Three-dimensional motion mixer for powder production

By introducing a separation and support mechanism into the three-dimensional motion mixer, the problems of high energy consumption and insufficient flexibility of existing equipment are solved, and efficient mixing and safe production of various powders are achieved.

CN223615709UActive Publication Date: 2025-12-02WUHAN MAIXINLI PHARM CO LTD
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Patent Information

Application Number
CN202520249175.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2025-12-02
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

Existing three-dimensional motion mixers are energy-intensive, costly, and lack flexibility in powder production, and cannot mix multiple powders simultaneously.

Method used

A three-dimensional motion mixer with a separating mechanism and a supporting mechanism was designed, which allows for the simultaneous mixing of multiple powders and improves safety through a protective mechanism.

Benefits of technology

It reduces production costs, improves flexibility and safety in use, and enables efficient mixing of various powders.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a three-dimensional motion mixing machine for powder production, which comprises a mixing machine body and is characterized in that a bearing mechanism is arranged at the output end of the mixing machine body, a protection mechanism is arranged outside the mixing machine body, a separation mechanism is arranged in the bearing mechanism and comprises a separation barrel, and the separation barrel is arranged in the separation barrel. The number of the separation barrels is three, the separation barrels are placed in the bearing mechanism, and positioning rings are connected to the tops of the separation barrels in an inserted mode. According to the three-dimensional motion mixing machine for powder production, through the arrangement of the separation mechanism and the bearing mechanism, the whole device can mix various powder at the same time, so that the use flexibility of the whole device is improved, and the production cost is reduced; and through the arrangement of the protection mechanism, the whole device is shielded in the use process, workers are reminded of getting away, the situation that the whole device is damaged in the operation process or dangerous accidents are caused by collision due to the fact that the workers get close is avoided, and the mixed operation safety is improved.
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Description

Technical Field

[0001] This utility model relates to the field of mixing equipment technology, specifically a three-dimensional motion mixer for powder production. Background Technology

[0002] A three-dimensional motion mixer is a type of mixer used in pharmaceutical, chemical, food, light industry, electronics, machinery, mining and metallurgy, defense industry, and scientific research units for high-uniformity mixing of powdered and granular materials. Among them, three-dimensional motion mixers are widely used in the production of powders such as pharmaceuticals and health products. They can mix materials with different properties in three-dimensional space to achieve uniform, fast, and efficient mixing results, making the mixing uniformity higher than that of general mixers.

[0003] In the process of developing this application, the inventors discovered that the technology has at least the following problems: the existing three-dimensional motion mixer requires high power to achieve rotational motion during use, so the energy consumption is relatively high, and it can only mix one type of powder at a time, which is costly for small-scale or budget-limited production enterprises and lacks flexibility in use, so further improvement is needed. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a three-dimensional motion mixer for powder production, which has advantages such as separated mixing and solves the problem of limited mixing space in existing three-dimensional motion mixers.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a three-dimensional motion mixer for powder production, comprising a mixer body, a bearing mechanism provided at the output end of the mixer body, a protective mechanism provided on the outside of the mixer body, and a separation mechanism provided inside the bearing mechanism;

[0006] The separating mechanism includes three separating barrels, which are placed inside the supporting mechanism. A positioning ring is inserted into the top of each separating barrel. The two lower positioning rings are fixedly installed at the bottom of the two upper separating barrels. A top cover is fixedly installed on the top of the upper positioning ring. A sealing ring is embedded inside the positioning ring, contacting the top of the separating barrel. Fastening blocks are fixedly installed on both the front and back of each separating barrel. A positioning ring, with one end engaged inside the fastening block, is hinged to both the front and back of the upper separating barrel and the front and back of the top cover. Stabilizing blocks are fixedly installed on both the left and right sides of each separating barrel.

[0007] Furthermore, the supporting mechanism includes a mixing tank, which is disposed at the output end of the mixer body. A sealing cover is detachably installed on the top of the mixing tank, and a silicone abutment is fixedly installed on the inner top wall of the sealing cover. Limit grooves are fixedly installed on both the left and right sides of the inner wall of the mixing tank.

[0008] Furthermore, the protective mechanism includes a U-shaped guardrail, which is rotatably installed on the outside of the mixer body. Each of the left and right front ends of the U-shaped guardrail is hinged with an adjusting cylinder, one end of which is hinged to the mixer body. A warning sign is fixedly installed on the top of the U-shaped guardrail.

