Air conditioner with various air outlet modes and adjusting method
Through the design of centralized housing, switching components and adjustment components, the problem of single air outlet method of air conditioner is solved, diversified air outlet methods are realized, the volume and production cost of air conditioner are reduced, and the flexibility of air outlet and noise reduction effect is improved.
Patent Information
- Application Number
- CN202410083643.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-19
- Publication Date
- 2025-07-29
AI Technical Summary
The single air outlet method of existing air conditioners has led to an increase in the volume of the air conditioner and an increase in production costs.
The design of centralized housing, switching components and adjustment components is adopted, and the air conditioner is subject to the air outlet, flat air outlet and down air outlet by switching different air outlet channels. The switching components and adjustment components are used for control, avoiding increasing the volume and production costs of the air conditioner.
It realizes a diversified air emitting method, reduces the volume and production cost of air conditioners, and improves the flexibility of air emitting and noise reduction effect.
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Figure CN120385117A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to an air conditioner with diverse air outlet modes and an adjustment method thereof. Background Art
[0002] An air conditioner, i.e., an air regulator, refers to a device that uses artificial means to adjust and control parameters such as the temperature, humidity, and flow rate of the air in the environment of a building or structure. Air conditioners are divided into single-cooling air conditioners and heating and cooling dual-use air conditioners, and their working principles are the same. Most air conditioners used to use Freon as the refrigerant. The characteristics of Freon are: when changing from a gaseous state to a liquid state, a large amount of heat is released. When changing from a liquid state to a gaseous state, a large amount of heat is absorbed. (That is, first absorb heat and vaporize, then liquefy and release heat.) The air conditioner is designed based on this principle.
[0003] Currently, the air outlet of an air conditioner generally relies on a single air outlet channel, resulting in a single air outlet mode. In the authorized Chinese utility model patent "Publication No.: CN106123276B, Name: Air Conditioner", the application shell has multiple air outlets and an air outlet panel. There are multiple air outlet panels, and the multiple air outlet panels are arranged in one-to-one correspondence with the multiple air outlets. Each air outlet panel has a blocking area for blocking the air outlet and multiple air outlet areas that are selectively communicated with the air outlet. The multiple air outlet areas respectively correspond to multiple different air outlet modes to achieve diverse air outlet modes. However, in this application, each air outlet area needs to be formed by an air outlet panel and an air outlet, resulting in a relatively large occupied volume of the air outlet area, thereby increasing the volume of the air conditioner. Moreover, the control of multiple air outlet panels requires separate control devices, that is, multiple control components need to be installed, increasing the production cost of the air conditioner. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to overcome the defect of a single air outlet mode in the prior art and provide an air conditioner with diverse air outlet modes and an adjustment method thereof.
[0005] The present invention solves the above technical problem through the following technical solutions:
[0006] The present invention provides an air conditioner with diverse air outlet modes and an adjustment method thereof, including an air conditioner body. The air outlet of the air conditioner body includes three outlets, which are respectively arranged on the right side surface, the upper side surface, and the lower side surface of the air conditioner body.
[0007] A centralized housing is arranged inside the air conditioner body at a position between the air outlet and the air outlet of the air conditioner body, and is used for collecting the air discharged by the air conditioner body. The centralized housing is provided with an inlet and three outlets, and the inlet and the three outlets are distributed in a circular array.
[0008] A switching component, which is arranged inside the centralized housing. The switching component is adjustable and used to control the opening and closing of the air outlet of the centralized housing.
[0009] An adjusting component, which is connected to the switching component and used to adjust the switching component.
[0010] An air guiding channel component, which is arranged outside the centralized housing. The air guiding channel component is used to guide the air outlet of the air conditioner body and achieve diversified air outlet.
[0011] In this technical solution, the adjusting component is used to control the switching component, and the switching component is used to switch different air outlet channels for air outlet, so as to realize the upper air outlet, horizontal air outlet and lower air outlet of the air conditioner. Moreover, multiple air outlet channels can be used independently, or two or more of them can be used in combination, making the air outlet mode more diverse. At the same time, only the switching component and the adjusting component are used to switch the air outlet channels, avoiding increasing the volume and production cost of the air conditioner.
