Docking component, air handling component, air conditioner and its oxygen generation control method

By designing a docking component that has both power connection and ventilation functions, the problem of cumbersome installation steps of the oxygen-making module in the air conditioner is solved, and the effect of simplifying installation and improving efficiency is achieved.

CN115468298BActive Publication Date: 2025-05-27GD MIDEA AIR CONDITIONING EQUIP CO LTD +1
View PDF 4 Cites 0 Cited by

Patent Information

Application Number
CN202110653872.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-06-11
Publication Date
2025-05-27
Estimated Expiration
2041-06-11

AI Technical Summary

Technical Problem

The installation steps of modules used to realize the oxygen-generating function in existing air conditioners are cumbersome and are limited by electricity and ventilation requirements.

Method used

A docking assembly is designed, including a mounting bracket, a first electrical connection terminal and a ventilation port, which can be docked with the oxygen-making module to simplify the installation steps. This docking component has both power connection and ventilation functions. By setting up a mounting bracket that has both power connection and ventilation functions, the docking component only needs to be connected to the oxygen-making module to meet the power connection and ventilation requirements.

Benefits of technology

Through the design of this docking assembly, the installation steps of the oxygen-making module are significantly simplified, the installation efficiency is improved, and the structural complexity is reduced.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115468298B_ABST
    Figure CN115468298B_ABST
Patent Text Reader

Abstract

The present invention discloses a docking component, an air handling component, an air conditioner and an oxygen generation control method thereof. The docking component is adapted to be docked with an oxygen generation module. The docking component includes: a mounting bracket, a first power connection terminal and a ventilation port provided on the mounting bracket. The first power connection terminal is adapted to be docked and powered with the oxygen generation module, and the ventilation port is adapted to be docked and ventilated with the oxygen generation module. According to the docking component of the present invention, the installation steps of the oxygen generation module can be simplified.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of air treatment, and in particular to a docking assembly, an air treatment component, an air conditioner and an oxygen production control method thereof. Background Art

[0002] The air conditioner in the related art is mainly used to realize air temperature regulation functions such as cooling or heating. In order to meet more practical needs, some air conditioners in the related art are also equipped with fresh air function, humidification function, oxygen production function, etc. However, the module for realizing the oxygen production function is subject to electricity and ventilation requirements, which makes the installation steps of the module for realizing the oxygen production function more cumbersome. Summary of the invention

[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention provides a docking assembly, which can simplify the installation steps of the oxygen production module.

[0004] The present invention also provides an air treatment component having the docking assembly.

[0005] The present invention also provides an air conditioner having the air processing component.

[0006] The present invention also provides an oxygen production control method for the air conditioner.

[0007] According to the docking assembly of the first aspect of the present invention, the docking assembly is suitable for docking with the oxygen production module, and the docking assembly includes: a mounting bracket and a first power terminal and a ventilation port provided on the mounting bracket, the first power terminal is suitable for docking with the oxygen production module for electrical connection, and the ventilation port is suitable for docking with the oxygen production module for ventilation.

[0008] According to the docking assembly of the embodiment of the present invention, by providing a mounting bracket having both a first power terminal and a ventilation port, the power connection and ventilation requirements of the oxygen production module can be met by only docking the docking assembly with the oxygen production module, thereby simplifying the installation steps of the oxygen production module.

[0009] In some embodiments, the docking assembly further includes a connection wire, the mounting bracket has a wiring channel, the connection wire is passed through the wiring channel and one end of the connection wire is connected to the first power terminal.

[0010] In some embodiments, the mounting bracket has a first through hole, the first power terminal is a power plug, one end of the power plug passes through the first through hole to the outside of the mounting bracket and is suitable for docking with the oxygen production module for electrical connection, and the other end of the power plug is located in the mounting bracket and connected to the power line.

[0011] In some embodiments, a positioning groove is formed in the mounting bracket, and the power connection plug is positioned and fitted in the positioning groove.

[0012] In some embodiments, the docking assembly includes an exhaust pipe, a pipe end of the exhaust pipe defines the ventilation port, the mounting bracket has a second through hole, and the ventilation port is located inside the mounting bracket and opposite to the second through hole.

[0013] In some embodiments, a pipe routing channel is provided inside the mounting bracket, and the exhaust pipe passes through the pipe routing channel.

[0014] In some embodiments, the first power connection terminal and the ventilation port are provided on the same side surface of the mounting bracket.

[0015] An air treatment component according to an embodiment of the second aspect of the present invention includes: a mounting assembly, the mounting assembly includes a fixing structure, and the mounting assembly is adapted to detachably mount an oxygen generation module; a docking assembly, the docking assembly is a docking assembly according to an embodiment of the first aspect of the present invention, and the mounting bracket is fixedly provided on the fixing structure.

[0016] An air treatment component according to an embodiment of the present invention can flexibly select whether to use an oxygen generation module.

[0017] In some embodiments, the first power connection terminal and the ventilation port are both provided on the front surface of the mounting bracket, the oxygen generation module is adapted to move back and forth relative to the docking assembly on the front side of the docking assembly, and the rear part of the oxygen generation module is adapted to dock with the docking assembly in the front-back direction.

[0018] In some embodiments, the mounting assembly further includes a mounting seat, the oxygen generation module is adapted to be detachably mounted on the mounting seat, and the mounting seat is cooperated with the fixing structure through a slide rail to be slidable back and forth between a first position and a second position. When the mounting seat moves forward to the first position, the oxygen generation module is separated from the docking assembly, and the oxygen generation module can be disassembled and assembled with the mounting seat. When the mounting seat moves backward to the second position, the oxygen generation module is docked with the docking assembly, and the oxygen generation module cannot be disassembled and assembled with the mounting seat.

[0019] In some embodiments, the top of the mounting seat has a mounting opening, the oxygen generation module is adapted to be disassembled and assembled with the mounting seat through the mounting opening. When the mounting seat moves to the first position, the mounting opening is exposed. When the mounting seat moves to the second position, the mounting opening is blocked.

[0020] In some embodiments, the air handling component further includes: an electric control assembly, which includes an electric control box and an electric control board. The electric control box is fixedly arranged on the fixed structure, the electric control board is arranged inside the electric control box, and the first power connection terminal is electrically connected to the electric control board.

[0021] In some embodiments, the air handling component further includes: an oxygen generation module, which is detachably installed on the installation component. The oxygen generation module includes a second power connection terminal and an exhaust port. The second power connection terminal is docked and electrically connected to the first power connection terminal, and the exhaust port is docked and ventilated with the ventilation port.

[0022] In some embodiments, the air handling component further includes: a pipe joint. One end of the pipe joint is inserted into the exhaust port, and the other end of the pipe joint is provided with an insertion part. The cross-section of the insertion part gradually shrinks along the direction away from the exhaust port and is suitable for being inserted and matched with the ventilation port.

[0023] In some embodiments, the oxygen generation module can move back and forth relative to the fixed structure. The fixed structure includes air outlet frames located on the left and right sides of the fixed structure. The air outlet frames are provided with air outlet openings. Oxygen generation outlets are arranged on both the left and right sides of the oxygen generation module. Each oxygen generation outlet on each side is suitable for sending air through the corresponding air outlet opening.

[0024] In some embodiments, the air handling component further includes: a fresh air component, which includes a fresh air duct, a fresh air fan arranged in the fresh air duct, and a purification module arranged in the fresh air duct. The oxygen generation module has an air inlet, and the air inlet is suitable for introducing air from the air flow out of the fresh air duct and / or introducing air through an external air intake pipe.

[0025] In some embodiments, the installation component has an installation position, and one of the oxygen generation module and the water tank module can be selectively installed at the installation position.

[0026] In some embodiments, the air handling component further includes: a humidification module, which is detachably installed on the installation component. The humidification module includes a water tank module and a wet curtain module. The water tank module provides water to the wet curtain module to achieve humidification, and the same limiting structure is used to limit the water tank module and the oxygen generation module at the installation position.

[0027] The air conditioner according to the third aspect embodiment of the present invention includes a temperature adjustment component and an air handling component according to the second aspect embodiment of the present invention.

[0028] The air conditioner according to the embodiment of the present invention can flexibly select the oxygen generation function.

[0029] The oxygen generation control method according to the fourth aspect embodiment of the present invention is used to control the air conditioner according to the third aspect embodiment of the present invention. The oxygen generation control method includes: receiving a start signal; detecting whether the oxygen generation module is matched with the air conditioner; if not, sending out a fault alarm.

[0030] The oxygen generation control method according to the embodiment of the present invention improves the safety of the oxygen generation function.

[0031] The additional aspects and advantages of the present invention will be partly given in the following description, partly will become obvious from the following description, or be understood through the practice of the present invention. Description of the Drawings

[0032] Figure 1 is a partial schematic diagram of an air handling component according to an embodiment of the present invention;

[0033] Figure 2 is an assembly drawing of a mounting seat and an oxygen generation module according to an embodiment of the present invention;

[0034] Figure 3 is an assembly drawing of a mounting seat and a humidification module according to an embodiment of the present invention;

[0035] Figure 4 is Figure 3 the top view of the assembly of the mounting seat and the humidification module shown in;

[0036] Figure 5 is an assembly drawing of an oxygen generation module and a mounting component, a docking component, an electric control component, etc. according to an embodiment of the present invention;

[0037] Figure 6 is Figure 5 the perspective view of another angle of;

[0038] Figure 7 is Figure 6 the assembly drawing of the oxygen generation module and the docking component shown in, the first sub-frame is not shown in the figure;

[0039] Figure 8 is Figure 7 the assembly drawing of the oxygen generation module and the power connection plug and the power connection wire shown in;

[0040] Figure 9 is Figure 5 the perspective view of another angle of;

[0041] Figure 10 is the perspective view of the structural member and the fixing seat of the oxygen generation module according to an embodiment of the present invention;

[0042] Figure 11 is Figure 10 the perspective view of the fixing seat shown in;

[0043] Figure 12 is Figure 11 a perspective view from another angle of ;

[0044] Figure 13 is Figure 11 the assembly drawing of the female plug end and the first housing shown in ;

[0045] Figure 14 is Figure 11 the front view of ;

[0046] Figure 15 is along Figure 14 the sectional view taken along line A-A in ;

[0047] Figure 16 is Figure 11 the assembly drawing of the installation component and the docking component shown in ;

[0048] Figure 17 is the perspective view of the oxygen generation module according to an embodiment of the present invention;

[0049] Figure 18 is the perspective view of the air conditioner with the front panel hidden according to an embodiment of the present invention;

[0050] Figure 19 is the perspective view of the air conditioner according to an embodiment of the present invention.

