Multi-air-inlet multifunctional acarus killing machine with dust cup in butt joint with hose

By designing a multi-air inlet mite removal machine, using an adsorption base, dust cup and hose assembly, combined with a motor and beating assembly, the problems of cleaning in a small space and clogging of the filter assembly are solved, achieving an efficient and convenient mite removal effect.

CN223336034UActive Publication Date: 2025-09-16SUZHOU WASSER INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422622914.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-09-16
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

Existing mite removal machines are not suitable for cleaning small spaces, and the dust cup filter assembly is easily clogged and needs to be frequently disassembled and cleaned, making it inconvenient to clear out the contents.

Method used

A multifunctional mite removal machine with multiple air inlets and a dust cup docking hose has been designed. It adopts an adsorption base, dust cup, hose assembly and motor assembly to achieve multi-directional airflow adsorption and circulating airflow design. Combined with a flapping component and a mite removal and sterilization lamp, it enhances the efficiency and convenience of mite removal.

Benefits of technology

It achieves effective cleaning of small spaces, reduces the frequency of clogging of filter components, improves mite removal efficiency and ease of use, and enhances the cleaning range and safety of the mite removal machine.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-air-inlet multifunctional acarus killing machine with a dust cup in butt joint with a hose, which comprises an adsorption base and a dust cup, the adsorption base comprises a lower shell and an upper shell assembled on the lower shell, the lower shell is provided with an air collecting port, the top of the air collecting port is in butt joint with the bottom of an air inlet assembly, and the top of the air inlet assembly is arranged on a positioning hole of the upper shell in a penetrating manner; a side air inlet of the dust cup is hermetically butted with the top of the air inlet assembly; the hose assembly comprises a hose body, a connecting piece and a gas collecting piece, the connecting piece and the gas collecting piece are in butt joint with the ends of the hose body respectively, and the connecting piece is detachably assembled on the mounting opening in the bottom of the dust cup; and a main air outlet is formed in the motor assembly. The dust cup can solve the problems that an existing mite killing machine cannot be suitable for cleaning narrow spaces such as the folding positions and gaps of objects such as bedside sides, sofas, wardrobes, internal clothes (brush accessories) and the like, a filtering assembly on a dust cup of the mite killing machine is frequently blocked and needs to be frequently disassembled and cleaned, and contents are inconvenient to clean.
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Description

Technical Field

[0001] The utility model relates to the technical field of mite removal machines, in particular to a multifunctional mite removal machine with multiple air inlets and a dust cup connected to a hose. Background Art

[0002] Mite removal machines are primarily used to clean and remove mites from cotton and plush items that come into contact with human skin, such as bedding, sofas, carpets, clothing, and any other textile items. Existing mite removal machines are mostly handheld. By placing the machine in contact with the object and pushing it, the suction port at the bottom sucks out and collects the mites and dust on the object. However, these machines are not suitable for cleaning confined spaces, such as folds and crevices. Furthermore, the filter assembly in the dust cup of the mite removal machine frequently clogs, requiring frequent removal and cleaning, which is inconvenient to remove. Utility Model Content

[0003] The purpose of the utility model is to solve the problems that the existing mite removal machines are not suitable for cleaning small spaces, such as bedside, sofa, wardrobe and folds and gaps of objects such as internal clothes (brush accessories), and the filter components on the dust cup of the mite removal machine are frequently clogged and need to be frequently disassembled and cleaned, and it is inconvenient to clear out the contents. A multi-functional mite removal machine with multiple air inlets and a dust cup docking hose is provided.

[0004] In order to achieve the above-mentioned purpose, the present invention adopts the following technical solution: a multifunctional mite removal machine with multiple air inlets and a dust cup connected to a hose, comprising:

[0005] The adsorption base includes a lower shell and an upper shell assembled on the lower shell, the lower shell is provided with an air collecting port, the top of the air collecting port is connected to the bottom of the air inlet assembly, and the top of the air inlet assembly is passed through the positioning hole of the upper shell;

[0006] The dust cup has a side air inlet sealedly connected to the top of the air inlet assembly;

[0007] A hose assembly includes a hose body, a connector and an air collecting member connected to the ends of the hose body, wherein the connector is detachably mounted on the mounting opening at the bottom of the dust cup;

[0008] The motor assembly is provided with a main air outlet.

