Air conditioner

By designing the air guide vanes of the air conditioner as a one-piece molded component and integrally molded with the connecting rod, the problems of numerous parts and complex installation caused by the multi-outlet design are solved, resulting in cost reduction and efficiency improvement.

CN223826332UActive Publication Date: 2026-01-23GD MIDEA AIR CONDITIONING EQUIP CO LTD +1
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Patent Information

Application Number
CN202420519695.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-03-15
Publication Date
2026-01-23
Estimated Expiration
2034-03-15

AI Technical Summary

Technical Problem

The multi-outlet design of existing air conditioners results in a large number of parts, complicated installation steps, high production costs, and low efficiency.

Method used

Each air guide blade is a one-piece molded part, and the connecting rod is located between the first and second air guide sections. The connecting rod and the air guide section are integrally molded as one component. The air guide section is moved by the same connecting rod, which reduces the number of connecting rods and simplifies the structure.

Benefits of technology

Reduce the number of air conditioner parts, simplify installation steps, lower production costs, and improve production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The air conditioner comprises a machine shell assembly, a heat exchange air supply assembly and an air guide component, the heat exchange air supply assembly and the air guide component are arranged in the machine shell assembly, and the machine shell assembly is provided with a first air outlet, a second air outlet, a first air outlet channel and a second air outlet channel, the first air outlet channel corresponds to and communicates with the first air outlet, and the second air outlet channel corresponds to and communicates with the second air outlet; the air guide component is arranged in the machine shell assembly and comprises a connecting rod and a plurality of air guide blades arranged in the vertical direction, each air guide blade is an integrally-formed piece and comprises a first air guide part and a second air guide part, the first air guide part is located in the first air outlet channel, and the second air guide part is located in the second air outlet channel; the connecting rod extends in the vertical direction and can move in the vertical direction, and the connecting rod is located between the first air guiding part and the second air guiding part and connected with the first air guiding part and the second air guiding part. According to the air conditioner, the first air guide part and the second air guide part are integrally formed into one component and driven by the same connecting rod to move, the number of the connecting rods can be reduced, the number of parts of the air conditioner can be reduced, the structure can be simplified, installation steps can be reduced, the needed time can be shortened, and the installation cost can be reduced. The production cost of the air conditioner is reduced, and the production efficiency of the air conditioner is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to air conditioning technical field especially is related to a kind of air conditioners. BACKGROUND

[0002] In the related art, the air conditioner adopts a multi-air outlet design, the air conditioner forms a first air outlet and a second air outlet, a plurality of guide vanes are respectively arranged in the two air outlet channels corresponding to the first air outlet and the second air outlet, and a connecting rod for controlling the linkage of the plurality of guide vanes is respectively arranged in the two air outlet channels. The air conditioner has a large number of components. Each guide vane and the connecting rod need to be installed in the air conditioner housing assembly one by one, which requires a large number of installation steps and a long installation time, resulting in high production cost and low production efficiency of the air conditioner. Therefore, improvement is needed. SUMMARY

[0003] The utility model aims at at least one of the technical problems existing in the prior art. To this end, one object of the utility model is to provide an air conditioner. Each guide vane of the air conditioner is an integral part and includes a first guide portion located in a first air outlet channel and a second guide portion located in a second air outlet channel. The connecting rod is located between the first guide portion and the second guide portion and connected to both the first guide portion and the second guide portion. The first guide portion and the second guide portion are integrally formed as one component. The first guide portion and the second guide portion are moved by the same connecting rod. This can reduce the number of connecting rods, the number of components of the air conditioner, and simplify the structure. This can reduce the installation steps and the required time, which is beneficial to reduce the production cost and improve the production efficiency of the air conditioner.

[0004] According to the air conditioner of the utility model embodiment, the air conditioner includes: a housing assembly, which forms a first air outlet and a second air outlet arranged at intervals along the left-right direction and has a first air outlet channel and a second air outlet channel. The first air outlet channel corresponds to and communicates with the first air outlet. The second air outlet channel corresponds to and communicates with the second air outlet. A heat exchange and air supply assembly is arranged in the housing assembly. A guide component is arranged in the housing assembly and includes a connecting rod and a plurality of guide vanes arranged along the up-down direction. Each guide vane is an integral part and includes a first guide portion and a second guide portion. The first guide portion is located in the first air outlet channel. The second guide portion is located in the second air outlet channel. The connecting rod extends along the up-down direction and is movable along the up-down direction. The connecting rod is located between the first guide portion and the second guide portion and connected to both the first guide portion and the second guide portion.

[0005] According to the air conditioner provided by the embodiment of the utility model, the air guide component is arranged as including connecting rod and multiple air guide blades, and each air guide blade is an integral forming piece and includes first air guide part in the first air outlet channel and second air guide part in the second air outlet channel, the connecting rod is located between the first air guide part and the second air guide part and is connected with the first air guide part and the second air guide part, the first air guide part and the second air guide part are integrally formed as one component, the first air guide part and the second air guide part are driven to move through the same connecting rod, the number of connecting rods can be reduced, which can reduce the number of components of the air conditioner, simplify the structure, thereby reducing the installation steps and the required time, and help to reduce the production cost of the air conditioner and improve the production efficiency of the air conditioner.

[0006] According to some embodiments of the utility model, the air guide blade includes a connecting part connected between the first air guide part and the second air guide part, and the connecting rod is connected with the connecting part.

[0007] According to some optional embodiments of the utility model, the thickness of the connecting part is not greater than the thickness of the first air guide part; and / or, the thickness of the connecting part is not greater than the thickness of the second air guide part.

[0008] According to some optional embodiments of the utility model, the connecting part includes a first connecting part, a second connecting part and a third connecting part, the third connecting part is connected between the first connecting part and the second connecting part, the first air guide part is connected with the first connecting part, the second air guide part is connected with the second connecting part, the connecting rod is connected with the third connecting part, and the thickness of the first connecting part and the second connecting part is not greater than the thickness of the third connecting part.