[0012] Preferably, a centralized pipe is connected to the inlet of the centralized housing.
[0013] The openings at both ends of the centralized pipe are of different sizes. The end with the larger opening faces the air outlet of the air conditioner body, and the end with the smaller opening is connected to the centralized housing.
[0014] In this technical solution, the centralized pipe can be used to concentrate the air outlet of the air conditioner body into the centralized housing, preventing air leakage.
[0015] Preferably, the switching component includes a central column, a small sleeve and a large sleeve. The small sleeve is sleeved outside the central column, and the large sleeve is sleeved outside the small sleeve. The central column, the small sleeve and the large sleeve can all rotate independently.
[0016] Two symmetrically distributed first connecting plates are connected to the surface of the central column. One end of each of the two first connecting plates far from the central column is connected to one side of the first sealing plate.
[0017] Two symmetrically distributed second connecting plates are connected to the surface of the small sleeve. One end of each of the two second connecting plates far from the small sleeve is connected to one side of the second sealing plate.
[0018] Two symmetrically distributed third connecting plates are connected to the surface of the large sleeve. One side of each of the two third connecting plates far from the large sleeve is connected to one side of the third connecting plate.
[0019] The small sleeve and the large sleeve are both provided with communication ports for the first connecting plate and the second connecting plate to pass through.
[0020] In this technical solution, the rotation switching component can be used to switch the opening and closing of different air outlet ports on the centralized housing, so as to switch different upper channels, middle channels or lower channels for air outlet. At the same time, the upper channel, middle channel and lower channel can be used in combination or separately, making the air outlet mode of the air conditioner more diverse.
[0021] Preferably, the adjusting component includes an adjusting housing. One end of the central column, the small sleeve and the large sleeve all extend to the inner side of the adjusting housing. A first gear ring is fixedly connected to the surface of the large sleeve, and a second gear ring is fixedly connected to the surface of the small sleeve. Rotating gears are meshed and connected to the opposite sides of the first gear ring and the second gear ring. One side of the two rotating gears and the central column is fixedly connected to a rotating shaft. The three rotating shafts are connected through the fixing plate, and the fixing plate is fixedly connected to the inner wall of the adjusting housing;
[0022] One side of the rotating shaft is connected to a driving structure;
[0023] One end of the adjusting housing is connected to one end of the centralized housing, and the other end of the adjusting housing is connected to the inner wall of the air conditioner body.
[0024] In this technical solution, the adjusting component can be a rotation switching component, and the switching component is used to switch the air outlet channels.
[0025] Preferably, the driving structure includes a power component one. The power component one includes a moving motor installed on the inner wall of the adjusting housing. The output end of the moving motor is fixedly connected to a threaded column. A moving plate is threadedly connected to the surface of the threaded column. A rotating motor is installed on one side of the moving plate, and the output end of the rotating motor is fixedly connected to a first electromagnet block.
[0026] In this technical solution, the power component one can provide driving force for the adjusting component.
[0027] Preferably, second electromagnet blocks are fixedly connected to one ends of the three rotating shafts close to the first electromagnet block;
[0028] Two symmetrically distributed anti-deviation strips are connected to the inner wall of the adjusting housing, and the anti-deviation strips are connected through the moving plate;
[0029] One end of the threaded column away from the moving motor is rotatably connected to the inner wall of the adjusting housing.
[0030] In this technical solution, the anti-deviation strips can be used to limit the moving track of the moving plate.
[0031] Preferably, the air guiding channel component includes an upper channel, a middle channel and a lower channel, and the upper channel, the middle channel and the lower channel are all arranged inside the air conditioner body;
[0032] The upper channel, the middle channel, and the lower channel are all connected to the outside of the centralized housing at one end and to the inside of the air conditioner body at the other end;
[0033] The upper channel and the lower channel are respectively arranged on both sides of the middle channel, and the upper channel and the lower channel are symmetrically distributed;
[0034] A plurality of sound-absorbing cotton strips are arranged on the inner sides of the upper channel, the middle channel, and the lower channel;
[0035] A plurality of first air-distributing and noise-reducing plates distributed at equal intervals are connected to the inner wall of the upper channel and the lower channel near the outlet of the air conditioner body;
[0036] A plurality of second air-distributing and noise-reducing plates distributed at equal intervals are connected to the inner wall of the middle channel near the outlet of the air conditioner body, and one end of the second air-distributing and noise-reducing plate is connected to one end of the sound-absorbing cotton strip at this position.