[0009] As a further description of the above technical solution:

[0010] The air collecting port is arranged at the top of the air collecting hood of the lower shell, and the size of the air collecting hood gradually decreases from bottom to top. A supporting partition is positioned inside the air collecting hood. The bottom of the air inlet assembly is sealed and connected to the surface of the air collecting hood. The air collecting port and the air inlet assembly form an S-shaped air duct structure.

[0011] As a further description of the above technical solution:

[0012] An air inlet spring is positioned on one side of the side air inlet of the dust cup, and the air inlet spring blocks the side air inlet of the dust cup. A filter assembly is positioned on the top of the inner wall of the dust cup, and a dust shield baffle is provided on the inner wall of the dust cup at the rear side of the side air inlet.

[0013] As a further description of the above technical solution:

[0014] The HEPA assembly and the motor are arranged in sequence inside the motor assembly along the air flow direction. A side air outlet is provided on the motor assembly housing facing the adsorption base. A docking port that is sealed and docked with the side air outlet is provided on the upper shell. An air outlet mesh hole connecting the docking port and the side air outlet is provided at the bottom of the lower shell.

[0015] As a further description of the above technical solution:

[0016] The positioning hole and the docking port are arranged on the inner concave plate in the center of the upper shell, the dust cup and the motor assembly are embedded and positioned on the inner concave plate, and a C-shaped handle is sleeved at the connection between the dust cup and the motor assembly, and the bottom of the C-shaped handle is positioned on the rear side of the adsorption base.

[0017] As a further description of the above technical solution:

[0018] The hose body is sealed and screwed on the internal threads of the connecting piece and the gas collecting piece. The connecting piece is inserted, clamped or screwed on the installation port. A waist-shaped gas collecting nozzle is extended outside the gas collecting piece.

[0019] As a further description of the above technical solution:

[0020] Several first mounting seats are set at the front end of the lower shell, and a flapping assembly is positioned on the first mounting seat. The flapping assembly includes a vibrator embedded in the first mounting seat, a control panel associated with several of the vibrators, and a base connected to the bottom of the vibrator and extending to the outside of the lower shell, and several flapping heads are set on the bottom surface of the base.

[0021] As a further description of the above technical solution:

[0022] A second mounting seat is provided at the rear end of the lower shell, and a mite removal and sterilization lamp is positioned in the second mounting seat. The power supply end on the side of the mite removal and sterilization lamp extends upward from the connecting hole at the top of the side of the second mounting seat and connects to the controller in the adsorption base. A light-transmitting partition is provided at the bottom of the second mounting seat, and a green light dust-displaying lamp is also provided at the front end of the adsorption base.

[0023] As a further description of the above technical solution:

[0024] A third mounting seat and a fourth mounting seat are respectively provided at the front and rear sides of the corners of the lower shell; a touch switch wheel frame is elastically connected to the third mounting seat for lifting and lowering, and a moving wheel is connected to the fourth mounting seat for rotation via a connecting shaft.

[0025] As a further description of the above technical solution:

[0026] The touch switch wheel frame includes a lifting seat that is lifted and slidably arranged in the third mounting seat, and a roller that is rotatably connected to the bottom of the lifting seat through a connecting shaft. An elastic member is arranged between the lifting seat and the third mounting seat. A guide rod is further extended from the top of the lifting seat. The guide rod is inserted into the through hole at the top of the third mounting seat, and a limit plate is arranged on the top of the guide rod.

