Electronic purification mechanism and air purifier

By integrating the electrostatic adsorber, ion generator, and high-voltage converter into the same electronic box and electrically connecting them to the high-voltage converter via a conductive plate, the problems of large space occupation and inconvenient disassembly and assembly of the separate components of the electrostatic adsorption mechanism and ion generator are solved, achieving efficient plasma purification and electrostatic dust removal effects.

CN224136049UActive Publication Date: 2026-04-17SHENZHEN ALONDES INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN ALONDES INTELLIGENT TECHNOLOGY CO LTD
Filing Date
2025-04-28
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In the existing technology, the electrostatic adsorption mechanism and the ion generator are two separate components, which occupy a lot of space and are inconvenient to disassemble and assemble.

Method used

The electrostatic adsorber, ion generator, and high-voltage converter are integrated into the internal space of the same electronic box and electrically connected to the high-voltage converter through positive and negative conductive plates, forming an integrated electronic purification mechanism that is easy to install and disassemble.

Benefits of technology

It improves the integration and ease of installation of the electronic purification mechanism, achieves the effects of plasma purification and electrostatic dust removal, and simplifies the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of purifier parts, in particular to an electronic purification mechanism and an air purifier, and the electronic purification mechanism comprises an electrostatic adsorber, an ion generator, a high-voltage converter, an anode current-conducting plate, a cathode current-conducting plate and an electronic box, the electronic box is provided with a first internal space, and a first side hole, a second side hole, a purification air inlet hole and a purification air outlet hole which are communicated with the first internal space; the electrostatic adsorber, the ion generator and the high-voltage converter are all mounted in the first internal space, and the electrostatic adsorber and the ion generator are both electrically connected with the high-voltage converter; the anode conductive plate is installed in the first side hole and connected with the anode end of the high-voltage converter, and the cathode conductive plate is installed in the second side hole and connected with the cathode end of the high-voltage converter. According to the electronic purification mechanism, the technical effects of plasma purification and electrostatic dust collection are achieved, the integration level of the electronic purification mechanism is improved, and the electronic purification mechanism is convenient to install and operate.
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Description

Technical Field

[0001] This utility model relates to the technical field of air purifier components, and in particular to an electronic purification mechanism and an air purifier. Background Technology

[0002] Viruses and dust inevitably exist in ambient air. When the human body comes into contact with and inhales the air, these viruses and dust enter the body along with the air. Mild cases may harm health, while severe cases can cause various diseases, including many infectious diseases, epidemics, and occupational diseases. Air purifiers, also known as air cleaners or air fresheners, are devices that can adsorb, decompose, or transform various air pollutants, effectively improving air cleanliness. The electrostatic adsorption mechanism and ion generator are important components of an air purifier. The electrostatic adsorption mechanism includes multiple alternating positive and negative electrodes. When air passes through the electrostatic adsorption mechanism, the positive and negative electrodes adsorb charged dust particles from the air. When the ion generator is energized, it electrifies the surrounding gas molecules, generating a conductive body composed of microscopic particles such as electrons, ions, atoms, and free radicals.

[0003] In the existing technology, the electrostatic adsorption mechanism and the ion generator are two independent components that need to be installed separately in the air purifier, which has technical problems such as large space occupation and inconvenience of disassembly and assembly. Utility Model Content

[0004] This utility model provides an electronic purification mechanism and an air purifier to solve the technical problems in the prior art, such as the electrostatic adsorption mechanism and the ion generator being two independent components.

[0005] An embodiment of this utility model provides an electronic purification mechanism, including an electrostatic adsorber, an ion generator, a high-voltage converter, a positive electrode conductive plate, a negative electrode conductive plate, and an electronic box. The electronic box is provided with a first internal space and a first side hole, a second side hole, a purification air inlet, and a purification air outlet, all of which are connected to the first internal space.