[0009] According to some optional embodiments of the utility model, reinforcing ribs are formed on the third connecting part, the reinforcing ribs are multiple, and the multiple reinforcing ribs are arranged in the left-right direction.

[0010] According to some optional embodiments of the utility model, the rear side of the connecting part is formed with a notch.

[0011] According to some embodiments of the utility model, multiple thinning grooves are formed on the first air guide part; and / or, multiple thinning grooves are formed on the second air guide part.

[0012] According to some embodiments of the present application, the air guiding component comprises a mounting plate, the mounting plate is fixed to the casing assembly, each of the air guiding blades comprises a first mounting shaft and a second mounting shaft, the first mounting shaft is connected to one end of the first air guiding part away from the second air guiding part, the second mounting shaft is connected to one end of the second air guiding part away from the first air guiding part, the mounting plate is formed with a first mounting hole and a second mounting hole, the first mounting shaft is rotatably mounted in the first mounting hole, and the second mounting shaft is rotatably mounted in the second mounting hole.

[0013] According to some optional embodiments of the present application, the first mounting shaft is slidable in the left-right direction relative to the first mounting hole, and the second mounting shaft is slidable in the left-right direction relative to the second mounting hole.

[0014] According to some optional embodiments of the present application, the sliding gap between the outer peripheral wall of the first mounting shaft and the inner peripheral wall of the first mounting hole in the left-right direction is 2-20 mm, and the sliding gap between the outer peripheral wall of the second mounting shaft and the inner peripheral wall of the second mounting hole in the left-right direction is 2-20 mm.

[0015] According to some optional embodiments of the present application, the connecting rod is connected to one side of the air guiding blade adjacent to the mounting plate.

[0016] According to some optional embodiments of the present application, the mounting plate comprises a first mounting part and a second mounting part arranged at an included angle, the first mounting hole is formed in the first mounting part, and the second mounting hole is formed in the second mounting part.

[0017] According to some optional embodiments of the present application, the connecting rod is integrally formed with the air guiding blade.

[0018] The additional aspects and advantages of the present application will be partially given in the following description, partially will become obvious from the following description, or will be understood by the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0019] The above and / or additional aspects and advantages of the present application will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings in which:

[0020] Figure 1 is a schematic view of an air conditioner indoor unit according to some embodiments of the present application;

[0021] Figure 2 is Figure 1 a front view of part of the structure of the air conditioner indoor unit in

[0022] Figure 3 is along Figure 2a sectional view along the H-H line in FIG. 1;

[0023] Figure 4 is along Figure 2 a sectional view along the G-G line in FIG. 1;

[0024] Figure 5 is Figure 1 an assembly view of a partial structure of an air conditioner indoor unit in FIG. 1;

[0025] Figure 6 is Figure 5 a close-up view of F in FIG. 1;

[0026] Figure 7 is Figure 1 a front view of a partial structure of an air conditioner indoor unit in FIG. 1;

[0027] Figure 8 is Figure 3 a sectional view along the A-A line in FIG. 1;

[0028] Figure 9 is Figure 1 a side view of a partial structure of an air conditioner indoor unit in FIG. 1;

[0029] Figure 10 is Figure 1 a top view of a partial structure of an air conditioner indoor unit in FIG. 1;

[0030] Figure 11 is Figure 1 a perspective structural schematic view of a connecting rod and a guide vane in FIG. 1;

[0031] Figure 12 is Figure 7 a close-up view of C in FIG. 1;

[0032] Figure 13 is Figure 1 a top view of a connecting rod and a guide vane in FIG. 1;

[0033] Figure 14 is Figure 9 a sectional view along the B-B line in FIG. 1;

[0034] Figure 15 is Figure 9 a sectional view along the D-D line in FIG. 1;

[0035] Figure 16 is a perspective structural schematic view of a connecting rod and a guide vane of an air conditioner according to another embodiment of the present utility model;

[0036] Figure 17 is Figure 13 a front view of a connecting rod and a guide vane in FIG. 1;

[0037] Figure 18 is Figure 14a sectional view of the E-E line in FIG. 1;

[0038] Figure 19 is Figure 13 a top view of the connecting rod and the guide vane in FIG. 1;

[0039] Figure 20 is a schematic view of the connecting rod and the guide vane according to some embodiments of the present application, the guide vane is in a horizontal guiding state;

[0040] Figure 21 is a schematic view of the connecting rod and the guide vane according to some embodiments of the present application, the guide vane is in a downward guiding state;

[0041] Figure 22 is a schematic view of the connecting rod and the guide vane according to some embodiments of the present application, the guide vane is in an upward guiding state.

[0042] Reference Signs:

[0043] 100, indoor unit of air conditioner;

[0044] 1, housing assembly; 11, first air outlet; 12, second air outlet; 13, first air outlet channel; 14, second air outlet channel;

[0045] 3, air guiding component; 31, connecting rod; 32, guide vane; 321, first air guiding part; 3211, first mounting shaft; 322, second air guiding part; 3221, second mounting shaft; 323, connecting part; 3231, first connecting part; 3232, second connecting part; 3233, third connecting part; 3234, reinforcing protruding rib; 324, notch; 33, mounting plate; 331, first mounting hole; 332, second mounting hole; 333, first mounting part; 334, second mounting part;

[0046] 4, thinning groove;

[0047] 5, sliding gap. DETAILED DESCRIPTION

[0048] Embodiments of the present application will be described in detail below, examples of which are shown in the drawings, wherein the same or similar reference signs represent 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 only used to explain the present application, and cannot be understood as a limitation of the present application.

