Air conditioner
The air conditioner uses intersecting airflow channels to disperse airflow naturally, addressing the issue of reduced airflow volume in diffuser structures, thereby improving comfort and temperature regulation.
Patent Information
- Application Number
- CN202421839743.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-07-31
AI Technical Summary
Although the air dispersing structure of the existing air conditioner can disperse the air flow, it will reduce the air supply and affect the temperature adjustment effect.
The air guide is designed to form a first air guide passage and a second air guide passage, so that the two extend in the air supply direction, and the air flow crosses and collides on the outside of the air conditioner to form a soothing air dissipation area, and ensures the air supply through the air guide.
It improves the comfort and temperature adjustment effect of the air conditioner, ensures that the air supply does not decrease, and enhances the temperature adjustment ability of the air conditioner.
Smart Images

Figure CN223106170U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air conditioners, and more particularly to an air conditioner. Background Art
[0002] Air conditioners are widely used for temperature adjustment of indoor environments. When an existing air conditioner operates, it generally blows air directly outward through the air outlet of its air duct, thereby forming a direct-blowing air area with a relatively large air flow intensity outside the air conditioner, and the comfort level of the direct-blowing air area is relatively poor; based on this, some air conditioners are provided with a wind-dispersing structure capable of dispersing the blown air. However, although the wind-dispersing structure can disperse the air flow, it will also cause a decrease in the air supply volume, resulting in a relatively poor temperature adjustment effect of the air conditioner. Summary of the Utility Model
[0003] An object of the utility model is to provide an air conditioner to solve the technical problem that although the wind-dispersing structure provided in the existing air conditioner can disperse the air flow, it will also cause a decrease in the air supply volume, resulting in a relatively poor temperature adjustment effect of the air conditioner.
[0004] To solve the above problems, the utility model provides an air conditioner, including a housing. The housing is provided with a first air outlet and an air duct communicating with the inner end of the first air outlet. The end air duct section of the air duct along the air supply direction is a downstream air guiding section. The two air duct walls of the downstream air guiding section along the first direction are respectively a first air duct wall and a second air duct wall; a wind guiding member is arranged in the air duct. A first air guiding channel is formed between the wind guiding member and the first air duct wall, and a second air guiding channel is formed between the wind guiding member and the second air duct wall. The first air guiding channel and the second air guiding channel extend towards each other along the air supply direction.
[0005] In the air conditioner provided by the utility model, first, the first air guiding channel and the second air guiding channel are arranged to extend towards each other along the air supply direction, so that the direct-blowing air flows blown out by the two can cross and collide outside the air conditioner for spontaneous dispersion processing to form a relatively gentle wind-dispersing area, thereby reducing the adverse effects on the comfort and health of the user caused by the direct blowing of the air outlet of the air conditioner, and correspondingly improving the use comfort of the air conditioner; secondly, by arranging the wind guiding member to form the first air guiding channel and the second air guiding channel to blow air directly outward, the air supply volume of the air conditioner can be effectively ensured, and correspondingly, the temperature adjustment effect of the air conditioner on the indoor environment can be ensured.
[0006] Optionally, the wind guiding member includes a first wind guiding section, a second wind guiding section, and a connecting section connecting between the windward ends of the two. Among them, the leeward ends of the first wind guiding section and the second wind guiding section are arranged at intervals along the first direction to form an opening. The first air guiding channel is formed between the first wind guiding section and the first air duct wall, and the second air guiding channel is formed between the second wind guiding section and the second air duct wall.
[0007] Optionally, the connecting section includes a third air guide section and a fourth air guide section, the third air guide section is connected between the first air guide section and the fourth air guide section, one end of the fourth air guide section facing away from the third air guide section is connected to the second air guide section, and the third air guide section and the fourth air guide section extend away from each other along the air supply direction.
[0008] Optionally, the air guide member is rotatably connected to the shell, and is configured to change the air outlet directions of the first air guide channel and the second air guide channel by rotating the air guide member.