[0006] The electrostatic adsorber, the ion generator, and the high-voltage converter are all installed in the first internal space, and the electrostatic adsorber and the ion generator are electrically connected to the high-voltage converter. The positive electrode conductive plate is installed in the first side hole and connected to the positive terminal of the high-voltage converter, and the negative electrode conductive plate is installed in the second side hole and connected to the negative terminal of the high-voltage converter.

[0007] Optionally, the electronic box includes an electronic box body and an electronic bottom cover that is detachably mounted on the electronic box body, the purification air inlet is disposed on the electronic bottom cover, and the purification air outlet is disposed on the electronic box body;

[0008] The first internal space includes a first receiving slot and a second receiving slot disposed on the electronic housing, and a slot disposed on the electronic bottom cover; the electrostatic adsorber is installed in the first receiving slot, the high voltage converter is installed in the second receiving slot, and the ion generator is snapped into the slot.

[0009] Optionally, the electronic bottom cover includes a bottom plate and an annular vertical plate connected to the bottom plate, the purification air inlet is disposed on the bottom plate, and the annular vertical plate is disposed around the purification air inlet;

[0010] The inner wall of the electronic housing is provided with protrusions, and the bottom plate is also provided with buckles. The electronic bottom cover is closed onto the electronic housing by the buckles that are snapped onto the protrusions, and the annular vertical plate is inserted into the interior of the electronic housing.

[0011] Optionally, the electrostatic adsorber includes a positive electrode post, a negative electrode post, a support post, multiple electrostatic positive electrode plates, and multiple electrostatic negative electrode plates. Each electrostatic positive electrode plate is provided with a first side groove, a second side groove, and a third side groove, and each electrostatic negative electrode plate is provided with a fourth side groove, a fifth side groove, and a sixth side groove. The electrostatic positive electrode plates and the electrostatic negative electrode plates are arranged alternately.

[0012] The support post is inserted into all the first side grooves and all the fourth side grooves, and the support post is connected to the inner wall of all the first side grooves and the inner wall of all the third side grooves.

[0013] The positive electrode post is inserted into all the second side grooves and the fifth side groove, and the positive electrode post is connected to the inner wall of all the second side grooves;

[0014] The negative electrode post is inserted into all the third side grooves and the sixth side grooves, and the negative electrode post is connected to the inner wall of all the sixth side grooves.

[0015] Optionally, the first side groove is disposed on the front side and / or the rear side of the electrostatic positive electrode plate, and the fourth side groove is disposed on the front side and / or the rear side of the electrostatic negative electrode plate.

[0016] The second side groove and the third side groove are respectively disposed on the left and right sides of the electrostatic positive electrode plate, and the fifth side groove and the sixth side groove are respectively disposed on the left and right sides of the electrostatic negative electrode plate.

[0017] Optionally, a handle is provided on the outer wall of the electronic box at the end away from the first side hole and the second side hole.

[0018] Another embodiment of this utility model also provides an air purifier, including a formaldehyde removal mechanism, a fan, a controller, a purification box, and the above-mentioned electronic purification mechanism;

[0019] The purification box includes a purification box body and a side cover. The purification box body is provided with a second internal space, a drawer recess, and an air inlet and an air outlet that are both connected to the second internal space. The electronic purification mechanism and the formaldehyde removal mechanism are detachably installed in the drawer recess. The side cover is detachably installed on the purification box body and is used to cover the drawer recess.

[0020] The drawer recess has a first hole group and a second hole group on its two opposite inner walls, and both the first hole group and the second hole group are connected to the second internal space.

[0021] The controller and the fan are both installed in the second internal space; the air purifier also includes a positive terminal and a negative terminal, both installed in the drawer recess, and the controller is electrically connected to the fan, the positive terminal, and the negative terminal;

[0022] When the electronic purification mechanism is installed in the drawer recess, the positive terminal contacts the positive conductive plate, and the negative terminal contacts the negative conductive plate.