[0051] Reference numerals:

[0052] Air conditioner 1000;

[0053] Air treatment component 100; Temperature regulation component 200; Housing 300; Electric control device 400;

[0054] Installation component 1; Installation position 11; Fixing structure 12; Support plate 121; Bracket structure 122;

[0055] Air outlet frame 123; Air outlet 124;

[0056] Mounting base 13; Slide rail 14; Limit elastic piece 15; Front panel 16;

[0057] Oxygen generation module 2; Power connection socket 21; Fixed seat 22; First housing 221; Second housing 222;

[0058] Installation groove 223; Limit rib 224; Female plug end 23;

[0059] Outer shell 24; Heat dissipation air outlet 241; Heat dissipation air inlet 242; Air inlet 243;

[0060] Screen installation area 244; exhaust port 25; pipe joint 26; insertion part 261; oxygen production outlet 27;

[0061] Structural member 29; fan installation area 291; electronic control installation area 292; compressor installation area 293;

[0062] Molecular sieve installation area 294;

[0063] Humidification module 3; water tank module 31; wet curtain module 32;

[0064] Docking component 4; first power connection terminal 4a; ventilation port 4b;

[0065] Power connection plug 41; mounting bracket 42; first sub-frame 421; second sub-frame 422;

[0066] Positioning groove 423; first through hole 424; second through hole 425; power connection wire 43; exhaust pipe 44;

[0067] Electronic control component 5; electronic control box 51; wire arranging clip 52; fresh air component 6. Detailed implementation mode

[0068] The embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present invention and should not be construed as limiting the present invention.

[0069] The following disclosure provides many different embodiments or examples for implementing different structures of the present invention. To simplify the disclosure of the present invention, the components and settings of specific examples are described below. Of course, they are only examples and are not intended to limit the present invention. In addition, the present invention may repeat reference numerals and / or letters in different examples. This repetition is for the purpose of simplification and clarity and does not itself indicate the relationship between the various embodiments and / or settings discussed. In addition, the present invention provides examples of various specific processes and materials, but those of ordinary skill in the art can be aware of the applicability of other processes and / or the use of other materials.

[0070] Next, with reference to the drawings, an air treatment component 100 according to an embodiment of the first aspect of the present invention will be described.

[0071] As Figures 1 - 3As shown in the figure, the air treatment component 100 includes: a mounting assembly 1, an oxygen generation module 2, and a humidification module 3. The mounting assembly 1 has a mounting position 11 inside. The oxygen generation module 2 is detachably mounted on the mounting position 11, and the humidification module 3 is detachably mounted on the mounting position 11, so that the mounting position 11 can selectively mount one of the oxygen generation module 2 and the humidification module 3. That is to say, the mounting position 11 can mount both the oxygen generation module 2 and the humidification module 3. However, the mounting position 11 can only mount one of the oxygen generation module 2 and the humidification module 3 at the same time. In other words, the mounting position 11 cannot mount the oxygen generation module 2 and the humidification module 3 simultaneously.

[0072] That is, when the oxygen generation module 2 is mounted on the mounting position 11, the humidification module 3 cannot be mounted. If you want to mount the humidification module 3 on the mounting position 11, you need to first remove the oxygen generation module 2 from the mounting position 11 and then mount the humidification module 3 on the mounting position 11. Similarly, when the humidification module 3 is mounted on the mounting position 11, the oxygen generation module 2 cannot be mounted. If you want to mount the oxygen generation module 2 on the mounting position 11, you need to first remove the humidification module 3 from the mounting position 11 and then mount the oxygen generation module 2 on the mounting position 11.

[0073] Among them, the oxygen generation module 2 is an oxygen generation module, and the processing function of the humidification module 3 is different from that of the oxygen generation module 2. For example, the humidification module 3 can be used to implement functions such as humidification, purification, sterilization and disinfection. Thus, when the oxygen generation function needs to be realized, the oxygen generation module 2 can be mounted on the mounting position 11. When other functions need to be realized, the oxygen generation module 2 can be removed from the mounting position 11 and the humidification module 3 can be mounted on the mounting position 11, so that multiple function replacement selections can be realized without changing the overall size of the air treatment component 100.

[0074] Of course, the present invention is not limited to this. In other embodiments of the present invention, for example, it may further include a third processing component, and the third processing component is detachably mounted on the mounting position 11, so that the mounting position 11 can selectively mount one of the oxygen generation module 2, the humidification module 3 and the third processing component. The processing function of the third processing component is different from that of the humidification module 3 and also different from that of the oxygen generation module 2. For example, when the processing function of the humidification module 3 is the humidification function, the processing function of the third processing component is the sterilization and disinfection function, so as to realize more function replacement selections. In addition, the air treatment component 100 may further include other more processing components, which can be selectively mounted on the mounting position 11 to realize more function replacement selections, which will not be elaborated here.

[0075] The air treatment component 100 according to an embodiment of the present invention realizes different treatment functions by replacing the treatment components with different treatment functions installed in the installation position 11 in the installation component 1 that can be compatible with installing treatment components with different treatment functions. Thus, multiple treatment function replacement selections can be realized without changing or hardly changing the overall size of the air treatment component 100. More specifically, by providing the installation position 11 in the installation component 1 that can be at least compatible with installing the oxygen generation module 2 and the humidification module 3, the installation position 11 can replace and install one of the oxygen generation module 2 and the humidification module 3, so that the replacement selection of the oxygen generation function and other treatment functions can be realized without changing or hardly changing the overall size of the air treatment component 100.

[0076] In some embodiments of the present invention, as Figure 1 and Figure 2 shown, the installation component 1 may include: a fixed structure 12 and an installation seat 13. The installation seat 13 defines the installation position 11. The oxygen generation module 2 and the humidification module 3 can be selectively installed on the installation seat 13. The installation seat 13 is movable relative to the fixed structure 12 between a first position and a second position. When the installation seat 13 moves to the first position, the oxygen generation module 2 can be disassembled and assembled with the installation position 11. At this time, the oxygen generation module 2 is in a disassemblable state. When the installation seat 13 moves to the second position, the oxygen generation module 2 cannot be disassembled and assembled with the installation position 11. At this time, the oxygen generation module 2 is in a used or to-be-used state.

[0077] Thus, only when the installation seat 13 moves relative to the fixed structure 12 to the first position can the oxygen generation module 2 be removed from the installation position 11 on the installation seat 13. When the installation seat 13 moves relative to the fixed structure 12 to the second position, the oxygen generation module 2 cannot be removed from the installation position 11 on the installation seat 13, thereby avoiding the safety hazard of the oxygen generation module 2 being accidentally removed in the used state or the to-be-used state and improving the use safety.

[0078] To achieve "when the installation seat 13 moves to the first position, the oxygen generation module 2 can be disassembled and assembled with the installation position 11, and when the installation seat 13 moves to the second position, the oxygen generation module 2 cannot be disassembled and assembled with the installation position 11", there are many ways. For example, two alternative embodiments will be given later.

[0079] For example, in the first alternative embodiment, the installation position 11 has a locking structure. The oxygen generation module 2 is locked to the installation position 11 through the locking structure. When the installation seat 13 moves to the first position, the locking position structure can be exposed, so that the oxygen generation module 2 can be disassembled and assembled from the installation position 11. When the installation seat 13 moves to the second position, the locking position structure is blocked, so that the oxygen generation module 2 cannot be disassembled and assembled with the installation position 11.

[0080] For example, in the second alternative embodiment, the installation position 11 has an installation opening, and the oxygen generation module 2 is adapted to be detachably assembled with the installation position 11 through the installation opening. When the installation base 13 moves to the first position, the installation opening is exposed, so that the oxygen generation module 2 can be detachably assembled with the installation position 11 through the installation opening. When the installation base 13 moves to the second position, the installation opening is blocked, so that the oxygen generation module 2 cannot be detachably assembled with the installation position 11 through the installation opening. Thus, the hidden danger caused by accidental disassembly can be simply and conveniently prevented.

[0081] It should be noted that when the installation base 13 moves to the second position, the components blocking the installation opening are not limited. For example, it can be blocked by the fixing structure 12 itself, or by the air treatment component 100 or other components on the equipment to which the air treatment component 100 is applied, such as the air conditioner 1000, which are relatively stationary with respect to the fixing structure 12. Details are not described here.

[0082] Optionally, as Figures 1 - 3 shown, the installation base 13 can be slidably engaged with the fixing structure 12 along the horizontal direction through the slide rail 14. The installation opening is located at the top of the installation position 11, and the oxygen generation module 2 is adapted to be detachably assembled through the installation opening in the vertical direction. Thus, by horizontally pulling the installation base 13, the installation opening at the top of the installation position 11 can be exposed, so that the oxygen generation module 2 can be removed upward from the installation position 11, or the oxygen generation module 2 can be inserted downward into the installation position 11. The operation is convenient. After the oxygen generation module 2 is disassembled and assembled, the installation base 13 can be pushed back horizontally to block the installation opening at the top of the installation position 11, thereby improving the assembly reliability of the oxygen generation module 2 and the installation position 11 and avoiding accidental disassembly and assembly.

[0083] It should be noted that the relative position between the slide rail 14 and the installation base 13, and the number of the slide rails 14 are not limited. For example Figure 3 shown in the example, there can be two slide rails 14, which are arranged on both sides of the installation base 13 along the direction perpendicular to the sliding direction of the installation base 13. For example, when the installation base 13 can slide in the front-rear direction, there are two slide rails 14 and they are arranged on the left and right sides of the installation base 13 respectively. Thus, on the one hand, it can play a role in limiting the installation base 13 in the left-right direction, and on the other hand, by setting multiple slide rails 14, the sliding stability and reliability of the installation base 13 can be improved. Of course, the present invention is not limited thereto, and the slide rail 14 can also be arranged at the bottom of the installation base 13 and other positions.

[0084] When the oxygen generation module 2 is adapted to be disassembled and assembled vertically through the installation opening, optionally, the oxygen generation module 2 can be fixed to the installation position 11 by interference fit. That is to say, after the oxygen generation module 2 is placed downward into the installation position 11, the oxygen generation module 2 can be fixed by interference fit. In addition to being able to be disassembled from the installation position 11 when subjected to an upward pulling force, the relative movement of the oxygen generation module 2 relative to the installation position 11 in the horizontal direction, such as the relative movement in the left-right direction and the front-back direction, can be restricted by interference fit. Thus, on the one hand, the installation stability of the oxygen generation module 2 can be ensured, and the problem of the oxygen generation module 2 shaking in the installation position 11 can be prevented. On the other hand, the use of snap structures, threaded structures, etc. for locking positions can be avoided, thereby improving the disassembly and assembly convenience and simplifying the operation.

[0085] For example, in Figure 4 In the example shown, the mounting seat 13 includes a front panel 16 and four limiting elastic pieces 15. The front panel 16 stops at the front side of the oxygen generation module 2 to limit the forward movement of the oxygen generation module 2. Two of the limiting elastic pieces 15 stop at the left and right sides of the front part of the oxygen generation module 2 to limit the left-right movement of the oxygen generation module 2. The two sides of the rear part of the oxygen generation module 2 have inclined surfaces, so that the width of the rear part of the oxygen generation module 2 gradually decreases in the left-right direction. The other two limiting elastic pieces 15 stop at the inclined surfaces on the left and right sides of the rear part of the oxygen generation module 2 to limit the backward movement and the left-right movement of the oxygen generation module 2. Thus, the oxygen generation module 2 can be fixed to the installation position 11 by interference fit.

[0086] In addition, it is worth noting that in some alternative embodiments, the disassembly and assembly methods of the humidification module 3 and the oxygen generation module 2 can be set to be the same. For example, the humidification module 3 can also be disassembled and assembled through the installation opening at the top of the installation position 11. When the mounting seat 13 moves to the first position, the installation opening is exposed, so that the humidification module 3 can be disassembled and assembled with the installation position 11 through the installation opening. When the mounting seat 13 moves to the second position, the installation opening is blocked, so that the humidification module 3 cannot be disassembled and assembled with the installation position 11 through the installation opening. For example, when the humidification module 3 includes a water tank module 31, the water tank module 31 can be disassembled and assembled by pulling out the mounting seat 13 and through the installation opening to realize operations such as replenishing water in the water tank module 31.

