Mite killing equipment

Through the design of integrated slap components and single drive components, the complex and cost-effective assembly problems in existing mites are solved, achieving a simpler and more compact structure and more efficient mites removal effect.

CN222982968UActive Publication Date: 2025-06-17ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202422038395.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-06-17
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

Multiple independent hammers in existing mite removal instruments lead to many parts, high costs and complex assembly.

Method used

The integrated slap assembly is adopted to integrate multiple slap parts into one whole, reducing the number of assembled parts, and designing only one driving component to drive the entire slap assembly to reciprocate.

Benefits of technology

The structure of mite removal equipment is simplified, the cost is reduced, the assembly simplicity and mite removal efficiency are improved, and the surfaces of different materials and shapes are adapted to.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides acarus killing equipment, and relates to the technical field of cleaning products. The acarus killing device comprises a shell assembly, a flapping assembly and a driving assembly. A mounting space is defined by the shell assembly, and the shell assembly is provided with an extending opening communicated with the mounting space; the flapping assembly comprises a flapping hammer and an elastic piece, the flapping hammer comprises a mounting plate and a flapping part, the mounting plate is movably arranged in the mounting space in the height direction of the shell assembly, the elastic piece is arranged between the mounting plate and the shell assembly, and the elastic piece is constructed to apply acting force opposite to the moving direction of the mounting plate to the mounting plate; the flapping part is connected with the mounting plate and extends out of the extending opening; the driving assembly is in transmission connection with the mounting plate so as to drive the mounting plate to reciprocate in the height direction of the shell assembly. According to the acarus killing equipment, the integrated flapping assembly is adopted, the multiple flapping parts are integrally designed into a whole, the number of assembly parts is reduced, the structure is simplified, cost is reduced, and assembly simplicity is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of cleaning products, in particular to a mite removal device. Background Art

[0002] A mite removal device such as a mite remover is a tool for removing dust and mites indoors. Usually, the mite removers on the market use functions such as beating and vacuuming to remove mites and sterilize.

[0003] To improve the mite removal efficiency, multiple beating hammers are usually provided on the existing mite removers to increase the beating area of the mite removers. However, in the existing mite removers, multiple beating hammers are independent of each other, with more assembly parts, high cost and complex assembly. Summary of the Utility Model

[0004] In view of the above problems, the utility model provides a mite removal device, which reduces the number of assembly parts, reduces the cost and improves the assembly simplicity.

[0005] The utility model provides a mite removal device, comprising:

[0006] A housing assembly defining an installation space, and the bottom wall of the housing assembly is provided with an extension opening communicating with the installation space;

[0007] A beating assembly including a beating hammer and an elastic member. The beating hammer includes a mounting plate and a beating part. The mounting plate is movably arranged in the installation space along the height direction of the housing assembly. The elastic member is arranged between the mounting plate and the housing assembly, and the elastic member is configured to apply a force opposite to the movement direction of the mounting plate to the mounting plate. The beating part is connected to the mounting plate and extends out from the extension opening;

[0008] A driving assembly is in transmission connection with the mounting plate to drive the mounting plate to reciprocate along the height direction of the housing assembly.

[0009] The mite removal device of the embodiment of the present application adopts an integrated beating assembly. By integrating multiple beating parts into a whole instead of multiple independent beating parts, the number of required assembly parts is reduced, and the installation accessories required for assembly are reduced. Correspondingly, only one driving assembly is designed to drive the whole beating assembly to reciprocate. In this way, compared with the existing multiple beating hammers each configured with a driving mechanism, this design further simplifies the structure of the mite removal device and reduces the cost, making the mite removal device simple and compact in structure, and reducing the complexity of assembly and maintenance.

[0010] In some embodiments, there are multiple beating parts, and the multiple beating parts are arranged at intervals on the mounting plate, and the extension openings are multiple corresponding to the beating parts one by one.

[0011] Multiple beating parts can cover a larger area simultaneously, performing multi-point simultaneous beating on mites and their living environment, with more comprehensive beating. At the same time, due to the spaced arrangement of the beating parts, the mite removal device can more easily adapt to surfaces of different materials and shapes. For example, in the uneven parts of a mattress or the gaps of a sofa, multiple beating parts can all find suitable positions for beating.

[0012] In some embodiments, there are two beating parts, and the two beating parts are symmetrically distributed about the center line of the housing assembly in the length direction.

[0013] It ensures that the mite removal device can evenly cover and beat the surface to be cleaned when moving, guaranteeing the balance of the mite removal effect. At the same time, the two beating parts are arranged along the length direction of the housing assembly, so that the coverage range of the beating parts is wider. In this way, when cleaning a surface of the same area, the number of times the mite removal device needs to be moved will be correspondingly reduced, saving time and also reducing the physical consumption of the user, ensuring the use experience.

[0014] In some embodiments, the elastic member wraps at least part of the edge of the mounting plate, so that both the upper surface and the lower surface of the mounting plate are in contact with the housing assembly through the elastic member.

[0015] It ensures that the elastic member can closely fit on the mounting plate, thus more effectively transmitting force. In addition, since the elastic part wraps the edge of the mounting plate, the elastic member also limits the possible lateral movement of the mounting plate to a certain extent, increasing its stability. The elastic member, as an intermediate medium between the mounting plate and the housing assembly, can assist the rapid reset of the mounting plate and absorb and disperse the impact and vibration between the mounting plate and the housing assembly, protecting the components of the mite removal device.

