Air conditioner support structure and air conditioner
By incorporating wiring channels and flow guiding components into the air conditioner bracket structure, condensate is directed to the water receiving fitting, thus solving the problem of condensate flowing outside the electrical components or the water receiving fitting, achieving stable operation of the air conditioner and a good user experience.
Patent Information
- Application Number
- CN202520121346.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-01-17
AI Technical Summary
In existing air conditioners, condensation on the wires can easily flow along the wires to electrical components or drip outside the water collection parts, affecting the normal operation of the air conditioner and the user experience.
A wiring trough is installed on the evaporator bracket, and the wiring trough is connected to the water receiving part through a flow guiding component. The flow guiding component guides the condensate on the wiring harness into the water receiving part, preventing the condensate from flowing along the wiring harness to the outside of the electrical components or the water receiving part.
It effectively prevents condensation from splashing onto electrical components, ensuring stable operation of the air conditioner and improving the user experience.
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Figure CN223882518U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household appliances, and in particular to an air conditioner support structure and an air conditioner. BACKGROUND
[0002] Air conditioners are generally used to adjust parameters such as temperature, humidity, and flow rate of indoor ambient air, and users can adjust the air conditioner according to individual needs to make the indoor environment more comfortable. The air conditioner can include a floor-standing air conditioner.
[0003] The floor-standing air conditioner includes a support structure, which includes an evaporator support, a water receiving element, and the like. An evaporator is assembled on the evaporator support, and other electrical components and their wires can also be arranged on the evaporator support. During air conditioning operation, condensate water is condensed on the surface of the evaporator and the wires, and the condensate water on the evaporator can drip into the water receiving element and be discharged.
[0004] However, the condensate water on the wires is prone to flow along the wires to the electrical components, or to drip outside the water receiving element. Inventive Content
[0005] The embodiments of the present application provide an air conditioner support structure and an air conditioner to solve the problems of existing air conditioners.
[0006] In a first aspect, the embodiments of the present application provide an air conditioner support structure, comprising:
[0007] an evaporator support, wherein a wire slot is arranged on the evaporator support, and the wire slot is used to accommodate a wire harness;
[0008] a water receiving element, wherein the water receiving element is arranged at the bottom of the evaporator support, and the water receiving element is used to receive condensate water;
[0009] a flow guide assembly, wherein the flow guide assembly is arranged on the evaporator support and connected to the wire slot and the water receiving element, and the flow guide assembly is used to guide the condensate water on the wire harness into the water receiving element.
[0010] In a possible implementation, the air conditioner support structure provided by the embodiments of the present application includes:
[0011] a limiting element, wherein the limiting element is connected to the wire slot, and the limiting element is used to limit the direction of the wire harness so that the wire harness forms a water return bend;
[0012] a drainage element, wherein the drainage element is connected to the limiting element and the water receiving element, and the drainage element is used to receive the condensate water dripping from the water return bend below the water return bend and guide the condensate water into the water receiving element.
[0013] In a possible implementation, the air conditioner support structure provided by the embodiments of the present application includes:
[0014] A first sub-limiting piece is arranged in the wiring groove and connected with the bottom end of the wiring groove.
[0015] A second sub-limiting piece is arranged on one side of the first sub-limiting piece, and is used for forming the water return bend together with the first sub-limiting piece.
[0016] In a possible implementation, the upper edge of the second sub-limiting piece is above the lower edge of the first sub-limiting piece, and the lower edge of the first sub-limiting piece and the upper edge of the second sub-limiting piece are used for abutting against the wire harness in sequence to make the wire harness bend to form the water return bend.
[0017] In a possible implementation, the upper edge of the second sub-limiting piece is provided with a wire fixing part used for clamping the wire harness.
[0018] In a possible implementation, the lower edge of the second sub-limiting piece is connected with the upper edge of the drainage piece, and the lower edge of the drainage piece is connected with the water receiving piece.
[0019] In a possible implementation, the drainage piece is an inclined drainage plate.
[0020] In a possible implementation, the limiting piece further includes:
[0021] A third sub-limiting piece is arranged on the side of the second sub-limiting piece away from the first sub-limiting piece.
[0022] A fourth sub-limiting piece is arranged below the drainage piece, and is used for guiding part of the wire harness to the side of the drainage piece away from the wiring groove together with the third sub-limiting piece.