[0087] Of course, the present invention is not limited to this. The disassembly and assembly methods of the humidification module 3 and the oxygen generation module 2 can also be set to be different. For example, the installation position 11 can have an opening area, and the position of the opening area is different from that of the installation opening, so that the oxygen generation module 2 and the humidification module 3 can be disassembled and assembled from different positions as needed. For example, when the mounting seat 13 can slide back and forth relative to the fixed structure 12, the front side of the installation position 11 has an opening area, and the humidification module 3 can be directly ejected from the opening area, etc., which will not be elaborated here. For example, when the humidification module 3 includes a filter module, the filter module can be ejected from the opening area to realize operations such as cleaning the filter module.

[0088] In some embodiments of the present invention, the installation component 1 includes a fixing structure 12, and the oxygen generation module 2 is movable relative to the fixing structure 12. It should be noted that, in this embodiment, the installation component 1 may include the mounting base 13 described above to install the oxygen generation module 2 through the mounting base 13, so that the oxygen generation module 2 is movable relative to the fixing structure 12. Alternatively, the installation component 1 may not include the mounting base 13 described above, and the oxygen generation module 2 is directly movable relative to the fixing structure 12 alone. In addition, it should be noted that the specific composition of the fixing structure 12 is not limited. It may be an integral structural member 29 or composed of multiple structural members 29. For example, in Figure 5 and Figure 6 the example shown, the fixing structure 12 may include a support plate 121.

[0089] Combined with Figure 5 and Figure 6 , the air treatment component 100 further includes a docking component 4. The docking component 4 is used to connect the oxygen generation module 2 to electricity and / or ventilation. The docking component 4 is fixed on the fixing structure 12 (such as the support plate 121 of the fixing structure 12 shown in the figure). When the oxygen generation module 2 moves relative to the fixing structure 12 to the assembled position (that is, the oxygen generation module 2 is in a used or to-be-used state, for example, when the mounting base 13 moves to the second position), the oxygen generation module 2 is docked and cooperated with the docking component 4, so as to realize the workability of the oxygen generation module 2. When the oxygen generation module 2 leaves the assembled position (for example, when the mounting base 13 moves to the first position), the oxygen generation module 2 is separated from the docking component 4, so as to realize the non-workability of the oxygen generation module 2.

[0090] Thus, when the oxygen generation module 2 leaves the assembled position, it can be separated from the docking component 4, which is convenient for the disassembly of the oxygen generation module 2. When the oxygen generation module 2 is moved to the assembled position, it can be docked and cooperated with the docking component 4, so as to simply and effectively realize the workability of the oxygen generation module 2. In addition, since the docking component 4 is fixed on the fixing structure 12, it is only necessary to install the oxygen generation module 2 at the installation position 11, without considering problems such as power connection and / or ventilation, and the oxygen generation function can be simply and effectively realized.

[0091] It should be noted that when the docking component 4 is used to power on the oxygen generation module 2, it may include the docking component 4 for connecting the oxygen generation module 2 to a power cord and / or a communication signal line. When the docking component 4 is used to connect the oxygen generation module 2 to a power cord, the oxygen generation module 2 may not be equipped with a power supply device such as a battery, etc., thereby reducing the weight, volume, and cost of the oxygen generation module 2, etc. When the docking component 4 is used to connect the oxygen generation module 2 to a communication signal line, the oxygen generation module 2 may not be equipped with a wireless communication device such as a Bluetooth device, etc., thereby reducing the cost and structural complexity of the oxygen generation module 2 and improving the stability and reliability of the communication connection. When the docking component 4 is used to ventilate the oxygen generation module 2, it may include the docking component 4 for introducing air raw materials and / or discharging nitrogen-rich waste gas, etc. into the oxygen generation module 2. Of course, it can be understood that if the oxygen generation module 2 itself includes a power supply device, a wireless communication device, etc., there is no need for docking power connection. If the oxygen generation module 2 can directly introduce air raw materials and / or directly discharge nitrogen-rich waste gas, etc. to the location where it is located, there is no need for docking ventilation.

[0092] In some specific examples, such as Figure 7 and Figure 8 As shown, the oxygen generation module 2 includes a power connection socket 21, and the docking component 4 includes a power connection plug 41. The power connection plug 41 is adapted to be inserted into the power connection socket 21. The power connection plug 41 includes a power cord plug and / or a signal line plug. That is to say, when there is one power connection plug 41, it can be a power cord plug or a signal line plug. When there are two power connection plugs 41, they can be a power cord plug and a signal line plug. Thus, through the plug-in cooperation between the power connection plug 41 and the power connection socket 21, the stability and reliability of the power connection can be improved. Of course, the present invention is not limited thereto, and the docking power connection can also be achieved through elastic contact terminals, etc. In addition, it can be understood that the power cord plug is used to connect the oxygen generation module 2 to an external power source to supply power to the oxygen generation module 2, and the signal line plug is used to enable the oxygen generation module 2 to receive and transmit communication signals.

[0093] In some specific examples, such as Figure 7 and Figure 8 As shown, the docking component 4 may include a mounting bracket 42 and a power connection wire 43. The mounting bracket 42 is fixed to the fixed structure 12 and has a wire routing channel. The power connection plug 41 is mounted on the mounting bracket 42. The power connection wire 43 passes through the wire routing channel and is connected to the power connection plug 41 at one end. Thus, the docking component 4 can stably and reliably achieve the docking between the power connection plug 41 and the power connection socket 21. And the power connection wire 43 passes through the wire routing channel and will not interfere with other moving parts, thereby ensuring the reliability of the power connection wire 43. It can be understood that when one power connection plug 41 is a power cord plug, the power connection wire 43 connected to this power connection plug 41 is a power cord. When one power connection plug 41 is a signal line plug, the power connection wire 43 connected to this power connection plug 41 is a signal line.

[0094] In some alternative embodiments, such as Figure 6 and Figure 7 shown, the mounting bracket 42 is arranged to include two sub - brackets, namely a detachable first sub - bracket 421 and a second sub - bracket 422. When the first sub - bracket 421 and the second sub - bracket 422 are separated, the installation of the docking plug can be realized. For example, a receiving cavity is defined between the first sub - bracket 421 and the second sub - bracket 422, and at least part of the power - connecting plug 41 is installed in the receiving cavity. Thus, the installation of the power - connecting plug 41 can be realized, and the fixing reliability of the power - connecting plug 41 can be ensured. Moreover, when the power - connecting plug 41 is docked with the power - connecting socket 21, the stability of the power - connecting plug 41 can be ensured, the smoothness and effectiveness of the docking can be guaranteed, and problems such as skewing of the power - connecting plug 41 during the plugging process can be avoided.

[0095] Optionally, the detachable connection method between the first sub - bracket 421 and the second sub - bracket 422 is not limited. For example, when the first sub - bracket 421 and the second sub - bracket 422 are separated, they can be detachably connected by a snap - fit structure and / or screw fasteners, etc., so as to ensure the quickness of disassembly and assembly and the reliability of the connection. In addition, it is worth noting that the wire - routing channel can be formed between the first sub - bracket 421 and the second sub - bracket 422, or can be formed on one of the first sub - bracket 421 and the second sub - bracket 422.

[0096] Optionally, as Figure 7 shown, a positioning groove 423 can be formed in the mounting bracket 42. The positioning groove 423 is used to limit the position of the power - connecting plug 41. Thus, the fixing reliability of the power - connecting plug 41 can be improved. Moreover, when the power - connecting plug 41 is docked with the power - connecting socket 21, the stability of the power - connecting plug 41 can be ensured, the smoothness and effectiveness of the docking can be guaranteed, and problems such as skewing of the power - connecting plug 41 during the plugging process can be avoided. Optionally, as Figure 7 shown, the width dimension of the end of the power - connecting wire 43 of the power - connecting plug 41 can be greater than the width dimension of the positioning groove 423, so as to prevent the power - connecting plug 41 from slipping out of the positioning groove 423 and facilitate the fixing of the power - connecting plug 41.

[0097] In some embodiments of the present invention, such as Figure 6 and Figure 7 shown, the oxygen - generating module 2 can move back and forth relative to the fixed structure 12. The mounting seat 13 can move backward relative to the fixed structure 12 to reach the assembled position. The docking assembly 4 is located at the rear side of the oxygen - generating module 2 and is adapted to dock with the rear part of the oxygen - generating module 2 in the front - to - rear direction. For example, when the oxygen - generating module 2 moves backward to the assembled position, the power - connecting plug 41 on the docking assembly 4 can be automatically inserted into the power - connecting socket 21 at the rear part of the oxygen - generating module 2, thus facilitating the power connection. Combining Figure 16, the front end of the mounting bracket 42 may have a first through hole 424. A part of the power connection plug 41 is located inside the mounting bracket 42, and a part thereof passes forward through the mounting bracket 42 from the first through hole 424, so that the mounting and limiting of the power connection plug 41 by the mounting bracket 42 can be realized, and the smooth insertion of the power connection plug 41 into the power connection socket 21 can also be ensured.

[0098] In some embodiments of the present invention, as Figure 9 shown, the air treatment component 100 may further include an electric control component 5. The electric control component 5 includes an electric control box 51 and an electric control board. The electric control box 51 is fixedly arranged on the fixing structure 12 (such as the support plate 121 of the fixing structure 12 shown in the figure), the electric control board is arranged in the electric control box 51, and the other end of the power connection wire 43 extends into the electric control box 51 and is connected to the electric control board. Thus, since the air treatment assembly itself includes the electric control component 5, it is beneficial to simplify the wiring and improve the reliability of the wiring. Of course, the present invention is not limited thereto, and the air treatment component 100 itself may not include the electric control component 5, so that the power connection wire 43 can be connected to the electric control device 400 of the device to which the air treatment component 100 is applied, such as the air conditioner 1000.

[0099] In some alternative embodiments, as Figure 9 shown, the electric control box 51 can be fixed to the support plate 121 of the fixing structure 12 by screws, so that the fixing of the electric control box 51 can be simply and effectively realized. The oxygen generation module 2 is located in front of the support plate 121 and the electric control box 51 and can be pulled back and forth relative to the support plate 121, so as to avoid the interference of the setting of the electric control box 51 on the movement of the oxygen generation module 2. The electric control box 51 is located above the docking component 4, so as to improve the space utilization rate, make the structure compact, and facilitate the connection of the power connection wire 43 and shorten the wiring path.

[0100] In some alternative embodiments, as Figure 9 shown, a wire-straightening clip 52 is provided on the outer side of the electric control box 51, so as to facilitate wire straightening and improve the simplicity of the wiring. For example, in some specific examples, the air treatment component 100 is applied to the air conditioner 1000, and the electric control device 400 of the air conditioner 1000 can be connected to the electric control component 5 through a conducting wire. At this time, the conducting wire can be limited by the wire-straightening clip 52 and then extends into the electric control box 51 to be connected to the electric control board.

