Stirring machine

By coating the jaws and stirring rods of the mixer with a nano-ceramic wear-resistant coating and connecting them to the base using a vacuum suction cup, the problem of black powder generation and shaking of the mixer under high-speed friction is solved, achieving higher material purity and equipment stability.

CN223988369UActive Publication Date: 2026-03-13广州然萃化工有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

Existing mixers generate black powder under high-speed friction, which affects the purity of materials and the stability of the equipment. In addition, the base is prone to shaking, which affects the mixing effect and the life of the equipment.

Method used

The claws and stirring rods are coated with a nano-ceramic wear-resistant coating, and four vacuum suction cups are connected to the base to enhance the stability of the equipment. The detachable connection design facilitates assembly and maintenance.

Benefits of technology

It reduces the black powder generated by high-speed friction, improves the purity of materials and the wear resistance of equipment, and enhances the stability of the mixing process and the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223988369U_ABST
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Abstract

The utility model belongs to the technical field of stirring, and provides a stirring machine which comprises a base, a first supporting rod, a second supporting rod and a stirring shaft, the cross clamp is detachably connected with the first supporting rod; the second supporting rod is detachably connected with the cross clamp, and the first supporting rod is perpendicular to the second supporting rod; the motor is connected with one end of the second supporting rod, a drill chuck is arranged at the bottom of an output shaft of the motor, and the drill chuck is detachably connected with a stirring rod; and the vacuum suction cup is connected with the base. The clamping jaw and the stirring rod are both coated with the nano ceramic wear-resistant coatings, so that black powder generated by high-speed friction is reduced, wear resistance and material purity are improved, the four vacuum suction cups are connected with the base, the stability of the base on a working table top is enhanced, and equipment is more stable and reliable in the stirring process.
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Description

Technical Field

[0001] This utility model belongs to the field of mixing technology, and specifically relates to a mixer. Background Technology

[0002] In current mixer technology, high-speed friction is the primary cause of wear on the upper arm of the mixing impeller and the generation of black powder. This black powder not only reduces the purity of the materials but may also negatively impact the quality of subsequent products, especially during the mixing of chemical raw materials, potentially interfering with the precision of chemical reactions. Furthermore, the accumulation of black powder accelerates equipment aging and increases maintenance costs. Additionally, existing patent literature indicates that the mixer base is prone to shaking during mixing, further affecting the mixing effect and equipment stability. Therefore, developing a mixer that effectively reduces the friction-induced black powder generation is of great significance for improving material mixing quality, extending equipment lifespan, and enhancing equipment stability. Summary of the Invention

[0003] To solve the above technical problems, this utility model proposes a mixer in which the claws and stirring rods are coated with a nano-ceramic wear-resistant coating to reduce black powder generated by high-speed friction, improve wear resistance and material purity, and four vacuum suction cups are connected to the base to enhance the stability of the base on the worktable, making the equipment more stable and reliable during the mixing process.

[0004] The technical solution of this utility model is:

[0005] This utility model proposes a mixer, comprising:

[0006] A base, the top of which is detachably connected to a first support rod;

[0007] A cross clamp, which is detachably connected to the first support rod;

[0008] The second support rod is detachably connected to the cross clamp, and the first support rod and the second support rod are perpendicular to each other.

[0009] The motor is connected to one end of the second support rod, and a drill chuck is provided at the bottom of the output shaft of the motor. The drill chuck is detachably connected to a stirring rod.

[0010] A vacuum suction cup, which is connected to the base, and four vacuum suction cups are provided in a rectangular arrangement;

[0011] Both the drill chuck and the stirring rod are coated with a nano-ceramic wear-resistant coating.

[0012] Preferably, the motor is connected to a display stand, and a display screen is provided on the outside of the display stand;

[0013] The outer wall of the motor is equipped with a switch, a time adjustment knob, and a speed adjustment knob;

[0014] The switch is electrically connected to the display screen, the time adjustment knob, and the speed adjustment knob.

[0015] Preferably, the drill chuck is provided with three circumferentially arrayed jaws, the jaws are detachably connected to the stirring rod, and both the jaws and the stirring rod are provided with a nano-ceramic wear-resistant coating.

[0016] Preferably, the thickness of the nano-ceramic wear-resistant coating is 0.1mm-0.3mm.

[0017] Preferably, the bottom of the stirring rod is connected to a stirring paddle.

[0018] Preferably, the base is provided with a sleeve at the top, the inner wall of the sleeve is provided with an internal thread, and the bottom of the first support rod is provided with an external thread that mates with the internal thread of the sleeve.

