Ion wind air conditioner

By setting up multiple ion wind components in the ion wind air conditioner in a vertical arrangement and using control components to adjust the quantity and concentration of ion wind, the energy consumption and safety issues caused by voltage regulation in the prior art are solved, and safer and more flexible ion wind control is achieved.

CN119713412BActive Publication Date: 2026-01-16NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Application Number
CN202311223271.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-21
Publication Date
2026-01-16
Estimated Expiration
2043-09-21

AI Technical Summary

Technical Problem

In existing ion air conditioners, the adjustment of ion concentration and air volume is mainly achieved by changing the voltage, which leads to increased energy consumption and poses safety hazards.

Method used

Multiple ion wind components are arranged in a lifting and lowering manner on the control component. The size and concentration of the ion wind are adjusted by changing the number of ion wind components, and the stable lifting and lowering of the components is achieved by combining a simple transmission structure.

Benefits of technology

It enables flexible adjustment of ion wind size and concentration, avoids the safety hazards of increased single voltage, and improves user experience and effectiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an ion wind air conditioner, which comprises a shell, an air outlet, a control assembly and a plurality of ion wind assemblies. The shell is provided with a containing space. The air outlet is arranged in the containing space. The control assembly is arranged in the containing space. The plurality of ion wind assemblies are arranged in the control assembly in a lifting manner, and the lifting tracks of the plurality of ion wind assemblies pass through the air outlet. The number of the ion wind assemblies located at the air outlet is changed by changing the lifting of the plurality of ion wind assemblies. The application makes the adjustment of the ion wind size more convenient and safe.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of air conditioners, in particular to an ion wind air conditioner. BACKGROUND

[0002] With the development of air conditioning technology, various air conditioners emerge in endlessly. In order to adapt to the needs of various users and various scenes, the structure and content of air conditioners are constantly updated. Negative ion technology refers to the wind blown by the air conditioner containing negative ions. Negative ions are a kind of substance beneficial to the body, especially for people with heart and brain diseases, which can improve the body's immunity and reduce the probability of disease. The air conditioner can release negative ions, which can combine with viruses and mold to cause structural changes and energy transfer, leading to the death of viruses, and can also combine with air dust and dust particles to produce sediment, creating fresh indoor air. However, the ion concentration and air volume of the ion wind air conditioner are mostly changed by voltage, and changing the voltage not only increases energy consumption, but also has safety hazards. SUMMARY

[0003] Therefore, the embodiment of the present application provides an ion wind air conditioner, which makes the adjustment of ion wind size more convenient and safe.

[0004] To solve the above problems, the present application provides an ion wind air conditioner, which comprises: a shell, the shell is provided with a containing space; an air outlet, the air outlet is arranged in the containing space; a control assembly, the control assembly is arranged in the containing space; a plurality of ion wind assemblies, the plurality of ion wind assemblies are arranged in the control assembly in a lifting manner, and the lifting tracks of the plurality of ion wind assemblies pass through the air outlet; wherein the number of ion wind assemblies located at the air outlet is changed by changing the lifting of the plurality of ion wind assemblies.

[0005] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by arranging a plurality of ion wind assemblies in a lifting manner on the control assembly, and by controlling the lifting of the plurality of ion wind assemblies, different numbers of ion wind assemblies can be located at the air outlet, so that the purpose of changing the size of ion wind outlet is achieved by changing the number of ion wind assemblies, which is not only simple to operate and simple in structure, but also avoids the safety hazards caused by single voltage increase. Moreover, by lifting the plurality of ion wind assemblies, the outlet height and ion concentration of the ion wind can also be changed, so that the use effect of the ion wind is better and the user's use experience is better.

[0006] In an example of the present application, each ion wind assembly comprises: a first fixing member, the first fixing member is provided with a first opening; a power generation part, the power generation part is arranged on one side of the first fixing member close to the first opening; a receiving part, the receiving part is arranged on one side of the first fixing member close to the first opening and away from the power generation part; a matching part, the matching part is rotatably arranged on the first fixing member, and the matching part is used to cooperate with the control assembly to lift the ion wind assembly to the control assembly.

[0007] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by setting the first fixing member with the first opening, and setting the power generation part and the receiving part on the two sides of the first opening, the power generation part and the receiving part can cooperate to form ion wind, and the ion wind is blown out through the first opening; meanwhile, by setting the matching part to cooperate with the control assembly, the lifting of the ion wind assembly is more convenient and stable, and the lifting structure is simple, and does not occupy more internal space, and does not affect the normal operation of other components.