[0049] Reference will be made to Figures 1-22 The air conditioner according to embodiments of the present application is described below.

[0050] Reference Figures 1-4The air conditioner according to the embodiment of the utility model, including: shell subassembly 1, heat exchange air supply subassembly and air deflector 3, heat exchange air supply subassembly and air deflector 3 are located in shell subassembly 1, heat exchange air supply subassembly is located at the upstream of air deflector 3.

[0051] Shell subassembly 1 is formed with first air outlet 11 and second air outlet 12 that are arranged at intervals along left and right directions, and shell subassembly 1 has first air outlet channel 13 and second air outlet channel 14, first air outlet channel 13 corresponds and communicates with first air outlet 11, and the airflow in first air outlet channel 13 enters the room through first air outlet 11, second air outlet channel 14 corresponds and communicates with second air outlet 12, and the airflow in second air outlet channel 14 enters the room through second air outlet 12.

[0052] Heat exchange air supply subassembly includes fan component and heat exchanger component, the fan component is used to drive the airflow in shell subassembly 1 to flow out from first air outlet 11 and second air outlet 12 and enter the room, and the heat exchanger component is used to exchange heat with the airflow in shell subassembly 1 to realize cooling adjustment or heating adjustment of the airflow.

[0053] Reference Figures 3-15 Air deflector 3 includes connecting rod 31 and a plurality of air deflector blades 32 arranged along the up and down direction, each air deflector blade 32 is an integral molding piece and includes first air deflector 321 and second air deflector 322, first air deflector 321 is located in first air outlet channel 13, first air deflector 321 can be used to adjust the flow direction of the airflow in first air outlet channel 13 and can be used to adjust the air outlet direction and air outlet angle of first air outlet 11, second air deflector 322 is located in second air outlet channel 14, second air deflector 322 can be used to adjust the flow direction of the airflow in second air outlet channel 14 and can be used to adjust the air outlet direction and air outlet angle of second air outlet 12. First air deflector 321 and second air deflector 322 are integrally formed into one component, so that the number of components of the air conditioner is reduced.

[0054] Reference Figures 3-10The connecting rod 31 extends in the up-down direction and is movable in the up-down direction. The connecting rod 31 is located between the first air guide part 321 and the second air guide part 322 and is connected with the first air guide part 321 and the second air guide part 322. The connecting rod 31 can drive the first air guide part 321 and the second air guide part 322 to swing in the up-down direction by moving in the up-down direction, so as to adjust the flow direction of the air flow in the first air outlet passage 13 and the first air outlet 11 and adjust the flow direction of the air flow in the second air outlet passage 14 and the second air outlet 12. The first air guide part 321 and the second air guide part 322 can be swung simultaneously by the same connecting rod 31, so that the number of connecting rods 31 is reduced, and the number of parts of the air conditioner is also reduced.

[0055] Optionally, the air conditioner can further comprise a driving mechanism, for example, the driving mechanism can comprise a motor. The driving mechanism is connected with the connecting rod 31 to drive the connecting rod 31 to move in the up-down direction.

[0056] Optionally, the air guide blades 32 are formed as flexible parts, for example, the air guide blades 32 can be formed as plastic parts.

[0057] Optionally, when the connecting rod 31 moves up and down, the connecting rod 31 deforms the air guide blades 32 to make the air guide blades 32 swing in the up-down direction.

[0058] For example, in the heating mode of the air conditioner, the driving mechanism drives the connecting rod 31 to move upward, the connecting rod 31 drives the plurality of air guide blades 32 to move and swing downward, the first air guide part 321 guides the air flow in the first air outlet passage 13 downward, and the second air guide part 322 guides the air flow in the second air outlet passage 14 downward, so that the air flow flows toward the lower part of the indoor space through the first air outlet 11 and the second air outlet 12, to heat the indoor space.

[0059] For example, in the heating mode of the air conditioner, the driving mechanism drives the connecting rod 31 to move upward, the connecting rod 31 drives the plurality of air guide blades 32 to move and swing downward, the first air guide part 321 guides the air flow in the first air outlet passage 13 downward, and the second air guide part 322 guides the air flow in the second air outlet passage 14 downward, so that the air flow flows toward the lower part of the indoor space through the first air outlet 11 and the second air outlet 12, to heat the indoor space.

[0060] According to the air conditioner provided by the embodiment of the utility model, through setting the air guide component 3 as including the connecting rod 31 and multiple air guide blades 32, and making each air guide blade 32 be an integral forming piece and including the first air guide part 321 located at the first air outlet channel 13 and the second air guide part 322 located at the second air outlet channel 14, the connecting rod 31 is located between the first air guide part 321 and the second air guide part 322 and is connected with the first air guide part 321 and the second air guide part 322, the first air guide part 321 and the second air guide part 322 are integrally formed as one component, the first air guide part 321 and the second air guide part 322 are driven to move through the same connecting rod 31, the number of the connecting rod 31 can be reduced, these can reduce the number of components of the air conditioner, the structure can be simplified, so that the installation steps and the required time length can be reduced, and the production cost of the air conditioner can be reduced and the production efficiency of the air conditioner can be improved.

[0061] Reference Figures 8-9 , Figure 12 According to some embodiments of the utility model, the air guide blade 32 includes the connecting part 323, the connecting part 323 is connected between the first air guide part 321 and the second air guide part 322, and the connecting rod 31 is connected with the connecting part 323. By setting the connecting part 323, and making the connecting part 323 connected between the first air guide part 321 and the second air guide part 322, and making the connecting part 323 connected with the connecting rod 31, the first air guide part 321 and the second air guide part 322 are connected with the connecting rod 31 through the connecting part 323, when the connecting rod 31 moves up and down, the connecting part 323 can transmit the force from the connecting rod 31 to the first air guide part 321 and the second air guide part 322, so that the connecting rod 31 can effectively control the first air guide part 321 and the second air guide part 322.