[0037] In this technical solution, the air guide channel assembly can guide the air output of the air conditioner body, and can also perform sound absorption and noise reduction on the air output, reducing the noise of the air output of the air conditioner.
[0038] Preferably, a blocking assembly is further provided at one end of the centralized housing away from the adjusting assembly;
[0039] The blocking assembly includes a blocking housing. The ends of the central column, the small sleeve, and the large sleeve away from the adjusting assembly extend to the inside of the blocking housing. A first rotating ring is connected to the surface of the large sleeve, a second rotating ring is connected to the surface of the small sleeve, and a rotating disc is connected to one end of the central column;
[0040] Blocking plates are arranged on both sides of the first rotating ring, the second rotating ring, and the rotating disc. Connecting springs are connected to the opposite ends of the two blocking plates;
[0041] One end of the blocking housing is connected to the centralized housing, and the other end of the blocking housing is connected to the inner wall of the air conditioner body.
[0042] In this technical solution, the blocking assembly can prevent the first blocking plate, the second blocking plate, and the third blocking plate from moving due to wind force when not connected to the power assembly one, ensuring the stability of the air output channel.
[0043] Preferably, the driving structure further includes a power assembly two. The power assembly two includes a first motor, a second motor, and a third motor. The output ends of the first motor, the second motor, and the third motor are respectively fixedly connected to three rotating shafts, and the first motor, the second motor, and the third motor are all installed inside the adjusting housing.
[0044] In this technical solution, the power assembly two can provide driving force for the adjusting assembly.
[0045] Preferably, the adjustment method includes the following operating steps:
[0046] S. According to the air outlet requirement, use the first power component or the second power component to rotate the switching component, thereby controlling the opening and closing of different air outlets on the centralized housing. Different air outlets can control the opening and closing of the upper channel, the middle channel, and the lower channel, so as to achieve upper air outlet, horizontal air outlet, and lower air outlet of the air conditioner. Moreover, the upper channel, the middle channel, and the lower channel can be used alone, or two or more of them can be used in combination, making the air outlet mode more diverse;
[0047] S. During use, the blocking component can increase the resistance to the rotation of the central column, the small sleeve, and the large sleeve, avoiding the misrotation of the central column, the small sleeve, and the large sleeve due to the wind force of the air conditioner when there is no power;
[0048] S. When passing through the upper channel, the middle channel, or the lower channel, the sound-absorbing cotton strip can adsorb the noise of the air flow, and the first air flow equalizing and noise-reducing plate and the second air flow equalizing and noise-reducing plate can equalize the air flow and reduce the noise, thereby reducing the noise when the air conditioner blows out air.
[0049] On the basis of conforming to the common knowledge in the art, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred examples of the present invention.
[0050] The positive and progressive effects of the present invention are as follows:
[0051] The present invention uses the adjustment component to control the switching component, and uses the switching component to switch different air outlet channels for air outlet, so as to achieve upper air outlet, horizontal air outlet, and lower air outlet of the air conditioner. Moreover, multiple air outlet channels can be used alone, or two or more of them can be used in combination, making the air outlet mode more diverse. At the same time, only the switching component and the adjustment component are used to switch the air outlet channels, avoiding increasing the volume and production cost of the air conditioner. BRIEF DESCRIPTION OF THE DRAWINGS
[0052] Figure 1 It is a schematic structural diagram of an air conditioner with diverse air outlet modes and an adjustment method according to an embodiment of the present invention.
[0053] Figure 2 is Figure 1 The internal side view structural diagram of the air conditioner with diverse air outlet modes and the adjustment method shown.
