Air conditioner
By designing the connecting rod in the air conditioner to be located between two air guide vanes and having a diversion function, the problems of complex structure and many parts in the air conditioner are solved, achieving the effects of simplifying the structure, reducing costs and improving installation efficiency.
Patent Information
- Application Number
- CN202420520492.6
- 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
Existing air conditioners have complex structures and numerous parts, especially the design of connecting rods and shunt components, which leads to high costs and complicated installation procedures.
A connecting rod is located between the first and second sub-guide vanes and is connected to both. The connecting rod has a flow-diverting surface to eliminate the need for a separate flow-diverting component. The airflow direction of the two air outlet channels is controlled by a single connecting rod.
The number of parts in the air conditioner has been reduced, the structure has been simplified, costs have been lowered, installation and production efficiency has been improved, and the comfort and noise reduction effects of the air conditioner have been enhanced.
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Figure CN223826333U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to air conditioning technical field especially is related to an air conditioner. BACKGROUND
[0002] In the related art, the air conditioner adopts a multi-outlet design, the housing assembly of the air conditioner forms a first outlet and a second outlet, a plurality of guide vanes are respectively arranged in the two outlet channels corresponding to the first outlet and the second outlet, a connecting rod for controlling linkage of the plurality of guide vanes is respectively arranged in the two outlet channels, and a flow dividing member is further arranged in the housing assembly, the flow dividing member is used for guiding airflow to the two outlet channels respectively, the air conditioner has a large number of components and a complex structure. Therefore, improvement is needed. SUMMARY
[0003] The utility model aims at solving one of the technical problems in the prior art. To this end, one object of the utility model is to provide an air conditioner, by arranging the connecting rod of the air guide component between the first sub-guide vane and the second sub-guide vane and connecting the connecting rod with the first sub-guide vane and the second sub-guide vane, the first sub-guide vane and the second sub-guide vane are driven to move by the same connecting rod, the number of connecting rods can be reduced, the number of components of the air conditioner can be reduced, and the structure can be simplified. In addition, by arranging the connecting rod with a first flow guide surface and a second flow guide surface, the connecting rod has a flow dividing function, the airflow can be guided to the first outlet channel and the second outlet channel respectively, the flow dividing member can be omitted, the number of components of the air conditioner and the corresponding installation steps can be further reduced, the structure can be simplified, the cost can be reduced, and the installation and production efficiency can be improved.
[0004] The utility model discloses an air conditioner, comprising: shell subassembly, form with the first air outlet and second air outlet and have first air outlet channel and second air outlet channel that interval arrangement is along left and right directions, first air outlet channel with first air outlet corresponds and communicates, second air outlet channel with second air outlet corresponds and communicates, heat exchange air supply subassembly, locate in shell subassembly, air guide component, locate in shell subassembly and include connecting rod and a plurality of air guide vanes that arrange along up and down directions, every air guide vane includes first sub air guide vane and second sub air guide vane, first sub air guide vane is located in first air outlet channel, second sub air guide vane is located in second air outlet channel, connecting rod extends along up and down directions and can move along up and down directions, connecting rod is located between first sub air guide vane and second sub air guide vane and is connected with first sub air guide vane and second sub air guide vane, wherein, connecting rod has first drainage surface and second drainage surface that are relatively arranged along left and right directions, first drainage surface is adjacent first air outlet channel and is used for guiding airflow to first air outlet channel, and second drainage surface is adjacent second air outlet channel and is used for guiding airflow to second air outlet channel.
[0005] According to the air conditioner, the connecting rod of the air guide component is located between the first sub air guide vane and the second sub air guide vane and is connected with the first sub air guide vane and the second sub air guide vane, the first sub air guide vane and the second sub air guide vane are driven to move through the same connecting rod, the number of connecting rods can be reduced, the number of parts of the air conditioner can be reduced, and the structure can be simplified; in addition, the connecting rod has the first drainage surface and the second drainage surface, the connecting rod has a flow dividing function, airflow can be guided to the first air outlet channel and the second air outlet channel, a separate flow dividing piece can be omitted, the number of parts of the air conditioner and the corresponding installation steps can be further reduced, the structure can be simplified, cost can be reduced, and installation production efficiency can be improved.
[0006] According to some embodiments of the utility model, the air guide vane is an integral molding piece.
[0007] According to some optional embodiments of the utility model, the air guide vane and the connecting rod are integrally molded.
[0008] According to some embodiments of the utility model, the first sub air guide vane and / or the second sub air guide vane is formed with a thinning groove.
[0009] According to some embodiments of the utility model, the trailing edge of the first sub air guide vane and / or the second sub air guide vane is formed with one or more gaps arranged at intervals.
[0010] According to some embodiments of the utility model, the trailing edge of the first sub air guide vane and / or the second sub air guide vane extends in an arc shape.
[0011] According to some embodiments of the present application, a first groove is formed at one end of the first sub-guide vane adjacent to the connecting rod; and / or, a second groove is formed at one end of the second sub-guide vane adjacent to the connecting rod.
