Mite removing instrument with multi-stage filtering structure
By designing a multi-stage filter structure and slap components, the problem of cross-contamination of dirt during the cleaning process of existing dirt removers is solved, effectively separated and cleaned dirt, and improved the cleaning effect and the service life of the equipment.
Patent Information
- Application Number
- CN202422066726.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-08-26
AI Technical Summary
The existing mite remover is prone to cross-contamination of different dirt during the cleaning process, and the mixed dirt may be re-released into the air, making the cleaning unhygienic.
Design a mite remover with a multi-stage filter structure, including a cyclone filter, an activated carbon filter layer and a seapa filter, separate and collect different types of dirt into two separate dust collection chambers, combined with a slap assembly to vibrate dirt to the surface for easy inhalation.
Multi-stage filtration and separation of dirt is achieved, cross-contamination is avoided, and the cleaning process is ensured, which significantly improves the cleaning effect and the service life of the equipment.
Smart Images

Figure CN223169658U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mite cleaners, and particularly relates to a mite cleaner with a multi-stage filtering structure. Background Technique
[0002] A mite cleaner is an electrical appliance used to remove mites in the home. Mites are tiny pests that usually exist in household items such as mattresses, pillows, carpets, and sofas. They may cause allergic reactions such as skin itching, sneezing, and respiratory problems. Using a mite cleaner can effectively reduce the number of mites in the home and improve the hygiene of the living environment, especially suitable for people allergic to mites.
[0003] Existing mite cleaners collect dirt such as hair and particles together with mites. Mites and allergens are usually smaller and pose potential health risks. The mixed dirt may cause cross-contamination. Especially during the dumping process, mites may be impacted by larger particles and released back into the air, making the cleaning work more cumbersome and unhygienic. Summary of the Utility Model
[0004] The technical problem to be solved by the utility model is to provide a mite cleaner with a multi-stage filtering structure, which filters dirt multiple times and collects it into two independent dust collection chambers respectively, making the cleaning process more hygienic and avoiding cross-contamination of different dirt.
[0005] To solve the above technical problem, a mite cleaner with a multi-stage filtering structure of the utility model includes a housing. A dust suction head is provided at the front end of the housing, and a fan assembly is provided at the rear end of the housing. An air inlet is provided at the bottom of the dust suction head. A dust suction channel and an air outlet channel are provided inside the housing. A detachable dust cup assembly is installed on the housing. Both the dust suction channel and the air outlet channel communicate with the dust cup assembly. The dust cup assembly includes a filter cup body and a dust collection cup body connected to the filter cup body. The filter cup body communicates with the dust suction channel. A first air guide baffle is provided at the bottom end of the filter cup body. A second air guide baffle is provided between the filter cup body and the dust collection cup body. A cyclone filter is provided inside the filter cup body. The cyclone filter communicates with the air outlet channel. An activated carbon filter layer is provided at the connection between the cyclone filter and the air outlet channel. A HEPA filter is provided inside the dust collection cup body. A dust collection partition is connected to the HEPA filter. A first cover is provided on the dust collection cup body. A second cover is provided on the dust collection partition. The second cover is arranged above the first cover.
[0006] The dust collection partition divides the dust collection cup body into a first dust collection chamber and a second dust collection chamber. The first dust collection chamber is arranged between the dust collection partition and the dust collection cup body, and the second dust collection chamber is arranged inside the dust collection partition.
[0007] A filter iron net is provided outside the cyclone filter.
[0008] The filter wire mesh is provided with a plurality of mesh holes, and the size of the mesh holes is 0.8 mm.
[0009] The dust suction head is provided with a flapping assembly.
[0010] The flapping assembly includes a vibration motor, an eccentric wheel is provided on the vibration motor, a flapping rod is abutted on the eccentric wheel, a flapping head is provided on the flapping rod, and the flapping head penetrates through the bottom of the housing.
[0011] The flapping head is provided with a plurality of bumps.
[0012] The bottom of the housing is provided with an ultraviolet lamp.
[0013] The bottom of the housing is further provided with rollers.
[0014] A handle is provided at the rear end of the housing.
