Mite removing device

By setting up multiple channels and dust collecting devices in the shell of the mite removal device, the contact area between the air inlet and the cleaning part is increased, and the existing mite removal device is solved, and a more efficient mite removal effect is achieved.

CN223009032UActive Publication Date: 2025-06-24SHENZHEN KEJIA INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422135145.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2025-06-24
Estimated Expiration
2034-09-02

AI Technical Summary

Technical Problem

Existing mite removers increase suction by increasing fan power, but this increases product cost and noise.

Method used

A mite removal device is designed, by providing at least two first channels and corresponding dust collecting devices in the shell, the contact area between the air inlet and the cleaning part is increased and the suction force is increased.

Benefits of technology

Inhaling more mites or dust in the same time, reducing the time for mite removal, improving mite removal efficiency, and reducing product costs and noise.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to an acarus killing device which comprises a shell, a dust collecting device and an adsorption device, a second channel and at least two first channels are arranged in the shell, and air inlets of the at least two first channels are distributed at the bottom of the shell at intervals; the dust collection devices are arranged on the shell, the number of the dust collection devices is the same as that of the first channels, air inlets of the dust collection devices communicate with air outlets of the first channels in a one-to-one correspondence mode, and air outlets of the dust collection devices communicate with the second channels; the adsorption device is installed on the shell and used for forming suction force at the air inlet of the first channel. Through mutual cooperation of the at least two first channels and the dust collecting devices with the same number as the first channels, the contact area of the air inlets of the first channels and the cleaning part can be increased, the suction force of the mite killing instrument is improved, the amount of sucked mites or dust within the same time is increased, the mite killing time is shortened, and the mite killing efficiency is improved.
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Description

Technical Field

[0001] This application relates to the technical field of cleaning appliances, and particularly to a mite removal device. Background Art

[0002] A mite removal device is a device specifically used to remove mites and bacteria on household items. It usually consists of a main body and one or more suction heads. The main body is responsible for generating suction and power, while the suction head is used to adsorb mites and bacteria on items such as beds and sofas. Therefore, the magnitude of suction is one of the key factors for mite removal. However, almost all the current mite removal devices on the market increase the suction by increasing the power of the blower, but this method increases the product cost and the noise. Content of the Utility Model

[0003] Based on this, it is necessary to provide a mite removal device in view of the above problems that occur in the existing mite removal devices.

[0004] A mite removal device provided by this application includes:

[0005] A housing, in which a first channel and a second channel are provided. The number of the first channels is not less than two, and the air inlets of the not less than two first channels are spaced apart and distributed at the bottom of the housing;

[0006] A dust collection device, which is arranged on the housing. The number of the dust collection devices is the same as the number of the first channels. The air inlet of the dust collection device is in one-to-one correspondence and communication with the air outlet of the first channel, and the air outlet of the dust collection device is in communication with the second channel;

[0007] An adsorption device, which is installed on the housing and is used to form suction at the air inlet of the first channel.

[0008] The mite removal device disclosed in this application includes a housing, a dust collection device and an adsorption device. A second channel and not less than two first channels are provided in the housing. The air inlets of the not less than two first channels are spaced apart and distributed at the bottom of the housing; the dust collection device is arranged on the housing. The number of the dust collection devices is the same as the number of the first channels. The air inlet of the dust collection device is in one-to-one correspondence and communication with the air outlet of the first channel, and the air outlet of the dust collection device is in communication with the second channel; the adsorption device is installed on the housing and is used to form suction at the air inlet of the first channel. By means of the mutual cooperation of not less than two first channels and the dust collection devices with the same number as the first channels, this application can increase the contact area between the air inlets of the first channels and the cleaning part, improve the suction of the mite removal device, increase the amount of mites or dust inhaled in the same time, reduce the mite removal time, and improve the mite removal efficiency.

[0009] In one embodiment, the number of the dust collecting devices is two, and the two dust collecting devices are symmetrically distributed on the housing.