[0012] According to some embodiments of the present application, a plurality of the guide vanes are divided into a plurality of groups of guide vanes arranged in a spaced manner along the up-down direction, at least one group of the guide vanes comprises a plurality of the guide vanes arranged along the up-down direction, in the up-down direction, the spacing between two adjacent groups of the guide vanes is d1, and the spacing between two adjacent guide vanes in the same group of the guide vanes is d2, d1 is greater than d2.
[0013] According to some optional embodiments of the present application, the ratio of d1 to d2 is in the range of 1.5-2.5.
[0014] According to some optional embodiments of the present application, the value of d1 is in the range of 100-142mm; and the value of d2 is in the range of 50-80mm.
[0015] According to some optional embodiments of the present application, the air guiding component comprises a mounting plate fixed to the shell assembly, each of the guide vanes comprises a first mounting shaft and a second mounting shaft, the first mounting shaft is connected to one end of the first sub-guide vane away from the connecting rod, the first sub-guide vane is connected to the mounting plate through the first mounting shaft, the second mounting shaft is connected to one end of the second sub-guide vane away from the connecting rod, and the second sub-guide vane is connected to the mounting plate through the second mounting shaft.
[0016] According to some optional embodiments of the present application, the mounting plate comprises a first mounting portion and a second mounting portion arranged at an included angle, the first mounting shaft is connected to the first mounting portion, and the second mounting shaft is connected to the second mounting portion.
[0017] According to some optional embodiments of the present application, the guide vanes and the mounting plate are integrally formed; or the guide vanes and the mounting plate are detachably connected.
[0018] According to some optional embodiments of the present application, a third groove is formed on the first sub-guide vane, the third groove is located between the connecting rod and the first mounting shaft, and the third groove is adjacent to the first mounting shaft compared with the connecting rod; and / or, a fourth groove is formed on the second sub-guide vane, the fourth groove is located between the connecting rod and the second mounting shaft, and the fourth groove is adjacent to the second mounting shaft compared with the connecting rod.
[0019] Additional aspects and advantages of the present application will be given in part in the following description and will be apparent from the description, or will be learned by practice of the application. BRIEF DESCRIPTION OF DRAWINGS
[0020] The above and / or additional aspects and advantages of the present application will become apparent and be readily appreciated from the following description, including the accompanying drawings, wherein:
[0021] Figure 1 is a partial structure schematic view of an air conditioner indoor unit according to some embodiments of the present application;
[0022] Figure 2 is Figure 1 a sectional view of the air conditioner indoor unit in
[0023] Figure 3 is Figure 1 a schematic view of part of the structure of the air conditioner indoor unit in
[0024] Figure 4 is Figure 3 an enlarged view of B in
[0025] Figure 5 is Figure 1 a front view of part of the structure of the air conditioner indoor unit in
[0026] Figure 6 is Figure 1 a top view of part of the structure of the air conditioner indoor unit in
[0027] REFERENCE NUMERALS:
[0028] 100, air conditioner indoor unit;
[0029] 1, housing assembly; 11, first air outlet; 12, second air outlet; 13, first air outlet passage; 14, second air outlet passage;
[0030] 2, heat exchange and air supply assembly; 21, heat exchanger component; 22, fan component;
[0031] 3, air guide component; 31, connecting rod; 32, air guide blade; 321, first sub-air guide blade; 322, second sub-air guide blade; 323, first mounting shaft; 324, second mounting shaft; 33, mounting plate; 331, first mounting portion; 332, second mounting portion; 34, trailing edge;
[0032] 41, first flow guide surface; 42, second flow guide surface;
[0033] 5, thinning groove;
[0034] 6, notch;
[0035] 7. first recess;
[0036] 8. second recess;
[0037] 9. third recess;
[0038] 10. fourth recess. DETAILED DESCRIPTION
[0039] Embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary only, and are used only for explaining the present application, and cannot be understood as limiting the present application.
[0040] Reference is made to Figures 1-6 An air conditioner according to an embodiment of the present application is described below.
[0041] Reference is made to Figures 1-2 An air conditioner according to an embodiment of the present application comprises a casing assembly 1, a heat exchange and air supply assembly 2, and an air guide component 3, the heat exchange and air supply assembly 2 and the air guide component 3 are arranged in the casing assembly 1, and the heat exchange and air supply assembly 2 is located on the upstream side of the air guide component 3.
[0042] The casing assembly 1 is formed with a first air outlet 11 and a second air outlet 12 arranged at intervals along the left-right direction, and the casing assembly 1 has a first air outlet channel 13 and a second air outlet channel 14, the first air outlet channel 13 corresponds to and communicates with the first air outlet 11, and the airflow in the first air outlet channel 13 enters the indoor space through the first air outlet 11, the second air outlet channel 14 corresponds to and communicates with the second air outlet 12, and the airflow in the second air outlet channel 14 enters the indoor space through the second air outlet 12.
[0043] The heat exchange and air supply assembly 2 comprises a fan component 22 and a heat exchanger component 21, the fan component 22 is used to drive the airflow in the casing assembly 1 to flow out of the first air outlet 11 and the second air outlet 12 and into the indoor space, and the heat exchanger component 21 is used to exchange heat with the airflow in the casing assembly 1 to achieve cooling adjustment or heating adjustment of the airflow.
