Split type air purification and disinfection equipment

By separating the air inlet and outlet and connecting them with connecting pipes, the problem of air short-circuiting in ceiling-mounted air purifiers and disinfectors is solved, resulting in better purification and disinfection effects.

CN223954324UActive Publication Date: 2026-02-27LAOKEN MEDICAL TECH
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Patent Information

Application Number
CN202520223911.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-12
Publication Date
2026-02-27
Estimated Expiration
2035-02-12

AI Technical Summary

Technical Problem

The distance between the air inlet and outlet of existing ceiling-mounted air purifiers and sterilizers is too small, which leads to frequent air short-circuiting and affects the purification and sterilization effect.

Method used

One of the air inlet and outlet is located on the main unit, while the other is set up independently relative to the main unit and connected by connecting pipes. This increases the distance between the air inlet and outlet, forming a split structure and reducing air short-circuiting.

Benefits of technology

It effectively reduces the risk of air short circuits, improves the air purification and disinfection effect, and ensures that the air is fully purified and disinfected in the space where the purification and disinfection equipment is located.

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Patent Text Reader

Abstract

The utility model relates to the technical field of air purification and disinfection, and discloses split type air purification and disinfection equipment which comprises a main machine, an air inlet and an air outlet, one of the air inlet and the air outlet is arranged on the main machine, and the other one of the air inlet and the air outlet is independently arranged relative to the main machine. According to the split type air purification sterilizer disclosed by the utility model, one of the air inlet and the air outlet is formed in the main machine, and the other one of the air inlet and the air outlet is independent relative to the main machine, so that the distance between the air inlet and the air outlet can be effectively increased; therefore, the risk of wind short circuit is reduced as much as possible, and the purification and disinfection effects are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to air purification disinfection technical field, specifically, relate to a split type air purification disinfection equipment. BACKGROUND

[0002] The content of this part only provides the background information related to the utility model, which can not constitute the prior art.

[0003] For the known air purification disinfection machine suitable for purifying and disinfecting the air in the room, especially the ceiling type air purification disinfection machine, the air inlet and the air outlet are usually arranged on the host, and the distance between the air inlet and the air outlet is small.

[0004] For such air purification disinfection machine, the air purification disinfection machine is prone to wind short circuit phenomenon during actual operation, so that the air purification and disinfection effect is greatly discounted. UTILITY MODEL CONTENT

[0005] Therefore, the utility model aims at providing a split type air purification disinfection equipment, so as to reduce the risk of wind short circuit phenomenon as far as possible when purifying and disinfecting the air.

[0006] The utility model discloses a split type air purification disinfection equipment, including host, air inlet and air outlet.

[0007] The utility model discloses a split type air purification disinfection equipment, including host, air inlet and air outlet.

[0008] The air inlet is configured to provide air to the host, and the host is adapted to guide the air provided by the air inlet to be discharged through the air outlet.

[0009] One of the air inlet and the air outlet is arranged on the host, and the other of the air inlet and the air outlet is independently arranged relative to the host.

[0010] Further, the air inlet or the air outlet independently arranged relative to the host is multiple.

[0011] The host is installed on the top area of the space where the split type air purification disinfection equipment is located, and the multiple air inlets or air outlets independently arranged relative to the host are installed around the host on the periphery of the space where the split type air purification disinfection equipment is located.

[0012] Further, the air inlet or the air outlet independently arranged relative to the host is connected to the host through a connecting pipeline.

[0013] Further, the air inlet or the air outlet arranged on the main machine is arranged at the bottom of the main machine, and the connecting position of the connecting pipeline and the main machine is arranged outside the main machine.

[0014] Further, the split type air purification and sterilization equipment further comprises a filter module arranged on an air flow path between the air inlet and the air outlet.

[0015] The air inlet or the air outlet arranged independently relative to the main machine comprises a mounting cavity with an opening and in communication with the connecting pipeline, and the filter module is arranged in the mounting cavity.

[0016] Further, the split type air purification and sterilization equipment further comprises a fan and a filter module arranged on an air flow path between the air inlet and the air outlet.