[0008] In an example of the present application, the power generation part further comprises: two second fixing members, the two second fixing members are oppositely arranged on the two sides of the first opening; and a power generation piece mounting position, the power generation piece mounting position is arranged on the two second fixing members, and is used for mounting the power generation piece, so that the power generation piece is detachably arranged between the two second fixing members.

[0009] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by setting the two second fixing members on the two sides of the first opening, and setting the power generation piece mounting position, the power generation piece is detachably arranged between the two fixing members, so that the power generation piece is more convenient to install; by setting the power generation piece mounting position, the power generation piece is positioned faster, and subsequent replacement or maintenance is more convenient; meanwhile, by setting the power generation piece mounting positions at the two ends, the power generation piece is more stably fixed, stable power generation is ensured, and stable ion wind is formed.

[0010] In an example of the present application, the power generation piece is provided with a plurality of arranged sharp end protrusions, and the sharp end protrusions are directed towards the first opening and the receiving part.

[0011] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by setting the power generation piece with a plurality of arranged sharp end protrusions, the discharge is performed through the sharp end protrusions, so that the discharge process is more stable, the density of ions is improved, the ion beam formed by discharge can travel farther, the formation of ion wind is more stable, and meanwhile, by setting the sharp end protrusions to be directed towards the first opening and the receiving part, the sharp end discharge is received by the receiving part after passing through the first opening, and ion wind is formed.

[0012] In an example of the present application, the receiving part comprises: the first opening is provided with oppositely arranged first and second sides; and two receiving pieces, the two receiving pieces are oppositely arranged on the first and second sides, respectively.

[0013] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by setting the two receiving pieces on the two sides of the first opening, the two receiving parts can cooperate to form ion wind from the ion beam coming out of the first opening, and the ion wind formed by the two sides is more stable, so that the effect is better, and users have a better use experience.

[0014] In one example of the present application, the ion wind air conditioner further comprises: the control assembly is provided with two rotating parts arranged oppositely, and the control assembly is further provided with a transmission part around the two rotating parts; a power member connected to the two rotating parts; wherein the power member drives the two rotating parts to rotate, thereby driving the transmission part to slide, and the transmission part and the matching part match to make the ion wind assembly ascend and descend.

[0015] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by arranging two rotating parts to drive the transmission part to slide, the transmission part can match with the matching part to make the ion wind assembly ascend and descend, and by a simple transmission structure, the ascending and descending of the ion wind assembly is more simple and stable, the structure is convenient to arrange and quick to install, does not affect other components inside, and the ion wind formed by the ion wind assembly is also more stable.

[0016] In one example of the present application, each ion wind assembly further comprises: a first fixing member provided with a first surface and a second surface arranged oppositely; a protruding part arranged on the first surface; and a matching groove arranged on the second surface; wherein the protruding part and the matching groove of adjacent two ion wind assemblies in the plurality of ion wind assemblies match to fix the adjacent ion wind assemblies.

[0017] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by arranging the protruding part on the first surface and the matching groove on the second surface, the adjacent two ion wind assemblies can be fixed by means of the protruding part and the matching groove, so as to prevent shaking and thereby causing unstable air outlet of the ion wind, thereby reducing the user experience, and after the protruding part and the matching groove match, the overall plurality of ion wind assemblies are also more stable when ascending and descending.

[0018] In one example of the present application, the ion wind air conditioner further comprises: a spacing part arranged in the accommodation space, and the spacing part divides the accommodation space into a first space and a second space; an air outlet, a control assembly and a plurality of ion wind assemblies arranged in the first space.

[0019] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by arranging the spacing part in the accommodation space, dividing the accommodation space into the first space and the second space by the spacing part, and arranging the air outlet, the control assembly and the plurality of ion wind assemblies in the first space, the above components do not affect the normal work of the rest of the air conditioner, can work independently, makes the user's choice more diversified, is not limited, and the experience is better.

[0020] In one example of the present application, the ion wind air conditioner further comprises: a second opening arranged on the shell and communicating with the first space; and a switch assembly cover arranged on the second opening, the switch assembly being used for shielding the second opening.

[0021] Compared with the prior art, the technical effects achieved by adopting the technical scheme are as follows: the second opening is communicated with the first space, and the switch assembly is arranged on the second opening, so that the opening and closing of the second opening is controlled by the switch assembly, the assembly can be protected when the ion wind function is not used, and the service life of the component is longer.