[0044] Reference is made to Figures 3-6, the air guiding component 3 comprises a connecting rod 31 and a plurality of air guiding blades 32 arranged in the up-down direction, each of the air guiding blades 32 comprises a first sub-air guiding blade 321 and a second sub-air guiding blade 322, the first sub-air guiding blade 321 is located in the first air outlet channel 13, and the first sub-air guiding blade 321 can be used for adjusting the flow direction of the air flow in the first air outlet channel 13 and can be used for adjusting the air outlet direction, air outlet angle, etc. of the first air outlet 11; the second sub-air guiding blade 322 is located in the second air outlet channel 14, and the second air guiding part can be used for adjusting the flow direction of the air flow in the second air outlet channel 14 and can be used for adjusting the air outlet direction, air outlet angle of the second air outlet 12.
[0045] Reference Figures 3-6 , the connecting rod 31 extends in the up-down direction and is movable in the up-down direction, and the connecting rod 31 is located between the first sub-air guiding blade 321 and the second sub-air guiding blade 322 and is connected with the first sub-air guiding blade 321 and the second sub-air guiding blade 322. The connecting rod 31 can drive the first sub-air guiding blade 321 and the second sub-air guiding blade 322 connected thereto to swing in the up-down direction by moving in the up-down direction, so as to realize the adjustment of the flow direction of the air flow in the first air outlet channel 13 by the first sub-air guiding blade 321 and the adjustment of the air outlet direction, air outlet angle, etc. of the first air outlet 11, and realize the adjustment of the flow direction of the air flow in the second air outlet channel 14 by the second sub-air guiding blade 322 and the adjustment of the air outlet direction, air outlet angle, etc. of the second air outlet 12. The swing of the first sub-air guiding blade 321 and the second sub-air guiding blade 322 can be controlled at the same time through the same connecting rod 31, which reduces the number of connecting rods 31 and also reduces the number of parts of the air conditioner.
[0046] Optionally, the air conditioner can further comprise a driving mechanism, for example, the driving mechanism can comprise a motor, and the driving mechanism is connected with the connecting rod 31 to drive the connecting rod 31 to move in the up-down direction.
[0047] Optionally, the air guiding blade 32 is formed as a flexible component, for example, the air guiding blade 32 can be formed as a plastic part.
[0048] Optionally, when the connecting rod 31 moves up and down, the connecting rod 31 deforms the air guiding blade 32 to make the air guiding blade 32 swing in the up-down direction.
[0049] Reference Figures 3-6The connecting rod 31 has a first flow guide surface 41 and a second flow guide surface 42 arranged opposite to each other along the left-right direction, the first flow guide surface 41 is adjacent to the first air outlet channel 13 and is used for guiding the airflow to the first air outlet channel 13, and the second flow guide surface 42 is adjacent to the second air outlet channel 14 and is used for guiding the airflow to the second air outlet channel 14.
[0050] 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 vanes 32 to move and swing downward, the first air guide vane 321 guides the airflow in the first air outlet channel 13 to the lower side, and the second air guide vane 322 guides the airflow in the second air outlet channel 14 to the lower side, so that the airflow flows to the lower side of the indoor space through the first air outlet 11 and the second air outlet 12, and the indoor space is heated and adjusted.
[0051] 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 vanes 32 to move and swing downward, the first air guide vane 321 guides the airflow in the first air outlet channel 13 to the lower side, and the second air guide vane 322 guides the airflow in the second air outlet channel 14 to the lower side, so that the airflow flows to the lower side of the indoor space through the first air outlet 11 and the second air outlet 12, and the indoor space is heated and adjusted.
[0052] According to the air conditioner, the connecting rod 31 of the air guide component 3 is located between the first air guide vane 321 and the second air guide vane 322, and is connected with the first air guide vane 321 and the second air guide vane 322, the first air guide vane 321 and the second air guide vane 322 are driven to move by the same connecting rod 31, the number of connecting rods 31 can be reduced, the number of parts of the air conditioner can be reduced, and the structure can be simplified.
[0053] Reference Figures 2-6According to some embodiments of the utility model, the air guide blade 32 is an integral molding piece. By making the air guide blade 32 an integral molding piece, the number of parts of the air conditioner is further reduced, and the first sub air guide blade 321 and the second sub air guide blade 322 can be integrally connected to the same connecting rod 31, thereby reducing the installation steps and the required time, which is conducive to reducing the production cost of the air conditioner and improving the production efficiency of the air conditioner.
[0054] Reference Figures 2-6 According to some optional embodiments of the utility model, the air guide blade 32 and the connecting rod 31 are integrally molded. By integrally molding the connecting rod 31 and 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 together as a whole in the cabinet assembly 1, which can further reduce the installation steps and the required time of the air conditioner, save more labor costs, and thus be conducive to further reducing the production cost of the air conditioner and improving the production efficiency of the air conditioner.
[0055] Reference Figure 4 According to some embodiments of the utility model, the first sub air guide blade 321 is formed with a thinning groove 5. By forming multiple thinning grooves 5 on the first sub air guide blade 321, the material usage of the first sub air guide blade 321 can be reduced, and the setting of the thinning groove 5 is conducive to improving the flexibility of the first sub air guide blade 321, so that the first sub air guide blade 321 is more likely to deform under the driving of the connecting rod 31, thereby making the swing amplitude of the first sub air guide blade 321 easy to control, and facilitating the adjustment of the air outlet direction and air outlet angle of the first air outlet 11.