[0027] In summary, due to the adoption of the above technical solution, the present invention has the following advantages compared with the prior art:

[0028] Beneficial effects:

[0029] 1. The mite removal machine of the present invention is based on a dust cup air inlet structure composed of an air collecting port and an air inlet assembly on the adsorption base. While achieving mite removal and dust collection, the hose assembly that can be detachably connected to the bottom of the dust cup can be used to remove mites in narrow spaces and gaps by inserting the hose, thus meeting the functional use requirements of multiple scenarios. Compared with the existing dust cup side air inlet design, the above-mentioned dust cup side tangential air inlet and bottom axial air inlet design can sweep the surface of the internal filter assembly through airflow in multiple directions, thereby reducing the clogging rate and cleaning frequency of the filter holes thereon. By removing the hose assembly, the dust cup can be opened and the contents discharged. After that, the installation port can be sealed through other accessories, and the mite removal machine can be placed for easy cleaning and use.

[0030] 2. The clean airflow discharged by the motor assembly flows through the adsorption base and flows out from the outside of its bottom, showering the area of ​​the object to be removed from the outside of the air collection hood so that it is blown into the air collection port. The circulating airflow design formed thereby increases the air collection and cleaning range of the mite removal machine, thereby improving its use efficiency.

[0031] 3. When the mite removal machine is in use, the beating component can be operated synchronously. The vibrator drives the base to vibrate, and the beating head is used to beat the object to be removed, so as to knock out the mites and dust, so as to facilitate efficient adsorption of the air collection port. The design of the mite removal and sterilization lamp at the bottom of the mite removal machine can kill the mites and bacteria on the object to be removed by irradiating light, so as to facilitate subsequent suction, thereby improving the efficiency and degree of mite removal.

[0032] 4. The mite removal machine is assisted in its movement by the trigger switch wheel frame and moving wheels, reducing its pushing resistance. During use, the trigger switch wheel frame can be elastically raised and lowered within the third mounting seat by the lifting seat, allowing the height of the roller's adsorption base to be adjusted. This, combined with the pressing of the mite removal machine, adjusts the distance between the air collection hood and the object surface, achieving a more powerful airflow adsorption and mite removal effect. This structure also has a cushioning and shock-absorbing effect, reducing the impact force transmitted to the user's hands and improving user comfort.

[0033] 5. A touch switch associated with the mite removal and sterilization lamp is also provided in the third mounting seat, so that when the mite removal is in use, the touch switch wheel frame is pressed in and the touch switch is triggered to run the mite removal and sterilization lamp, and when the mite removal machine is lifted and the power is turned off, the mite removal and sterilization lamp is turned off, thereby achieving safe and efficient ultraviolet mite removal and cleaning. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.

[0035] Figure 1 This is a schematic diagram of the structure of a multi-function mite removal machine with multiple air inlets and a dust cup docking hose. Figure 1 .

[0036] Figure 2 This is a schematic diagram of the structure of a multi-inlet multi-function mite removal machine with a dust cup and a hose when the hose assembly is not assembled. Figure 2 .

[0037] Figure 3 This is a cross-sectional view of a multi-functional mite removal machine with multiple air inlets and a dust cup docking hose (the adsorption base is hidden).

[0038] Figure 4 This is a disassembly diagram of a multi-function mite removal machine with multiple air inlets and a dust cup docking hose (hose assembly is hidden).

[0039] Figure 5 for Figure 4 Enlarged view of point A in the middle.

[0040] Figure 6 This is a structural schematic diagram of a touch switch wheel frame in a multi-function mite removal machine with multiple air inlets and a dust cup docking hose.

