Mixing barrel for ink processing

By combining spiral rotor blades and scraper, the problem of stratification during ink mixing is solved, and the materials are fully stirred in both horizontal and vertical directions, improving the mixing effect and ink quality.

CN223760841UActive Publication Date: 2026-01-06合肥瑞雪新材料科技有限公司
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Patent Information

Application Number
CN202520008182.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2026-01-06
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

In existing technologies, inks are prone to separation during the mixing process, resulting in poor mixing performance.

Method used

The system employs a combination of spiral rotor blades and scrapers. The spiral blades provide thrust perpendicular to the spiral surface, causing the mixed material to flow downwards along the spiral surface. Combined with the scraper scraping the sediment at the bottom of the tank, and the stirring blades providing oblique thrust, the material is repeatedly stirred in both horizontal and vertical directions to ensure uniform mixing.

Benefits of technology

It effectively avoids material separation, improves mixing effect, ensures consistency of ink color, concentration and viscosity, and enhances the uniformity and quality of mixing.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223760841U_ABST
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Abstract

The utility model relates to the technical field of ink processing, in particular to a mixing barrel for ink processing, which comprises a barrel body, a motor is fixedly mounted on the surface of the top outside the barrel body, the output end of the motor is fixedly connected with a rotating shaft, rotor blades are arranged on the surface of the rotating shaft in an array manner, and the rotor blades are spirally fixed on the surface of the rotating shaft. And connecting rods are fixedly arranged on the surface of the top in the barrel body in a circumferential array mode, the lower ends of the connecting rods are fixedly connected with a material guiding barrel, and the rotor blades are arranged in the material guiding barrel. According to the mixing barrel for ink processing provided by the utility model, through the arrangement of the rotor blades, a mixed material outside the guide barrel enters the guide barrel from the top inlet of the guide barrel and is discharged out of the guide barrel from the bottom outlet of the guide barrel, so that the mixing of the internal material in the vertical direction is realized; therefore, material layering caused by stirring and mixing of the materials in the horizontal direction is effectively avoided, and the mixing effect is effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of ink processing technology, specifically to a mixing bucket for ink processing. Background Technology

[0002] Ink is made by mixing a variety of materials, and the mixing process is carried out in a mixing tank.

[0003] Publication No. CN220824710U, Publication Date 20240423, discloses an anti-sedimentation stirring tank, comprising: a stirring tank body, a tank cover, and a stirring assembly one. The tank cover is fixed to the upper surface of the stirring tank body by screws. The stirring assembly one is installed on the upper surface of the tank cover. Two feed pipes with identical structures are installed through the upper surface of the tank cover. A storage tank is installed on the upper surface of the tank cover. A stirring rod one is installed on the inner wall of the stirring tank body. An arc-shaped protrusion is provided on the outer surface of the stirring rod one. A baffle is installed inside the stirring tank body. Receiving cavities are provided above and below the baffle. A stirring assembly two is installed at the bottom of the stirring tank body. A pumping pipe is installed through the lower surface of the baffle. A pumping pump is installed on the outer surface of the pumping pipe.

[0004] In the prior art, including the aforementioned patent, by setting the stirring rod 2 and stirring rod 1 separately, the components in the ink can be effectively dispersed evenly, improving the mixing effect. However, even if the stirring rod 1 and stirring rod 2 are set separately, the stirring is carried out in the same horizontal dimension, and the bottom and top still cannot be fully mixed, which can easily lead to ink stratification and affect the mixing effect. Utility Model Content

[0005] The purpose of this invention is to provide a mixing bucket for ink processing.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a mixing bucket for ink processing, comprising a bucket body, a motor fixedly installed on the top surface of the outer side of the bucket body, a rotating shaft fixedly connected to the output end of the motor, rotor blades arranged in an array on the surface of the rotating shaft, the rotor blades being helically fixed to the surface of the rotating shaft, a connecting rod fixedly arranged in a circumferential array on the top surface of the inner side of the bucket body, a guide bucket fixedly connected to the lower end of the connecting rod, and the rotor blades being disposed inside the guide bucket.

[0007] Preferably, a fixed disk is fixedly connected to the lower end of the rotating shaft, and scrapers are fixedly arranged in a circumferential array on the fixed disk, with the bottom edge of the scrapers fitting against the bottom surface of the inside of the barrel.

[0008] Preferably, stirring blades are fixedly provided on the scraper.

[0009] Preferably, the edge of the stirring blade is fitted to the inner wall of the barrel, and the stirring blade is spirally arranged with the spiral direction opposite to that of the rotor blade.

[0010] Preferably, a dispersion plate is fixedly arranged in a circumferential array on the outer surface of the feed guide barrel, and dispersion holes are arranged in an array on the dispersion plate.