[0101] In some specific examples, as Figures 10 - 15As shown, the oxygen generation module 2 includes a fixed seat 22 and a female plug-in end 23. The female plug-in end 23 defines a power connection socket 21. The female plug-in end 23 is embedded in the fixed seat 22 so that the fixed seat 22 can reliably limit the female plug-in end 23, thereby ensuring the smoothness and reliability of the plugging between the male plug-in end and the female plug-in end 23. Optionally, the fixed seat 22 may include: a first seat body 221 and a second seat body 222. The first seat body 221 and the second seat body 222 are fixedly connected by screws. The second seat body 222 is fixed on the outer shell 24 of the oxygen generation module 2 by screws. The female plug-in end 23 is embedded in the installation groove 223 formed between the upper installation seat 13 and the lower installation seat 13, so that the cooperation reliability and rapid assembly of the fixed seat 22 and the female plug-in end 23 can be realized. In addition, the installation groove 223 may have a plurality of limiting ribs 224, and the plurality of limiting ribs 224 limit the female plug-in end 23 to improve the position stability of the female plug-in end 23.

[0102] In some specific embodiments of the present invention, as Figure 7 and Figure 8 shown, the oxygen generation module 2 may include an exhaust port 25. The docking assembly 4 includes an exhaust pipe 44. A pipe joint 26 is provided on one of the exhaust port 25 and the exhaust pipe 44. The exhaust pipe 44 and the exhaust port 25 are adapted to be connected and ventilated through the pipe joint 26. Thus, the nitrogen-rich air discharged from the exhaust port 25 can be discharged from the exhaust port 25, and then discharged through the pipe joint 26 and the exhaust pipe 44. The end of the exhaust pipe 44 away from the pipe joint 26 can extend to the outside of the room, so that the nitrogen-rich air can be discharged to the outside, or the end of the exhaust pipe 44 away from the pipe joint 26 can also extend to other places where the waste gas can be recycled, so that the waste gas can be discharged to the designated place.

[0103] In some specific embodiments of the present invention, as Figure 7 and Figure 8 shown, one end of the pipe joint 26 is fixedly provided on the exhaust port 25, and the other end of the pipe joint 26 is provided with a plug-in portion 261. The cross-section of the plug-in portion 261 gradually shrinks along the direction away from the exhaust port 25 (for example, the plug-in portion 261 can be frustum-shaped), and is adapted to be inserted into the exhaust pipe 44. Thus, when the oxygen generation module 2 moves to the assembled position (such as when the installation seat 13 moves to the second position), the plug-in portion 261 can be smoothly inserted into the exhaust pipe 44, so that the ventilation connection between the oxygen generation module 2 and the docking assembly 4 can be conveniently and effectively realized. Optionally, the pipe joint 26 can be screwed onto the exhaust port 25 by threads, thereby improving the connection reliability of the pipe joint 26 fixed on the exhaust port 25. Or the pipe joint 26 may also have a plurality of annular sealing ribs arranged along the axial direction of the pipe joint 26, thereby improving the tightness of the seal and the connection reliability between the pipe joint 26 and the exhaust port 25.

[0104] In some embodiments of the present invention, as Figure 6 andFigure 7 As shown, the docking assembly 4 includes a mounting bracket 42, which is fixed to the fixed structure 12 (such as the support plate 121 shown in the figure), and the mounting bracket 42 has a pipe passage, and the exhaust pipe 44 is passed through the pipe passage. Therefore, the mounting bracket 42 can be used to protect the exhaust pipe 44, thereby improving the exhaust stability and reliability of the exhaust pipe 44, and the mounting bracket 42 can be used to limit the port of the exhaust pipe 44, thereby ensuring that the pipe joint 26 can be smoothly plugged into the exhaust pipe 44.

[0105] In some embodiments of the present invention, Figure 6 and Figure 7 As shown, the oxygen production module 2 can move forward and backward relative to the fixed structure 12, and the mounting seat 13 can move backward relative to the fixed structure 12 to reach the assembled position. The docking assembly 4 is located at the rear side of the oxygen production module 2 and is suitable for docking with the rear part of the oxygen production module 2 along the front-to-back direction. For example, when the oxygen production module 2 moves backward to the assembled position, the plug-in portion 261 of the pipe joint 26 on the rear side of the oxygen production module 2 can be inserted backward into the port of the exhaust pipe 44 on the front side of the docking assembly 4 on the rear side, thereby facilitating ventilation connection. Figure 16 The front end of the mounting bracket 42 may have a second through hole 425, and the exhaust pipe 44 is located inside the mounting bracket 42 and opposite to the second through hole 425, so that when the plug-in portion 261 of the pipe joint 26 is inserted into the second through hole 425 at the front end of the mounting bracket 42, it can be automatically inserted into the exhaust pipe 44, thereby achieving a reliable connection.

[0106] like Figure 7 and Figure 16 As shown, the plug interface of the exhaust pipe 44 on the docking assembly 4 is close to the power plug 41, so that the mounting bracket 42 can be miniaturized. At the same time, the pipe joint 26 and the power socket 21 on the oxygen production module 2 are close to each other, so that the pipe joint 26 can be plugged into the exhaust pipe 44, and the power plug 41 can be plugged into the power socket 21.

[0107] like Figure 5 and Figure 6 As shown, when the docking assembly 4 is located at the rear side of the oxygen production module 2 and the oxygen production module 2 is connected to the support plate 121 at the rear side thereof, a support structure 122 located at the horizontal side of the oxygen production module 2 can be installed on the support plate 121. At this time, the docking assembly 4 and the support structure 122 can also be fixedly connected, thereby improving the installation stability of the docking assembly 4 and improving the smoothness and stability of the docking between the docking assembly 4 and the oxygen production module 2.

[0108] It should be noted that the bracket structure 122 may not have other functions and is only used to support and fix the docking component 4. The bracket structure 122 may also have other functions, or rather, the bracket structure 122 is mainly used to implement other functions. For example, a lifting mechanism is installed on the bracket structure 122, etc., while incidentally supporting and fixing the docking component 4, so as to improve the installation stability of the docking component 4 and the smooth reliability of docking without increasing the structural complexity, and it has good economy. It should be noted that the lifting mechanism can be used to lift the air outlet 124, the decorative piece, the display screen, etc., which will not be elaborated here.

[0109] In some embodiments of the present invention, as Figure 1 and Figure 2 shown, the installation component 1 includes a fixed structure 12, and the oxygen generation module 2 is movable back and forth relative to the fixed structure 12. The fixed structure 12 includes air outlet frames 123 located on the left and right sides of the fixed structure 12. The air outlet frames 123 are provided with air outlets 124. Oxygen generation outlets 27 are provided on both the left and right sides of the oxygen generation module 2. Each oxygen generation outlet 27 is adapted to send air through the corresponding air outlet 124 on the corresponding side. That is, the oxygen generation outlet 27 on the left side of the oxygen generation module 2 corresponds to the air outlet 124 on the left air outlet frame 123 to exhaust air to the left, and the oxygen generation outlet 27 on the right side of the oxygen generation module 2 corresponds to the air outlet 124 on the right air outlet frame 123 to exhaust air to the right, thereby improving the smoothness of exhaust. And, since the oxygen generation outlet 27 is close to the air outlet 124, the exhaust loss can be reduced. Optionally, the oxygen generation outlet 27 and the air outlet 124 can be arranged facing each other, so as to further reduce the exhaust loss and improve the smoothness of exhaust.

[0110] Of course, the present invention is not limited to this. The oxygen generation module 2 may also have an oxygen generation outlet 27 on one of the left and right sides, or the oxygen generation outlet 27 may also be arranged at the top, bottom, or rear of the oxygen generation module 2, etc. In addition, the number of oxygen generation outlets 27 on each side of the left and right sides of the oxygen generation module 2 is not limited. For example, it can be one or more.

[0111] In some embodiments of the present invention, as Figure 8 and Figure 10 shown, heat dissipation air outlets 241 are provided on both the left and right sides of the oxygen generation module 2, and heat dissipation air inlets 242 are provided on at least one of the rear side, upper side, and lower side of the oxygen generation module 2. The oxygen generation module 2 includes a heat dissipation fan (for example, it can be installed in Figure 10The fan installation area 291) and the working components shown in the figure. The cooling fan is used to induce air flow to enter from the cooling air inlet 242, flow through the working components, and then be sent out from the cooling air outlet 241. For example, the oxygen generation module 2 includes a housing 24, which has a cooling air inlet 242 and a cooling air outlet 241. The working components and the cooling fan are both arranged inside the housing 24. When the cooling fan is working, the air outside the oxygen generation module 2 can enter the inside of the housing 24 from the cooling air inlet 242, exchange heat with the working components to lower the temperature of the working components, and the heated air is sent out from the cooling air outlets 241 on the left and right sides, thereby achieving the effect of cooling the working components inside the housing 24 and improving the working stability and reliability of the working components. Since the cooling air inlet 242 and the cooling air outlet 241 are respectively arranged at different positions on the housing 24, it can avoid the hot air after cooling being sucked back from the cooling air inlet 242 as much as possible, and improve the cooling effectiveness and reliability.

[0112] In some embodiments of the present invention, as Figure 10 shown, the oxygen generation module 2 includes a control module (which can be installed in, for example, Figure 10 the electric control installation area 292 shown in), a compressor (which can be installed in, for example, Figure 10 the compressor installation area 293 shown in), and a molecular sieve (which can be installed in, for example, Figure 10 the molecular sieve installation area 294 shown in). The molecular sieve is arranged in front of the compressor, the control module is arranged above the compressor, and the top of the oxygen generation module 2 has a display screen (which can be installed in, for example, Figure 17 the screen installation area 244 shown in). For example, the top of the housing 24 has a downwardly recessed screen installation area 244. There is a structural member 29 inside the housing 24. The compressor installation area 293 is formed inside the structural member 29. The top of the structural member 29 forms an electric control installation area 292 with an open top, and the front of the structural member 29 forms a molecular sieve installation area 294, so that the relative positions of the compressor, the control module, the molecular sieve, etc. can be simply and effectively fixed.

[0113] Therefore, since the molecular sieve is arranged in front of the compressor and the control module is arranged above the compressor, the noise of the compressor can be reduced from being transmitted from the front side and the top, and thus the working noise can be reduced. In addition, since the control module is arranged above the compressor and the top of the oxygen generation module 2 is provided with a display screen, the distance between the control module and the display screen can be shortened, thereby reducing the wiring difficulty and simplifying the wiring. For example, in some embodiments, at least one of the compressor, the molecular sieve, the control module, etc. can be a working component. The cooling fan can be located behind the compressor, and the cooling air inlet 242 is located at the rear side of the housing 24, so as to achieve an effective cooling effect.

[0114] It should be noted that the oxygen generation module 2 is not limited to being used within the air handling component 100. After the oxygen generation module 2 is removed from the air handling component 100, it can be used independently. For example, it can be connected to a power source through a plug-in adapter so that the oxygen generation module 2 can be used independently. At this time, the display screen can display relevant content. In addition, when the oxygen generation module 2 can be removed and used independently, the oxygen generation module 2 can also include a switch. After connecting the oxygen generation module 2 to the power source through the plug-in adapter and turning on the switch, the oxygen generation module 2 can start working, thereby improving the safety and energy efficiency of use. Additionally, if the oxygen generation module 2 includes a switch, then when the oxygen generation module 2 is installed in the air handling component 100, the function of the switch can be disabled or shielded so that the start and stop of the oxygen generation module 2 are not controlled by the switch but by the electronic control component 5.

