Asymmetric three-dimensional mixer
By designing an asymmetric three-dimensional mixer, using a rotary mixing barrel and an asymmetrically designed mixing barrel, the existing agitated mixing device has been solved, and the full mixing of powder disinfectant raw materials and the improvement of disinfectant quality is achieved.
Patent Information
- Application Number
- CN202421382508.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-17
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-06-17
AI Technical Summary
The existing stir mixing device makes the powder disinfectant raw materials very noise, energy consumption, and insufficient mixing, resulting in poor quality of the disinfectant.
Asymmetric three-dimensional mixer is designed to drive the mixing barrel to rotate through a driving mechanism, and the asymmetric design and acute angle between the left mixing barrel and the right mixing barrel are used to realize three-dimensional mixing to ensure that all raw materials participate in the mixing.
The full mixing of powder disinfectant raw materials is achieved, which reduces production energy consumption and noise, improves the quality of disinfectant, and reduces the failure rate of rotating components.
Smart Images

Figure CN222829493U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of disinfection powder mixing equipment, in particular to an asymmetric three-dimensional mixer. Background Art
[0002] Chlorine dioxide disinfectant powder is widely used for disinfection in public places such as hotels and hospitals. During the production process of chlorine dioxide disinfectant powder, a mixing device is needed to mix a variety of powder disinfectant raw materials together to form chlorine dioxide disinfectant powder raw materials, and then proceed to the next step of processing or packaging; currently, a stirring mixing device is often used to mix the powder disinfectant raw materials. However, when mixing the raw materials, the stirring paddle of this mixing device needs to rotate at a high speed, which makes a lot of noise and consumes a lot of energy. In addition, there are corners near the barrel wall in the mixing barrel that the stirring paddle cannot reach. This part of the powder disinfectant raw materials cannot fully participate in the mixing, resulting in insufficient mixing of the powder disinfectant raw materials, affecting the quality of the disinfectant. Utility Model Content
[0003] The utility model aims to provide an asymmetric three-dimensional mixer, which can fully mix powder disinfectant raw materials, reduce production energy consumption, improve production efficiency, and improve the product quality of disinfectants.
[0004] The utility model comprises a base, a driving mechanism is arranged on the left side of the base, a bracket is arranged on the right side of the base, a mixing barrel is rotatably connected between the driving mechanism and the bracket via a rotating shaft, and the driving mechanism drives the mixing barrel to rotate around the rotating shaft; the mixing barrel comprises a left mixing barrel and a right mixing barrel fixed together at the bottom, the length of the left mixing barrel is smaller than the length of the right mixing barrel, the left mixing barrel and the right mixing barrel are symmetrically and obliquely arranged between the driving mechanism and the bracket with the vertical direction as the center, so as to form a "V"-shaped structure; mixing chambers are arranged inside the left mixing barrel and the right mixing barrel, and the mixing chambers in the left mixing barrel and the right mixing barrel are communicated with each other; a left feeding port is arranged on the left mixing barrel, a right feeding port is arranged on the right mixing barrel, and a common discharge port is arranged at the bottom of the left mixing barrel and the right mixing barrel.
[0005] Preferably, the left mixing cylinder and the right mixing cylinder are both cylindrical.
[0006] Preferably, the included angle between the center lines of the left mixing barrel and the right mixing barrel is an acute angle.
[0007] Preferably, connecting rods are respectively provided in the left mixing barrel and the right mixing barrel, and movable blocks are movably connected to the connecting rods.
[0008] Preferably, a plurality of connecting rods are provided, which are arranged in the mixing barrel at intervals and surround the axis of the mixing barrel.
[0009] Preferably, there are a plurality of movable blocks, and the spacers are sleeved on the connecting rod.
