Wind power generation sterilization assembly and air conditioner with same
By using a wind-powered sterilization component to generate electricity through triboelectric power generation to drive sterilization, the problem of declining indoor environmental quality caused by bacterial growth inside air conditioners is solved, achieving efficient airflow purification and improvement of the indoor environment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-03-27
AI Technical Summary
During use, bacteria can grow in air conditioners and enter the indoor environment with the airflow, leading to a decline in indoor environmental quality.
Design a wind-powered sterilization component, including a power generation component and a sterilization component. It generates electricity through wind power and performs sterilization under the drive of electricity. It uses the triboelectric power generation principle of the friction component to generate electricity to drive the sterilization process and purify the airflow.
It improves the purity of the air supplied by the air conditioner, enhances the quality of the indoor environment, and improves the user experience.
Smart Images

Figure CN224050487U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a sterilization device technical field especially is related to a wind power generation sterilization subassembly and air conditioner with it. BACKGROUND
[0002] In the prior art, in the use process of the air conditioner, the airflow is introduced into the air conditioner for heat exchange treatment and then acts on the indoor environment to improve the indoor environment. However, bacteria will breed in the air conditioner during long-term use, and the bacteria will circulate into the indoor environment with the airflow, which will further degrade the indoor environment quality. SUMMARY
[0003] The utility model aims at solving one of the technical problems in the prior art. Therefore, one purpose of the utility model is to provide a wind power generation sterilization subassembly, which can generate electricity and sterilize through the circulating airflow in the air conditioner, so that the airflow acting on the indoor environment is purer, and the use of the indoor environment is improved.
[0004] Another purpose of the utility model is to provide an air conditioner, which is provided with the wind power generation sterilization subassembly as described above.
[0005] The wind power generation sterilization subassembly according to the utility model embodiment comprises a power generation part and a sterilization part, the power generation part is configured to generate electricity under the driving of wind power, the sterilization part is connected with the power generation part, and the sterilization part sterilizes under the driving of electricity, the power generation part comprises a driving part and a friction part, the driving part is configured to rotate under the driving of wind power, the driving part is connected with the friction part, and the driving part drives the friction part to rotate and generate electricity, the friction part comprises a first friction part and a second friction part, the second friction part is arranged opposite to the first friction part, and the second friction part is connected with the driving part to drive the second friction part to move frictionally relative to the first friction part to generate electricity.
[0006] The wind power generation sterilization subassembly according to the utility model embodiment drives the airflow to pass through the power generation part in the flow process, so that the power generation part can generate electricity by wind power, and the electricity is supplied to the sterilization part to drive the sterilization part to sterilize, so that the airflow acting on the indoor environment has higher purity to improve the indoor environment quality. Specifically, the power generation part is suitable for driving the driving part and the friction part, the friction part is suitable for comprising the first friction part and the second friction part, and the airflow is suitable for driving the first friction part and the second friction part in the friction part to generate electricity by friction, so as to generate enough electricity for the sterilization part to sterilize.
[0007] In some embodiments, the first friction part is made of nylon, aniline formaldehyde resin, or polyester fur, and the second friction part is made of polytetrafluoroethylene, polydimethylsiloxane, or fluorinated ethylene propylene rubber.
[0008] In some embodiments, by setting the first friction part to nylon or aniline formaldehyde resin and the second friction part to polyester fur, a sufficient potential difference can be generated when the first and second friction parts rub against each other to achieve power generation. This improves the performance of the power generation device during use, enabling it to generate enough electricity to drive the sterilization device to sterilize the airflow.
[0009] In some embodiments, there are two first friction portions disposed opposite to each other, and there are two second friction portions disposed in abutment against the inner sides of the two first friction portions.
[0010] In some embodiments, two first friction portions are arranged opposite to the driving member to allow the first friction portions to have a larger contact area during friction, thereby improving the power generation efficiency of the power generation device. Similarly, two second friction portions are arranged opposite to each other inside the first friction portions to ensure that the first and second friction portions can move and rub against each other when the friction member receives the driving action of the driving member, thus ensuring the power generation function of the power generation device.
[0011] In some embodiments, each of the two first friction portions includes: a plurality of first friction plates spaced apart circumferentially; and / or each of the two second friction portions includes: a plurality of second friction plates spaced apart circumferentially.