[0115] In addition, it should be noted that the principle of the oxygen generation module 2 to achieve the oxygen generation function is not limited. For example, the molecular sieve pressure swing adsorption scheme can be adopted, and the compressor can be a DC compressor or an AC compressor. When an AC compressor is used, the module of the molecular sieve and the compressor can be miniaturized.

[0116] In some embodiments of the present invention, as Figure 18 shown, the air handling component 100 may further include a fresh air component 6. The fresh air component 6 includes a fresh air duct, a fresh air fan provided in the fresh air duct, and a purification module provided in the fresh air duct. The inlet of the fresh air duct communicates with the outside. When the fresh air fan works, outdoor fresh air can enter the fresh air duct, be purified by the purification module, and then be discharged through the outlet of the fresh air duct.

[0117] Optionally, in combination with Figure 8 , the oxygen generation module 2 has an air inlet 243, and the air inlet 243 is adapted to introduce air from the outgoing air flow of the fresh air duct. That is to say, a part of the air discharged from the fresh air duct can also be inhaled by the air inlet 243 of the oxygen generation module 2 and processed as oxygen-rich air as raw material, thereby simplifying the structure.

[0118] In addition, in some specific examples, the air discharged from the fresh air duct can also be discharged through the air outlet 124 on the air outlet frame 123. In this way, a part of the air discharged from the fresh air duct is discharged from the air outlet 124 on the air outlet frame 123, and another part of the air discharged from the fresh air duct is inhaled as raw material by the air inlet 243 of the oxygen generation module 2. After being processed into oxygen-rich air by the oxygen generation module 2 and discharged from the oxygen generation outlet 27, it is also discharged from the air outlet 124 on the air outlet frame 123, so that the air outlet 124 can discharge oxygen-rich and purified fresh air.

[0119] Of course, the present invention is not limited thereto. The air inlet 243 of the oxygen generation module 2 can also introduce air through an externally connected air duct. When the inlet end of the air duct extends outdoors, outdoor air can be introduced as the raw material. When the inlet end of the air duct extends indoors, indoor air can be introduced as the raw material, so as to meet different design requirements. It should be noted that the material of the air duct is not limited, for example, it can be a rubber tube, etc., which is convenient for changing the extension direction and can easily extend to the required position.

[0120] It should be noted that the functions and compositions of the humidification module 3 are not limited and can be specifically set according to actual situations. For example, in some embodiments, as Figure 3 shown, the humidification module 3 may include a water tank module 31 and a wet curtain module 32. The water tank module 31 provides water to the wet curtain module 32 to achieve humidification. Thus, when the oxygen generation module 2 is taken out, the humidification module 3 can be directly placed in for replacement use to achieve the humidification function. Optionally, the wet curtain module 32 may include a wet curtain bracket and a wet curtain body disposed within the wet curtain bracket. The wet curtain body can absorb moisture, and when air flows through the wet curtain body, the water vapor in the wet curtain body can be carried out, thereby achieving the humidification effect.

[0121] Optionally, the installation position 11 limits the water tank module 31 and the oxygen generation module 2 through the same limiting structure. For example, the outer shapes of the oxygen generation module 2 and the water tank module 31 are similar or the same, so that the installation position 11 can limit the water tank module 31 and the oxygen generation module 2 through the same limiting structure (such as the limiting elastic piece 15 described above), thereby simplifying the structure of the installation assembly 1. Or rather, the outer shape design of the oxygen generation module 2 is similar to that of the water tank module 31, so that the installation position 11 of the water tank module 31 can be directly used to install the oxygen generation module 2 when the water tank module 31 is removed. In addition, setting the water tank module 31 to be detachable can also facilitate adding water to the water tank module 31 or cleaning.

[0122] It should be noted that in some embodiments, the oxygen generation module 2 can be installed only by removing the water tank module 31, or the oxygen generation module 2 can be installed only by removing the water tank module 31 and the wet curtain module 32 together. Therefore, the statement in this article that the humidification module 3 can be installed at the installation position 11 only after the oxygen generation module 2 is removed from the installation position 11 means that the corresponding part (such as partial or all) of the oxygen generation module 2 needs to be removed to achieve the installation of the humidification module 3. The statement in this article that the oxygen generation module 2 can be installed at the installation position 11 only after the humidification module 3 is removed from the installation position 11 means that the corresponding part (such as partial or all) of the humidification module 3 needs to be removed to achieve the installation of the oxygen generation module 2.

[0123] Optionally, when the water tank module 31 is removed from the installation position 11, the oxygen production module 2 can be installed regardless of whether the wet curtain module 32 is removed. At this time, the wet curtain module 32 can also be removed together to reduce the overall weight and facilitate pulling. Alternatively, the wet curtain module 32 can be left unremoved to simplify the disassembly and assembly operations.

[0124] In addition, in some embodiments, by providing a heating device, switching valves, etc., the air treatment component 100 can also have a fresh air heating function, an internal circulation purification function, a sewage exhaust function, etc., which will not be elaborated here.

[0125] Next, with reference to the accompanying drawings, a docking assembly 4 according to an embodiment of the second aspect of the present invention will be described.

[0126] like Figure 16 , Figure 6 and Figure 7 As shown, according to the docking assembly 4 of the embodiment of the present invention, the docking assembly 4 is suitable for docking with the oxygen production module 2, and the docking assembly 4 includes: a mounting bracket 42 and a first power terminal 4a and a ventilation port 4b provided on the mounting bracket 42, the first power terminal 4a is suitable for docking and connecting electricity with the oxygen production module 2, and the ventilation port 4b is suitable for docking and ventilating with the oxygen production module 2. It should be noted that ventilation can include at least one of exhaust gas exhaust, oxygen exhaust, and air raw material supply, and power connection can include at least one of power supply connection and communication signal connection.

[0127] Therefore, the docking assembly 4 is an integrated module, having both the first power terminal 4a and the ventilation port 4b, so that the power connection and ventilation requirements of the oxygen production module 1 can be met by only docking the docking assembly 4 with the oxygen production module 1, thereby simplifying the installation steps of the oxygen production module 1. In other words, there is no need to connect the oxygen production module 2 with a separate lead wire, and there is no need to separately set up an exhaust channel and / or an exhaust channel to ventilate the oxygen production module 2, thereby simplifying the assembly steps and reducing the complexity of the structure.

[0128] In some embodiments, in combination Figure 7 and Figure 8 The docking assembly 4 may further include a connection wire 43, and the mounting bracket 42 has a wiring channel. The connection wire 43 is inserted into the wiring channel and one end of the connection wire 43 is connected to the first power terminal 4a. As a result, the connection wire 43 is inserted into the wiring channel and will not interfere with other moving parts, thereby ensuring the reliability of the connection wire 43, and there is no need to set a complex circuit to connect the first power terminal 4a, thereby simplifying the circuit design. It can be understood that when the first power terminal 4a includes a power supply terminal, the connection wire 43 connected to the power supply terminal is a power line, and when the first power terminal 4a includes a signal terminal, the connection wire 43 connected to the signal terminal is a signal line.

[0129] In some embodiments, in combination Figure 16, Figure 7 and Figure 8 , the mounting bracket 42 has a first through hole 424. The first power connection terminal 4a is a power connection plug 41. One end of the power connection plug 41 passes through the first through hole 424 to the outside of the mounting bracket 42 and is adapted to be docked and electrically connected to the oxygen generation module 2. The other end of the power connection plug 41 is located inside the mounting bracket 42 and is connected to the power connection wire 43. Thus, the stability and reliability of the docking and electrical connection between the first power connection terminal 4a and the oxygen generation module 2 can be improved. Of course, the present invention is not limited thereto, and the first power connection terminal 4a can also be in the form of a spring pin or the like. It can be understood that the power connection plug 41 is adapted to be inserted and mated with the power connection socket 21. Therefore, the power connection socket 21 can be correspondingly provided on the oxygen generation module 2.

[0130] In some alternative embodiments, as Figure 6 and Figure 7 shown, the mounting bracket 42 is provided to include two sub - brackets, namely a detachable first sub - bracket 421 and a second sub - bracket 422. When the first sub - bracket 421 and the second sub - bracket 422 are separated, the installation of the docking plug can be realized. For example, a receiving cavity is defined between the first sub - bracket 421 and the second sub - bracket 422, and at least a part of the power connection plug 41 is installed in the receiving cavity. Thus, the installation of the power connection plug 41 can be realized, and the fixing reliability of the power connection plug 41 can be ensured. Moreover, when the power connection plug 41 is docked with the power connection socket 21, the stability of the power connection plug 41 can be ensured, the smoothness and effectiveness of the docking can be ensured, and problems such as skewing of the power connection plug 41 during the plugging process can be avoided.

[0131] Optionally, the detachable connection method between the first sub - bracket 421 and the second sub - bracket 422 is not limited. For example, when the first sub - bracket 421 and the second sub - bracket 422 are separated, they can be detachably connected by a snap - fit structure and / or screw fasteners, etc., so as to ensure the quickness of disassembly and assembly and the reliability of the connection. In addition, it is worth noting that the wire routing channel can be formed between the first sub - bracket 421 and the second sub - bracket 422, or can be formed on one of the first sub - bracket 421 and the second sub - bracket 422.

[0132] In some embodiments, in combination with Figure 7 and Figure 8 , a positioning groove 423 is formed inside the mounting bracket 42, and the power connection plug 41 is positioned and fitted in the positioning groove 423. Thus, the fixing reliability of the power connection plug 41 can be improved. Moreover, when the power connection plug 41 is docked with the power connection socket 21, the stability of the power connection plug 41 can be ensured, the smoothness and effectiveness of the docking can be ensured, and problems such as skewing of the power connection plug 41 during the plugging process can be avoided. Optionally, as Figure 7 shown, the width dimension of the end of the power connection wire 43 connected to the power connection plug 41 can be greater than the width dimension of the positioning groove 423, so as to prevent the power connection plug 41 from slipping out of the positioning groove 423 and facilitate the fixing of the power connection plug 41.

[0133] In some embodiments, the docking assembly 4 includes an exhaust pipe 44, the pipe end of the exhaust pipe 44 defines a ventilation port 4b, the mounting bracket 42 has a second through hole 425, the ventilation port 4b is located in the mounting bracket 42 and opposite to the second through hole 425, so that the nitrogen-enriched air discharged from the oxygen production module 2 can be discharged by the exhaust pipe 44, and the end of the exhaust pipe 44 away from the oxygen production module 2 can extend to the outdoors, so that the nitrogen-enriched air can be discharged to the outdoors, or the end of the exhaust pipe 44 away from the oxygen production module 2 can also extend to other places where the waste gas can be recovered, so that the waste gas can be discharged to a designated location.

[0134] Therefore, it is not necessary to directly process the exhaust passage on the mounting bracket 42, thereby reducing the difficulty of processing the mounting bracket 42 and improving the exhaust stability and reliability. In addition, the mounting bracket 42 can be used to limit the port of the exhaust pipe 44, thereby ensuring that the pipe joint 26 can be smoothly plugged into the exhaust pipe 44.

[0135] In some embodiments, the mounting bracket 42 has a pipe passage, and the exhaust pipe 44 is arranged in the pipe passage, so that the mounting bracket 42 can be used to protect the exhaust pipe 44, thereby improving the exhaust stability and reliability of the exhaust pipe 44.

