Wine groove processing system
Through the combined design of guide wheel, feed belt, rotary drum, filter cloth, extrusion roller and water absorption hole, combined with water pumping components and sealing and cleaning components, the problem of incomplete dehydration in the wine tank treatment system is solved, achieving more efficient dehydration effect and cleaning of filter cloth.
Patent Information
- Application Number
- CN202510931845.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-07
- Publication Date
- 2025-09-05
AI Technical Summary
When the existing wine tank treatment system is dehydrated, the squeezed water will easily return to the wine tank again, resulting in poor dehydration effect.
The wine tank material is conveyed by multiple guide wheels and feed belts, combined with a combination of rotary drum, filter cloth, extrusion roller and water suction hole, and the water suction hole is fully dehydrated through the water suction assembly and the sealing and cleaning assembly. The water suction assembly includes pipelines, water suction holes and water pumps. The sealing and cleaning assembly includes a collision rod, airbag and control assembly. The opening and closing of the water suction hole is controlled by using photoelectric sensors and electromagnets.
It effectively prevents the squeezed water from returning to the wine tank material, improves the dehydration effect, and can maintain efficient water absorption performance during the pumping process, while cleaning the material on the surface of the filter cloth to ensure the normal use of the filter cloth.
Smart Images

Figure CN120593490A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of wine tank processing, and in particular relates to a wine tank processing system. Background Art
[0002] Jiu zao, a traditional Chinese medicine, is the residue left after brewing wine with sorghum, barley, and rice. It is produced in various parts of my country. It has the effects of promoting blood circulation, relieving pain, warming the middle and dispersing cold.
[0003] When processing the wine tank material, it needs to be dehydrated, which requires a processing system. The existing processing system relies on rolling rollers to squeeze and dehydrate the wine tank during dehydration, but the squeezed water easily returns to the wine tank again, resulting in poor dehydration effect.
[0004] Therefore, it is necessary to invent a wine tank processing system to solve the above problems. Summary of the Invention
[0005] In view of the above problems, the present invention provides a wine tank processing system to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: a wine tank processing system, comprising:
[0007] Racks, which provide space for wine tank handling;
[0008] A plurality of guide wheels are provided and rotatably mounted on the frame;
[0009] A feeding belt, installed outside the plurality of guide wheels, for conveying the wine tank material;
[0010] The anti-blocking and fully dehydrating component can fully dehydrate the wine tank materials on the feeding belt;
[0011] The anti-blocking and fully dehydrating component includes:
[0012] A rotating drum, rotatably mounted inside the frame;
[0013] A filter cloth is sleeved on the outside of the rotating drum;
[0014] The squeezing rollers are provided in a plurality and connected to the interior of the frame, and can cooperate with the rotating drum, the filter cloth, and the feeding belt to fully dehydrate the wine tank material;
[0015] Water absorption holes are equidistantly arranged on the outer side of the rotating drum;
[0016] A water pumping assembly can cooperate with the water suction hole to extract water from the wine tank material;
[0017] A blocking and cleaning component can block the water absorption hole away from the squeezing roller and clean the filter cloth corresponding to the water absorption hole after dehydration is completed;
[0018] A driving member is used to drive the rotating drum to rotate.
[0019] Furthermore, the pumping assembly includes:
[0020] Pipes are equidistantly connected around the interior of the drum, and positions of the pipes correspond to the water suction holes;
[0021] a cavity, disposed inside the drum;
[0022] a suction port, disposed inside the drum and used to connect the cavity with the pipeline;
[0023] a pipe head connected to the middle of one side of the drum, the pipe head being in communication with the cavity, and the pipe head being rotatably mounted on the frame;
[0024] The butt joint pipe is connected to the outside of the frame, and the connecting pipe and the pipe head are rotatably connected and communicated with each other.
[0025] Furthermore, the blocking and cleaning component includes:
[0026] a striker disposed inside the pipe;
[0027] An air bag is sleeved on the outside of the striker and is used to block the water absorption hole;
[0028] An inflation and deflation component capable of inflating and deflation the airbag;
[0029] An iron plate, slidably mounted inside the pipe, for mounting the striker;
[0030] The control component can control the position of the iron plate.