[0017] The filter module is arranged upstream of the fan.

[0018] Further, the split type air purification and sterilization equipment further comprises a sterilization module arranged on an air flow path between the air inlet and the air outlet.

[0019] The sterilization module is arranged between the filter module and the fan.

[0020] Further, the split type air purification and sterilization equipment further comprises a controller, and the fan and the sterilization module are both in communication connection with the controller.

[0021] The technical scheme of the embodiment of the utility model has at least the following advantages and beneficial effects:

[0022] The split type air purification and sterilization machine disclosed by the utility model can effectively increase the distance between the air inlet and the air outlet by arranging one of the air inlet and the air outlet on the main machine and arranging the other one of the air inlet and the air outlet in an independent form relative to the main machine, so as to reduce the risk of air short circuit as much as possible, and thus is favorable for improving the purification and sterilization effect. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 The structure schematic diagram of the split type air purification and sterilization equipment provided by the embodiment of the utility model in one kind of implementation manner is shown;

[0024] Figure 2 The structure schematic diagram of the split type air purification and sterilization equipment provided by the embodiment of the utility model in another implementation manner is shown.

[0025] Icon: 10 - main machine, 20 - air inlet, 30 - air outlet, 31 - mounting cavity, 40 - connecting pipeline, 50 - fan, 60 - filter module, 70 - grille, 80 - sterilization module, 90 - controller. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical scheme and advantages of the utility model clearer, the technical scheme of the utility model will be described clearly and completely in combination with specific embodiments below. The same reference signs in the drawings represent the same parts. It should be noted that the described embodiments are part of the embodiments of the utility model, not all embodiments. Based on the described embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.

[0027] Compared with the embodiments shown in the drawings, the feasible implementation schemes within the protection scope of the utility model can have fewer components, other components not shown in the drawings, different components, differently arranged components or differently connected components, etc. In addition, two or more components in the drawings can be implemented in a single component, or a single component shown in the drawings can be implemented as multiple separate components.

[0028] In the known air purification and sterilization machine that arranges the air inlet 20 and the air outlet 30 on the main machine 10 at the same time, due to the small distance between the air inlet 20 and the air outlet 30 on the main machine 10, the air purification and sterilization machine is prone to wind short circuit phenomenon during actual operation, thereby greatly reducing the air purification and sterilization effect. Among them, the so-called wind short circuit phenomenon is simply: the purified and sterilized air discharged from the air outlet 30 is reabsorbed into the main machine 10 through the air inlet 20 without being fully diffused to the space where the air purification and sterilization machine is located.

[0029] Therefore, the embodiment of the utility model discloses a split type air purification and sterilization equipment, so as to reduce the risk of wind short circuit phenomenon as much as possible when purifying and sterilizing air.

[0030] Figure 1 The structure schematic diagram of the exemplary split type air purification and sterilization equipment disclosed by the embodiment of the utility model in one of the implementation manners is shown in Figure 1 In the embodiment shown, the split type air purification and sterilization equipment can include the main machine 10, the air inlet 20 and the air outlet 30.

[0031] In the embodiment of the utility model, the air inlet 20 is configured to provide air to the main machine 10, specifically air to be purified and sterilized. The main machine 10 is at least adapted to guide the air provided by the air inlet 20 to be discharged through the air outlet 20.

[0032] One of the air inlet 20 and the air outlet 30 is arranged on the main machine 10, and the other of the air inlet 20 and the air outlet 30 is independently arranged relative to the main machine 10.

[0033] That is to say, in the embodiment of the utility model, there are two ways to arrange the air inlet 20 and the air outlet 30, one of which is to arrange the air inlet 20 on the main machine 10 and independently arrange the air outlet 30 relative to the main machine 10, and the other is to arrange the air outlet 30 on the main machine 10 and independently arrange the air inlet 20 relative to the main machine 10. For example, the utility model discloses that the air inlet 20 is arranged on the main machine 10, and the air outlet 30 is independently arranged relative to the main machine 10.