[0023] In a possible implementation, the water receiving piece is integrally formed with the evaporator support.
[0024] In a second aspect, an air conditioner is provided, including an air conditioner body and an air conditioner support structure arranged on the air conditioner body.
[0025] The air conditioner support structure and the air conditioner provided by the embodiment of the application, the air conditioner support structure comprises an evaporator support, a water receiving component and a flow guide assembly, the evaporator support is provided with a wiring groove for accommodating a wire harness, the wiring groove and the water receiving component are connected through the flow guide assembly, when condensed water condenses on the wire harness, the condensed water flows along the wire harness, when the condensed water flows to the flow guide assembly, the flow guide assembly can be used to further guide the condensed water on the wire harness directly into the water receiving component, so that the condensed water cannot continue to flow along the wire harness to an electrical element or flow out of the water receiving component, the condensed water is prevented from splashing out of the water receiving component, the condensed water is prevented from affecting the electrical element, so that the air conditioner can normally and stably operate, and the user experience is good. BRIEF DESCRIPTION OF DRAWINGS
[0026] The drawings incorporated into the specification and forming part of the specification, show embodiments consistent with the application, and together with the specification serve to explain the principles of the application.
[0027] Figure 1 The structural schematic diagram of the air conditioner support structure provided by the embodiment of the application is shown in the figure.
[0028] Figure 2 The Figure 1 enlarged view of A in the figure.
[0029] Figure 3 The Figure 2 schematic diagram of the use state.
[0030] Explanation of reference signs:
[0031] 100-evaporator support;
[0032] 110-wiring groove; 120-wire harness;
[0033] 200-water receiving component;
[0034] 300-flow guide assembly;
[0035] 310-limiting part; 311-first sub-limiting part; 312-second sub-limiting part; 3121-wire fixing part; 313-third sub-limiting part; 314-fourth sub-limiting part;
[0036] 320-drainage component.
[0037] Through the above drawings, the specific embodiments of the application have been shown, and more detailed descriptions will be given hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the application by any means, but to illustrate the concept of the application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION
[0038] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model. In the case of no conflict, the following embodiments and the features in the embodiments can be combined with each other.
[0039] As described in the background, the vertical air conditioner includes a support structure, the support structure includes an evaporator support, a water receiving element and the like, the evaporator is assembled on the evaporator support, and other electrical elements and their wires can also be arranged on the evaporator support. In the air conditioner refrigeration operation process, the evaporator and the wire surface will condense condensate, and the condensate on the evaporator can drip into the water receiving element and be discharged.
[0040] However, the condensate on the wire is easy to flow along the wire to the electrical element, or drip outside the water receiving element.
[0041] In order to overcome the defects in the prior art, the embodiments of the application provide an air conditioner support structure and an air conditioner. The air conditioner support structure includes an evaporator support, a water receiving element and a flow guide assembly. The evaporator support is provided with a wire slot for accommodating a wire harness. The wire slot and the water receiving element are connected by the flow guide assembly. When the condensate condenses on the wire harness, the condensate flows along the wire harness. When the condensate flows to the flow guide assembly, the flow guide assembly can further guide the condensate on the wire harness directly into the water receiving element, so that the condensate does not continue to flow along the wire harness to the electrical element or outside the water receiving element. This avoids the condensate from splashing outside the water receiving element, prevents the condensate from affecting the electrical element, and facilitates the normal and stable operation of the air conditioner, so that the user experience is good.
[0042] The content of the utility model will be described in detail below in combination with the drawings, so that the person skilled in the art can understand the content of the utility model more clearly and in detail.
[0043] Referring to Figures 1 to 3 The embodiments of the application provide an air conditioner support structure, which includes:
[0044] The evaporator support 100 is provided with a wire slot 110 for accommodating a wire harness 120.
[0045] The water receiving element 200 is arranged at the bottom of the evaporator support 100, and is used for receiving condensate.
[0046] The flow guide assembly 300 is arranged on the evaporator bracket 100 and connects the wiring channel 110 and the water receiving member 200, and is used to guide the condensed water on the wire harness 120 to the water receiving member 200.