[0136] In some embodiments, the first power terminal 4a and the vent port 4b are disposed on the same side surface of the mounting bracket 42. Thus, the design and docking can be simplified, and the convenience and stability of docking can be improved. Of course, the present invention is not limited thereto. In other embodiments of the present invention, the first power terminal 4a and the vent port 4b can also be disposed on different side surfaces of the mounting bracket 42, respectively.

[0137] Next, an air treatment component 100 according to an embodiment of the third aspect of the present invention will be described with reference to the accompanying drawings.

[0138] like Figure 1 , Figure 2 and Figure 16 As shown, the air treatment component 100 may include: a mounting assembly 1 and a docking assembly 4, the mounting assembly 1 includes a fixed structure 12, the mounting assembly 1 is suitable for detachably mounting the oxygen production module 2, the docking assembly 4 is a docking assembly 4 according to an embodiment of the second aspect of the present invention, and the mounting bracket 42 is fixed to the fixed structure 12.

[0139] Thus, when the oxygen generation function needs to be used, the oxygen generation module 2 can be installed on the installation component 1 and docked with the docking component 4, so as to achieve quick installation and use. When the oxygen generation function is not needed, or when the oxygen generation module 2 needs to be repaired, or when the oxygen generation module 2 needs to be removed for independent use, or when other functional modules need to be set at the position originally used for the oxygen generation module 2 on the installation component 1, the oxygen generation module 2 can be removed, so as to meet the corresponding requirements and be flexible in use.

[0140] In some embodiments of the present invention, as Figure 7 and Figure 16 shown, the first power connection terminal 4a and the ventilation port 4b are both arranged on the front surface of the mounting bracket 42. The oxygen generation module 2 is adapted to move back and forth relative to the docking component 4 on the front side of the docking component 4, and the rear part of the oxygen generation module 2 is adapted to be docked with the docking component 4 in the front-back direction. Thus, the installation position of the docking component 4 does not interfere with the movement of the oxygen generation module 2, and can adapt to the movement of the oxygen generation module 2 to achieve automatic docking and automatic separation, improving the disassembly and assembly convenience of the docking component 4. For example, when the oxygen generation module 2 moves backward to the assembled position, the power connection plug 41 on the docking component 4 can automatically insert into the power connection socket 21 at the rear part of the oxygen generation module 2, thus facilitating power connection. At the same time, the insertion part 261 of the pipe joint 26 at the rear part of the oxygen generation module 2 can be inserted backward into the ventilation port 4b of the exhaust pipe 44 on the front side of the rear docking component 4, thus facilitating ventilation connection.

[0141] In some embodiments of the present invention, as Figure 1 and Figure 2 shown, the installation component 1 further includes an installation base 13. The oxygen generation module is adapted to be detachably installed on the installation base 13. The installation base 13 cooperates with the fixed structure 12 through a slide rail 14 to be slidable back and forth between a first position and a second position. When the installation base 13 moves forward to the first position, the oxygen generation module 2 is separated from the docking component 4, and the oxygen generation module 2 can be disassembled and assembled with the installation base 13. When the installation base 13 moves backward to the second position, the oxygen generation module 2 is docked with the docking component 4, and the oxygen generation module 2 cannot be disassembled and assembled with the installation base 13.

[0142] Thus, only when the mounting base 13 moves forward relative to the fixed structure 12 to the first position can the oxygen generation module 2 be removed from the mounting base 13. When the mounting base 13 moves backward relative to the fixed structure 12 to the second position, the oxygen generation module 2 cannot be removed from the mounting base 13, thus avoiding the safety hazard of the oxygen generation module 2 being accidentally removed during the use state or the to-be-used state, and improving the use safety. Moreover, when the oxygen generation module 2 is in the detachable position (i.e., when the mounting base 13 moves forward to the first position), the oxygen generation module 2 has been separated from the docking component 4, so there is no need to operate the step of manually separating the oxygen generation module 2 from the docking component 4. And when the oxygen generation module 2 is in the use state or the to-be-used state (i.e., when the mounting base 13 moves backward to the second position), the oxygen generation module 2 is docked with the docking component 4, so there is no need to operate the step of manually docking the oxygen generation module 2 with the docking component 4.

[0143] In some embodiments of the present invention, as Figure 1 and Figure 2 shown, the top of the mounting base 13 has a mounting opening, and the oxygen generation module 2 is adapted to be disassembled and assembled with the mounting base 13 through the mounting opening. When the mounting base 13 moves to the first position, the mounting opening is exposed. When the mounting base 13 moves to the second position, the mounting opening is blocked. Thus, by horizontally pulling the mounting base 13, the mounting opening at the top of the mounting position 11 can be exposed, so that the oxygen generation module 2 can be removed upward from the mounting position 11, or the oxygen generation module 2 can be loaded downward into the mounting position 11. The operation is convenient. After disassembling and assembling the oxygen generation module 2, the mounting base 13 can be horizontally pushed back to block the mounting opening at the top of the mounting position 11, thereby improving the assembly reliability of the oxygen generation module 2 and the mounting position 11. Thus, the hidden danger caused by accidental disassembly can be simply and conveniently avoided.

[0144] It should be noted that when the mounting base 13 moves to the second position, the components blocking the mounting opening are not limited. For example, it can be blocked by the fixed structure 12 itself, or by other components of the air treatment component 100 or the equipment to which the air treatment component 100 is applied, such as other components relatively stationary with the fixed structure 12 on the air conditioner 1000. This will not be elaborated here.

[0145] In addition, it should be noted that the relative position between the slide rail 14 and the mounting base 13, and the number of the slide rails 14 are not limited. For example Figure 3 in the example shown, there can be two slide rails 14, and they are arranged on both sides of the mounting base 13 along the direction perpendicular to the sliding direction of the mounting base 13. For example, when the mounting base 13 can slide in the front-back direction, there are two slide rails 14 and they are arranged on the left and right sides of the mounting base 13, so that on the one hand, it can play a role in limiting the mounting base 13 in the left-right direction, and on the other hand, by setting multiple slide rails 14, the sliding stability and reliability of the mounting base 13 can be improved. Of course, the present invention is not limited to this, and the slide rail 14 can also be arranged at the bottom of the mounting base 13 and other positions.

[0146] When the oxygen generation module 2 is adapted to be disassembled and assembled vertically through the installation opening, optionally, the oxygen generation module 2 can be fixed to the mounting base 13 by interference fit. That is to say, after the oxygen generation module 2 is placed downward into the mounting base 13, the oxygen generation module 2 can be fixed by interference fit. In addition to being able to be disassembled from the mounting base 13 when subjected to an upward pulling force, the interference fit can limit the relative movement of the oxygen generation module 2 relative to the mounting base 13 in the horizontal direction, such as relative movement in the left-right direction and the front-back direction. Thus, on the one hand, the installation stability of the oxygen generation module 2 can be ensured, preventing the problem of the oxygen generation module 2 shaking in the mounting base 13. On the other hand, the use of snap structures, threaded structures, etc. for locking can be avoided, thereby improving the disassembly and assembly convenience and simplifying the operation.

[0147] For example, in Figure 4 the illustrated example, the mounting base 13 includes a front panel 16 and four limiting elastic pieces 15. The front panel 16 stops at the front side of the oxygen generation module 2 to limit the forward movement of the oxygen generation module 2. Two of the limiting elastic pieces 15 stop at the left and right sides of the front part of the oxygen generation module 2 to limit the left-right movement of the oxygen generation module 2. The two sides of the rear part of the oxygen generation module 2 have inclined surfaces, so that the width of the rear part of the oxygen generation module 2 gradually decreases in the left-right direction. The other two limiting elastic pieces 15 stop at the inclined surfaces on the left and right sides of the rear part of the oxygen generation module 2 to limit the backward movement and the left-right movement of the oxygen generation module 2. Thus, the oxygen generation module 2 can be fixed to the mounting base 13 by interference fit.

[0148] In some embodiments of the present invention, as Figure 9 shown, the air treatment component 100 may further include: an electric control component 5. The electric control component 5 includes an electric control box 51 and an electric control board. The electric control box 51 is fixedly arranged on the fixing structure 12, and the electric control board is arranged in the electric control box 51. The first power connection terminal 4a is electrically connected to the electric control board. Thus, since the air treatment component itself includes the electric control component 5, it is beneficial to simplify the wiring and improve the reliability of the wiring. Of course, the present invention is not limited thereto. The air treatment component 100 itself may not include the electric control component 5, so that the connecting wire 43 can be connected to the electric control device 400 of the device to which the air treatment component 100 is applied, such as the air conditioner 1000. In addition, other specific embodiments of the electric control component 5 can refer to the air treatment component 100 in the embodiments of the first aspect above, and will not be elaborated here.

[0149] In some embodiments of the present invention, as Figure 2 and Figure 8As shown, the air treatment component 100 may also include: an oxygen production module 2, the oxygen production module 2 is detachably mounted on the mounting assembly 1, the oxygen production module 2 includes a second power terminal and an exhaust port 25, the second power terminal is connected to the first power terminal 4a for power connection, and the exhaust port 25 is connected to the ventilation port 4b for ventilation. In other words, the oxygen production module 2 may be a part of the air treatment component 100, but the present invention is not limited thereto. The oxygen production module 2 may also be an optional part of the air treatment component 100, and is not a part of the air treatment component 100. The user may purchase it as needed. In addition, it is understandable that when the first power terminal 4a is in the form of a power plug 41, the second power terminal may be in the form of a power socket 21.

[0150] In some embodiments of the present invention, Figure 7 and Figure 8 As shown, the air treatment component 100 may also include: a pipe joint 26, one end of which is plugged into the exhaust port 25, and the other end of the pipe joint 26 is provided with a plug-in portion 261, the cross section of the plug-in portion 261 is gradually reduced in the direction away from the exhaust port 25 (for example, the plug-in portion 261 may be a frustum), and is suitable for plugging into the ventilation port 4b. Thus, when the oxygen production module 2 moves to the assembled position (such as when the mounting seat 13 moves to the second position), the plug-in portion 261 can be smoothly inserted into the exhaust pipe 44, so that the ventilation connection between the oxygen production module 2 and the docking assembly 4 can be conveniently and effectively realized. Optionally, the pipe joint 26 can be screwed to the exhaust port 25 by threading, thereby improving the connection reliability of the pipe joint 26 fixed to the exhaust port 25, or the pipe joint 26 can also have a plurality of annular sealing ribs arranged along the axial direction of the pipe joint 26, thereby improving the tightness of the seal and improving the connection reliability of the pipe joint 26 and the exhaust port 25.

[0151] In some embodiments of the present invention, Figure 1 and Figure 2 As shown, the oxygen production module 2 can move forward and backward relative to the fixed structure 12, and the fixed structure 12 includes an air outlet frame 123 located on the left and right sides of the fixed structure 12, and the air outlet frame 123 has an air outlet 124. The oxygen production outlet 27 is provided on the left and right sides of the oxygen production module 2, and the oxygen production outlet 27 on each side is suitable for supplying air through the air outlet 124 on the corresponding side. That is, the oxygen production outlet 27 on the left side of the oxygen production module 2 corresponds to the air outlet 124 on the left side of the air outlet frame 123 to exhaust to the left, and the oxygen production outlet 27 on the right side of the oxygen production module 2 corresponds to the air outlet 124 on the right side of the air outlet frame 123 to exhaust to the right, thereby improving the smoothness of exhaust. In addition, since the oxygen production outlet 27 is close to the air outlet 124, the exhaust loss can be reduced. Optionally, the oxygen production outlet 27 and the air outlet 124 can be arranged directly opposite each other, so that the exhaust loss can be further reduced and the smoothness of exhaust can be improved.

