Modular acaricide
Through modular design and automatic cleaning structure, the problem of single use and inconvenient dust cup disassembly of traditional mite removers has been solved, realizing multi-functional use and convenient cleaning, improving user experience and market competitiveness.
Patent Information
- Application Number
- CN202310305305.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-24
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2043-03-24
AI Technical Summary
Traditional mite removers have limited usage scenarios, low user frequency, and the dust cup is difficult to disassemble and clean, which affects user experience and market sales.
Adopting a modular design, the mite remover can switch between a detachable mite removal module and a non-mite removal module (such as a dust collection module or an aromatherapy module). Combined with a detachable dust cup and an automatic cleaning structure, it achieves multi-functional use and convenient cleaning.
This has broadened the application scenarios for mite removers, increased their usage frequency, reduced manufacturing costs, enhanced maintenance convenience, and improved the user experience.
Smart Images

Figure CN116406994B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of household appliance technology, and in particular to a modular mite remover. Background Technology
[0002] As people's living standards continue to improve, users are also demanding greater convenience from cleaning tools. As a household cleaning tool, mite removers primarily function by beating, vacuuming, and using ultraviolet light to kill mites and bacteria; some models also include a hot air function. To achieve vacuuming, mite removers typically have a dedicated dust cup. This dust cup filters the sucked-in dust and retains it, which users then empty after cleaning.
[0003] The mite removal devices currently on the market have the following drawbacks:
[0004] First, traditional mite removers have limited usage scenarios and low user frequency. For most users, the mite remover is often forgotten over time, which seriously affects its image among users and thus impacts the sales market. Therefore, how to increase the usage frequency of mite removers is an urgent problem that the industry needs to solve.
[0005] Secondly, in order to achieve dust removal, a mite remover needs to be equipped with a dust cup. The dust cup is the most frequently disassembled and cleaned part of the entire mite remover. However, the dust cups on current mite removers are troublesome to disassemble and clean, which brings many bad user experiences. Summary of the Invention
[0006] This invention provides a modular mite remover. Through its modular structural design, the mite removal module and the non-mite removal function module can be switched at any time, thereby enriching the user's usage scenarios, increasing the frequency of use of the mite remover among users, and improving the user experience.
[0007] The present invention provides a modular mite removal device, including a vacuuming control module and a multi-functional module that works with it; the multi-functional module includes a mite removal module and at least one non-mite removal module for replacing the mite removal module, and both the mite removal module and the non-mite removal module are detachably connected to the vacuuming control module.
[0008] In one embodiment, the non-mite removal functional module includes at least:
[0009] A dust collection module, used in conjunction with the dust collection control module to form a vacuum cleaner; and
[0010] The aromatherapy module is used in conjunction with the vacuum control module to form an aromatherapy diffuser.
[0011] Through this implementation method, users can replace the original mite removal module on the mite removal device with a dust collection module or an aromatherapy module as needed, thereby temporarily transforming the mite removal device into a vacuum cleaner or aromatherapy machine, effectively enriching the usage scenarios of the mite removal device.
[0012] In one embodiment, the mite removal module is provided with a positioning groove for embedding the vacuum control module, and the mite removal module is snapped together with the vacuum control module.
[0013] In this embodiment, the positioning slot facilitates the positioning of the vacuum control module during installation, while the mite removal module is snapped together with the vacuum control module to achieve a modular structure design. This not only makes it easy to store the entire device, but also makes it convenient for users to replace other functional modules, thus enriching the application scenarios of the mite remover.
[0014] In one embodiment, a dust cup is also included for use with the mite removal module, the dust cup being disposed on the mite removal module and detachably connected to the mite removal module.
[0015] In this embodiment, the dust cup, in conjunction with the mite removal module, achieves both mite removal and vacuuming functions. Furthermore, placing the dust cup on the mite removal module avoids limiting its size to that of the vacuum control module, allowing the dust cup to be designed to meet diverse user needs.
