Filling device for wine brewing

By designing positioning, filling, and cleaning mechanisms, the problems of residual liquor, inaccurate alignment, and water droplets affecting light inspection in brewing bottling equipment were solved, achieving efficient and accurate filling and cleaning, and improving the finished product qualification rate.

CN224172440UActive Publication Date: 2026-04-28YUNNAN MAITREYA HUARONG IMPRESSION WINE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YUNNAN MAITREYA HUARONG IMPRESSION WINE CO LTD
Filing Date
2025-06-11
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing brewing bottling equipment is prone to leaving residual liquor during the bottling process, leading to contamination and waste of raw materials; inaccurate bottle alignment causes liquor to spill; and water droplets on the bottle surface after bottling affect the light inspection judgment.

Method used

The design incorporates a positioning mechanism, a filling mechanism, and a cleaning mechanism. The positioning mechanism ensures accurate bottle alignment for filling, the filling mechanism prevents liquid residue, and the cleaning mechanism removes water droplets from the bottle.

Benefits of technology

It improves the accuracy of bottling, prevents wine residue and waste, ensures the accuracy of light inspection, and increases the finished product qualification rate.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224172440U_ABST
    Figure CN224172440U_ABST
Patent Text Reader

Abstract

The filling device comprises a conveying belt device, a device body and a control cabinet, the device body is arranged above the conveying belt device, the control cabinet is arranged on the outer side of the conveying belt device, and the conveying belt device, the device body and the control cabinet are in telecommunication connection; the device body further comprises a positioning device, a filling mechanism and a cleaning mechanism, the positioning device for assisting wine bottle filling and positioning is arranged above the middle of the conveying belt device, the filling mechanism is arranged on the rear side of the positioning device, and the cleaning mechanism for cleaning water drops on a bottle body is arranged on the right side of the positioning device. The wine bottle filling device has the functions of guaranteeing the filling effect and being suitable for filling operation of wine bottles with different specifications through adjustment; the situation that pollution is caused by wine liquid residues is avoided, and the situation that raw materials are wasted due to the fact that the wine liquid in the filling barrel is not emptied is prevented; the influence on judgment of inspectors caused by projection of water drops on the surfaces of the wine bottles during light inspection is prevented, the qualified rate of finished products is improved, and working errors are reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of food filling technology, and in particular relates to a filling device for brewing. Background Technology

[0002] In the winemaking process, after the finished wine is produced, it needs to be bottled. The bottling process is usually carried out in a sterile and dust-free environment. The bottling equipment generally uses automated production lines to improve efficiency and ensure bottling accuracy. After bottling, a light inspection is performed to screen out defective products. Then, the qualified products enter the subsequent packaging process for finished product packaging.

[0003] Existing technology, such as the quantitative filling device for brewing disclosed in Chinese Patent (CN216235993U), includes a fixed frame, on which a filling barrel is fixedly installed. The filling barrel has a wine storage chamber, and a sealing plug is slidably installed within the wine storage chamber. An inlet pipe is fixedly connected to the top of the sealing plug, and a fixed shaft is fixedly connected to the side wall of the inlet pipe near its bottom edge. A connecting rod is hinged to the inlet pipe via the fixed shaft, and an eccentric shaft is hinged to the other end of the connecting rod. The eccentric shaft is threaded onto the eccentric part of a rotating wheel, which is rotatably mounted on the side wall via a power shaft. Through the eccentric connecting rod structure composed of the rotating wheel, connecting rod, and sealing plug, the sealing plug performs a fixed-length reciprocating linear motion, achieving a quantitative squeezing effect on the wine in the wine storage chamber and quantitative filling of the filling bottle.

[0004] The existing technology has the following drawbacks: First, during the filling process, some wine residue may remain on the filling head. This residue can easily get onto the bottle neck when filling different bottles, leading to contamination and waste of raw materials. Second, on a linear production line, when the bottle is conveyed to the filling device, the bottle neck may not be precisely aligned with the bottom of the filling device, causing the bottle neck to shift during filling and resulting in spillage and waste. Third, before entering the light inspection device after filling, the surface of the bottle must be wiped dry if there are water droplets. Otherwise, the projection of the water droplets on the surface may be mistaken by production workers as foreign matter inside the bottle, leading to errors.