[0031] Furthermore, the control component includes:
[0032] A spring connects the side of the iron plate away from the water absorption hole to the inner wall of the pipe;
[0033] a frame fixedly mounted on the outside of the pipeline;
[0034] an electromagnet connected to the interior of the frame;
[0035] Photoelectric sensors are equidistantly connected around the outside of the drum, and the positions and number of the photoelectric sensors correspond to the pipes;
[0036] A reflective sheet connected to the inner wall of the frame, wherein the position and quantity of the reflective sheet correspond to the squeezing roller;
[0037] a controller connected to the outside of the drum and capable of cooperating with the photoelectric sensor to control the on and off of the electromagnet;
[0038] The battery is connected to the outside of the drum and supplies power to the controller, the photoelectric sensor and the electromagnet.
[0039] Furthermore, the inflation and deflation assembly includes:
[0040] a channel, disposed inside the striker, the channel being in communication with the airbag;
[0041] a connecting cavity, disposed in the iron plate, the connecting cavity being in communication with the channel;
[0042] a gas passage cavity, located between the electromagnet and the pipe;
[0043] A hose, connecting the air passage cavity and the connecting cavity;
[0044] The gas control component is used for injecting and extracting gas into the gas cavity.
[0045] Furthermore, the gas control assembly includes:
[0046] a cylinder body connected to the outside of the drum;
[0047] A connecting pipe connects the cylinder body with the air cavity;
[0048] a piston disposed in the cylinder;
[0049] A pulling plate is connected to one side of the piston, and the other side of the pulling plate extends to the outside of the cylinder.
[0050] Furthermore, the magnetic force generated when the electromagnet is energized can attract the iron plate through the pipe to carry the striker and the airbag away from the water absorption hole.
[0051] Furthermore, the airbag is configured as an annular airbag, which can come into contact with the inner wall of the water absorption hole when inflated, thereby blocking the water absorption hole.
[0052] Technical effects and advantages of the present invention:
[0053] 1. The present invention can realize dehydration of the wine tank material by cooperating with the pumping assembly and the water absorption hole to pump out the squeezed water, thereby preventing the squeezed water from returning to the wine tank material, thereby improving the dehydration effect. In addition, during the water pumping process, the water absorption holes that are not located at the squeezing roller position can be closed, so that the suction force at the water absorption holes at the squeezing roller position can be increased, thereby achieving better water extraction;
[0054] 2. The present invention can clean the filter cloth corresponding to the water absorption holes, separate the materials on the surface of the filter cloth, and ensure the normal use of the filter cloth. BRIEF DESCRIPTION OF THE DRAWINGS
[0055] Figure 1 A schematic structural diagram of a wine tank processing system according to an embodiment of the present invention is shown;
[0056] Figure 2 A schematic cross-sectional view of a wine tank processing system according to an embodiment of the present invention is shown;
[0057] Figure 3 The embodiment of the present invention is shown Figure 2 A in the middle is an enlarged structural diagram;
[0058] Figure 4 A schematic cross-sectional view of a rotating drum according to an embodiment of the present invention is shown;
[0059] Figure 5 The embodiment of the present invention is shown Figure 4 The enlarged structural diagram at B in the middle;
[0060] Figure 6 The structure of the drum of the embodiment of the present invention is shown Figure 1 ;
[0061] Figure 7 The structure of the drum of the embodiment of the present invention is shown Figure 2 ;
[0062] Figure 8 A schematic structural diagram of a rack according to an embodiment of the present invention is shown;
[0063] In the figure: 1. Frame; 2. Guide wheel; 3. Feed belt; 4. Rotating drum; 5. Filter cloth; 6. Squeeze roller; 7. Water suction hole; 8. Pipe; 9. Cavity; 10. Suction port; 11. Pipe head; 12. Butt pipe; 13. Impact rod; 14. Air bag; 15. Iron plate; 16. Spring; 17. Frame; 18. Electromagnet; 19. Photoelectric sensor; 20. Reflector; 21. Controller; 22. Battery; 23. Connecting cavity; 24. Air cavity; 25. Hose; 26. Cylinder; 27. Connecting pipe; 28. Piston; 29. Pull plate; 30. Operation port. DETAILED DESCRIPTION
[0064] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.