[0022] In an example of the present application, the switch assembly further comprises: a third fixing member arranged on the shell; a first sliding member slidingly arranged on one side of the third fixing member close to the first space; and a second power member connected to the first sliding member and providing power for the first sliding member; wherein the opening and closing of the second opening is controlled by the sliding of the first sliding member.

[0023] Compared with the prior art, the technical effects achieved by adopting the technical scheme are as follows: the third fixing member and the first sliding member are arranged in cooperation, the opening and closing of the second opening is realized by the sliding of the first sliding member, the opening and closing of the second opening is more convenient and fast, and the structure is simple and the installation is convenient.

[0024] After adopting the technical scheme of the present application, the following technical effects can be achieved:

[0025] (1) A plurality of ion wind assemblies are arranged in lifting arrangement on the control assembly, and the lifting of the plurality of ion wind assemblies is controlled, so that different numbers of ion wind assemblies can be located at the air outlet, the number of ion wind assemblies is changed to change the size of the ion wind outlet, the control is simple, the structure is simple, the safety hazard of single voltage increase is avoided, and the lifting of the plurality of ion wind assemblies can also change the height of the ion wind outlet and the ion concentration, so that the use effect of the ion wind is better and the user's use experience is better. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0027] Figure 1 A structure schematic diagram of an ion wind air conditioner is provided for the embodiments of the present application.

[0028] Figure 2 A partial structure schematic diagram of an ion wind air conditioner is provided for the embodiments of the present application.

[0029] Figure 3A local structure schematic view of the ion wind air conditioner according to the embodiment of the present application.

[0030] Figure 4 A local structure schematic view of the ion wind air conditioner according to the embodiment of the present application.

[0031] Figure 5 A local structure schematic view of the ion wind air conditioner according to the embodiment of the present application.

[0032] Figure 6 A local structure schematic view of the ion wind air conditioner according to the embodiment of the present application.

[0033] Explanation of reference signs:

[0034] 100 is an ion wind air conditioner; 110 is a shell; 111 is an air outlet; 130 is a control assembly; 131 is a rotating part; 132 is a transmission part; 140 is an ion wind assembly; 141 is a first fixing part; 141a is a first surface; 141b is a second surface; 142 is a matching part; 143 is a second fixing part; 144 is a power generation part installation site; 145 is a power generation part; 146 is a first opening; 146a is a first side; 146b is a second side; 147 is a receiving part; 148 is a protruding part; 149 is a matching groove; 150 is a spacing part; 151 is a first space; 152 is a second space; 160 is a second opening; 170 is a third fixing part; 180 is a first sliding part. DETAILED DESCRIPTION

[0035] In order to make the above objectives, characteristics and advantages of the present application more obvious and easy to understand, the technical solutions in the embodiments of the present application are described clearly and completely. Obviously, the described embodiments are only some of the embodiments of the present application, but not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0036]

First embodiment

[0037] Reference Figures 1-6 An ion wind air conditioner 100, which comprises: a shell 110, the shell 110 being provided with a containing space; an air outlet 111, the air outlet 111 being arranged in the containing space; a control assembly 130, the control assembly 130 being arranged in the containing space; a plurality of ion wind assemblies 140, the plurality of ion wind assemblies 140 being arranged in the control assembly 130 in a lifting manner, and the lifting track of the plurality of ion wind assemblies 140 passing through the air outlet 111; wherein the number of the ion wind assemblies 140 located at the air outlet 111 is changed by changing the lifting of the plurality of ion wind assemblies 140.

[0038] Specifically, during the installation of the assembly, the partition 150 is first installed in the accommodating space of the air conditioner. It can be understood that the partition 150 is arranged at a position to separate a first space 151 from the air conditioner, and the remaining space, i.e., a second space 152, is used to accommodate components for realizing the normal functions of the air conditioner. The first space 151 is used to install the air outlet 111, the control assembly 130, and the plurality of ion wind assemblies 140.

[0039] Further, the partition 150 can be provided with a switch capable of being controlled to open and close, so that the first space 151 and the second space 152 can be communicated, and the communication can be controlled by a human being. The control mode can be realized by a control structure connected with a remote control signal, such as a remote control of a deflector.