[0012] In some embodiments, two first friction portions are arranged opposite to the driving member to allow the first friction portions to have a larger contact area during friction, thereby improving the power generation efficiency of the power generation device. Similarly, two second friction portions are arranged opposite to each other inside the first friction portions to ensure that the first and second friction portions can move and rub against each other when the friction member receives the driving action of the driving member, thus ensuring the power generation function of the power generation device.
[0013] In some embodiments, the driving member includes: a fan body and fan blades, the fan blades being circumferentially spaced on the fan body, the fan blades being used to drive the fan body to rotate, and the second friction portion being disposed on both sides of the fan body.
[0014] In some embodiments, the driving member is adapted to include a fan body and a fan blade in use, the airflow is adapted to act on the fan blade in the flow process, since the fan blade is rotatably connected to the fan body, the airflow is adapted to be transmitted to the fan body through the fan blade after acting on the fan blade, since the fan body is adapted to be assembled in a rotatable manner, the fan blade is adapted to drive the fan body to rotate, and the second friction part is adapted to be correspondingly arranged on both sides of the fan body, so that the fan body drives the second friction part to rotate, since the second friction part is in contact with the first friction part, the fan body drives the first friction part and the second friction part to rub to generate electricity to supply the sterilization member to generate sterilization effect, so that the sterilization member can purify and sterilize the airflow.
[0015] In some embodiments, the friction member further comprises: a central shaft, the first friction part is fixedly connected to the central shaft, and the second friction part rotates relative to the central shaft.
[0016] In some embodiments, the friction member is adapted to rotate based on the central shaft in use, so that the friction member can better rotate and generate electricity by rubbing, thereby enabling the friction member to provide sufficient electricity to enable the sterilization member to play a sterilization role, thereby making the air outlet of the air conditioner purer, enabling the indoor environment to be better improved, and thereby improving the user's experience of using the air conditioner.
[0017] In some embodiments, one end of the central shaft is further provided with a fixing plate, the fixing plate is used to fix the central shaft, and the fixing plate is spaced apart from the friction member.
[0018] In some embodiments, a fixing plate is arranged at one end of the central shaft, and the fixing plate is used for fixation, so that the wind power generation and sterilization assembly can be arranged in the air conditioner, so that the airflow can be better generated and sterilized after passing through the wind power generation and sterilization assembly, and the airflow acting on the indoor environment is purer, thereby improving the user's experience.
[0019] In some embodiments, further comprising: a power supply circuit, the power supply circuit is arranged in the power supply circuit and is electrically connected between the power generation member and the sterilization member.
[0020] In some embodiments, during the structural arrangement of the wind power generation and sterilization assembly, a power supply circuit is arranged between the power generation member and the sterilization member, the power supply circuit is adapted to rectify and boost the power generation of the power generation member, so that the electricity generated by the power generation member is adapted to meet the use of the sterilization member, thereby enabling the wind power generation and sterilization assembly to generate electricity and supply the sterilization member according to the design, so that the use performance of the wind power generation and sterilization assembly is improved, and the use performance of the air conditioner is improved.
[0021] The air conditioner according to the embodiment of the utility model, because the wind power generation sterilization assembly is arranged in the air conditioner, the airflow is driven to pass through the power generation part in the flowing process, so that the power generation part can generate wind power, and the electric quantity is input to the sterilization part to drive the sterilization part to perform sterilization treatment, so that the airflow acting on the indoor environment has higher purity, and the indoor environment quality is better improved.
[0022] The air conditioner according to the embodiment of the utility model, because the wind power generation sterilization assembly is arranged in the air conditioner, the airflow is driven to pass through the power generation part in the flowing process, so that the power generation part can generate wind power, and the electric quantity is input to the sterilization part to drive the sterilization part to perform sterilization treatment, so that the airflow acting on the indoor environment has higher purity, and the indoor environment quality is better improved.
[0023] The air conditioner according to the embodiment of the utility model, because the wind power generation sterilization assembly is arranged in the air conditioner, the airflow is driven to pass through the power generation part in the flowing process, so that the power generation part can generate wind power, and the electric quantity is input to the sterilization part to drive the sterilization part to perform sterilization treatment, so that the airflow acting on the indoor environment has higher purity, and the indoor environment quality is better improved.
[0024] The air conditioner according to the embodiment of the utility model, because the wind power generation sterilization assembly is arranged in the air conditioner, the airflow is driven to pass through the power generation part in the flowing process, so that the power generation part can generate wind power, and the electric quantity is input to the sterilization part to drive the sterilization part to perform sterilization treatment, so that the airflow acting on the indoor environment has higher purity, and the indoor environment quality is better improved.