[0015] When the utility model is in use, the user first starts the device, and the fan assembly starts to operate, generating a strong suction force. At the same time, the flapping assembly starts to work. The vibration motor drives the eccentric wheel to rotate, and the vibration of the eccentric wheel is transmitted to the flapping head through the flapping rod. The plurality of bumps provided on the flapping head will flap the textile, vibrating mites, dust and other particulate matters hidden deep in the fibers to the surface. These particulate matters vibrated to the surface by the flapping head are sucked into the device through the dust inlet at the bottom of the dust suction head. The dust suction channel guides the particulate matters to the dust cup assembly. In the dust cup assembly, the particulate matters are first preliminarily separated by the cyclone filter. Larger particulate matters are intercepted in the filter wire mesh outside the cyclone filter, and the air passing through the cyclone filter enters the activated carbon filter layer to remove odors and harmful gases. Then, the filtered air is discharged from the air outlet channel. The dirt in the air flows to the HEPA filter in the dust collection cup body, and the fine particulate matters are filtered here and enter the dust collection partition plate, and then are cleaned by disassembly. After opening the first cover body, the user can see and clean the dirt in the first dust collection chamber, such as hair, dandruff and larger dust particles, and the user can directly pour these particulate matters into the trash can. Then open the second cover body to clean the mites and other minute allergens in the second dust collection chamber.
[0016] The beneficial effects brought by the utility model are:
[0017] The utility model forms a multi-stage filtration system through the cyclone filter, the filter wire mesh, the activated carbon filter layer and the HEPA filter, which can effectively remove particulate matters and harmful gases of different sizes, ensure that the discharged air is cleaner, and at the same time extend the service life of the device.
[0018] With two independent dust collection chambers, which are respectively used to collect different types of dirt, the cleaning process is made more hygienic, avoiding cross - contamination of different dirt.
[0019] The utility model can strongly beat the fabric, vibrating mites, dust and other particles hidden in the deep layer to the surface, so that these dirt can be effectively sucked in by the suction head, significantly improving the cleaning effect. Brief Description of the Drawings
[0020] Figure 1 is a schematic structural view of the utility model.
[0021] Figure 2 is a schematic structural view of the utility model from another angle.
[0022] Figure 3 is a sectional view of the utility model.
[0023] Figure 4 is a schematic structural view of the beating assembly of the utility model.
[0024] In the figure: 1, housing; 2, suction head; 3, fan assembly; 4, dust inlet; 5, suction channel; 6, air outlet channel; 7, dust cup assembly; 8, filter cup body; 9, dust collection cup body; 10, first air guide baffle; 11, second air guide baffle; 12, cyclone filter; 13, activated carbon filter layer; 14, Hepa filter; 15, dust collection partition; 16, first cover; 17, second cover; 18, first dust collection chamber; 19, second dust collection chamber; 20, filter iron net; 21, beating assembly; 22, vibration motor; 23, eccentric wheel; 24, beating rod; 25, beating head; 26, ultraviolet lamp; 27, roller; 28, handle; 29, bump. Detailed Description of the Preferred Embodiments
[0025] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model; obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
[0026] According to Figures 1 to 3As shown in the figure, a mite remover with a multi-stage filtration structure of the present utility model, the main body of the mite remover is a housing 1. A dust suction head 2 is installed at the front end of the housing 1, which is used to suck in dust and mites. A fan assembly 3 is provided at the rear end of the housing 1, and this assembly generates suction force to enable dust and mites to enter the device through the dust suction head 2. A dust inlet 4 is provided at the bottom of the dust suction head 2, which is the inlet for sucking in dust and mites. The housing 1 internally contains two main channels: a dust suction channel 5 and an air outlet channel 6. The dust suction channel 5 is used to guide the inhaled dust and mites to a dust cup assembly 7, while the air outlet channel 6 is responsible for discharging the filtered air. The dust cup assembly 7 is installed on the housing 1 and can be disassembled for easy cleaning and maintenance. The dust cup assembly 7 consists of two main parts: a filter cup body 8 and a dust collection cup body 9. The filter cup body 8 is connected to the dust suction channel 5. A first air guiding baffle 10 is provided at the bottom end of the filter cup body 8 to guide the dust and air inhaled from the dust suction head 2 into the filter cup body 8. A second air guiding baffle 11 is arranged between the filter cup body 8 and the dust collection cup body 9 to guide dirt into the dust collection cup body 9. A cyclone filter 12 is installed inside the filter cup body 8. The cyclone filter 12 uses rotational airflow to separate larger particles of dust and dirt from the air and is connected to the air outlet channel 6. The air passing through the cyclone filter 12 is guided into