[0041] Legend:

[0042] 1. Adsorption base; 11. Lower housing; 111. Air collection port; 112. Air collection cover; 113. First mounting base; 114. Second mounting base; 115. Connecting hole; 116. Third mounting base; 117. Fourth mounting base; 118. Air outlet mesh; 12. Upper housing; 121. Positioning hole; 122. Inner concave plate; 123. Docking port; 13. Air inlet assembly; 14. Touch switch wheel frame; 141. Lifting base; 142. Roller; 143. Guide rod; 144. Limit plate; 15. Moving wheel; 16. Green light dust indicator ; 2. Dust cup; 21. Air inlet shrapnel; 22. Filter assembly; 23. Mounting port; 24. Dust shield; 3. Motor assembly; 31. HEPA assembly; 32. Motor; 33. Main air outlet; 34. Side air outlet; 4. C-type handle; 5. Hose assembly; 51. Hose body; 52. Connector; 53. Air collecting part; 54. Internal thread; 55. Air collecting nozzle; 6. Flapping assembly; 61. Control panel; 62. Vibrator; 63. Base; 631. Flapping head; 7. Mite removal and sterilization lamp; 71. Power supply end; 72. Transparent partition. DETAILED DESCRIPTION

[0043] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0044] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.

[0045] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are also within the scope of protection of the present invention.

[0046] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings.

[0047] In the description of the embodiments of the present invention, it should be noted that the terms "upper" and "inner" etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the product of the present invention is usually placed when in use. These are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on the present invention.

[0048] It should also be noted that, in the description of this utility model, unless otherwise expressly specified or limited, the terms "disposed," "installed," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; they may refer to direct connections, indirect connections through an intermediate medium, or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0049] Example 1:

[0050] See also Figure 1-4 The utility model provides a technical solution: a multifunctional mite removal machine with multiple air inlets and a dust cup docking hose, comprising:

[0051] The adsorption base 1 includes a lower shell 11 and an upper shell 12 assembled on the lower shell 11. The lower shell 11 is provided with an air collecting port 111. The top of the air collecting port 111 is connected to the bottom of the air inlet assembly 13. The top of the air inlet assembly 13 is passed through the positioning hole 121 of the upper shell 12.

[0052] The dust cup 2, whose side air inlet is sealed and docked with the top of the air inlet assembly 13;

[0053] The hose assembly 5 includes a hose body 51, a connector 52 and an air collector 53 that are respectively connected to the ends of the hose body 51. The connector 52 is detachably mounted on the mounting opening 23 at the bottom of the dust cup 2. In this embodiment, the mounting opening 23 can be sealed with other accessories.

[0054] The motor assembly 3 is provided with a main air outlet 33 .

[0055] The utility model is based on a dust cup air inlet structure composed of an air collecting port and an air inlet assembly on the adsorption base. While achieving dust removal and dust collection, the utility model can also achieve mite removal by inserting the hose into narrow spaces and gaps through the detachable and docked hose assembly at the bottom of the dust cup, thus meeting the functional use requirements of multiple scenarios. Compared with the existing dust cup side air inlet design, the above-mentioned dust cup side tangential air inlet and bottom axial air inlet design can sweep the surface of the internal filter assembly through airflow in multiple directions, thereby reducing the clogging rate and cleaning frequency of the filter holes thereon. By removing the hose assembly, the dust cup can be opened and the contents discharged. After that, the installation port can be sealed through other accessories, and the mite remover can be placed for easy cleaning and use.

[0056] The air collection port 111 is located at the top of the air collection cover 112 of the lower housing 11. The air collection cover 112 gradually decreases in size from bottom to top. A supporting baffle is positioned within the air collection cover 112. The bottom of the air inlet assembly 13 is sealed and docked with the surface of the air collection cover 112. The air collection port 111 and the air inlet assembly 13 form an S-shaped air duct structure. This design improves air collection and mite removal efficiency and reduces suction loss.

[0057] An air inlet spring piece 21 is positioned on one side of the side air inlet of the dust cup 2. The air inlet spring piece 21 blocks the side air inlet of the dust cup 2. A filter assembly 22 is positioned on the top of the inner wall of the dust cup 2. A dust baffle 24 is provided on the inner wall of the dust cup 2 at the rear side of the side air inlet. For the dust cup 2 that is positioned horizontally on this mite removal machine, in order to prevent the mites and dust impurities separated by the filter assembly 22 from falling into the air inlet again after rotating one circle when the dust cup 2 is used in a tangential air inlet design, thereby affecting the collection of dirt, this dust cup 2 is provided with a dust baffle 24 at the rear side of the air inlet, so that the airflow guided by the air inlet spring piece 21 and rotated to the top of the filter assembly 22 is filtered, and the filtered dirt falls onto the inner wall of the dust cup 2 and is intercepted by the dust baffle 24, so that it does not continue to move circumferentially with the airflow.