[0025] Additional aspects and advantages of the utility model will be partially given in the following description, some will become obvious from the following description, or be understood through the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS
[0026] The above and / or additional aspects and advantages of the utility model will become apparent and more readily appreciated from the following description of the embodiments, with reference to the following drawings, in which:
[0027] Figure 1 is the structure schematic view of wind power generation sterilization assembly according to the embodiment of the utility model;
[0028] Figure 2 is the structure schematic view of another angle of wind power generation sterilization assembly according to the embodiment of the utility model;
[0029] Figure 3 is the structure schematic view of other angle of wind power generation sterilization assembly according to the embodiment of the utility model;
[0030] Figure 4It is an explosion structure schematic view of the wind power generation sterilization assembly according to the embodiment of the utility model;
[0031] Figure 5 It is a structure schematic view of the power generation piece according to the embodiment of the utility model;
[0032] Figure 6 It is a structure schematic view of the power generation piece from another angle according to the embodiment of the utility model;
[0033] Figure 7 It is a structure schematic view of the power generation piece from still another angle according to the embodiment of the utility model;
[0034] Figure 8 It is a structure schematic view of the power generation piece from other angles according to the embodiment of the utility model;
[0035] Figure 9 It is an explosion structure schematic view of the power generation piece according to the embodiment of the utility model;
[0036] Figure 10 It is a structure schematic view of the wind power generation sterilization assembly in the indoor air duct according to the embodiment of the utility model;
[0037] Reference signs:
[0038] The wind power generation sterilization assembly 10, the indoor air duct 20,
[0039] The power generation piece 100, the driving piece 110, the fan body 111, the fan blade 112, the friction piece 120, the first friction part 121, the second friction part 122, the first friction sheet 123, the second friction sheet 124, the center shaft 125, the fixed plate 126,
[0040] The sterilization piece 200,
[0041] The power supply circuit 300. Specific implementation
[0042] The embodiment of the utility model is described in detail below, and the embodiment described with reference to the drawings is exemplary, and the embodiment of the utility model is described in detail below.
[0043] The embodiment of the utility model is described in detail below, and the embodiment described with reference to the drawings is exemplary, and the embodiment of the utility model is described in detail below. Figures 1-10 The wind power generation sterilization assembly 10 according to the embodiment of the utility model is described below, which comprises: a power generation piece 100 and a sterilization piece 200.
[0044] Specifically, the power generation part 100 is configured to generate electricity under the driving of wind; the sterilization part 200 is connected with the power generation part 100, and the sterilization part 200 performs sterilization under the driving of electricity; the power generation part 100 comprises a driving part 110 and a friction part 120, the driving part 110 is configured to rotate under the driving of wind; the driving part 110 is connected with the friction part 120, and the driving part 110 is used to drive the friction part 120 to rotate and generate electricity by friction; wherein the friction part 120 comprises a first friction part 121 and a second friction part 122, the second friction part 122 is oppositely arranged with the first friction part 121, and the second friction part 122 is connected with the driving part 110, so as to drive the second friction part 122 to frictionally move relative to the first friction part 121 to generate electricity by friction.
[0045] It should be noted that in the use process of the air conditioner, the airflow is suitable to be introduced into the air conditioner for heat exchange treatment and then to act on the indoor environment, so as to improve the indoor environment. However, bacteria will breed in the air conditioner during long-term use, and the bacteria will circulate into the indoor environment with the airflow, so as to further reduce the quality of the indoor environment.
[0046] Therefore, the wind power generation sterilization assembly 10 is arranged in the air conditioner, and the airflow is suitable to drive the wind power generation sterilization assembly 10 to generate electricity when the airflow passes through the wind power generation sterilization assembly 10. The electricity generated by the wind power generation sterilization assembly 10 is suitable to be input into the sterilization part 200 to sterilize the airflow, so as to purify the airflow acting on the indoor environment, and improve the quality of the indoor environment.
[0047] Specifically, the wind power generation sterilization assembly 10 is suitable to comprise a power generation part 100 and a sterilization part 200, and the power generation part 100 is suitable to generate electricity under the driving of the airflow, so that the wind power generation sterilization assembly 10 can independently supply power during use, and the current can be transmitted through the connection between the power generation part 100 and the sterilization part 200, so that the sterilization part 200 can kill the bacteria in the airflow, so that the airflow acting on the indoor environment is more pure, thereby improving the quality of the indoor environment and improving the user's experience in the indoor environment.