[0056] Reference Figure 4 According to some embodiments of the utility model, the second sub air guide blade 322 is formed with a thinning groove 5. By forming multiple thinning grooves 5 on the second sub air guide blade 322, the material usage of the second sub air guide blade 322 can be reduced, and the setting of the thinning groove 5 is conducive to improving the flexibility of the second sub air guide blade 322, so that the second sub air guide blade 322 is more likely to deform under the driving of the connecting rod 31, thereby making the swing amplitude of the first sub air guide blade 321 easy to control, and facilitating the adjustment of the air outlet direction and air outlet angle of the first air outlet 11.
[0057] Reference Figure 4According to some embodiments of the utility model, the trailing edge 34 of the first sub-guide vane 321 is formed with one or more gaps 6 arranged at intervals. The trailing edge 34 of the first sub-guide vane 321 refers to the part of the first sub-guide vane 321 away from one end of the connecting rod 31. By forming one or more gaps 6 arranged at intervals on the trailing edge 34 of the first sub-guide vane 321, the wind resistance can be reduced, the gas resistance can be reduced, and the noise can be reduced at the same time.
[0058] Reference Figures 3-4 According to some embodiments of the utility model, the trailing edge 34 of the second sub-guide vane 322 is formed with one or more gaps 6 arranged at intervals. The trailing edge 34 of the second sub-guide vane 322 refers to the part of the second sub-guide vane 322 away from one end of the connecting rod 31. By forming one or more gaps 6 arranged at intervals on the trailing edge 34 of the second sub-guide vane 322, the wind resistance can be reduced, the gas resistance can be reduced, and the noise can be reduced at the same time.
[0059] Reference Figures 3-4 According to some embodiments of the utility model, the trailing edge 34 of the first sub-guide vane 321 extends in an arc shape. By making the trailing edge 34 of the first sub-guide vane 321 extend in an arc shape, the effect of disturbing the airflow can be achieved, which is conducive to reducing the noise generated by the airflow.
[0060] Reference Figures 3-4 According to some embodiments of the utility model, the trailing edge 34 of the second sub-guide vane 322 extends in an arc shape. By making the trailing edge 34 of the second sub-guide vane 322 extend in an arc shape, the effect of disturbing the airflow can be achieved, which is conducive to reducing the noise generated by the airflow.
[0061] Reference Figure 4 According to some embodiments of the utility model, one end of the first sub-guide vane 321 adjacent to the connecting rod 31 is formed with a first groove 7. When the connecting rod 31 moves in the up-down direction, the connecting rod 31 exerts a force on the first sub-guide vane 321, and the first sub-guide vane 321 will deform. By forming the first groove 7 at one end of the first sub-guide vane 321 adjacent to the connecting rod 31, the first groove 7 can guide the first sub-guide vane 321 to deform along the first groove 7, so that the first sub-guide vane 321 can swing in the up-down direction. The first groove 7 can avoid stress concentration of the first sub-guide vane 321 during swinging, so as to reduce or avoid tearing of the first sub-guide vane 321, thereby facilitating prolonging the service life of the first sub-guide vane 321.
[0062] Reference Figure 4According to some embodiments of the utility model, one end of the second sub-guide vane 322 adjacent to the connecting rod 31 is formed with a second groove 8. When the connecting rod 31 moves in the up-down direction, the connecting rod 31 exerts a force on the second sub-guide vane 322, and the second sub-guide vane 322 deforms. By forming the second groove 8 at the two ends of the second sub-guide vane 322 adjacent to the connecting rod 31, the second groove 8 can guide the second sub-guide vane 322 to deform along the second groove 8, so that the second sub-guide vane 322 can swing in the up-down direction. Moreover, the second groove 8 can avoid stress concentration of the second sub-guide vane 322 during swinging, so as to reduce or avoid tearing of the second sub-guide vane 322, thereby prolonging the service life of the second sub-guide vane 322.
[0063] Reference Figure 3 , Figure 5 According to some embodiments of the utility model, the plurality of guide vanes 32 are divided into a plurality of groups of guide vanes arranged at intervals in the up-down direction, and at least one group of guide vanes includes a plurality of guide vanes 32 arranged in the up-down direction. Among them, at least one group of guide vanes includes a plurality of guide vanes 32 arranged in the up-down direction, which can include the following cases: for example, one group of guide vanes includes a plurality of guide vanes 32 arranged in the up-down direction; for another example, each group of guide vanes includes a plurality of guide vanes 32 arranged in the up-down direction; for another example, some groups of guide vanes include a plurality of guide vanes 32 arranged in the up-down direction.
[0064] In the up-down direction, the distance between the two adjacent groups of guide vanes is d1. Optionally, a purification component, such as a sterilization assembly, can be arranged between the two adjacent groups of guide vanes. Optionally, a support and fixing structure can also be arranged between the two adjacent groups of guide vanes, which can be used to install and fix the guide component 3 to the shell assembly 1. The distance between the two adjacent guide vanes 32 in the same group of guide vanes is d2, which provides space for the up-down swinging of the guide vanes 32. The distance d1 between the two adjacent groups of guide vanes is greater than the distance d2 between the two adjacent guide vanes 32 in the same group of guide vanes.