[0016] In one embodiment, the dust cup includes a dust cup housing, a dust cup top cover, and a filter assembly disposed inside the dust cup housing; a dust cup bottom cover is detachably disposed at the bottom of the dust cup housing; the filter assembly is movably disposed inside the dust cup housing, and a cleaning component is also provided on the inner wall of the dust cup housing that is attached to the outer wall of the filter assembly.
[0017] In this embodiment, the filter assembly can filter the airflow entering the dust cup, thereby achieving dust collection. When cleaning the dust cup, the filter assembly can be controlled to move inside the dust cup housing, with the cleaning component adhering to the outer wall of the filter assembly, thus scraping off dust or debris adsorbed on the surface of the filter assembly, achieving automatic cleaning. The bottom cover of the dust cup can be easily opened for emptying the dust.
[0018] In one embodiment, the filter assembly is a filter cylinder, which is inserted inside the dust cup housing, and the dust cup housing has an opening near the dust cup cover for removing the filter cylinder.
[0019] In this embodiment, the filter cylinder can effectively filter dust and debris entering the dust cup, and the cleaning component can automatically clean the filter cylinder during the process of removing the filter cylinder from the dust cup housing.
[0020] In one embodiment, the cleaning component is a dust scraper rubber ring, which is fixedly connected to the inner wall of the dust cup housing and sleeved with the outer wall of the filter assembly.
[0021] In this embodiment, during the removal of the filter assembly, the dust scraper rubber ring can scrape off the dust and debris on its surface, achieving automatic dust removal.
[0022] In one embodiment, the diameter of the scraper rubber ring near the top cover of the dust cup is larger than the diameter near the bottom cover of the dust cup; when the scraper rubber ring is fitted onto the outside of the filter assembly, the side of the scraper rubber ring near the bottom cover of the dust cup abuts against the outer wall of the filter assembly, while a gap is formed between the inner wall of the scraper rubber ring near the top cover of the dust cup and the outer wall of the filter assembly.
[0023] In this embodiment, the dust scraper rubber ring abuts against the outer wall of the filter assembly through its lower side to achieve automatic dust removal, while the gap between the upper side of the dust scraper rubber ring and the outer wall of the filter assembly can temporarily store the scraped dust and debris, preventing secondary pollution to the filter assembly.
[0024] In one embodiment, one side of the dust cup bottom cover is rotatably connected to the dust cup housing; a bottom cover buckle is provided on the side of the dust cup bottom cover opposite to the rotatably connected position of the dust cup housing, and a corresponding fastening structure is provided on the dust cup housing for engaging with the bottom cover buckle.
[0025] In this embodiment, after the bottom cover buckle is disengaged from the fastening structure on the dust cup housing, the bottom cover of the dust cup can be flipped around the rotatable connection between it and the dust cup housing, so that the bottom of the dust cup housing is open, making it convenient to pour out the dust and garbage inside the dust cup and improving the convenience of dust removal.
[0026] In one embodiment, the dust cup housing has a placement groove extending along its axial direction, and a button latch is slidably disposed in the placement groove; when the button latch slides along the placement groove toward the bottom cover of the dust cup, the lower end of the button latch presses against the bottom cover latch and disengages it from the fastening structure on the dust cup housing.
[0027] With this implementation, when the dust cup needs to be emptied, the user can slide the button latch, which slides down and presses the bottom cover latch, causing the bottom cover latch to disengage from the corresponding fastening structure, and the dust cup bottom cover will open automatically, thus realizing one-click dust emptying and greatly improving the user's convenience.
[0028] In summary, compared with the prior art, the beneficial technical effects of the present invention are as follows:
[0029] (1) By adopting a modular design, users can replace the mite removal module or dust cup with other non-mite removal modules according to their needs, so as to change the function of the mite removal device, realize the change of the usage environment, enrich the usage scenarios of the mite removal device, and increase its usage frequency among users.