[0016] In some embodiments, there are two elastic members, and the two elastic members are respectively sleeved at both ends of the mounting plate along the length direction of the housing assembly.

[0017] The two elastic members provide stable support points for the mounting plate, ensuring that the mounting plate maintains the correct position and direction during movement, reducing the possibility of deviation or shaking. At the same time, by adjusting the compression degree of the elastic member, the gap between the mounting plate and the housing assembly can be finely adjusted to ensure the smooth movement of the mounting plate. In addition, the elastic members are arranged at the ends of the mounting plate, eliminating the need for additional space to install other support structures, making the overall structure of the mite removal device more compact, reducing the assembly parts, and improving the assembly simplicity.

[0018] In some embodiments, the elastic member is elastic foam.

[0019] The elastic foam is a shock-absorbing, buffering and supporting material that can quickly return to its original shape after being subjected to an external force. At the same time, the elastic foam has a low density, weight and good sound absorption and noise reduction performance, ensuring the lightness and comfort of use of the mite removal device and providing a good experience for users.

[0020] In some embodiments, the flapping hammer further includes: a fixing part provided on a side of the mounting plate facing away from the flapping part, and a driving assembly provided on the fixing part.

[0021] When the mite removal device needs to work, the driving assembly receives a signal from the control system, such as when the user powers on and turns on the switch, the driving assembly starts to work, and the force generated by it is transmitted to the flapping part through the fixing part and the mounting plate, causing the flapping part to perform a flapping action, so that the flapping part can penetrate into the fiber layer of the surface to be treated, effectively removing impurities such as dust, dander and mites.

[0022] In some embodiments, the fixing part is formed as a fixing groove with an open top, the driving assembly includes a driving motor and a motor cover plate, the driving motor is embedded in the fixing groove and is drivingly engaged with the mounting plate, and the motor cover plate seals the fixing groove.

[0023] When the flapping hammer needs to work, the driving assembly receives a signal from the control system, such as when the user powers on and turns on the switch, the driving motor runs, and the power generated by the driving motor is transmitted to the mounting plate through the driving engagement, and then drives the flapping part to perform a flapping action. In this process, the fixing groove provides a stable installation environment for the driving motor, and the motor cover plate ensures the sealing and safety inside the fixing groove.

[0024] In some embodiments, mounting posts are further provided on the periphery of the fixing part, and first mounting holes are provided on the mounting posts;

[0025] Lugs corresponding to the mounting posts one by one are provided on the motor cover plate, and second mounting holes are opened on the lugs;

[0026] The motor cover plate and the mounting posts are connected by fasteners passing through the second mounting holes and the first mounting holes in sequence.

[0027] Through the cooperation of the mounting posts and the lugs, and the fixing action of the fasteners, the motor cover plate can be tightly fixed on the fixing part, preventing the entry of dust and impurities. At the same time, this design also facilitates subsequent maintenance and replacement work. When it is necessary to disassemble the motor cover plate, only the fasteners need to be loosened to complete the operation, which is simple.

[0028] In some embodiments, the flapping part includes: a support platform and flapping columns, the support platform is connected to the mounting plate, there are multiple flapping columns, the flapping columns are provided on a side of the support platform facing away from the mounting plate, adjacent two flapping columns are arranged at intervals, and the flapping columns extend along the height direction of the housing assembly.

[0029] When the beating hammer starts to work, the driving component drives the support platform and the beating columns to move through the mounting plate. Supported by the support platform, the beating columns perform beating actions at a preset speed along the height direction of the housing component. The intervals between the beating columns ensure that multiple beating columns can simultaneously beat multiple areas of the target object, thereby enhancing the beating effect and coverage area of the mite removal device.

[0030] In some embodiments, the multiple beating columns are arranged in an array.

[0031] When the beating hammer starts to work, the driving component drives the support platform to move through the mounting plate. The beating columns arranged in an array on the support platform perform beating actions as the support platform moves. The array arrangement ensures that each beating column can beat the corresponding area of the target object, thereby achieving a uniform distribution of the beating force and avoiding the situation of over-beating or missed beating in local areas.

[0032] In some embodiments, the support platform and the mounting plate are integrally formed.

[0033] The integrally formed design avoids the connecting parts between the support platform and the mounting plate, reduces the structural instability caused by the loosening or breakage of the connecting parts, and at the same time ensures that there is no gap between the support platform and the mounting plate, ensuring the accuracy and action consistency between the two during the operation of the mite removal device. At the same time, it reduces the friction and wear between components and extends the service life.

[0034] In some embodiments, a cavity is provided on one side of the support platform facing the mounting plate.

[0035] The cavity design reduces the overall weight of the support platform and improves the flexibility of the device. In addition, the cavity is provided on one side of the support platform facing the mounting plate, that is, the cavity communicates with the installation space of the mite removal device, increasing the capacity of the installation space, facilitating the wiring and component installation in the installation space, and avoiding the possible interference during the movement of the support platform.