[0062] Reference 11- Figure 12 According to some optional embodiments of the utility model, the thickness of the connecting part 323 is not greater than the thickness of the first air guide part 321. For example, the thickness of the connecting part 323 is less than the thickness of the first air guide part 321; for example, the thickness of the connecting part 323 is the same as the thickness of the first air guide part 321. By making the thickness of the connecting part 323 not greater than the thickness of the first air guide part 321, the connecting part 323 is relatively thin, and the position of the connecting part 323 of the air guide blade 32 is easy to deform, so that when the connecting rod 31 moves up and down, the air guide blade 32 is easy to swing in the up-down direction.

[0063] Reference 11- Figure 12According to some optional embodiments of the present invention, the thickness of the connecting portion 323 is not greater than the thickness of the second air guide portion 322. For example, the thickness of the connecting portion 323 is less than the thickness of the second air guide portion 322; for example, the thickness of the connecting portion 323 is the same as the thickness of the second air guide portion 322. By making the thickness of the connecting portion 323 not greater than the thickness of the second air guide portion 322, the connecting portion 323 is made relatively thin, and the position of the connecting portion 323 of the air guide blade 32 is easily deformed, so that when the connecting rod 31 moves up and down, the air guide blade 32 is easy to swing in the up and down direction.

[0064] Reference 11- Figure 12 According to some optional embodiments of the present invention, the connecting portion 323 includes a first connecting portion 3231, a second connecting portion 3232, and a third connecting portion 3233. The third connecting portion 3233 is connected between the first connecting portion 3231 and the second connecting portion 3232. The first air guide portion 321 is connected to the first connecting portion 3231, the second air guide portion 322 is connected to the second connecting portion 3232, and the connecting rod 31 is connected to the third connecting portion 3233. The thickness of both the first connecting portion 3231 and the second connecting portion 3232 is not greater than the thickness of the third connecting portion 3233. For example, the thickness of the first connecting portion 3231 and the second connecting portion 3232 is less than the thickness of the third connecting portion 3233; for example, the thickness of the first connecting portion 3231 and the second connecting portion 3232 is the same as the thickness of the third connecting portion 3233. By including a first connecting part 3231, a second connecting part 3232, and a third connecting part 3233 in the connecting part 3233, and ensuring that the thickness of the first connecting part 3231 and the second connecting part 3232 is not greater than the thickness of the third connecting part 3233, the third connecting part 3233 is the direct stress point when the connecting rod 31 moves up and down and transmits power to the guide vane 32. The greater the thickness of the third connecting part 3233, the higher its structural strength can be. This can reduce or avoid cracking or breakage of the third connecting part 3233 during the operation of the guide component 3, which is beneficial to improving the fatigue limit and service life of the guide vane 32.

[0065] refer to Figure 12 According to some optional embodiments of the present invention, a plurality of reinforcing ribs 3234 are formed on the third connecting portion 3233, and the plurality of reinforcing ribs 3234 are arranged at intervals in the left-right direction. By forming a plurality of reinforcing ribs 3234 on the third connecting portion 3233, and the plurality of reinforcing ribs 3234 being arranged at intervals in the left-right direction, the reinforcing ribs 3234 help to improve the structural strength of the third connecting portion 3233, and can further extend the service life of the guide vane 32.

[0066] Reference 11- Figure 12, according to some optional embodiments of the utility model, the rear side of connecting portion 323 forms gap 324. By forming gap 324 on the rear side of connecting portion 323, when connecting rod 31 moves along the up-down direction and transmits force to third connecting portion 3233, and third connecting portion 3233 continues to transmit force to first connecting portion 3231 and second connecting portion 3232, first connecting portion 3231 and second connecting portion 3232 are easy to deform relative to third connecting portion 3233, so that first air guide portion 321 connected with first connecting portion 3231 and second air guide portion 322 connected with second connecting portion 3232 are easy to swing along the up-down direction.

[0067] Reference 11- Figure 12 , according to some embodiments of the utility model, a plurality of thinning grooves 4 are formed on first air guide portion 321. By forming a plurality of thinning grooves 4 on first air guide portion 321, the material usage of first air guide portion 321 can be reduced, and the setting of thinning grooves 4 is conducive to improving the flexibility of first air guide portion 321, so that first air guide portion 321 is more likely to deform under the driving of connecting rod 31, thereby making the swing amplitude of first air guide portion 321 easy to control, and facilitating the adjustment of the air outlet direction and air outlet angle of first air outlet 11.

[0068] Reference 11- Figure 12 , according to some embodiments of the utility model, a plurality of thinning grooves 4 are formed on second air guide portion 322. By forming a plurality of thinning grooves 4 on second air guide portion 322, the material usage of second air guide portion 322 can be reduced, and the setting of thinning grooves 4 is conducive to improving the flexibility of second air guide portion 322, so that second air guide portion 322 is more likely to deform under the driving of connecting rod 31, thereby making the swing amplitude of first air guide portion 321 easy to control, and facilitating the adjustment of the air outlet direction and air outlet angle of first air outlet 11.

[0069] Reference Figures 3-9According to some embodiments of the present application, the air guiding component 3 comprises a mounting plate 33, the mounting plate 33 is fixed to the casing assembly 1, and the air guiding blades 32 are mounted on the casing assembly 1 through the mounting plate 33. Each air guiding blade 32 comprises a first mounting shaft 3211 and a second mounting shaft 3221, the first mounting shaft 3211 is connected to an end of the first air guiding part 321 away from the second air guiding part 322, the second mounting shaft 3221 is connected to an end of the second air guiding part 322 away from the first air guiding part 321, the mounting plate 33 is formed with a first mounting hole 331 and a second mounting hole 332, the first mounting shaft 3211 is rotatably mounted in the first mounting hole 331, when the connecting rod 31 moves in the up-down direction, the end of the first air guiding part 321 away from the second air guiding part 322 can rotate relative to the mounting plate 33 through the first mounting shaft 3211, and the second mounting shaft 3221 is rotatably mounted in the second mounting hole 332, when the connecting rod 31 moves in the up-down direction, the end of the second air guiding part 322 away from the first air guiding part 321 can rotate relative to the mounting plate 33 through the second mounting shaft 3221.