[0023] Optionally, the purification box further includes an elastic element mounted on the side cover, the elastic element being used to press the electronic box toward the positive terminal and the negative terminal.

[0024] Optionally, the purification box further includes a support plate installed on the inner wall of the drawer recess, the bottom wall of the drawer recess being used to support the electronic purification mechanism, and the support plate being used to support the formaldehyde removal mechanism.

[0025] Optionally, the drawer recess, the air inlet, and the air outlet are all located on the side wall of the purification chamber. The drawer recess is located between the air inlet and the air outlet, and the air inlet and the air outlet are provided on all four sides of the purification chamber.

[0026] In this invention, the electrostatic adsorber, the ion generator, and the high-voltage converter are all installed in the first internal space of the electronic box. The ion generator provides plasma air purification and sterilization, the electrostatic adsorber provides electrostatic dust removal, and the high-voltage converter provides the necessary voltage and current to the electrostatic adsorber and the ion generator. Thus, the electronic purification mechanism achieves both plasma purification and electrostatic dust removal, improving its integration and facilitating installation and operation. Furthermore, the positive conductive plate is installed in the first side hole of the purification box and connected to the positive terminal of the high-voltage converter, while the negative conductive plate is installed in the second side hole of the purification box and connected to the negative terminal of the high-voltage converter. When the electronic purification mechanism is installed inside an air purifier, the positive and negative conductive plates automatically connect to external electrical components (such as guide pins), further enhancing the ease of installation. Attached Figure Description

[0027] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments of this utility model will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0028] Figure 1 This is a schematic diagram of the structure of an electronic purification mechanism provided in an embodiment of this utility model;

[0029] Figure 2 This is an exploded structural diagram of an electronic purification mechanism provided in an embodiment of this utility model;

[0030] Figure 3 This is a schematic diagram of the electronic housing of an electronic purification mechanism provided in one embodiment of the present invention;

[0031] Figure 4 This is a schematic diagram of the electrostatic adsorber of an electronic purification mechanism provided in one embodiment of the present invention;

[0032] Figure 5 This is a cross-sectional view of the electrostatic adsorber of an electronic purification mechanism provided in an embodiment of this utility model;

[0033] Figure 6 This is a schematic diagram of the structure of an air purifier provided in one embodiment of the present invention;

[0034] Figure 7 This is a partial structural schematic diagram of an air purifier provided in one embodiment of the present invention;

[0035] Figure 8 This is a partial structural schematic diagram of an air purifier provided in one embodiment of the present invention;

[0036] Figure 9 This is a cross-sectional view of an air purifier provided in an embodiment of this utility model.

[0037] The reference numerals in the accompanying drawings are as follows:

[0038] 1. Electronic purification mechanism; 11. Electrostatic adsorber; 111. Positive electrode post; 112. Negative electrode post; 113. Support post; 114. Electrostatic positive electrode plate; 1141. First side groove; 1142. Second side groove; 115. Electrostatic negative electrode plate; 1151. Fourth side groove; 1152. Fifth side groove; 12. Ion generator; 13. High voltage converter; 14. Positive conductive plate; 15. Negative conductive plate; 16. Electronic box; 161. First internal space; 1611. First receiving slot; 1612. Second receiving slot; 1613. Slot; 162. First side hole; 16 3. Second side hole; 164. Purification air inlet hole; 165. Purification air outlet hole; 166. Electronic housing; 1661. Protrusion; 167. Electronic bottom cover; 1671. Base plate; 1672. Circular vertical plate; 1673. Buckle; 168. Handle; 2. Formaldehyde removal mechanism; 3. Fan; 4. Purification box; 41. Purification box body; 411. Second internal space; 412. Drawer recess; 413. Air inlet hole; 414. Air outlet hole; 415. First hole group; 416. Second hole group; 42. Side cover; 43. Elastic element; 44. Support plate; 5. Positive terminal; 6. Negative terminal. Detailed Implementation