[0036] In some embodiments, the housing component includes: an upper shell and a lower shell. The lower shell defines an installation groove adapted to the mounting plate. An outlet is formed on the bottom wall of the installation groove. The mounting plate is embedded in the installation groove. The upper shell is provided with an abutting portion, and the abutting portion and the bottom wall of the installation groove jointly clamp an elastic member.

[0037] The upper shell and the lower shell are arranged to jointly provide a stable and safe working environment for the components in the installation space. The installation groove provides stable support for the installation plate, and also helps to reduce the relative movement between the installation plate and the lower shell, improving the stability of the overall structure. When the housing assembly is assembled, the abutting part will jointly clamp the elastic part with the bottom wall of the installation groove. The elastic part is jointly clamped by the abutting part of the upper shell and the bottom wall of the installation groove of the lower shell to form a stable support structure. At the same time, the elastic part can also provide the functions of quick reset and buffering for the installation plate, improving the working efficiency of the installation plate.

[0038] In the mite removal device of the present utility model, by adopting an integrated flapping assembly, multiple flapping parts are integrally designed as a whole instead of multiple independent flapping parts, reducing the number of assembly parts required and the installation accessories required for assembly. At the same time, only one driving assembly is designed to drive the entire flapping assembly to perform reciprocating motion. In this way, compared with the existing design where each of multiple flapping hammers is equipped with a driving mechanism, this design further simplifies the structure of the mite removal device and reduces the cost, making the mite removal device simple in structure and improving the assembly simplicity. Description of the Drawings

[0039] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0040] Figure 1 It is a schematic structural diagram of the mite removal device according to the embodiment of the present utility model;

[0041] Figure 2 It is an exploded view of the mite removal device according to the embodiment of the present utility model;

[0042] Figure 3 It is a bottom view of the mite removal device according to the embodiment of the present utility model.

[0043] Description of the Reference Numerals in the Drawings:

[0044] 100 - Housing Assembly;

[0045] 110 - Installation Space; 120 - Upper Shell; 121 - Abutting Part; 130 - Lower Shell; 131 - Outlet; 132 - Installation Groove;

[0046] 200 - Flapping Assembly;

[0047] 210 - Beating hammer; 211 - Mounting plate; 212 - Beating part; 2121 - Support platform; 2122 - Beating column; 213 - Fixing part; 2131 - Fixing groove; 2132 - Mounting column; 2133 - First mounting hole;

[0048] 220 - Elastic part;

[0049] 300 - Driving assembly;

[0050] 310 - Driving motor; 320 - Motor cover plate; 321 - Lifting lug; 322 - Second mounting hole. Detailed implementation manner

[0051] In order to make the above - mentioned objects, features and advantages of the embodiments of the present application more obvious and understandable, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0052] Mites are tiny arthropods that usually live in the human living environment, such as in fiber fabrics like mattresses, sofas, carpets, etc. With the improvement of people's health awareness, mite - removal devices have gradually been widely used.

[0053] A mite - removal device, such as a mite - removal vacuum cleaner, is an appliance for removing dust and mites indoors. Generally, the mite - removal vacuum cleaners on the market usually use functions of beating, vacuuming and ultraviolet rays for mite - removal and sterilization, and some have a hot - air effect. When in use, the mite - removal vacuum cleaner is placed on the surface of the fabric and pushed and pulled back and forth, such as on the bed, on the carpet, on the sofa chair. It is easy and labor - saving, just push and pull, the operation is simple, and there are various power - on forms, which can be battery - powered, rechargeable - battery - powered or plug - in - powered, and it can be used as long as it is powered on. It can be used for household daily use, office areas, travel, business trips, in - vehicle use, etc.

[0054] For a mite - removal vacuum cleaner, the beating function is one of its core functions and also the key to mite - removal. The body structure of mites enables them to adhere tightly to these fibers. Especially, their legs have strong grasping force, making it difficult to simply remove them. The beating function of the mite - removal vacuum cleaner is designed for this characteristic of mites. Through high - intensity beating, the mite - removal vacuum cleaner can break the grasping force of the mite legs and make them fall off from the fiber fabric. At the same time, the beating can also generate vibrations, further loosening and removing dirt such as deeply embedded dust mites, dander, and hair.

[0055] To improve the mite removal efficiency, multiple beating hammers are usually provided on existing mite removal devices to increase the beating area of the mite removal device. However, in existing mite removal devices, the multiple beating hammers are independent of each other. Each beating hammer needs to be individually screwed to the whole machine, and the up-and-down beating deformation of the beating hammer relies on elastic parts, etc., resulting in a large number of assembly parts, high costs and complex assembly.

[0056] In view of this, the present utility model provides a mite removal device. By adopting an integrated beating component, multiple beating parts are integrally designed as a whole instead of multiple independent beating parts, reducing the number of required assembly parts and the installation accessories required for assembly. At the same time, for the mite removal device of the embodiment of the present application, only one driving component is designed to drive the whole beating component to do reciprocating motion. Compared with the existing design where each of the multiple beating hammers is equipped with a driving mechanism, this design further simplifies the structure of the mite removal device and reduces costs, making the mite removal device simple and compact in structure and improving the assembly simplicity.

[0057] The following will combine Figures 1 - 3 to describe the mite removal device of the embodiment of the present application.

