Wine liquid mixing device and mixing method for white spirit production

By designing a mixing device in liquor production, using swing feeding components and breaking mixing components to fully mix and break, and improving the mixing effect by flipping the impact components, the problem of poor mixing effect of liquor in the prior art is solved and the quality of liquor is improved.

CN120227791AInactive Publication Date: 2025-07-01INNER MONGOLIA CENTURY BAIJIU LIQUOR CO LTD
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Patent Information

Application Number
CN202510704493.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2025-07-01
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the existing liquor mixing process in liquor production, there are problems with poor mixing effect and affecting the quality of liquor. In particular, high-intensity stirring will destroy the molecular structure of alcohol and microorganisms, resulting in a decrease in flavor and taste.

Method used

A wine-liquid mixing device for liquor production is designed, including a mixing tank, a scattering cylinder and a flip impact assembly. By swinging the feeding assembly and the breaking mixing assembly, the high-grade slurry and the low-grade reducing liquid can be fully mixed and broken, and the bottom layer of the mixing tank is flipped and impacted by flipping the impact assembly to improve the mixing effect.

Benefits of technology

It effectively protects the alcohol molecules and microorganisms in the high-level slurry, realizes the full mixing of wine and improves the quality of liquor, and improves the mixing effect and the sense of layering of wine.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the related technical field of baijiu production, in particular to a baijiu liquid mixing device for baijiu production and a mixing method.The baijiu liquid mixing device comprises a mixing tank and a driving motor driving a stirring shaft in the mixing tank to move, the top of the mixing tank is provided with a scattering barrel for mixing and scattering original pulp, and the top of the scattering barrel is provided with a fixing frame; a swinging feeding assembly for injecting raw slurry into the scattering barrel is arranged in the fixing frame and comprises a rotating ring and a feeding barrel movably arranged at the top of the scattering barrel; scattering and mixing blades in the scattering and mixing assembly are matched with a swing plate and an L-shaped feeding pipe in the swing feeding assembly to conduct swing spraying, up-down stirring and mixing and left-right swing mixing on high-degree original pulp and low-degree reduction liquid, and wine liquid at the bottom layer of a mixing tank is mixed and stirred through the overturning impact assembly; baijiu with different degrees can be mixed under different assemblies, the wine can be mixed with different effects at different stages, and the quality of the Baijiu is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field related to liquor production, and particularly relates to a liquor mixing device and a mixing method for liquor production. Background Art

[0002] As a beverage with a long history and unique culture, pure grain brewed liquor refers to a liquor product made from sorghum, corn, wheat, rice, glutinous rice, barley, buckwheat, beans, etc. through natural fermentation in a fully solid state or semi-solid state (applicable to rice-flavored liquor) and high-temperature distillation. The liquor mixing process in liquor processing is the core link in liquor production, directly determining the flavor, taste, and quality stability of the final product. Blending base liquors with different alcohol contents to the target degree to fuse and balance flavor substances such as acids, esters, and aldehydes, highlighting the main flavor type, masking the defects of the base liquor, and enhancing the thickness and layering of the liquor body.

[0003] Currently, for liquor mixing, the high-concentration original slurry is injected into the corresponding low-concentration reducing liquid at one time according to a ratio. To prevent poor dispersion and mixing with the low-concentration reducing liquid, the high-concentration original slurry and the low-concentration reducing liquid are mixed and stirred by a high-speed rotating stirring blade. However, the high-intensity stirring will damage the alcohol molecular structure or microorganisms inside the high-concentration original slurry, greatly affecting the flavor and taste of the liquor and reducing the quality. When the liquor is blended to a low-alcohol liquor, it also needs to be fully mixed and stirred. At this time, to prevent the liquor from sedimenting at the bottom layer, it is necessary to fully mix and stir at the inner bottom of the mixing tank. However, currently, there is no differential and adaptive stirring and mixing for liquor with different degrees, and the mixing device cannot adjust the stirring method according to the mixing at different stages, resulting in relatively poor liquor mixing effect of the liquor and reducing the quality of the liquor. Summary of the Invention

[0004] In order to overcome the deficiencies of the prior art, the present invention provides a liquor mixing device and a mixing method for liquor production.

[0005] To solve the above technical problems, the present invention provides the following technical solutions: A liquor mixing device and a mixing method for liquor production, including a mixing tank and a driving motor that drives the stirring shaft inside the mixing tank. A dispersing cylinder for mixing and dispersing the original slurry is provided at the top of the mixing tank. A fixing frame is installed at the top of the dispersing cylinder. A swinging feeding component for injecting the original slurry into the dispersing cylinder is arranged inside the fixing frame. The swinging feeding component includes a rotating ring and a feeding cylinder that moves on the top of the dispersing cylinder. The rotating ring drives the feeding cylinder through a U-shaped twisting frame to evenly disperse and inject the raw material liquid into the dispersing cylinder. Inside the fixing frame, there is a dispersing and mixing component. The dispersing and mixing component drives the dispersing and mixing blades inside the dispersing cylinder to disperse and mix the original slurry and the reducing liquid. The rotating column inside the dispersing and mixing component cooperates with the rotating cover to drive the dispersing and mixing blades to move up and down inside the dispersing cylinder. At the bottom of the stirring shaft of the mixing tank, there is a tumbling and impacting component. The turning plate in the turning and impacting component turns and mixes the bottom-layer liquor in the mixing tank, and the arc-shaped impact cylinder in the turning and impacting component impacts and stirs the bottom-layer liquor in the mixing tank.