[0040] Specifically, the air outlet 111 is arranged to guide the air from the original air outlet structure of the air conditioner into the first space 151 through a pipeline. Alternatively, a fan structure controlled by a remote control can be separately arranged. The guiding structure can be designed according to actual conditions, so that the utilization efficiency of the air outlet of the air conditioner is higher. At the same time, a separate fan is not needed, so that the noise and cost are reduced. The fan structure can be controlled independently, so that the independent functions of the ion wind and the normal air outlet of the air conditioner are realized, and the user can use more conveniently.

[0041] Further, the control assembly 130 can be installed in the first space 151 near the air outlet 111 by means of a bolt. The power member can be a servo motor. The rotating part 131 and the transmission part 132 can be a gear and a rack. The matching part 142 arranged on the first fixing member 141 can also be a gear. Through the cooperation of the gear and the rack, the first fixing member 141, i.e., the ion wind assembly 140, is lifted. The initial positions of the plurality of ion wind assemblies 140 are above the air outlet 111. The power member can be provided with a control program and be matched with a remote control. For example, if the ion wind needs to be increased, after the remote control instruction is issued, the power member is started, so that the rotating part 131 drives the transmission part 132 to start sliding, and then drives the ion wind assembly 140 to start descending.

[0042] Preferably, the instruction is multi-grade. Each grade of instruction corresponds to a different number of ion wind assemblies 140 from small to large. For example, if one grade of ion wind is increased, one ion wind assembly 140 is lowered to the air outlet 111, and the process is repeated until all the ion wind assemblies 140 are lowered. If the ion wind intensity is reduced, the ion wind assemblies 140 are raised.

[0043] Specifically, the power generation part of the ion wind assembly 140 is connected with the power supply of the air conditioner, or a separate power supply can be separately arranged. After being started, the power generation part is powered to perform tip discharge, and then the receiving part is ionized to ionize the air, i.e., the air outlet 111, to form ion wind. The receiving part can be two electrode plates.

[0044] Further, in use, the ion wind can be linked with the remote control, such as setting an ion wind start button and an ion wind gear adjustment button on the remote control. After the start button is pressed, the first switch assembly is started, and the second power component is started. The second power component can be a cylinder, and the first sliding component 180 is an extension plate connected to the second fixed component 143 through a guide rail. The second power component pulls up the first sliding component 180, so that the first sliding component 180 is exposed to the second opening 160, and the ion wind assembly 140 and the control assembly 130 are also started correspondingly. When the ion wind gear is adjusted through the button, the ion wind assembly 140 is controlled to rise and fall through the control assembly 130, and the number of ion wind assemblies 140 shielding the air outlet 111 is changed to adjust.

[0045] Preferably, a plurality of ion wind assemblies 140 are arranged on the control assembly 130 by being raised and lowered, and the number of ion wind assemblies 140 located at the air outlet 111 is changed by controlling the raising and lowering of the plurality of ion wind assemblies 140, so that the size of the ion wind outlet is changed by changing the number of ion wind assemblies 140. Not only is the operation simple and the structure simple, but also the safety hazard of single voltage increase is avoided, and the height of the ion wind outlet and the ion concentration are changed by the raising and lowering of the plurality of ion wind assemblies 140, so that the use effect of the ion wind is better and the user's use experience is better.

[0046] Specifically, each ion wind assembly 140 comprises: a first fixed component 141, the first fixed component 141 being provided with a first opening 146; a power generation part, the power generation part being arranged on one side of the first fixed component 141 close to the first opening 146; a receiving part, the receiving part being arranged on one side of the first fixed component 141 close to the first opening 146 and away from the power generation part; a matching part 142, the matching part 142 being rotatably arranged on the first fixed component 141, and the matching part 142 being used to cooperate with the control assembly 130 to make the ion wind assembly 140 rise and fall on the control assembly 130.

[0047] Preferably, the first fixed component 141 is provided with the first opening 146, and the power generation part and the receiving part are arranged on both sides of the first opening 146 respectively, so that the power generation part and the receiving part cooperate to form ion wind and blow out through the first opening 146. At the same time, the matching part 142 cooperates with the control assembly 130, so that the ion wind assembly 140 is more convenient and stable in rising and falling, and the rising and falling structure is simple and does not occupy more internal space to affect the normal operation of other components.

[0048] Specifically, the power generation part further comprises: two second fixing members 143, which are oppositely arranged at two sides of the first opening 146; and a power generation member mounting position 144, which is arranged on the two second fixing members 143 and is used for mounting the power generation member 145, so that the power generation member 145 is detachably arranged between the two second fixing members 143.