the air outlet channel 6. At the connection between the cyclone filter 12 and the air outlet channel 6, an activated carbon filter layer 13 is installed to remove odors and harmful gases from the air. A HEPA filter 14 is installed in the dust collection cup body 9, which can capture extremely fine particles and allergens. A dust collection partition 15 is connected to the HEPA filter 14, and the dust collection partition 15 divides the dust collection cup body 9 into a first dust collection chamber 18 and a second dust collection chamber 19. The first dust collection chamber 18 is arranged between the dust collection partition 15 and the dust collection cup body 9 and is used to collect larger particulate matters, such as hair, dandruff, and larger dust particles. The second dust collection chamber 19 is arranged inside the dust collection partition 15 and is used to collect smaller particles, such as mites, fine dust particles, and allergens. A first cover 16 is provided on the dust collection cup body 9, and a second cover 17 is installed on the dust collection partition 15. The second cover 17 is arranged above the first cover 16. After opening the first cover 16, the user can directly pour these particulate matters into the trash can, and then open the second cover 17 to handle the mites and allergens in the second dust collection chamber 19.
[0027] A filter iron net 20 is provided outside the cyclone filter 12. The filter iron net 20 is provided with a plurality of mesh holes, and the size of the mesh holes is 0.8 mm. On the one hand, it can block larger particulate matters from entering the interior of the cyclone filter 12 to prevent blockage or affect the cyclone effect; on the other hand, it can also protect the filtration system and extend the service life of the device.
[0028] According to Figure 4As shown, a beating assembly 21 is provided inside the dust suction head 2. The beating assembly 21 includes a vibration motor 22, and the high-speed rotation of the motor drives the eccentric wheel 23 to operate. Since the mass distribution of the eccentric wheel 23 is uneven, an unbalanced force will be generated during rotation, resulting in the vibration of the entire assembly. This vibration is transmitted to the beating rod 24 through the eccentric wheel 23, and the beating rod 24 vibrates up and down as the eccentric wheel 23 rotates. A beating head 25 is connected to the beating rod 24, and the beating head 25 directly contacts the working surface of the mite remover. The beating head 25 is designed to pass through the bottom of the housing 1, so that when the mite remover is working, the beating head 25 can directly contact and beat the textile surfaces such as mattresses and sofas. To enhance the cleaning effect, a plurality of bumps 29 are designed on the beating head 25. These bumps 29 can increase the contact area during the beating process and, by locally increasing the pressure, help to penetrate into the surface layer of the textile, vibrate the tiny particles such as mites and dust hidden deep inside to the surface, making these particles easier to be sucked in by the mite remover, thus achieving a more thorough cleaning effect.
[0029] A UV lamp 26 is provided at the bottom of the housing 1. Using the bactericidal function of ultraviolet rays, it further eliminates bacteria and mites on the surface or textiles, enhancing the mite removal effect. A roller 27 is also provided at the bottom of the housing 1, which can make it more convenient to move and operate, especially on large-area carpets or mattresses. A handle 28 is provided at the rear end of the housing 1, providing a comfortable grasping position for the user and making it easier and more convenient to operate the mite remover.
[0030] When the utility model is in use, the user first starts the device, and the fan assembly 3 begins to operate, generating a strong suction force. At the same time, the flapping assembly 21 starts to work. The vibration motor 22 drives the eccentric wheel 23 to rotate, and the vibration of the eccentric wheel 23 is transmitted to the flapping head 25 through the flapping rod 24. Multiple bumps 29 provided on the flapping head 25 will flap the fabric, vibrating mites, dust and other particulate matters hidden deep in the fibers to the surface. These particulate matters vibrated to the surface by the flapping head 25 are sucked into the device through the dust inlet 4 at the bottom of the dust suction head 2. The dust suction channel 5 guides the particulate matters to the dust cup assembly 7. In the dust cup assembly 7, the particulate matters are first preliminarily separated by the cyclone filter 12. Larger particulate matters are intercepted in the filter iron net 20 outside the cyclone filter 12, and the air passing through the cyclone filter 12 enters the activated carbon filter layer 13 to remove odors and harmful gases. Then, the filtered air is discharged from the air outlet channel 6, and the dirt in the air flows to the HEPA filter 14 in the dust collection cup body 9. Fine particulate matters are filtered here and enter the dust collection partition 15, and then are cleaned by disassembly. After opening the first cover body 16, the user can see and clean the dirt in the first dust collection chamber 18, such as hair, dandruff and larger dust particles. The user can directly pour these particulate matters into the trash can. Then open the second cover body 17 to clean the mites and other minute allergens in the second dust collection chamber 19.
