An air conditioner
By installing a cleaning component inside the air conditioner, evaporator cleaning can be achieved without disassembling the unit, reducing labor and time costs, ensuring uniform cleaning of all parts of the evaporator, and improving heat exchange efficiency.
Patent Information
- Application Number
- CN202311430424.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-31
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-10-31
AI Technical Summary
Cleaning existing air conditioner evaporators is inconvenient and requires disassembly, resulting in high labor and time costs.
A cleaning component is installed inside the air conditioner unit, including a cleaning unit and a water pipe. The cleaning agent source is connected to the outside through the water pipe. The cleaning agent is introduced into the cleaning unit and then discharged to the evaporator, achieving cleaning without disassembling the unit.
It reduces the difficulty and cost of evaporator cleaning, ensures uniform cleaning of all parts of the evaporator, and improves heat exchange efficiency.
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Figure CN119957988B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of air conditioners, in particular to an air conditioner. BACKGROUND
[0002] The evaporator assembly of a cylindrical cabinet air conditioner will accumulate dust for a long time due to contact with air. Meanwhile, there will be a large amount of condensate water between the evaporator fins when the air conditioner is working in refrigeration and dehumidification modes, which will cause mold and odor problems. If the evaporator needs to be cleaned, the whole machine needs to be disassembled, which is high in labor and time cost. SUMMARY
[0003] The problem solved by the present application is how to improve the technical problem of inconvenient cleaning of the evaporator in the prior art.
[0004] To solve the above problems, the present application provides an air conditioner, comprising:
[0005] An air conditioner main body, which is internally provided with an evaporator;
[0006] A cleaning assembly, which comprises a cleaning main body and a water connection pipe, and the cleaning main body and the water connection pipe are both arranged inside the air conditioner main body; one end of the water connection pipe is connected to the cleaning main body, and the other end is used for connecting to a cleaning agent source outside the air conditioner main body; the cleaning main body is arranged above the evaporator for guiding the cleaning agent to the evaporator.
[0007] The present application provides the beneficial effects of the air conditioner relative to the prior art, which include:
[0008] When the evaporator inside the air conditioner main body needs to be cleaned, the cleaning agent source outside the air conditioner main body can be connected to the water connection pipe, and the cleaning agent can be guided into the cleaning main body, and then the cleaning agent can be guided out of the cleaning main body and onto the evaporator to complete the cleaning of the evaporator. Thus, it is not necessary to disassemble the whole air conditioner and take out the evaporator for cleaning, and the cleaning of the evaporator inside the air conditioner main body can be completed without disassembling the machine, which reduces the labor and time cost. Based on this, the air conditioner can improve the technical problem of inconvenient cleaning of the evaporator in the prior art.
[0009] Optionally, the cleaning main body comprises a box body and a plurality of guiding-out portions, the box body is internally provided with an accommodation space, the water connection pipe is connected to the box body, and the internal passage of the water connection pipe is in communication with the accommodation space; the plurality of guiding-out portions are arranged on the box body and are used for guiding out the cleaning agent in the accommodation space; and the plurality of guiding-out portions are arranged on the evaporator at intervals.
[0010] By arranging a plurality of guiding-out portions to guide the cleaning agent to the evaporator, it can be ensured that the cleaning agent can be sprayed on each position of the evaporator, which is conducive to the comprehensive cleaning of the evaporator.
[0011] Optionally, the box body is curved and shaped to match the shape of the evaporator; and the plurality of outlet portions are arranged along the curved path of the box body.
[0012] The box body is curved to match the shape of the evaporator, facilitating the arrangement of the plurality of outlet portions along the shape of the evaporator, so that cleaning can be provided to each position of the evaporator, and the cleaning of the evaporator can be fully and comprehensively completed.
[0013] Optionally, the evaporator comprises side heat exchange portions and a middle heat exchange portion, the middle heat exchange portion is provided with the side heat exchange portions on both sides; the outlet portion comprises a first outlet portion and a second outlet portion, the first outlet portion is connected to the middle heat exchange portion, and the second outlet portion is connected to the side heat exchange portion; the number of the first outlet portion is greater than the number of the second outlet portion on any side heat exchange portion.
[0014] Optionally, the distance between two adjacent first outlet portions is less than the distance between the second outlet portion and the first outlet portion.
