Dust removal cleaning machine

By using a combination technology of high-pressure fan and ion fan in a toothbrush dust removal machine, the problem of incomplete dust removal in the existing technology is solved, and a more efficient dust removal and cleaning effect is achieved.

CN222919238UActive Publication Date: 2025-05-30DONGGUAN XINCHAOWEI INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421828559.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-05-30
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

The existing toothbrush dust removal and cleaning methods are blown away by a hair dryer, which has poor effect. The electrostatic adsorption causes micro particles and brush wires to be unable to be completely removed.

Method used

A dust removal cleaning machine is designed, and a blower mechanism composed of a high-pressure fan, a blower pipe and an ion fan is designed to neutralize the static electricity on the product surface by ionic fans, improving the blowing effect of microparticles and brush wires.

Benefits of technology

Through the combination of electrostatic neutralization and high-pressure air flow, the toothbrush dust removal and cleaning effect is significantly improved, ensuring the cleanliness of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of toothbrush production, in particular to a dust removal cleaning machine which comprises a machine body, a storage module and an air blowing mechanism, the storage module and the air blowing mechanism are both arranged in the machine body, the storage module is used for supporting a product, and the air blowing mechanism is used for blowing away microparticles and brush wires attached to the product. The air blowing mechanism comprises a high-pressure fan, an air blowing pipe and an ion fan, the air blowing pipe and the ion fan are both arranged in the machine body, the high-pressure fan is communicated with the air blowing pipe, the ion fan is used for blowing ion wind to products, and the air blowing pipe is used for blowing away microparticles and brush wires attached to the products. Static electricity of micro-particles and brush wires is neutralized in the mode that the ion fan blows ion wind to products, the micro-particles and the brush wires can be effectively blown away when the follow-up air blowing pipe blows air to the products, and therefore the dust removal and cleaning effect is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of toothbrush production, in particular to a dust removal and cleaning machine. Background Art

[0002] After the toothbrush is produced and formed, it usually needs to be subjected to dust removal and cleaning treatment to remove the fine particles and brush filaments attached to the toothbrush, so as to ensure that the cleanliness of the toothbrush meets the requirements. Most of the existing toothbrush dust removal and cleaning methods directly use a hair dryer for blowing treatment, but the cleaning effect of this method is not good. That is, after the treatment, due to the electrostatic adsorption effect, a considerable part of the fine particles and brush filaments still cannot be removed. Summary of the Invention

[0003] The utility model provides a dust removal and cleaning machine for the problems of the prior art, and improves the dust removal and cleaning effect by increasing the method of electrostatic neutralization.

[0004] In order to solve the above technical problems, the utility model adopts the following technical solutions:

[0005] A dust removal and cleaning machine provided by the utility model includes a machine body, a placing module and a blowing mechanism which are all arranged in the machine body. The placing module is used to hold the product, and the blowing mechanism is used to blow off the fine particles and brush filaments attached to the product. The blowing mechanism includes a high-pressure blower, a blowing pipe and an ion fan. The blowing pipe and the ion fan are both arranged in the machine body. The high-pressure blower is communicated with the blowing pipe. The ion fan is used to blow ion wind on the product, and the blowing pipe is used to blow off the fine particles and brush filaments attached to the product.

[0006] Further, the ion fan is located directly above the placing module, and the number of ion fans is multiple. The multiple ion fans are respectively arranged at both ends of the machine body.

[0007] Further, a suspension bracket is arranged in the machine body, and the blowing pipe is detachably installed on the suspension bracket.

[0008] Further, the placing module includes a mesh plate and a water tank which are both arranged in the machine body. The mesh plate is located directly above the water tank. The mesh plate is used to hold the product, and the water tank is used to hold water and attach the fine particles and brush filaments floating in the machine body through the water.

[0009] Furthermore, the machine body is provided with a first sliding groove and a second sliding groove. The first sliding groove is located directly above the second sliding groove. The mesh plate is slidably installed in the first sliding groove, and the water tank is slidably installed in the second sliding groove.

[0010] Further, the blowing mechanism further includes a pressure sensor and a display. The pressure sensor is signal-connected to the display. The pressure sensor is used to sense the air pressure at the output end of the blowing pipe, and the display is used to display the air pressure value sensed by the pressure sensor.