[0005] Therefore, this utility model provides a bottling device for brewing. Utility Model Content

[0006] To solve the above-mentioned technical problems, this utility model discloses a bottling device for brewing, which ensures the bottling effect and can be adjusted to adapt to the bottling operation of different bottle sizes; it eliminates the pollution caused by residual wine and prevents the waste of raw materials caused by the wine not being emptied from the bottling cylinder; it removes water droplets from the bottle body after bottling, preventing water droplets from casting shadows on the bottle surface during light inspection and affecting the judgment of inspectors, thereby improving the pass rate of finished products and reducing work errors.

[0007] To achieve the above-mentioned technical effects, this utility model provides a bottling device for brewing, including a conveyor belt device, a device body, and a control cabinet. The device body is located above the conveyor belt device, and the control cabinet is located outside the conveyor belt device. The conveyor belt device, the device body, and the control cabinet are electrically connected. The device body also includes a positioning device, a filling mechanism, and a cleaning mechanism. The positioning device for assisting in the positioning of the bottle during filling is located above the middle of the conveyor belt device. The filling mechanism for preventing liquid residue is located behind the positioning device. The cleaning mechanism for cleaning water droplets from the bottle is located on the right side of the positioning device.

[0008] Preferably, the positioning device further includes positioning mechanism a and positioning mechanism b, with positioning mechanism a respectively disposed on the front and rear sides of the conveyor belt device, and positioning mechanism b disposed above the front positioning mechanism a.

[0009] Preferably, the positioning mechanism a further includes a mounting plate a, a slider a, a roller, a conveyor belt, a drive motor a, and an adjusting mechanism a. The slider a is slidably disposed inside the conveyor belt device. The mounting plates a are respectively disposed on the upper and lower sides of the rear side of the slider a. The mounting plates a are configured as trapezoidal structures. The rollers are respectively disposed between the mounting plates a. The conveyor belt is disposed on the outer side of the rollers. The surface of the conveyor belt is provided with a flexible structure that protects and adheres to the wine bottle. The drive motor a is disposed at the upper end of the rollers. The adjusting mechanism a is disposed on the right side of the slider a.

[0010] Preferably, the adjustment mechanism a further includes a rack a, a gear a, a rotating shaft a, a transmission wheel set, a rotating shaft b, and an adjustment knob a. The rack a is located at the middle of the right end of the slider a, the gear a is meshed with the right side of the rack a, the rotating shaft a is coaxially rotatably connected to the gear a, the rotating shaft b is located on the right side of the rotating shaft a, the transmission wheel set is located between the rotating shaft a and the rotating shaft b, and the adjustment knob a is located at the upper end of the rotating shaft b.

[0011] Preferably, the positioning mechanism b further includes a housing, a slider b, a rack b, a gear b, a rotating shaft c, an adjusting knob b, and a limiting turntable. The housing is positioned above the positioning mechanism a, the slider b is slidably connected inside the housing, the rack b is positioned in front of the slider b, the gear b is meshed in front of the rack b, the rotating shaft c is coaxially rotatably connected to the gear b inside the housing, the adjusting knob b is positioned above the rotating shaft c, and the limiting turntable is positioned above and behind the housing.

[0012] Preferably, the limiting turntable further includes a mounting plate b, a rotating platform, a rotating shaft d, a limiting plate, and a limiting block. The mounting plate b is located above and behind the slider b, the rotating platform is located above the mounting plate b, the rotating shaft d is located above the rotating platform, the limiting plate is located on the side of the rotating shaft d, the left surface of the limiting plate is provided with a flexible structure to protect the bottle body, and the limiting block is fixedly located on the mounting plate b behind the rotating shaft d.

[0013] Preferably, the filling mechanism further includes a base a, a sliding cylinder a, a filling cylinder, an air inlet pipe, a liquid inlet pipe, an electric valve a, an electric valve b, a micro flow meter, and a sensor a. The base a is located behind the positioning mechanism a, the sliding cylinder a is located in front of the base a, the filling cylinder is located in front of the sliding surface of the sliding cylinder a, the air inlet pipe is located at the top of the filling cylinder, and the upper end of the air inlet pipe is connected to a compressed air branch pipe through a gas hose. The liquid inlet pipe is located on the right side of the filling cylinder, the electric valve a is located on the right side of the liquid inlet pipe, the electric valve b is located on the air inlet pipe, the micro flow meter is located on the right side of the electric valve a, and the sensor a is located on the left side of the filling cylinder.