[0065] By making the spacing d1 between the two adjacent groups of guide vanes larger than the spacing d2 between the two adjacent guide vanes in the same group of guide vanes, a larger accommodation space is formed between the two adjacent groups of guide vanes, which facilitates the arrangement of other components of the air conditioner and avoids interference between the guide vanes 32 and other components of the air conditioner during up-down swinging. In addition, by making d1 larger than d2, effective use of aerodynamics can be achieved, and the air speed of the airflow can be adjusted in different groups of guide vanes. For example, by making d1 larger than d2, the air speed between the two adjacent guide vanes in the same group of guide vanes is greater than the air speed between the two adjacent groups of guide vanes, thereby adjusting the air speed of the airflow flowing out of the first air outlet 11 and the second air outlet 12, and improving the comfort of the air conditioner.
[0066] Reference Figure 3 , Figure 5 According to some optional embodiments of the present application, the ratio of d1 to d2 is in the range of 1.5-2.5. If the ratio of d1 to d2 is less than 1.5, the spacing between the two adjacent groups of guide vanes is small, which may not be sufficient to accommodate other components of the air conditioner, and the adjustment effect on the air speed of the airflow is limited. If the ratio of d1 to d2 is greater than 2.5, the layout of the guide vanes 32 in the cabinet assembly 1 is unreasonable, which may cause waste of space in the cabinet assembly 1. By making the ratio of d1 to d2 in the range of 1.5-2.5, the spacing between the two adjacent groups of guide vanes is appropriate in this range, which can accommodate other components of the air conditioner and effectively adjust the air speed of the airflow, thereby effectively improving the comfort of the air conditioner, and the layout of the guide vanes 32 in the cabinet assembly 1 is reasonable, which is conducive to fully utilizing the space in the cabinet assembly 1.
[0067] Reference Figure 3 , Figure 5 According to some optional embodiments of the present application, the value of d1 is in the range of 100-142mm. Optionally, the spacing d1 between the two adjacent groups of guide vanes can be 100mm, 108mm, 120mm, 122mm, 125mm, 130mm, 140mm, 142mm, etc. By making the value of d1 in the range of 100-142mm, the spacing between the two adjacent groups of guide vanes is appropriate in this range, which can accommodate other components of the air conditioner and effectively adjust the air speed of the airflow, thereby effectively improving the comfort of the air conditioner, and the layout of the guide vanes 32 in the cabinet assembly 1 is reasonable, which is conducive to fully utilizing the space in the cabinet assembly 1.
[0068] Reference Figure 3 , Figure 5According to some optional embodiments of the present application, the value range of d2 is 50-80mm. Optionally, the spacing d2 between the adjacent two air guide vanes 32 in the same air guide vane group can be 50mm, 55mm, 60mm, 65mm, 70mm, 78mm, 80mm, etc. By setting the value range of d2 to be 50-80mm, in this range, the spacing between the adjacent two air guide vanes 32 in the same air guide vane group is compact in structure, reasonable in layout, and can provide enough space for the up-down swinging of the air guide vane 32, avoiding the mutual interference of the adjacent two air guide vanes 32 when swinging.
[0069] Reference Figures 3-4 According to some optional embodiments of the present application, the air guide component 3 comprises a mounting plate 33, the mounting plate 33 is fixed to the shell assembly 1, and the air guide vanes 32 are mounted on the shell assembly 1 through the mounting plate 33. Each air guide vane 32 comprises a first mounting shaft 323 and a second mounting shaft 324, the first mounting shaft 323 is connected to the end of the first sub-air guide vane 321 away from the connecting rod 31, the first sub-air guide vane 321 is connected to the mounting plate 33 through the first mounting shaft 323, and the second mounting shaft 324 is connected to the end of the second sub-air guide vane 322 away from the connecting rod 31, and the second sub-air guide vane 322 is connected to the mounting plate 33 through the second mounting shaft 324.
[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 guide vane 32 and moves it upward, the end of the first sub-air guide vane 321 away from the connecting rod 31 is subjected to a downward force of the mounting plate 33, the first sub-air guide vane 321 swings downward, and the first sub-air guide vane 321 guides the airflow in the first air outlet passage 13 downward; the end of the second sub-air guide vane 322 away from the connecting rod 31 is also subjected to a downward force of the mounting plate 33, the second sub-air guide vane 322 swings downward, and the second sub-air guide vane 322 guides the airflow in the second air outlet passage 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 vane 32 and moves it downward, the end of the first sub-air guide vane 321 away from the connecting rod 31 is subjected to the upward force of the mounting plate 33, the first sub-air guide vane 321 swings upward, and the first sub-air guide vane 321 guides the airflow in the first air outlet passage 13 upward; the end of the second sub-air guide vane 322 away from the connecting rod 31 is also subjected to the upward force of the mounting plate 33, the second sub-air guide vane 322 swings upward, and the second sub-air guide vane 322 guides the airflow in the second air outlet passage 14 upward; so that the airflow flows toward the upper part of the indoor space through the first air outlet 11 and the second air outlet 12 to cool the indoor space.