[0009] Optionally, the connecting section is provided with a plurality of dispersedly arranged ventilation holes.
[0010] Optionally, the third air guiding section is provided with a plurality of dispersedly arranged first ventilation holes, the fourth air guiding section is provided with a plurality of dispersedly arranged second ventilation holes, and the first ventilation holes and the second ventilation holes are inclined toward each other along the air supply direction.
[0011] Optionally, the shell is provided with a second air outlet, the second air outlet is connected to the air duct, and along the height direction of the shell, the second air outlet is located below the first air outlet; the shell is provided with an air guide plate for closing or opening the second air outlet.
[0012] Optionally, the air conditioner has a rapid temperature adjustment mode, and in the rapid temperature adjustment mode, the air guide plate opens the second air outlet;
[0013] And / or, the air conditioner has a diffuse wind mode, and in the diffuse wind mode, the air guide plate closes the second air outlet.
[0014] Optionally, the wind guide plate is a closed plate body, and the wind dispersion mode is a semi-wind dispersion mode;
[0015] Alternatively, the wind guide plate is provided with a wind dispersion structure, and the wind dispersion mode is a full wind dispersion mode.
[0016] Optionally, the air guide plate is hinged to the rear edge of the second air outlet, the air conditioner has a first heating mode, and in the first heating mode, the air guide plate opens the second air outlet and extends downward;
[0017] Or, the first air outlet is located at the front end plate of the shell, the second air outlet is located at the bottom of the shell, the air guide plate is hinged to the front edge of the second air outlet, and the air guide plate has a blocking position for closing the air duct section between the air guide member and the second air outlet; the air conditioner has a second heating mode, and in the second heating mode, the air guide plate opens the second air outlet and rotates to the blocking position. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained according to the provided drawings.
[0019] Figure 1 It is a schematic diagram of the first form of the air conditioner provided by the present invention. Among them, the air deflector is a closed plate body;
[0020] Figure 2 For Figure 1 It is a schematic diagram of the air duct of the air conditioner in
[0021] Figure 3 It is a schematic diagram of the second form of the air conditioner provided by the present invention. Among them, the air deflector is provided with ventilation holes;
[0022] Figure 4 For Figure 3 It is a schematic diagram of the air deflector in
[0023] Figure 5 It is a schematic diagram when the air deflector of the air conditioner provided by the present invention is a closed plate body;
[0024] Figure 6 It is a schematic diagram of the air duct of the air conditioner provided by the present invention in the semi-diffused air mode;
[0025] Figure 7 For Figure 6 It is a schematic diagram of the air duct after the air deflector rotates downward by a certain angle in
[0026] Figure 8 It is a schematic diagram of the air duct of the air conditioner provided by the present invention in the first heating mode;
[0027] Figure 9 It is a schematic diagram of the air duct of the air conditioner provided by the present invention in the second heating mode;
[0028] Figure 10 It is a schematic diagram of the air duct of the air conditioner provided by the present invention in the full-diffused air mode.
[0029] Explanation of reference numerals:
[0030] 10 - Air duct; 11 - Main air duct section; 12 - Upstream air guiding section; 12a - Third air duct wall; 12b - Fourth air duct wall; 12c - Third air guiding channel; 12d - Fourth air guiding channel; 13 - Downstream air guiding section; 13a - First air duct wall; 13b - Second air duct wall; 13c - First air guiding channel; 13d - Second air guiding channel; 100 - Housing; 110 - First air outlet; 120 - Second air outlet; 130 - Front end plate; 140 - Bottom plate; 200 - Air guiding member; 210 - First air guiding section; 220 - Connection section; 221 - Third air guiding section; 221a - First ventilation hole; 222 - Fourth air guiding section; 222a - Second ventilation hole; 230 - Second air guiding section; 240 - Opening; 250 - Cavity; 300 - Air guiding plate; 310 - Rotating shaft; 320 - Air dispersing structure; 400 - Fan. Detailed implementation manner
[0031] In order to make the above - mentioned objects, features and advantages of the present utility model more obvious and understandable, the following detailed description of the specific embodiments of the present utility model will be given with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0032] This embodiment provides an air conditioner, as Figure 1 , Figure 2 and Figure 9 shown, including a housing 100. The housing 100 is provided with a first air outlet 110 and an air duct communicating with the inner end of the first air outlet 110. The end air duct section of the air duct along the air supply direction is a downstream air guiding section 13. The two air duct walls on both sides of the downstream air guiding section 13 along the first direction are a first air duct wall 13a and a second air duct wall 13b respectively. An air guiding member 200 is arranged in the air duct. A first air guiding channel 13c is formed between the air guiding member 200 and the first air duct wall 13a, and a second air guiding channel 13d is formed between the air guiding member 200 and the second air duct wall 13b. The first air guiding channel 13c and the second air guiding channel 13d extend towards each other along the air supply direction.