[0058] Refer to Figure 1 and Figure 3 , the mite removal device of the embodiment of the present application can be a handheld mite removal device or other types of mite removal devices. The mite removal device may include a housing assembly 100, a beating component 200, and a driving component 300.

[0059] Among them, the housing assembly 100 serves as the supporting main body of the mite removal device. The housing assembly 100 can define an installation space 110 for accommodating and supporting other components. The bottom wall of the housing assembly 100 is provided with an extension opening 131 communicating with the installation space 110. This extension opening 131 allows the beating part 212 of the beating component 200 to extend out and directly contact the surface of the object to be cleaned that needs mite removal. The object to be cleaned can be a mattress, a sofa, a towel, a quilt, etc. The housing assembly 100 can protect the components inside the installation space 110 and maintain their normal operation. The design of the extension opening 131 not only ensures the effective action range of the beating part 212 but also avoids the exposure of the components inside the installation space 110, improving the use safety of the mite removal device.

[0060] The flapping assembly 200 may include a flapping hammer 210 and an elastic member 220. The flapping hammer 210 can cause mites, dust, etc. inside it to separate from the attached surface through the object to be cleaned. The flapping hammer 210 may include a mounting plate 211 and a flapping portion 212. The mounting plate 211 can be square, circular, oval or any other shape. The mounting plate 211 is movably arranged in the mounting space 110 along the height direction of the housing assembly 100. Specifically, the movement of the mounting plate 211 is realized by the driving assembly 300. The flapping portion 212 is connected to the mounting plate 211 and moves along with the movement of the mounting plate 211, directly flapping the surface that needs to be de-mite.

[0061] The elastic member 220 is arranged between the mounting plate 211 and the housing assembly 100. The elastic member 220 is configured to apply a force to the mounting plate 211 in the direction opposite to the movement direction of the mounting plate 211. The setting of the elastic member 220 enables the flapping hammer 210 to quickly and powerfully strike the surface under the drive of the driving assembly 300, and at the same time, it can quickly reset when returning, improving the de-mite efficiency.

[0062] It can be seen that the de-mite device in the embodiment of the present application adopts an integrated flapping assembly 200, including a flapping hammer 210 and an elastic member 220. At the same time, the flapping hammer 210 includes a mounting plate 211 and a flapping portion 212. Exemplarily, a plurality of flapping portions 212 can be provided, but the plurality of flapping portions 212 are integrally designed as a whole, rather than a plurality of independent flapping parts. This design reduces the number of required assembly parts and reduces the installation accessories required for assembly, such as the bolt fixation between each existing flapping hammer 210 and the whole machine. At the same time, it reduces the installation cost of the de-mite device and reduces the assembly complexity.

[0063] The flapping portion 212 is connected to the mounting plate 211 and extends out from the extension port 131. In this way, through the synergistic effect of the elastic member 220 and the driving assembly 300, an efficient, powerful and continuous flapping action of the flapping hammer 210 is realized, destroying the living environment of mites and making them easy to be removed in subsequent steps, such as the dust suction step.

[0064] The driving component 300 is in transmission connection with the mounting plate 211 to drive the mounting plate 211 to reciprocate along the height direction of the housing component 100. The driving component 300 is a key component for realizing the function of beating and removing mites, and provides power to drive the mounting plate 211 to make reciprocating motions. Specifically, the driving component 300 drives the overall movement of the beating hammer 210 by driving the movement of the mounting plate 211, and only one driving component 300 can be designed to drive the entire beating component 200 to make reciprocating motions. In this way, compared with the existing design where each of the multiple beating hammers 210 is equipped with a driving mechanism, this design further simplifies the structure of the mite removal device and reduces the cost. In addition, the design of using one driving component 300 to drive the entire beating component 200 makes the overall beating action of the beating component 200 consistent, with concentrated force, avoiding the possibility of inconsistent beating frequencies caused by each of the existing multiple beating hammers 210 being equipped with a driving mechanism, and ensuring the beating efficiency.

[0065] The mite removal device of the embodiment of the present application adopts an integrated beating component 200. By integrating multiple beating parts 212 into a whole instead of multiple independent beating parts, the number of assembly parts required is reduced, and the installation accessories required for assembly are also reduced. Correspondingly, only one driving component 300 can be designed to drive the entire beating component 200 to make reciprocating motions. In this way, compared with the existing design where each of the multiple beating hammers 210 is equipped with a driving mechanism, this design further simplifies the structure of the mite removal device and reduces the cost, making the mite removal device simple and compact in structure and improving the assembly simplicity.

[0066] In addition, through modular design, the housing component 100, the beating component 200, and the driving component 300 can be manufactured and tested separately and combined together in the final assembly stage, improving the flexibility of the production line, accelerating the assembly speed, and improving the assembly efficiency. By reasonably designing the structures and functions of the housing component 100, the beating component 200, and the driving component 300, an efficient and convenient mite removal effect is achieved, which can penetrate deep into the fibers, destroy the living environment of mites, and also improve the thoroughness of mite removal through continuous beating actions, ensuring the user experience.