[0031] The beneficial effects brought by the utility model are as follows:
[0032] The utility model forms a multi-stage filtration system through the cyclone filter, the filter iron net, the activated carbon filter layer and the HEPA filter, which can effectively remove particulate matters and harmful gases of different sizes, ensure that the discharged air is cleaner, and at the same time extend the service life of the device.
[0033] Through two independent dust collection chambers, which are respectively used for collecting different types of dirt, the cleaning process is made more hygienic and cross-contamination of different dirt is avoided.
[0034] The utility model can strongly flap the fabric, vibrating mites, dust and other particulate matters hidden deep to the surface, so that these dirt can be effectively sucked by the dust suction head, significantly improving the cleaning effect.
[0035] The above description is only the preferred embodiment of the utility model. Therefore, any equivalent changes or modifications made according to the structure, features and principles described in the scope of the utility model patent application are included in the scope of the utility model patent application.
Claims
1. A mite removal device with a multi-stage filtration structure, comprising a housing, a dust suction head is provided at the front end of the housing, a fan assembly is provided at the rear end of the housing, a dust inlet is provided at the bottom of the dust suction head, a dust suction channel and an air outlet channel are provided in the housing, a detachable dust cup assembly is installed on the housing, and both the dust suction channel and the air outlet channel are communicated with the dust cup assembly, and it is characterized in that: The dust cup assembly includes a filtering cup body and a dust collecting cup body connected to the filtering cup body. The filtering cup body is in communication with the dust suction channel. A first air guiding baffle is provided at the bottom end of the filtering cup body. A second air guiding baffle is provided between the filtering cup body and the dust collecting cup body. A cyclone filter is provided inside the filtering cup body. The cyclone filter is in communication with the air outlet channel. An activated carbon filter layer is provided at the connection between the cyclone filter and the air outlet channel. A HEPA filter is provided inside the dust collecting cup body. A dust collecting partition is connected to the HEPA filter. A first cover body is provided on the dust collecting cup body. A second cover body is provided on the dust collecting partition. The second cover body is arranged above the first cover body.
2. The mite remover with a multi-stage filtering structure according to claim 1, characterized in that: The dust collecting partition divides the dust collecting cup body into a first dust collecting chamber and a second dust collecting chamber. The first dust collecting chamber is arranged between the dust collecting partition and the dust collecting cup body. The second dust collecting chamber is arranged inside the dust collecting partition.
3. The mite remover with a multi-stage filtration structure according to claim 1, wherein: A filtering iron net is provided outside the cyclone filter.
4. The mite remover with a multi-stage filtering structure according to claim 3, characterized in that: A plurality of mesh holes are provided on the filtering iron net, and the size of the mesh holes is 0.8 mm.
5. The mite remover with a multi-stage filtering structure according to claim 1, characterized in that: A flapping assembly is provided inside the dust suction head.
6. The mite remover with a multi-stage filtering structure according to claim 5, wherein: The flapping assembly includes a vibration motor. An eccentric wheel is provided on the vibration motor. A flapping rod is abutted against the eccentric wheel. A flapping head is provided on the flapping rod. The flapping head penetrates through the bottom of the housing.
7. The mite remover with a multi-stage filtration structure according to claim 6, characterized in that: A plurality of bumps are provided on the flapping head.
8. The mite remover with a multi-stage filtration structure according to claim 1, wherein: An ultraviolet lamp is provided at the bottom of the housing.
9. The mite remover with a multi-stage filtering structure according to claim 1, wherein: Rollers are further provided at the bottom of the housing.
10. The mite remover with a multi-stage filtering structure according to claim 1, characterized in that: A handle is provided at the rear end of the housing.