[0033] In the air conditioner provided in this embodiment, the air duct is located inside the housing 100 and extends between the blower 400 and the first air outlet 110. The first air outlet 110 serves as the air outlet port of the air duct. Among them, a section of the air duct where the downstream air duct section of the air duct is connected to the first air outlet 110 is used as the downstream air guiding section 13. In the radial cross-section of the downstream air guiding section 13, the extending direction of one of the straight lines passing through its center is used as the first direction. The air duct walls on both sides of the downstream air guiding section 13 in the first direction are respectively used as the first air duct wall 13a and the second air duct wall 13b. An air guiding member 200 for guiding the air flow in the air duct is installed in the air duct. The whole or the downstream air guiding part of the air guiding member 200 is located in the downstream air guiding section 13. The part of the air guiding member 200 located in the downstream air guiding section 13 and the first air duct wall 13a enclose a first air guiding channel 13c, and the part of the air guiding member 200 located in the downstream air guiding section 13 and the second air duct wall 13b enclose a second air guiding channel 13d. Along the air supply direction of the air duct, both the first air guiding channel 13c and the second air guiding channel 13d are in a through state, and both extend obliquely towards each other.
[0034] When the air conditioner is running, as Figure 2 shown, the blower 400 drives the air flow to flow into the air duct and flow along the air duct to the upstream end of the downstream air guiding section 13. Subsequently, the air flow is split and flows into the first air guiding channel 13c and the second air guiding channel 13d, and while flowing outward along the first air guiding channel 13c and the second air guiding channel 13d, it flows towards each other. Among them, the flowing direction of the direct blowing air flow flowing out of the air outlet port of the first air guiding channel 13c is consistent with the extending direction of the first air guiding channel 13c, and the flowing direction of the direct blowing air flow flowing out of the air outlet port of the second air guiding channel 13d is consistent with the extending direction of the second air guiding channel 13d. Then, the two direct blowing air flows will cross and collide during the flowing process outside the air conditioner, so as to disperse the two direct blowing air flows, and a relatively gentle air dispersion area is formed outside the air conditioner. On the basis of realizing the temperature adjustment of the indoor environment by the air conditioner, the adverse effects on the comfort and health of the user caused by the air flow blowing directly outward through the first air outlet 110 are reduced.
[0035] In the air conditioner provided in this embodiment, first, the first air guiding channel 13c and the second air guiding channel 13d are set to extend towards each other along the air supply direction, so that the direct blowing air flows blown out by the two can cross and collide outside the air conditioner for spontaneous dispersion treatment to form a relatively gentle air dispersion area, thereby reducing the adverse effects on the comfort and health of the user caused by the direct blowing of the air conditioner's air outlet, and correspondingly improving the use comfort of the air conditioner; second, by setting the air guiding member 200 to form the first air guiding channel 13c and the second air guiding channel 13d to blow air directly outward, the air supply volume of the air conditioner can be effectively guaranteed, and correspondingly, the temperature adjustment effect of the air conditioner on the indoor environment can be ensured.