[0014] Preferably, the cleaning mechanism further includes a base b, a sliding cylinder b, a mounting plate c, a ring pipe, gas nozzles, and a sensor b. The base b is respectively disposed on the front and rear sides of the conveyor belt device, the sliding cylinder b is respectively disposed on the side of the base b, the mounting plate c is disposed between the sliding cylinders b, the ring pipe is disposed below the mounting plate b, the right side of the ring pipe is provided with a gas pipe connected to the compressed gas branch pipe, the gas nozzles are respectively disposed obliquely on the inner side of the ring pipe, and the sensor b is disposed on the left side of the ring pipe.

[0015] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0016] The device is equipped with positioning mechanisms a and b, which can be accurately aligned with the bottom of the filling mechanism to ensure filling effect. It can also be adjusted to accommodate filling operations of different bottle sizes. A step-by-step filling mechanism prevents liquid residue from remaining inside the filling cylinder, eliminating contamination and preventing waste of raw materials due to incomplete emptying of the filling cylinder. A cleaning mechanism removes water droplets from the bottle after filling, preventing water droplets from casting shadows on the bottle surface during light inspection and affecting the inspector's judgment, thus improving the pass rate of finished products and reducing work errors. Attached Figure Description

[0017] Figure 1 This is a front view of the present invention;

[0018] Figure 2 yes Figure 1 A sectional view of section a.

[0019] Figure 3 yes Figure 2 A partial schematic diagram of b in the middle;

[0020] Figure 4 This is the left view of this utility model;

[0021] Figure 5 yes Figure 3 A sectional view of section c in the middle;

[0022] Figure 6 yes Figure 4 A partial schematic diagram of d in the middle;

[0023] Figure 7 This is an isometric view of the present invention;

[0024] Figure 8 yes Figure 7 A partial schematic diagram of 'e' in the middle;

[0025] The attached diagram lists the components represented by each number as follows:

[0026] 1. Conveyor belt device; 2. Positioning mechanism a; 3. Positioning mechanism b; 4. Filling mechanism; 5. Cleaning mechanism; 6. Mounting plate a; 7. Slider a; 8. Roller; 9. Conveyor belt; 10. Drive motor a; 11. Rack a; 12. Gear a; 13. Shaft a; 14. Transmission wheel set; 15. Shaft b; 16. Adjusting knob a; 17. Housing; 18. Slider b; 19. Rack b; 20. Gear b; 21. Shaft c; 22. Adjusting knob 23. Button b; 24. Mounting plate b; 25. Rotating platform; 26. Rotating shaft d; 27. Limiting plate; 28. Limiting block; 29. ​​Base a; 30. Slide cylinder a; 31. Filling cylinder; 32. Air inlet pipe; 33. Liquid inlet pipe; 34. Electric valve a; 35. Electric valve b; 36. Miniature flow meter; 37. Sensor a; 38. Base b; 39. Slide cylinder b; 40. Mounting plate c; 41. Ring pipe; 42. Gas nozzle; 43. Sensor b. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0028] The prior art in this embodiment has the following problems: The inventors have found the following defects in the prior art: 1. During the filling process, some wine is easily left on the filling head. This residual wine is easy to stick to the bottle mouth when filling different bottles. The wine at the bottle mouth can easily cause contamination and waste of raw materials; 2. On a straight production line, when the bottle is conveyed to the bottom of the filling device, the bottle mouth cannot be accurately aligned with the bottom of the filling device, causing the bottle mouth to deviate during filling, resulting in wine spillage and waste; 3. Before entering the light inspection device after filling, the surface of the bottle is covered with water droplets and needs to be wiped dry. Otherwise, after the bottle enters the light inspection device, the projection of the water droplets on the surface will cause the production workers to mistakenly judge the projection as foreign matter inside the bottle, resulting in work errors. Example 1

[0029] like Figures 1 to 8 As shown:

[0030] Therefore, the inventor provides a bottling device for brewing, including a conveyor belt device 1, a device body, and a control cabinet. The device body is located above the conveyor belt device 1, and the control cabinet is located outside the conveyor belt device 1. The conveyor belt device 1, the device body, and the control cabinet (not shown in the figure) are electrically connected. The device body also includes a positioning device, a filling mechanism 4, and a cleaning mechanism 5. The positioning device for assisting in the positioning of the bottle during filling is located above the middle of the conveyor belt device 1. The filling mechanism 4 for preventing liquid residue is located behind the positioning device. The cleaning mechanism 5 for cleaning water droplets from the bottle is located on the right side of the positioning device.