[0054] Figure 3 is Figure 1 The internal top view structural diagram of the air conditioner with diverse air outlet modes and the adjustment method shown.
[0055] Figure 4 is Figure 2 The partial enlarged structural diagram at A of the air conditioner with diverse air outlet modes and the adjustment method shown.
[0056] Figure 5 For Figure 1 exploded structural schematic diagram of the switching component of an air conditioner with diverse air outlet modes and an adjustment method as shown
[0057] Figure 6 For Figure 1 structural schematic diagram of the positional relationship between the third connecting plate and the third plugging plate of an air conditioner with diverse air outlet modes and an adjustment method as shown
[0058] Figure 7 For Figure 1 structural schematic diagram of the adjustment component of an air conditioner with diverse air outlet modes and an adjustment method as shown
[0059] Figure 8 For Figure 1 structural schematic diagram of the first power component of an air conditioner with diverse air outlet modes and an adjustment method as shown
[0060] Figure 9 For Figure 1 exploded structural schematic diagram of the obstruction component of an air conditioner with diverse air outlet modes and an adjustment method as shown
[0061] Figure 10 For Figure 1 partial enlarged structural schematic diagram at position B of an air conditioner with diverse air outlet modes and an adjustment method as shown
[0062] Figure 11 For Figure 2 structural schematic diagram of the second power component of an air conditioner with diverse air outlet modes and an adjustment method as shown
[0063] Description of reference numerals
[0064] 1. Air conditioner body;
[0065] 2. Central housing;
[0066] 3. Switching component; 31. Central column; 32. Small sleeve; 33. Large sleeve; 34. First connecting plate; 35. First plugging plate; 36. Second connecting plate; 37. Second plugging plate; 38. Third connecting plate; 39. Third plugging plate;
[0067] 4. Adjustment component; 41. Adjustment housing; 42. First gear ring; 43. Second gear ring; 44. Rotating gear; 45. Rotating shaft; 46. Fixed plate;
[0068] 5. Air guiding channel component; 51. Upper channel; 52. Middle channel; 53. Lower channel; 54. Sound-absorbing cotton strip; 55. First air distribution and noise reduction plate; 56. Second air distribution and noise reduction plate;
[0069] 6. Power component one; 61. Moving motor; 62. Threaded column; 63. Moving plate; 64. Rotating motor; 65. First electromagnet block; 66. Second electromagnet block; 67. Anti-deviation strip;
[0070] 7. Obstruction component; 71. Obstruction housing; 72. First rotating ring; 73. Second rotating ring; 74. Rotating disc; 75. Obstruction plate; 76. Connecting spring;
[0071] 8. Power component two; 81. First motor; 82. Second motor; 83. Third motor;
[0072] 9. Concentrating pipe. Specific implementation manner
[0073] The present invention will be further described below by way of embodiments, but the present invention is not limited to the scope of the described embodiments.
[0074] Figures 1 to 10 Shown is a schematic structural diagram of Embodiment 1 of an air conditioner with diverse air outlet modes and an adjustment method thereof according to the present invention.
[0075] The air conditioner with diverse air outlet modes and the adjustment method include an air conditioner body 1. The air outlet of the air conditioner body 1 includes three outlets, which are respectively arranged on the right side, the upper side, and the lower side of the air conditioner body 1.
[0076] Concentrating housing 2 is arranged inside the air conditioner body 1 at a position between the air outlet and the air outlet of the air conditioner body 1, and is used for collecting the air discharged from the air conditioner body 1. The concentrating housing 2 is provided with an inlet and three outlets, and the inlet and the three outlets are distributed in an annular array.
[0077] Switching component 3 is arranged inside the concentrating housing 2, and the switching component 3 can be adjusted to control the opening and closing of the outlets of the concentrating housing 2.
[0078] Adjusting component 4 is connected to the switching component 3 and is used for adjusting the switching component 3.
[0079] Air guiding channel component 5 is arranged outside the concentrating housing 2, and the air guiding channel component 5 is used for guiding the air discharged from the air conditioner body 1 to achieve diverse air outlet.