[0019] This utility model has the following advantages and effects compared with the prior art:

[0020] (1) The design of detachable connection is adopted, including the detachable connection between the top of the base and the first support rod, the detachable connection between the cross clamp and the first support rod, and the detachable connection between the second support rod and the cross clamp. This allows the equipment to be quickly assembled and disassembled as needed, which is not only convenient to use, but also convenient to clean and maintain. The drill chuck is equipped with three circumferential array of claws for detachable connection with the stirring rod. Both the claws and the stirring rod are coated with nano-ceramic wear-resistant coating to reduce black powder generated by high-speed friction and improve wear resistance and material purity. Four vacuum suction cups are connected to the base, which enhances the stability of the base on the worktable and makes the equipment more stable and reliable during the stirring process.

[0021] (2) The first support rod and the second support rod form a vertical structure through a cross clamp, which enhances the stability of the equipment and reduces the shaking during the stirring process. The sleeve set on the top of the base is connected to the first support rod by a thread, which further enhances the stability of the structure, allowing users to quickly assemble and disassemble the base and the first support rod, making it convenient for turnover and storage.

[0022] (3) The motor is connected to a display stand. The display screen on its outer side is used to display the motor's running speed and working time. The outer wall of the motor is equipped with a switch, a time adjustment knob, and a speed adjustment knob, which can realize the setting of the rotation time and speed of the motor output shaft, thus improving the flexibility and ease of use of the equipment.

[0023] (4) The stirring paddle is provided with a rubber layer or a high-strength fiber composite material layer. When the stirring paddle comes into accidental contact with the container wall, it can be elastically deformed to buffer the impact and avoid hard friction and powder falling off. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall structure of the present invention. Figure 1 .

[0025] Figure 2 This is a schematic diagram of the overall structure of the present invention. Figure 2 .

[0026] Figure 3 This is a schematic diagram of the overall structure of the present invention. Figure 3 .

[0027] Figure label:

[0028] 1. Base; 10. First support rod; 11. Second support rod; 12. Sleeve

[0029] 2. Cross clamp; 21. First rotating handle; 22. Second rotating handle;

[0030] 3. Motor; 30. Drill chuck; 31. Stirring rod; 311. Stirring paddle;

[0031] 32. Display stand; 320. Display screen;

[0032] 33. Switch; 34. Time adjustment knob; 35. Speed ​​adjustment knob; 300. Clamping claw;

[0033] 4. Vacuum suction cup. Detailed Implementation

[0034] To enable those skilled in the art to better understand this utility model, the present utility model will now be further described in conjunction with specific embodiments.

[0035] Example 1:

[0036] like Figures 1-3 As shown, this utility model provides a mixer, comprising:

[0037] Base 1, with a first support rod 10 detachably connected to the top of base 1;

[0038] Cross clamp 2, cross clamp 2 is detachably connected to the first support rod 10;

[0039] The second support rod 11 is detachably connected to the cross clamp 2, and the first support rod 10 and the second support rod 11 are perpendicular to each other.

[0040] Motor 3 is connected to one end of the second support rod 11. A drill chuck 30 is provided at the bottom of the output shaft of motor 3. A stirring rod 31 is detachably connected to the drill chuck 30.

[0041] Vacuum suction cup 4 is connected to base 1. Four vacuum suction cups 4 are provided and arranged in a rectangular shape.

[0042] Both the drill chuck 30 and the stirring rod 31 are coated with a nano-ceramic wear-resistant coating.

[0043] The motor 3 is connected to a display stand 32, and a display screen 320 is installed on the outside of the display stand 32.

[0044] The outer wall of motor 3 is equipped with a switch 33, a time adjustment knob 34, and a speed adjustment knob 35;

[0045] The switch 33 is electrically connected to the display screen 320, the time adjustment knob 34, and the speed adjustment knob 35.

[0046] The drill chuck 30 is equipped with three circumferentially arrayed jaws 300. The jaws are detachably connected to the stirring rod 31. Both the jaws 300 and the stirring rod 31 are coated with a nano-ceramic wear-resistant coating.

[0047] The thickness of the nano-ceramic wear-resistant coating is 0.1mm-0.3mm.

[0048] The bottom of the stirring rod 31 is connected to the stirring paddle 311.

[0049] A sleeve 12 is provided on the top of the base 1, and an internal thread is provided on the inner side wall of the sleeve 12. The bottom of the first support rod 10 is provided with an external thread that mates with the internal thread of the sleeve 12.

[0050] In some embodiments, the cross clamp 2 is provided with a first insertion slot and a second insertion slot. The cross clamp 2 is threadedly connected with a first set screw and a second set screw. The first set screw is coaxially fixedly connected to a first rotating handle 21, and the second set screw is coaxially fixedly connected to a second rotating handle 22. The first rotating handle 21 is located on one side of the first insertion slot, and the second rotating handle 22 is located on one side of the second insertion slot. The first set screw is in contact with the outer wall of the first support rod 10, and the second set screw is in contact with the outer wall of the second support rod 11.

[0051] In some embodiments, the agitator 311 is provided with a rubber layer or a high-strength fiber composite material layer.

[0052] When the stirring paddle 311 accidentally comes into contact with the container wall during use, it can elastically deform to buffer the impact and prevent powder from falling off due to hard friction.