[0048] In some specific embodiments, the power generation part 100 is adapted to include the driving part 110 and the friction part 120, and the wind force is adapted to drive the driving part 110 to rotate, so that the driving part 110 is adapted to drive the friction part 120 to rotate and generate electricity by friction, so as to realize clean power generation and directly act on the sterilization part 200 to sterilize. In some more detailed embodiments, the friction part 120 is adapted to include the first friction part 121 and the second friction part 122, and the driving part 110 is adapted to drive the first friction part 121 and the second friction part 122 to generate electricity by friction during movement, so that the friction part 120 can generate enough electricity to drive the sterilization part 200 to sterilize.
[0049] According to the wind power generation sterilization assembly 10 of the embodiment of the utility model, by driving the airflow to pass through the power generation part 100 in the flow process, the power generation part 100 can generate electricity by wind power, and the electricity is input to the sterilization part 200 to drive the sterilization part 200 to sterilize, so that the airflow acting on the indoor environment has higher purity to better improve the quality of the indoor environment.
[0050] In some embodiments, the first friction part 121 is made of nylon material, aniline formaldehyde resin or polyester fur material, and the second friction part 122 is made of polytetrafluoroethylene (PTFE), polydimethylsiloxane (PDMS) or fluorinated ethylene propylene rubber (FEP). In this way, by setting the first friction part 121 to be made of nylon material, aniline formaldehyde resin or polyester fur material, and setting the second friction part 122 to be made of polytetrafluoroethylene (PTFE), polydimethylsiloxane (PDMS) or fluorinated ethylene propylene rubber (FEP), when the first friction part 121 and the second friction part 122 are rubbed against each other, a sufficient potential difference can be generated to realize the electricity generation effect, so that the use performance of the power generation part 100 in use is improved, so that the power generation part 100 can generate enough electricity to drive the sterilization part 200 to sterilize the airflow.
[0051] Specifically, the outer surface of the first friction part 121 is made of nylon material or aniline formaldehyde resin, which is a first friction electric positive electrode material; the inner surface of the first friction part 121 is made of polyester fur material, which is a second friction electric positive electrode material; the second friction part 122 is made of polytetrafluoroethylene (PTFE), polydimethylsiloxane (PDMS) or fluorinated ethylene propylene rubber (FEP) material, which is a friction electric negative electrode material; when the fan body rotates, the first friction part 121 with six petal shapes does not move, therefore, when the inner surface of the first friction part 121 and the second friction part 122 are rubbed against each other, a potential difference can be generated, and when the outer surface of the first friction part 121 and the second friction part 122 are rubbed against each other, a potential difference can also be generated, so as to realize the electricity generation effect of the power generation part 100.
[0052] In some embodiments, the first friction part 121 is two oppositely arranged, and the second friction part 122 is two and correspondingly arranged on the inner side of the two first friction parts 121. It can be understood that the first friction part 121 is arranged to be two opposite to the driving part 110, so that the first friction part 121 has a larger contact area during friction, so that the power generation efficiency of the power generation part 100 is improved. Similarly, the second friction part 122 is arranged to be two and oppositely arranged on the inner side of the first friction part 121, so that when the friction part 120 receives the driving action of the driving part 110, the first friction part 121 and the second friction part 122 can be relatively moved to ensure that the power generation part 100 can generate power.
[0053] In some embodiments, the two first friction parts 121 each include a plurality of first friction plates 123 arranged circumferentially and spaced apart; and / or the two second friction parts 122 each include a plurality of second friction plates 124 arranged circumferentially and spaced apart. It should be noted that during the construction of the first friction part 121, a plurality of circumferentially spaced first friction plates 123 are used, and the first friction plates 123 are arranged to generate a stable potential difference when the first friction part 121 and the second friction part 122 are rubbed, so that the friction part 120 can provide sufficient power to drive the sterilization part 200 during use, so that the sterilization part 200 can better sterilize the airflow, so that the wind power generation sterilization assembly 10 can provide better sterilization effect to simplify the airflow, so that the air conditioner can better purify the airflow during use, so that the indoor environment quality is more reliably improved.