[0031] Using the above scheme, the empty wine bottle enters the middle of the positioning device from the left side of the conveyor belt device 1. After being positioned by the positioning device, the bottle mouth is aligned with the bottom of the filling mechanism 4. The filling mechanism 4 automatically fills the bottle downwards according to the set wine volume. After being filled, the bottle continues to move to the right along the conveyor belt device 1 and enters the bottom of the cleaning mechanism 5. The cleaning mechanism 5 automatically cleans the water droplets on the bottle downwards. After that, the cleaning mechanism 5 is retracted, and the bottle is transported to the right by the conveyor belt device 1 to the light inspection mechanism to continue the next process. Example 2

[0032] like Figures 1 to 8 As shown:

[0033] Furthermore, the positioning device also includes positioning mechanism a2 and positioning mechanism b3. Positioning mechanism a2 is respectively arranged on the front and rear sides of the conveyor belt device 1, and positioning mechanism b3 is arranged above the front positioning mechanism a2.

[0034] Furthermore, the positioning mechanism a2 also includes a mounting plate a6, a slider a7, a roller 8, a conveyor belt 9, a drive motor a10, and an adjustment mechanism a. The slider a7 is slidably disposed inside the conveyor belt device 1. The mounting plate a6 is disposed on the upper and lower sides of the rear side of the slider a7. The mounting plate a6 is configured as a trapezoidal structure. The roller 8 is disposed between the mounting plates a6. The conveyor belt 9 is disposed on the outer side of the roller 8. The surface of the conveyor belt 9 is provided with a flexible structure (not shown in the figure) to protect and fit the wine bottle. The drive motor a10 is disposed at the upper end of the roller 8. The adjustment mechanism a is disposed on the right side of the slider a7.

[0035] Furthermore, the adjustment mechanism a also includes a rack a11, a gear a12, a rotating shaft a13, a transmission wheel set 14, a rotating shaft b15, and an adjustment knob a16. The rack a11 is located at the middle of the right end of the slider a7. The gear a12 is meshed and located on the right side of the rack a11. The rotating shaft a13 is coaxially rotatably connected to the gear a12. The rotating shaft b15 is located on the right side of the rotating shaft a13. The transmission wheel set 14 is located between the rotating shaft a13 and the rotating shaft b15. The adjustment knob a16 is located at the upper end of the rotating shaft b15.

[0036] Furthermore, the positioning mechanism b3 also includes a housing 17, a slider b18, a rack b19, a gear b20, a rotating shaft c21, an adjusting knob b22, and a limiting turntable. The housing 17 is located above the positioning mechanism a2. The slider b18 is slidably connected inside the housing 17. The rack b19 is located in front of the slider b18. The gear b20 is meshed in front of the rack b19. The rotating shaft c21 is coaxially rotatably connected to the gear b20 inside the housing 17. The adjusting knob b22 is located above the rotating shaft c21. The limiting turntable is located above and behind the housing 17.

[0037] Furthermore, the limiting turntable also includes a mounting plate b23, a rotating platform 24, a rotating shaft d25, a limiting plate 26, and a limiting block 27. The mounting plate b23 is located above and behind the slider b18, the rotating platform 24 is located above the mounting plate b23, the rotating shaft d25 is located above the rotating platform 24, the limiting plate 26 is located on the side of the rotating shaft d, and the left side surface of the limiting plate 26 is provided with a flexible structure to protect the bottle body (not shown in the figure). The limiting block 27 is fixedly installed on the mounting plate b23 behind the rotating shaft d25.