[0053] Working principle:

[0054] The first support rod 10 and the second support rod 11 form a vertical structure through the cross clamp 2, which enhances the stability of the equipment and reduces shaking during the stirring process;

[0055] The sleeve 12 at the top of the base 1 is connected to the first support rod 10 by a thread, which further enhances the stability of the structure and allows users to quickly assemble and disassemble the base 1 and the first support rod 10 for easy turnover and storage. The cross clamp 2 is designed to facilitate the fixing of the second support rod 11. The bottom of the output shaft of the motor 3 is equipped with a drill chuck 30 for fixing the stirring rod 31. The distance between the cross clamp 2 and the base 1 can be adjusted by turning the first rotating handle 21, and the distance between the motor 3 and the base 1 can be adjusted by turning the second handle 22, which improves the flexibility of this utility model.

[0056] The motor 3 is connected to a display stand 32, and the display screen 320 on its outer side is used to display the operating speed and working time of the motor 3. Pressing the switch 33 puts the motor 3 into standby mode. Turning the time adjustment knob 34 can set the rotation time of the output shaft of the motor 3. Turning the speed adjustment knob 35 can set the speed of the output shaft of the motor 3. The drill chuck 30 is provided with three circumferentially arrayed jaws 300 for detachable connection with the stirring rod 31. The bottom of the stirring rod 31 is connected to a stirring paddle 311 for stirring materials. The thickness of the nano-ceramic wear-resistant coating is 0.1mm-0.3mm, which not only ensures the wear resistance of the coating, but also avoids the increase in energy consumption caused by excessive thickness.

[0057] Both the claw 300 and the stirring rod 31 are coated with a nano-ceramic wear-resistant coating to reduce black powder generated by high-speed friction and improve wear resistance and material purity.

[0058] Four vacuum suction cups 4 are connected to the base 1. The vacuum suction cups 4 enhance the stability of the base 1, making the base 1 stably fixed on the worktable.

[0059] The above are merely preferred embodiments of the present utility model and do not limit the patent scope of the present utility model. All equivalent changes and modifications made within the scope of the present utility model shall still fall within the scope of the present utility model.

Claims

1. A blender characterized by, The utility model provides a kind of vacuum mixer, including: Base (1), first support rod (10) is detachably connected at the top of the base (1); Cross clamp (2), the cross clamp (2) is detachably connected with the first support rod (10); Second support rod (11), the second support rod (11) is detachably connected with the cross clamp (2), and the first support rod (10) and the second support rod (11) are perpendicular to each other; Motor (3), the motor (3) is connected with one end of the second support rod (11), and the output shaft bottom of the motor (3) is provided with drill chuck (30), and the drill chuck (30) is detachably connected with stirring rod (31); Vacuum chuck (4), the vacuum chuck (4) is connected with the base (1), and the vacuum chuck (4) is provided with four, and is arranged in rectangular array; Wherein the drill chuck (30) and the stirring rod (31) are all provided with nano ceramic wear-resistant coating; First insertion slot and second insertion slot are formed in the cross clamp (2), the cross clamp (2) is threadedly connected with first jackscrew and second jackscrew, the first jackscrew is coaxially fixedly connected with first rotating handle (21), the second jackscrew is coaxially fixedly connected with second rotating handle (22), the first rotating handle (21) is located on the side of the first insertion slot, the second rotating handle (22) is located on the side of the second insertion slot, the first jackscrew is attached to the outer wall of the first support rod (10), and the second jackscrew is attached to the outer wall of the second support rod (11); Rubber layer or high-strength fiber composite material layer is arranged on the stirring paddle (311), so that the stirring paddle (311) can elastically deform to buffer when accidentally contacting the container wall during use, to avoid hard friction and powder loss.

2. A blender as claimed in claim 1, wherein The motor (3) is connected with display table (32), and the display screen (320) is arranged on the outside of the display table (32); Switch (33), time adjusting knob (34) and rotating speed adjusting knob (35) are arranged on the outer wall of the motor (3); Wherein, the switch (33) is electrically connected with the display screen (320), the time adjusting knob (34) and the rotating speed adjusting knob (35).

3. A blender as claimed in claim 1, wherein Three circumferential arrays of clamping jaws (300) are arranged on the drill chuck (30), the clamping jaws are detachably connected with the stirring rod (31), and the clamping jaws (300) and the stirring rod (31) are both provided with the nano ceramic wear-resistant coating.

4. A blender as claimed in claim 3, wherein The thickness of the nano ceramic wear-resistant coating is 0.1mm-0.3mm.

5. A blender as claimed in claim 3, wherein The stirring rod (31) is connected with stirring paddle (311) at the bottom.

6. A blender as defined in claim 1, wherein The base (1) is provided with sleeve (12) at the top, the inner wall of the sleeve (12) is provided with internal thread, and the bottom of the first support rod (10) is provided with external thread matched with the internal thread of the sleeve (12).