[0152] In some embodiments of the present invention, such as Figure 8 and Figure 18 shown, the air treatment component 100 may further include: a fresh air assembly 6, the fresh air assembly 6 includes a fresh air duct, a fresh air fan provided in the fresh air duct, and a purification module provided in the fresh air duct. The oxygen generation module 2 has an air inlet 243, and the air inlet 243 is adapted to introduce air from the outgoing air flow of the fresh air duct. That is to say, a part of the air discharged from the fresh air duct can also be inhaled by the air inlet 243 of the oxygen generation module 2 and processed into oxygen-rich air as raw material, thereby simplifying the structure. In addition, in some specific examples, the air discharged from the fresh air duct can also be discharged through the air outlet 124 on the air outlet frame 123. In this way, a part of the air discharged from the fresh air duct is discharged from the air outlet 124 on the air outlet frame 123, and another part of the air discharged from the fresh air duct is inhaled by the air inlet 243 of the oxygen generation module 2 as raw material. After being processed into oxygen-rich air by the oxygen generation module 2 and discharged from the oxygen generation outlet 27, it is also discharged from the air outlet 124 on the air outlet frame 123, so that the air outlet 124 can discharge oxygen-rich and purified fresh air.

[0153] Of course, the present invention is not limited to this. The air inlet 243 of the oxygen generation module 2 can also introduce air through an external air duct. When the inlet end of the air duct extends to the outside of the room, outdoor air can be introduced as raw material. When the inlet end of the air duct extends to the inside of the room, indoor air can be introduced as raw material, so as to meet different design requirements. It should be noted that the material of the air duct is not limited, for example, it can be a rubber tube, etc., so as to facilitate changing the extension direction and easily extending to the required position.

[0154] In some embodiments of the present invention, such as Figures 1 - 3 shown, the installation assembly 1 has an installation position 11, and the installation position 11 can select one of the oxygen generation module 2 and the water tank module 31 for installation. Thus, by providing an installation position 11 in the installation assembly 1 that can at least be compatible with the installation of the oxygen generation module 2 and the water tank module 31, the installation position 11 can replace and install one of the oxygen generation module 2 and the water tank module 31, so that the oxygen generation function and other processing functions can be replaced and selected without changing or hardly changing the overall size of the air treatment component 100.

[0155] In some embodiments of the present invention, such as Figures 1 - 3As shown in the figure, the air treatment component 100 further includes: a humidification module 3, which is detachably mounted on the mounting assembly 1. The humidification module 3 includes a water tank module 31 and a wet curtain module 32. The water tank module 31 supplies water to the wet curtain module 32 to achieve humidification. The mounting position 11 limits the water tank module 31 and the oxygen generation module 2 through the same limiting structure. Thus, when the oxygen generation module 2 is taken out, the humidification module 3 can be directly placed in for replacement use to achieve the humidification function. Optionally, the wet curtain module 32 may include a wet curtain bracket and a wet curtain body disposed within the wet curtain bracket. The wet curtain body can absorb moisture, and when air flows through the wet curtain body, the water vapor within the wet curtain body can be carried out, thereby achieving the humidification effect. Optionally, there may be a water passing channel within the mounting assembly 1. When both the water tank module 31 and the wet curtain module 32 are mounted on the mounting assembly 1, the water passing channel can direct the water in the water tank module 31 to the wet curtain module 32.

[0156] Optionally, the mounting position 11 limits the water tank module 31 and the oxygen generation module 2 through the same limiting structure. For example, the outer shapes of the oxygen generation module 2 and the water tank module 31 are similar or the same, so that the mounting position 11 can limit the water tank module 31 and the oxygen generation module 2 through the same limiting structure (such as the limiting elastic piece 15 described above), thereby simplifying the structure of the mounting assembly 1. Or rather, the outer shape design of the oxygen generation module 2 is similar to that of the water tank module 31. In this way, the mounting position 11 of the water tank module 31 can be directly used to mount the oxygen generation module 2 when the water tank module 31 is removed. In addition, setting the water tank module 31 to be detachable can also facilitate adding water to the water tank module 31 or cleaning it.

[0157] In addition, it should be noted that for other optional embodiments of the air treatment component 100 according to the third aspect embodiments of the present invention, as well as the corresponding technical effects, without contradiction, they can all be designed with reference to the air treatment component 100 according to the second aspect embodiments of the present invention, which will not be elaborated here. For example, the structural scheme of the oxygen generation module 2 itself can be designed with reference to the air treatment component 100 according to the second aspect embodiments of the present invention.

[0158] Next, the air conditioner 1000 according to the fourth aspect embodiments of the present invention will be described.

[0159] As Figure 19 shown, the air conditioner 1000 may include a temperature adjustment component 200 and the air treatment component 100 according to the first aspect or third aspect embodiments of the present invention. Thus, the air temperature can be adjusted through the temperature adjustment component 200, and oxygen generation and other functions can be achieved through the air treatment component 100. Thereby, the functions of the air conditioner 1000 are powerful.

[0160] It should be noted that the specific type of the air conditioner 1000 according to the embodiments of the present invention is not limited. For example, it can be a split air conditioner, an integrated air conditioner, etc. Among them, the split air conditioner can be a wall-mounted air conditioner, a floor-standing air conditioner, etc., and the integrated air conditioner can be a window air conditioner, a portable air conditioner, etc. For example, in Figure 19 In the specific example shown, the air conditioner 1000 can be a floor-standing air conditioner, and the temperature adjustment component 200 is located above the air treatment component 100, and the air treatment component 100 can have functions such as fresh air, purification, humidification, and oxygen generation.

[0161] It should be noted that the specific composition of the temperature adjustment component 200 is not limited. For example, it can include a ventilator, a heat exchanger, etc. In addition, other components of the air conditioner 1000 according to the embodiments of the present invention, such as the housing 300, etc., and operations are known to those of ordinary skill in the art and will not be described in detail here.

[0162] Some air conditioners 1000 in the related art have other functions in addition to refrigeration and heating. For example, purification, fresh air, humidification, dehumidification, disinfection, etc. However, since the overall volume of the air conditioner 1000 is basically determined, if other functions are to be added on the basis of these functions, it will inevitably cause the volume of the air conditioner 1000 to increase and it cannot be adapted for indoor use. To solve this technical problem, the applicant ingeniously thought that some other functional components of the air conditioner 1000 can be removed and replaced with the required functional components, so as to meet different functional requirements without causing the volume of the air conditioner 1000 to increase.

[0163] Specifically, for the air conditioner 1000 of some embodiments of the present application, it has functions such as humidification function and fresh air purification function. The humidification function is realized by a water tank module 31, a wet curtain module 32, etc. The module for realizing the humidification function is detachably installed on the indoor unit. After removing the module for realizing the humidification function, a module for realizing the oxygen generation function is replaced, so that the air conditioner 1000 can have the oxygen generation function. In addition, the air treatment component 100 according to the embodiments of the present invention is not limited to being applied to the air conditioner 1000, and can also be applied to other devices, such as air purifiers, etc.

[0164] Next, a method for controlling oxygen generation of the air conditioner 1000 according to the fifth aspect embodiment of the present invention will be described, where the air conditioner 1000 is the air conditioner 1000 according to the fourth aspect embodiment of the present invention.

[0165] The method for controlling oxygen generation can include the steps of: receiving a start signal; detecting whether the oxygen generation module 2 matches the air conditioner 1000; if not, a fault alarm is issued. Thus, the safety protection performance can be improved, and it can be avoided that other processing components that do not match the air conditioner 1000 pretend to be the oxygen generation module 2 and are installed in the installation position 11, causing work safety problems.

[0166] It should be noted that "detecting whether the oxygen generation module 2 is matched with the air conditioner 1000" can be achieved through the communication connection between the docking component 4 and the oxygen generation module 2 described above, or through the wireless communication connection between the oxygen generation module 2 and the air conditioner 1000. It should be noted that the "start signal" can be issued when the power supply of the oxygen generation module 2 (which can be powered by an external power supply or a battery) is connected, or can be issued after the user inputs an instruction, or can be intelligently issued by the system of the air conditioner 1000 after intelligent detection and judgment of the oxygen content in the environment. It should be noted that the "fault alarm" can be a voice prompt or a sound reminder.

[0167] Optionally, the oxygen generation control method may further include the steps of: when it is detected that the oxygen generation module 2 is matched with the air conditioner 1000, safety prompts can be given, such as voice broadcast or music prompt, etc., and then the oxygen generation work is started. Or, when it is detected that the oxygen generation module 2 is matched with the air conditioner 1000, the oxygen generation work is directly started.

[0168] For example, when the oxygen generation function is needed, the user can first remove the humidification module 3, and then install the oxygen generation module 2 at the installation position 11. When the oxygen generation module 2 moves to the position where it is assembled in place, a start signal can be issued to detect whether the oxygen generation module 2 is matched with the air conditioner 1000; if not, a fault alarm is issued. If it is matched, the buzzer or the voice module prompts that the matching is correct, and the oxygen generation function can be used normally.

[0169] Next, an air conditioner 1000 and its oxygen generation control method according to a specific embodiment of the present invention will be described.

[0170] In this embodiment, as Figure 18 and Figure 19 shown, the air conditioner 1000 is an air conditioner cabinet, and the air conditioner cabinet includes: a housing 300 and an electric control device 400, a temperature adjustment component 200, and an air treatment component 100 provided in the housing 300. The temperature adjustment component 200 is provided above the air treatment component 100, and the electric control device 400 is provided on the front side of the temperature adjustment component 200.

[0171] Combined with Figures 1 - 17 , the air treatment component 100 includes: an installation component 1, an oxygen generation module 2, a humidification module 3, a docking component 4, an electric control component 5, and a fresh air component 6. The oxygen generation module 2 is an oxygen generation module, and the processing function of the humidification module 3 is different from that of the oxygen generation module 2. The installation component 1 includes a fixing structure 12 and an installation seat 13. The installation seat 13 defines an installation position 11, and the oxygen generation module 2 and the humidification module 3 are respectively detachably installed at the installation position 11, so that the installation position 11 can selectively install one of the oxygen generation module 2 and the humidification module 3.

[0172] The top of the installation position 11 has an installation opening. The oxygen generation module 2 is adapted to be disassembled and assembled vertically through the installation opening, and the oxygen generation module 2 is fixed to the installation position 11 by interference fit. The mounting base 13 is slidably engaged with the fixed structure 12 along the horizontal direction through the slide rail 14, so that the mounting base 13 can slide back and forth relative to the fixed structure 12 between the first position and the second position. When the mounting base 13 slides forward to the first position, the installation opening moves out in front of the air conditioner 1000 to be exposed, and the oxygen generation module 2 can be disassembled and assembled with the installation position 11. When the mounting base 13 slides backward to the second position, the installation opening moves back into the air conditioner 1000 to be blocked, and the oxygen generation module 2 cannot be disassembled and assembled with the installation position 11.