[0011] Preferably, the top of the barrel is provided with a feeding port, the bottom of the barrel is fixedly provided with support legs and a discharge port, and a valve is provided on the discharge port.

[0012] In the above technical solution, the mixing tank for ink processing provided by this utility model has the following beneficial effects: the starting motor drives the rotating shaft to rotate, and the rotating shaft drives the rotor blades to rotate, thereby mixing and stirring the materials. Since the rotor blades are arranged in a spiral shape, when the rotor blades rotate, the lower spiral surface of the rotor blades provides a thrust perpendicular to the lower spiral surface to the mixing materials, thereby providing a downward thrust to the mixing materials. Thus, the mixing materials gain kinetic energy under the push of the rotor blades and flow downward along the spiral surface of the rotor blades. The rotor blades are arranged in a circumferential array in the guide tank, and multiple sets are arranged. The mixing materials are mixed and stirred under the action of the rotor blades in the guide tank and flow downward along the guide tank. Thus, the mixing materials outside the guide tank enter the guide tank from the top inlet and exit from the bottom outlet of the guide tank, thereby realizing the vertical mixing of the internal materials, effectively avoiding the material stratification caused by horizontal mixing, and effectively improving the mixing effect. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.

[0014] Figure 1 This is a schematic diagram of the internal structure provided for an embodiment of the present utility model;

[0015] Figure 2 A three-dimensional structural diagram of the stirring blade and rotor blade provided in an embodiment of this utility model;

[0016] Figure 3 This is a schematic diagram of the front cross-sectional structure provided for an embodiment of the present utility model;

[0017] Figure 4 This is a cross-sectional structural diagram provided for an embodiment of the present utility model.

[0018] Explanation of reference numerals in the attached figures:

[0019] 1. Barrel body; 11. Feeding port; 12. Support leg; 13. Discharge port; 131. Valve; 2. Motor; 21. Shaft; 211. Rotor blade; 212. Fixed plate; 2121. Scraper; 2122. Agitator blade; 3. Connecting rod; 31. Guide barrel; 311. Dispersion plate; 3111. Dispersion hole. Detailed Implementation

[0020] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.

[0021] like Figure 1-4 As shown, a mixing tank for ink processing includes a tank body 1. A motor 2 is fixedly installed on the top surface of the outer side of the tank body 1. A rotating shaft 21 is fixedly connected to the output end of the motor 2. Rotor blades 211 are arranged in an array on the surface of the rotating shaft 21. The rotor blades 211 are fixedly fixed to the surface of the rotating shaft 21 in a spiral shape. A connecting rod 3 is fixedly arranged in a circumferential array on the top surface of the inner side of the tank body 1. A guide tank 31 is fixedly connected to the lower end of the connecting rod 3. The rotor blades 211 are disposed inside the guide tank 31.

[0022] Specifically, during mixing, the starting motor 2 drives the rotating shaft 21 to rotate, and the rotating shaft 21 drives the rotor blades 211 to rotate, thereby mixing and stirring the materials.

[0023] Furthermore, since the rotor blades 211 are arranged in a spiral shape, when the rotor blades 211 rotate, the lower spiral surface of the rotor blades 211 provides a thrust perpendicular to the lower spiral surface to the mixing material, thereby providing a downward thrust to the mixing material. This allows the mixing material to gain kinetic energy under the push of the rotor blades 211 and flow downwards along the spiral surface of the rotor blades 211. The rotor blades 211 are arranged in a circumferential array inside the guide barrel 31, and multiple sets are provided. The mixing material is mixed and stirred under the action of the rotor blades 211 inside the guide barrel 31 and flows downwards along the guide barrel 31. This allows the mixing material outside the guide barrel 31 to enter the guide barrel 31 from the top inlet and exit from the bottom outlet, thus ensuring that the mixing material inside the barrel 1 flows according to the following... Figure 3 The motion pattern shown indicates that the materials are mixed in a vertical direction, thereby effectively avoiding material stratification caused by horizontal mixing.

[0024] In the above technology, during mixing, the starting motor 2 drives the rotating shaft 21 to rotate, which in turn drives the rotor blades 211 to rotate, thereby mixing and stirring the materials. Since the rotor blades 211 are arranged in a spiral shape, when the rotor blades 211 rotate, the lower spiral surface of the rotor blades 211 provides a thrust perpendicular to the lower spiral surface to the mixed materials, thus providing a downward thrust to the mixed materials. As a result, the mixed materials gain kinetic energy under the push of the rotor blades 211 and flow downward along the spiral surface of the rotor blades 211. The rotor blades 211 are arranged in a circumferential array inside the guide barrel 31, and multiple sets are arranged. The mixed materials are mixed and stirred under the action of the rotor blades 211 inside the guide barrel 31 and flow downward along the guide barrel 31. This allows the mixed materials outside the guide barrel 31 to enter the guide barrel 31 from the top inlet and exit the guide barrel 31 from the bottom outlet, so that the mixed materials inside the barrel 1 are mixed according to the following... Figure 3 The motion pattern shown indicates that the materials are mixed in a vertical direction, thereby effectively avoiding material stratification caused by horizontal mixing and thus improving the mixing effect.