[0006] As a preferred technical solution of the present invention, the swinging feeding component further includes a raw slurry cylinder installed at the top of the feeding cylinder. The inner top of the fixing frame is fixedly installed with a rotating motor. The output end of the rotating motor is connected with a rotating shaft. The inner bottom of the fixing frame is fixedly installed with a support plate. The top of the support plate is movably connected with a support rotating shaft. An arc-shaped twisting plate is installed at the center inside the rotating ring. One end of the support rotating shaft is fixedly installed on the arc-shaped twisting plate, and the other end of the support rotating shaft is fixedly installed with a first bevel gear. The rotating shaft is fixedly installed with a second bevel gear that meshes with the first bevel gear movably.

[0007] On the side of the arc-shaped twisting plate away from the support rotating shaft, a rotating base is fixedly installed. The rotating base is movably connected with a connecting rod. The U-shaped twisting frame is fixedly installed at the top of the connecting rod. The U-shaped twisting frame is connected to the outside of the feeding cylinder through a rotating shaft. The bottom of the feeding cylinder extends through to the inside of the dispersing cylinder. A first valve is installed at the top of the feeding cylinder where the U-shaped twisting frame is located.

[0008] A swinging rod that moves inside the dispersing cylinder is installed at the top of the feeding cylinder. On the side of the bottom of the swinging rod close to the dispersing and mixing blades, a plurality of swinging plates are evenly installed, and the swinging plates move outside the dispersing and mixing blades. At the side of the bottom of the feeding cylinder close to the dispersing and mixing blades, three L-shaped feeding pipes are evenly communicated, and feeding holes are opened at the bottoms of the L-shaped feeding pipes.

[0009] As a preferred technical solution of the present invention, the dispersing and mixing component further includes a square connecting plate. The rotating cover is fixedly installed on the top of the dispersing cylinder. An annular sliding rail is opened inside the rotating cover. The rotating column is movably arranged at the center inside the rotating cover. An arc-shaped limiting rod that matches the size of the annular sliding rail is fixedly installed on the outside of the rotating column, and the arc-shaped limiting rod moves in the annular sliding rail.

[0010] The square connecting plate is slidably connected to the center inside the rotating column. A fixed sliding groove is opened inside the rotating column. A fixed slider is slidably connected in the fixed sliding groove. The fixed slider is installed on the square connecting plate. The bottom end of the rotating shaft is fixedly installed on the top of the square connecting plate. The dispersing and mixing blades are installed at the bottom of the rotating column. The bottom of the dispersing cylinder is connected to the inside of the mixing tank through a discharge pipe. A second valve is installed on the discharge pipe. The dispersing cylinder is installed on the top of the mixing tank through a support foot. A filling port with a rubber plug is installed at the top of the dispersing cylinder.

[0011] As a preferred technical solution of the present invention, the flipping and impacting assembly further includes a rotating disk installed at the bottom end of the stirring shaft. A connecting rotating shaft is movably arranged at the inner bottom of the mixing tank. Connecting plates are fixedly installed at both ends of the connecting rotating shaft, and a movable rod is fixedly installed between the tops of the connecting plates. A movable ring is movably sleeved between the connecting plates. A T-shaped limiting ring is fixedly installed at the top of the movable ring, and the T-shaped limiting ring is movably connected to the rotating disk. Stirring blades are installed at the top of the stirring shaft.

[0012] A number of connecting rods are evenly installed on one side of the bottom of the connecting rotating shaft. An arc-shaped impact cylinder is installed at the bottom of the connecting rod. A number of flipping plates are fixedly installed at both ends of the connecting rotating shaft, and flipping holes are formed in the flipping plates. Impact holes are formed at the bottom of the arc-shaped impact cylinder. Arc-shaped striking plates are installed at both ends of the arc-shaped impact cylinder, and striking holes are formed in the arc-shaped striking plates.

[0013] As a preferred technical solution of the present invention, a mixing method for a liquor mixing device for liquor production includes the following steps: Step 1: Inject high-degree original slurry into the original slurry tank, inject low-degree reducing liquid through the feeding port on the dispersing cylinder, open the first valve on the feeding cylinder, and at the same time start the rotating motor in the fixed frame. The high-degree original slurry in the original slurry tank enters the L-shaped feeding pipe through the feeding cylinder, and then enters the inside of the dispersing cylinder through the feeding holes under the L-shaped feeding pipe. The rotating motor drives the second bevel gear on the rotating shaft to move. The second bevel gear meshes with the first bevel gear to drive the rotating ring to move. The rotating ring drives the feeding cylinder to perform a twisting movement through the rotating base, connecting rod and U-shaped twisting frame, and synchronously drives the L-shaped feeding pipe to twist and sprinkle liquid inside the dispersing cylinder; Step 2: The rotating motor drives the square connecting plate and the rotating column to rotate in the rotating cover through the rotating shaft. The rotating column moves up and down during rotation through the annular slide rail and arc-shaped limiting rod on the rotating cover. The rotating column drives the dispersing and mixing blades to rotate and move up and down inside the dispersing cylinder, and fully mixes and disperses the high-degree original slurry and the low-degree reducing liquid inside the dispersing cylinder; Step 3: During the twisting process of the feeding cylinder, the swinging plate in the dispersing cylinder is driven to swing back and forth synchronously through the swinging rod, and the high-degree original slurry and the low-degree reducing liquid are stirred and mixed up and down and swung left and right through the cooperation of the swinging plate and the dispersing and mixing blades; Step 4: Inject a certain amount of low-degree reducing liquid into the mixing tank, and then open the second valve on the discharge pipe to inject the mixed liquor in the dispersing cylinder into the mixing tank to be mixed with the low-degree reducing liquid again. The rotating disk under the stirring shaft is driven to rotate by the driving motor. The rotating disk drives the connecting rotating shaft to perform a swinging movement through the T-shaped limiting ring, movable ring, movable rod and connecting rod; Step 5: Use the stirring blades on the stirring shaft, the turning plates connected to the rotating shaft, and the arc-shaped impact cylinder to turn and impact and disperse the bottom-layer liquor in the mixing tank, and mix the low-degree reducing liquid in the mixing tank and the mixed liquid coming out of the dispersing cylinder again fully and evenly, so as to improve the mixing effect of the liquor in the mixing tank.