[0054] In some embodiments, the driving part 110 includes a fan body 111 and a fan blade 112, the fan blade 112 is circumferentially spaced apart on the fan body 111, the fan blade 112 is used to drive the fan body 111 to rotate, and the second friction part 122 is arranged on both sides of the fan body 111. It can be understood that the driving part 110 in use is adapted to include a fan body 111 and a fan blade 112, and the airflow in the flow process is adapted to act on the fan blade 112. Since the fan blade 112 is rotatably connected to the fan body 111, the airflow acting on the fan blade 112 is adapted to be transmitted to the fan body 111 through the fan blade 112. Since the fan body 111 is adapted to be rotatably assembled, the fan blade 112 is adapted to drive the fan body 111 to rotate, and the second friction part 122 is adapted to be correspondingly arranged on both sides of the fan body 111. The fan body 111 drives the second friction part 122 to rotate, and the second friction part 122 rubs with the first friction part 121 to generate electricity to supply the sterilization part 200 to generate sterilization effect, so that the sterilization part 200 can purify and sterilize the airflow.
[0055] In some specific embodiments, the fan body 111 and the fan blade 112 are also adapted to be constructed by using light-weight materials, which can reduce the weight and facilitate the airflow to drive the driving member 110, so that the driving member 110 can still generate electricity to ensure the use of the sterilization member 200 under the condition of relatively small airflow, thereby enabling the air conditioner to sterilize the airflow during use, so as to provide purer airflow to improve the indoor environment and thus improve the user's experience.
[0056] In some embodiments, the friction member 120 further comprises a central shaft 125, and the first friction part 121 is fixedly connected to the central shaft 125, and the second friction part 122 rotates relative to the central shaft 125. It can be understood that the friction member 120 is also adapted to comprise the central shaft 125, which is adapted to provide a rotation center for the rotation of the friction member 120, so that the fan body 111 can rotate around the central shaft 125. In this way, the friction member 120 is adapted to rotate based on the central shaft 125 during use, so that the friction member 120 can better generate electricity by rotating and rubbing, thereby providing sufficient electricity to enable the sterilization member 200 to play a sterilization role, so that the air outlet of the air conditioner is purer, the indoor environment can be better improved, and thus the user's experience of using the air conditioner is improved.
[0057] In some embodiments, one end of the central shaft 125 is further provided with a fixing plate 126, and the fixing plate 126 is used to fix the central shaft 125, and the fixing plate 126 is spaced apart from the friction member 120. It can be understood that the fixing plate 126 is arranged at one end of the central shaft 125, and is fixed by using the fixing plate 126, so that the wind power generation and sterilization assembly 10 can be arranged in the air conditioner, so that the airflow can better pass through the wind power generation and sterilization assembly 10 to generate electricity and sterilize, so that the airflow acting on the indoor environment is purer, thereby improving the user's experience.
[0058] In some embodiments, the wind power generation and sterilization assembly 10 further comprises a power supply circuit 300, and the power supply circuit 300 is electrically connected between the power generation member 100 and the sterilization member 200. It can be understood that during the structural arrangement of the wind power generation and sterilization assembly 10, the power supply circuit 300 is adapted to be arranged between the power generation member 100 and the sterilization member 200, and the power supply circuit 300 is adapted to rectify and boost the power generation of the power generation member 100, so that the electricity generated by the power generation member 100 is adapted to meet the use of the sterilization member 200, thereby enabling the wind power generation and sterilization assembly 10 to generate electricity according to the design and supply the sterilization member 200, so that the use performance of the wind power generation and sterilization assembly 10 is improved, and the use performance of the air conditioner is improved.
[0059] The air conditioner according to the embodiment of the utility model, including: Indoor air duct 20, indoor fan and above-mentioned wind power generation sterilization subassembly 10, indoor fan is located in indoor air duct 20, indoor fan is used to drive airflow to circulate in the room;Wind power generation sterilization subassembly 10 is located in indoor air duct 20.
[0060] It can be understood that in the construction process of the air conditioner, the indoor air duct 20 is adapted to be constructed to allow the airflow to be introduced into the indoor air duct 20 after heat exchange, so that the indoor fan is adapted to drive the airflow to act on the indoor environment to improve the indoor environment quality, and the above-mentioned wind power generation sterilization subassembly 10 is arranged in the indoor air duct 20, so that the airflow driven by the indoor fan can provide a better driving effect to drive the wind power generation sterilization subassembly 10 to generate electricity and sterilize, so that the air conditioner can provide cleaner airflow to improve the indoor environment quality during use, and the use of the air conditioner is improved.
[0061] In this way, since the wind power generation sterilization subassembly 10 is arranged in the air conditioner, the airflow is driven to pass through the power generation part 100 during the flow process, so that the power generation part 100 can generate electricity, and the electricity is introduced into the sterilization part 200 to drive the sterilization part 200 to perform sterilization treatment, so that the airflow acting on the indoor environment has higher purity to better improve the indoor environment quality.
