6. The tea primary washing device for large intestine processing according to claim 1, characterized in that: The kneading assembly further includes protrusions (23). A plurality of protrusions (23) are equidistantly arranged on the inner wall of the cleaning cylinder (10), and the plurality of protrusions (23) will form an uneven kneading surface on the inner wall of the cleaning cylinder (10).
7. The tea primary washing device for large intestine processing according to claim 6, characterized in that: The protrusion (23) forms a semi-cylindrical structure. The diameter of the protrusion (23) is smaller than the diameter of the squeezing push rod (22), and the squeezing push rod (22) is as long as the cavity of the cleaning cylinder (10).
8. The tea primary washing device for large intestine processing according to claim 1, characterized in that: A discharge pipe is fixedly installed at the bottom of the cleaning cylinder (10), and a plug valve is provided on the discharge pipe.
Citation Information
Patent Citations
Pig intestine cleaning and decontaminating device
CN219205747U