[0039] To make the technical problems solved, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0040] like Figure 1 and Figure 2As shown, an embodiment of the present invention provides an electronic purification mechanism 1, including an electrostatic adsorber 11, an ion generator 12, a high-voltage converter 13, a positive conductive plate 14, a negative conductive plate 15, and an electronic box 16. The electronic box 16 is provided with a first internal space 161 and a first side hole 162, a second side hole 163, a purification air inlet 164, and a purification air outlet 165, all of which are connected to the first internal space 161. It can be understood that the first side hole 162 and the second side hole 163 are both provided on the side wall of the electronic box 16, the purification air inlet 164 is provided at the bottom of the electronic box 16, and the purification air outlet 165 is provided at the bottom of the electronic box 16.

[0041] The electrostatic adsorber 11, the ion generator 12, and the high-voltage converter 13 are all installed in the first internal space 161. The electrostatic adsorber 11 and the ion generator 12 are both electrically connected to the high-voltage converter 13. The positive electrode conductive plate 14 is installed in the first side hole 162 and connected to the positive terminal of the high-voltage converter 13. The negative electrode conductive plate 15 is installed in the second side hole 163 and connected to the negative terminal of the high-voltage converter 13. Understandably, the ion generator 12 is not limited to needle electrodes. After the ion generator 12 is energized, the gas molecules around the ion generator 12 are ionized. The current injected into the ion generator 12 is controlled to generate a certain number of charged particles, forming a glowing halo state. At this time, the gas molecules in the discharge field are excited and ionized, becoming a conductor composed of microscopic particles such as electrons, ions, atoms, and free radicals. Electrons, ions, and free radicals all have high energy and reactivity. They undergo a series of complex dissociation and oxidation reactions with toxic and harmful substances, including bacteria, and finally decompose into odorless and harmless substances, thereby eliminating harmful gases and various odors, and achieving the purpose of disinfection, sterilization, and air purification.

[0042] In this invention, the electrostatic adsorber 11, the ion generator 12, and the high-voltage converter 13 are all installed in the first internal space 161 of the electronic box 16. The ion generator 12 can achieve the technical effects of plasma air purification and disinfection, the electrostatic adsorber 11 has the technical effect of electrostatic dust removal, and the high-voltage converter 13 can provide the required voltage and current for the electrostatic adsorber 11 and the ion generator 12. Thus, the electronic purification mechanism 1 has the technical effects of plasma purification and electrostatic dust removal, improving the integration of the electronic purification mechanism 1 and facilitating its installation and operation. In addition, the positive electrode conductive plate 14 is installed in the first side hole 162 of the purification box 4 and connected to the positive terminal of the high-voltage converter 13, and the negative electrode conductive plate 15 is installed in the second side hole 163 of the purification box 4 and connected to the negative terminal of the high-voltage converter 13. When the electronic purification mechanism 1 is installed in the air purifier, the positive electrode conductive plate 14 and the negative electrode conductive plate 15 will automatically connect to external electrical components (guide pins, etc.), further improving the ease of installation of the electronic purification mechanism 1.

[0043] In one embodiment, such as Figure 2 and Figure 3 As shown, the electronic box 16 includes an electronic box body 166 and an electronic bottom cover 167 detachably mounted on the electronic box body 166. The purification air inlet 164 is disposed on the electronic bottom cover 167, and the purification air outlet 165 is disposed on the electronic box body 166. It can be understood that the electronic bottom cover 167 can be mounted on the electronic box body 166 by means of a snap-fit ​​structure, a plug-in structure, etc.