[0058] The motor assembly 3 includes a HEPA assembly 31 and a motor 32 arranged in sequence along the airflow direction.

[0059] The positioning hole 121 and the docking port 123 are provided on the inner concave plate 122 in the center of the upper shell 12. The dust cup 2 and the motor assembly 3 are embedded and positioned on the inner concave plate 122. The connection between the dust cup 2 and the motor assembly 3 is sleeved with a C-shaped handle 4, and the bottom of the C-shaped handle 4 is positioned on the rear side of the adsorption base 1. The dust cup 2 is laterally snap-fitted and assembled on the side of the C-shaped handle 4, allowing for disassembly and discharge of the contents. The dust cup 2 and the motor assembly 3 are positioned by the C-shaped handle 4, and the above structure is embedded and installed on the inner concave plate 122 to prevent the dust cup 2 and the motor assembly 3 from loosening during use, which affects the use. The C-shaped handle 4 is also adsorbed on the base 1 for docking, further improving the installation and operation stability of the above structure.

[0060] The hose body 51 is threadedly and sealingly connected to the internal threads 54 of the connector 52 and the air collecting member 53. The connector 52 is inserted, snapped, or threadedly connected to the mounting opening 23. A waist-shaped air collecting nozzle 55 extends from the outer side of the air collecting member 53. The hose body 51 is a foldable hose. Its threaded connection with the internal threads 54 improves the sealing performance of the hose assembly 5. The hose assembly 5 is easy to assemble and disassemble, and has a stable seal. The waist-shaped air collecting nozzle 55 also improves the efficiency of dust removal and mite collection in confined spaces.

[0061] The working principle of a multi-functional mite removal machine with multiple air inlets and a dust cup docking hose in this embodiment includes: when in use, the motor 32 forms a negative pressure environment inside the mite removal machine, and the mite removal machine pushes on the clean object to be removed, so that the mites and dust on it are sucked into the air collection port 111 along with the air flow around the air collection hood 112, and enter the dust cup 2 through the S-shaped air duct structure. The air inlet shrapnel 21 is deformed inward due to the negative pressure inside the dust cup 2, and the side air inlet is opened. The air flow is guided through the side air inlet and the outside of the air inlet shrapnel 21, and rotates along the surface of the filter component 22. The filter component 22 filters the mites and dust in the air flow, filters them out and drops them to the inner wall of the dust cup 2, and is blocked by the dust baffle 24 to achieve dirt collection. The clean air flow is filtered for the second time by the HEPA component 31 and discharged from the mite removal machine through the main air outlet 33. For the narrow area of ​​the object to be removed, mites and dust are adsorbed through the air collecting nozzle 55, the air flow flows through the hose assembly 5, and flows axially along the inner cavity of the dust cup 2, moves to the filter assembly 22, spreads along its surface and filters the mites and dust and flushes the filter cover thereon.

[0062] Example 2:

[0063] See also Figure 2-4 On the basis of the above-mentioned embodiment 1, preferably, a side air outlet 34 is provided on the housing of the motor assembly 3 facing the adsorption base 1, a docking port 123 is provided on the upper shell 12 for sealingly docking with the side air outlet 34, and an air outlet mesh hole 118 is provided at the bottom of the lower shell 11 for connecting the docking port 123 and the side air outlet 34.

[0064] The working principle of the multi-functional mite removal machine with multiple air inlets and a dust cup docking hose in this embodiment includes: the clean airflow discharged by the motor assembly 3 flows through the adsorption base 1 and flows out from the outside of its bottom, and the area of ​​the object to be removed from the outside of the air collection cover 112 is air-showered so that it is blown into the air collection port 111. The circulating airflow design thus formed increases the air collection and mite removal cleaning range of the mite removal machine, thereby improving its usage efficiency.