[0067] In some embodiments, in combination with Figure 1 and Figure 3 , there are multiple beating parts 212, and the multiple beating parts 212 are arranged at intervals on the mounting plate 211. There are multiple outlets 131 corresponding to the beating parts 212 one by one. The multiple beating parts 212 can simultaneously cover a larger area, perform multi-point simultaneous beating on mites and their living environment, with more comprehensive beating and higher cleaning efficiency. At the same time, due to the spaced arrangement of the beating parts 212, the mite removal device can more easily adapt to surfaces of different materials and shapes. For example, in the uneven parts of a mattress or the gaps of a sofa, the multiple beating parts 212 can all find suitable positions for beating.

[0068] In some embodiments, in combination with Figure 1 and Figure 3 , there are two beating parts 212, and the two beating parts 212 are symmetrically distributed about the center line of the housing assembly 100 in the length direction. This symmetric design layout ensures that when the mite removal device moves, it can evenly cover and beat the surface to be cleaned, guaranteeing the balance of the mite removal effect. At the same time, the two beating parts 212 are arranged along the length direction of the housing assembly 100, so that the coverage range of the beating parts 212 is wider. In this way, when cleaning the surface of the same area, the number of times of moving the mite removal device will be correspondingly reduced, saving time and reducing the physical consumption of the user, and ensuring the use experience.

[0069] In some embodiments, in combination with Figure 1 and Figure 2 , the elastic member 220 wraps at least part of the edge of the mounting plate 211, so that both the upper surface and the lower surface of the mounting plate 211 are in contact with the housing assembly 100 through the elastic member 220. At the same time, it ensures that the elastic member 220 can closely fit on the mounting plate 211, thereby more effectively transmitting force. In addition, since the elastic part wraps the edge of the mounting plate 211, the elastic member 220 also limits the possible lateral movement of the mounting plate 211 to a certain extent, increasing its stability. The elastic member 220, as an intermediate support medium between the mounting plate 211 and the housing assembly 100, can assist the rapid reset of the mounting plate 211 and absorb and disperse the impact and vibration between the mounting plate 211 and the housing assembly 100, protecting the components of the mite removal device.

[0070] At the same time, the elastic member 220 also enables both the upper surface and the lower surface of the mounting plate 211 to be in close contact with the housing assembly 100 through the elastic member 220, so as to prevent the infiltration of air or liquid, improving the sealing performance and durability of the mite removal device.

[0071] Exemplarily, the elastic member 220 can be composed of elastic materials such as rubber, silica gel, spring steel, foam plastic, etc. The specific selection can be determined according to actual needs and is not limited here. In addition, the elastic member 220 can be wrapped around the edge of the mounting plate 211 by injection molding, pasting, snap fitting or screw fixing, etc. The specific selection can be determined according to actual needs and is not limited here.

[0072] In some embodiments, in combination with Figure 1 , the elastic member 220 is elastic foam. Elastic foam is a shock-absorbing, buffering and supporting material that can quickly return to its original shape after being subjected to an external force. At the same time, elastic foam has a low density, weight and good sound absorption and noise reduction performance, ensuring the lightness and use comfort of the mite removal device and guaranteeing a good experience for the user.

[0073] In some embodiments, in combination with Figure 1 andFigure 2 There are two elastic members 220, and the two elastic members 220 are respectively mounted on both ends of the mounting plate 211 along the length direction of the shell assembly 100. The two elastic members 220 provide stable support points for the mounting plate 211, ensuring that the mounting plate 211 maintains the correct position and direction during movement, reducing the possibility of deviation or shaking. At the same time, by adjusting the compression degree of the elastic member 220, the gap between the mounting plate 211 and the shell assembly 100 can be fine-tuned to ensure the smooth movement of the mounting plate 211. In addition, the elastic member 220 is arranged at the end of the mounting plate 211, and no additional space is required to install other supporting structures, which makes the overall structure of the mite removal device more compact, reduces assembly parts, and improves the ease of assembly.

[0074] Exemplarily, the design can be applied in mechanical equipment that requires precise control of component positions and reduction of vibration and noise. For example, in mite removal equipment, it can ensure that the beating assembly 200 remains stable when moving at a preset speed and reduce noise and wear caused by vibration.

[0075] In some embodiments, in combination Figure 2 The slap hammer 210 further includes a fixing portion 213, which is disposed on a side of the mounting plate 211 facing away from the slapping portion 212, and a driving assembly 300 is disposed on the fixing portion 213. The driving assembly 300 is connected to the mounting plate 211 through the fixing portion 213, and is responsible for generating and transmitting force to the slapping portion 212 so that the slapping portion 212 can move. Exemplarily, the driving assembly 300 may include a motor, a transmission mechanism such as a gear, a connecting rod, etc., and may also include a control system and other parts, and each part cooperates to realize the movement of the slap hammer 210.

[0076] Specifically, when the mite removal device needs to work, the driving component 300 receives a signal from the control system. For example, when the user turns on the power and turns on the switch, the driving component 300 starts to work, and the driving force generated by it is transmitted to the flapping part 212 through the fixing part 213 and the mounting plate 211, so that the flapping part 212 performs a flapping action, so that the flapping part 212 can penetrate into the fiber layer of the treated surface and effectively remove impurities such as dust, dandruff and mites.