[0030] (2) By adopting a modular design, not only can the whole machine be assembled according to different modules during manufacturing, greatly reducing the manufacturing cost, but also the modules can be repaired and replaced later, making maintenance more convenient;
[0031] (3) By movably setting the filter assembly inside the dust cup housing, along with the cleaning components set on the inner wall of the dust cup housing and the detachable dust cup bottom cover set at the bottom of the dust cup housing, the ease of dust cup disassembly and assembly is greatly improved, and dust can be emptied and cleaned quickly, effectively solving the problem of difficult dust emptying in traditional mite removers and helping to improve the user experience. Attached Figure Description
[0032] The invention will now be described in more detail with reference to embodiments and the accompanying drawings.
[0033] Figure 1 This is a schematic diagram of the overall structure of the mite remover in one embodiment of the present invention;
[0034] Figure 2 This is an exploded view of the overall structure of the mite remover in one embodiment of the present invention.
[0035] Figure 3 This is a schematic diagram of the overall structure of the dust cup in one embodiment of the present invention;
[0036] Figure 4 This is an exploded view of the overall structure of the dust cup in one embodiment of the present invention;
[0037] Figure 5 This is a cross-sectional view of the dust cup housing in one embodiment of the present invention;
[0038] Figure 6 This is a top view of the dust cup housing in one embodiment of the present invention;
[0039] Figure 7 This is a front view of the dust cup in one embodiment of the present invention, mainly used to show the fastening part on the stabilizing buckle.
[0040] Reference numerals: 1. Dust cup top cover; 11. Matching flange; 12. Stabilizing buckle; 121. Fastening part; 2. Dust cup housing; 21. Supporting flange; 22. Fastening groove; 23. Mounting groove; 24. Fastening groove; 25. Fastening structure; 26. Placement groove; 3. Filter cylinder; 31. Annular flange; 4. Dust scraper rubber ring; 5. Dust cup bottom cover; 51. Connecting post; 52. Bottom cover buckle; 6. Button lock; 7. Mite removal module; 71. Slot; 72. Buckle groove; 73. Dust removal inlet; 74. Dust removal outlet; 75. Positioning groove; 8. Dust suction control module. Detailed Implementation
[0041] The present invention will now be described clearly and completely with reference to the accompanying drawings.
[0042] See appendix Figure 1-2 This invention provides a modular mite removal device, including a vacuum control module 8 and a multi-functional module that works in conjunction with it. The vacuum control module 8 includes an air outlet component (not shown) and a control component (not shown), primarily providing blowing, suction, and control functions for corresponding usage scenarios. The multi-functional module includes a mite removal module 7 and at least one non-mite removal module (not shown) for replacing the mite removal module. The mite removal module 7 works in conjunction with the vacuum control module 8 to meet the user's mite removal needs, while the non-mite removal module can be selected according to the user's requirements to meet other functional needs.
[0043] In this embodiment, the aforementioned vacuum control module 8 and the multi-functional module are preferably designed as separate units. For ease of user operation, the vacuum control module 8 can be configured as a handle, allowing the user to hold the mite remover by combining the vacuum control module 8 with the mite removal module 7 or other non-mite removal modules.
[0044] In actual assembly, the vacuum control module 8 and the mite removal module 7 or non-mite removal functional modules are installed using a detachable connection method. Taking the mite removal module 7 as an example, to achieve accurate connection with the vacuum control module, a positioning groove 75 can be recessed on the upper side of the mite removal module 7; during installation, the vacuum control module 8 is embedded in the positioning groove 75 and can be detachably connected to the mite removal module 7 by a snap-fit method. Similarly, other non-mite removal functional modules can also be connected to the vacuum control module in the same way, which will not be elaborated further.
[0045] The types of non-mite-removal functional modules mentioned above can be selected according to common user needs. For example, in one embodiment, the non-mite-removal functional modules may include a dust collection module and an aromatherapy module. In actual use, when the user chooses to replace the original mite-removal module with the dust collection module, the dust collection control module is connected to the dust collection module, and the two together constitute a small vacuum cleaner, which can meet the user's dust collection needs; while when the user chooses to use the aromatherapy module, the aromatherapy module is connected to the dust collection control module, and the two together constitute an aromatherapy diffuser, thereby meeting the user's aromatherapy needs.
[0046] In addition, more non-mite removal function modules can be continuously expanded according to other functional needs of users, such as a fan module (which can form a small handheld fan with the vacuum control module 8), a spray module (which can form a sprayer with the vacuum control module 8), etc., which will not be listed exhaustively.