[0010] The mite removal device in the above embodiment further defines that two dust collecting devices are symmetrically distributed on the housing, so that the center of gravity of the mite remover is kept balanced as much as possible, avoiding the single-handed tilt that is likely to occur during the process of holding and using by the user; at the same time, the dust collecting devices are symmetrically distributed on the housing, which can improve the aesthetic appearance of the mite remover and is more popular in the market.

[0011] In one embodiment, the second channel is a T-shaped channel with one inlet and two outlets, the second channel is clamped between the two dust collecting devices, and the two dust collecting devices are respectively connected to the two air outlets of the second channel.

[0012] The mite removal device in the above embodiment further defines that the second channel is a channel structure with one inlet and two outlets, that is, the second channel has one air inlet and two air outlets, and the two air outlets are respectively communicated with the two dust collecting devices. Mites or dust are inhaled from the air inlet and then respectively introduced into the two dust collecting devices from the two air outlets, so that both of the two dust collecting devices can collect mites or dust. Based on the T-shaped structure of the second channel, the mites or dust entering the second channel can be evenly distributed into the two dust collecting devices.

[0013] In one embodiment, the bottom of the housing is recessed inward to form a groove, and the air inlets of the first channel are spaced apart and distributed on the groove.

[0014] The mite removal device in the above embodiment further defines that the air inlets of the first channel are distributed on the groove formed by the inward depression of the bottom of the housing. When the bottom of the housing is attached to the surface of the parts to be cleaned such as the bed, sofa, carpet, etc., there is a certain distance between the groove and the surface of the cleaning part, avoiding the surface of the cleaning part from blocking the air inlets of the first channel, resulting in the fan blades of the adsorption device being unable to normally inhale air flow, the air intake volume decreasing, resulting in an increased load. Seriously, the motor continues to be overloaded and the temperature rises, which is likely to burn out the motor.

[0015] In one embodiment, the bottom of the housing is provided with pulleys, the number of the pulleys is not less than two, and the pulleys not less than two are distributed on the periphery of the groove.

[0016] The mite removal device in the above embodiment further defines that the bottom of the housing is provided with not less than two pulleys, and the pulleys are distributed on the periphery of the groove. Based on the above design, the sliding of the bottom of the housing on the surface of the cleaning part becomes smooth, and at the same time, the pulleys can also lift the groove above the cleaning part, avoiding the cleaning part from blocking at the air inlets of the first channel.

[0017] In one embodiment, the first channel extends from the bottom of the housing towards the dust collection device. A movable baffle is provided at the air inlet of the dust collection device, and the air outlet of the first channel is disposed opposite to the air inlet of the dust collection device.

[0018] For the mite removal device in the above embodiment, it is further defined that the air outlet of the first channel is disposed opposite to the air inlet of the dust collection device, and the first channel extends from the bottom of the housing towards the air inlet of the dust collection device, shortening the distance between the first channel and the air inlet of the dust collection device to ensure the magnitude of the suction force. Additionally, by providing a rotatable movable baffle at the air inlet of the dust collection device, when the mite remover stops removing mites, the communication between the dust collection chamber and the first channel is closed, preventing mites or dust in the dust collection chamber from flowing back into the first channel or being discharged outside the mite remover.

[0019] In one embodiment, a seal is provided between the first channel and the dust collection device, and the seal is used to seal the gap between the air outlet of the first channel and the air inlet of the dust collection device.

[0020] In one embodiment, the mite removal device further includes a flapping device, which is provided on the bottom of the housing and is located in front of the air inlet of the first channel. The flapping device is used to generate high-frequency flapping.

[0021] For the mite removal device in the above embodiment, it is further defined that a flapping device is provided on the bottom of the housing, and the flapping device is distributed in front of the air inlet of the first channel. When the mite remover is working, first, the flapping device performs high-frequency flapping on the cleaning part to beat out the mites at the cleaning part, and then the suction force generated by the adsorption device sucks the mites into the air inlet of the first channel.

[0022] In one embodiment, the mite removal device further includes an ultraviolet device, which is provided on the bottom of the housing and is located behind the air inlet of the first channel. The ultraviolet device is used to generate ultraviolet rays.