[0014] Compared with the prior art, the beneficial effects that the present invention can achieve are: 1. In the present invention, the dispersing and mixing blades in the dispersing and mixing assembly cooperate with the swinging plate and the L-shaped feeding pipe in the swinging feeding assembly to swing and sprinkle the high-degree original slurry and the low-degree reducing liquid, mix them up and down, and mix them left and right, perfectly protecting the alcohol molecules and microorganisms inside the high-degree original slurry, realizing the full mixing and stirring of the high-degree original slurry and the low-degree reducing liquid, and improving the quality of the preliminary mixing of the high-degree original slurry. The turning and impact assembly is used to mix and stir the bottom-layer liquor in the mixing tank, so as to meet the mixing of liquor with different degrees under different components, achieve different mixing effects at different stages of the liquor, and improve the quality of the white liquor.

[0015] 2. In the present invention, the connecting rod and the U-shaped twisting frame in the swinging feeding assembly drive the feeding cylinder at the top of the dispersing cylinder to twist back and forth. During the twisting process of the feeding cylinder, the L-shaped feeding pipe is driven to twist and sprinkle liquid inside the dispersing cylinder, and the high-degree original slurry in the original slurry cylinder is twisted and sprayed back and forth into the dispersing cylinder, changing the feeding method and improving the dispersion degree of the high-degree original slurry.

[0016] 3. In the present invention, the swinging rod in the swinging feeding assembly drives the swinging plate in the dispersing cylinder to move synchronously, so that the swinging plate makes a horizontal swinging movement between the upper and lower dispersing and mixing blades, and stirs the high-degree original slurry under the twisting and spraying through the swinging plate swinging back and forth, improving the mixing and dispersing effect of the low-degree reducing liquid and the high-degree original slurry.

[0017] 4. In the present invention, the swinging plate cooperates with the dispersing and mixing blades to mix the high-degree original slurry and the low-degree reducing liquid up and down and left and right. The dispersing and mixing blades rotating up and down and the swinging plate swinging left and right in the dispersing cylinder can not only mix and disperse the high-degree original slurry and the low-degree reducing liquid sufficiently, but also effectively protect the alcohol molecules and flavor molecules in the high-degree original slurry, protecting the alcohol molecules and flavor molecules in the high-degree original slurry.

[0018] 5. In the present invention, the arc-shaped impact cylinder in the turning and impact assembly impacts the liquor on both sides. During the back-and-forth swinging process of the arc-shaped impact cylinder, the contact area with the liquor is small. The arc-shaped impact cylinder cooperates with the arc-shaped striking plate and the striking holes to carry out effective convective mixing of the liquor, and mixes the low-degree reducing liquid in the mixing tank and the mixed liquor in the dispersing cylinder again fully and evenly, improving the mixing effect of the liquor in the mixing tank.

[0019] 6. In the present invention, the connecting rotating shaft in the flipping impact assembly cooperates with the connecting plate to perform a swinging motion. During the swinging motion of the connecting rotating shaft, the flipping plate cooperates with the flipping holes to flip the mixed liquid at the bottom layer of the mixing tank back and forth, flipping the bottom-layer liquor back and forth to both sides. The flipping plate cooperates with the arc-shaped impact cylinder to achieve flipping and impact convection of the bottom-layer liquor, improving the up-and-down tumbling mixing with the liquor at the top of the mixing tank and enhancing the mixing effect of the liquor. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the internal structure of the mixing tank of the present invention; Figure 3 is a schematic diagram of the connection structure of the dispersing cylinder of the present invention; Figure 4 is a schematic diagram of the internal structure of the fixing frame of the present invention; Figure 5 is a schematic diagram of the structure of the dispersing and mixing blades of the present invention; Figure 6 is a schematic diagram of the structure of the arc-shaped twisting plate of the present invention; Figure 7 is a schematic diagram of the structure of the rotating ring of the present invention; Figure 8 is a schematic diagram of the structure of the feeding cylinder of the present invention; Figure 9 is a schematic diagram of the structure of the rotating cover of the present invention; Figure 10 is a schematic diagram of the structure of the rotating column of the present invention; Figure 11 is a schematic diagram of the structure of the annular slide rail of the present invention; Figure 12 is a schematic diagram of the structure of the square connecting block of the present invention; Figure 13 is a schematic diagram of the connection structure of the rotating disk of the present invention; Figure 14 is a schematic diagram of the connection structure of the connecting plate of the present invention.