[0077] In some embodiments, in combination Figure 1 and Figure 2, the fixing part 213 is formed as a fixing groove 2131 with an open top. The driving assembly 300 includes a driving motor 310 and a motor cover plate 320. The driving motor 310 is embedded in the fixing groove 2131. The fixing groove 2131 provides an installation base for the driving motor 310, provides positioning and fixing effects for the driving motor 310, ensures that the driving motor 310 can be stably installed on the beating hammer 210. At the same time, the fixing groove 2131 also provides necessary protection for the driving motor 310, preventing external impacts and impurities such as dust from damaging the driving motor 310.

[0078] The driving motor 310 is in driving cooperation with the mounting plate 211, such as gear transmission, link mechanism, etc., to achieve the transmission of force, and then drive the beating part 212 to move. The motor cover plate 320 covers the fixing groove 2131. The motor cover plate 320 protects the driving motor 310 from external impacts and dust, and at the same time ensures the sealing performance inside the fixing groove 2131, preventing sundries from entering and affecting the normal operation of the driving assembly 300.

[0079] When the beating hammer 210 needs to work, the driving assembly 300 receives a signal from the control system, such as the user powers on and turns on the switch, the driving motor 310 operates, and the power generated by the driving motor 310 is transmitted to the mounting plate 211 through driving cooperation, and then drives the beating part 212 to perform a beating action. During this process, the fixing groove 2131 provides a stable installation environment for the driving motor 310, and the motor cover plate 320 ensures the sealing and safety inside the fixing groove 2131.

[0080] In some embodiments, in combination with Figure 1 and Figure 2 , mounting posts 2132 are further provided on the peripheral side of the fixing part 213. The mounting posts 2132 provide positioning points and support points for the installation of the motor cover plate 320. First mounting holes 2133 are provided on the mounting posts 2132, lifting lugs 321 corresponding to the mounting posts 2132 one by one are provided on the motor cover plate 320, and second mounting holes 322 are formed in the lifting lugs 321. The motor cover plate 320 and the mounting posts 2132 are connected by fasteners passing through the second mounting holes 322 and the first mounting holes 2133 in sequence. Exemplarily, the fasteners can be bolts, nuts, screws, etc., and can be specifically selected according to actual needs, which are not limited here.

[0081] Through the cooperation of the mounting posts 2132 and the lifting lugs 321, and the fixing action of the fasteners, the motor cover plate 320 can be tightly fixed on the fixing part 213, preventing the entry of dust and impurities. At the same time, this design also facilitates subsequent maintenance and replacement work. When it is necessary to disassemble the motor cover plate 320, only the fasteners need to be loosened to complete, and the operation is simple.

[0082] In some embodiments, in combination with Figure 2, There are two mounting columns 2132, and the two mounting columns 2132 are symmetrically arranged on both sides of the drive motor 310 with respect to the center line of the mounting plate 211 in the length direction. The two symmetrically arranged mounting columns 2132 improve the mounting stability of the motor cover 320.

[0083] In some embodiments, in combination with Figure 1 and Figure 2 , the flapping part 212 includes a support platform 2121 and flapping columns 2122. The support platform 2121 is connected to the mounting plate 211. The support platform 2121 is the basis of the flapping part 212 and is responsible for connecting the flapping part 212 to the mounting plate 211 to ensure the power transmission of the drive assembly 300. Exemplarily, the connection manner between the support platform 2121 and the mounting plate 211 can be bolt connection, welding, etc. In addition, the support platform 2121 can also be integrally formed with the mounting plate 211, which can be specifically selected according to actual needs and is not limited here. There are multiple flapping columns 2122, and the flapping columns 2122 are arranged on the side of the support platform 2121 facing away from the mounting plate 211. Adjacent two flapping columns 2122 are arranged at intervals, and the flapping columns 2122 extend along the height direction of the housing assembly 100. In this way, it helps to increase the flapping area and flapping effect, reduce the stress concentration of a single flapping column 2122, and improve the durability of the flapping part 212.

[0084] When the flapping hammer 210 starts to work, the drive assembly 300 drives the support platform 2121 and the flapping columns 2122 to move through the mounting plate 211. Under the support of the support platform 2121, the flapping columns 2122 perform flapping actions along the height direction of the housing assembly 100 at a preset speed. The interval arrangement between the flapping columns 2122 ensures that multiple flapping columns 2122 can simultaneously flap multiple areas of the target object, thereby enhancing the flapping effect and coverage area of the mite removal device.

[0085] In some embodiments, in combination with Figure 1 and Figure 3 , multiple flapping columns 2122 are arranged in an array. Specifically, multiple flapping columns 2122 are arranged in an array according to a certain rule and spacing. When the flapping hammer 210 starts to work, the drive assembly 300 drives the support platform 2121 to move through the mounting plate 211, and the flapping columns 2122 arranged in an array on the support platform 2121 perform flapping actions as the support platform 2121 moves. The array arrangement can ensure that each flapping column 2122 can flap the corresponding area of the target object, thereby realizing the uniform distribution of the flapping force and avoiding the situation of local over-flapping or missed flapping.