[0025] As a further embodiment of the present invention, a fixed disk 212 is fixedly connected to the lower end of the rotating shaft 21, and scrapers 2121 are fixedly arranged in a circumferential array on the fixed disk 212. The bottom edge of the scrapers 2121 is fitted to the bottom surface of the inside of the barrel 1.

[0026] Specifically, the mixed materials are mixed and stirred under the action of the rotor blades 211 inside the guide barrel 31 to achieve preliminary stirring, and flow downward along the guide barrel 31, so that the mixed materials outside the guide barrel 31 enter the guide barrel 31 from the top inlet of the guide barrel 31, are discharged from the bottom outlet of the guide barrel 31 and flow to the scraper 2121.

[0027] Furthermore, the rotation of the rotating shaft 21 drives the fixed disk 212 to rotate, which in turn drives the scraper 2121 to rotate, thereby performing secondary stirring on the mixed material flowing towards the scraper 2121, making the material more uniformly mixed and further improving the mixing effect.

[0028] Furthermore, since the bottom edge of the scraper 2121 is fitted to the bottom surface of the inside of the barrel 1, during the rotation of the scraper 2121, the bottom edge of the scraper 2121 scrapes the bottom surface of the inside of the barrel 1, thereby scraping up the material deposited at the bottom of the inside of the barrel 1 and further mixing it with the material flowing to the scraper 2121, thereby ensuring uniform mixing, ensuring the consistency of ink color, concentration and viscosity, and further improving the mixing effect.

[0029] As a further embodiment of the present invention, a stirring blade 2122 is fixedly provided on the scraper 2121.

[0030] Specifically, the scraper 2121 rotates, which in turn drives the stirring blade 2122 to rotate, thereby mixing the material outside the feed container 31, further stirring the material, and cooperating with the rotor blade 211 and scraper 2121 to achieve multiple stirring, thereby making the mixture more uniform and effectively improving the quality of the ink.

[0031] As a further embodiment of the present invention, the edge of the stirring blade 2122 is fitted to the inner wall of the barrel 1, the stirring blade 2122 is spirally arranged, and the spiral direction is opposite to the spiral direction of the rotor blade 211.

[0032] Specifically, since the stirring blade 2122 is spirally arranged, and the spiral direction is opposite to that of the rotor blade 211, the stirring blade 2122 and the scraper 2121 rotate synchronously and in the same direction as the rotor blade 211. Therefore, during the rotation of the stirring blade 2122, the upper spiral surface of the stirring blade 2122 provides a thrust perpendicular to the upper spiral surface to the mixing material, thereby providing an upward oblique thrust to the mixing material. As a result, the mixing material gains kinetic energy under the push of the stirring blade 2122 and moves upward along the upper spiral surface of the stirring blade 2122, thus cooperating with the rotor blade 211 to make the material move as follows: Figure 3 The circular flow, as shown, allows for repeated stirring of the material surface in both horizontal and vertical directions, further ensuring more thorough mixing.

[0033] As a further embodiment of the present invention, a dispersion plate 311 is fixedly arranged in a circumferential array on the outer surface of the guide barrel 31, and dispersion holes 3111 are arrayed on the dispersion plate 311.

[0034] Specifically, by setting a dispersing plate 311 on the outer surface of the feed tank 31, when the material rotates upward under the action of the stirring blades 2122, the material is further dispersed through the dispersing holes 3111 opened on the ground of the dispersing plate 311, thereby making the mixing more uniform and further improving the quality of the ink.

[0035] As a further embodiment of the present invention, a feeding port 11 is provided at the top of the barrel 1, and a support leg 12 and a discharge port 13 are fixedly provided at the bottom of the barrel 1. A valve 131 is provided on the discharge port 13.

[0036] Specifically, materials can be fed into the barrel 1 through the feeding port 11, and the mixed ink can be discharged through the discharge port 13 by opening the valve 131.