[0023] In one embodiment, the mite removal device further includes a battery module, which is disposed in the installation cavity formed within the housing, and the battery module is electrically connected to the adsorption device. Description of the Drawings

[0024] Figure 1 Is a perspective view of the mite removal device in one embodiment;

[0025] Figure 2 Is a bottom view of the mite removal device in one embodiment;

[0026] Figure 3One of the sectional views of the mite removal device in an embodiment;

[0027] Figure 4 Another sectional view of the mite removal device in an embodiment.

[0028] Reference numerals:

[0029] 10 Housing, 110 First channel, 120 Second channel, 130 Groove;

[0030] 20 Dust collection device, 30 Adsorption device, 31 Movable baffle;

[0031] 41 Pulley, 42 Seal;

[0032] 50 Beating device, 60 Ultraviolet device. Detailed implementation manners

[0033] To enable those skilled in the art to better understand the solutions of this application, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of this application.

[0034] It should be noted that the terms "first", "second", etc. in the description and claims of this application and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily need to describe a specific order or sequence. It should be understood that such used data can be interchanged under appropriate circumstances so as to describe the embodiments of this application here.

[0035] As Figure 1 And Figure 3 shown, this embodiment provides a mite removal device, which includes:

[0036] A housing 10, in which a first channel 110 and a second channel 120 are provided. The number of the first channels 110 is not less than two, and the air inlets of the not less than two first channels 110 are spaced apart and distributed at the bottom of the housing 10;

[0037] A dust collection device 20, which is arranged on the housing 10. The number of the dust collection devices 20 is the same as the number of the first channels 110. The air inlets of the dust collection devices 20 are in one-to-one correspondence and communication with the air outlets of the first channels 110, and the air outlets of the dust collection devices 20 are in communication with the second channel 120;

[0038] An adsorption device 30, which is installed on the housing 10 and is used to form a suction force at the air inlet of the first channel 110.

[0039] Among them, the adsorption device 30 can be used to generate a strong suction force. The adsorption device 30 may include a motor and a fan blade that is drivingly connected to the motor. The motor generates high-speed rotation to drive the fan blade, so as to form a negative pressure area at the air inlet of the first channel 110, thereby generating a strong wind force. When the air inlet of the first channel 110 approaches the parts to be cleaned such as the bed, sofa, and carpet, the strong suction force can suck mites or dust on the cleaning parts into the dust collection device 20.

[0040] There are no less than two first channels 110 provided on the housing 10. Exemplarily, the number of the first channels 110 can be two. Mites or dust on the cleaning parts can enter the dust collection device 20 through the two first channels 110 respectively.

[0041] Specifically, the air inlet of the first channel 110 is designed with a large diameter. Compared with the traditional mesh or single-hole design, based on no less than two first channels 110 in this application, the contact area between the air inlet of the first channel 110 and the cleaning part can be increased, the suction force of the mite remover can be improved, the mite removal time can be reduced, and the mite removal efficiency can be enhanced.

[0042] The dust collection device 20 can be used to filter the mixture introduced through the first channel 110. Exemplarily, the dust collection device 20 adopts a dust-gas separation technology. When the airflow containing the mixture enters the dust collection chamber of the dust collection device 20, the movement mode of the airflow changes from a straight line to a circular motion. Under the action of centrifugal force, substances such as mites or dust are thrown towards the inner wall of the dust collection chamber and fall along the wall surface into the ash hopper for collection, while the purified gas forms an inner spiral upward and is discharged to the second channel 120.

[0043] The number of the dust collection devices 20 is the same as the number of the first channels 110. Exemplarily, both the number of the dust collection devices 20 and the first channels 110 are two. The two dust collection devices 20 are respectively in corresponding communication with the two first channels 110. That is to say, mites or dust are sucked through the first channel 110 and then transmitted into the corresponding dust collection device 20 for collection, so that the dust collection effect of the mite remover of this application is better at the same time.