[0038] Before filling begins, depending on the required bottle diameter, the workshop workers first rotate the adjustment knob a16, which drives the gear a12 on the rotating shaft a13 to rotate via the transmission wheel set 14 on the rotating shaft b15. This drives the rack a11, causing the slider a7 to slide back and forth along the mounting plate a6, thus matching the distance between the conveyor belts 9 on both sides of the conveyor belt device 1 to the bottle diameter. Then, the adjustment knob b22 is rotated, causing the rotating shaft c21 to rotate. The rotating shaft c21 drives the gear b20, causing the slider b18 on the rack b19 to slide within the outer casing 17. This causes the slider b18 to move the limiting turntable left and right to accommodate the bottle neck diameters of different sizes. After adjustment, the conveyor belt device 1 is started for filling.

[0039] Empty bottles enter the bottom positioning mechanism from the right side of the conveyor belt device 1. Because the empty bottles did not fall completely onto the center line of the conveyor belt device 1 after entering the previous step of empty bottle feeding and sterilization, the drive motor a10 rotates the roller 8 on the mounting plate a6 as the empty bottle enters the bottom positioning mechanism. This rotation drives the conveyor belt 9. The empty bottle enters from the left opening and moves to the center of the conveyor belt device 1 under the drive of the conveyor belt 9, completing the initial adjustment of the empty bottle's position. After the empty bottle enters the filling mechanism 4, the sensor a36 detects the empty bottle signal and controls the rotation of the slider b via the control cabinet. The rotating platform 24 rotates, causing the limiting plate 26 on the rotating shaft d25 to rotate. The limiting plate 26 rotates and contacts the bottle body, restricting the position of the bottle mouth so that the bottle mouth is aligned with the bottom of the filling mechanism 4 above, completing the docking of the bottle mouth with the filling mechanism 4. The limiting block 27 can limit the position of the limiting plate 26 to prevent the rotating platform 24 from rotating too much and causing the bottle to deviate. In this way, during the filling process, the bottle mouth can be accurately aligned with the bottom of the filling mechanism 4 to ensure the filling effect. At the same time, it can be adjusted to adapt to the filling operation of different bottle sizes. After filling is completed, the rotating platform 24 rotates back to release the restriction, and the conveyor belt device 1 starts to send out the filled bottle. Example 3

[0040] like Figures 1 to 8 As shown:

[0041] Furthermore, the filling mechanism 4 also includes a base a28, a sliding cylinder a29, a filling cylinder 30, an air inlet pipe 31, a liquid inlet pipe 32, an electric valve a33, an electric valve b34, a micro flow meter 35, and a sensor a36. The base a28 is located on the rear side of the positioning mechanism a2, the sliding cylinder a29 is located on the front side of the base a28, the filling cylinder 30 is located on the front side of the sliding cylinder a29, the air inlet pipe 31 is located on the top of the filling cylinder 30, and the upper end of the air inlet pipe 31 is connected to the compressed air branch pipe through a gas hose. The liquid inlet pipe 32 is located on the right side of the filling cylinder 30, the electric valve a33 is located on the right side of the liquid inlet pipe 32, the electric valve b34 is located on the air inlet pipe 31, the micro flow meter 35 is located on the right side of the electric valve a33, and the sensor a36 is located on the left side of the filling cylinder 30.

[0042] When the bottle enters below the filling mechanism 4, sensor a36 detects the bottle signal. The positioning device then positions the bottle, the conveyor belt 1 stops, and the sliding cylinder a29 on the filling mechanism 4 slides downwards, causing the lower end of the filling cylinder 30 to extend into the bottle mouth. Simultaneously, the electric valve a33 opens, and the liquid flows from the inlet pipe 32 into the filling cylinder 30. During this process, the micro flow meter 35 monitors the flow rate and transmits it to the control cabinet. After conversion into a volume signal, the electric valve a33 closes once the volume reaches the set value. Because the diameter of the lower outlet of the filling cylinder 30 is smaller than the diameter of the right inlet pipe 32, the electric valve a33... After 3 is closed, the wine in the filling cylinder 30 is still not emptied. Then, the electric valve b34 on the air inlet pipe 31 is opened to introduce clean compressed gas into the filling cylinder 30, which discharges the remaining wine in the filling cylinder 30 into the bottle, preventing the wine from remaining inside the filling cylinder 30 and preventing contamination caused by the wine residue. At the same time, the liquid inlet pipe 32 performs distributed filling by discharging the wine into the filling cylinder 30 and then closing it, preventing the waste of raw materials caused by the wine not being emptied from the filling cylinder 30. After filling is completed, the slide cylinder a29 is raised, the filling cylinder 30 leaves the bottle mouth, and the conveyor belt device 1 is started to transport the bottle to the right to the next process. Example 4