[0086] In some embodiments, in combination with Figure 1 and Figure 2, the support platform 2121 is integrally formed with the mounting plate 211. The integrally formed design avoids the connectors between the support platform 2121 and the mounting plate 211, reduces the structural instability caused by the loosening or breakage of the connectors, and at the same time ensures that there is no gap between the support platform 2121 and the mounting plate 211, ensuring the accuracy and movement consistency between the two during the operation of the mite removal device. At the same time, it reduces the friction and wear between components and extends the service life.

[0087] Exemplarily, the materials of the support platform 2121 and the mounting plate 211 can be metal, plastic, composite materials, etc., and can be specifically selected according to actual needs, which are not limited here. In addition, the integral forming process of the support platform 2121 and the mounting plate 211 can adopt forming processes such as injection molding, die casting, forging, etc., and can be specifically selected according to actual needs, which are not limited here.

[0088] In some embodiments, in combination with Figure 1 and Figure 2 , a cavity is provided on the side of the support platform 2121 facing the mounting plate 211. The cavity design reduces the overall weight of the support platform 2121 and improves the flexibility of the device. In addition, the cavity is provided on the side of the support platform 2121 facing the mounting plate 211, that is, the cavity communicates with the installation space 110 of the mite removal device, increasing the capacity of the installation space 110, facilitating the wiring and component installation in the installation space 110, and avoiding the possible interference during the movement of the support platform 2121.

[0089] Exemplarily, the mounting plate 211 can be stamped to form the support platform 2121. Specifically, according to the shape, size and position requirements of the support platform 2121, the corresponding stamping die is designed. The die usually consists of two parts: a punch and a die. The shape of the punch matches the outer contour of the support platform 2121, while the die is used to form the cavity part of the support platform 2121 on the mounting plate 211. Place the mounting plate 211 on the die of the stamping machine and fix its position. Start the stamping machine to make the punch quickly descend and contact the mounting plate 211. Under the strong pressure of the stamping machine, the mounting plate 211 undergoes plastic deformation and forms the support platform 2121 according to the shape of the die. After stamping, the punch disengages from the mounting plate 211, and the mounting plate 211 with the support platform 2121 is formed, and at the same time, a cavity structure is formed on the support platform 2121. The stamping process has the characteristics of high speed, continuity and automation, improving production efficiency, reducing waste generation at the same time, and ensuring the flexibility and high efficiency of the production of the support platform 2121.

[0090] In some embodiments, in combination with Figure 1 and Figure 2, the housing assembly 100 includes an upper shell 120 and a lower shell 130. The upper shell 120 and the lower shell 130 together form a closed or semi-closed space for accommodating and protecting the components within the installation space 110. The lower shell 130 defines an installation groove 132 adapted to the mounting plate 211. The mounting plate 211 is embedded in the installation groove 132. The shape and size of the installation groove 132 match those of the mounting plate 211 to ensure that the mounting plate 211 is embedded therein. This embedding method provides stable support for the mounting plate 211 and also helps to reduce the relative movement between the mounting plate 211 and the lower shell 130, improving the stability of the overall structure. An extension opening 131 is formed on the bottom wall of the installation groove 132 for the flapping part 212 to extend from the installation space 110 to the outside. The upper shell 120 is provided with an abutting part 121. The abutting part 121 and the bottom wall of the installation groove 132 jointly clamp the elastic member 220. Specifically, when the housing assembly 100 is assembled, the abutting part 121 will jointly clamp the elastic member 220 with the bottom wall of the installation groove 132. The elastic member 220 is jointly clamped by the abutting part 121 of the upper shell 120 and the bottom wall of the installation groove 132 of the lower shell 130 to form a stable support structure. At the same time, the elastic member 220 can also provide the functions of quick reset and buffering for the mounting plate 211, improving the working efficiency of the mounting plate 211.

[0091] The arrangement of the upper shell 120 and the lower shell 130 in the housing assembly 100 together provides a stable and safe working environment for the components within the installation space 110. The installation groove 132 provides stable support for the mounting plate 211 and also helps to reduce the relative movement between the mounting plate 211 and the lower shell 130, improving the stability of the overall structure. When the housing assembly 100 is assembled, the abutting part 121 will jointly clamp the elastic member 220 with the bottom wall of the installation groove 132. The elastic member 220 is jointly clamped by the abutting part 121 of the upper shell 120 and the bottom wall of the installation groove 132 of the lower shell 130 to form a stable support structure. At the same time, the elastic member 220 can also provide the functions of quick reset and buffering for the mounting plate 211, improving the working efficiency of the mounting plate 211.

[0092] Exemplarily, the materials of the upper shell 120 and the lower shell 130 can be plastic, metal, composite materials, etc. The appearance texture of the product can also be improved through different surface treatment processes. The specific materials can be selected according to actual needs and are not limited here.

[0093] In this specification, the embodiments or implementation manners are described in a progressive manner. Each embodiment focuses on the differences from other embodiments. The same or similar parts among the embodiments can be referred to each other.

[0094] It should be noted that the embodiments referred to in the specification, such as "an embodiment", "embodiments", "exemplary embodiments", "some embodiments", etc., may include specific features, structures or characteristics, but not necessarily every embodiment includes such specific features, structures or characteristics. In addition, such phrases do not necessarily refer to the same embodiment. Moreover, when combining a specific feature, structure or characteristic with an embodiment, it is within the knowledge of those skilled in the art to implement such a feature, structure or characteristic in combination with other embodiments, whether explicitly or implicitly described.