[0011] Further, an attachment structure for adsorbing micro-particles and brush filaments is provided on the inner side wall of the body.

[0012] Advantages of the utility model: By means of the ion fan blowing ion wind on the product, the static electricity of the micro-particles and the brush filaments is neutralized, so that when the subsequent air blowing pipe blows air on the product, the micro-particles and the brush filaments can be effectively blown away, thereby improving the dust removal and cleaning effect. Description of the Drawings

[0013] Figure 1 It is a schematic diagram of the utility model.

[0014] Figure 2 is Figure 1 an enlarged view of part A of

[0015] Reference numerals: 1 - body, 2 - placing module, 3 - air blowing mechanism, 10 - operation port, 11 - suspension bracket, 12 - first sliding groove, 13 - second sliding groove, 21 - mesh plate, 22 - water tank, 23 - sliding plate, 24 - sliding part, 31 - high-pressure blower, 32 - air blowing pipe, 33 - ion fan, 34 - air pressure sensor, 35 - display. Detailed Embodiment

[0016] For the convenience of understanding by those skilled in the art, the utility model will be further described below in conjunction with the embodiments and the drawings. The content mentioned in the embodiments does not limit the utility model. The following describes the utility model in detail with reference to the drawings.

[0017] As Figure 1 and Figure 2 shown, a dust removal and cleaning machine provided by the utility model includes a body 1, a placing module 2 and an air blowing mechanism 3 both arranged in the body 1. The placing module 2 is used to hold the product, and the air blowing mechanism 3 is used to blow off the micro-particles and brush filaments attached to the product. The air blowing mechanism 3 includes a high-pressure blower 31, an air blowing pipe 32 and an ion fan 33. The air blowing pipe 32 and the ion fan 33 are both arranged in the body 1. The high-pressure blower 31 is communicated with the air blowing pipe 32. The ion fan 33 is used to blow ion wind on the product, and the air blowing pipe 32 is used to blow off the micro-particles and brush filaments attached to the product.

[0018] In actual use, an operation port 10 is provided at the front end of the body 1. That is, the staff puts the product (such as a toothbrush) into the tray and then places the tray on the storage module 2. Of course, the toothbrush can also be directly placed on the storage module 2. Subsequently, the staff turns on the ion fan 33, and by blowing ion wind into the interior of the body 1 through the ion fan 33, the static electricity inside the body 1, the static electricity between the product and the microparticles / bristles, etc. are neutralized. Then the staff turns on the high-pressure blower 31, inputs high-pressure gas into the air pipe 32 through the high-pressure blower 31. The staff picks up the air pipe 32 and aims it at the product, allowing the high-pressure gas to output along the air pipe 32 and blow towards the product, so that the microparticles and bristles that are attached to the surface of the product and have been neutralized of static electricity can be blown away from the product, achieving a better dust removal and cleaning effect.

[0019] In this embodiment, the ion fan 33 is located directly above the storage module 2, and the number of ion fans 33 is multiple. The multiple ion fans 33 are respectively arranged at both ends of the body 1. By blowing ion wind simultaneously through the multiple ion fans 33, the ion wind can be more efficiently distributed throughout the interior of the body 1.

[0020] In this embodiment, a suspension rack 11 is provided inside the body 1, and the air pipe 32 is detachably installed on the suspension rack 11. That is, when the staff does not use the air pipe 32, the air pipe 32 is hung on the suspension rack 11 to achieve a storage effect and avoid the safety risk caused by the random movement of the air pipe 32 under the action of the ion fan 33.

[0021] In this embodiment, the storage module 2 includes a net plate 21 and a water tank 22 both arranged on the body 1. The net plate 21 is located directly above the water tank 22. The net plate 21 is used to hold the product, and the water tank 22 is used to hold water and attach the microparticles and bristles floating in the body 1 through the water.

[0022] The setting of the net plate 21 enables the microparticles and bristles floating in the air to pass through the net plate 21 and fall into the water tank 22 after the staff takes out the product. Since the water tank 22 has water, it should be able to reliably adsorb the microparticles and bristles, thus achieving a reliable, efficient and low-adsorption effect.

[0023] Specifically, the body 1 is provided with a first sliding groove 12 and a second sliding groove 13. The first sliding groove 12 is located directly above the second sliding groove 13. The net plate 21 is slidably installed in the first sliding groove 12, and the water tank 22 is slidably installed in the second sliding groove 13.