[0015] In the process of air conditioning, the amount of air flow passing through the middle heat exchange portion is large, which leads to more dust adhering to the middle heat exchange portion. Therefore, arranging more and denser first outlet portions on the middle heat exchange portion is beneficial to improve the cleaning degree of the middle heat exchange portion and ensure efficient heat exchange after cleaning, thereby improving the heat exchange efficiency.
[0016] Optionally, the box body comprises a containing portion and a cover; the containing space is arranged in the containing portion, and the cover is connected to the containing portion to cover the containing space; the outlet portion is arranged on the side of the containing portion away from the cover, and the water pipe is connected to the cover.
[0017] The box body is formed by the containing portion and the cover, which is beneficial to the separate manufacture of the containing portion and the cover, thereby reducing the manufacturing difficulty and cost.
[0018] Optionally, two connecting portions are protruded from the side of the containing portion away from the cover, the two connecting portions are arranged at both ends of the containing portion, and the plurality of outlet portions are arranged between the two connecting portions; and the connecting portion is connected to the evaporator.
[0019] The connecting portion is connected to the evaporator, which can improve the stability of the connection of the containing portion to the evaporator.
[0020] Optionally, the air conditioner body has a top cover, the top cover is provided with an interface, the interface penetrates through the top cover and is exposed from the outside of the top cover, the interface is used for connecting to a cleaning agent source outside the air conditioner body, and the end of the water pipe away from the cleaning body is connected to the interface.
[0021] By setting the interface on the top cover, the water collecting pipe arranged inside the air conditioner main body can be conveniently connected to the cleaning agent source outside the air conditioner main body, so that the user can conveniently select appropriate cleaning agent to clean the evaporator.
[0022] Optionally, the top cover is convexly provided with a connector, and the water collecting pipe is connected to the connector.
[0023] By setting the connector, the water collecting pipe can be conveniently connected to the top cover, so that the water collecting pipe can be conveniently connected to the external cleaning agent source through the interface, and the overall stability of the cleaning assembly is ensured.
[0024] Optionally, the water collecting pipe is provided with a water pump, and the water pump is used to extract the cleaning agent in the cleaning agent source.
[0025] During the cleaning process, the water pump provides the power to extract the cleaning agent, which can improve the impact force of the cleaning agent extracted by the cleaning main body. Not only can it ensure that enough cleaning agent is directed to the evaporator to provide sufficient cleaning effect, but also can improve the impact force of the extracted cleaning agent to improve the cleaning effect. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is an exploded structural schematic diagram of the air conditioner provided in the embodiment of the present application;
[0027] Figure 2 It is a partial structural schematic diagram of the air conditioner provided in the embodiment of the present application;
[0028] Figure 3 It is a structural schematic diagram of the cleaning assembly provided in the embodiment of the present application;
[0029] Figure 4 It is another partial structural schematic diagram of the air conditioner provided in the embodiment of the present application;
[0030] Figure 5 It is a cooperation schematic diagram of the cleaning assembly and the evaporator provided in the embodiment of the present application.
[0031] BRIEF DESCRIPTION OF DRAWINGS
[0032] 10-air conditioner; 100-air conditioner main body; 110-evaporator; 111-intermediate heat exchange part; 112-side heat exchange part; 120-top cover; 121-interface; 122-connector; 200-cleaning assembly; 210-cleaning main body; 211-box body; 2111-receiving part; 201-receiving space; 202-connection part; 2112-cover body; 212-extracting part; 2121-first extracting part; 2122-second extracting part; 220-water collecting pipe; 221-water pump; 222-driving motor. DETAILED DESCRIPTION
[0033] In order to make the above objectives, characteristics and advantages of the present application more apparent, concrete embodiments of the present application will be described in detail below with reference to the drawings.
[0034] Please refer to Figure 1 In the embodiments of the present application, an air conditioner 10 is provided, which is used to provide air conditioning effect to a designated area, so as to improve the air quality of the designated area, and further improve the comfort of the user in the designated area. It is worth noting that the air conditioner 10 generally includes an indoor unit and an outdoor unit, and the air conditioner 10 provided in the embodiments refers to the indoor unit, of course, in other embodiments, the air conditioner 10 can also refer to the outdoor unit.
[0035] In the embodiments of the present application, an air conditioner 10 is provided, which is used to provide air conditioning effect to a designated area, so as to improve the air quality of the designated area, and further improve the comfort of the user in the designated area. It is worth noting that the air conditioner 10 generally includes an indoor unit and an outdoor unit, and the air conditioner 10 provided in the embodiments refers to the indoor unit, of course, in other embodiments, the air conditioner 10 can also refer to the outdoor unit.