[0036] Specifically, as Figure 1As shown, the first air outlet 110 can be a strip-shaped opening extending in the left-right direction of the housing 100. The air guiding member 200 is adapted to the first air outlet 110 and is a strip-shaped member extending in the left-right direction of the housing 100, and the width direction of the first air outlet 110 is taken as the first direction. Then, the airflow blown out through the first air outlet 110 can cover a relatively large range in the left-right direction of the housing 100, and correspondingly, a relatively large air dispersion area is formed outside the air conditioner.
[0037] Specifically, in this embodiment, as Figure 2 and Figure 9 shown, the air guiding member 200 includes a first air guiding section 210, a second air guiding section 230, and a connecting section 220 connecting between the windward ends of the two. Among them, the leeward ends of the first air guiding section 210 and the second air guiding section 230 are arranged at intervals along the first direction to form an opening 240. A first air guiding channel 13c is formed between the first air guiding section 210 and the first air duct wall 13a, and a second air guiding channel 13d is formed between the second air guiding section 230 and the second air duct wall 13b. The air guiding member 200 is specifically in the form of a bent plate body. On the one hand, compared with a solid air guiding member 200, the hollow air guiding member 200 has the advantages of light weight and low cost, can reduce the load of the housing 100 carrying the air guiding member 200, and can reduce the cost of the air conditioner. On the other hand, the leeward ends of the first air guiding section 210 and the second air guiding section 230 form an opening 240, and a cavity 250 is formed inside the first air guiding section 210, the connecting section 220, and the second air guiding section 230. Then, the airflow blown out through the first air guiding channel 13c and the second air guiding channel 13d can form a vortex at the opening 240 and the cavity 250, which has a certain effect of dispersing the airflow, thereby improving the dispersing effect of the air dispersion area formed outside the air conditioner and further improving the user's comfort.
[0038] Preferably, the first air duct wall 13a and the second air duct wall 13b are inclined towards each other along the air supply direction, and the first air guiding section 210 and the second air guiding section 230 are inclined towards each other along the air supply direction. The first air guiding channel 13c and the second air guiding channel 13d formed by the two are both inclined towards the middle position of the two along the first direction, and the included angle formed by their extending directions is preferably 45° to 120°, so that the intersection point of the two straight blowing airflows blown out from the first air guiding channel 13c and the second air guiding channel 13d is within a suitable distance range outside the air conditioner, ensuring that the formed air dispersion area is within the user's movement range.
[0039] Optionally, in this embodiment, as Figure 2 and Figure 9As shown, the connecting section 220 includes a third air guiding section 221 and a fourth air guiding section 222, the third air guiding section 221 is connected between the first air guiding section 210 and the fourth air guiding section 222, the end of the fourth air guiding section 222 facing away from the third air guiding section 221 is connected to the second air guiding section 230, and the third air guiding section 221 and the fourth air guiding section 222 extend away from each other along the air supply direction. The connecting section 220 is located on the windward side of the air guide member 200 and is convex, and the third air guide section 221 and the fourth air guide section 222 of the connecting section 220 gradually extend from the middle position to both sides along the air supply direction; when in use, the airflow in the air duct first reaches the connecting end of the third air guide section 221 and the fourth air guide section 222, and then the airflow is split into two airflows along the third air guide section 221 and the fourth air guide section 222, one of which is guided along the third air guide section 221 to the first air guide channel 13c and flows into the first air guide channel 13c; the other airflow is guided along the fourth air guide section 222 to the second air guide channel 13d and flows into the second air guide channel 13 d; the setting of the third air guide section 221 and the fourth air guide section 222 can pre-divert the airflow in the air duct upstream of the first air guide channel 13c and the second air guide channel 13d, so that the airflow in the air duct can be smoothly diverted into the first air guide channel 13c and the second air guide channel 13d, thereby ensuring the smoothness of the airflow diverted from the air duct into the first air guide channel 13c and the second air guide channel 13d, reducing the vortex generated by the air flow diversion in the air duct, and correspondingly increasing the air supply volume through the first air guide channel 13c and the second air guide channel 13d and the collision and dispersion strength of the two airflows, thereby ensuring the temperature regulation effect of the air conditioner on the indoor environment and the comfort of use.