[0034] It can be understood that the split type air purification and disinfection equipment disclosed in the embodiment of the utility model can increase the distance between the air inlet 20 and the air outlet 20, thereby reducing the risk of air short circuit as much as possible, no matter which way the air inlet 20 and the air outlet 30 are arranged.

[0035] The split type air purification and disinfection equipment disclosed in the embodiment of the utility model, the space where the split type air purification and disinfection equipment is located, the air inlet 20, the main machine 10 and the air outlet 30 form an air circulation passage. When the split type air purification and disinfection equipment is actually used, the air in the space where the split type air purification and disinfection equipment is located will enter the main machine 10 through the air inlet 20 and be discharged from the air outlet 30. In this process, the split type air purification and disinfection equipment can purify and disinfect the air flowing from the air inlet 20 to the air outlet 30, that is, the air discharged from the air outlet 30 is the air after purification and disinfection. The way of purifying and disinfecting the air will be described in detail below.

[0036] In some embodiments of the utility model, in order to enable the air inlet 20 or the air outlet 30 independently arranged relative to the main machine 10 to communicate with the main machine 10 to form the air circulation passage described above, the split type air purification and disinfection equipment can further include a connecting pipeline 40.

[0037] The air inlet 20 or the air outlet 30 independently arranged relative to the main machine 10 is connected to the main machine 10 through the connecting pipeline 40, so as to guide the air to flow between the main machine 10 and the air inlet 20 or the air outlet 30 independently arranged relative to the main machine 10 through the connecting pipeline 40.

[0038] For example, in the drawings of the utility model, the air outlet 30 is connected to the main machine 10 through the connecting pipeline 40 when the air inlet 20 is arranged on the main machine 10 and the air outlet 30 is independently arranged relative to the main machine 10.

[0039] In some embodiments of the utility model, the number of air inlets 20 or air outlets 30 independently arranged relative to the host 10 can be one or more. In the case where the number of air inlets 20 or air outlets 30 independently arranged relative to the host 10 is more than one, the split type air purification and disinfection equipment disclosed in the embodiments of the utility model can be installed in the following manner, but not limited to.

[0040] Specifically, the split type air purification and disinfection equipment disclosed in the embodiments of the utility model can be used as a ceiling type air purification and disinfection machine. When the split type air purification and disinfection equipment is actually installed, the host 10 can be installed at the top area of the space where the split type air purification and disinfection equipment is located, and the air inlet 20 or air outlet 30 arranged on the host 10 faces the space where the split type air purification and disinfection equipment is located. The air inlets 20 or air outlets 30 independently arranged relative to the host 10 can be installed around the host 10 at the periphery of the space where the split type air purification and disinfection equipment is located. For example, when the space where the split type air purification and disinfection equipment is located is a rectangular room, the host 10 can be installed at the middle area of the ceiling, and the air inlets 20 or air outlets 30 independently arranged relative to the host 10 can be four, and the four air inlets 20 or air outlets 30 independently arranged relative to the host 10 can be installed at the four corners or the top of the wall of the room.

[0041] In this way, it is beneficial to fully purify and disinfect the air in all areas of the space where the split type air purification and disinfection equipment is located, so as to improve the air purification and disinfection effect. When the split type air purification and disinfection equipment is working, the flow path of the air can refer to the solid arrows shown in Figure 1 or Figure 2 .

[0042] Of course, the split type air purification and disinfection equipment disclosed in the embodiments of the utility model can also have other installation and use modes. For example, the entire split type air purification and disinfection equipment can also be installed on the wall of the space where the split type air purification and disinfection equipment is located for use, which is not limited here.

[0043] In some embodiments of the utility model, in order to enable the air in the space where the split type air purification and disinfection equipment is located to enter the interior of the host 10 through the air inlet 20 and finally be discharged from the air outlet 30, referring to Figure 1 or Figure 2 , the split type air purification and disinfection equipment can further include a fan 50 located on the air flow path between the air inlet 20 and the air outlet 30, so as to guide the air in the space where the split type air purification and disinfection equipment is located to flow through the air inlet 20 and the air outlet 30 in sequence through the fan 50, thereby realizing circulation.