[0065] The present invention provides a wine tank processing system, such as Figures 1 to 8 As shown, it includes: a frame 1, a guide wheel 2, a feeding belt 3, and an anti-blocking and fully dehydrating component;
[0066] The frame 1 provides space for wine tank processing. The guide wheels 2 are provided in plurality and rotatably mounted on the frame 1. A pair of drive motors are fixedly mounted on the frame 1. The output shafts of the drive motors are fixedly connected to one end of the guide wheels 2. The feed belt 3 is installed outside the plurality of guide wheels 2 and is used to transport the wine tank material. The anti-blocking and full dehydration component can fully dehydrate the wine tank material on the feed belt 3.
[0067] The anti-blocking and fully dehydrating components include: a rotating drum 4, a filter cloth 5, a squeezing roller 6, a water suction hole 7, a water pumping component, a blocking and cleaning component, and a driving component;
[0068] The drum 4 is rotatably mounted inside the frame 1, and the filter cloth 5 is sleeved on the outside of the drum 4. The filter cloth 5 is in a taut state. The squeezing rollers 6 are provided in multiple numbers and connected to the inside of the frame 1. They can cooperate with the drum 4, the filter cloth 5, and the feeding belt 3 to fully dehydrate the wine tank material. The feeding belt 3 is located between the squeezing rollers 6 and the filter cloth 5. The squeezing rollers 6 are the rolling rollers on the wine tank dehydration equipment in the prior art. The water absorption holes 7 are equidistantly provided on the outside of the drum 4. Specifically, the water absorption holes 7 are provided in multiple groups. The multiple groups of water absorption holes 7 The water absorption holes 7 are equidistantly arranged around the outside of the drum 4. Each group of water absorption holes 7 includes a plurality of equidistantly arranged water absorption holes 7. The pumping assembly can cooperate with the water absorption holes 7 to extract moisture from the wine tank material. The sealing and cleaning assembly can seal the water absorption holes 7 away from the squeezing roller 6, and can clean the filter cloth 5 corresponding to the water absorption holes 7 after dehydration is completed. The driving member is used to drive the drum 4 to rotate. The driving member is a motor. The driving member is fixedly mounted on the outside of the frame 1, and the output shaft of the driving member is fixedly connected to the middle of one side of the drum 4.
[0069] When in use, the guide wheel 2 is driven by the driving motor to rotate, thereby moving the feeding belt 3, and at the same time the rotating drum 4 is driven by the driving member to rotate. The rotation direction of the rotating drum 4 and the feeding belt 3 is as follows: Figure 2 As shown, the squeezing roller 6 contacts the feeding belt 3, and the friction force causes the squeezing roller 6 to rotate accordingly, placing the wine tank material on the feeding belt 3. As the feeding belt 3 is conveyed, the wine tank material is squeezed and dehydrated when passing between the rotating drum 4 and the squeezing roller 6. The water absorption holes 7 that are not located at the position of the squeezing roller 6 are closed by the sealing and cleaning component, and the water absorption holes 7 located at the squeezing roller 6 are opened. The water extracted is extracted with the help of the pumping component, so that the squeezed water is prevented from returning to the wine tank material again, thereby improving the dehydration effect.
[0070] When the water pumping assembly is working, suction will be generated at each water absorption hole 7. If all the water absorption holes 7 are open, when the water pumping assembly is working, the suction generated by the water absorption hole 7 at the squeezing roller 6 will be dispersed by the other water absorption holes 7, making the suction weaker. By closing the water absorption holes 7 not at the position of the squeezing roller 6, the suction at the water absorption holes 7 at the position of the squeezing roller 6 can be improved, so that water can be better extracted. During extraction, the filter cloth 5 can prevent the wine tank material from being sucked into the water absorption hole 7. The dehydrated wine tank material moves with the feeding belt 3 to the outside of the frame 1, and then this part of the dehydrated material can be collected;
[0071] After use, the filter cloth 5 located at the water absorption hole 7 can be cleaned by the blocking and cleaning component to separate the material on the surface of the filter cloth 5, thereby ensuring the subsequent normal use of the filter cloth 5.