[0009] Furthermore, the stabilizing block is slidably installed inside the limiting groove, and the separator below is placed on the inner bottom wall of the mixing tank.

[0010] Furthermore, an arc-shaped block is fixedly installed on the inner bottom wall of the positioning ring, and a groove adapted to the arc-shaped block is opened at the bottom of the fastening block. The positioning ring and the arc-shaped block are integrally formed.

[0011] Compared with the prior art, the technical solution of this application has the following beneficial effects:

[0012] 1. This three-dimensional motion mixer for powder production, through the setting of a separating mechanism and a supporting mechanism, enables the device to mix multiple powders simultaneously, thereby improving the overall flexibility of the device and reducing production costs;

[0013] 2. This three-dimensional motion mixer for powder production has a protective mechanism that shields the entire device during use and reminds workers to stay away, thus preventing damage to the device or collisions with workers that could lead to dangerous accidents and improving the safety of mixing operations. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of this utility model;

[0015] Figure 2 This is a schematic diagram of the supporting mechanism and the separating mechanism of this utility model;

[0016] Figure 3 This is a schematic diagram of the separation mechanism of this utility model.

[0017] In the diagram: 1. Mixing machine body; 2. U-shaped guardrail; 3. Warning sign; 4. Adjusting cylinder; 5. Mixing tank; 6. Sealing cover; 7. Silicone block; 8. Divider tank; 9. Positioning ring; 10. Sealing ring; 11. Fastening block; 12. Positioning ring; 13. Limiting groove; 14. Stabilizing block; 15. Top cover. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0019] Please see Figure 1-3 This embodiment of a three-dimensional motion mixer for powder production includes a mixer body 1, a bearing mechanism at the output end of the mixer body 1, a protective mechanism on the outside of the mixer body 1, and a separation mechanism inside the bearing mechanism.

[0020] It should be noted that the hybrid body 1 includes a base, a drive system, and universal rocker arms. The base includes a U-shaped channel steel frame and a stainless steel end plate. The drive system includes a motor, sprockets, and a worm gear reducer. The universal rocker arms are two Y-shaped universal rocker arms suspended from the ends of the main and driven shafts. The two universal rocker arms are both intersecting and perpendicular to each other in space. When the drive system drives the universal rocker arms to operate, the bearing mechanism can repeatedly perform composite movements such as translation, rotation, and tumbling in space.

[0021] In this embodiment, the separating mechanism includes three separating barrels 8. The separating barrels 8 are placed inside the carrying mechanism. A positioning ring 9 is inserted into the top of the separating barrel 8. The two lower positioning rings 9 are fixedly installed at the bottom of the two upper separating barrels 8. A top cover 15 is fixedly installed on the top of the upper positioning ring 9. A sealing ring 10 that contacts the top of the separating barrel 8 is embedded inside the positioning ring 9. Fastening blocks 11 are fixedly installed on the front and back of the separating barrel 8. A positioning ring 12 with one end locked inside the fastening block 11 is hinged to the front and back of the upper separating barrel 8 and the front and back of the top cover 15. A stabilizing block 14 is fixedly installed on the left and right sides of the separating barrel 8. An arc-shaped block is fixedly installed on the inner bottom wall of the positioning ring 12. A groove that matches the arc-shaped block is opened at the bottom of the fastening block 11. The positioning ring 12 and the arc-shaped block are integrally formed.

[0022] The top of the cover 15 is fixedly equipped with a handle, which allows the divider 8 to be easily removed.

[0023] Specifically, when processing different powders, different powder raw materials can be placed inside different partition barrels 8. Then, the partition barrels 8 are stacked so that the sealing ring 10 in the positioning ring 9 contacts the top of the partition barrel 8 to achieve a seal. Finally, the positioning ring 12 is pressed into the fastening block 11 so that the arc-shaped block is engaged. Finally, the partition barrel 8 is installed into the bearing mechanism via the stabilizing block 14 to achieve the mixing of multiple powders.