[0040] In this embodiment, the third air guide section 221 and the fourth air guide section 222 are smoothly connected to each other. When the airflow in the air duct flows to the windward end of the connecting section 220, it can be smoothly diverted to both sides along the third air guide section 221 and the fourth air guide section 222, thereby improving the smoothness of the airflow diversion at the connecting section 220 and reducing the vortex formed by the diversion at the connecting section 220; similarly, the first air guide section 210 and the third air guide section 221 are smoothly connected to each other, so as to improve the smoothness of the airflow flowing along the third air guide section 221 into the first air guide channel 13c and reduce the vortex formed by the airflow in the third air guide section 221. and the vortex formed at the connection between the first air guide section 210; the second air guide section 230 and the fourth air guide section 222 are smoothly transitionally connected to improve the smoothness of the airflow flowing along the fourth air guide section 222 into the second air guide channel 13d, and reduce the vortex formed at the connection between the fourth air guide section 222 and the second air guide section 230, thereby improving the smoothness of the airflow in the air duct, increasing the air supply volume through the first air guide channel 13c and the second air guide channel 13d and the collision and dispersion strength of the two airflows, thereby ensuring the temperature regulation effect of the air conditioner on the indoor environment and the comfort of use.
[0041] Specifically, Figure 2and Figure 9 As shown in Figure 9 , the air duct section connected to the downstream air guiding section 13 is the upstream air guiding section 12. The two air duct walls of the upstream air guiding section 12 along the width direction are respectively the third air duct wall 12a and the fourth air duct wall 12b. A third air guiding channel 12c is formed between the third air duct wall 12a and the third air guiding section 221, and a fourth air guiding channel 12d is formed between the fourth air duct wall 12b and the fourth air guiding section 222. Moreover, the air inlet ports of the third air guiding channel 12c and / or the fourth air guiding channel 12d are flared. The air duct section located in the upstream air guiding section 12 is the main air duct section 11. The ventilation areas of the first air guiding channel 13c and the second air guiding channel 13d are smaller than the ventilation area of the main air duct section 11. Along the air supply direction, the third air guiding channel 12c and the fourth air guiding channel 12d are constricted, and their flared ends face the main air duct section 11, so as to stably and smoothly divert the air flow in the main air duct section 11 with a larger ventilation area to the third air guiding channel 12c and the fourth air guiding channel 12d, and stably and smoothly guide the air flow to the first air guiding channel 13c and the second air guiding channel 13d with a smaller ventilation area.
[0042] Preferably, along the air supply direction, the ventilation areas of the first air guiding channel 13c and the second air guiding channel 13d gradually decrease. Then, as the ventilation area decreases, the velocity of the direct blowing air flow diverted to the first air guiding channel 13c and the second air guiding channel 13d gradually increases. Then, the air flow blown out through the first air guiding channel 13c and the second air guiding channel 13d can collide at a higher velocity, thereby increasing the collision and dispersion intensity of the two air flows, correspondingly improving the air dispersion effect of the formed air dispersion area, and further improving the user's comfort.
[0043] Specifically, in this embodiment, as Figures 5 - 7 shown, the air guiding member 200 is rotatably connected to the housing 100, and is configured such that rotating the air guiding member 200 can change the air outlet directions of the first air guiding channel 13c and the second air guiding channel 13d. Both ends of the air guiding member 200 along the second direction perpendicular to the first direction are rotatably connected to the housing 100 through the rotating shafts 310. Specifically, both ends of the air guiding member 200 along the left - right direction can be rotatably connected to the housing 100. By rotating and adjusting the air guiding member 200, the air guiding directions of the first air guiding channel 13c and the second air guiding channel 13d can be changed to a certain extent, so as to adjust the flow directions of the direct blowing air flows blown outwards through the first air guiding channel 13c and the second air guiding channel 13d, and correspondingly change the position of the air dispersion area formed by the collision of the two air flows. The user can rotate the air guiding member 200 according to their own needs to adjust the position of the air dispersion area, so that they can be located within the air dispersion area to enjoy the gentle blowing and higher temperature adjustment effect, or be located outside the air dispersion area to enjoy the temperature adjustment effect in the zero - wind form, thereby improving the functionality of the air conditioner and the user's comfort.