[0021] Wherein: 10, mixing tank; 11, stirring shaft; 12, driving motor; 13, discharge pipe; 14, second valve; 15, stirring blade; 16, support foot; 17, first valve; 20, dispersion cylinder; 21, feeding cylinder; 22, U-shaped torsion frame; 23, raw slurry cylinder; 24, swing rod; 25, connecting rod; 26, swing plate; 27, L-shaped feeding pipe; 28, feeding hole; 29, injection port; 30, fixing frame; 31, rotating motor; 32, rotating shaft; 33, support plate; 34, support rotating shaft; 35, arc-shaped torsion plate; 36, first bevel gear; 37, second bevel gear; 38, rotating base; 39, rotating ring; 40, dispersion mixing blade; 41, rotating column; 42, rotating cover; 43, annular slide rail; 44, arc-shaped limiting rod; 45, square connecting plate; 46, fixed chute; 47, fixed slider; 50, rotating disk; 51, T-shaped limiting ring; 52, connecting plate; 53, movable rod; 54, movable ring; 60, connecting rotating shaft; 61, connecting rod; 62, arc-shaped impact cylinder; 63, turning plate; 64, turning hole; 65, impact hole; 66, arc-shaped striking plate; 67, striking hole. Detailed implementation mode

[0022] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments. However, the following embodiments are only the preferred embodiments of the present invention, not all of them. Based on the embodiments in the implementation mode, other embodiments obtained by those skilled in the art without creative work all belong to the protection scope of the present invention. The experimental methods in the following embodiments are all conventional methods unless otherwise specified, and the materials, reagents, etc. used in the following embodiments can be obtained from commercial channels unless otherwise specified.

[0023] Embodiment: As Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 shown, it includes a mixing tank 10 and a driving motor 12 that drives the stirring shaft 11 inside the mixing tank 10. A dispersion cylinder 20 for mixing and dispersing the raw slurry is arranged at the top of the mixing tank 10. A fixing frame 30 is installed at the top of the dispersion cylinder 20. A swinging feeding assembly for injecting the raw slurry into the dispersion cylinder 20 is arranged inside the fixing frame 30. The swinging feeding assembly includes a rotating ring 39 and a feeding cylinder 21 that moves on the top of the dispersion cylinder 20. The rotating ring 39 drives the feeding cylinder 21 through a U-shaped torsion frame 22 to uniformly disperse and inject the raw material liquid into the dispersion cylinder 20.

[0024] Refer to Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7, the swinging feeding assembly further includes a raw slurry cylinder 23 installed at the top of the feeding cylinder 21. A liquid injection port with a sealing cover is provided at the top of the raw slurry cylinder 23. A rotating motor 31 is fixedly installed at the inner top of the fixing frame 30. The output end of the rotating motor 31 is connected to a rotating shaft 32. A support plate 33 is fixedly installed at the inner bottom of the fixing frame 30. A support rotating shaft 34 is movably connected to the top of the support plate 33. An arc-shaped twisting plate 35 is installed at the center inside the rotating ring 39. One end of the support rotating shaft 34 is fixedly installed on the arc-shaped twisting plate 35. A first bevel gear 36 is fixedly installed at the other end of the support rotating shaft 34. A second bevel gear 37 that is movably meshed with the first bevel gear 36 is fixedly installed on the rotating shaft 32. A rotating base 38 is fixedly installed on the side of the arc-shaped twisting plate 35 away from the support rotating shaft 34. The rotating base 38 is a universal joint structure. The rotating base 38 is movably connected to a connecting rod 25. A U-shaped twisting frame 22 is fixedly installed at the top of the connecting rod 25. The U-shaped twisting frame 22 is connected to the outside of the feeding cylinder 21 through a rotating shaft. The bottom of the feeding cylinder 21 extends through to the inside of the dispersing cylinder 20. A first valve 17 is installed at the top of the feeding cylinder 21 where the U-shaped twisting frame 22 is located.

[0025] Refer to Figure 4 , Figure 5 , Figure 6 and Figure 7 , the rotating motor 31 drives the second bevel gear 37 on the rotating shaft 32 to move. The second bevel gear 37 meshes with the first bevel gear 36 to drive the support rotating shaft 34 on the support plate 33 to perform a rotating motion. The support rotating shaft 34 will drive the rotating ring 39 inside the fixing frame 30 to perform a synchronous rotating motion. During the rotation of the rotating ring 39, the rotating base 38 is driven to perform a rotating motion through the arc-shaped twisting plate 35. The rotating base 38 will drive the feeding cylinder 21 at the top of the dispersing cylinder 20 to twist back and forth through the connecting rod 25 and the U-shaped twisting frame 22.

[0026] Refer to Figure 4 , Figure 5 , Figure 6 and Figure 7 , a swinging rod 24 that moves in the dispersing cylinder 20 is installed at the top of the feeding cylinder 21. A plurality of swinging plates 26 are evenly installed on the bottom of the swinging rod 24 on the side close to the dispersing mixing blades 40. And the swinging plates 26 move outside the dispersing mixing blades 40. Three L-shaped feeding pipes 27 are evenly communicated on the side of the bottom of the feeding cylinder 21 close to the dispersing mixing blades 40. And feeding holes 28 are provided at the bottoms of the L-shaped feeding pipes 27.