[0036] Based on this, the air conditioner 10 in the embodiments is provided to improve the technical problem that the cleaning difficulty and cost of the evaporator 110 are high in the prior art.
[0037] In the embodiments of the present application, please refer to Figure 1 and Figure 2 The air conditioner 10 includes an air conditioner body 100 and a cleaning assembly 200. The air conditioner body 100 is provided with an evaporator 110; the evaporator 110 is used to exchange heat with the airflow, so that the airflow after heat exchange can provide air conditioning effect to the designated area. It is worth noting that the evaporator 110 provided in the embodiments refers to the heat exchanger in the indoor unit, and it should be understood that in other embodiments, the evaporator 110 can also refer to the heat exchanger in the outdoor unit.
[0038] Please refer to Figure 3The cleaning assembly 200 comprises a cleaning body 210 and a water receiving pipe 220, both of which are arranged inside the air conditioner body 100. One end of the water receiving pipe 220 is connected to the cleaning body 210, and the other end is used to connect to a cleaning agent source outside the air conditioner body 100. The cleaning body 210 is arranged above the evaporator 110 to guide the cleaning agent to the evaporator 110. It should be noted that the end of the water receiving pipe 220 away from the cleaning body 210 can directly extend to the outside of the air conditioner body 100 to facilitate the direct connection of the water receiving pipe 220 to the external cleaning agent source; alternatively, the water receiving pipe 220 can be connected to the external cleaning agent source through a through structure provided on the air conditioner body 100, that is, a through structure for externally connecting the external cleaning agent source is provided on the air conditioner body 100, and the water receiving pipe 220 is connected to the through structure.
[0039] As described above, when the evaporator 110 inside the air conditioner body 100 needs to be cleaned, the water receiving pipe 220 can be connected to the cleaning agent source outside the air conditioner body 100, and the cleaning agent can be guided into the cleaning body 210, and then the cleaning agent can be guided out of the cleaning body 210 to the evaporator 110, thereby completing the cleaning of the evaporator 110. Thus, it is not necessary to disassemble the air conditioner 10 and remove the evaporator 110 for cleaning, and the cleaning of the evaporator 110 inside the air conditioner body 100 can be completed without disassembly, thereby reducing the labor and time costs. Based on this, the air conditioner 10 can improve the technical problem of inconvenient cleaning of the evaporator 110 in the prior art.
[0040] Optionally, the cleaning agent in the cleaning agent source can be water, disinfectant or other water solutions with additional functions.
[0041] It should be noted that in the present embodiment, the cleaning body 210 is arranged above the evaporator 110, and after the cleaning agent is guided out of the cleaning body 210, the cleaning agent can flow from the upper side of the evaporator 110 to the lower side to clean the evaporator 110 comprehensively. Here, the "upper side of the evaporator 110" refers to the upper position of the evaporator 110 when the air conditioner 10 is normally installed and used.
[0042] In addition, after the cleaning agent flows along the evaporator 110 to clean the evaporator 110, the cleaning agent drops into the water receiving tray below the evaporator 110 to collect the cleaning agent through the water receiving tray, thereby facilitating the discharge of the cleaning agent.
[0043] Further, in the present embodiment, the cleaning main body 210 comprises a box body 211 and a plurality of leading-out portions 212, the box body 211 is internally provided with a containing space 201, the water receiving pipe 220 is connected to the box body 211 and the internal passage of the water receiving pipe 220 is communicated with the containing space 201. The plurality of leading-out portions 212 are arranged on the box body 211 and are used for leading out the cleaning agent in the containing space 201. The plurality of leading-out portions 212 are arranged at intervals on the evaporator 110. After the water receiving pipe 220 introduces the cleaning agent, the cleaning agent can be introduced into the containing space 201, and then evenly distributed to the plurality of leading-out portions 212, and the cleaning agent is led to the evaporator 110 by the plurality of leading-out portions 212. By arranging the plurality of leading-out portions 212 to lead out the cleaning agent to the evaporator 110, it can be ensured that each position on the evaporator 110 can be sprayed by the cleaning agent, which is beneficial to comprehensively clean the evaporator 110.