[0047] It should be noted that the technical solution of the mite removal device provided in this embodiment focuses on the modular combination of the vacuum control module 8 and different functional modules to enrich the user's usage scenarios, rather than the specific structure and construction of the vacuum control module 8, the mite removal module 7 and other non-mite removal functional modules. Therefore, the specific internal structure of the vacuum control module 8, the mite removal module 7 and other non-mite removal functional modules can refer to the structural composition of related components in the prior art. For example, the internal structure of the dust collection module can refer to the structural design of the dust collection part of a traditional vacuum cleaner, and the aromatherapy module can refer to the structural design of a traditional aromatherapy box. Therefore, it will not be described in detail here.
[0048] See appendix Figure 1-2 In one embodiment, the aforementioned vacuum control module 8 is used in conjunction with the mite removal module 7. The mite removal module 7 is also equipped with a dust cup for collecting dust and debris. The combination of the vacuum control module 8 and the mite removal module 7 satisfies the user's mite removal needs, and the addition of the dust cup allows the mite remover to perform both mite removal and vacuuming functions simultaneously.
[0049] Specifically, for the installation of the aforementioned dust cup, the mite removal module 7 is provided with a slot 71, and the mite removal module 7 is provided with a dust removal inlet 73 and a dust removal outlet 74 near the slot 71. In actual installation, the side of the dust cup bottom cover 5 is inserted into the slot 71, thereby forming a plug-in fit with the mite removal module 7.
[0050] At this point, after the dust cup and mite removal module 7 are accurately installed, the dust removal inlet 73 on the mite removal module 7 is precisely connected to the air inlet on the dust cup housing 2, while the dust removal outlet 74 on the mite removal module 7 is precisely connected to the air outlet on the dust cup housing 2. During use, as the vacuum control module continues to operate, air carries dust and other debris into the dust cup, where they accumulate, thus achieving dust and debris collection.
[0051] With the above setup, the dust control module 8, the mite removal module 7, and the dust cup are independent of each other. Unlike traditional mite removal devices, the volume of the dust cup will not be affected by the volume of the dust control module 8. When the volume of the mite removal module 7 is large enough, the dust cup can be designed to a suitable size according to the requirements.
[0052] See appendix Figure 3-4 The aforementioned dust cup includes a dust cup housing 2, a dust cup cover 1, and a filter assembly disposed inside the dust cup housing 2. The dust cup housing 2 is provided with an air inlet (not shown in the figure) and an air outlet (not shown in the figure), and the dust cup housing 2 can communicate with other components of the mite remover through the air inlet and air outlet. During operation, airflow carrying dust and debris enters the dust cup housing 2 through the air inlet and is filtered by the filter assembly inside the dust cup housing 2. The filtered airflow is then discharged through the air outlet. Thus, with the help of the filter assembly, the dust cup can collect the dust and debris sucked up by the mite remover in real time, realizing the dust suction function of the mite remover.
[0053] In this embodiment, the dust cup housing 2 can be made of metal or hard plastic, without specific limitations, as long as it meets the structural strength design requirements of conventional household appliances. The overall structure of the dust cup housing 2 can be designed as a square cylinder, a round cylinder, or other cylindrical structures, which can be selected according to design requirements. However, for household applications, a cylindrical structure is preferred, as it is easier to hold and more aesthetically pleasing to users. The top of the dust cup housing 2 is open, and the dust cup cover 1 is placed over this top opening to seal it and prevent dust and debris from escaping.
[0054] The filter assembly is entirely housed inside the dust cup housing 2, primarily used to filter air and collect dust and debris sucked up by the mite remover. Specifically, in this embodiment, the filter assembly can be a filter cylinder 3; corresponding to the structural design of the dust cup housing 2, the filter cylinder 3 can also be configured as a cylindrical structure with evenly distributed filter holes on its surface for filtering dust and debris from the air. During actual installation, the filter cylinder 3 can be inserted into the dust cup housing 2 through the top opening; when the dust cup cover 1 is completely closed, the filter cylinder 3 is sealed inside the dust cup housing 2.