[0044] The mite removal device in the above embodiments includes a housing 10, a dust collection device 20, and an adsorption device 30. A second channel 120 and no less than two first channels 110 are provided inside the housing 10. The air inlets of the no less than two first channels 110 are spaced apart and distributed at the bottom of the housing 10. The dust collection device 20 is provided on the housing 10. The number of the dust collection devices 20 is the same as that of the first channels 110. The air inlets of the dust collection devices 20 are in one-to-one correspondence and communication with the air outlets of the first channels 110. The air outlets of the dust collection devices 20 are in communication with the second channel 120. The adsorption device 30 is installed on the housing 10 and is used to form a suction force at the air inlets of the first channels 110. Through the cooperation of the no less than two first channels 110 and the dust collection devices 20 with the same number as the first channels 110, the contact area between the air inlets of the first channels 110 and the cleaning part can be increased, the suction force of the mite removal instrument can be improved, the amount of mites or dust inhaled in the same time can be increased, the mite removal time can be reduced, and the mite removal efficiency can be improved.

[0045] As Figure 1 shown, in addition to the features of the above embodiments, the present embodiment further defines that the number of the dust collection devices 20 is two, and the two dust collection devices 20 are symmetrically distributed on the housing 10.

[0046] In the above embodiments, it is further defined that the two dust collection devices 20 are symmetrically distributed on the housing 10, so that the center of gravity of the mite removal instrument can be kept balanced as much as possible, and it is avoided that the single hand is prone to tilt during the process of being held by the user. At the same time, the two dust collection devices 20 are symmetrically distributed on the housing 10, which can improve the aesthetic appearance of the mite removal instrument and is more popular in the market.

[0047] Among them, the two dust collection devices 20 can be symmetrically distributed on the housing 10. Exemplarily, the two dust collection devices 20 are symmetrically distributed on the left and right sides of the housing 10, so that the center of gravity of the mite removal instrument is as centered as possible to maintain balance. It should be noted that the two dust collection devices 20 can also be symmetrically distributed on the front and back sides of the housing 10.

[0048] In one embodiment, the dust collection device 20 is detachably connected to the housing 10.

[0049] As Figure 3 shown, in addition to the features of the above embodiments, the present embodiment further defines that the second channel 120 is a T-shaped channel with one inlet and two outlets. The second channel 120 is clamped between the two dust collection devices 20, and the two dust collection devices 20 are respectively connected to the two air outlets of the second channel 120.

[0050] In the above embodiments, the second channel 120 is further defined as a one-in-two-out channel structure, that is, the second channel 120 has one air inlet and two air outlets. The two air outlets are respectively connected to the two dust collection devices 20. Mites or dust are inhaled from the air inlet and then respectively introduced into the two dust collection devices 20 from the two air outlets, so that both of the two dust collection devices 20 can collect mites or dust. Based on the T-shaped structure of the second channel 120, the mites or dust entering the second channel 120 can be evenly distributed into the two dust collection devices 20.

[0051] As Figure 1 shown, in addition to the features of the above embodiments, this embodiment further defines that: the bottom of the housing 10 is recessed inward to form a groove 130, and the air inlets of the first channel 110 are distributed at intervals on the groove 130.

[0052] In the above embodiments, the air inlets of the first channel 110 are further defined to be distributed on the groove 130 formed by the inward depression of the bottom of the housing 10. When the bottom of the housing 10 is attached to the surface of a cleaning area such as a bed, a sofa, or a carpet, there is a certain distance formed between the groove 130 and the surface of the cleaning area, avoiding the blockage of the air inlets of the first channel 110 by the surface of the cleaning area, which may cause the fan blades of the adsorption device 30 to be unable to normally inhale air flow, resulting in a decrease in the air intake volume, an increase in load, and in severe cases, the continuous high load of the motor causes the temperature to rise and the motor is easily burned out.

[0053] As Figure 2 shown, in addition to the features of the above embodiments, this embodiment further defines that: the bottom of the housing 10 is provided with pulleys 41, and the number of the pulleys 41 is not less than two. The pulleys 41 with a number not less than two are distributed around the groove 130.

