Ultramicro ball milling equipment with cooling and sterilizing functions

By installing a counterweight base and a removable sound insulation plate on the ultra-micro ball mill equipment, noise and vibration problems are solved, protecting the health of workers and improving equipment efficiency.

CN223818774UActive Publication Date: 2026-01-23HANGZHOU MINGBAO FOOD CO LTD
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Patent Information

Application Number
CN202520007221.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-02
Publication Date
2026-01-23
Estimated Expiration
2035-01-02

AI Technical Summary

Technical Problem

Existing ultra-micro ball milling equipment generates noise and vibration when operating at high speeds, affecting the health of workers and the efficiency of the equipment.

Method used

Featuring a counterweight base and sound insulation panels, the sound insulation panels are detachable and equipped with sound insulation covers, sound insulation cotton, and handles to reduce noise diffusion and absorb vibration energy.

Benefits of technology

It effectively reduces the impact of noise on the hearing system, stabilizes the movement trajectory of the grinding media, improves grinding efficiency, and extends equipment life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses ultra-micro ball milling equipment with cooling and sterilizing functions, and belongs to the technical field of tea extraction machines. Comprising ultra-micro ball milling equipment, a balance weight base is integrally formed at the bottom of the ultra-micro ball milling equipment, sound insulation plates are rotationally connected to the side walls of the periphery of the balance weight base through a plurality of first connecting pieces, and every two adjacent sound insulation plates are detachably connected. According to the utility model, when high-speed operation is carried out in the ultra-micro ball milling equipment and large noise is generated, the diffusion of the noise can be reduced through the arrangement of the four sound insulation plates, so that the hearing system of a worker is not damaged, and the surrounding working environment is not influenced. Meanwhile, when the ultra-micro ball milling equipment vibrates in the operation process, the vibration generated by the ultra-micro ball milling equipment is effectively reduced through the arrangement of the counterweight base, so that the motion trail of the grinding medium in the grinding cylinder is not unstable, the effective collision frequency and force between the grinding medium and the material are not reduced, and the grinding efficiency is ensured not to be reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of supermicro ball mill equipment with cooling sterilization function, belong to supermicro ball mill equipment technical field. BACKGROUND

[0002] Supermicro ball mill equipment is the equipment that realizes material supermicro fine by using grinding medium (such as grinding ball) to impact, extrude and rub material.

[0003] When actually using supermicro ball mill equipment, since high-speed operation will be carried out in supermicro ball mill equipment, therefore, it will generate larger noise, which not only causes damage to hearing system of staff, but also affects surrounding working environment.Moreover, vibration will be generated during operation of supermicro ball mill equipment, but vibration generated by equipment will lead to unstable movement track of grinding medium in mill barrel, thereby reducing effective collision times and intensity between grinding medium and material, so that grinding efficiency is reduced. UTILITARIAN CONTENT

[0004] The technical problem to be solved by the utility model lies in: provide a kind of supermicro ball mill equipment with cooling sterilization function, it solves the problem in prior art that when actually using supermicro ball mill equipment, since high-speed operation will be carried out in supermicro ball mill equipment, therefore, it will generate larger noise, which not only causes damage to hearing system of staff, but also affects surrounding working environment.Moreover, vibration will be generated during operation of supermicro ball mill equipment, but vibration generated by equipment will lead to unstable movement track of grinding medium in mill barrel, thereby reducing effective collision times and intensity between grinding medium and material, so that grinding efficiency is reduced.

[0005] The technical problem to be solved by the utility model is realized by the following technical scheme: a kind of supermicro ball mill equipment with cooling sterilization function, including supermicro ball mill equipment, the counterweight base of being integrally formed with supermicro ball mill equipment bottom, the side wall on the periphery of counterweight base is all rotationally connected with sound insulation board through a plurality of connecting pieces, adjacent two sound insulation boards are all detachably connected, the detachable sound insulation cover of four sound insulation board top is located above supermicro ball mill equipment, one side of one sound insulation board is rotationally embedded with article placing plate, in this embodiment, connecting piece one is hinge.

[0006] By adopting the above technical solution, when the ultrafine ball mill starts working, all the surrounding sound insulation panels are rotated towards the direction closest to the ultrafine ball mill, and adjacent sound insulation panels are connected to each other. Then, a sound insulation cover is placed on top of the four sound insulation panels, effectively isolating the external environment from the ultrafine ball mill and reducing the diffusion of noise generated during operation. Simultaneously, the counterweight base reduces the vibration amplitude of the ultrafine ball mill. With this structure, when the ultrafine ball mill operates at high speed and generates significant noise, the four sound insulation panels effectively reduce noise diffusion, preventing damage to the hearing system of workers and not affecting the surrounding working environment. Furthermore, when the ultrafine ball mill vibrates during operation, the counterweight base effectively reduces this vibration, preventing instability in the movement trajectory of the grinding media within the grinding cylinder. This maintains the effective number and force of collisions between the grinding media and the material, ensuring that grinding efficiency does not decrease.