[0043] like Figures 1 to 8 As shown:

[0044] Furthermore, the cleaning mechanism 5 also includes a base b37, a sliding cylinder b38, a mounting plate c39, a ring pipe 40, a gas nozzle 41, and a sensor b42. The base b37 is respectively arranged on the front and rear sides of the conveyor belt device 1, the sliding cylinder b38 is respectively arranged on the side of the base b37, the mounting plate c39 is arranged between the sliding tables of the sliding cylinder b38, the ring pipe 40 is arranged below the mounting plate b23, and a gas pipe connected to the compressed gas branch pipe is arranged on the right side of the ring pipe 40. The gas nozzle 41 is respectively inclinedly arranged on the inner side of the ring pipe 40, and the sensor b42 is arranged on the left side of the ring pipe 40.

[0045] After filling, the bottles enter the cleaning mechanism 5. After the sensor b42 detects the bottle signal, the slide cylinder b38 controls the slide to descend, causing the ring plate under the mounting plate c39 to descend and place the bottle in the middle of the ring tube 40. At the same time, the gas nozzle 41 is activated, spraying compressed clean gas onto the bottle body to blow off the water droplets on the bottle surface, completing the cleaning. Afterwards, the slide cylinder b38 retracts, and the conveyor belt device 1 is activated to transport the bottle to the right to the light inspection mechanism (not shown in the figure) for the next process. This process removes the water droplets from the bottle body after filling, preventing water droplets from casting shadows on the bottle surface during light inspection and affecting the inspector's judgment, thereby improving the pass rate of the finished product and reducing work errors.

[0046] In summary, the device is equipped with positioning mechanisms a2 and b3, which can be accurately aligned with the bottom of the filling mechanism 4 to ensure filling effect. It can also be adjusted to accommodate filling operations of different bottle sizes. The step-by-step filling mechanism 4 prevents liquid residue from remaining inside the filling cylinder 30, eliminating contamination caused by residue and preventing waste of raw materials due to incomplete emptying of the filling cylinder 30. A cleaning mechanism 5 is included to remove water droplets from the bottle body after filling, preventing water droplets from casting shadows on the bottle surface during light inspection and affecting the inspector's judgment, thus improving the finished product pass rate and reducing work errors.

[0047] The working principle of this utility model:

[0048] Before filling begins, depending on the required bottle diameter, the workshop workers first rotate the adjustment knob a16, which drives the gear a12 on the rotating shaft a13 to rotate via the transmission wheel set 14 on the rotating shaft b15. This drives the rack a11, causing the slider a7 to slide back and forth along the mounting plate a6, thus matching the distance between the conveyor belts 9 on both sides of the conveyor belt device 1 to the bottle diameter. Then, the adjustment knob b22 is rotated, causing the rotating shaft c21 to rotate. The rotating shaft c21 drives the gear b20, causing the slider b18 on the rack b19 to slide within the housing 17. This causes the slider b18 to move the limiting turntable left and right to accommodate the neck diameter of different bottle sizes. After adjustment, the conveyor belt device 1 is started for filling.

[0049] Empty bottles enter the bottom positioning mechanism from the right side of the conveyor belt device 1. Because the empty bottles did not fall completely onto the center line of the conveyor belt device 1 after entering the previous step of empty bottle feeding and sterilization, the drive motor a10 rotates the roller 8 on the mounting plate a6 as the empty bottle enters the bottom positioning mechanism. This rotation drives the conveyor belt 9. The empty bottle enters from the left opening and moves to the center of the conveyor belt device 1 under the drive of the conveyor belt 9, completing the initial adjustment of the empty bottle's position. After the empty bottle enters the filling mechanism 4, the sensor a36 detects the empty bottle signal and controls the rotation of the slider b via the control cabinet. The rotating platform 24 rotates, which drives the limiting plate 26 on the rotating shaft d25 to rotate. The limiting plate 26 rotates and contacts the bottle body, restricting the position of the bottle mouth, so that the bottle mouth is aligned with the bottom of the filling mechanism 4 above, completing the docking of the bottle mouth and the filling mechanism 4. The limiting block 27 can limit the position of the limiting plate 26 to prevent the rotating platform 24 from rotating too much and causing the bottle to deviate. In this way, during the filling process, the bottle mouth can be accurately aligned with the bottom of the filling mechanism 4 to ensure the filling effect. At the same time, it can be adjusted to adapt to the filling operation of different bottle sizes. After filling is completed, the rotating platform 24 rotates back to release the restriction, and the conveyor belt device 1 starts to send out the filled bottle.