[0062] The air conditioner according to the embodiment of the utility model, including: air inlet duct, fresh air duct, fresh air fan and above-mentioned wind power generation sterilization subassembly 10, fresh air duct is spaced apart from air inlet duct;Fresh air fan is located in fresh air duct;Wind power generation sterilization subassembly 10 is located in air inlet duct or fresh air duct.
[0063] It can be understood that in the use process of the air conditioner, the airflow not only circulates in the indoor air duct 20, but also introduces the airflow into the air inlet duct to circulate, so that the wind power generation sterilization subassembly 10 can be adapted to be arranged in the air inlet duct to generate electricity and sterilize, so that the airflow flowing into the air conditioner is more pure. Similarly, in the use process of the existing air conditioner, fresh air is also adapted to circulate, and the wind power generation sterilization subassembly 10 can also be adapted to be arranged in the fresh air channel to generate electricity and sterilize during the flow process of the fresh air, so that the fresh air is more pure, and the indoor environment quality is better improved.
[0064] Thus, since the wind power generation sterilization assembly 10 as shown above is arranged in the air conditioner, the indoor air flow or the fresh air flow is adapted to pass through the power generation element 100 during the flow process, so that the power generation element 100 can generate wind power, and the electric quantity is input to the sterilization element 200 to drive the sterilization element 200 to perform sterilization treatment, so that the air flow acting on the indoor environment has higher purity to better improve the indoor environment quality.
[0065] Other configurations and operations of the air conditioner according to the embodiments of the present application are known to those skilled in the art, and will not be described in detail herein.
[0066] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the exemplary description of the above terms does not necessarily mean the same embodiment or example.
[0067] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.
Claims
1. A wind power generation sterilization assembly, comprising: a power generation component configured to generate power under wind driving; a sterilization component connected with the power generation component, the sterilization component sterilizing under electric driving; characterized in that the power generation component comprises: a driving component configured to rotate under wind driving; a friction component connected with the driving component, the driving component driving the friction component to rotate and generate power by friction; wherein the friction component comprises: a first friction part; a second friction part oppositely arranged with the first friction part, the second friction part connected with the driving component to drive the second friction part to move by friction relative to the first friction part to generate power by friction.
2. The wind power sterilization assembly according to claim 1, characterized in that, The first friction part is made of nylon, aniline formaldehyde resin or polyester fur, and the second friction part is made of polytetrafluoroethylene, polydimethylsiloxane or fluorinated ethylene propylene rubber.
3. The wind power sterilization assembly according to claim 1, characterized in that, The first friction part is oppositely arranged in two, and the second friction part is oppositely arranged in two and correspondingly arranged on the inner side of the two first friction parts.
4. The wind power sterilization assembly according to claim 3, characterized in that, The first friction part comprises a plurality of first friction plates arranged circumferentially and spaced apart; and / or The second friction part comprises a plurality of second friction plates arranged circumferentially and spaced apart.
5. The wind power sterilization assembly according to claim 1, wherein, The driving component comprises a fan body and fan blades arranged circumferentially and spaced apart on the fan body, the fan blades driving the fan body to rotate, and the second friction part arranged on both sides of the fan body.
6. The wind power sterilization assembly according to claim 1, wherein, The friction component further comprises: a central shaft, the first friction part fixedly connected to the central shaft, and the second friction part rotating relative to the central shaft.
7. The wind power sterilization assembly according to claim 6, characterized in that, One end of the central shaft is further provided with a fixing plate for fixing the central shaft, and the fixing plate is arranged spaced apart from the friction component.
8. The wind power sterilization assembly according to claim 1, characterized in that, Further comprising: a power supply circuit, the power supply circuit arranged in the power supply circuit and electrically connected between the power generation component and the sterilization component.
9. An air conditioner characterized by comprising: comprising: an indoor air duct; an indoor fan arranged in the indoor air duct, the indoor fan driving air flow to circulate in the room; the wind power generation sterilization assembly according to any one of claims 1-8, the wind power generation sterilization assembly arranged in the indoor air duct.
10. An air conditioner characterized by comprising: comprising: an air inlet duct; a fresh air duct arranged spaced apart from the air inlet duct; a fresh air fan arranged in the fresh air duct; the wind power generation sterilization assembly according to any one of claims 1-8, the wind power generation sterilization assembly arranged in the air inlet duct or the fresh air duct.