[0049] Preferably, the two second fixing members 143 are arranged at two sides of the first opening 146, and the power generation member mounting position 144 is arranged, so that the power generation member 145 is detachably arranged between the two fixing members, and the power generation member 145 is more convenient to install. The power generation member 145 is positioned more quickly through the arrangement of the power generation member mounting position 144, and subsequent replacement or maintenance is also more convenient. The power generation member 145 is more stable through the arrangement of the power generation member mounting position 144 at two ends, so as to ensure stable power generation and form stable ion wind.

[0050] Specifically, the power generation member 145 is provided with a plurality of arranged sharp protrusions, and the sharp protrusions are directed towards the first opening 146 and the receiving part.

[0051] Preferably, the power generation member 145 is provided with a plurality of arranged sharp protrusions, and the sharp protrusions are directed towards the first opening 146 and the receiving part.

[0052] Specifically, the receiving part comprises: the first opening 146 is provided with oppositely arranged first and second sides 146a and 146b; and two receiving members 147, which are oppositely arranged at the first and second sides 146a and 146b, respectively.

[0053] Preferably, the two receiving members 147 are arranged at two sides of the first opening 146, so that the two receiving parts can cooperate to form ion wind from the ion beam coming out of the first opening 146, and the arrangement of the two sides makes the formed ion wind more stable, so as to make the effect better and bring better use experience to the user.

[0054] Specifically, the ion wind air conditioner 100 further comprises: a control assembly 130, which is provided with oppositely arranged two rotating parts 131 and is further provided with a transmission part 132, the transmission part 132 being arranged around the two rotating parts 131; and a power member, which is connected to the two rotating parts 131; wherein the power member drives the two rotating parts 131 to rotate, and further drives the transmission part 132 to slide, the transmission part 132 and the matching part 142 cooperate to make the ion wind assembly 140 ascend and descend.

[0055] Preferably, the transmission part 132 is driven to slide by setting two rotating parts 131, so that the transmission part 132 can cooperate with the matching part 142, so that the ion wind assembly 140 is lifted and lowered, and the lifting and lowering of the ion wind assembly 140 is more simple and stable through a simple transmission structure, and the structure is convenient to set and fast to install, and does not affect other internal components, so that the ion wind formed by the ion wind assembly 140 is also more stable.

[0056] Specifically, each ion wind assembly 140 further comprises: a first fixing part 141 provided with oppositely arranged first and second faces 141a and 141b; a protruding part 148 provided on the first face 141a; and a matching groove 149 provided on the second face 141b; wherein the protruding parts 148 and the matching grooves 149 of adjacent two ion wind assemblies 140 in the plurality of ion wind assemblies 140 cooperate to fix the adjacent ion wind assemblies 140.

[0057] Preferably, the protruding part 148 is arranged on the first face 141a, and the matching groove 149 is arranged on the second face 141b, so that the adjacent two ion wind assemblies 140 can be fixed by means of the protruding part 148 and the matching groove 149, preventing shaking and thus unstable ion wind, thereby reducing the user's experience, and the protruding part 148 and the matching groove 149 cooperate to make the overall plurality of ion wind assemblies 140 more stable when lifting and lowering.

[0058] Specifically, the ion wind air conditioner 100 further comprises: a spacing part 150 arranged in the accommodation space, and the spacing part 150 divides the accommodation space into a first space 151 and a second space 152; the air outlet 111, the control assembly 130 and the plurality of ion wind assemblies 140 are arranged in the first space 151.

[0059] Preferably, the spacing part 150 is arranged in the accommodation space, the accommodation space is divided into the first space 151 and the second space 152 by the spacing part 150, and the air outlet 111, the control assembly 130 and the plurality of ion wind assemblies 140 are arranged in the first space 151, so that the above components do not affect the normal work of the rest of the air conditioner and can work independently, making the user's choice more diversified and not limited, and the experience is better.

[0060] Specifically, the ion wind air conditioner 100 further comprises: a second opening 160 arranged in the housing 110 and communicating with the first space 151; and a switch assembly arranged on the second opening 160 and used for shielding the second opening 160.

[0061] Preferably, the first space 151 is communicated with the second opening 160, and the switch assembly is arranged on the second opening 160, so that the switch of the second opening 160 is controlled by the switch assembly, and the assembly can be protected when the ion wind function is not used, and the service life of the components is longer.

[0062] Specifically, the switch assembly further comprises a third fixing member 170 arranged on the shell 110, and a first sliding member 180 slidingly arranged on one side of the third fixing member 170 close to the first space 151, wherein the opening and closing of the second opening 160 is controlled by the sliding of the first sliding member 180.