[0044] It is worth noting that, since the plurality of leading-out portions 212 are connected to the box body 211 and the distribution of the cleaning agent is performed by the containing space 201. Since the pressure at the plurality of leading-out portions 212 is equivalent, the amount of cleaning agent distributed to each leading-out portion 212 is approximately equal, which is beneficial to evenly lead out the cleaning agent, so that the cleaning effect of each position on the evaporator 110 corresponding to each leading-out portion 212 is equivalent, which is beneficial to comprehensively complete the cleaning of the evaporator 110.
[0045] Among them, after the water receiving pipe 220 introduces the cleaning agent from the connection position with the box body 211, since the flow of the cleaning agent needs a certain time, it is easy to affect the amount of cleaning agent distributed by the leading-out portion 212 far away from the connection position of the water receiving pipe 220 and the box body 211. Based on this, in order to reduce the influence caused by the uneven distribution of the cleaning agent due to the distance between the leading-out portion 212 and the water receiving pipe 220, the water receiving pipe 220 is connected to the middle position of the box body 211. Of course, in other embodiments of the present application, the connection position of the water receiving pipe 220 and the box body 211 can also be adjusted according to the actual situation.
[0046] It should be noted that, in other embodiments, a distribution pipe can also be arranged on the water receiving pipe 220 to complete the distribution of the cleaning agent during the flow of the cleaning agent by the water receiving pipe 220, so as to ensure that the amount of cleaning agent distributed by each leading-out portion 212 is equivalent.
[0047] Further, in the present embodiment, the box body 211 is arranged to be curved, and the shape of the box body 211 is adapted to the shape of the evaporator 110; the plurality of leading-out portions 212 are arranged at intervals along the curved path of the box body 211.
[0048] In the case that the evaporator 110 is regarded as a plate structure, the evaporator 110 is in a curved state to facilitate the arrangement of the fan in the recess, and therefore, in order to ensure that each position of the evaporator 110 can be cleaned, the box body 211 is curved to a shape suitable for the evaporator 110, which facilitates the arrangement of the plurality of guide-out portions 212 along the curved shape of the evaporator 110, thereby facilitating the cleaning of each position of the evaporator 110. In other words, the box body 211 is curved to a shape suitable for the evaporator 110, which facilitates the arrangement of the plurality of guide-out portions 212 along the shape of the evaporator 110, thereby providing cleaning to each position of the evaporator 110 and fully and comprehensively completing the cleaning of the evaporator 110.
[0049] It should be understood that in other embodiments of the present application, if the evaporator 110 refers to the heat exchanger of the outdoor unit, which is regarded as a plate structure and is in a flat plate shape, at this time, the box body 211 can be arranged in a straight line, and at the same time, the plurality of guide-out portions 212 can be arranged in a straight line.
[0050] Optionally, in combination with Figure 4 In the present embodiment, the evaporator 110 includes side heat exchange portions 112 and a middle heat exchange portion 111, and the middle heat exchange portion 111 is provided with the side heat exchange portions 112 on both sides; the guide-out portion 212 includes a first guide-out portion 2121 and a second guide-out portion 2122, the first guide-out portion 2121 is connected to the middle heat exchange portion 111, and the second guide-out portion 2122 is connected to the side heat exchange portion 212; the number of the first guide-out portion 2121 is greater than the number of the second guide-out portion 2122 on any side heat exchange portion 112.
[0051] It should be noted that in the process of air conditioning, the amount of airflow passing through the middle heat exchange portion 111 is large, which results in more dust adhering to the middle heat exchange portion 111. Based on this, more first guide-out portions 2121 are arranged on the middle heat exchange portion 111, which can make the middle heat exchange portion 111 distribute more cleaning agent, thereby improving the cleaning effect of the middle heat exchange portion 111.
[0052] For example, in the case of Figure 4 For example, in the case of
[0053] Further, in order to further improve the cleaning effect of the intermediate heat exchange part 111, the distance between two adjacent first leading-out parts 2121 is smaller than the distance between the second leading-out part 2122 and the first leading-out part 2121. That is, more and denser first leading-out parts 2121 are arranged on the intermediate heat exchange part 111, which improves the amount of cleaning agent distributed on the intermediate heat exchange part 111, and makes the cleaning agent on the intermediate heat exchange part 111 more dense, which is beneficial to improve the cleaning degree of the intermediate heat exchange part 111, and is beneficial to ensure that the intermediate heat exchanger can perform efficient heat exchange after cleaning, thereby improving the heat exchange efficiency.