[0047] It can be understood that the air conditioner bracket structure is arranged in the shell of the indoor unit of the air conditioner as a whole, wherein the evaporator bracket 100 is connected with the shell of the indoor unit, the evaporator is arranged on the evaporator bracket 100, and the evaporator is located at the air inlet side of the shell to exchange heat with the air entering the shell. The side of the evaporator facing the air outlet side of the shell is connected with an air duct member, and a fan is arranged on the air duct member. Thus, when the fan operates, the air exchanged with the evaporator can be blown out from the air outlet side.
[0048] The wiring channel 110 is arranged on the side of the evaporator bracket 100 in the height extension direction, and the wiring channel 110 can accommodate at least one wire harness 120. The wiring channel 110 can be arranged on the left side or the right side of the evaporator bracket 100, or the wiring channel 110 can be arranged on both sides of the evaporator bracket 100. The present application does not limit this.
[0049] In addition, the reinforcing ribs arranged in a crisscross manner can be arranged in the wiring channel 110 to improve the strength of the wiring channel 110 by using the reinforcing ribs, and the overall structural strength of the evaporator bracket 100 can be improved.
[0050] The water receiving member 200 is arranged at the bottom of the evaporator bracket 100, and is mainly used to receive the condensed water dripping from the evaporator. Therefore, the water receiving member 200 needs to be arranged directly below the evaporator, and the area of the water receiving member 200 is greater than or equal to the area of the end surface of the evaporator. Thus, the wiring channel 110 is arranged outside the water receiving member 200, and when the condensed water on the wire harness 120 in the wiring channel 110 drips, it is difficult for the condensed water to naturally fall into the water receiving member 200, and the condensed water flowing along the wire harness 120 is easy to flow to the electrical elements.
[0051] To this end, the flow guide assembly 300 is arranged between the wiring channel 110 of the evaporator and the water receiving member 200, and the flow guide assembly 300 can connect the wiring channel 110 and the water receiving member 200, and the wire harness 120 in the wiring channel 110 can be in contact with the flow guide assembly 300. In this way, when the condensed water on the wire harness 120 flows to the flow guide assembly 300, the condensed water on the wire harness 120 can be guided to the flow guide assembly 300 by using the flow guide assembly 300, and then flows into the water receiving member 200 along the flow guide assembly 300, without further flowing along the wire harness 120. Thus, the condensed water on the wire harness 120 is prevented from flowing out of the water receiving member 200 or flowing to the electrical elements.
[0052] Therefore, the air conditioner support structure provided by the embodiments of the present application comprises an evaporator support 100, a water receiving part 200 and a flow guide assembly 300. The evaporator support 100 is provided with a wiring groove 110 for accommodating a wire harness 120. The wiring groove 110 and the water receiving part 200 are connected by the flow guide assembly 300. When condensed water condenses on the wire harness 120, the condensed water flows along the wire harness 120. When the condensed water flows to the flow guide assembly 300, the flow guide assembly 300 can be used to further guide the condensed water on the wire harness 120 directly into the water receiving part 200, so that the condensed water does not continue to flow along the wire harness 120 to an electrical element or outside the water receiving part 200, thereby avoiding splashing of the condensed water outside the water receiving part 200 and preventing the condensed water from affecting the electrical element, so as to facilitate normal and stable operation of the air conditioner and provide a good user experience.
[0053] In some embodiments, referring to Figure 2 and Figure 3 , the flow guide assembly 300 comprises:
[0054] a limiting part 310 connected with the wiring groove 110, the limiting part 310 being used to limit the running direction of the wire harness 120 so as to form a water return bend of the wire harness 120;
[0055] a drainage part 320 connected with the limiting part 310 and the water receiving part 200, the drainage part 320 being used to receive condensed water dropped from the water return bend below the water return bend and guide the condensed water into the water receiving part 200.
[0056] It can be understood that the limiting part 310 connected with the wiring groove 110 displays the running direction of the wire harness 120, so that the limiting part 310 cooperates with the wiring groove 110 to ensure the constraint effect on the running direction of the wire harness 120. In addition, the limiting part 310 can also make the wire harness 120 form a water return bend in the form of a U-shaped bend. In this way, when the condensed water flows along the wire harness 120 to the lowest point of the water return bend, the condensed water will drop under the action of gravity and will not continue to flow along the wire harness 120, thereby effectively controlling the flow of the condensed water.