[0007] The present invention is further configured such that: two opposing sound insulation panels are sound insulation panel one, and two other opposing sound insulation panels are sound insulation panel two; both ends of the two sound insulation panels one are provided with slots, and both ends of the two sound insulation panels two are integrally formed with blocks for inserting into the two slots.

[0008] The bottom of the soundproof cover is integrally formed with protrusions, and the tops of the two soundproof panels one and two soundproof panels two are connected and have grooves for the protrusions to be inserted.

[0009] By adopting the above technical solution, when soundproofing an ultra-micro ball mill, firstly rotate the two soundproofing panels one towards the direction of the ultra-micro ball mill. When the two soundproofing panels one are rotated to the sides of the ultra-micro ball mill, hold them steady to prevent them from tilting. Then, rotate the two soundproofing panels two towards the direction of the ultra-micro ball mill until the locking blocks at both ends of the two soundproofing panels two are engaged in the slots, thus connecting the two soundproofing panels one and two together. Finally, move the soundproofing cover and engage the protrusions in the grooves to complete the soundproofing of the ultra-micro ball mill.

[0010] The present invention is further configured such that: one side of one of the sound insulation panels has a groove; the bottom end of the shelf is rotatably connected to the sound insulation panel through several connecting parts 2; the top end of the shelf is detachably connected to the sound insulation panel through a fixing part; the fixing part includes an inverted L-shaped locking block integrally formed on the sound insulation panel; a fixing cavity is formed between the L-shaped locking block and the sound insulation panel; a fixing shaft is fixed on the shelf; a rotating block for locking into the fixing cavity is rotatably sleeved on the fixing shaft; in this embodiment, the connecting part 2 is a hinge.

[0011] By adopting the above technical solution, when it is necessary to open the shelf, first rotate the rotating block so that one end of the rotating block rotates out of the fixed cavity and rotates to one side of the shelf. Then rotate the shelf away from the groove to open the shelf. It is very simple.

[0012] The present invention is further configured such that: a number of limiting blocks are fixed on the sound insulation board at the positions below both ends of the shelf, and the limiting blocks are used to restrict the rotation of the shelf.

[0013] By adopting the above technical solution, when one side of the shelf comes into contact with several limiting plates during the opening process, the shelf will be unable to continue to rotate downwards, and tools can be placed on the top of the shelf at this time.

[0014] The present invention is further configured such that sound-insulating cotton is pasted on the side of both sound-insulating panels one and two sound-insulating panels two that are close to the ultra-micro ball mill equipment.

[0015] By adopting the above technical solution, the sound insulation cotton can significantly improve the sound insulation performance of sound insulation board one and sound insulation board two, suppress the leakage of noise generated by the ultra-micro ball mill equipment, and further reduce the impact of noise on the external environment, which is highly efficient.

[0016] The present invention is further provided that: a handle is fixed on the top of the soundproof cover.

[0017] By adopting the above technical solution, the handle design makes the soundproof cover more convenient to move or transport. Workers can easily lift the cover using the handle, reducing difficulties during transport and making it very convenient.

[0018] The beneficial effects of this utility model are as follows: When the ultra-fine ball mill starts working, all the surrounding sound insulation panels are rotated towards the direction closest to the ultra-fine ball mill, and adjacent sound insulation panels are connected to each other. Then, a sound insulation cover is placed on top of the four sound insulation panels, effectively isolating the external environment from the ultra-fine ball mill and reducing the diffusion of noise generated during operation. Simultaneously, the counterweight base reduces the vibration amplitude of the ultra-fine ball mill. Through this structure, when the ultra-fine ball mill operates at high speed and generates significant noise, the four sound insulation panels effectively reduce noise diffusion, preventing damage to the hearing system of workers and not affecting the surrounding working environment. Furthermore, when the ultra-fine ball mill vibrates during operation, the counterweight base effectively reduces this vibration, preventing instability in the movement trajectory of the grinding media within the grinding cylinder. This maintains the effective number and force of collisions between the grinding media and the material, ensuring that grinding efficiency does not decrease. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of this utility model;

[0020] Figure 2 This is an exploded view of the present invention;

[0021] Figure 3 This is a schematic diagram of the structure of the sound insulation panel one in this utility model;

[0022] Figure 4 This is a schematic diagram of the structure of the second sound insulation panel in this utility model;

[0023] Figure 5 This is a schematic diagram of the structure of the central placement plate of this utility model.