[0027] Refer to Figure 5 , Figure 6 and Figure 7, during the twisting process, the feeding cylinder 21 drives the L-shaped feeding pipe 27 to twist and spray liquid inside the dispersing cylinder 20, spraying the high-level raw slurry in the original slurry cylinder 23 back and forth into the dispersing cylinder 20 by twisting, improving the dispersion degree of the injection of the high-level raw slurry, and enhancing the mixing and dispersing effect of the high-level raw slurry and the low-level reducing liquid. At the same time, during the twisting process, the feeding cylinder 21 drives the swing plate 26 inside the dispersing cylinder 20 to move synchronously through the swing rod 24, causing the swing plate 26 to perform a horizontal swinging motion between the upper and lower dispersing and mixing blades 40.

[0028] Refer to Figure 8 , Figure 9 , Figure 10 , Figure 11 and Figure 12 , a dispersing and mixing assembly is arranged inside the fixing frame 30. The dispersing and mixing assembly drives the dispersing and mixing blades 40 inside the dispersing cylinder 20 to disperse and mix the raw slurry and the reducing liquid. The rotating column 41 inside the dispersing and mixing assembly cooperates with the rotating cover 42 to drive the dispersing and mixing blades 40 to move up and down inside the dispersing cylinder 20. The dispersing and mixing assembly further includes a square connecting plate 45. The rotating cover 42 is fixedly installed on the top of the dispersing cylinder 20. An annular sliding rail 43 is opened inside the rotating cover 42, and the annular sliding rail 43 is of an inclined structure. The rotating column 41 is movably arranged at the center inside the rotating cover 42. An arc-shaped limiting rod 44 that matches the size of the annular sliding rail 43 is fixedly installed on the outside of the rotating column 41, and the arc-shaped limiting rod 44 moves inside the annular sliding rail 43. A square connecting plate 45 is slidably connected to the center inside the rotating column 41. A fixed sliding groove 46 is opened inside the rotating column 41, and a fixed slider 47 is slidably connected in the fixed sliding groove 46. The fixed slider 47 is installed on the square connecting plate 45. The bottom end of the rotating shaft 32 is fixedly installed at the top of the square connecting plate 45. The dispersing and mixing blades 40 are installed at the bottom of the rotating column 41.

[0029] Refer to Figure 2 and Figure 3 , the bottom of the dispersing cylinder 20 is connected to the inside of the mixing tank 10 through the discharge pipe 13. A second valve 14 is installed on the discharge pipe 13. Open the second valve 14 to inject the mixed liquor into the mixing tank 10. The dispersing cylinder 20 is installed on the top of the mixing tank 10 through the support feet 16. A feeding port 29 with a rubber stopper is installed on the top of the dispersing cylinder 20. Inject the low-level reducing liquid into the dispersing cylinder 20 through the feeding port 29.

[0030] Refer to Figure 8 , Figure 9 , Figure 10 , Figure 11 and Figure 12, the rotating electric machine 31 drives the square connecting plate 45 and the rotating column 41 to perform a rotating motion in the rotating cover 42 through the rotating shaft 32. During the rotation of the rotating column 41, the rotating column 41 will move up and down through the annular sliding rail 43 and the arc-shaped limiting rod 44 on the rotating cover 42. During the movement of the rotating column 41, the square connecting plate 45 will move up and down through the fixed sliding groove 46 and the fixed slider 47. That is, the rotating column 41 can not only rotate through the square connecting plate 45 and the rotating shaft 32, but also move up and down outside the square connecting plate 45. Furthermore, the rotating column 41 drives the dispersing and mixing blades 40 to rotate and move up and down inside the dispersing cylinder 20, so as to fully mix and disperse the high-concentration original slurry and the low-concentration reducing liquid inside the dispersing cylinder 20.

[0031] Refer to Figure 2 、 Figure 5 and Figure 13 , a tumbling impact assembly is provided at the bottom of the mixing shaft 11 of the mixing tank 10. The turning plate 63 in the turning impact assembly turns and mixes the bottom-layer liquor in the mixing tank 10, and the arc-shaped impact cylinder 62 in the turning impact assembly impacts and stirs the bottom-layer liquor in the mixing tank 10. The turning impact assembly further includes a rotating disk 50 installed at the bottom end of the mixing shaft 11. A connecting rotating shaft 60 is movably arranged at the inner bottom of the mixing tank 10. The connecting rotating shaft 60 is located at the bottom center of the rotating disk 50, and the connecting rotating shaft 60 is in a horizontal state. Both ends of the connecting rotating shaft 60 are fixedly installed with connecting plates 52, and a movable rod 53 is fixedly installed between the tops of the connecting plates 52. A movable ring 54 is movably sleeved between the connecting plates 52 of the movable rod 53. A T-shaped limiting ring 51 is fixedly installed at the top of the movable ring 54, and the T-shaped limiting ring 51 is movably connected to the rotating disk 50. A stirring blade 15 is installed at the top of the mixing shaft 11. A plurality of connecting rods 61 are evenly installed on one side of the bottom of the connecting rotating shaft 60, and an arc-shaped impact cylinder 62 is installed at the bottom of the connecting rods 61. A plurality of turning plates 63 are fixedly installed at both ends of the connecting rotating shaft 60, and each turning plate 63 is provided with a turning hole 64. A plurality of impact holes 65 are opened at the bottom of each arc-shaped impact cylinder 62. Arc-shaped striking plates 66 are installed at both ends of each arc-shaped impact cylinder 62, and the arc-shaped striking plates 66 are provided with striking holes 67. The turning plates 63 and the arc-shaped impact cylinders 62 are installed at intervals at the bottom of the connecting rotating shaft 60.