[0044] The fan 50 can be arranged in various positions. For example, as shown in Figure 1 or Figure 2 indicated, the fan 50 can be arranged inside the main machine 10; alternatively, the fan 50 can also be arranged at any one of the air inlet 20, the air outlet 30, and the connecting pipeline 40.

[0045] In some embodiments of the present application, in order to purify the air entering the main machine 10 through the air inlet 20, as shown in Figure 1 or Figure 2 indicated, the split air purification and disinfection device can further include a filter module 60 arranged on the air flow path between the air inlet 20 and the air outlet 30, so as to filter and purify the air through the filter module 60.

[0046] The filter module 60 can be one or more of a primary filter, a medium-efficiency filter, a high-efficiency filter, an activated carbon filter, etc., as long as it can achieve good air filtering effect, which is not limited herein.

[0047] In addition, the filter module 60 can be arranged in various positions. For example, as shown in Figure 1 indicated, when the fan 50 is arranged inside the main machine 10, the filter module 60 can be arranged inside the main machine 10, and the filter module 60 can be arranged upstream of the fan 50, that is, the air entering the main machine 10 through the air inlet 20 will first flow through the filter module 60 and then flow through the fan 50. In this way, on the basis of achieving the filtering and purification of the air entering the main machine 10 through the air inlet 20, the air flowing through the fan 50 is purified air, so as to avoid dust and impurities possibly existing in the air from remaining on the fan 50 as much as possible, thereby affecting the service life of the fan 50.

[0048] Alternatively, the filter module 60 can also be arranged at the air inlet 20 or the air outlet 30 arranged independently with respect to the main machine 10. Specifically, as shown in Figure 2 indicated, the air inlet 20 or the air outlet 30 arranged independently with respect to the main machine 10 includes a mounting cavity 31 having an opening and being in communication with the connecting pipeline 40, the filter module 60 is arranged in the mounting cavity 31, and a removable grille 70 is arranged at the opening of the mounting cavity 31. For example, in the present application, the air outlet 30 is arranged independently with respect to the main machine 10, and the air outlet 30 is in communication with the main machine 10 through the connecting pipeline 40, the mounting cavity 31 is arranged at the air outlet 30, and in this way, the air transported from the main machine 10 through the connecting pipeline 40 will first flow through the filter module 60 and then be discharged from the opening of the mounting cavity 31.

[0049] By the arrangement of the grid 70, on the basis of realizing filtering and purifying the air entering the main machine 10 through the air inlet 20 and providing protection for the filter module 60 in the mounting cavity 31, the filter module 60 in the mounting cavity 31 can be conveniently maintained and replaced by removing the grid 70.

[0050] Of course, the arrangement position of the filter module 60 is not limited to this, for example, the filter module 60 can also be arranged in the connecting pipeline 40.

[0051] In some embodiments of the utility model, in order to realize disinfecting the air entering the main machine 10 through the air inlet 20, referring to Figure 1 Or Figure 2 As shown, the split type air purification and disinfection equipment can also include a disinfection module 80 located on the air flow path between the air inlet 20 and the air outlet 30, so as to disinfect the air through the disinfection module 80.

[0052] Among them, the disinfection module 80 can include disinfection devices based on ultraviolet disinfection technology, plasma disinfection technology, photocatalytic disinfection technology and the like, such as ultraviolet disinfection device, plasma disinfection device, photocatalyst disinfection device and the like.

[0053] And the arrangement position of the disinfection module 80 can also be various, for example, the disinfection module 80 can be arranged at any one of the air inlet 20, the main machine 10, the air outlet 30 and the connecting pipeline 40. Further, in the case that the fan 50 and the disinfection module 80 are arranged in the main machine, the disinfection module 80 can be located upstream of the fan 50, that is, the air entering the main machine 10 through the air inlet 20 will flow through the disinfection module 80 first, and then flow through the fan 50. In this way, on the basis of realizing disinfecting the air entering the main machine 10 through the air inlet 20, the air flowing through the fan 50 can be the air after disinfection, so as to avoid the bacteria and viruses possibly existing in the air remaining on the fan 50 as much as possible, affecting the service life of the fan 50.