[0044] The first internal space 161 includes a first receiving slot 1611 and a second receiving slot 1612 disposed on the electronic housing 166, and a slot 1613 disposed on the electronic bottom cover 167. The electrostatic adsorber 11 is installed in the first receiving slot 1611, the high-voltage converter 13 is installed in the second receiving slot 1612, and the ion generator 12 is snapped into the slot 1613. Understandably, when the electronic bottom cover 167 is removed from the electronic housing 166, both the first receiving slot 1611 and the second receiving slot 1612 are exposed, allowing the electrostatic adsorber 11 to be installed in the first receiving slot 1611 and the ion generator 12 to be installed in the first receiving slot 1612. Additionally, the ion generator 12 is snapped into the slot 1613 of the electronic bottom cover 167. In this embodiment, the disassembly and assembly of the electronic purification mechanism 1 is simple.

[0045] In one embodiment, such as Figure 2As shown, the electronic bottom cover 167 includes a bottom plate 1671 and an annular vertical plate 1672 connecting the bottom plate 1671. The purification air inlet 164 is disposed on the bottom plate 1671, and the annular vertical plate 1672 is disposed around the purification air inlet 164. The inner wall of the electronic housing 166 is provided with a protrusion 1661, and the bottom plate 1671 is also provided with a buckle 1673. The electronic bottom cover 167 is covered on the electronic housing 166 by the buckle 1673 that is snapped onto the protrusion 1661, and the annular vertical plate 1672 is inserted into the interior of the electronic housing 166. Understandably, the annular vertical plate 1672 is disposed on the upper surface of the base plate 1671 and surrounds the purification air inlet 164; when the electronic bottom cover 167 is closed on the electronic housing 166 by the buckle 1673 that is snapped onto the protrusion 1661, the annular vertical plate 1672 and the ion generator 12 thereon are located in the first internal space 161. The electronic housing 16 has a simple structure, low manufacturing cost, and simple disassembly and assembly operation.

[0046] In one embodiment, such as Figure 4 and Figure 5 As shown, the electrostatic adsorber 11 includes a positive electrode post 111, a negative electrode post 112, a support post 113, multiple electrostatic positive electrode plates 114, and multiple electrostatic negative electrode plates 115. Each electrostatic positive electrode plate 114 is provided with a first side groove 1141, a second side groove 1142, and a third side groove (not shown in the figure). Each electrostatic negative electrode plate 115 is provided with a fourth side groove 1151, a fifth side groove 1152, and a sixth side groove (not shown in the figure). The electrostatic positive electrode plates 114 and the electrostatic negative electrode plates 115 are alternately arranged. Preferably, the first side groove 1141 is provided on the front side and / or rear side of the electrostatic positive electrode plate 114, and the fourth side groove 1151 is provided on the front side and / or rear side of the electrostatic negative electrode plate 115. The second side groove 1142 and the third side groove are respectively provided on the left and right sides of the electrostatic positive electrode plate 114, and the fifth side groove 1152 and the sixth side groove are respectively provided on the left and right sides of the electrostatic negative electrode plate 115. Understandably, the number of the electrostatic positive plate 114 and the electrostatic negative plate 115 can be set according to actual needs. There is an electrostatic negative plate 115 between each two adjacent electrostatic positive plates 114, and there is an electrostatic positive plate 114 between each two adjacent electrostatic negative plates 115. There is a channel for gas flow between each two adjacent electrostatic positive plates 114 and electrostatic negative plates 115.

[0047] The support post 113 is inserted into all the first side grooves 1141 and all the fourth side grooves 1151, and the support post 113 is connected to the inner wall of all the first side grooves 1141 and the inner wall of all the third side grooves; it can be understood that the support post 113 can be glued to the first side grooves 1141 and the second side grooves 1142, so that the support post 113 can play the role of supporting the electrostatic positive plate 114 and the electrostatic negative plate 115.