[0072] By connecting the first sub-air guide vane 321 to the mounting plate 33 through the first mounting shaft 323 connected to the end of the first sub-air guide vane 321 away from the connecting rod 31, connecting the second sub-air guide vane 322 to the mounting plate 33 through the second mounting shaft 324 connected to the end of the second sub-air guide vane 322 away from the connecting rod 31, and fixing the mounting plate 33 to the cabinet assembly 1, the air guide vane 32 is mounted to the cabinet assembly 1 through the mounting plate 33, and the mounting plate 33 transmits the force to the first sub-air guide vane 321 through the first mounting shaft 323 and to the second sub-air guide vane 322 through the second mounting shaft 324, so that the air guide vane 32 can swing in the up-down direction.
[0073] Reference Figures 3-4 According to some optional embodiments of the present application, the mounting plate 33 includes first and second mounting portions 331 and 332 arranged at an angle, the first mounting shaft 323 is connected to the first mounting portion 331, and the second mounting shaft 324 is connected to the second mounting portion 332. By having the mounting plate 33 include first and second mounting portions 331 and 332 arranged at an angle, and connecting the first mounting shaft 323 to the first mounting portion 331 and the second mounting shaft 324 to the second mounting portion 332, the structure of the mounting plate 33 can be well adapted to the structure inside the cabinet assembly 1 of the air conditioner, avoiding interference between the mounting plate 33 and the cabinet assembly 1, facilitating the fixing of the mounting plate 33 to the cabinet assembly 1, and allowing the first sub-air guide vane 321 to be located inside the first air outlet passage 13 and the second sub-air guide vane 322 to be located inside the second air outlet passage 14.
[0074] Reference Figures 3-6 According to some optional embodiments of the present application, the air guide vane 32 is integrally formed with the mounting plate 33. By integrally forming the air guide vane 32 with the mounting plate 33, the related installation operation of connecting the air guide vane 32 to the mounting plate 33 can be omitted, the installation operation and the time consumed can be further reduced, and the production cost of the air conditioner can be further reduced and the production efficiency can be improved.
[0075] For example, in the process of integrally forming the connecting rod 31, the guide vane 32 and the mounting plate 33, the first mounting shaft 323 and the second mounting shaft 324 have a glue running effect, which is beneficial to simplify the forming process.
[0076] According to some optional embodiments of the present application, the guide vane 32 and the mounting plate 33 are detachably connected. By detachably connecting the guide vane 32 and the mounting plate 33, it is convenient to maintain and replace the guide vane 32 and the mounting plate 33. Optionally, the first mounting hole is formed on the first mounting portion 331 of the mounting plate 33, the second mounting hole is formed on the second mounting portion 332 of the mounting plate 33, the first mounting shaft 323 is rotatably arranged in the first mounting hole, and the second mounting shaft 324 is rotatably arranged in the second mounting hole. By rotatably mounting the first mounting shaft 323 in the first mounting hole of the mounting plate 33 and rotatably mounting the second mounting shaft 324 in the second mounting hole of the mounting plate 33, the first sub-guide vane 321 and the second sub-guide vane 322 can rotate relative to the mounting plate 33 to a certain extent when subjected to force, which is beneficial to increase the swing range of the guide vane 32 and reduce the deformation degree of the first sub-guide vane 321 and the second sub-guide vane 322, and can avoid tearing of the first sub-guide vane 321 and the second sub-guide vane 322 due to a large deformation degree.
[0077] Optionally, the first mounting shaft 323 is slidable relative to the first mounting hole in the left-right direction. When the connecting rod 31 moves in the up-down direction and makes the first sub-guide vane 321 swing in the up-down direction, the first mounting shaft 323 connected to the first sub-guide vane 321 can slide relative to the first mounting hole in the left-right direction. The second mounting shaft 324 is slidable relative to the second mounting hole in the left-right direction. When the connecting rod 31 moves in the up-down direction and makes the second sub-guide vane 322 swing in the up-down direction, the second mounting shaft 324 connected to the second sub-guide vane 322 can slide relative to the second mounting hole in the left-right direction. By making the first mounting shaft 323 slidable relative to the first mounting hole in the left-right direction and the second mounting shaft 324 slidable relative to the second mounting hole in the left-right direction, it can avoid that the mounting plate 33 hinders the first sub-guide vane 321 and the second sub-guide vane 322 of the guide vane 32 when the first sub-guide vane 321 and the second sub-guide vane 322 swing in the up-down direction, which is beneficial to further increase the swing range of the guide vane 32, thereby being beneficial to optimize the air guiding effect of the guide vane 32 and improve the cooling and heating comfort of the air conditioner.
[0078] Reference Figures 3-4, according to some optional embodiments of the utility model, first sub guide vane 321 form with third groove 9, third groove 9 is located between connecting rod 31 and first mounting shaft 323, and third groove 9 is adjacent first mounting shaft 323 compared with connecting rod 31. When connecting rod 31 moves along the up-down direction, connecting rod 31 exerts force on the end of first sub guide vane 321 adjacent connecting rod 31, mounting plate 33 exerts force on the end of first sub guide vane 321 away from connecting rod 31, by forming third groove 9 on first sub guide vane 321, third groove 9 can guide the end of first sub guide vane 321 away from connecting rod 31 to deform along third groove 9, and by making third groove 9 adjacent first mounting shaft 323 compared with connecting rod 31, it is favorable for first groove 7 and third groove 9 to form guiding effect towards the same direction to first sub guide vane 321, avoid making first sub guide vane 321 appear torsion etc. situation, so that first sub guide vane 321 can swing along the up-down direction smoothly;And third groove 9 can avoid stress concentration of first sub guide vane 321 in the swing process, to reduce or avoid first sub guide vane 321 tear etc. situation, thereby it is favorable for prolonging the service life of first sub guide vane 321.