[0054] Further, referring to Figure 1 As shown, in the case that the fan 50, the filter module 60 and the disinfection module 80 are arranged in the main machine 10 and located upstream of the fan 50, the disinfection module 80 can be located between the filter module 60 and the fan 50, that is, the air entering the main machine 10 through the air inlet 20 will flow through the filter module 60, the disinfection module 80 and the fan 50 in turn, and then reach the air outlet 30 through the connecting pipeline 40, and be discharged from the air outlet 30. In this way, the dust and impurities possibly existing in the air can be avoided from remaining on the disinfection module 80 as much as possible, affecting the service life of the disinfection module 80.

[0055] In some embodiments of the utility model, as Figure 1 OrFigure 2 As shown, the split type air purification and disinfection equipment can further comprise a controller 90. Wherein, the fan 50, the disinfection module 80 and other electrical components are in communication connection with the controller 90, so that the split type air purification and disinfection equipment can automatically control the fan 50, the disinfection module 80 and other electrical components by means of the controller 90, and improve the automation degree of the split type air purification and disinfection equipment.

[0056] Wherein, the controller 90 can be integrated on the main machine 10, so as to optimize the structural design of the split type air purification and disinfection equipment. Of course, the controller 90 can also be set at other positions according to the needs, which is not limited here.

[0057] In some embodiments of the present application, the air inlet 20 or the air outlet 30 provided on the main machine 10 can be located at the bottom of the main machine 10, so as to optimize the structural design of the split type air purification and disinfection equipment. In this case, the connection position of the aforementioned connecting pipeline 40 and the main machine 10 can be located outside the main machine 10, for example, the side of the main machine 10, especially above the side of the main machine 10, or the top of the main machine 10, so as to further optimize the structural design of the split type air purification and disinfection equipment.

[0058] It is worth mentioning that, in addition to being an air purification and disinfection machine, the split type air purification and disinfection equipment disclosed in the embodiments of the present application can also be an air disinfection machine or an air purification machine.

[0059] The above is only the preferred embodiment of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A split type air purification and sterilization apparatus, characterized by, The main machine, the air inlet and the air outlet; The air inlet is configured to provide air to the main machine; the main machine is adapted to at least guide the air provided by the air inlet to be discharged through the air outlet; One of the air inlet and the air outlet is arranged on the main machine, and the other is arranged independently relative to the main machine; A fan and a filter module are arranged on the air flow path between the air inlet and the air outlet; A sterilization module is arranged on the air flow path between the air inlet and the air outlet.

2. The split type air purification and sterilization apparatus according to claim 1, wherein The air inlet or the air outlet arranged independently relative to the main machine is multiple; The main machine is installed at the top area of the space where the split type air purification and sterilization device is located, and multiple air inlets or air outlets arranged independently relative to the main machine are installed around the main machine at the periphery of the space where the split type air purification and sterilization device is located.

3. The split type air purification and sterilization apparatus according to claim 1, wherein The air inlet or the air outlet arranged independently relative to the main machine is connected to the main machine through a connecting pipeline.

4. The split-type air purification and sterilization apparatus according to claim 3, characterized by The air inlet or the air outlet arranged on the main machine is located at the bottom of the main machine, and the connecting position of the connecting pipeline to the main machine is located outside the main machine.

5. The split type air purification and sterilization apparatus according to claim 3, wherein A filter module is arranged on the air flow path between the air inlet and the air outlet; The air inlet or the air outlet arranged independently relative to the main machine comprises a mounting cavity with an opening and in communication with the connecting pipeline, the filter module is mounted in the mounting cavity, and a removable grille is arranged at the opening of the mounting cavity.

6. The split-type air purification and sterilization apparatus according to claim 1, wherein The filter module is located upstream or downstream of the fan, and the sterilization module is located between the filter module and the fan.

7. The split-type air purification and sterilization apparatus according to claim 6, wherein A controller is further included, and the fan and the sterilization module are both communicatively connected to the controller.