[0037] Working principle: Materials can be fed into the barrel 1 through the feeding port 11. During mixing, the motor 2 is started to drive the rotating shaft 21 to rotate. The rotation of the rotating shaft 21 drives the rotor blades 211 to rotate, thereby mixing and stirring the materials. Since the rotor blades 211 are arranged in a spiral shape, when the rotor blades 211 rotate, the lower spiral surface of the rotor blades 211 provides a thrust perpendicular to the lower spiral surface to the mixed materials, thus providing a downward thrust to the mixed materials. As a result, the mixed materials gain kinetic energy under the push of the rotor blades 211 and flow downward along the spiral surface of the rotor blades 211. The rotor blades 211 are arranged in a circumferential array in the guide barrel 31, and multiple sets of rotors are provided. The mixed materials are mixed in the guide barrel 31. The mixture is stirred and agitated by the blades 211 and flows downward along the guide barrel 31. This allows the mixed material outside the guide barrel 31 to enter from the top inlet and exit from the bottom outlet. The rotor blades 211 inside the guide barrel 31 stir and agitate the material, achieving initial stirring. The material then flows downward along the guide barrel 31, allowing the mixed material outside the guide barrel 31 to enter from the top inlet and exit from the bottom outlet, flowing towards the scraper 2121. The rotating shaft 21 rotates, causing the fixed disk 212 to rotate, which in turn rotates the scraper 2121, thus agitating the mixed material flowing towards the scraper 2121. The material undergoes secondary stirring to ensure more uniform mixing and further improve the mixing effect. Because the bottom edge of the scraper 2121 is fitted against the inner bottom surface of the barrel 1, during rotation, the bottom edge of the scraper 2121 scrapes against the inner bottom surface of the barrel 1, thereby scraping up the material deposited at the bottom of the barrel 1 and further mixing it with the material flowing towards the scraper 2121. This ensures uniform mixing and consistency in the ink's color, concentration, and viscosity, further improving the mixing effect. The rotation of the scraper 2121 drives the stirring blades 2122 to rotate, thus mixing the material outside the guide barrel 31, further agitating the material, and mixing it with the rotor blades 211 and... The scraper 2121 works in conjunction with the material to achieve multiple stirring operations, resulting in a more uniform mixture and effectively improving ink quality. Because the stirring blades 2122 are spirally arranged, with the spiral direction opposite to that of the rotor blades 211, and rotate synchronously with the scraper 2121 in the same direction, the upper spiral surface of the stirring blades 2122 provides a thrust perpendicular to the upper spiral surface to the mixing material during rotation. This provides an upward thrust, allowing the mixing material to gain kinetic energy under the push of the stirring blades 2122 and move upward along the upper spiral surface of the stirring blades 2122. This, in conjunction with the rotor blades 211, causes the material to move in a specific direction. Figure 3The circulating flow, as shown, allows for repeated stirring of the material surface in both horizontal and vertical directions, further enhancing the mixing of the material. By setting a dispersing plate 311 on the outer surface of the feed tank 31, the material is further dispersed through the dispersing holes 3111 on the ground of the dispersing plate 311 as it rotates upward under the action of the stirring blades 2122, resulting in more uniform mixing and further improving the quality of the ink.

[0038] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A mixing tank for ink processing, comprising a tank body (1), characterized in that, The outer top surface of the barrel body (1) is fixedly provided with a motor (2), the output end of the motor (2) is fixedly connected with a rotating shaft (21), the surface of the rotating shaft (21) is arranged with rotor blades (211), the rotor blades (211) are fixed on the surface of the rotating shaft (21) in a spiral shape, the inner top surface of the barrel body (1) is fixedly provided with connecting rods (3) in a circular array, the lower end of each connecting rod (3) is fixedly connected with a material guiding barrel (31), and the rotor blades (211) are arranged in the material guiding barrel (31).

2. The mixing tank for ink processing according to claim 1, wherein The lower end of the rotating shaft (21) is fixedly connected with a fixed disc (212), the fixed disc (212) is fixedly provided with scraper plates (2121) in a circular array, and the bottom edges of the scraper plates (2121) are arranged in close contact with the inner bottom surface of the barrel body (1).

3. The mixing tank for ink processing according to claim 2, wherein The scraper plates (2121) are fixedly provided with stirring blades (2122).

4. The mixing tank for ink processing according to claim 3, wherein The edges of the stirring blades (2122) are arranged in close contact with the inner wall of the barrel body (1), the stirring blades (2122) are arranged in a spiral shape, and the spiral direction is opposite to that of the rotor blades (211).

5. The ink processing mixing tank according to claim 1, wherein The outer side surface of the material guiding barrel (31) is fixedly provided with dispersion plates (311) in a circular array, and the dispersion plates (311) are arranged with dispersion holes (3111) in an array.

6. The mixing tank for ink processing according to claim 1, wherein The top of the barrel body (1) is provided with a feeding port (11), the bottom of the barrel body (1) is fixedly provided with supporting legs (12) and a discharging port (13), and the discharging port (13) is provided with a valve (131).

Citation Information

Patent Citations

  • Anti-precipitation stirring barrel

    CN220824710U