[0065] Example 3:

[0066] See also Figure 2 、 45. On the basis of the above-mentioned embodiment 1, preferably, a plurality of first mounting seats 113 are provided at the front end of the lower shell 11, and a beating assembly 6 is positioned on the first mounting seat 113. The beating assembly 6 includes a vibrator 62 embedded in and positioned in the first mounting seat 113, a control panel 61 associated with the plurality of vibrators 62, and a base 63 connected to the bottom of the vibrator 62 and extending to the outside of the lower shell 11, and a plurality of beating heads 631 are provided on the bottom surface of the base 63.

[0067] The working principle of the multifunctional mite removal machine with multiple air inlets and a dust cup docking hose of this embodiment includes: when the mite removal machine is in use, the beating component 6 can be operated synchronously, the vibrator 62 drives the base 63 to vibrate, and the beating head 631 is used to beat the object to be removed, so as to beat out the mites and dust for efficient adsorption by the air collection port 111, thereby improving the efficiency and degree of mite removal.

[0068] Example 4:

[0069] See also Figure 2 、 4 Based on the above-mentioned embodiment 1, preferably, a second mounting seat 114 is provided at the rear end of the lower housing 11. A mite removal and sterilization lamp 7 is positioned within the second mounting seat 114. A power supply terminal 71 on the side of the mite removal and sterilization lamp 7 extends upward from a connection hole 115 at the top side of the second mounting seat 114 and connects to the controller within the adsorption base 1. A light-transmitting partition 72 is provided at the bottom of the second mounting seat 114. The mite removal and sterilization lamp 7 can be an ultraviolet sterilization lamp or other lamp capable of emitting light with a sterilizing effect. A green light dust display lamp 16 is also provided at the front end of the adsorption base 1 to provide illumination during mite removal and vacuuming.

[0070] The working principle of the multifunctional mite removal machine with multiple air inlets and a dust cup docking hose of this embodiment includes: the design of the mite removal and sterilization lamp 7 at the bottom of the mite removal machine can kill the mites and bacteria on the objects to be removed by irradiating light, so as to facilitate subsequent suction.

[0071] Embodiment 5:

[0072] See also Figure 2 、 4 6. Based on the above embodiment 1, preferably, a third mounting seat 116 and a fourth mounting seat 117 are respectively provided at the front and rear corners of the lower shell 11, and the third mounting seat 116 is elastically connected to the touch switch wheel frame 14 for lifting and lowering, and the fourth mounting seat 117 is connected to the moving wheel 15 through a connecting shaft.

[0073] The touch switch wheel frame 14 includes a lifting seat 141 that is lifted and slidably arranged in the third mounting seat 116, and a roller 142 that is rotatably connected to the bottom of the lifting seat 141 through a coupling. An elastic member is provided between the lifting seat 141 and the third mounting seat 116. A guide rod 143 extends from the top of the lifting seat 141. The guide rod 143 is inserted into the through hole at the top of the third mounting seat 116, and a limit plate 144 is provided on the top of the guide rod 143.

[0074] Among them, the ultraviolet mite removal and sterilization lamp 7 in embodiment four can be associated with the touch switch in the third mounting seat 116, so that when the mite removal machine contacts the surface of the object to be cleaned, the touch switch wheel frame 14 is pressed in, and the touch switch is pressed, so that the ultraviolet mite removal and sterilization lamp 7 is lit to remove mites; when the mite removal machine is lifted and closed, the ultraviolet lamp is extinguished, thereby realizing efficient and safe ultraviolet mite removal.