[0070] For example, in the heating mode of the air conditioner, the connecting rod 31 moves upward, the connecting rod 31 exerts an upward force on the air guiding blade 32 and moves it upward, the end of the first air guiding part 321 away from the second air guiding part 322 is subjected to a downward force of the mounting plate 33, the end of the first air guiding part 321 away from the second air guiding part 322 rotates relative to the mounting plate 33 through the first mounting shaft 3211, so that the first air guiding part 321 swings downward, and the first air guiding part 321 guides the airflow in the first air outlet channel 13 downward; the end of the second air guiding part 322 away from the first air guiding part 321 is also subjected to a downward force of the mounting plate 33, the end of the second air guiding part 322 away from the first air guiding part 321 rotates relative to the mounting plate 33 through the second mounting shaft 3221, so that the second air guiding part 322 swings downward, and the second air guiding part 322 guides the airflow in the second air outlet channel 14 downward; so that the airflow flows toward the lower part of the indoor through the first air outlet 11 and the second air outlet 12 to heat the indoor.

[0071] For example, in the cooling mode of the air conditioner, the connecting rod 31 moves downward, the connecting rod 31 exerts an upward force on the air guide blade 32 and moves it downward, the end of the first air guide part 321 away from the second air guide part 322 is subjected to the upward force of the mounting plate 33, the end of the first air guide part 321 away from the second air guide part 322 is rotated relative to the mounting plate 33 through the first mounting shaft 3211, so that the first air guide part 321 swings upward, the first air guide part 321 guides the airflow in the first air outlet passage 13 toward the upper side; the end of the second air guide part 322 away from the first air guide part 321 is also subjected to the upward force of the mounting plate 33, the end of the second air guide part 322 away from the first air guide part 321 is rotated relative to the mounting plate 33 through the second mounting shaft 3221, so that the second air guide part 322 swings upward, the second air guide part 322 guides the airflow in the second air outlet passage 14 toward the upper side; so that the airflow flows toward the upper side of the indoor through the first air outlet 11 and the second air outlet 12 to cool the indoor.

[0072] By rotatably mounting the first mounting shaft 3211 connected to the end of the first air guide part 321 away from the second air guide part 322 in the first mounting hole 331 of the mounting plate 33, and rotatably mounting the second mounting shaft 3221 connected to the end of the second air guide part 322 away from the first air guide part 321 in the second mounting hole 332 of the mounting plate 33, the first air guide part 321 and the second air guide part 322 can rotate relative to the mounting plate 33 to a certain extent when subjected to force, which is beneficial to increase the swing amplitude of the air guide blade 32 and reduce the deformation degree of the first air guide part 321 and the second air guide part 322, and can avoid tearing of the first air guide part 321 and the second air guide part 322 due to large deformation degree.

[0073] Reference Figures 5-6 According to some optional embodiments of the present application, the first mounting shaft 3211 is slidable relative to the first mounting hole 331 in the left-right direction, and when the connecting rod 31 moves in the up-down direction and makes the first air guide part 321 swing in the up-down direction, the first mounting shaft 3211 connected to the first air guide part 321 can slide relative to the first mounting hole 331 in the left-right direction. The second mounting shaft 3221 is slidable relative to the second mounting hole 332 in the left-right direction, and when the connecting rod 31 moves in the up-down direction and makes the second air guide part 322 swing in the up-down direction, the second mounting shaft 3221 connected to the second air guide part 322 can slide relative to the second mounting hole 332 in the left-right direction.

[0074] Reference Figures 20-21For example, when the air guide vane 32 switches from a horizontal air guide state to a downward air guide state, the connecting rod 31 moves upward, the first air guide part 321 swings downward, and the first mounting shaft 3211, which is connected to the first air guide part 321 at the end away from the second air guide part 322, slides to the right relative to the first mounting hole 331; the second air guide part 322 swings downward, and the second mounting shaft 3221, which is connected to the second air guide part 322 at the end away from the first air guide part 321, slides to the left relative to the second mounting hole 332.

[0075] refer to Figures 20-21 For example, when the air guide vane 32 switches from a downward air guiding state to a horizontal air guiding state, the connecting rod 31 moves downward, the first air guide part 321 swings upward, and the first mounting shaft 3211, which is connected to the first air guide part 321 at the end away from the second air guide part 322, slides to the left relative to the first mounting hole 331; the second air guide part 322 swings upward, and the second mounting shaft 3221, which is connected to the second air guide part 322 at the end away from the first air guide part 321, slides to the right relative to the second mounting hole 332.

[0076] refer to Figure 20 , Figure 22 For example, when the air guide vane 32 switches from a horizontal air guide state to an upward air guide state, the connecting rod 31 moves downward, the first air guide part 321 swings upward, and the first mounting shaft 3211 connected to the first air guide part 321 at the end away from the second air guide part 322 slides to the right relative to the first mounting hole 331; the second air guide part 322 swings upward, and the second mounting shaft 3221 connected to the second air guide part 322 at the end away from the first air guide part 321 slides to the left relative to the second mounting hole 332.