[0063] Preferably, the third fixing member 170 and the first sliding member 180 are arranged in cooperation, and the opening and closing of the second opening 160 is realized by the sliding of the first sliding member 180, so that the opening and closing of the second opening 160 is more convenient and fast, and the structure is simple and the installation is convenient.

[0064] Finally, it should be noted that: the above examples are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing examples, or make equivalent replacement for part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. An ion wind air conditioner characterized by comprising: The ion wind air conditioner comprises: a shell (110) provided with a containing space; an air outlet (111) provided in the containing space; a control assembly (130) provided in the containing space, the control assembly (130) being bolted close to the air outlet (111); a plurality of ion wind assemblies (140) arranged in the control assembly (130) in a lifting manner, and the lifting tracks of the ion wind assemblies (140) passing through the air outlet (111); wherein the number of ion wind assemblies (140) located at the air outlet (111) is changed by changing the lifting of the ion wind assemblies (140).

2. The ionic wind air conditioner of claim 1, wherein, Each of the ion wind assemblies (140) comprises: a first fixing member (141) provided with a first opening (146); a power generation part provided on one side of the first fixing member (141) close to the first opening (146); a receiving part provided on one side of the first fixing member (141) close to the first opening (146) and away from the power generation part; a matching part (142) rotatably provided on the first fixing member (141), the matching part (142) being used for cooperating with the control assembly (130) to lift the ion wind assembly (140) to the control assembly (130).

3. The ionic wind air conditioner of claim 2, wherein, The power generation part further comprises: two second fixing members (143) oppositely provided on both sides of the first opening (146); a power generation part mounting position (144) provided on the two second fixing members (143), the power generation part mounting position (144) being used for mounting a power generation part (145) so that the power generation part (145) is detachably arranged between the two second fixing members (143).

4. The ion wind air conditioner according to claim 3, wherein the power generation part (145) is provided with a plurality of arranged sharp end protrusions, and the sharp end protrusions are directed towards the first opening (146) and the receiving part.

5. The ionic wind air conditioner of claim 2, wherein, The receiving part comprises: the first opening (146) is provided with a first side (146a) and a second side (146b) arranged oppositely; two receiving parts (147) oppositely arranged on the first side (146a) and the second side (146b), respectively.

6. The ionic wind air conditioner of claim 2, wherein, The ion wind air conditioner further comprises: the control assembly (130) is provided with two rotating parts (131) arranged oppositely, and the control assembly (130) is further provided with a transmission part (132) arranged around the two rotating parts (131); a power part connected to the two rotating parts (131). The power member drives the two rotating parts 131 to rotate, and further drives the transmission part 132 to slide. The transmission part 132 and the matching part 142 are matched, so that the ion wind assembly 140 is lifted and lowered.

7. The ionic wind air conditioner of claim 2, wherein, Each ion wind assembly 140 further comprises: The first fixing member 141 is provided with a first surface 141a and a second surface 141b arranged oppositely; The protruding part 148 is arranged on the first surface 141a; The matching groove 149 is arranged on the second surface 141b; The protruding part 148 and the matching groove 149 of two adjacent ion wind assemblies 140 in the plurality of ion wind assemblies 140 are matched, so that the adjacent ion wind assemblies 140 are fixed.

8. The ion wind air conditioner of claim 1, wherein, The ion wind air conditioner further comprises: The spacing part 150 is arranged in the accommodation space, and the spacing part 150 divides the accommodation space into a first space 151 and a second space 152; The air outlet 111, the control assembly 130, and the plurality of ion wind assemblies 140 are arranged in the first space 151.

9. The ion wind air conditioner according to claim 8, characterized in that, The ion wind air conditioner further comprises: The second opening 160 is arranged in the shell 110, and the second opening 160 communicates with the first space 151; The switch assembly is arranged on the second opening 160, and the switch assembly is used for shielding the second opening 160.

10. The ion wind air conditioner of claim 9, wherein, The switch assembly further comprises: The third fixing member 170 is arranged on the shell 110; The first sliding member 180 is slidingly arranged on one side of the third fixing member 170 close to the first space 151; The second power member is connected to the first sliding member 180, and provides power for the first sliding member 180; The opening and closing of the second opening 160 are controlled by the sliding of the first sliding member 180.

Citation Information

Patent Citations

  • Ion wind air conditioner

    CN220892395U