[0044] Optionally, in this embodiment, as Figure 3 andFigure 4 As shown, the connecting section 220 is provided with a plurality of ventilation holes arranged dispersedly. During use, as Figure 6 and Figure 7 shown, when the air flow in the air duct reaches the connecting section 220, part of the air flow blows outwards through the ventilation holes into the cavity 250 surrounded by the air guiding member 200, and then blows outwards through the opening 240; the other part of the air flow is split into two air flows under the splitting action of the connecting section 220 and flows into the first air guiding channel 13c and the second air guiding channel 13d respectively and blows outwards. Among them, on the one hand, the setting of the ventilation holes can increase the air outlet area of the air conditioner, thereby improving the air supply volume of the air conditioner and correspondingly improving the temperature adjustment effect of the air conditioner on the indoor environment; on the other hand, the plurality of dispersedly arranged ventilation holes can form a wind dispersing structure 320, and the air flow is dispersed once during the process of flowing through the wind dispersing structure 320. The dispersed air mass flowing outwards through the opening 240 will collide with the air flow blown out through the first air guiding channel 13c and the second air guiding channel 13d during the process of blowing outwards for secondary dispersion treatment, so as to improve the degree of air flow dispersion in the wind dispersing area formed outside the air conditioner and increase the range of the wind dispersing area, and correspondingly further improve the temperature adjustment effect and use comfort of the air conditioner.
[0045] Among them, the first air guiding section 210 and the second air guiding section 230 may be provided with ventilation holes or be closed plate bodies. Preferably, the first air guiding section 210 and the second air guiding section 230 adopt closed plate bodies.
[0046] Specifically, as Figure 6 and Figure 7 shown, the third air guiding section 221 is provided with a plurality of first ventilation holes 221a arranged dispersedly, the fourth air guiding section 222 is provided with a plurality of second ventilation holes 222a arranged dispersedly, and the first ventilation holes 221a and the second ventilation holes 222a are inclined towards each other along the air supply direction. When the air flow in the main air duct section 11 reaches the windward end of the connecting section 220, part of the air flow is dispersed and blown out through the first ventilation holes 221a, and the blowing direction is the same as the extending direction of the first ventilation holes 221a; the other part of the air flow is dispersed and blown out through the second ventilation holes 222a, and the blowing direction is the same as the extending direction of the second ventilation holes 222a. Then, the two air flows that have been dispersed once flow towards each other and collide with each other for secondary dispersion treatment to form a dispersed air mass with a higher degree of dispersion, so as to further improve the degree of dispersion in the wind dispersing area formed outside the air conditioner, and correspondingly further improve the use comfort of the air conditioner.
[0047] In this embodiment, as Figures 6 - 10As shown, the housing 100 is provided with a second air outlet 120. The second air outlet 120 communicates with the air duct, and in the height direction of the housing 100, the second air outlet 120 is located below the first air outlet 110; the housing 100 is provided with a wind deflector 300 for closing or opening the second air outlet 120. The end port of the main air duct section 11 of the air duct bifurcates into two branch ducts. One of the branch ducts includes an upstream air guiding section 12 and a downstream air guiding section 13, and the air blows out through the first air guiding channel 13c, the ventilation holes and the second air guiding channel 13d; the other branch duct communicates with the second air outlet 120 and the air blows out through the second air outlet 120. The wind deflector 300 can adjust the air outlet state of the second air outlet 120. Specifically, during the operation of the air conditioner, as Figure 6 , Figure 7 and Figure 10 shown, when the wind deflector 300 closes the second air outlet 120, the air conditioner enters the air dispersion mode. The air flow in the main air duct section 11 can blow out outward through the first air guiding channel 13c, the ventilation holes and the second air guiding channel 13d, forming an air dispersion area in the front of the air conditioner. The air dispersion area has a certain temperature adjustment effect and the user's body feeling comfort is relatively high; as Figure 8 and Figure 9 shown, when the wind deflector 300 opens the second air outlet 120, the air conditioner enters the rapid temperature adjustment mode. The air flow in the main air duct section 11 mainly blows out directly downward through the second air outlet 120, forming a direct current area below the air conditioner. The air supply volume in the direct current area is large and the temperature adjustment effect is better; the user can adjust the closing state of the wind deflector 300 for the second air outlet 120 according to his own needs.