[0077] refer to Figure 20 , Figure 22 For example, when the air guide vane 32 switches from a downward air guiding state to a horizontal air guiding state, the connecting rod 31 moves downward, the first air guide part 321 swings downward, and the first mounting shaft 3211, which is connected to the first air guide part 321 at the end away from the second air guide part 322, slides to the right relative to the first mounting hole 331; the second air guide part 322 swings upward, and the second mounting shaft 3221, which is connected to the second air guide part 322 at the end away from the first air guide part 321, slides to the left relative to the second mounting hole 332.

[0078] The first mounting shaft 3211 is slidably arranged in the first mounting hole 331 in the left-right direction, and the second mounting shaft 3221 is slidably arranged in the second mounting hole 332 in the left-right direction, so that the first air guide part 321 and the second air guide part 322 of the air guide blade 32 can swing in the up-down direction without being interfered by the mounting plate 33, and the swinging range of the air guide blade 32 is further increased, so that the air guiding effect of the air guide blade 32 is optimized, and the cooling and heating comfort of the air conditioner is improved.

[0079] With reference to Figures 5-6 According to some optional embodiments of the present application, the sliding gap 5 between the outer peripheral wall of the first mounting shaft 3211 and the inner peripheral wall of the first mounting hole 331 in the left-right direction is 2-20 mm. For example, the sliding gap 5 between the outer peripheral wall of the first mounting shaft 3211 and the inner peripheral wall of the first mounting hole 331 in the left-right direction can be 2 mm, 5 mm, 7.5 mm, 9 mm, 15 mm, 18 mm, 20 mm, etc.

[0080] If the sliding gap 5 between the outer peripheral wall of the first mounting shaft 3211 and the inner peripheral wall of the first mounting hole 331 in the left-right direction is less than 2 mm, the first mounting shaft 3211 has a limited sliding range in the first mounting hole 331, and the first mounting hole 331 may interfere with the swinging of the first air guide part 321 when the first air guide part 321 swings in the up-down direction, so that the swinging range of the first air guide part 321 is limited, or the first mounting shaft 3211 cannot slide in the first mounting hole 331 when the first air guide part swings greatly, which may cause the first air guide part 321 to be deformed or even torn.

[0081] If the sliding gap 5 between the outer peripheral wall of the first mounting shaft 3211 and the inner peripheral wall of the first mounting hole 331 in the left-right direction is greater than 20 mm, the size of the first mounting hole 331 is large, which may reduce the local structural strength of the mounting plate 33, so that the mounting plate 33 may be damaged due to the multiple up-down swinging of the air guide blade 32 during the operation of the air conditioner.

[0082] The sliding gap 5 between the outer peripheral wall of the first mounting shaft 3211 and the inner peripheral wall of the first mounting hole 331 in the left-right direction is 2-20 mm. Within this range, the range of the left-right sliding of the first mounting shaft 3211 along the first mounting hole 331 is appropriate. When the first air guide part 321 swings in the up-down direction, the first mounting hole 331 does not significantly hinder the swinging of the first air guide part 321, and is beneficial to increase the swinging range of the first air guide part 321, improve the air guiding effect of the first air guide part 321, and avoid large deformation or even tearing of the first air guide part 321. The local structure of the mounting plate 33 formed with the first mounting hole 331 has high strength, and damage can be avoided.

[0083] Reference Figures 5-6 The sliding gap 5 between the outer peripheral wall of the second mounting shaft 3221 and the inner peripheral wall of the second mounting hole 332 in the left-right direction is 2-20 mm.

[0084] For example, the sliding gap 5 between the outer peripheral wall of the second mounting shaft 3221 and the inner peripheral wall of the second mounting hole 332 in the left-right direction can be 2 mm, 5 mm, 7.5 mm, 9 mm, 15 mm, 18 mm, 20 mm, etc.

[0085] If the sliding gap 5 between the outer peripheral wall of the second mounting shaft 3221 and the inner peripheral wall of the second mounting hole 332 in the left-right direction is less than 2 mm, the range of the left-right sliding of the second mounting shaft 3221 along the second mounting hole 332 is limited. When the second air guide part 322 swings in the up-down direction, the second mounting hole 332 can hinder the swinging of the second air guide part 322, so that the swinging range of the second air guide part 322 is limited, or when the first air guide part swings with a large amplitude, the second mounting shaft 3221 cannot slide along the second mounting hole 332, which can cause the second air guide part 322 to deform or even tear to a large extent.

[0086] If the sliding gap 5 between the outer peripheral wall of the second mounting shaft 3221 and the inner peripheral wall of the second mounting hole 332 in the left-right direction is greater than 20 mm, the size of the second mounting hole 332 is large, which can reduce the local structural strength of the mounting plate 33, so that the mounting plate 33 can be damaged during the up-down swinging of the air guide blade 32 during the operation of the air conditioner.

[0087] By making the sliding gap 5 between the outer peripheral wall of the second mounting shaft 3221 and the inner peripheral wall of the second mounting hole 332 in the left-right direction 2-20 mm, in this range, the range of the second mounting shaft 3221 sliding along the second mounting hole 332 is appropriate, when the second air guide part 322 swings in the up-down direction, the second mounting hole 332 will not obviously hinder the swing of the second air guide part 322, and it is beneficial to increase the swing amplitude of the second air guide part 322, and it is beneficial to improve the air guiding effect of the second air guide part 322, which can avoid the first air guide part 321 from being deformed or even torn to a large extent; and the local structure of the mounting plate 33 formed with the second mounting hole 332 has high strength, which can avoid damage.

[0088] Reference Figures 3-5 According to some optional embodiments of the present application, the connecting rod 31 is connected to one side of the air guide blade 32 adjacent to the mounting plate 33. By connecting the connecting rod 31 to one side of the air guide blade 32 adjacent to the mounting plate 33, the structural layout between the connecting rod 31, the air guide blade 32 and the mounting plate 33 is reasonable, which can avoid interference between the air guide blade 32 and the connecting rod 31 when the air guide blade 32 swings in the up-down direction.