[0048] The positive electrode post 111 is inserted into all the second side grooves 1142 and the fifth side groove 1152, and the positive electrode post 111 is connected to the inner wall of all the second side grooves 1142; the negative electrode post 112 is inserted into all the third side grooves and the sixth side groove, and the negative electrode post 112 is connected to the inner wall of all the sixth side grooves. Understandably, the positive electrode post 111 can serve as a common terminal for all the electrostatic positive plates 114, and the negative electrode post 112 can serve as a common terminal for all the electrostatic negative plates 115; the high-voltage converter 13 is electrically connected to all the electrostatic positive plates 114 through the positive electrode post 111, and electrically connected to all the electrostatic negative plates 115 through the negative electrode post 112.

[0049] Specifically, after the electrostatic adsorber 11 is energized, an electrostatic field is generated between the positive electrostatic plate 114 and the negative electrostatic plate 115. A large amount of mirror force charges the particles within this field. When dust particles pass through the field, they are polarized and displaced directionally, thus adsorbing onto the negative electrostatic plate 115. In this embodiment, the electrostatic adsorber 11 has a simple structure and low manufacturing cost.

[0050] In one embodiment, such as Figure 1 As shown, a handle 168 is provided on the outer wall of the electronic housing 16 at the end away from the first side hole 162 and the second side hole 163. It can be understood that the handle 168 is provided on the front side wall of the electronic housing 166. The design of the handle 168 makes the electronic purification mechanism 1 a simple drawer-type structure, further improving the ease of installation of the electronic purification mechanism 1.

[0051] like Figures 6 to 9 As shown, another embodiment of the present invention also provides an air purifier, including a formaldehyde removal mechanism 2, a fan 3, a controller (not shown in the figure), a purification box 4, and an electronic purification mechanism 1;

[0052] The purification box 4 includes a purification box body 41 and a side cover 42. The purification box body 41 is provided with a second internal space 411, a drawer recess 412, and an air inlet 413 and an air outlet 414 that are both connected to the second internal space 411. The electronic purification mechanism 1 and the formaldehyde removal mechanism 2 are detachably installed in the drawer recess 412. The side cover 42 is detachably installed on the purification box body 41 and is used to cover the drawer recess 412. It can be understood that the formaldehyde removal mechanism 2 is equipped with activated carbon, etc., so that the formaldehyde removal mechanism 2 can adsorb harmful gases such as formaldehyde in the air. The side cover 42 can be detachably installed on the purification box body 41 through a snap-fit ​​structure, a plug-in structure, etc.

[0053] The drawer recess 412 has a first hole group 415 and a second hole group 416 respectively on its two opposite inner walls. Both the first hole group 415 and the second hole group 416 are connected to the second internal space 411. It can be understood that the first hole group 415 is provided on the bottom inner wall of the drawer recess 412, and the second hole group 416 is provided on the top inner wall of the drawer recess 412. The drawer recess 412 is connected to the second internal space 411 through the first hole group 415 and the second hole group 416.

[0054] The controller and the fan 3 are both installed in the second internal space 411; the air purifier also includes a positive terminal 5 and a negative terminal 6, both installed in the drawer recess 412, and the controller is electrically connected to the fan 3, the positive terminal 5 and the negative terminal 6; it can be understood that the positive terminal 5 and the negative terminal 6 include, but are not limited to, guide pins.

[0055] When the electronic purification mechanism 1 is installed in the drawer recess 412, the positive terminal 5 contacts the positive conductive plate 14, and the negative terminal 6 contacts the negative conductive plate 15.

[0056] Specifically, external air enters the drawer recess 412 through the air inlet 413 and the first hole group 415, then enters the interior of the electronic box 16 through the purification air inlet 164. Inside the electronic box 16, the air undergoes ion purification and sterilization by the ion generator 12, and electrostatic dust removal by the electrostatic adsorber 11. After passing through the purification air outlet 165, the air enters the formaldehyde removal mechanism 2. The formaldehyde removal mechanism 2 removes formaldehyde from the air, which then flows into the second internal space 411 through the second hole group 416, and finally flows into the external environment through the air outlet 414. The fan 3 rotates in the second internal space 411, providing the necessary power for the air purifier's airflow.