[0057] Further, the drainage part 320 is connected with the limiting part 310 and the water receiving part 200, so that the drainage part 320 can be located below the water return bend. When the water return bend drops condensed water, the condensed water will drop onto the drainage part 320 and flow into the water receiving part 200 along the drainage part 320.
[0058] In some embodiments, referring to Figure 1 and Figure 2 , the limiting part 310 comprises:
[0059] a first limiting subpart 311 arranged in the wiring groove 110 and connected with the bottom end of the wiring groove 110;
[0060] The second sub-limiting piece 312 is arranged at one side of the first sub-limiting piece 311, and is used to form a backwater bend with the first sub-limiting piece 311.
[0061] It can be understood that the first sub-limiting piece 311 and the second sub-limiting piece 312 jointly limit the running direction of the wire harness 120, so that the wire harness 120 forms a backwater bend structure, which can make the limiting piece 310 compact in structure and better in limiting effect on the wire harness 120.
[0062] The second sub-limiting piece 312 is arranged at one side of the first sub-limiting piece 311, and is specifically arranged at the side of the first sub-limiting piece 311 away from the wire routing groove 110. The first sub-limiting piece 311 is just located above the drainage piece 320, so that the wire harness 120 can be bent to form a backwater bend away from the water receiving piece 200 side of the wire routing groove 110, and the backwater bend is located above the drainage piece 320, which is convenient for subsequent arrangement of the wire harness 120 and makes the arrangement of the wire harness 120 more convenient.
[0063] In specific implementation, as shown in Figure 2 and Figure 3 , the upper edge of the second sub-limiting piece 312 is located above the lower edge of the first sub-limiting piece 311. The lower edge of the first sub-limiting piece 311 and the upper edge of the second sub-limiting piece 312 are used to abut against the wire harness 120 in sequence, so that the wire harness 120 is bent to form a backwater bend.
[0064] It can be understood that in this way, when the wire harness 120 is arranged, the end of the wire harness 120 can be led out through the wire routing groove 110, then bypass the first sub-limiting piece 311 at the end of the wire routing groove 110, abut against the bottom edge of the first sub-limiting piece 311, and then bypass the upper edge of the second sub-limiting piece 312, so as to form a backwater bend structure, which makes the formation of the backwater bend more convenient and easy to operate.
[0065] Moreover, since the upper edge of the second sub-limiting piece 312 is located above the lower edge of the first sub-limiting piece 311, and the lowest point of the backwater bend depends on the position of the lower edge of the first sub-limiting piece 311, the lowest point of the backwater bend is necessarily lower than the second sub-limiting piece 312, which ensures that the backwater bend structure is more obvious and guarantees that the condensed water can be stably dripped.
[0066] Specifically, as shown in Figure 2 and Figure 3 , the upper edge of the second sub-limiting piece 312 is provided with a wire fixing part 3121, which is used to clamp the wire harness 120.
[0067] By setting the wire clamping portion 3121 to clamp the wire harness 120, the wire harness 120 can be fixed to prevent the wire harness 120 from shaking, so as to avoid the wire harness 120 from being separated from the first sub-limiting part 311 or the second sub-limiting part 312, and keep the water return bend of the wire harness 120 stable.
[0068] For example, the wire clamping portion 3121 can be a wire passing hole arranged on the upper edge of the second sub-limiting part 312, the wire harness 120 is arranged in the wire passing hole to be fixed, the wire clamping portion 3121 can also be a pressing claw arranged on the upper edge of the second sub-limiting part 312, the wire harness 120 can be pressed on the upper edge of the second sub-limiting part 312 by the pressing claw, or the wire clamping portion 3121 can also be a wire clamping groove arranged on the upper edge of the second sub-limiting part 312, the wire harness 120 can be clamped in the wire clamping groove, and the present application does not limit this.
[0069] In some embodiments, referring to Figure 2 and Figure 3 , the lower edge of the second sub-limiting part 312 is connected with the upper edge of the drainage part 320, and the lower edge of the drainage part 320 is connected with the water receiving part 200.