[0089] Reference Figures 3-5 According to some optional embodiments of the present application, the mounting plate 33 includes first and second mounting portions 333 and 334 arranged at an angle, the first mounting hole 331 is formed in the first mounting portion 333, and the second mounting hole 332 is formed in the second mounting portion 334. By making the mounting plate 33 include first and second mounting portions 333 and 334 arranged at an angle, and forming the first mounting hole 331 in the first mounting portion 333 and the second mounting hole 332 in the second mounting portion 334, the structure of the mounting plate 33 can well adapt to the structure inside the shell assembly 1 of the air conditioner, avoid interference between the mounting plate 33 and the shell assembly 1, facilitate fixing the mounting plate 33 on the shell assembly 1, and make the first air guide part 321 located in the first air outlet passage 13 and the second air guide part 322 located in the second air outlet passage 14.

[0090] Reference Figures 16-19 According to some optional embodiments of the present application, the connecting rod 31 is integrally formed with the air guide blade 32. By integrally forming the connecting rod 31 with the air guide blade 32, the installation operation of connecting multiple air guide blades 32 to the connecting rod 31 can be omitted, and the connecting rod 31 and the air guide blade 32 can be installed as a whole in the shell assembly 1, which can further reduce the installation steps and the required installation time of the air conditioner, save more labor costs, thereby facilitating further reducing the production cost of the air conditioner and improving the production efficiency of the air conditioner.

[0091] Next, some embodiments of the air conditioner of the present application will be described with reference to Figures 1-15 Next, some embodiments of the air conditioner of the present application will be described with reference to

[0092] In the embodiment, the air conditioner is a split floor standing air conditioner, which comprises an air conditioner indoor unit 100 and an air conditioner outdoor unit. The air conditioner indoor unit comprises a casing assembly 1, a heat exchange and air supply assembly, and an air guide component 3. The heat exchange and air supply assembly and the air guide component 3 are arranged in the casing assembly 1. The heat exchange and air supply assembly comprises a heat exchanger component and a fan component. The casing assembly 1 is provided with an air inlet and first and second air outlets 11 and 12. The heat exchanger component is arranged close to the air inlet of the casing assembly 1. The air guide component 3 is arranged close to the first and second air outlets 11 and 12 of the casing assembly 1.

[0093] Specifically, the casing comprises a front casing component, a rear casing component, a top cover, and a bottom plate. The front casing component and the rear casing component are detachably connected in the front-rear direction. The top cover is detachably connected to the upper end of the rear casing component. The bottom plate is detachably connected to the lower end of the front casing component and the lower end of the rear casing component. The front casing component is provided with the first and second air outlets 11 and 12, which are arranged in the left-right direction. The rear casing component is provided with the air inlet. The casing assembly 1 has first and second air outlet channels 13 and 14. The first air outlet channel 13 corresponds to and communicates with the first air outlet 11. The second air outlet channel 14 corresponds to and communicates with the second air outlet 12.

[0094] The air in the room enters the casing through the air inlet, flows through the heat exchanger component, and exchanges heat with the heat exchanger component to achieve cooling or heating adjustment of the air. Then, the air flows through the fan component and is sent out to the air guide component 3 under the driving action of the fan component. Then, the air in the first air outlet channel 13 flows out through the first air outlet 11 under the guidance of the first air guide part 321 and enters the room. The air in the second air outlet channel 14 flows out through the second air outlet 12 under the guidance of the second air guide part 322 and enters the room, so as to achieve heating or cooling adjustment of the air in the room.

[0095] The air guide component 3 comprises a connecting rod 31, a plurality of air guide blades 32 arranged in the up-down direction, and a mounting plate 33. Each air guide blade 32 is an integral molded part and comprises a first air guide part 321, a second air guide part 322, and a connecting part 323. The connecting part 323 is connected between the first air guide part 321 and the second air guide part 322. The connecting rod 31 is connected to the connecting part 323. The rear side of the connecting part 323 is formed with a notch 324. The connecting rod 31 is located between the first air guide part 321 and the second air guide part 322 and is connected to both the first air guide part 321 and the second air guide part 322. The connecting rod 31 is connected to the side of the air guide blade 32 adjacent to the mounting plate 33. The mounting plate 33 is fixed to the casing assembly 1. The air guide blade 32 and the connecting rod 31 are mounted to the casing assembly 1 through the mounting plate 33.

[0096] Specifically, the mounting plate 33 comprises a first mounting portion 333 and a second mounting portion 334 arranged at an included angle, a first mounting hole 331 is formed in the first mounting portion 333, and a second mounting hole 332 is formed in the second mounting portion 334, the air guide blade comprises a first mounting shaft 3211 and a second mounting shaft 3221, the first mounting shaft 3211 is connected to one end of the first air guide portion 321 away from the second air guide portion 322, and the second mounting shaft 3221 is connected to one end of the second air guide portion 322 away from the first air guide portion 321, the first mounting shaft 3211 is rotatably mounted in the first mounting hole 331, and the second mounting shaft 3221 is rotatably mounted in the second mounting hole 332.

[0097] The first mounting shaft 3211 is slidable in the left-right direction relative to the first mounting hole 331, the sliding gap 5 between the outer peripheral wall of the first mounting shaft 3211 and the inner peripheral wall of the first mounting hole 331 in the left-right direction is 2-20 mm, and the sliding gap 5 between the outer peripheral wall of the second mounting shaft 3221 and the inner peripheral wall of the second mounting hole 332 in the left-right direction is 2-20 mm, and the second mounting shaft 3221 is slidable in the left-right direction relative to the second mounting hole 332.