[0024] In the diagram: 1. Ultra-fine ball mill equipment; 2. Counterweight base; 3. Connector 1; 4. Soundproof cover; 5. Storage board; 6. Soundproof board 1; 7. Slot; 8. Soundproof board 2; 9. Locking block; 10. Protrusion; 11. Groove; 12. Embedded groove; 13. Connector 2; 14. L-shaped locking block; 15. Fixed cavity; 16. Fixed shaft; 17. Rotating block; 18. Limiting block; 19. Soundproof cotton; 20. Handle. Detailed Implementation

[0025] In order to make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below with reference to specific figures 1-5.

[0026] like Figure 1 and Figure 2 As shown, an ultra-micro ball milling device with cooling and sterilization function includes an ultra-micro ball milling device 1. The bottom of the ultra-micro ball milling device 1 is integrally formed with a counterweight base 2. The side walls of the counterweight base 2 are rotatably connected to sound insulation plates by several connectors 3. Adjacent sound insulation plates can be detachably connected to each other. The top of the four sound insulation plates is detachably provided with a sound insulation cover 4 above the ultra-micro ball milling device 1. A storage plate 5 is rotatably embedded on one side of one of the sound insulation plates. In this embodiment, the connector 3 is a hinge.

[0027] The ultra-micro ball mill equipment 1 is equipped with a cooling and sterilization system.

[0028] When the ultrafine ball mill 1 starts working, all the surrounding sound insulation panels are rotated towards the direction closest to the ultrafine ball mill 1, and adjacent sound insulation panels are connected to each other. Then, the sound insulation cover 4 is placed on top of the four sound insulation panels, thus isolating the ultrafine ball mill 1 from the external environment and reducing the diffusion of noise generated during operation. Simultaneously, the counterweight base 2 reduces the vibration amplitude of the ultrafine ball mill 1. Through this structure, when the ultrafine ball mill 1 operates at high speed and generates significant noise, the four sound insulation panels effectively reduce noise diffusion, preventing damage to the hearing system of workers and not affecting the surrounding working environment. Furthermore, when the ultrafine ball mill 1 vibrates during operation, the counterweight base 2 effectively reduces this vibration, preventing instability in the movement trajectory of the grinding media within the grinding cylinder. This maintains the effective number and force of collisions between the grinding media and the material, ensuring that grinding efficiency does not decrease.

[0029] The counterweight base 2 increases the mass of the ultra-micro ball mill 1, thereby absorbing and dispersing vibration energy, reducing the vibration amplitude of the equipment, improving the grinding efficiency of the equipment, and extending the service life of the equipment.

[0030] In addition, the top of the open shelf 5 is used to place tools and parts.

[0031] like Figures 2-4 As shown, the two opposing sound insulation panels are both sound insulation panels 6, and the other two opposing sound insulation panels are both sound insulation panels 8. Both ends of the two sound insulation panels 6 are provided with slots 7, and both ends of the two sound insulation panels 8 are integrally formed with blocks 9 for inserting into the two slots 7.

[0032] The bottom of the soundproof cover 4 is integrally formed with a protrusion 10, and the tops of the two soundproof panels 6 and the two soundproof panels 8 are all connected and have grooves 11 for the protrusion 10 to be inserted.

[0033] When soundproofing the ultra-micro ball mill equipment 1 is required, first rotate the two soundproofing panels 1-6 towards the direction of the ultra-micro ball mill equipment 1. When the two soundproofing panels 1-6 are rotated to the sides of the ultra-micro ball mill equipment 1, hold the two soundproofing panels 1-6 to prevent them from tilting. Then, rotate the two soundproofing panels 2-8 towards the direction of the ultra-micro ball mill equipment 1 until the locking blocks 9 at both ends of the two soundproofing panels 2-8 are engaged in the locking slots 7, thus connecting the two soundproofing panels 1-6 and the two soundproofing panels 2-8 together. Finally, move the soundproofing cover 4 and engage the protrusion 10 in the groove 11 to complete the soundproofing of the ultra-micro ball mill equipment 1.

[0034] The two sound insulation panels (6-6), two sound insulation panels (8-8), and the sound insulation cover (4) also serve a dustproof function. Due to the high-speed rotation of the grinding balls and the mutual impact of materials, a large amount of dust and debris is generated. This dust and debris can not only harm the respiratory system of workers but also splash into their eyes or onto their skin, causing accidental injury. The installation of the two sound insulation panels (6-6), two sound insulation panels (8-8), and the sound insulation cover (4) effectively isolates this dust and debris inside the equipment, thereby protecting the safety of the workers.