[0079] Reference Figures 3-4 , according to some optional embodiments of the utility model, second sub guide vane 322 form with fourth groove 10, fourth groove 10 is located between connecting rod 31 and second mounting shaft 324, and fourth groove 10 is adjacent second mounting shaft 324 compared with connecting rod 31. When connecting rod 31 moves along the up-down direction, connecting rod 31 exerts force on the end of second sub guide vane 322 adjacent connecting rod 31, mounting plate 33 exerts force on the end of second sub guide vane 322 away from connecting rod 31, by forming fourth groove 10 on second sub guide vane 322, fourth groove 10 can guide the end of second sub guide vane 322 away from connecting rod 31 to deform along fourth groove 10, and by making fourth groove 10 adjacent second mounting shaft 324 compared with connecting rod 31, it is favorable for second groove 8 and fourth groove 10 to form guiding effect towards the same direction to second sub guide vane 322, avoid making second sub guide vane 322 appear torsion etc. situation, so that second sub guide vane 322 can swing along the up-down direction smoothly;And fourth groove 10 can avoid stress concentration of second sub guide vane 322 in the swing process, to reduce or avoid second sub guide vane 322 tear etc. situation, thereby it is favorable for prolonging the service life of second sub guide vane 322.
[0080] Next, the air conditioner of some embodiments of the utility model will be described with reference to Figures 1-6
[0081] Reference Figures 1-6 In the embodiment, the air conditioner is a split floor type 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 2, an air guide component 3, etc. The heat exchange and air supply assembly 2 and the air guide component 3 are arranged in the casing assembly 1. The heat exchange and air supply assembly 2 comprises a heat exchanger component 21 and a fan component 22. The casing assembly 1 is formed with an air inlet and first and second air outlets 11 and 12. The heat exchanger component 21 and the fan component 22 are located on the upstream side of the air guide component 3. The heat exchanger component 21 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.
[0082] 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 formed with the first and second air outlets 11 and 12, which are arranged in the left-right direction. The rear casing component is formed 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.
[0083] The air in the room enters the casing through the air inlet, flows through the heat exchanger component 21 and exchanges heat with the heat exchanger component 21 to achieve cooling or heating adjustment of the air. Then, the air flows through the fan component 22 and is sent to the air guide component 3 under the driving action of the fan component 22. Then, the air in the first air outlet channel 13 flows out through the first air outlet 11 under the guidance of the first sub-air guide vane 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 sub-air guide vane 322 and enters the room, so as to achieve heating or cooling adjustment of the air in the room.
[0084] 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 sub-air guide blade 321 and a second sub-air guide blade 322. The air guide blade 32 is integrally molded with the connecting rod 31 and the mounting plate 33. The connecting rod 31 is located between the first sub-air guide blade 321 and the second sub-air guide blade 322 and is connected to both the first sub-air guide blade 321 and the second sub-air guide blade 322. The connecting rod 31 is connected to one side of the air guide blade 32 adjacent to the mounting plate 33. The mounting plate 33 is fixed to the cabinet assembly 1. The air guide blade 32 and the connecting rod 31 are mounted to the cabinet assembly 1 through the mounting plate 33. The connecting rod 31 has a first flow guide surface 41 and a second flow guide surface 42 arranged opposite to each other in the left-right direction. The first flow guide surface 41 is adjacent to the first air outlet passage 13 and is used to guide the airflow to the first air outlet passage 13. The second flow guide surface 42 is adjacent to the second air outlet passage 14 and is used to guide the airflow to the second air outlet passage 14.
[0085] Specifically, the mounting plate 33 comprises a first mounting portion 331 and a second mounting portion 332 arranged at an included angle. The air guide louver comprises a first mounting shaft 323 and a second mounting shaft 324. The first mounting shaft 323 is connected to one end of the first sub-air guide blade 321 away from the connecting rod 31. The second mounting shaft 324 is connected to one end of the second sub-air guide blade 322 away from the connecting rod 31. The first sub-air guide blade 321 is connected to the first mounting portion 331 of the mounting plate 33 through the first mounting shaft 323. The second sub-air guide blade 322 is connected to the second mounting portion 332 of the mounting plate 33 through the second mounting shaft 324.
[0086] The first sub-air guide blade 321 is formed with a thinning groove 5. The first sub-air guide blade 321 is also formed with a first groove 7 and a third groove 9. The first groove 7 is formed at one end of the first sub-air guide blade 321 adjacent to the connecting rod 31. The third groove 9 is located between the connecting rod 31 and the first mounting shaft 323, and the third groove 9 is adjacent to the first mounting shaft 323 compared to the connecting rod 31. The trailing edge 34 of the first sub-air guide blade 321 extends in an arc shape, and the trailing edge 34 of the first sub-air guide blade 321 is formed with a plurality of spaced-apart notches 6.