[0054] It should be noted that in the present embodiment, the leading-out part 212 can lead out the cleaning agent through the channel formed in the interior thereof, so that the cleaning agent flows onto the evaporator 110 and flows along the heat exchange pipes on the evaporator 110 to clean the heat exchange pipes. Of course, the leading-out part 212 can also be provided in the form of a porous spray head to spray the cleaning agent onto the evaporator 110 to ensure that the evaporator 110 is fully cleaned.
[0055] In the present embodiment, the box body 211 includes a containing part 2111 and a cover body 2112; the containing space 201 is arranged in the containing part 2111, and the cover body 2112 is connected to the containing part 2111 to cover the containing space 201; the leading-out part 212 is arranged on the side of the containing part 2111 away from the cover body 2112, and the water collecting pipe 220 is connected to the cover body 2112. The box body 211 is formed by the containing part 2111 and the cover body 2112, which is beneficial to the separate manufacture of the containing part 2111 and the cover body 2112, thereby reducing the manufacturing difficulty and cost.
[0056] Of course, in other embodiments of the present application, the box body 211 can also be formed by integral molding.
[0057] In the present embodiment, two connecting parts 202 are protrudingly arranged on the side of the containing part 2111 away from the cover body 2112, the two connecting parts 202 are arranged at the two ends of the containing part 2111, and the plurality of leading-out parts 212 are arranged between the two connecting parts 202; the connecting part 202 is connected to the evaporator 110. By connecting to the evaporator 110 through the connecting part 202, the stability of the connection of the containing part 2111 to the evaporator 110 can be improved.
[0058] The formation of the connecting part 202 can also be regarded as forming a groove for accommodating the leading-out part 212 on the side of the containing part 2111 away from the cover body 2112, and the two connecting parts 202 are formed at the two ends of the groove. By carrying the box body 211 through the connecting part 202, the box body 211 can be carried by the leading-out part 212, which not only improves the stability of the whole cleaning main body 210, but also prevents the leading-out part 212 from being easily damaged by stress.
[0059] In the embodiment, the air conditioner body 100 has a top cover 120, and the top cover 120 is provided with an interface 121 penetrating the top cover 120 and exposed outside the top cover 120, and the interface 121 is used to access the cleaning agent source outside the air conditioner body 100; and the water receiving pipe 220 is connected to the interface 121 away from the cleaning body 210. By providing the interface 121 on the top cover 120, the water receiving pipe 220 inside the air conditioner body 100 can be conveniently connected to the cleaning agent source outside the air conditioner body 100, so that the user can conveniently select an appropriate cleaning agent to clean the evaporator 110.
[0060] Optionally, please refer to Figure 5 In order to facilitate the water receiving pipe 220 to access the interface 121, the inside of the top cover 120 is provided with a connector 122, and the water receiving pipe 220 is connected to the connector 122. The connector 122 can also be regarded as a folded edge of the opening edge of the interface 121 turned inside the air conditioner body 100, and the folded edge forms a tubular shape to form the connector 122. The water receiving pipe 220 can be sleeved on the connector 122, so as to achieve the purpose of accessing the interface 121. In other words, by providing the connector 122, the water receiving pipe 220 can be conveniently connected to the top cover 120, so that the water receiving pipe 220 can be conveniently connected to the external cleaning agent source through the interface 121, and the overall stability of the cleaning assembly 200 is ensured.
[0061] Of course, in other embodiments of the present application, the connector 122 can also be provided on the outside of the top cover 120 to facilitate access to the external cleaning agent source.
[0062] In the embodiment, the water receiving pipe 220 is provided with a water pump 221, and the water pump 221 is used to extract the cleaning agent in the cleaning agent source. During the cleaning process, the water pump 221 provides the power for extracting the cleaning agent, which can improve the impact force of the cleaning body 210 to guide the cleaning agent, not only to ensure that enough cleaning agent is guided to the evaporator 110 to provide sufficient cleaning effect, but also to improve the impact force of the guided cleaning agent to improve the cleaning effect.
[0063] The cleaning assembly 200 also has a driving motor 222 connected to the water pump 221 to provide power for the water pump 221 to extract the cleaning agent.