[0010] In summary, the utility model has the following beneficial effects:
[0011] 1. Change the existing stirring powder raw material mixing method, and drive the mixing barrel to rotate by the driving mechanism to achieve the mixing of raw materials, with lower energy consumption and noise, and all raw materials in the mixing barrel can participate in the mixing, without mixing dead angles, and the mixing is more complete, which improves the quality of the disinfectant powder, reduces the rotating parts in the mixing barrel, and reduces the failure rate of the rotating parts;
[0012] 2. Both the left mixing barrel and the right mixing barrel are cylindrical in shape. The length of the left mixing barrel is shorter than that of the right mixing barrel. The two are asymmetrically designed to achieve three-dimensional mixing. The volumes of raw materials stored in the left mixing barrel and the right mixing barrel are different, and the lengths that the raw materials need to travel in the left mixing barrel and the right mixing barrel are also different. Therefore, it is avoided that the same raw materials do repeated movements along the same motion trajectory, and the mixing of raw materials is achieved to the greatest extent and more fully.
[0013] 3. The angle between the center lines of the left mixing barrel and the right mixing barrel is an acute angle, which is usually designed to be about 80 degrees, so that the moving speed and angle of the raw materials in the mixing barrel are moderate, which can achieve a better mixing effect on the raw materials. After the raw materials are mixed, the mixing barrel returns to its original position in the vertical direction. The bottoms of the left mixing barrel and the right mixing barrel jointly form a funnel shape, and the discharge port is located at the center of the connection between the left mixing barrel and the right mixing barrel, which is convenient for discharging and there is no residue in the mixing barrel. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic structural diagram of an asymmetric three-dimensional mixer of the utility model;
[0015] Figure 2 A cross-sectional view of the mixing barrel.
[0016] In the figure: 1. base; 2. driving mechanism; 3. bracket; 4. rotating shaft; 5. left mixing barrel; 6. right mixing barrel; 7. left feed port; 8. right feed port; 9. discharge port; 10. connecting rod; 11. movable block. DETAILED DESCRIPTION
[0017] The utility model will be further described below in conjunction with the accompanying drawings.
[0018] The positions mentioned in this specification are based on the positions of the asymmetric three-dimensional mixer of the utility model during normal operation, and do not limit the positions during storage and transportation. They only represent relative position relationships, not absolute position relationships.
[0019] like Figure 1 to Figure 2As shown together, an asymmetric three-dimensional mixer includes a base 1, a driving mechanism 2 is provided on the left side of the base 1, a bracket 3 is provided on the right side of the base 1, a mixing barrel is rotatably connected between the driving mechanism 2 and the bracket 3 via a rotating shaft 4, a motor, a belt and other connecting parts for driving the mixing barrel to rotate are provided in the driving mechanism 2, and the driving mechanism 2 drives the mixing barrel to rotate around the rotating shaft 4; the distance between the rotating shaft 4 and the ground is greater than the farthest distance from the rotating shaft 4 to the outer contour of the mixing barrel to ensure that the mixing barrel can rotate normally.
[0020] The mixing barrel comprises a left mixing barrel 5 and a right mixing barrel 6 fixed together at the bottom, the length of the left mixing barrel 5 is smaller than that of the right mixing barrel 6, and the left mixing barrel 5 and the right mixing barrel 6 are symmetrically and obliquely arranged between the driving mechanism 2 and the bracket 3 with the vertical direction as the center, so as to form a "V"-shaped structure; the left mixing barrel 5 and the right mixing barrel 6 are both provided with mixing chambers inside, and the mixing chambers in the left mixing barrel 5 and the right mixing barrel 6 are connected with each other; the left mixing barrel 5 is provided with a left feeding port 7, and the right mixing barrel 6 is provided with a right feeding port 8, and the left feeding port 7 and the right feeding port 8 are used to fill the mixing barrel with raw materials, and the left feeding port 7 and the right feeding port 8 are both provided with sealing covers; the left mixing barrel 5 and the right mixing barrel 6 are both provided with a left feeding port 7 and a right feeding port 8 at the bottom There is a common discharge port 9, and a sealing cover is provided on the outside of the discharge port 9; the discharge port 9 is located at the center of the connection part of the left mixing barrel 5 and the right mixing barrel 6, and the discharge port 9 is used to discharge the mixed disinfectant powder; when the mixing barrel rotates driven by the driving mechanism 2, the powder raw materials in the left mixing barrel 5 and the right mixing barrel 6 turn back and forth and up and down to achieve mixing; because the length of the left mixing barrel 5 is smaller than that of the right mixing barrel 6, the volumes of raw materials stored in the left mixing barrel 5 and the right mixing barrel 6 are different, and the lengths that the raw materials need to travel in the left mixing barrel 5 and the right mixing barrel 6 are also different, thereby avoiding repeated movement of the same raw materials along the same motion trajectory, and achieving the mixing of the raw materials to a greater extent and more sufficient mixing.