[0054] In the above embodiments, it is further defined that the bottom of the housing 10 is provided with pulleys 41 with a number not less than two, and the pulleys 41 are distributed around the groove 130. Based on the above design, the sliding of the bottom of the housing 10 on the surface of the cleaning area becomes smooth. At the same time, the pulleys 41 can also lift the groove 130 above the cleaning area to avoid the blockage of the cleaning area at the air inlets of the first channel 110.

[0055] As Figure 2 shown, in addition to the features of the above embodiments, this embodiment further defines that: the first channel 110 extends from the bottom of the housing 10 towards the dust collection device 20, a movable baffle 31 is provided at the air inlet of the dust collection device 20, and the air outlet of the first channel 110 is disposed opposite to the air inlet of the dust collection device 20.

[0056] The above embodiment further defines that the air outlet of the first channel 110 is arranged opposite to the air inlet of the dust collecting device 20, and the first channel 110 extends from the bottom of the outer shell 10 toward the air inlet of the dust collecting device 20, thereby shortening the distance between the first channel 110 and the air inlet of the dust collecting device 20 and ensuring the suction force; in addition, by providing a rotatable movable baffle 31 at the air inlet of the dust collecting device 20, when the mite removal device stops removing mites, the connection between the dust collecting chamber and the first channel 110 is closed, thereby preventing mites or dust in the dust collecting chamber from flowing back to the first channel 110 or being discharged from the mite removal device.

[0057] The first channel 110 extends from the bottom of the housing 10 toward the dust collecting device 20. Specifically, the air inlet of the dust collecting device 20 is located above the air outlet of the first channel 110, and the first channel 110 extends from the bottom of the housing 10 to the air inlet of the dust collecting device 20 from bottom to top, shortening the distance between the first channel 110 and the air inlet of the dust collecting device 20, thereby avoiding weakening the suction force due to the excessively long path of the first channel 110.

[0058] The movable baffle 31 can be used to determine whether the first channel 110 is connected to the dust collecting chamber of the dust collecting device 20 according to whether the adsorption device 30 is working. Specifically, the movable baffle 31 is set at the air inlet of the dust collecting device 20. The movable baffle 31 can rotate relative to the dust collecting device 20 and form at least a first position and a second position. When the adsorption device 30 is closed, the movable baffle 31 is located at the first position and seals the air inlet of the dust collecting device 20 to prevent the mites or dust in the dust collecting chamber from flowing back to the first channel 110 or being discharged from the mite removal device; when the adsorption device 30 is turned on, the movable baffle 31 rotates relative to the dust collecting device 20 under the action of suction, and the first channel 110 is connected to the dust collecting chamber. At this time, the mites or dust on the cleaning part can enter the dust collecting chamber through the first channel 110.

[0059] like Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further defines that: a seal 42 is provided between the first channel 110 and the dust collecting device 20, and the seal 42 is used to seal the gap between the air outlet of the first channel 110 and the air inlet of the dust collecting device 20.

[0060] In addition to the features of the above embodiments, this embodiment further defines: the mite removal device also includes a flapping device 50, the flapping device 50 is arranged on the bottom of the shell 10, and the flapping device 50 is located in front of the air inlet of the first channel 110, and the flapping device 50 is used to generate high-frequency flapping.

[0061] In the above embodiments, it is further defined that a flapping device 50 is provided at the bottom of the housing 10, and the flapping device 50 is distributed in front of the air inlet of the first channel 110. When the mite remover works, the cleaning part is first subjected to high-frequency flapping by the flapping device 50. After the mites at the cleaning part are flapped out, the suction generated by the adsorption device 30 sucks the mites into the air inlet of the first channel 110.

[0062] Among them, the flapping device 50 can be used to generate high-frequency flapping, simulating the action of manually flapping the quilt, and vibrating the dust mites from the deep layer of fabrics such as the mattress and sofa through high-frequency vibration, so as to suck them into the dust collection device 20 by suction subsequently.