[0035] like Figure 3 and Figure 5 As shown, one of the soundproof panels 6 has a groove 12 on one side. The bottom end of the shelf 5 is rotatably connected to the soundproof panel 6 through several connecting parts 13. The top end of the shelf 5 is detachably connected to the soundproof panel 6 through a fixing part. The fixing part includes an inverted L-shaped locking block 14 integrally formed on the soundproof panel 6. The L-shaped locking block 14 and the soundproof panel 6 form a fixing cavity 15. A fixing shaft 16 is fixed on the shelf 5. A rotating block 17 for locking into the fixing cavity 15 is rotatably sleeved on the fixing shaft 16. In this embodiment, the connecting part 13 is a hinge.

[0036] When it is necessary to open the shelf 5, first rotate the rotating block 17 so that one end of the rotating block 17 rotates out of the fixed cavity 15 and rotates to one side of the shelf 5. Then rotate the shelf 5 away from the groove 12 to open the shelf 5. It is very simple.

[0037] like Figure 3 As shown, several limiting blocks 18 are fixed on the sound insulation panel 6 at positions below both ends of the shelf 5. The limiting blocks 18 are used to restrict the rotation of the shelf 5.

[0038] During the opening of the shelf 5, when one side of the shelf 5 comes into contact with several limiting plates, the shelf 5 will be unable to continue to rotate downwards, and tools can be placed on the top of the shelf 5 at this time.

[0039] like Figure 2 As shown, sound insulation cotton 19 is pasted on the side of both sound insulation panels 1-6 and 2-8 near the ultra-micro ball mill equipment 1.

[0040] The installation of sound insulation cotton 19 can significantly improve the sound insulation performance of sound insulation board 1 6 and sound insulation board 2 8, suppress the leakage of noise generated by the ultra-micro ball mill equipment 1, and further reduce the impact of noise on the external environment, which is highly efficient.

[0041] like Figure 1 As shown, a handle 20 is fixed to the top of the soundproof cover 4.

[0042] The handle 20 makes the soundproof cover 4 easier to move or transport. Workers can easily lift the soundproof cover 4 using the handle 20, reducing difficulties during transport and making it very convenient.

[0043] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments, and various changes and modifications can be made without departing from the spirit and scope of this utility model. All such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. An ultra-micro ball milling device with cooling and sterilization function, comprising an ultra-micro ball milling device (1), characterized in that: The ultra-micro ball mill (1) is provided with a counterweight base (2) at the bottom. The counterweight base (2) is rotatably connected to a sound insulation plate by several connectors (3) around its perimeter. The sound insulation plates can be detachably connected to each other. The top of the four sound insulation plates is detachably provided with a sound insulation cover (4) above the ultra-micro ball mill (1). A storage plate (5) is rotatably embedded on one side of one of the sound insulation plates.

2. The ultra-micro ball milling equipment with cooling and sterilization function according to claim 1, characterized in that: The two opposing sound insulation panels are both sound insulation panels one (6), and the other two opposing sound insulation panels are both sound insulation panels two (8). Both ends of the two sound insulation panels one (6) are provided with slots (7), and both ends of the two sound insulation panels two (8) are provided with blocks (9) for inserting into the two slots (7).

3. The ultra-micro ball milling equipment with cooling and sterilization function according to claim 2, characterized in that: One of the soundproof panels (6) has a groove (12) on one side. The bottom end of the shelf (5) is rotatably connected to the soundproof panel (6) through several connectors (13). The top end of the shelf (5) is detachably connected to the soundproof panel (6) through a fixing member.

4. The ultrafine ball milling equipment with cooling and sterilization function according to claim 3, characterized in that: The fastener includes an L-shaped locking block (14) disposed on the sound insulation plate (6), a fixing shaft (16) is disposed on the shelf (5), and a rotating block (17) for locking into the L-shaped locking block (14) is rotatably disposed on the fixing shaft (16).

5. The ultrafine ball milling equipment with cooling and sterilization function according to claim 4, characterized in that: A plurality of limiting blocks (18) are provided on the sound insulation panel (6) at a position below the shelf (5), and the plurality of limiting blocks (18) are used to restrict the rotation of the shelf (5).

6. The ultrafine ball milling equipment with cooling and sterilization function according to claim 2, characterized in that: The two sound insulation panels one (6) and the two sound insulation panels two (8) are provided with sound insulation cotton (19) on the side near the ultra-micro ball mill equipment (1).

7. The ultrafine ball milling equipment with cooling and sterilization function according to claim 2, characterized in that: The bottom of the soundproof cover (4) is provided with a protrusion (10), and the tops of the two soundproof plates (6) and the two soundproof plates (8) are all connected and have grooves (11) for the protrusion (10) to be inserted.

8. The ultrafine ball mill with cooling and sterilization function according to claim 1, characterized in that: The soundproof cover (4) is provided with a handle (20) on the top.