[0098] The connecting portion 323 comprises a first connecting portion 3231, a second connecting portion 3232, and a third connecting portion 3233, the third connecting portion 3233 is connected between the first connecting portion 3231 and the second connecting portion 3232, the first air guide portion 321 is connected with the first connecting portion 3231, the second air guide portion 322 is connected with the second connecting portion 3232, and the connecting rod 31 is connected with the third connecting portion 3233, the thickness of the connecting portion 323 is not greater than the thickness of the first air guide portion 321, and the thickness of the connecting portion 323 is also not greater than the thickness of the second air guide portion 322, the thickness of the first connecting portion 3231 and the second connecting portion 3232 is not greater than the thickness of the third connecting portion 3233, the third connecting portion 3233 is provided with a reinforcing rib 3234, the reinforcing rib 3234 is a plurality of reinforcing ribs 3234, and the plurality of reinforcing ribs 3234 are arranged at intervals in the left-right direction, a plurality of thinning grooves 4 are formed on the first air guide portion 321, and a plurality of thinning grooves 4 are formed on the second air guide portion 322.

[0099] Next, the air conditioner according to the embodiment of the present application will be described with reference to the drawings. Figures 16-19 The air conditioner according to other embodiments of the present application will be described, and in the embodiment, parts same as the above-described embodiments will not be described, and the above-described embodiments can be referred to, and mainly, differences from the above-described embodiments will be described.

[0100] In the embodiment, the connecting rod 31 is integrally formed with the plurality of air guide blades 32.

[0101] In the description of the utility model, it is understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like is the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.

[0102] In the description of the utility model, "first feature" and "second feature" can include one or more features.

[0103] In the description of the utility model, "multiple" means two or more.

[0104] In the description of the utility model, "above" or "below" of the first feature to the second feature can include that the first and second features are in direct contact, or can include that the first and second features are not in direct contact but are in contact through another feature between them.

[0105] In the description of the utility model, "above", "upper" and "upper surface" of the first feature to the second feature include that the first feature is directly above and obliquely above the second feature, or only means that the horizontal height of the first feature is higher than that of the second feature.

[0106] In the description of the utility model, the description of the reference terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In the description of the utility model, the exemplary description of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0107] Although the embodiments of the utility model have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the utility model, and the scope of the utility model is defined by the claims and their equivalents.

Claims

1. An air conditioner, characterized in that, include: The housing assembly has a first air outlet and a second air outlet arranged at intervals in the left-right direction, and has a first air outlet channel and a second air outlet channel. The first air outlet channel corresponds to and is connected to the first air outlet, and the second air outlet channel corresponds to and is connected to the second air outlet. A heat exchange and air supply assembly is disposed within the housing assembly; An air guiding component is disposed within the housing assembly and includes a connecting rod and a plurality of air guiding blades arranged in a vertical direction. Each air guiding blade is an integrally formed part and includes a first air guiding part and a second air guiding part. The first air guiding part is located in the first air outlet channel, and the second air guiding part is located in the second air outlet channel. The connecting rod extends in a vertical direction and is movable in a vertical direction. The connecting rod is located between the first air guiding part and the second air guiding part and is connected to both the first air guiding part and the second air guiding part.

2. The air conditioner according to claim 1, characterized in that, The air guide blade includes a connecting part, which is connected between the first air guide part and the second air guide part, and the connecting rod is connected to the connecting part.

3. The air conditioner according to claim 2, characterized in that, The thickness of the connecting part is not greater than the thickness of the first air guide part; and / or, the thickness of the connecting part is not greater than the thickness of the second air guide part.

4. The air conditioner according to claim 2, characterized in that, The connecting part includes a first connecting part, a second connecting part, and a third connecting part. The third connecting part is connected between the first connecting part and the second connecting part. The first air guide part is connected to the first connecting part, the second air guide part is connected to the second connecting part, and the connecting rod is connected to the third connecting part. The thickness of the first connecting part and the second connecting part is not greater than the thickness of the third connecting part.

5. The air conditioner according to claim 4, characterized in that, The third connecting part is provided with a reinforcing rib, and there are multiple reinforcing ribs, which are arranged at intervals in the left-right direction.

6. The air conditioner according to claim 2, characterized in that, A notch is formed on the rear side of the connector.

7. The air conditioner according to claim 1, characterized in that, The first air guide portion has a plurality of thinning grooves formed thereon; and / or, the second air guide portion has a plurality of thinning grooves formed thereon.

8. The air conditioner according to claim 1, characterized in that, The air guide component includes a mounting plate fixed to the housing assembly. Each air guide blade includes a first mounting shaft and a second mounting shaft. The first mounting shaft is connected to the end of the first air guide portion away from the second air guide portion, and the second mounting shaft is connected to the end of the second air guide portion away from the first air guide portion. The mounting plate has a first mounting hole and a second mounting hole. The first mounting shaft is rotatably mounted in the first mounting hole, and the second mounting shaft is rotatably mounted in the second mounting hole.

9. The air conditioner according to claim 8, characterized in that, The first mounting shaft is slidable in the left-right direction relative to the first mounting hole, and the second mounting shaft is slidable in the left-right direction relative to the second mounting hole.

10. The air conditioner according to claim 9, characterized in that, The sliding clearance between the outer peripheral wall of the first mounting shaft and the inner peripheral wall of the first mounting hole in the left-right direction is 2-20mm; the sliding clearance between the outer peripheral wall of the second mounting shaft and the inner peripheral wall of the second mounting hole in the left-right direction is 2-20mm.

11. The air conditioner according to claim 8, characterized in that, The connecting rod is attached to the side of the guide vane adjacent to the mounting plate.

12. The air conditioner according to claim 8, characterized in that, The mounting plate includes a first mounting portion and a second mounting portion arranged at an angle, the first mounting hole being formed in the first mounting portion and the second mounting hole being formed in the second mounting portion.

13. The air conditioner according to any one of claims 1-12, characterized in that, The connecting rod and the air guide blade are integrally formed.