[0048] Specifically, as Figure 6 and Figure 7 shown, when the wind deflector 300 is a closed plate body and the wind deflector 300 closes the second air outlet 120, the air flow in the main air duct section 11 can only blow out outward through the first air guiding channel 13c, the ventilation holes and the second air guiding channel 13d to form an air dispersion area. At this time, the air dispersion mode is the semi-air dispersion mode.
[0049] In addition to the above-mentioned closed plate body, in this embodiment, as Figure 10 shown, the wind deflector 300 can also be provided with an air dispersion structure 320. When the wind deflector 300 closes the second air outlet 120, a part of the air flow in the air duct blows out outward through the first air guiding channel 13c, the ventilation holes and the second air guiding channel 13d to form an air dispersion area; another part of the air flow blows downward through the air dispersion structure 320 of the wind deflector 300, and the blowing process is broken up, forming another air dispersion area below the air conditioner. At this time, the air dispersion mode is the full-air dispersion mode. The full-air dispersion mode can effectively increase the air outlet area of the air conditioner and the range of the formed air dispersion area, and further improve the temperature adjustment effect of the air conditioner and the user's use comfort.
[0050] Specifically, the air deflector 300 can be hinged to the front edge or the rear edge of the second air outlet 120. As Figure 8 shown, when the air deflector 300 is hinged to the rear edge of the second air outlet 120, the air deflector 300 can rotate downward relative to the second air outlet 120. When the air deflector 300 rotates to the position where the second air outlet 120 is located, the second air outlet 120 is closed, and the air conditioner enters the air diffusion mode. When the air deflector 300 rotates downward to extend downward, the air conditioner enters the first heating mode. The air flow in the main air duct section 11 is mainly blown out through the second air outlet 120, and the blown air flow is blown towards the ground under the guiding action of the air deflector 300, so as to quickly heat-treat the ground area.
[0051] As Figure 9 shown, when the air deflector 300 is hinged to the front edge of the second air outlet 120, the first air outlet 110 can be located on the front end plate 130 of the housing 100, and the second air outlet 120 is located at the bottom of the housing 100, such as the bottom plate 140 of the housing 100. The air deflector 300 has a blocking position for blocking the air duct section located between the air guiding member 200 and the second air outlet 120 of the closed air duct. The air deflector 300 can rotate upward or downward relative to the second air outlet 120. Among them, when the air deflector 300 rotates to the second air outlet 120, the second air outlet 120 can be closed, and the air conditioner enters the air diffusion mode. When the air deflector 300 rotates upward to the blocking position, the air inlet port of the branch duct formed by the main air duct section 11 leading to the upstream air guiding section 12 can be closed, and the air conditioner enters the second heating mode. The air flow in the main air duct section 11 can only flow downward through the second air outlet 120, so as to quickly heat-treat the ground area. At the same time, the blocking of the branch duct by the air deflector 300 can effectively reduce the occurrence of air volume loss caused by part of the air flow entering the first air guiding channel 13c and the second air guiding channel 13d, and correspondingly improve the air supply volume and heating adjustment effect of the air conditioner.
[0052] Finally, it should also be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variation thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or device comprising the element.