[0070] It can be understood that in this way, the upper and lower edges of the drainage part 320 are connected with the second sub-limiting part 312 and the water receiving part 200 respectively, so that the drainage part 320 can extend from the second sub-limiting part 312 to the water receiving part 200, and then when the condensed water at the water return bend falls on the drainage part 320, the splashed water droplets can be intercepted by the second sub-limiting part 312 and continuously flow along the drainage part 320 to the water receiving part 200, so that the water droplets at the water return bend can be stably flowed into the water receiving part 200, avoiding the condensed water from splashing and falling.
[0071] And in this way, the second sub-limiting part 312 and the drainage part 320 can form a stable receiving structure at the bottom end of the wire slot 110, and when the condensed water drops on the wire slot 110, the drainage part 320 can also receive and guide the condensed water into the water receiving part 200, so as to maximize the receiving of the dropped condensed water.
[0072] In specific implementation, referring to Figure 2 and Figure 3 , the drainage part 320 is an inclined drainage plate.
[0073] By setting the drainage part 320 as an inclined drainage plate, the structure of the drainage part 320 can be relatively simple, and the condensed water dropped from the water return bend can be easily flowed into the water receiving part 200 along the inclined direction of the drainage plate.
[0074] Wherein, in order to effectively control the flow direction of the condensed water, a groove towards the water receiving part 200 can be arranged on the drainage plate to form a drainage groove, so that the condensed water can flow along the drainage groove, and in order to prevent the condensed water from flowing out of the drainage part 320, a baffle can be arranged on the side of the drainage part 320 away from the evaporator support 100, which is not limited in the present application.
[0075] In other embodiments, the drainage part 320 can also be arranged as a funnel structure composed of two plate parts located directly below the water return bend, and the condensed water can be discharged along the bottom of the two plate parts to the water receiving part 200, which is not limited in the present application.
[0076] In addition, as shown in Figure 2 and Figure 3 , the limiting part 310 further comprises:
[0077] The third sub-limiting part 313 is arranged on the side of the second sub-limiting part 312 away from the first sub-limiting part 311;
[0078] The fourth sub-limiting part 314 is arranged below the drainage part 320, and the fourth sub-limiting part 314 is used to guide part of the wire harness 120 to the side of the drainage part 320 away from the wiring groove 110 together with the third sub-limiting part 313.
[0079] It can be understood that by arranging the third sub-limiting part 313 and the fourth sub-limiting part 314, the remaining wire harness 120 after forming the water return bend can be further limited to tighten the wire harness 120.
[0080] And such arrangement can control the direction of the wire harness 120, so that the wire harness 120 can be wound to the back side of the drainage part 320, which is convenient for subsequent wiring layout, and makes the wire harness 120 more convenient to layout.
[0081] In some embodiments, as shown in Figures 1 to 3 , the water receiving part 200 is integrally formed with the evaporator support 100.
[0082] Such arrangement can make the evaporator support 100 and the water receiving part 200 into an integrated structure, save the additional arrangement of the water receiving disc, make the air conditioner support structure more simple and compact, and have higher space utilization.
[0083] The present application also provides an air conditioner, which comprises an air conditioner body and an air conditioner support structure as in any of the above embodiments arranged on the air conditioner body.
[0084] Wherein, the air conditioner support structure has been described in detail in the above embodiments, which will not be repeated here.
[0085] The air conditioner provided by the embodiment of the present application is provided with an air conditioner support structure, the air conditioner support structure comprises an evaporator support 100, a water receiving part 200 and a flow guide assembly 300, the evaporator support 100 is provided with a wiring slot 110 for accommodating a wire harness 120, the wiring slot 110 and the water receiving part 200 are connected through the flow guide assembly 300, when the condensed water on the wire harness 120 condenses, the condensed water flows along the wire harness 120, when the condensed water flows to the flow guide assembly 300, the flow guide assembly 300 can be used to further guide the condensed water on the wire harness 120 to the water receiving part 200, and the condensed water will not continue to flow along the wire harness 120 to the electrical element or flow out of the water receiving part 200, so that the condensed water is prevented from splashing out of the water receiving part 200, the electrical element is prevented from being affected by the condensed water, the air conditioner can normally and stably operate, and the user experience is good.
[0086] It should be noted that the terms "one embodiment", "an embodiment", "certain embodiments", "some embodiments", and the like, in the specification are not necessarily referring to the same embodiment, unless otherwise noted. Furthermore, the terms "a" or "an" are understood not to exclude the possibility that a feature, structure, or property is implemented by more than one instance.