[0032] Refer to Figure 2 、 Figure 5 、 Figure 13 and Figure 14, the drive motor 12 synchronously drives the rotating disk 50 to rotate through the stirring shaft 11. The rotating disk 50 drives the movable ring 54 on the movable rod 53 to move through the T-shaped limiting ring 51. When the rotating disk 50 drives the movable ring 54 under the T-shaped limiting ring 51 to move to both ends of the movable rod 53, the movable rod 53 makes the connecting plate 52 on the connecting rotating shaft 60 in a vertical state. When the rotating disk 50 drives the movable ring 54 under the T-shaped limiting ring 51 to move to the middle position of the movable rod 53, the movable rod 53 makes the connecting plate 52 on the connecting rotating shaft 60 in an inclined state. Thus, the connecting rotating shaft 60 cooperates with the connecting plate 52 to swing. During the swinging movement of the connecting rotating shaft 60, the turning plate 63 cooperates with the turning hole 64 to turn the mixed liquid at the bottom layer of the mixing tank 10 back and forth, turning the bottom layer of the liquor back and forth to both sides. At the same time, the arc-shaped impact cylinder 62 will impact the liquor on both sides. During the back-and-forth swinging process, the contact area between the arc-shaped impact cylinder 62 and the liquor is small. The arc-shaped impact cylinder 62 can cooperate with the internal arc-shaped striking plate 66 and the striking hole 67 to effectively convect and mix the liquor.

[0033] Working principle: Inject the high-concentration original slurry into the original slurry tank 23, inject the low-concentration reducing liquid through the feeding port 29 on the dispersing cylinder 20, open the first valve 17 on the feeding cylinder 21. The high-concentration original slurry in the original slurry tank 23 enters the L-shaped feeding pipe 27 through the feeding cylinder 21, and then enters the inside of the dispersing cylinder 20 through the feeding hole 28 under the L-shaped feeding pipe 27. The rotating motor 31 in the fixed frame 30 drives the second bevel gear 37 on the rotating shaft 32 to move. The second bevel gear 37 meshes with the first bevel gear 36 to drive the supporting rotating shaft 34 on the supporting plate 33 to rotate. The supporting rotating shaft 34 will drive the rotating ring 39 in the fixed frame 30 to rotate synchronously. During the rotation of the rotating ring 39, the arc-shaped twisting plate 35 drives the rotating base 38 to rotate. The rotating base 38 drives the feeding cylinder 21 at the top of the dispersing cylinder 20 to twist back and forth through the connecting rod 25 and the U-shaped twisting frame 22. During the twisting process of the feeding cylinder 21, the L-shaped feeding pipe 27 is driven to twist and sprinkle the liquid inside the dispersing cylinder 20, and the high-concentration original slurry in the original slurry tank 23 is twisted and sprayed into the dispersing cylinder 20 back and forth, effectively preventing the low dispersion degree of the one-time injection of the high-concentration original slurry and the inability to fully mix and disperse with the low-concentration reducing liquid; In addition, a square connecting plate 45 is fixedly installed at the bottom end of the rotating shaft 32. When the rotating motor 31 drives the rotating shaft 32 to rotate, the rotating shaft 32 also drives the square connecting plate 45 and the rotating column 41 to perform synchronous rotational movement in the rotating cover 42. The rotating column 41 is movably disposed outside the square connecting plate 45. At this time, during the rotation of the rotating column 41, vertical movement will occur through the annular slide rail 43 and the arc-shaped limiting rod 44 on the rotating cover 42. During the movement of the square connecting plate 45, the rotating column 41 will perform lifting movement through the fixed sliding groove 46 and the fixed slider 47. During the rotation of the square connecting plate 45 driving the rotating column 41, the rotating column 41 also performs limited lifting movement on the outer periphery of the square connecting plate 45. That is, the rotating column 41 can not only rotate through the square connecting plate 45 and the rotating shaft 32, but also perform lifting movement outside the square connecting plate 45. Furthermore, the rotating column 41 drives the dispersing and mixing blades 40 to rotate and move up and down within the dispersing cylinder 20, fully mixing and dispersing the high-strength original slurry and the low-strength reducing liquid within the dispersing cylinder 20; During the twisting process of the feeding cylinder 21, the swing plate 26 within the dispersing cylinder 20 is synchronously driven through the swing rod 24, such that the swing plate 26 performs horizontal swinging movement between the upper and lower dispersing and mixing blades 40. Through the cooperation of the swing plate 26 and the dispersing and mixing blades 40, the high-strength original slurry and the low-strength reducing liquid are stirred and mixed up and down and swung left and right. The dispersing and mixing blades 40 that rotate up and down within the dispersing cylinder 20 and the swing plate 26 that swings left and right can not only fully mix and disperse the high-strength original slurry and the low-strength reducing liquid, but also effectively protect the alcohol molecules and flavor molecules in the high-strength original slurry, such that the alcohol molecules and flavor molecules in the high-strength original slurry are not damaged; Inject a certain amount of low-degree reducing liquid into the mixing tank 10, and then open the second valve 14 on the discharge pipe 13 to inject the mixed liquor in the dispersion cylinder 20 into the mixing tank 10 to be mixed with the low-degree reducing liquid again. Drive the stirring shaft 11 to rotate through the drive motor 12. The stirring blades 15 on the stirring shaft 11 mix and stir the liquor. The drive motor 12 synchronously drives the rotating disk 50 to rotate through the stirring shaft 11. The rotating disk 50 drives the movable ring 54 on the movable rod 53 to move through the T-shaped limit ring 51. When the rotating disk 50 drives the movable ring 54 under the T-shaped limit ring 51 to move to both ends of the movable rod 53, the movable rod 53 makes the connecting plate 52 on the connecting rotating shaft 60 in a vertical state. When the rotating disk 50 drives the movable ring 54 under the T-shaped limit ring 51 to move to the middle position of the movable rod 53, the movable rod 53 makes the connecting plate 52 on the connecting rotating shaft 60 in an inclined state. Specifically, when the rotating disk 50 drives the T-shaped limit ring 51 to move to both ends of the movable rod 53, the connecting plate 52 is in a vertical state. As the rotating disk 50 rotates and drives the T-shaped limit ring 51 to move to be vertically staggered with the connecting rotating shaft 60, the movable rod 53 will swing and tilt along with the T-shaped limit ring 51 and the movable ring 54. At the same time, the movable ring 54 is also driven to the middle position of the movable rod 53. Moreover, at this time, the T-shaped limit ring 51 will also move downward from the rotating disk 50, that is, when the rotating disk 50 drives the movable ring 54 to rotate through the T-shaped limit ring 51, the T-shaped limit ring 51 can also move up and down in the rotating disk 50. At the same time, the movable ring 54 can also reciprocate in the movable rod 53. In this way, the connecting rotating shaft 60 cooperates with the connecting plate 52 to perform a swinging motion; During the swinging motion of the connecting rotating shaft 60, the turning plate 63 cooperates with the turning hole 64 to turn the mixed liquid at the bottom layer of the mixing tank 10 back and forth, turning the bottom liquor back and forth to both sides. At the same time, the arc impact cylinder 62 will impact the liquor on both sides. During the back-and-forth swinging process of the arc impact cylinder 62, the contact area with the liquor is small. The arc impact cylinder 62 can cooperate with the internal arc striking plate 66 and the striking hole 67 to effectively convect and mix the liquor, and mix the low-degree reducing liquid in the mixing tank 10 with the mixed liquor in the dispersion cylinder 20 again fully and evenly, improving the mixing effect of the liquor in the mixing tank 10.