[0087] The second sub-air guide blade 322 is formed with a thinning groove 5. The second sub-air guide blade 322 is also formed with a second groove 8 and a fourth groove 10. The second groove 8 is formed at one end of the second sub-air guide blade 322 adjacent to the connecting rod 31. The fourth groove 10 is located between the connecting rod 31 and the second mounting shaft 324, and the fourth groove 10 is adjacent to the second mounting shaft 324 compared to the connecting rod 31. The trailing edge 34 of the second sub-air guide blade 322 extends in an arc shape, and the trailing edge 34 of the second sub-air guide blade 322 is formed with a plurality of spaced-apart notches 6.
[0088] The plurality of guide vanes 32 are divided into a plurality of groups of guide vanes arranged at intervals in the up-down direction, wherein one group of guide vanes comprises one guide vane 32, and the other groups of guide vanes comprise a plurality of guide vanes 32 arranged in the up-down direction. In the up-down direction, the spacing between two adjacent groups of guide vanes is 122mm, and the spacing between two adjacent guide vanes 32 in the same group of guide vanes is 65mm.
[0089] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0090] In the description of the present application, "first feature" and "second feature" can include one or more features.
[0091] In the description of the present application, "a plurality of" means two or more.
[0092] In the description of the present application, "above" or "below" the first feature in the second feature can include direct contact between the first and second features, or can include indirect contact between the first and second features through another feature therebetween.
[0093] In the description of the present application, "above", "above" and "above" of the first feature in the second feature include the first feature directly above and obliquely above the second feature, or only indicate that the first feature is higher than the second feature in horizontal height.
[0094] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the exemplary description of the above terms does not necessarily refer to 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.
[0095] Although the embodiments of the utility model have been shown and described, those of ordinary skill 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 includes a first sub-air guiding blade and a second sub-air guiding blade. The first sub-air guiding blade is located in the first air outlet channel, and the second sub-air guiding blade 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 sub-air guiding blade and the second sub-air guiding blade and is connected to both the first sub-air guiding blade and the second sub-air guiding blade. The connecting rod has a first air-guiding surface and a second air-guiding surface arranged opposite to each other in the left-right direction. The first air-guiding surface is adjacent to the first air outlet channel and is used to guide airflow to the first air outlet channel. The second air-guiding surface is adjacent to the second air outlet channel and is used to guide airflow to the second air outlet channel.
2. The air conditioner according to claim 1, characterized in that, The air guide blades are integrally molded parts.
3. The air conditioner according to claim 2, characterized in that, The air guide blades are integrally formed with the connecting rod.
4. The air conditioner according to claim 1, characterized in that, Thinning grooves are formed on the first sub-guide blade and / or the second sub-guide blade.
5. The air conditioner according to claim 1, characterized in that, The trailing edges of the first sub-guide blade and / or the second sub-guide blade have one or more spaced notches.
6. The air conditioner according to claim 1, characterized in that, The trailing edges of the first sub-guide blade and / or the second sub-guide blade extend in an arc shape.
7. The air conditioner according to claim 1, characterized in that, A first groove is formed at one end of the first sub-guide blade adjacent to the connecting rod; and / or, a second groove is formed at one end of the second sub-guide blade adjacent to the connecting rod.
8. The air conditioner according to claim 1, characterized in that, The multiple guide vanes are divided into multiple groups of guide vane groups arranged at intervals along the vertical direction. At least one group of guide vane groups includes multiple guide vanes arranged along the vertical direction. In the vertical direction, the distance between two adjacent groups of guide vane groups is d1, and the distance between two adjacent guide vanes in the same group of guide vane groups is d2, where d1 is greater than d2.
9. The air conditioner according to claim 8, characterized in that, The ratio of d1 to d2 ranges from 1.5 to 2.
5.
10. The air conditioner according to claim 8, characterized in that, The value of d1 ranges from 100 to 142 mm; the value of d2 ranges from 50 to 80 mm.
11. The air conditioner according to any one of claims 1-10, 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 sub-air guide blade away from the connecting rod, and the first sub-air guide blade is connected to the mounting plate via the first mounting shaft. The second mounting shaft is connected to the end of the second sub-air guide blade away from the connecting rod, and the second sub-air guide blade is connected to the mounting plate via the second mounting shaft.
12. The air conditioner according to claim 11, characterized in that, The mounting plate includes a first mounting portion and a second mounting portion arranged at an angle, the first mounting shaft being connected to the first mounting portion and the second mounting shaft being connected to the second mounting portion.
13. The air conditioner according to claim 11, characterized in that, The air guide blade is integrally formed with the mounting plate; or the air guide blade is detachably connected to the mounting plate.
14. The air conditioner according to claim 13, characterized in that, A third groove is formed on the first sub-guide blade, the third groove being located between the connecting rod and the first mounting shaft, and the third groove being closer to the first mounting shaft than the connecting rod; and / or, a fourth groove is formed on the second sub-guide blade, the fourth groove being located between the connecting rod and the second mounting shaft, and the fourth groove being closer to the second mounting shaft than the connecting rod.