[0095] Generally speaking, terms should be understood at least in part by their use in context. For example, at least in part depending on the context, the term "one or more" used in the text can be used to describe any feature, structure or characteristic in the sense of a single number, or can be used to describe a combination of features, structures or characteristics in the sense of a plural number. Similarly, at least in part depending on the context, terms such as "a" or "" can also be understood to convey a singular usage or a plural usage.

[0096] It should be easily understood that the terms "on", "above", and "over" in this disclosure should be interpreted in the broadest manner, so that "on" means "directly on something", and also includes the meaning of "on something" with intermediate features or layers therebetween, and "above" or "over" includes the meaning of "above or over something", and can also include the meaning of "above or over something" without intermediate features or layers therebetween (i.e., directly on something).

[0097] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A mite removal device, characterized in that: include: A housing assembly (100) defines an installation space (110), and a bottom wall of the housing assembly (100) is provided with a protruding opening (131) communicating with the installation space (110); A beating assembly (200) comprises a beating hammer (210) and an elastic member (220), wherein the beating hammer (210) comprises a mounting plate (211) and a beating portion (212), wherein the mounting plate (211) is movably arranged in the mounting space (110) along the height direction of the housing assembly (100), the elastic member (220) is arranged between the mounting plate (211) and the housing assembly (100), the elastic member (220) is configured to apply a force to the mounting plate (211) in a direction opposite to the movement direction of the mounting plate (211), and the beating portion (212) is connected to the mounting plate (211) and extends out from the extension opening (131); A driving assembly (300) is drivingly connected to the mounting plate (211) to drive the mounting plate (211) to reciprocate along a height direction of the housing assembly (100).

2. The mite removal device according to claim 1, characterized in that: There are a plurality of the flapping parts (212), and the plurality of the flapping parts (212) are arranged at intervals on the mounting plate (211), and there are a plurality of the extension openings (131) corresponding one-to-one to the flapping parts (212).

3. The mite removal device according to claim 2, characterized in that: There are two flapping parts (212), and the two flapping parts (212) are symmetrically distributed about the center line of the shell assembly (100) along the length direction.

4. The mite removal device according to claim 1, characterized in that: The elastic member (220) wraps at least a portion of the edge of the mounting plate (211), so that both the upper surface and the lower surface of the mounting plate (211) are in contact with the housing assembly (100) through the elastic member (220).

5. The mite removal device according to claim 4, characterized in that: There are two elastic members (220), and the two elastic members (220) are respectively sleeved on two ends of the mounting plate (211) along the length direction of the housing assembly (100).

6. The mite removal device according to claim 5, characterized in that: The elastic member (220) is elastic foam.

7. The mite removal device according to any one of claims 1 to 6, characterized in that: The beating hammer (210) further comprises: a fixing portion (213), wherein the fixing portion (213) is arranged on a side of the mounting plate (211) facing away from the beating portion (212), and the driving assembly (300) is arranged on the fixing portion (213).

8. The mite removal device according to claim 7, characterized in that: The fixing portion (213) is formed as a fixing groove (2131) with an open top, and the driving assembly (300) comprises a driving motor (310) and a motor cover plate (320), wherein the driving motor (310) is embedded in the fixing groove (2131) and is drivingly matched with the mounting plate (211), and the motor cover plate (320) covers the fixing groove (2131).

9. The mite removal device according to claim 8, characterized in that: A mounting post (2132) is also provided on the peripheral side of the fixing portion (213), and a first mounting hole (2133) is provided on the mounting post (2132). The motor cover plate (320) is provided with a lifting ear (321) corresponding to the mounting column (2132) one by one, and the lifting ear (321) is provided with a second mounting hole (322). The motor cover plate (320) and the mounting column (2132) are connected by fasteners passing through the second mounting hole (322) and the first mounting hole (2133) in sequence.

10. The mite removal device according to any one of claims 1 to 6, characterized in that: The beating portion (212) comprises: a support platform (2121) and a beating column (2122); the support platform (2121) is connected to the mounting plate (211); there are a plurality of beating columns (2122); the beating columns (2122) are arranged on a side of the support platform (2121) facing away from the mounting plate (211); two adjacent beating columns (2122) are arranged at intervals; and the beating columns (2122) extend along the height direction of the shell assembly (100).

11. The mite removal device according to claim 10, characterized in that: The plurality of beating posts (2122) are arranged in an array.

12. The mite removal device according to claim 11, characterized in that: The support platform (2121) and the mounting plate (211) are integrally formed.

13. The mite removal device according to claim 12, characterized in that: A cavity is provided on a side of the support platform (2121) facing the mounting plate (211).

14. The mite removal device according to any one of claims 1 to 6, characterized in that: The housing assembly (100) comprises: an upper shell (120) and a lower shell (130); the lower shell (130) defines a mounting groove (132) adapted to the mounting plate (211); the extension opening (131) is formed on the bottom wall of the mounting groove (132); the mounting plate (211) is embedded in the mounting groove (132); the upper shell (120) is provided with an abutment portion (121); the abutment portion (121) and the bottom wall of the mounting groove (132) jointly clamp the elastic member (220).