[0057] In this utility model, the electronic purification mechanism 1 and the formaldehyde removal mechanism 2 are both detachably installed in the drawer groove 412 of the purification box 4 via a drawer-type structure. The side cover 42 is detachably installed on the purification box 4 and is used to cover the drawer groove 412, thereby facilitating the disassembly and assembly of the electronic purification mechanism 1 and the formaldehyde removal mechanism 2 with the purification box 4, and improving the cleaning, replacement and other work of the electronic purification mechanism 1 and the formaldehyde removal mechanism 2.

[0058] In one embodiment, such as Figure 9 As shown, the purification box 4 also includes an elastic element 43 mounted on the side cover 42. The elastic element 43 is used to press the electronic box 16 toward the positive terminal 5 and the negative terminal 6. Understandably, the elastic element 43 includes, but is not limited to, springs, elastic plates, etc.

[0059] Specifically, the electronic purification mechanism 1 is first placed in the drawer recess 412, and then the side cover 42 is installed on the purification box 4. The elastic member 43 will press the electronic purification mechanism 1 inward, so that the positive electrode conductive plate 14 is in close contact with the positive terminal 5, and the negative electrode conductive plate 15 is in close contact with the negative terminal 6, ensuring the stability and stability of the electronic purification mechanism 1 installed on the air purifier.

[0060] In one embodiment, such as Figure 7 and Figure 8 As shown, the purification box 4 also includes a support plate 44 installed on the inner wall of the drawer recess 412. The bottom wall of the drawer recess 412 supports the electronic purification mechanism 1, and the support plate 44 supports the formaldehyde removal mechanism 2. Understandably, the side support ensures that the drawer recess 412 has an upper and lower layer structure. The electronic purification mechanism 1 and the formaldehyde removal mechanism 2 are respectively installed in the upper and lower layers of the drawer recess 412, guaranteeing the stability of the electronic purification mechanism 1 and the formaldehyde removal mechanism 2 within the drawer recess 412.

[0061] In one embodiment, such as Figure 7 and Figure 8 As shown, the drawer recess 412, the air inlet 413, and the air outlet 414 are all located on the side wall of the purification chamber 41. The drawer recess 412 is located between the air inlet 413 and the air outlet 414, and the air inlet 413 and the air outlet 414 are provided on all four sides of the purification chamber 41. It can be understood that the air inlet 413 is located at the lower part of the side of the purification chamber 4, the air outlet 414 is located at the upper part of the side of the purification chamber 4, and the drawer recess 412 is located in the middle of the side of the purification chamber 4, thus improving the aesthetics of the air purifier.

[0062] The above-described embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model, and should all be included within the protection scope of this utility model.

Claims

1. An electronic purification mechanism, characterized in that, It includes an electrostatic adsorber, an ion generator, a high-voltage converter, a positive electrode conductive plate, a negative electrode conductive plate, and an electronic box. The electronic box is provided with a first internal space and a first side hole, a second side hole, a purification air inlet, and a purification air outlet, all of which are connected to the first internal space. The electrostatic adsorber, the ion generator, and the high-voltage converter are all installed in the first internal space, and the electrostatic adsorber and the ion generator are electrically connected to the high-voltage converter. The positive electrode conductive plate is installed in the first side hole and connected to the positive terminal of the high-voltage converter, and the negative electrode conductive plate is installed in the second side hole and connected to the negative terminal of the high-voltage converter.

2. The electronic cleansing mechanism of claim 1, wherein, The electronic box includes an electronic box body and an electronic bottom cover that is detachably installed on the electronic box body. The purification air inlet is located on the electronic bottom cover, and the purification air outlet is located on the electronic box body. The first internal space includes a first receiving slot and a second receiving slot disposed on the electronic housing, and a slot disposed on the electronic bottom cover; the electrostatic adsorber is installed in the first receiving slot, the high voltage converter is installed in the second receiving slot, and the ion generator is snapped into the slot.