[0064] Based on the air conditioner 10 provided above, when the evaporator 110 needs to be cleaned, the external cleaning agent source is connected to the interface 121, so that the water pipe 220 is connected to the external cleaning agent source. Under the action of the driving motor 222, the water pump 221 operates and extracts the cleaning agent, so that the cleaning agent is extracted from the cleaning agent source and then introduced into the box body 211 by the water pipe 220. The cleaning agent introduced into the box body 211 is respectively introduced to each position of the evaporator 110 by the plurality of outlet portions 212, so that the evaporator 110 is fully and sufficiently provided with the cleaning effect. Since the cleaning assembly 200 is located in the air conditioner main body 100, it is not necessary to disassemble the air conditioner 10, and the evaporator 110 can be cleaned by directly connecting the external cleaning agent source, so that the cleaning cost and difficulty can be reduced.
[0065] Although the present application has been disclosed as above, the present application is not limited to this. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present application, and the protection scope of the present application should be limited by the scope defined by the claims.
Claims
1. An air conditioner characterized by comprising: The utility model relates to an air conditioner, and more particularly to a cleaning assembly of the air conditioner. The air conditioner comprises: an air conditioner body (100) internally provided with an evaporator (110); a cleaning assembly (200) comprising a cleaning body (210) and a water inlet pipe (220), wherein the cleaning body (210) and the water inlet pipe (220) are both arranged inside the air conditioner body (100); one end of the water inlet pipe (220) is connected to the cleaning body (210), and the other end of the water inlet pipe (220) is used for connecting to a cleaning agent source outside the air conditioner body (100); the cleaning body (210) is arranged above the evaporator (110) to guide the cleaning agent to the evaporator (110); the cleaning body (210) comprises a box body (211) and a plurality of guiding-out portions (212), the box body (211) is internally provided with an accommodating space (201), the water inlet pipe (220) is connected to the box body (211), and an internal passage of the water inlet pipe (220) is in communication with the accommodating space (201); a plurality of the guiding-out portions (212) are arranged on the box body (211) and are used for guiding the cleaning agent in the accommodating space (201) out; the plurality of guiding-out portions (212) are arranged at intervals on the evaporator (110); the water inlet pipe (220) is provided with a water pump (221), and the water pump (221) is used for pumping the cleaning agent in the cleaning agent source; 2. The air conditioner of claim 1, wherein the evaporator (110) comprises side heat exchange portions (112) and a middle heat exchange portion (111), the middle heat exchange portion (111) is provided with the side heat exchange portions (112) on both sides; the guiding-out portion (212) comprises a first guiding-out portion (2121) and a second guiding-out portion (2122), the first guiding-out portion (2121) is connected to the middle heat exchange portion (111), and the second guiding-out portion (2122) is connected to the side heat exchange portion (112).
3. The air conditioner of claim 1, wherein The box body (211) is arranged in a curved manner, and the shape of the box body (211) is adapted to the shape of the evaporator (110); the plurality of guiding-out portions (212) are arranged at intervals along the curved path of the box body (211).
4. The air conditioner of claim 3, wherein The number of the first guiding-out portions (2121) is greater than the number of the second guiding-out portions (2122) on any one of the side heat exchange portions (112).
5. The air conditioner of claim 1, wherein The distance between two adjacent first guiding-out portions (2121) is less than the distance between the second guiding-out portion (2122) and the first guiding-out portion (2121). The box body (211) comprises an accommodating portion (2111) and a cover body (2112); the accommodating space (201) is arranged in the accommodating portion (2111), the cover body (2112) is connected to the accommodating portion (2111) to cover the accommodating space (201); the guiding-out portion (212) is arranged on a side of the accommodating portion (2111) away from the cover body (2112), and the water inlet pipe (220) is connected to the cover body (2112).
6. The air conditioner of claim 5, wherein The accommodating part (2111) is provided with two connecting parts (202) on the side away from the cover (2112), the two connecting parts (202) are arranged at two ends of the accommodating part (2111), and a plurality of the leading-out parts (212) are arranged between the two connecting parts (202); the connecting part (202) is connected to the evaporator (110).
7. The air conditioner of claim 1, wherein The air conditioner main body (100) has a top cover (120), the top cover (120) is provided with an interface (121), the interface (121) penetrates the top cover (120) and is exposed from the outside of the top cover (120), and the interface (121) is used for accessing a cleaning agent source outside the air conditioner main body (100); one end of the water receiving pipe (220) away from the cleaning main body (210) accesses the interface (121).
8. The air conditioner of claim 7, wherein The inside of the top cover (120) is provided with a connector (122), and the water receiving pipe (220) is connected to the connector (122).
Citation Information
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