[0021] Furthermore, the left mixing barrel 5 and the right mixing barrel 6 are both cylindrical in shape, and the cylinder has a larger capacity and can mix more raw materials at the same time; the angle between the center lines of the left mixing barrel 5 and the right mixing barrel 6 is an acute angle, and the angle is usually designed to be about 80 degrees, so that the movement speed and angle of the raw materials in the mixing barrel are moderate, which can achieve a better mixing effect on the raw materials, and after the raw materials are mixed, the mixing barrel returns to its original position and is located in the vertical direction. The bottom of the left mixing barrel 5 and the right mixing barrel 6 jointly form a funnel shape, and the discharge port 9 is located at the center of the connection between the left mixing barrel 5 and the right mixing barrel 6 to facilitate discharge.
[0022] Furthermore, a connecting rod 10 is respectively provided in the left mixing barrel 5 and the right mixing barrel 6, and a movable block 11 is movably connected to the connecting rod 10. The movable block 11 is made of metal material, and the connecting block can move up and down along the connecting rod 10 under the action of gravity; a plurality of connecting rods 10 are provided, which are arranged at intervals in the mixing barrel and are arranged around the axis of the mixing barrel; a plurality of movable blocks 11 are provided, which are sleeved on the connecting rod 10 at intervals; when the mixing barrel rotates, the movable block 11 sleeved on the connecting rod 10 will also move up and down along the connecting rod 10 under the action of gravity. In the process of the movement of the movable block 11, the raw materials will be driven to move together, thereby accelerating the mixing of the raw materials and making the raw materials further and more fully mixed.
[0023] Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by technicians in this technical field within the essential scope of the present invention should also fall within the protection scope of the present invention.
Claims
1. An asymmetric three-dimensional mixer, characterized in that: The invention comprises a base (1), a driving mechanism (2) is provided on the left side of the base (1), a bracket (3) is provided on the right side of the base (1), a mixing cylinder is rotatably connected between the driving mechanism (2) and the bracket (3) via a rotating shaft (4), and the driving mechanism (2) drives the mixing cylinder to rotate around the rotating shaft (4); the mixing cylinder comprises a left mixing cylinder (5) and a right mixing cylinder (6) fixed together at the bottom, the length of the left mixing cylinder (5) is shorter than the length of the right mixing cylinder (6), and the left mixing cylinder (5) and the right mixing cylinder (6) are connected to each other. The cylinder (6) is symmetrically and tiltedly arranged between the driving mechanism (2) and the bracket (3) with the vertical direction as the center, so as to form a "V"-shaped structure; the left mixing cylinder (5) and the right mixing cylinder (6) are both provided with mixing chambers inside, and the mixing chambers in the left mixing cylinder (5) and the right mixing cylinder (6) are connected to each other; the left mixing cylinder (5) is provided with a left feeding port (7), and the right mixing cylinder (6) is provided with a right feeding port (8); and the bottoms of the left mixing cylinder (5) and the right mixing cylinder (6) are provided with a common discharge port (9).
2. An asymmetric three-dimensional mixer as claimed in claim 1, characterized in that: The left mixing cylinder (5) and the right mixing cylinder (6) are both cylindrical.
3. An asymmetric three-dimensional mixer as claimed in claim 1, characterized in that: The included angle between the center lines of the left mixing cylinder (5) and the right mixing cylinder (6) is an acute angle.
4. An asymmetric three-dimensional mixer as claimed in claim 1, characterized in that: The left mixing barrel (5) and the right mixing barrel (6) are respectively provided with connecting rods (10), and the connecting rods (10) are movably connected with movable blocks (11).
5. An asymmetric three-dimensional mixer as claimed in claim 4, characterized in that: A plurality of connecting rods (10) are arranged at intervals in the mixing barrel and are arranged around the axis of the mixing barrel.
6. An asymmetric three-dimensional mixer as claimed in claim 4, characterized in that: The movable blocks (11) are provided in a plurality and are sleeved on the connecting rod (10) at intervals.