[0072] like Figure 4 and Figure 5 As shown, the pumping assembly includes: a pipe 8, a cavity 9, a suction port 10, a pipe head 11, and a butt pipe 12;
[0073] The pipes 8 are equidistantly and fixedly connected to the inside of the drum 4. The positions of the pipes 8 correspond to the water suction holes 7. Specifically, the pipes 8 correspond to the positions of each group of water suction holes 7. The pipes 8 are communicated with the water suction holes 7. The cavity 9 is arranged inside the drum 4. The suction port 10 is arranged inside the drum 4 for connecting the cavity 9 with the pipe 8. The pipe head 11 is fixedly connected to the middle of one side of the drum 4. The pipe head 11 is communicated with the cavity 9. The pipe head 11 is rotatably installed on the frame 1. The butt joint 12 is fixedly connected to the outside of the frame 1. The butt joint 12 and the pipe head 11 are rotatably connected and communicated. A sealing ring is provided between the butt joint 12 and the pipe head 11 to improve the sealing between the butt joint 12 and the pipe head 11.
[0074] The butt joint 12 is connected to the extraction end of the external pump body (not shown in the figure), and the squeezed water is extracted through the water suction hole 7, the suction port 10, the cavity 9, the pipe head 11, and the butt joint 12 by the suction force generated by the pump body.
[0075] like Figures 3 to 8 As shown, the blocking and cleaning assembly includes: a striker 13, an air bag 14, an inflation and deflation assembly, an iron plate 15, and a control assembly;
[0076] The striker 13 is arranged inside the pipe 8. The number and position of the striker 13 correspond to the water absorption holes 7. The end of the striker 13 can contact the filter cloth 5. The airbag 14 is fixedly sleeved on the outside of the striker 13 to block the water absorption holes 7. The inflation and deflation components can inflate and deflate the airbag 14. The iron plate 15 is slidably installed inside the pipe 8 for installing the striker 13. The control component can control the position of the iron plate 15.
[0077] When the water suction hole 7 is at the squeezing roller 6, the control component controls the iron plate 15 to move it away from the water suction hole 7, thereby moving with the striker 13 and the air bag 14, and then opening the water suction hole 7. When the water suction hole 7 leaves the squeezing roller 6, on the contrary, the control component controls the iron plate 15 to reset, so that the striker 13 and the air bag 14 are reset, and the water suction hole 7 is blocked. The air in the air bag 14 is extracted through the inflation and deflation component to make it deflate. Then, the control component controls the iron plate 15 to move back and forth rapidly, so that the striker 13 can continuously hit the filter cloth 5 to shake the material on its surface off the filter cloth 5, thereby cleaning it.
[0078] like Figures 2 to 8 As shown, the control assembly includes: a spring 16, a frame 17, an electromagnet 18, a photoelectric sensor 19, a reflector 20, a controller 21, and a battery 22;
[0079] There are multiple springs 16, which fix the side of the iron plate 15 away from the water absorption hole 7 to the inner wall of the pipe 8. The spring 16 and the iron plate 15 are galvanized to prevent rust. The frame 17 is fixedly installed on the outside of the pipe 8, and the electromagnet 18 is fixedly connected to the inside of the frame 17. The photoelectric sensors 19 are equidistantly fixedly connected to the outside of the rotating drum 4. The position and number of the photoelectric sensors 19 correspond to the pipe 8. The photoelectric sensor 19 is a reflective photoelectric sensor. The reflector 20 is fixedly connected to the inner wall of the frame 1. The position and number of the reflector 20 correspond to the squeezing roller 6. The controller 21 is fixedly connected to the outside of the rotating drum 4 and can cooperate with the photoelectric sensor 19 to control the power on and off of the electromagnet 18. The battery 22 is fixedly connected to the outside of the rotating drum 4 to power the controller 21, the photoelectric sensor 19, and the electromagnet 18.