3. The electronic cleansing mechanism of claim 2, wherein, The electronic bottom cover includes a bottom plate and an annular vertical plate connected to the bottom plate. The purification air inlet is disposed on the bottom plate, and the annular vertical plate is disposed around the purification air inlet. The inner wall of the electronic housing is provided with protrusions, and the bottom plate is also provided with buckles. The electronic bottom cover is closed onto the electronic housing by the buckles that are snapped onto the protrusions, and the annular vertical plate is inserted into the interior of the electronic housing.

4. The electronic cleansing mechanism of claim 1, wherein, The electrostatic adsorber includes a positive electrode post, a negative electrode post, a support post, multiple electrostatic positive electrode plates, and multiple electrostatic negative electrode plates. Each electrostatic positive electrode plate is provided with a first side groove, a second side groove, and a third side groove. Each electrostatic negative electrode plate is provided with a fourth side groove, a fifth side groove, and a sixth side groove. The electrostatic positive electrode plates and the electrostatic negative electrode plates are arranged alternately. The support post is inserted into all the first side grooves and all the fourth side grooves, and the support post is connected to the inner wall of all the first side grooves and the inner wall of all the third side grooves. The positive electrode post is inserted into all the second side grooves and the fifth side groove, and the positive electrode post is connected to the inner wall of all the second side grooves; The negative electrode post is inserted into all the third side grooves and the sixth side grooves, and the negative electrode post is connected to the inner wall of all the sixth side grooves.

5. The electronic cleansing mechanism of claim 4, wherein, The first side groove is disposed on the front side and / or the rear side of the electrostatic positive electrode plate, and the fourth side groove is disposed on the front side and / or the rear side of the electrostatic negative electrode plate; The second side groove and the third side groove are respectively disposed on the left and right sides of the electrostatic positive electrode plate, and the fifth side groove and the sixth side groove are respectively disposed on the left and right sides of the electrostatic negative electrode plate.

6. The electronic cleansing mechanism of claim 1, wherein, The electronic box has a handle on the outer wall at the end away from the first side hole and the second side hole.

7. An air cleaner characterized by comprising: Includes a formaldehyde removal mechanism, a fan, a controller, a purification box, and an electronic purification mechanism as described in any one of claims 1 to 6; The purification box includes a purification box body and a side cover. The purification box body is provided with a second internal space, a drawer recess, and an air inlet and an air outlet that are both connected to the second internal space. The electronic purification mechanism and the formaldehyde removal mechanism are detachably installed in the drawer recess. The side cover is detachably installed on the purification box body and is used to cover the drawer recess. The drawer recess has a first hole group and a second hole group on its two opposite inner walls, and both the first hole group and the second hole group are connected to the second internal space. The controller and the fan are both installed in the second internal space; the air purifier also includes a positive terminal and a negative terminal, both installed in the drawer recess, and the controller is electrically connected to the fan, the positive terminal, and the negative terminal; When the electronic purification mechanism is installed in the drawer recess, the positive terminal contacts the positive conductive plate, and the negative terminal contacts the negative conductive plate.

8. The air purifier according to claim 7, characterized in that, The purification box also includes an elastic element installed on the side cover, which is used to squeeze the electronic box toward the positive terminal and the negative terminal.

9. The air cleaner of claim 7, wherein, The purification box also includes a support plate installed on the inner wall of the drawer recess, the bottom wall of the drawer recess is used to support the electronic purification mechanism, and the support plate is used to support the formaldehyde removal mechanism.

10. The air cleaner of claim 7, wherein, The drawer recess, the air inlet, and the air outlet are all located on the side wall of the purification chamber. The drawer recess is located between the air inlet and the air outlet, and the air inlet and the air outlet are provided on all four sides of the purification chamber.