[0055] Combined with appendix Figure 5In one embodiment, to ensure the stability of the filter cylinder 3 during installation, a supporting flange 21 is provided on the inner wall of the dust cup housing 2; correspondingly, an annular flange 31 is provided on the top outer wall of the filter cylinder 3, and a mating flange 11 is provided on the bottom of the dust cup cover 1. After installation, the annular flange 31 on the outer wall of the filter cylinder 3 overlaps with the supporting flange 21 on the inner wall of the dust cup housing 2, and the mating flange 11 at the bottom of the dust cup cover 1 is inserted into the top opening of the dust cup housing 2 and abuts against the side of the annular flange 31 away from the supporting flange 21; thus, the mating flange 11 and the supporting flange 21 cooperate to limit the annular flange 31, thereby ensuring the stability of the filter cylinder 3 during installation inside the dust cup housing 2.
[0056] In practical applications, dust and debris are filtered by the filter cylinder 3. Not only does dust and debris collect inside the filter cylinder 3, but a large amount of dust and debris also adheres to the side wall of the filter cylinder 3. This dust and debris adheres to the side wall of the filter cylinder 3 and will clog the filter holes on the filter cylinder 3 over time, resulting in a decrease in the filtration performance of the filter cylinder 3. This is also the main reason why the dust cup needs to be cleaned frequently.
[0057] To facilitate cleaning of the filter cylinder 3, a cleaning component is provided on the inner wall of the dust cup housing 2. This cleaning component abuts against the outer wall of the filter cylinder 3. During the removal of the filter cylinder 3 from the dust cup housing 2, the cleaning component wipes the outer wall of the filter cylinder 3, scraping off dust and debris adhering to its surface, thus achieving automatic dust removal. Specifically, this cleaning component can be any part with a wiping function, but considering the cleaning effect, a ring-shaped component is preferred.
[0058] For example, in one embodiment, the cleaning component is a dust scraper ring 4. The dust scraper ring 4 can be directly injection molded onto the inner wall of the dust cup housing 2 using a coating method, making it an integral part of the dust cup housing 2. This ensures the stability of the dust scraper ring 4 on the dust cup housing 2, ensuring that it can reliably scrape off dust and debris from the inner wall of the filter cylinder 3. Simultaneously, to ensure the service life of the dust scraper ring 4, it is preferable to position the connection between the dust scraper ring 4 and the inner wall of the dust cup housing 2 at the aforementioned supporting flange 21. Thus, when the dust cup cover 1 is closed, the flange 11 can also press and fix the edge of the dust scraper ring 4, and the supporting flange 21 ensures sufficient contact area between the dust scraper ring 4 and the inner wall of the dust cup housing 2, which helps improve the stability of the dust scraper ring 4.
[0059] In another embodiment, to further improve the cleaning effect of the scraper rubber ring 4 on the filter cylinder 3, the scraper rubber ring 4 can be configured with a structure that is larger at the top and smaller at the bottom, that is, the diameter of the scraper rubber ring 4 on the side near the dust cup cover 1 is larger than the diameter on the side near the bottom of the dust cup housing 2. Specifically, the scraper rubber ring 4 can be configured in a funnel shape; in this way, the scraper rubber ring 4 is connected to the inner wall of the dust cup housing 2 through its upper edge, while its lower edge is fitted onto the filter cylinder 3; at this time, a gap will be formed between the upper inner wall of the scraper rubber ring 4 and the filter cylinder 3, which can be used to temporarily store the scraped dust and debris, reducing secondary pollution to the filter cylinder 3.
[0060] In practical applications, during the process of removing the filter cylinder 3 from the dust cup housing 2, the lower edge of the scraper rubber ring 4 slides along the outer wall of the filter cylinder 3, scraping off the dust and debris attached to it, thus achieving automatic dust removal. Simultaneously, to further improve the cleaning effect of the scraper rubber ring 4 on the filter cylinder 3, the lower edge of the scraper rubber ring 4 can be thickened and / or flanged to increase its tightness of contact with the surface of the filter cylinder 3, ensuring a good scraping effect.