[0173] The fixed structure 12 includes a support plate 121 and an air outlet frame 123. There are two air outlet frames 123, which are located in front of the left and right sides of the support plate 121. The docking assembly 4 is located in front of the support plate 121 and between the two air outlet frames 123. The rear end of the docking assembly 4 is fixed to the support plate 121, and the oxygen generation module 2 can slide back and forth relative to the docking assembly 4 on the front side of the docking assembly 4. Each air outlet frame 123 has at least one air outlet 124. Oxygen outlet 27s are provided on both the left and right sides of the oxygen generation module 2, and the oxygen outlet 27 on each side is adapted to supply air through the corresponding air outlet 124. Heat dissipation air outlet 241s are provided on both the left and right sides of the oxygen generation module 2, and a heat dissipation air inlet 242 is provided on the rear side of the oxygen generation module 2. The oxygen generation module 2 includes a heat dissipation fan and a working component. The heat dissipation fan is used to cause air to enter from the heat dissipation air inlet 242, flow through the working component, and then be sent out from the heat dissipation air outlet 241. The working component includes a control module, a compressor, and a molecular sieve. The molecular sieve is provided in front of the compressor, and the control module is provided above the compressor. The top of the oxygen generation module 2 has a display screen.

[0174] The fresh air component 6 is located below the installation position 11. The fresh air component 6 includes a fresh air duct, a fresh air fan provided in the fresh air duct, and a purification module provided in the fresh air duct. The fresh air fan makes the air outlet of the fresh air duct upward. The oxygen generation module 2 has an air inlet 243, and the air inlet 243 is adapted to introduce air from the air flow of the fresh air duct as a raw material. The humidification module 3 includes a water tank module 31 and a wet curtain module 32. The water tank module 31 provides water to the wet curtain module 32 to achieve humidification. The outer shape of the water tank module 31 is similar to or the same as the outer shape of the oxygen generation module 2, and the installation position 11 limits the water tank module 31 and the oxygen generation module 2 through the same limiting structure.

[0175] The docking component 4 includes: a mounting bracket 42, a power connection plug 41, a power connection wire 43, and an exhaust pipe 44. The mounting bracket 42 is fixedly provided on the support plate 121. The mounting bracket 42 has a wire routing channel and a pipe routing channel inside. The power connection plug 41 is installed on the mounting bracket 42. The power connection wire 43 is threaded through the wire routing channel. One end of the power connection wire 43 is connected to the power connection plug 41, and the other end of the power connection wire 43 extends into the electric control box 51 of the electric control component 5 and is connected to the electric control board of the electric control component 5. The exhaust pipe 44 is threaded through the pipe routing channel. The insertion ends of the power connection plug 41 and the exhaust pipe 44 are both located on the front side of the docking component 4.

[0176] The oxygen generation module 2 is located in front of the docking component 4. The rear side of the oxygen generation module 2 has a power connection socket 21 and an exhaust port 25. A pipe joint 26 is provided on the exhaust port 25. One end of the pipe joint 26 is fixedly provided on the exhaust port 25, and the other end of the pipe joint 26 is provided with a plug-in portion 261. The cross-section of the plug-in portion 261 gradually shrinks along the direction away from the exhaust port 25. When the mounting seat 13 slides backward to the second position, the oxygen generation module 2 moves relative to the fixed structure 12 to the position where the assembly is in place. The power connection socket 21 is sleeved backward on the power connection plug 41 behind it, and the plug-in portion 261 is inserted backward into the exhaust pipe 44 behind it. At this time, the oxygen generation module 2 is in place in docking and cooperation with the docking component 4. When the mounting seat 13 drives the oxygen generation module 2 to slide forward so that the oxygen generation module 2 leaves the position where the assembly is in place, the power connection socket 21 is disengaged from the power connection plug 41 forward, and the plug-in portion 261 is withdrawn from the exhaust pipe 44 forward, and the oxygen generation module 2 is separated from the docking component 4.

[0177] There are two power connection sockets 21, which are respectively a power line connection socket and a signal line connection socket. There are two power connection plugs 41, which are respectively a power line connection plug and a signal line connection plug. There are two power connection wires 43, which are respectively a power line and a signal line. The power line connection plug is connected to the power line, the signal line connection plug is connected to the signal line. The power line connection plug is suitable for being inserted and mated with the power line connection socket, and the signal line connection plug is suitable for being inserted and mated with the signal line connection socket.

[0178] When the oxygen generation module 2 reaches the position where the assembly is in place, the power line connection plug is suitable for being inserted and mated with the power line connection socket, and the signal line connection plug is suitable for being inserted and mated with the signal line connection socket. The air conditioner 1000 can receive a start signal. At this time, the main control program of the air conditioner 1000 needs to first detect whether the oxygen generation module 2 matches the air conditioner 1000 to determine whether a suitable and safe oxygen generation module 2 is installed. If so, the next step of starting the oxygen generation function continues. If it is determined that the oxygen generation module 2 is not a suitable and safe one, the oxygen generation function cannot be started, and a fault alarm can be issued at this time. Thus, it can play a role in the safety protection of the plug-and-play module function.

[0179] In the description of the present invention, it should be understood that the orientation or positional relationships indicated by the terms "upper", "lower", "front", "rear", "left", "right", etc. are based on the orientation or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present invention.

[0180] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, the meaning of "a plurality of" is two or more, unless otherwise specifically defined.

[0181] In the present invention, unless otherwise clearly defined and limited, the terms such as "mounted", "connected", "connected to", "fixed", etc. should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be directly connected, or indirectly connected through an intermediate medium, and may be the internal communication of two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0182] In the present invention, unless otherwise clearly defined and limited, the first feature being "on" or "under" the second feature may be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on" the second feature may be that the first feature is directly above or obliquely above the second feature, or merely indicates that the first feature has a higher horizontal height than the second feature. The first feature being "under", "beneath" and "under" the second feature may be that the first feature is directly below or obliquely below the second feature, or merely indicates that the first feature has a lower horizontal height than the second feature.

[0183] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples", etc. 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 invention. In this specification, the schematic descriptions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0184] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the claims and their equivalents.

Claims

1. An air treatment component, characterized in that, it includes: An installation component, the installation component includes a fixing structure, and the installation component is adapted to detachably install an oxygen generation module; A docking component, the docking component is adapted to dock with the oxygen generation module, and the docking component includes: a mounting bracket and a first power connection terminal and a ventilation port provided on the mounting bracket. The first power connection terminal is adapted to dock and connect electricity with the oxygen generation module, and the ventilation port is adapted to dock and ventilate with the oxygen generation module. The mounting bracket is fixedly arranged on the fixing structure; An oxygen generation module, the oxygen generation module is detachably installed on the installation component, and the oxygen generation module includes a second power connection terminal and an exhaust port. The second power connection terminal is docked and connected with the first power connection terminal, and the exhaust port is docked and ventilated with the ventilation port; An electric control component, the electric control component includes an electric control box and an electric control board. The electric control box is fixedly arranged on the fixing structure, the electric control board is arranged in the electric control box, and the first power connection terminal is electrically connected to the electric control board; The installation component has an installation position, and one of the oxygen generation module and the water tank module can be selected for installation at the installation position.

2. The air treatment component according to claim 1, characterized in that, Both the first power connection terminal and the ventilation port are arranged on the front surface of the mounting bracket. The oxygen generation module is adapted to move back and forth relative to the docking component on the front side of the docking component, and the rear part of the oxygen generation module is adapted to dock with the docking component in the front-rear direction.

3. The air treatment component according to claim 2, characterized in that, The installation component further includes a mounting seat, and the oxygen generation module is adapted to be detachably installed on the mounting seat. The mounting seat is cooperated with the fixing structure through a slide rail to be slidable back and forth between a first position and a second position. When the mounting seat moves forward to the first position, the oxygen generation module is separated from the docking component, and the oxygen generation module can be disassembled and assembled with the mounting seat. When the mounting seat moves backward to the second position, the oxygen generation module is docked with the docking component, and the oxygen generation module cannot be disassembled and assembled with the mounting seat.

4. The air treatment component according to claim 3, characterized in that, The top of the mounting seat has a mounting opening, and the oxygen generation module is adapted to be disassembled and assembled with the mounting seat through the mounting opening. When the mounting seat moves to the first position, the mounting opening is exposed. When the mounting seat moves to the second position, the mounting opening is blocked.

5. The air treatment component according to claim 1, characterized in that, It further includes: A pipe joint, one end of the pipe joint is inserted into the exhaust port, and the other end of the pipe joint is provided with a plugging portion. The cross section of the plugging portion gradually shrinks along the direction away from the exhaust port and is adapted to be inserted and matched with the ventilation port.

6. The air treatment component according to claim 1, characterized in that, The oxygen production module can move forward and backward relative to the fixed structure. The fixed structure includes an air outlet frame located on the left and right sides of the fixed structure. The air outlet frame has an air outlet. The left and right sides of the oxygen production module are provided with oxygen production outlets. The oxygen production outlet on each side is suitable for supplying air through the air outlet on the corresponding side.

7. The air treatment component according to claim 1, It is characterized in that Also includes: A fresh air component comprises a fresh air duct, a fresh air blower arranged in the fresh air duct, and a purification module arranged in the fresh air duct. The oxygen production module has an air inlet, and the air inlet is suitable for introducing air from the outlet air flow of the fresh air duct and / or introducing air through an external air duct.

8. The air treatment component according to claim 1, It is characterized in that Also includes: A humidification module, which is detachably mounted on the mounting assembly. The humidification module includes a water tank module and a wet curtain module. The water tank module provides water to the wet curtain module to achieve humidification. The mounting position limits the water tank module and the oxygen production module through the same limiting structure.

9. The air treatment component according to claim 1, It is characterized in that The docking assembly also includes a connection wire. The mounting bracket has a wiring channel. The connection wire is passed through the wiring channel and one end of the connection wire is connected to the first power terminal.

10. The air treatment component according to claim 9, It is characterized in that The mounting bracket has a first through hole, the first power terminal is a power plug, one end of the power plug passes through the first through hole to the outside of the mounting bracket and is suitable for docking with the oxygen production module for electrical connection, and the other end of the power plug is located in the mounting bracket and connected to the power line.

11. The air treatment component according to claim 10, It is characterized in that A positioning groove is formed in the mounting bracket, and the power plug is positioned and matched in the positioning groove.

12. The air treatment component according to claim 8, It is characterized in that The docking assembly includes an exhaust pipe, the pipe end of the exhaust pipe defines the ventilation port, the mounting bracket is provided with a second through hole, and the ventilation port is located in the mounting bracket and opposite to the second through hole.

13. The air treatment component according to claim 12, It is characterized in that The mounting bracket has a pipe passage in it, and the exhaust pipe is passed through the pipe passage.

14. The air treatment component according to any one of claims 8 to 13, It is characterized in that The first power terminal and the vent port are arranged on the same side surface of the mounting bracket.

15. An air conditioner, It is characterized in that The air conditioner comprises a temperature regulating component and an air treatment component according to any one of claims 1-14.

16. A method for controlling oxygen production, It is characterized in that For controlling the air conditioner according to claim 15, the oxygen production control method comprises: receiving a start signal; Check whether the oxygen production module matches the air conditioner; If they do not match, a fault alarm will be issued.

Citation Information

Patent Citations

  • Replaceable self-breathing type electrochemical oxygenerator

    CN201962367U

  • Air treatment device, air conditioner indoor unit and air conditioner

    CN212408882U

  • Floor type air conditioner indoor unit and air conditioner

    CN212618763U

  • Butt joint assembly, air treatment component and air conditioner

    CN215260420U