[0080] As the drum 4 rotates, the photoelectric sensor 19 moves with it. When the photoelectric sensor 19 moves to the position corresponding to the reflective sheet 20, the light emitted by the photoelectric sensor 19 is reflected by the reflective sheet 20, so that a signal is received. The controller 21 controls the electromagnet 18 at the corresponding position to be energized to make it magnetic. The electromagnet 18 attracts the iron plate 15 to move away from the water absorption hole 7, so that the striker 13 and the airbag 14 move with it, so that the airbag 14 leaves the water absorption hole 7. At the same time, the movement of the iron plate 15 compresses the spring 16 to deform it and generate a force. When the photoelectric sensor 19 leaves the reflective sheet 20, the light emitted by the photoelectric sensor 19 cannot be reflected for reception. The controller 21 controls the corresponding electromagnet 18 to be de-energized, so that it loses its magnetism. At this time, the compressed spring 16 resets and resets the iron plate 15, the striker 13, and the airbag 14. The airbag 14 blocks the water absorption hole 7. Therefore, during the rotation of the drum 4, only the water absorption hole 7 located at the squeezing roller 6 can be opened, and the other water absorption holes 7 are closed.
[0081] like Figures 4 to 7As shown, the gas filling and discharging assembly includes: a channel, a connecting cavity 23, a gas passage cavity 24, a hose 25, and a gas control assembly;
[0082] The channel is set inside the striker 13, the channel is connected to the airbag 14, the connecting cavity 23 is set in the iron plate 15, the connecting cavity 23 is connected to the channel, the air cavity 24 is located between the electromagnet 18 and the pipe 8, the hose 25 connects the air cavity 24 with the connecting cavity 23, and the gas control component is used to inject and extract air into the air cavity 24.
[0083] The air in the air cavity 24 is continuously extracted through the gas control component. At this time, the air in the airbag 14 is extracted through the channel, the connecting cavity 23, the hose 25, and the air cavity 24, causing the airbag 14 to deflate. Air is continuously supplied to the air cavity 24 through the gas control component. Conversely, the airbag 14 can be expanded.
[0084] like Figure 5 As shown, the gas control assembly includes: a cylinder 26, a connecting pipe 27, a piston 28, and a pull plate 29;
[0085] The cylinder body 26 is fixedly connected to the outside of the rotating drum 4, and the connecting pipe 27 connects the cylinder body 26 with the air chamber 24. The piston 28 is arranged in the cylinder body 26. The pull plate 29 is fixedly connected to one side of the piston 28, and the other side of the pull plate 29 extends to the outside of the cylinder body 26. An operating port 30 is provided on the outside of the frame 1, and the pull plate 29 can be pulled or pushed through the operating port 30.
[0086] Pulling the pull plate 29 causes it to move with the piston 28 away from the drum 4, so that the connecting pipe 27 can extract the air in the air cavity 24. Conversely, pushing the pull plate 29 causes it to return with the piston 28, so that air can be injected into the air cavity 24.
[0087] When the iron plate 15 moves, it squeezes the hose 25, which is made of rubber. No matter how the iron plate 15 moves, the friction between the piston 28 and the cylinder 26 is sufficient to keep the piston 28 in a stationary state.
[0088] like Figure 3 As shown, the magnetic force generated by the electromagnet 18 when it is energized can attract the iron plate 15 through the pipe 8 to move the striker 13 and the air bag 14 away from the water suction hole 7.
[0089] like Figure 3 As shown, the airbag 14 is configured as an annular airbag. When the airbag 14 is inflated, it can come into contact with the inner wall of the water absorption hole 7, thereby blocking the water absorption hole 7.