[0034] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to this. Within the scope of knowledge possessed by those skilled in the art to which it pertains, various changes can be made without departing from the gist of the present invention.

Claims

1. A liquor mixing device for liquor production, comprising a mixing tank and a drive motor for driving the stirring shaft inside the mixing tank, characterized in that, A dispersion cylinder for mixing and dispersing the original slurry is provided at the top of the mixing tank. A fixing frame is installed at the top of the dispersion cylinder. Inside the fixing frame, a swinging feeding component for injecting the original slurry into the dispersion cylinder is provided. The swinging feeding component includes a rotating ring and a feeding cylinder that moves on the top of the dispersion cylinder. The rotating ring drives the feeding cylinder through a U-shaped torsion frame to uniformly disperse and inject the raw material liquid into the dispersion cylinder. A dispersion and mixing component is provided inside the fixing frame. The dispersion and mixing component drives the dispersion and mixing blades inside the dispersion cylinder to disperse and mix the original slurry and the reducing liquid. The rotating column inside the dispersion and mixing component cooperates with the rotating cover to drive the dispersion and mixing blades to move up and down inside the dispersion cylinder. A tumbling impact component is provided at the bottom of the stirring shaft of the mixing tank. The turning plate in the turning impact component turns and mixes the bottom-layer liquor in the mixing tank, and the arc-shaped impact cylinder in the turning impact component impacts and stirs the bottom-layer liquor in the mixing tank.

2. The liquor mixing device for liquor production according to claim 1, characterized in that, The swinging feeding component further includes a raw slurry cylinder installed at the top of the feeding cylinder. A rotating motor is fixedly installed at the inner top of the fixing frame. The output end of the rotating motor is connected to a rotating shaft. A support plate is fixedly installed at the inner bottom of the fixing frame. The top of the support plate is movably connected to a support rotating shaft. An arc-shaped torsion plate is installed at the center inside the rotating ring. One end of the support rotating shaft is fixedly installed on the arc-shaped torsion plate, and a first bevel gear is fixedly installed at the other end of the support rotating shaft. A second bevel gear that is movably meshed with the first bevel gear is fixedly installed on the rotating shaft.

3. A liquor mixing device for liquor production according to claim 2, characterized in that, A rotating base is fixedly installed on the side of the arc-shaped torsion plate away from the support rotating shaft. The rotating base is movably connected to a connecting rod. The U-shaped torsion frame is fixedly installed at the top of the connecting rod. The U-shaped torsion frame is connected to the outside of the feeding cylinder through a rotating shaft. The bottom of the feeding cylinder extends through and into the dispersion cylinder. A first valve is installed at the top of the feeding cylinder where the U-shaped torsion frame is located.