[0050] After the bottle enters below the filling mechanism 4, sensor A36 detects the bottle signal. The positioning device then positions the bottle, stopping the conveyor belt 1. The sliding cylinder A29 on the filling mechanism 4 slides downwards, causing the lower end of the filling cylinder 30 to extend into the bottle mouth. Simultaneously, the electric valve A33 opens, allowing the liquid to flow from the inlet pipe 32 into the filling cylinder 30. During this process, the micro flow meter 35 monitors the flow rate and transmits it to the control cabinet. After conversion into a volume signal, the electric valve A33 closes once the volume reaches the set value. Because the diameter of the lower outlet of the filling cylinder 30 is smaller than the diameter of the right inlet pipe 32, the electric valve A33 closes when it is closed. After the filling cylinder 30 is closed, the wine in the filling cylinder 30 is still not emptied. Then, the electric valve b34 on the air inlet pipe 31 is opened to introduce clean compressed gas into the filling cylinder 30, which discharges the remaining wine in the filling cylinder 30 into the bottle, preventing the wine from remaining inside the filling cylinder 30 and preventing the wine residue from causing pollution. At the same time, the liquid inlet pipe 32 discharges the wine into the filling cylinder 30 and then closes to perform distributed filling, preventing the waste of raw materials caused by the wine not being emptied from the filling cylinder 30. After filling is completed, the sliding table cylinder a29 is raised, the filling cylinder 30 leaves the bottle mouth, and the conveyor belt device 1 is started to transport the bottle to the right to the next process.

[0051] After filling, the bottles enter the cleaning mechanism 5. After the sensor b42 detects the bottle signal, the slide cylinder b38 controls the slide to descend, causing the ring plate under the mounting plate c39 to descend and place the bottle in the middle of the ring tube 40. At the same time, the gas nozzle 41 is activated, spraying compressed clean gas onto the bottle body to blow off the water droplets on the bottle surface, completing the cleaning. Afterwards, the slide cylinder b38 retracts, and the conveyor belt device 1 is activated to transport the bottle to the right to the light inspection mechanism for the next process. This removes the water droplets from the bottle body after filling, preventing water droplets from casting shadows on the bottle surface during light inspection and affecting the inspector's judgment, thereby improving the pass rate of the finished product and reducing work errors.

[0052] This concludes the description of the working principle of the device.

[0053] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0054] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A bottling apparatus for brewing, comprising a conveyor belt device (1), an apparatus body, and a control cabinet, wherein the apparatus body is disposed above the conveyor belt device (1), the control cabinet is disposed outside the conveyor belt device (1), and the conveyor belt device (1), the apparatus body, and the control cabinet are electrically connected, characterized in that: The device body also includes a positioning device, a filling mechanism (4), and a cleaning mechanism (5). The positioning device for assisting in the positioning of the bottle filling is located above the middle of the conveyor belt device (1). The filling mechanism (4) for preventing liquid residue is located on the rear side of the positioning device. The cleaning mechanism (5) for cleaning water droplets from the bottle is located on the right side of the positioning device.

2. The bottling device for brewing according to claim 1, characterized in that: The positioning device further includes positioning mechanism a (2) and positioning mechanism b (3). Positioning mechanism a (2) is respectively set on the front and rear sides of the conveyor belt device (1), and positioning mechanism b (3) is set above the front positioning mechanism a (2).