[0061] See appendix Figure 3-4 The dust cup cover 1 mentioned above is mainly used to seal the top opening of the dust cup housing 2 to prevent dust and debris inside the dust cup housing 2 from escaping.
[0062] Combined with appendix Figure 6 In addition to the mating flange 11 for insertion into the top opening of the dust cup housing 2, a stabilizing buckle 12 is also fixedly provided on one side of the dust cup cover 1 to ensure the stability of the dust cup cover 1 when it is closed on the dust cup housing 2; correspondingly, a fastening groove 22 is provided on the upper side of the dust cup housing 2. After the dust cup cover 1 is closed on the dust cup housing 2, the mating flange 11 is inserted into the top opening of the dust cup housing 2, and the stabilizing buckle 12 is embedded in the fastening groove 22, forming a fastening engagement with the fastening groove 22 to ensure the stability of the dust cup cover 1 when it is closed.
[0063] As attached Figure 7 As shown, in one embodiment, the length of the aforementioned stabilizing buckle 12 is greater than the length of the fastening groove 22 on the dust cup housing 2; thus, when the stabilizing buckle 12 is inserted into the fastening groove 22 and connected with it, the lower end of the stabilizing buckle 12 will protrude from the fastening groove 22. At this time, the portion of the stabilizing buckle 12 protruding from the fastening groove 22 constitutes a fastening part 121, which can be used to form a fastening engagement with the snap-fit groove 72 located near the slot 71 on the mite removal module, thereby improving the stability of the dust cup installation.
[0064] Meanwhile, to improve the ease of opening the dust cup cover 1 and disassembling the dust cup, a button slot can be provided on the dust cup cover 1 corresponding to the stabilizing buckle 12, so that the button of the stabilizing buckle 12 is precisely embedded in the button slot, making it convenient for the user to accurately press the stabilizing buckle 12 to open the dust cup cover 1 and disassemble the dust cup.
[0065] See appendix Figure 4-5 The dust cup housing 2 is detachably equipped with a dust cup bottom cover 5. The dust cup bottom cover 5 is mainly used to seal the opening at the bottom of the dust cup housing 2 to prevent dust and debris from being accidentally discharged during operation. When cleaning the dust cup, the user can remove the dust cup bottom cover 5 from the bottom of the dust cup housing 2; in this way, the dust and debris inside the dust cup housing 2 will be discharged from the opening at the bottom of the dust cup housing 2, achieving rapid dust removal.
[0066] In one embodiment, to improve the ease of opening the dust cup bottom cover 5, a mounting groove 23 is provided on one side of the bottom outer wall of the dust cup housing 2, and a fastening groove 24 is provided on the opposite side. Correspondingly, a connecting post 51 for engaging with the mounting groove 23 is provided on one radial side of the dust cup bottom cover 5, and a bottom cover buckle 52 is provided on the other side. During actual installation, the dust cup bottom cover 5 is rotatably connected to the mounting groove 23 on one side of the bottom of the dust cup housing 2 via the connecting post 51, allowing the dust cup bottom cover 5 to rotate up and down around the connecting post 51; the other side of the dust cup bottom cover 5 forms a fastening engagement with the fastening structure 25 inside the fastening groove 24 via the bottom cover buckle 52, to ensure the stability of the dust cup bottom cover 5 when closed. At this time, the fastening structure 25 that engages with the bottom cover buckle 52 can be a locking groove or other similar structure.
[0067] With the above setup, the user only needs to control the bottom cover buckle 52 to disengage from the corresponding fastening structure 25, and the dust cup bottom cover 5 will rotate around the connecting post 51 to achieve automatic opening and dust removal.