[0024] In this embodiment, the supporting mechanism includes a mixing tank 5, which is located at the output end of the mixing machine body 1. The lower dividing tank 8 is placed on the inner bottom wall of the mixing tank 5. A sealing cover 6 is detachably installed on the top of the mixing tank 5. A silicone abutment 7 is fixedly installed on the inner top wall of the sealing cover 6. Limiting grooves 13 are fixedly installed on both the left and right sides of the inner wall of the mixing tank 5. A stabilizing block 14 is slidably installed inside the limiting groove 13.

[0025] It should be noted that the mixing tank 5 can be detachably installed inside the universal rocker arm, thereby being driven to perform complex movements such as translation, rotation and tumbling in space repeatedly.

[0026] Specifically, the sealing cap 6 can be quickly separated from the mixing tank 5 by hand-tightening the bolts, so that the silicone block 7 no longer contacts the top cover 15. At this time, the entire separating mechanism can be taken out through the limiting groove 13 by pulling out or lifting it. Similarly, the stabilizing block 14 can be quickly installed by placing it into the limiting groove 13, thereby realizing the mixing of various powders and making the maintenance of the separating tank 8 more convenient, avoiding the difficulty in cleaning the dead corners where powder adheres.

[0027] In this embodiment, the protective mechanism includes a U-shaped guardrail 2, which is rotatably installed on the outside of the mixer body 1. An adjusting cylinder 4 with one end hinged to the front end of each of the left and right sides of the U-shaped guardrail 2 is provided. A warning sign 3 is fixedly installed on the top of the U-shaped guardrail 2.

[0028] Specifically, when the mixing body 1 drives the load-bearing mechanism to operate, the adjusting cylinder 4 is activated to extend, thereby causing the U-shaped guardrail 2 to move forward with the rotating installation point of the mixing body 1 as the center. This allows the U-shaped guardrail 2 to protect the area around the load-bearing mechanism, keeping the workers at a certain distance from the load-bearing mechanism. At the same time, it also enhances the safety of the device for workers at a distance who are using it.

[0029] 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 a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0030] 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 three-dimensional motion mixer for powder production, comprising a mixer body (1), characterized in that, The output end of the mixing body (1) is provided with a bearing mechanism, the outside of the mixing body (1) is provided with a protective mechanism, and the inside of the bearing mechanism is provided with a separation mechanism; The separating mechanism includes three separating barrels (8). The separating barrels (8) are placed inside the bearing mechanism. A positioning ring (9) is inserted into the top of the separating barrel (8). The two lower positioning rings (9) are fixedly installed at the bottom of the two upper separating barrels (8). A top cover (15) is fixedly installed on the top of the upper positioning ring (9). A sealing ring (10) that contacts the top of the separating barrel (8) is embedded inside the positioning ring (9). Fastening blocks (11) are fixedly installed on the front and back of the separating barrel (8). A positioning ring (12) with one end locked inside the fastening block (11) is hinged to the front and back of the upper separating barrel (8) and the front and back of the top cover (15). A stabilizing block (14) is fixedly installed on the left and right sides of the separating barrel (8).

2. The three-dimensional motion mixer for powder production according to claim 1, characterized in that: The supporting mechanism includes a mixing tank (5), which is located at the output end of the mixing machine body (1). A sealing cover (6) is detachably installed on the top of the mixing tank (5). A silicone abutment (7) is fixedly installed on the inner top wall of the sealing cover (6). Limit grooves (13) are fixedly installed on both the left and right sides of the inner wall of the mixing tank (5).

3. A three-dimensional motion mixer for powder production according to claim 1, characterized in that: The protective mechanism includes a U-shaped guardrail (2), which is rotatably installed on the outside of the mixer body (1). The front ends of the left and right sides of the U-shaped guardrail (2) are hinged with an adjusting cylinder (4) that is hinged to the mixer body (1). A warning sign (3) is fixedly installed on the top of the U-shaped guardrail (2).

4. A three-dimensional motion mixer for powder production according to claim 2, characterized in that: The stabilizing block (14) is slidably installed inside the limiting groove (13), and the lower separating barrel (8) is placed on the inner bottom wall of the mixing barrel (5).

5. A three-dimensional motion mixer for powder production according to claim 1, characterized in that: The inner bottom wall of the positioning ring (12) is fixedly installed with an arc-shaped block, and the bottom of the fastening block (11) is provided with a groove that matches the arc-shaped block. The positioning ring (12) and the arc-shaped block are integrally formed.