3. A bottling device for brewing according to claim 2, characterized in that: The positioning mechanism a (2) further includes mounting plate a (6), slider a (7), roller (8), conveyor belt (9), drive motor a (10), and adjustment mechanism a. The slider a (7) is slidably disposed inside the conveyor belt device (1). The mounting plate a (6) is disposed on the upper and lower sides of the rear side of the slider a (7). The mounting plate a (6) is configured as a trapezoidal structure. The roller (8) is disposed between the mounting plates a (6). The conveyor belt (9) is disposed on the outer side of the roller (8). The surface of the conveyor belt (9) is provided with a flexible structure that protects and fits the wine bottle. The drive motor a (10) is disposed at the upper end of the roller (8). The adjustment mechanism a is disposed on the right side of the slider a (7).

4. A bottling device for brewing according to claim 3, characterized in that: The adjustment mechanism a further includes a rack a (11), a gear a (12), a rotating shaft a (13), a transmission wheel set (14), a rotating shaft b (15), and an adjustment knob a (16). The rack a (11) is located at the middle of the right end of the slider a (7). The gear a (12) is meshed and located on the right side of the rack a (11). The rotating shaft a (13) is coaxially connected to the gear a (12). The rotating shaft b (15) is located on the right side of the rotating shaft a (13). The transmission wheel set (14) is located between the rotating shaft a (13) and the rotating shaft b (15). The adjustment knob a (16) is located at the upper end of the rotating shaft b (15).

5. A bottling device for brewing according to claim 2, characterized in that: The positioning mechanism b (3) further includes a housing (17), a slider b (18), a rack b (19), a gear b (20), a rotating shaft c (21), an adjusting knob b (22), and a limiting turntable. The housing (17) is located above the positioning mechanism a (2). The slider b (18) is slidably connected inside the housing (17). The rack b (19) is located in front of the slider b (18). The gear b (20) is meshed in front of the rack b (19). The rotating shaft c (21) is coaxially rotatably connected to the gear b (20) inside the housing (17). The adjusting knob b (22) is located above the rotating shaft c (21). The limiting turntable is located above and behind the housing (17).

6. A bottling apparatus for brewing according to claim 5, characterized in that: The limiting turntable also includes a mounting plate b (23), a rotating platform (24), a rotating shaft d (25), a limiting plate (26), and a limiting block (27). The mounting plate b (23) is located above and behind the slider b (18). The rotating platform (24) is located above the mounting plate b (23). The rotating shaft d (25) is located above the rotating platform (24). The limiting plate (26) is located on the side of the rotating shaft d (25). The left side surface of the limiting plate (26) is provided with a flexible structure to protect the bottle body. The limiting block (27) is fixedly installed on the mounting plate b (23) behind the rotating shaft d (25).

7. A bottling apparatus for brewing according to claim 1, characterized in that: The filling mechanism (4) further includes a base a (28), a sliding cylinder a (29), a filling cylinder (30), an air inlet pipe (31), a liquid inlet pipe (32), an electric valve a (33), an electric valve b (34), a micro flow meter (35), and a sensor a (36). The base a (28) is located on the rear side of the positioning mechanism a (2), the sliding cylinder a (29) is located on the front side of the base a (28), and the filling cylinder (30) is located on the sliding side of the sliding cylinder a (29). On the front side, the air inlet pipe (31) is set on the top of the filling cylinder (30). The upper end of the air inlet pipe (31) is connected to the compressed gas branch pipe through a gas hose. The liquid inlet pipe (32) is set on the right side of the filling cylinder (30). The electric valve a (33) is set on the right side of the liquid inlet pipe (32). The electric valve b (34) is set on the air inlet pipe (31). The micro flow meter (35) is set on the right side of the electric valve a (33). The sensor a (36) is set on the left side of the filling cylinder (30).

8. A bottling apparatus for brewing according to claim 1, characterized in that: The cleaning mechanism (5) further includes a base b (37), a slide cylinder b (38), a mounting plate c (39), a ring pipe (40), a gas nozzle (41), and a sensor b (42). The base b (37) is respectively located on the front and rear sides of the conveyor belt device (1). The slide cylinder b (38) is respectively located on the side of the base b (37). The mounting plate c (39) is located between the slides of the slide cylinder b (38). The ring pipe (40) is located below the mounting plate b (23). A gas pipe connected to the compressed gas branch pipe is provided on the right side of the ring pipe (40). The gas nozzle (41) is respectively inclinedly located on the inner side of the ring pipe (40). The sensor b (42) is located on the left side of the ring pipe (40).

Citation Information

Patent Citations

  • Quantitative filling device for wine brewing production

    CN216235993U