[0024] In actual use, the number of the first sliding grooves 12 and the second sliding grooves 13 is two respectively. The two first sliding grooves 12 are respectively arranged on both sides inside the machine body 1, and the two second sliding grooves 13 are respectively arranged on both sides inside the machine body 1. Both sides of the mesh plate 21 are respectively provided with sliding parts 24 for sliding in the first sliding grooves 12. Both sides of the water tank 22 are respectively provided with sliding plates 23 for sliding in the second sliding grooves 13. That is, the staff can replace the mesh plate 21 as needed, and when there are enough micro-particles and brush filaments attached to the water, even replace the water in the water tank 22 to ensure the water attachment effect.

[0025] In this embodiment, the blowing mechanism 3 further includes a pressure sensor 34 and a display 35. The pressure sensor 34 is signal-connected to the display 35. The pressure sensor 34 is used to sense the air pressure at the output end of the air blowing pipe 32, and the display 35 is used to display the air pressure value sensed by the pressure sensor 34. By monitoring the air pressure at the output end of the air blowing pipe 32 through the pressure sensor and visualizing it through the display 35, it is possible to effectively judge whether the air pressure is sufficient and whether the air blowing pipe 32 is leaking air, so as to ensure the dust removal and cleaning effect.

[0026] In this embodiment, an attachment structure for adsorbing micro-particles and brush filaments is arranged on the inner side wall of the machine body 1. The attachment structure can be a metal plate, a detachable blanket, etc., so that the micro-particles and brush filaments can be attached, so that there are enough structures inside the machine body 1 to attach the micro-particles and brush filaments in time, and prevent the micro-particles and brush filaments from falling back on the product again.

[0027] The above is only a preferred embodiment of the present invention, and it does not impose any form of limitation on the present invention. Although the present invention is disclosed above with a preferred embodiment, it is not intended to limit the present invention. Any person skilled in the art, without departing from the scope of the technical solution of the present invention, when making some changes or modifications using the above-disclosed technical content as equivalent change equivalent embodiments, but as long as it does not depart from the content of the technical solution of the present invention, any simple modification, equivalent change and modification made to the above embodiments according to the technical means of the present invention shall fall within the scope of the technical solution of the present invention.

Claims

1. A dust removal cleaning machine, comprising a machine body, a storage module and a blower mechanism all arranged in the machine body, wherein the storage module is used to hold the product, and the blower mechanism is used to blow away the micro particles and brush wires attached to the product, characterized in that: The blowing mechanism includes a high-pressure fan, an air blowing pipe and an ion fan. The air blowing pipe and the ion fan are both arranged in the machine body. The high-pressure fan is connected to the air blowing pipe. The ion fan is used to blow ion air to the product. The air blowing pipe is used to blow away microparticles and brush filaments attached to the product.

2. The dust removal cleaning machine according to claim 1, characterized in that: The ion fan is located directly above the storage module. There are multiple ion fans, which are respectively arranged at two ends of the machine body.

3. The dust removal cleaning machine according to claim 1, characterized in that: A hanging frame is arranged in the machine body, and the air blowing pipe is detachably mounted on the hanging frame.

4. The dust removal cleaning machine according to claim 1, characterized in that: The storage module includes a mesh plate and a water tank both of which are arranged on the machine body. The mesh plate is located directly above the water tank. The mesh plate is used to hold the product, and the water tank is used to hold water and attach the micro particles and brush filaments floating in the machine body through the water.

5. The dust removal cleaning machine according to claim 4, characterized in that: The machine body is provided with a first sliding groove and a second sliding groove, the first sliding groove is located directly above the second sliding groove, the mesh plate is slidably installed in the first sliding groove, and the water tank is slidably installed in the second sliding groove.

6. The dust removal cleaning machine according to claim 1, characterized in that: The air blowing mechanism also includes an air pressure sensor and an indicator. The air pressure sensor is connected to the indicator signal. The air pressure sensor is used to sense the air pressure at the output end of the air blowing tube, and the indicator is used to display the air pressure value sensed by the air pressure sensor.

7. The dust removal cleaning machine according to claim 1, characterized in that: The inner side wall of the machine body is provided with an attachment structure for absorbing micro particles and brush filaments.