[0075] The operating principle of this embodiment of a multi-functional mite removal device with multiple air inlets and a dust cup docking hose is as follows: the mite removal device is assisted in movement by a trigger switch wheel frame 14 and a movable wheel 15, thereby reducing the pushing resistance. During use, the trigger switch wheel frame 14 can be elastically raised and lowered within the third mounting seat 116 via the lifting seat 141, thereby adjusting the extension height of the adsorption base 1 of the roller 142. This, in conjunction with the pressing of the mite removal device, adjusts the distance between the air collection hood 112 and the surface of the object, thereby achieving a more powerful airflow adsorption and mite removal effect. This structure also has a cushioning and shock-absorbing effect, reducing the impact force transmitted to the user's hands and improving user comfort.

[0076] In summary, due to the adoption of the above technical solution, the multifunctional mite removal machine with multiple air inlets and a dust cup docking hose of this embodiment has the following beneficial effects compared with the prior art:

[0077] 1. The mite removal machine of the present invention is based on a dust cup air inlet structure composed of an air collecting port and an air inlet assembly on the adsorption base. While achieving mite removal and dust collection, the hose assembly that can be detachably connected to the bottom of the dust cup can be used to remove mites in narrow spaces and gaps by inserting the hose, thus meeting the functional use requirements of multiple scenarios. Compared with the existing dust cup side air inlet design, the above-mentioned dust cup side tangential air inlet and bottom axial air inlet design can sweep the surface of the internal filter assembly through airflow in multiple directions, thereby reducing the clogging rate and cleaning frequency of the filter holes thereon. By removing the hose assembly, the dust cup can be opened and the contents discharged. After that, the installation port can be sealed through other accessories, and the mite removal machine can be placed for easy cleaning and use.

[0078] 2. The clean airflow discharged by the motor assembly flows through the adsorption base and flows out from the outside of its bottom, showering the area of ​​the object to be removed from the outside of the air collection hood so that it is blown into the air collection port. The circulating airflow design formed thereby increases the air collection and cleaning range of the mite removal machine, thereby improving its use efficiency.

[0079] 3. When the mite removal machine is in use, the beating component can be operated synchronously. The vibrator drives the base to vibrate, and the beating head is used to beat the object to be removed, so as to knock out the mites and dust, so as to facilitate efficient adsorption of the air collection port. The design of the mite removal and sterilization lamp at the bottom of the mite removal machine can kill the mites and bacteria on the object to be removed by irradiating light, so as to facilitate subsequent suction, thereby improving the efficiency and degree of mite removal.

[0080] 4. The mite removal machine is assisted in its movement by the trigger switch wheel frame and moving wheels, reducing its pushing resistance. During use, the trigger switch wheel frame can be elastically raised and lowered within the third mounting seat by the lifting seat, allowing the height of the roller's adsorption base to be adjusted. This, combined with the pressing of the mite removal machine, adjusts the distance between the air collection hood and the object surface, achieving a more powerful airflow adsorption and mite removal effect. This structure also has a cushioning and shock-absorbing effect, reducing the impact force transmitted to the user's hands and improving user comfort.

[0081] 5. A touch switch associated with the mite removal and sterilization lamp is also provided in the third mounting seat, so that when the mite removal is in use, the touch switch wheel frame is pressed in and the touch switch is triggered to run the mite removal and sterilization lamp, and when the mite removal machine is lifted and the power is turned off, the mite removal and sterilization lamp is turned off, thereby achieving safe and efficient ultraviolet mite removal and cleaning.

[0082] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A multifunctional mite removal machine with multiple air inlets and a dust cup docking hose, characterized in that: include: The adsorption base includes a lower shell and an upper shell assembled on the lower shell, the lower shell is provided with an air collecting port, the top of the air collecting port is connected to the bottom of the air inlet assembly, and the top of the air inlet assembly is passed through the positioning hole of the upper shell; The dust cup has a side air inlet sealedly connected to the top of the air inlet assembly; A hose assembly includes a hose body, a connector and an air collecting member connected to the ends of the hose body, wherein the connector is detachably mounted on the mounting opening at the bottom of the dust cup; The motor assembly is provided with a main air outlet.