[0053] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present utility model. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present utility model. Therefore, the present utility model will not be limited to the embodiments shown herein, but rather will be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. An air conditioner, characterized in that, The invention comprises a shell (100), wherein the shell (100) is provided with a first air outlet (110) and an air duct (10) connected to the inner end of the first air outlet (110), wherein the end air duct section of the air duct (10) along the air supply direction is a downstream air guide section (13), and the air duct walls on both sides of the downstream air guide section (13) along the first direction are respectively a first air duct wall (13a) and a second air duct wall (13b); an air guide member (200) is provided in the air duct (10), wherein the air guide member (200) and the first air duct wall (13a) form a first air guide channel (13c), and the air guide member (200) and the second air duct wall (13b) form a second air guide channel (13d), and the first air guide channel (13c) and the second air guide channel (13d) extend toward each other along the air supply direction.
2. The air conditioner according to claim 1, characterized in that, The wind guide member (200) comprises a first wind guide section (210), a second wind guide section (230) and a connecting section (220) connected between the windward ends of the first wind guide section (210) and the leeward ends of the second wind guide section (230) are arranged at intervals along a first direction to form openings (240), the first wind guide section (210) and the first wind duct wall (13a) form the first wind guide channel (13c), and the second wind guide section (230) and the second wind duct wall (13b) form the second wind guide channel (13d).
3. The air conditioner according to claim 2, characterized in that, The connecting section (220) comprises a third air guiding section (221) and a fourth air guiding section (222); the third air guiding section (221) is connected between the first air guiding section (210) and the fourth air guiding section (222); an end of the fourth air guiding section (222) facing away from the third air guiding section (221) is connected to the second air guiding section (230); and the third air guiding section (221) and the fourth air guiding section (222) extend away from each other along the air supply direction.
4. The air conditioner according to any one of claims 1 to 3, characterized in that, The air guide member (200) is rotatably connected to the housing (100), and is configured such that rotating the air guide member (200) can change the air outlet directions of the first air guide channel (13c) and the second air guide channel (13d).
5. The air conditioner according to claim 2 or 3, characterized in that, The connecting section (220) is provided with a plurality of dispersedly arranged ventilation holes.
6. The air conditioner according to claim 3, characterized in that, The third air guiding section (221) is provided with a plurality of dispersedly arranged first ventilation holes (221a), the fourth air guiding section (222) is provided with a plurality of dispersedly arranged second ventilation holes (222a), and the first ventilation holes (221a) and the second ventilation holes (222a) are inclined toward each other along the air supply direction.
7. The air conditioner according to any one of claims 1 to 3, characterized in that, The shell (100) is provided with a second air outlet (120), the second air outlet (120) is connected to the air duct, and along the height direction of the shell (100), the second air outlet (120) is located below the first air outlet (110); the shell (100) is provided with an air guide plate (300) for closing or opening the second air outlet (120).
8. The air conditioner according to claim 7, wherein, The air conditioner has a rapid temperature adjustment mode, and in the rapid temperature adjustment mode, the air guide plate (300) opens the second air outlet (120); And / or, the air conditioner has a wind-dispersing mode. In the wind-dispersing mode, the air deflector (300) closes the second air outlet (120).
9. The air conditioner according to claim 8, characterized in that, The air deflector (300) is an enclosed plate body, and the wind-dispersing mode is a semi-wind-dispersing mode; Or, the air deflector (300) is provided with a wind-dispersing structure (320), and the wind-dispersing mode is a full wind-dispersing mode.
10. The air conditioner according to claim 7, wherein The air deflector (300) is hinged to the rear edge of the second air outlet (120). The air conditioner has a first heating mode. In the first heating mode, the air deflector (300) opens the second air outlet (120) and extends downward; Or, the first air outlet (110) is located on the front end plate (130) of the housing (100), the second air outlet (120) is located at the bottom of the housing (100), the air deflector (300) is hinged to the front edge of the second air outlet (120), and the air deflector (300) has a blocking position for blocking the air duct section between the air guiding member (200) and the second air outlet (120) of the air duct (10); The air conditioner has a second heating mode. In the second heating mode, the air deflector (300) opens the second air outlet (120) and rotates to the blocking position.