[0063] As Figure 2 shown, in addition to the features of the above embodiments, this embodiment further defines that: the mite removal device further includes an ultraviolet device 60. The ultraviolet device 60 is provided on the bottom of the housing 10, and the ultraviolet device 60 is located behind the air inlet of the first channel 110. The ultraviolet device 60 is used to generate ultraviolet rays.

[0064] Among them, the ultraviolet device 60 can be an ultraviolet lamp. The ultraviolet lamp can simulate sunlight irradiation, damage the microbial body cells, and make mites, bacteria, etc. lose the ability to survive and reproduce, thereby improving the cleaning ability of the mite remover.

[0065] In addition to the features of the above embodiments, this embodiment further defines that: the mite removal device further includes a battery module. The battery module is arranged in the installation cavity formed in the housing 10, and the battery module is electrically connected to the adsorption device 30.

[0066] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope recorded in this specification.

[0067] The above embodiments only express several implementation manners of the present application, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the patent scope of the present application. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, several deformations and improvements can still be made, and these all belong to the protection scope of the present application. Therefore, the protection scope of the utility model patent shall be subject to the appended claims.

Claims

1. A mite removal device, characterized in that: include: A housing (10), wherein a first channel (110) and a second channel (120) are arranged in the housing (10), the number of the first channels (110) is not less than two, and the air inlets of the not less than two first channels (110) are spaced apart and distributed at the bottom of the housing (10); a dust collecting device (20), the dust collecting device (20) being arranged on the housing (10), the number of the dust collecting devices (20) being the same as the number of the first channels (110), the air inlets of the dust collecting devices (20) being connected to the air outlets of the first channels (110) in a one-to-one correspondence, and the air outlets of the dust collecting devices (20) being connected to the second channels (120); An adsorption device (30), the adsorption device (30) being mounted on the housing (10), and the adsorption device (30) being used to form a suction force at an air inlet of the first channel (110).

2. The mite removal device according to claim 1, characterized in that: The number of the dust collecting devices (20) is two, and the two dust collecting devices (20) are symmetrically distributed on the housing (10).

3. The mite removal device according to claim 2, characterized in that: The second channel (120) is a T-shaped channel with one inlet and two outlets; the second channel (120) is sandwiched between the two dust collecting devices (20), and the two dust collecting devices (20) are respectively connected to the two air outlets of the second channel (120).

4. The mite removal device according to claim 1, characterized in that: The bottom of the housing (10) is recessed inward to form a groove (130), and the air inlets of the first channels (110) are distributed at intervals on the groove (130).

5. The mite removal device according to claim 4, characterized in that: A pulley (41) is disposed at the bottom of the housing (10), and the number of the pulleys (41) is no less than two, and the no less than two pulleys (41) are distributed on the periphery of the groove (130).

6. The mite removal device according to claim 1, characterized in that: The first channel (110) extends from the bottom of the housing (10) toward the dust collecting device (20), a movable baffle (31) is provided at the air inlet of the dust collecting device (20), and the air outlet of the first channel (110) is arranged opposite to the air inlet of the dust collecting device (20).

7. The mite removal device according to claim 6, characterized in that: A sealing member (42) is provided between the first channel (110) and the dust collecting device (20), and the sealing member (42) is used to seal the gap between the air outlet of the first channel (110) and the air inlet of the dust collecting device (20).

8. The mite removal device according to claim 1, characterized in that: It also includes a flapping device (50), which is arranged on the bottom of the housing (10) and located in front of the air inlet of the first channel (110), and the flapping device (50) is used to generate high-frequency flapping.

9. The mite removal device according to claim 8, characterized in that: It also comprises an ultraviolet device (60), which is arranged on the bottom of the housing (10) and located behind the air inlet of the first channel (110), and is used to generate ultraviolet rays.

10. The mite removal device according to claim 1, characterized in that: It also includes a battery module, which is arranged in a mounting cavity formed in the housing (10), and the battery module is electrically connected to the adsorption device (30).