4. A liquor mixing device for liquor production according to claim 3, characterized in that, A swinging rod that moves in the dispersion cylinder is installed at the top of the feeding cylinder. A plurality of swinging plates are evenly installed on the bottom of the swinging rod on the side close to the dispersion and mixing blades, and the swinging plates move outside the dispersion and mixing blades. Three L-shaped feeding pipes are evenly communicated on the side of the bottom of the feeding cylinder close to the dispersion and mixing blades, and feeding holes are opened at the bottoms of the L-shaped feeding pipes.

5. A liquor mixing device for liquor production according to claim 4, characterized in that, The dispersion and mixing component further includes a square connecting plate. The rotating cover is fixedly installed on the top of the dispersion cylinder. An annular sliding rail is provided inside the rotating cover. The rotating column is movably arranged at the center inside the rotating cover. An arc-shaped limiting rod that is the same size as the annular sliding rail is fixedly installed on the outside of the rotating column, and the arc-shaped limiting rod moves in the annular sliding rail.

6. A liquor mixing device for liquor production according to claim 5, characterized in that, A square connecting plate is slidably connected to the center inside the rotating column. A fixed sliding groove is provided inside the rotating column. A fixed slider that is slidably connected in the fixed sliding groove is installed on the square connecting plate. The bottom end of the rotating shaft is fixedly installed on the top of the square connecting plate. The dispersion and mixing blades are installed at the bottom of the rotating column. The bottom of the dispersion cylinder is connected to the inside of the mixing tank through a discharge pipe. A second valve is installed on the discharge pipe. The dispersion cylinder is installed on the top of the mixing tank through a support leg. A rubber plug-equipped injection port is installed at the top of the dispersion cylinder.

7. A liquor mixing device for liquor production according to claim 6, characterized in that, The flipping and impacting assembly further includes a rotating disk installed at the bottom end of the stirring shaft. A connecting rotating shaft is movably arranged at the inner bottom of the mixing tank. Connecting plates are fixedly installed at both ends of the connecting rotating shaft, and a movable rod is fixedly installed between the tops of the connecting plates. A movable ring is movably sleeved between the connecting plates. A T-shaped limiting ring is fixedly installed at the top of the movable ring, and the T-shaped limiting ring is movably connected to the rotating disk. A stirring blade is installed at the top of the stirring shaft.

8. A liquor mixing device for liquor production according to claim 7, characterized in that, A number of connecting rods are evenly installed on one side of the bottom of the connecting rotating shaft. An arc-shaped impact cylinder is installed at the bottom of the connecting rod. A number of flipping plates are fixedly installed at both ends of the connecting rotating shaft, and flipping holes are formed in the flipping plates. Impact holes are formed at the bottom of the arc-shaped impact cylinder. Arc-shaped striking plates are installed at both ends of the arc-shaped impact cylinder, and striking holes are formed in the arc-shaped striking plates.

9. The mixing method of a liquor mixing device for liquor production according to claim 8, characterized in that, It includes the following steps: Step 1: Inject high-concentration original slurry into the original slurry tank, inject low-concentration reducing liquid through the feeding port on the dispersing cylinder, open the first valve on the feeding cylinder, and at the same time start the rotating motor in the fixed frame. The high-concentration original slurry in the original slurry tank enters the L-shaped feeding pipe through the feeding cylinder, and then enters the interior of the dispersing cylinder through the feeding holes under the L-shaped feeding pipe. The rotating motor drives the second bevel gear on the rotating shaft to move. The second bevel gear meshes with the first bevel gear to drive the rotating ring to move. The rotating ring drives the feeding cylinder to perform a twisting motion through the rotating base, connecting rod and U-shaped twisting frame, and synchronously drives the L-shaped feeding pipe to twist and spray liquid inside the dispersing cylinder. Step 2: The rotating motor drives the square connecting plate and the rotating column to perform a rotating motion in the rotating cover through the rotating shaft. The rotating column moves up and down during the rotation through the annular sliding rail and the arc-shaped limiting rod on the rotating cover. The rotating column drives the dispersing and mixing blades to rotate and move up and down inside the dispersing cylinder, and fully mixes and disperses the high-concentration original slurry and the low-concentration reducing liquid inside the dispersing cylinder. Step 3: During the twisting process of the feeding cylinder, the swinging plate in the dispersing cylinder is driven to swing back and forth synchronously through the swinging rod. The swinging plate cooperates with the dispersing and mixing blades to mix the high-concentration original slurry and the low-concentration reducing liquid by stirring up and down and swinging left and right. Step 4: Inject a certain amount of low-concentration reducing liquid into the mixing tank, and then open the second valve on the discharge pipe. Inject the mixed wine liquid in the dispersing cylinder into the mixing tank to be mixed with the low-concentration reducing liquid again. Drive the rotating disk under the stirring shaft to perform a rotating motion through the driving motor. The rotating disk drives the connecting rotating shaft to perform a swinging motion through the T-shaped limiting ring, movable ring, movable rod and connecting rod. Step 5: Flip and impact and disperse the bottom layer of the wine liquid in the mixing tank through the stirring blades on the stirring shaft and the flipping plates and arc-shaped impact cylinders of the connecting rotating shaft, and mix the low-concentration reducing liquid in the mixing tank and the mixed liquid from the dispersing cylinder again fully and evenly, improving the mixing effect of the wine liquid in the mixing tank.

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