[0090] Working principle: When in use, the guide wheel 2 is driven by the driving motor to rotate, thereby moving the feeding belt 3, and at the same time the rotating drum 4 is driven by the driving member to rotate. The rotation direction of the rotating drum 4 and the feeding belt 3 is as follows: Figure 2 As shown, the squeezing roller 6 is in conflict with the feeding belt 3, and the friction force causes the squeezing roller 6 to rotate accordingly, placing the wine trough material on the feeding belt 3. As the feeding belt 3 is transported, the wine trough material is squeezed when passing between the rotating drum 4 and the squeezing roller 6, thereby being dehydrated. As the rotating drum 4 rotates, the photoelectric sensor 19 moves with it. When the photoelectric sensor 19 moves to a position corresponding to the reflective sheet 20, the light emitted by the photoelectric sensor 19 is reflected by the reflective sheet 20, so that a signal is received, and the electromagnet 18 at the corresponding position is energized through the controller 21 to make it magnetic. The electromagnet 18 attracts the iron plate 15 to move it away from the water absorption hole 7, causing the striker 13 and the air bag 14 to move with it, causing the air bag 14 to leave the water absorption hole 7 and open the water absorption hole 7. At the same time, the iron plate 15 moves to The spring 16 is compressed to deform and generate a force. When the photoelectric sensor 19 leaves the reflective sheet 20, the light emitted by the photoelectric sensor 19 cannot be reflected for reception. The controller 21 controls the corresponding electromagnet 18 to be powered off, causing it to lose its magnetism. At this time, the compressed spring 16 is reset, bringing the iron plate 15, the striker 13, and the airbag 14 back to their original position. The airbag 14 blocks the water suction hole 7. Therefore, during the rotation of the drum 4, only the water suction hole 7 located at the squeezing roller 6 can be opened, and the remaining water suction holes 7 are closed. The butt joint 12 is connected to the extraction end of the pump body (not shown in the figure) outside. The suction force generated by the pump body draws the squeezed water away through the water suction hole 7, the suction port 10, the cavity 9, the pipe head 11, and the butt joint 12, so that the squeezed water can be prevented from returning to the wine tank material again, thereby improving the dehydration effect.
[0091] If all the water absorption holes 7 are open, during the pumping operation, the suction force generated by the water absorption holes 7 located at the squeezing roller 6 will be dispersed by the other water absorption holes 7, making the suction force weaker. By closing the water absorption holes 7 not located at the squeezing roller 6, the suction force of the water absorption holes 7 located at the squeezing roller 6 can be increased, thereby enabling better water extraction. During extraction, the filter cloth 5 can prevent the wine tank material from being sucked into the water absorption holes 7. The dehydrated wine tank material moves with the feeding belt 3 to the outside of the frame 1, and then this part of the dehydrated material can be collected.
[0092] When cleaning is required, stop the rotation of the drum 4 and the guide wheel 2, pull the pull plate 29 to move it with the piston 28 in the direction away from the drum 4, so that the connecting pipe 27 can extract the air in the air cavity 24. At this time, the air in the airbag 14 is extracted through the channel, the connecting cavity 23, the hose 25, and the air cavity 24, causing the airbag 14 to deflate. The airbag 14 leaves the inner wall of the water absorption hole 7, and the electromagnets 18 are intermittently energized. The reciprocating motion of the iron plate 15 can be realized as above, so that the iron plate 15 hits the surface of the filter cloth 5, so that the material on the surface is shaken off the filter cloth 5, and the filter cloth 5 is cleaned to ensure the subsequent normal use of the filter cloth 5.
[0093] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same.