[0087] In general, terminology can be understood at least in part from usage in context. For example, terms, such as "one or more" as used herein, can be understood as invoking the possible presence of any feature, structure, or characteristic or a combination thereof, at least once, and / or multiple times. Similarly, terms, such as "a" or "an" as used herein, can be understood to carry a meaning directed to the presence of at least one, or a combination of, the particular feature, structure, or characteristic.
[0088] It will be readily understood that the terms "on", "above", and "on top of", as used herein, should be interpreted in the broadest context to mean not only "directly on something" but also "on something with intervening features or layers therebetween", and that "above" or "on top of" should be interpreted to mean not only "above or on top of something" but also "above or on top of something with no intervening features or layers therebetween" (i.e., directly on something).
[0089] In addition, spatially relative terms, such as "under", "below", "lower", "above", "upper", and the like, can be used herein for ease of description to describe one element or feature's relationship to another element(s) or feature(s) as illustrated in the figures. Spatially relative terms can be intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the figures. The device can be otherwise oriented (rotated 90° or at other orientations) and the spatially relative descriptors used herein interpreted accordingly.
[0090] Finally, it should be noted that the above-mentioned embodiments are merely used to illustrate the technical solutions of the present application, rather than limiting them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some or all of the technical features can be replaced by equivalents; and these modifications or replacements do not cause the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. An air conditioner support structure, characterized by, The application relates to an evaporator bracket (100) provided with a wire slot (110) for accommodating a wire harness (120), a water receiving part (200) arranged at the bottom of the evaporator bracket (100) and used for receiving condensed water, and a flow guide assembly (300) arranged on the evaporator bracket (100) and connected with the wire slot (110) and the water receiving part (200), which is used for guiding the condensed water on the wire harness (120) to the water receiving part (200). The flow guide assembly (300) comprises a limiting part (310) connected with the wire slot (110) and used for limiting the wire harness (120) to form a water return bend, and a flow guide part (320) connected with the limiting part (310) and the water receiving part (200) and used for receiving the condensed water dripping from the water return bend below the water return bend and guiding the condensed water to the water receiving part (200). The limiting part (310) comprises a first sub-limiting part (311) arranged in the wire slot (110) and connected with the bottom end of the wire slot (110), and a second sub-limiting part (312) arranged on one side of the first sub-limiting part (311) and used for forming the water return bend together with the first sub-limiting part (311). The upper edge of the second sub-limiting part (312) is arranged above the lower edge of the first sub-limiting part (311), and the lower edge of the first sub-limiting part (311) and the upper edge of the second sub-limiting part (312) are used for abutting against the wire harness (120) in sequence to make the wire harness (120) bend to form the water return bend.
2. The air conditioner bracket structure according to claim 1, characterized by The upper edge of the second sub-limiting part (312) is provided with a wire fixing part (3121) used for clamping the wire harness (120). The lower edge of the second sub-limiting part (312) is connected with the upper edge of the flow guide part (320), and the lower edge of the flow guide part (320) is connected with the water receiving part (200). The flow guide part (320) is an inclined flow guide plate.
3. The air conditioner bracket structure according to claim 2, characterized by The limiting part (310) further comprises a third sub-limiting part (313) arranged on the side of the second sub-limiting part (312) away from the first sub-limiting part (311). 4. The air conditioner bracket structure according to claim 3, characterized by 5. The air conditioner support structure according to claim 4, wherein 6. The air conditioner support structure according to any one of claims 3-5, wherein 7. The air conditioner support structure according to claim 6, wherein 8. The air conditioner support structure according to any one of claims 3-5, wherein A fourth sub-limiting piece (314) is arranged below the flow guide piece (320), and is used to guide part of the wire harness (120) to the side of the flow guide piece (320) away from the wire routing groove (110) together with the third sub-limiting piece (313).
9. The air conditioner support structure according to any one of claims 1-5, wherein The water receiving piece (200) is integrally formed with the evaporator support (100).
10. An air conditioner characterized by comprising: The air conditioner support structure comprises an air conditioner body and the air conditioner support structure as claimed in any one of claims 1-9 arranged on the air conditioner body.