[0068] In another embodiment, to further improve the convenience of user operation, a placement groove 26 extending axially is provided on the outer wall of the dust cup housing 2, and a button latch 6 is slidably disposed in the placement groove 26; the lower end of the button latch 6 (i.e., the end near the bottom cover 5 of the dust cup) can be set with an angled structure. Thus, when the button latch 6 slides down the placement groove 26 a certain distance, the lower end of the button latch 6 will abut against the bottom cover latch 52 and gradually squeeze the bottom cover latch 52, so that the bottom cover latch 52 disengages from the corresponding fastening structure 25, thereby realizing one-button opening of the dust cup bottom cover 5, and indirectly realizing one-button dust removal of the dust cup.
[0069] In the description of this invention, it should be understood that the terms "upper", "lower", "bottom", "top", "front", "rear", "inner", "outer", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0070] Although the invention has been described with reference to preferred embodiments, various modifications can be made and components can be replaced with equivalents without departing from the scope of the invention. In particular, the technical features mentioned in the various embodiments can be combined in any manner as long as there is no structural conflict. The invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Claims
1. A modular acaricide apparatus, characterized in that, The dust collection control module and the multifunction module are matched; the multifunction module comprises a mite removal module and at least one non-mite removal function module for replacing the mite removal module, and the mite removal module and the non-mite removal function module are detachably connected with the dust collection control module; A dust cup matched with the mite removal module is arranged on the mite removal module and detachably connected with the mite removal module; The dust cup comprises a dust cup shell, a dust cup upper cover and a filter assembly arranged in the dust cup shell; One side of the dust cup upper cover is provided with a stabilizing buckle, and the upper side of the dust cup shell is correspondingly provided with a buckle slot; the length of the stabilizing buckle is greater than the length of the buckle slot; when the dust cup upper cover is covered on the dust cup shell, the stabilizing buckle is embedded in the buckle slot to form a buckle connection with the buckle slot; the lower end of the stabilizing buckle penetrates through the buckle slot and forms a buckle connection with the buckle slot on the mite removal module.
2. The modular acaricide applicator of claim 1, wherein, The non-mite removal function module at least comprises: A dust collection module for matching the dust collection control module to form a dust collector; and A fragrance module for matching the dust collection control module to form a fragrance machine.
3. The modular acaricide applicator of claim 1, wherein, The mite removal module is provided with a positioning slot for embedding the dust collection control module, and the mite removal module is buckle-connected with the dust collection control module.
4. The modular acaricide applicator of claim 1, wherein, The bottom of the dust cup shell is detachably provided with a dust cup bottom cover; the filter assembly is movably arranged in the dust cup shell, and the inner wall of the dust cup shell is further provided with a cleaning member attached to the outer wall of the filter assembly.
5. The modular acaricide applicator of claim 4, wherein, The filter assembly is a filter screen cylinder, which is inserted into the dust cup shell, and the dust cup shell is provided with an opening near the dust cup upper cover for taking out the filter screen cylinder.
6. The modular acaricide applicator of claim 4, wherein, The cleaning member is a dust scraping rubber ring, which is fixedly connected with the inner wall of the dust cup shell and is sleeved with the outer wall of the filter assembly.
7. The modular acaricide applicator of claim 6, wherein, The diameter of the dust scraping rubber ring near the dust cup upper cover side is greater than that near the dust cup bottom cover side; when the dust scraping rubber ring is sleeved on the outer side of the filter assembly, the inner wall of the dust scraping rubber ring near the dust cup upper cover side is in abutment with the outer wall of the filter assembly, and a gap is formed between the inner wall of the dust scraping rubber ring near the dust cup upper cover side and the outer wall of the filter assembly.
8. The modular acaricide applicator of claim 4, wherein, One side of the dust cup bottom cover is rotationally connected with the dust cup shell; the opposite side of the dust cup bottom cover relative to the rotationally connected position with the dust cup shell is provided with a bottom cover buckle, and the dust cup shell is correspondingly provided with a buckling structure for buckle connection with the bottom cover buckle.
9. The modular acaricide applicator of claim 8, wherein, The dust cup shell is provided with a placing slot extending along the axial direction thereof, and a button lock buckle is slidably arranged in the placing slot; when the button lock buckle slides along the placing slot towards the dust cup bottom cover side, the lower end of the button lock buckle presses the bottom cover buckle and makes it disengage from the buckling structure on the dust cup shell.
Citation Information
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