Claims
1. A wine tank processing system, characterized in that: include: A rack (1) provides space for wine tank processing; A plurality of guide wheels (2) are provided and rotatably mounted on the frame (1); A feeding belt (3) is installed outside the plurality of guide wheels (2) and is used to transport the wine tank material; An anti-blocking and fully dehydrating component can fully dehydrate the wine tank material on the feeding belt (3); The anti-blocking and fully dehydrating component includes: A rotating drum (4) is rotatably mounted inside the frame (1); A filter cloth (5) is sleeved on the outside of the rotating drum (4); The squeezing rollers (6) are provided in a plurality and connected to the interior of the frame (1), and can cooperate with the rotating drum (4), the filter cloth (5), and the feeding belt (3) to fully dehydrate the wine tank material; Water absorption holes (7) are arranged at equal intervals on the outer side of the rotating drum (4); A water extraction component can cooperate with the water absorption hole (7) to extract water from the wine tank material; A blocking and cleaning component can block the water absorption hole (7) away from the squeezing roller (6), and can clean the filter cloth (5) corresponding to the water absorption hole (7) after dehydration is completed; A driving member is used for driving the rotating drum (4) to rotate.
2. The wine tank treatment system according to claim 1, characterized in that: The pumping assembly comprises: A pipe (8) is connected to the inside of the drum (4) at equal intervals, and the position of the pipe (8) corresponds to the water absorption hole (7); a cavity (9) disposed inside the rotating drum (4); a suction port (10) disposed inside the drum (4) and used to connect the cavity (9) with the pipe (8); A pipe head (11) is connected to the middle of one side of the rotating drum (4), the pipe head (11) is communicated with the cavity (9), and the pipe head (11) is rotatably mounted on the frame (1); A butt joint pipe (12) is connected to the outside of the frame (1), and the butt joint pipe (12) and the pipe head (11) are rotatably connected and communicated with each other.
3. The wine tank treatment system according to claim 2, characterized in that: The blocking and cleaning component includes: A striker (13) is arranged inside the pipe (8); An air bag (14) is sleeved on the outside of the striker (13) and is used to block the water absorption hole (7); An inflation and deflation assembly capable of inflating and deflation the airbag (14); An iron plate (15) is slidably mounted inside the pipe (8) and is used to mount the striker (13); The control component can control the position of the iron plate (15).
4. The wine tank treatment system according to claim 3, characterized in that: The control component includes: A spring (16) connects the side of the iron plate (15) away from the water absorption hole (7) to the inner wall of the pipe (8); a frame (17) fixedly mounted on the outside of the pipe (8); an electromagnet (18) connected to the interior of the frame (17); Photoelectric sensors (19) are connected to the outside of the drum (4) at equal intervals, and the positions and number of the photoelectric sensors (19) correspond to the pipes (8); A reflective sheet (20) is connected to the inner wall of the frame (1), and the position and number of the reflective sheet (20) correspond to the squeezing roller (6); A controller (21) is connected to the outside of the rotating drum (4) and can cooperate with the photoelectric sensor (19) to control the on and off of the electromagnet (18); The storage battery (22) is connected to the outside of the rotating drum (4) and supplies power to the controller (21), the photoelectric sensor (19) and the electromagnet (18).
5. The wine tank treatment system according to claim 4, characterized in that: The inflation and deflation assembly comprises: a channel, disposed inside the striker (13), the channel being in communication with the airbag (14); A connecting cavity (23) is provided in the iron plate (15), and the connecting cavity (23) is communicated with the channel; a gas passage cavity (24) located between the electromagnet (18) and the pipe (8); A hose (25) connects the air passage cavity (24) and the connecting cavity (23); A gas control component is used for injecting and extracting gas into the gas cavity (24).
6. The wine tank treatment system according to claim 5, characterized in that: The gas control assembly comprises: a cylinder (26) connected to the outside of the drum (4); A connecting pipe (27) connects the cylinder (26) and the air passage cavity (24); a piston (28) disposed in the cylinder (26); A pulling plate (29) is connected to one side of the piston (28), and the other side of the pulling plate (29) extends to the outside of the cylinder (26).
7. The wine tank treatment system according to claim 6, characterized in that: The magnetic force generated when the electromagnet (18) is energized can attract the iron plate (15) through the pipe (8) to move the striker (13) and the air bag (14) away from the water absorption hole (7).
8. The wine tank treatment system according to claim 7, characterized in that: The airbag (14) is configured as an annular airbag, and when inflated, the airbag (14) can come into contact with the inner wall of the water absorption hole (7), thereby blocking the water absorption hole (7).