2. The multifunctional mite removal machine with multiple air inlets and a dust cup docking hose according to claim 1 is characterized in that: The air collecting port is arranged at the top of the air collecting hood of the lower shell, and the size of the air collecting hood gradually decreases from bottom to top. A supporting partition is positioned inside the air collecting hood. The bottom of the air inlet assembly is sealed and connected to the surface of the air collecting hood. The air collecting port and the air inlet assembly form an S-shaped air duct structure.

3. The multifunctional mite removal machine with multiple air inlets and a dust cup docking hose according to claim 1 is characterized in that: An air inlet spring is positioned on one side of the side air inlet of the dust cup, and the air inlet spring blocks the side air inlet of the dust cup. A filter assembly is positioned on the top of the inner wall of the dust cup, and a dust shield baffle is provided on the inner wall of the dust cup at the rear side of the side air inlet.

4. The multifunctional mite removal machine with multiple air inlets and a dust cup docking hose according to claim 1 is characterized in that: The HEPA assembly and the motor are arranged in sequence inside the motor assembly along the air flow direction. A side air outlet is provided on the motor assembly housing facing the adsorption base. A docking port that is sealed and docked with the side air outlet is provided on the upper shell. An air outlet mesh hole connecting the docking port and the side air outlet is provided at the bottom of the lower shell.

5. The multifunctional mite removal machine with multiple air inlets and a dust cup docking hose according to claim 4 is characterized in that: The positioning hole and the docking port are arranged on the inner concave plate in the center of the upper shell, the dust cup and the motor assembly are embedded and positioned on the inner concave plate, and a C-shaped handle is sleeved at the connection between the dust cup and the motor assembly, and the bottom of the C-shaped handle is positioned on the rear side of the adsorption base.

6. The multifunctional mite removal machine with multiple air inlets and a dust cup docking hose according to claim 1, characterized in that: The hose body is sealed and screwed on the internal threads of the connecting piece and the gas collecting piece. The connecting piece is inserted, clamped or screwed on the installation port. A waist-shaped gas collecting nozzle is extended outside the gas collecting piece.

7. The multifunctional mite removal machine with multiple air inlets and a dust cup docking hose according to claim 1, characterized in that: Several first mounting seats are set at the front end of the lower shell, and a flapping assembly is positioned on the first mounting seat. The flapping assembly includes a vibrator embedded in the first mounting seat, a control panel associated with several of the vibrators, and a base connected to the bottom of the vibrator and extending to the outside of the lower shell, and several flapping heads are set on the bottom surface of the base.

8. The multifunctional mite removal machine with multiple air inlets and a dust cup docking hose according to claim 1, characterized in that: A second mounting seat is provided at the rear end of the lower shell, and a mite removal and sterilization lamp is positioned in the second mounting seat. The power supply end on the side of the mite removal and sterilization lamp extends upward from the connecting hole at the top of the side of the second mounting seat and connects to the controller in the adsorption base. A light-transmitting partition is provided at the bottom of the second mounting seat, and a green light dust-displaying lamp is also provided at the front end of the adsorption base.

9. The multifunctional mite removal machine with multiple air inlets and a dust cup docking hose according to claim 1, characterized in that: A third mounting seat and a fourth mounting seat are respectively provided at the front and rear sides of the corners of the lower shell; a touch switch wheel frame is elastically connected to the third mounting seat for lifting and lowering, and a moving wheel is connected to the fourth mounting seat for rotation via a connecting shaft.

10. The multifunctional mite removal machine with multiple air inlets and a dust cup docking hose according to claim 9, characterized in that: The touch switch wheel frame includes a lifting seat that is lifted and slidably arranged in the third mounting seat, and a roller that is rotatably connected to the bottom of the lifting seat through a connecting shaft. An elastic member is arranged between the lifting seat and the third mounting seat. A guide rod is further extended from the top of the lifting seat. The guide rod is inserted into the through hole at the top of the third mounting seat, and a limit plate is arranged on the top of the guide rod.