[0080] In this technical solution, the adjusting component 4 is used to control the switching component 3, and the switching component 3 is used to switch different air outlet channels for air outlet, so as to realize the upper air outlet, the horizontal air outlet, and the lower air outlet of the air conditioner. Moreover, multiple air outlet channels can be used alone or in combination of two or more, making the air outlet mode more diverse. At the same time, only the switching component 3 and the adjusting component 4 are used to switch the air outlet channels, avoiding increasing the volume and production cost of the air conditioner.
[0081] That is to say, during actual use, when the user needs the windless mode, the switching component 3 is used to switch the air outlet passage to the upper passage 51. At this time, the air conditioner blows air upward, that is, the windless mode. When direct blowing is needed, the switching component 3 is used to switch the air outlet passage to the lower passage 53. At this time, the air conditioner blows air downward, and direct blowing can be performed on clothes, etc. When other air outlet methods are needed, the switching component 3 can be used to switch different air outlet passages.
[0082] A central pipe 9 is connected to the inlet of the central housing 2;
[0083] The openings at both ends of the central pipe 9 are of different sizes. The end with the larger opening faces the air outlet of the air conditioner body 1, and the end with the smaller opening is connected to the central housing 2.
[0084] In this technical solution, the central pipe 9 can be used to concentrate the air outlet of the air conditioner body 1 into the central housing 2 to prevent air leakage.
[0085] The switching component 3 includes a central column 31, a small sleeve 32 and a large sleeve 33. The small sleeve 32 is sleeved outside the central column 31, and the large sleeve 33 is sleeved outside the small sleeve 32. The central column 31, the small sleeve 32 and the large sleeve 33 can all rotate independently;
[0086] Two symmetrically distributed first connecting plates 34 are connected to the surface of the central column 31. One end of the two first connecting plates 34 far from the central column 31 is connected to one side of the first sealing plate 35;
[0087] Two symmetrically distributed second connecting plates 36 are connected to the surface of the small sleeve 32. One end of the two second connecting plates 36 far from the small sleeve 32 is connected to one side of the second sealing plate 37;
[0088] Two symmetrically distributed third connecting plates 38 are connected to the surface of the large sleeve 33. One side of the two third connecting plates 38 far from the large sleeve 33 is connected to one side of the third connecting plate 38;
[0089] Both the small sleeve 32 and the large sleeve 33 are provided with communication ports for the first connecting plate 34 and the second connecting plate 36 to pass through.
[0090] In this technical solution, by rotating the switching component 3, the opening and closing of different outlets on the central housing 2 can be switched, so that different upper passages 51, middle passages 52 or lower passages 53 can be switched for air outlet. At the same time, the upper passage 51, the middle passage 52 and the lower passage 53 can be used in combination or separately, making the air outlet methods of the air conditioner more diverse.
[0091] When the central column 31 rotates, it can drive the first connecting plate 34 to rotate, thereby driving the first sealing plate 35 to rotate, and can open and close the lower channel 53. When the small sleeve 32 rotates, it can drive the second connecting plate 36 to rotate, thereby driving the second sealing plate 37 to rotate, and can open and close the middle channel 52. When the large sleeve 33 rotates, it can drive the third connecting plate 38 to rotate, thereby driving the third sealing plate 39 to rotate, and can open and close the upper channel 51. Moreover, the central column 31 and the small sleeve 32 can be moved independently, so as to perform different combinations of the upper channel 51, the middle channel 52 and the lower channel 53, making the air outlet mode more diverse.
[0092] The adjusting assembly 4 includes an adjusting housing 41. One ends of the central column 31, the small sleeve 32 and the large sleeve 33 all extend to the inner side of the adjusting housing 41. A first gear ring 42 is fixedly connected to the surface of the large sleeve 33, and a second gear ring 43 is fixedly connected to the surface of the small sleeve 32. Rotating gears 44 are meshed and connected to the opposite sides of the first gear ring 42 and the second gear ring 43. One sides of the two rotating gears 44 and the central column 31 are all fixedly connected to a rotating shaft 45. The three rotating shafts 45 penetrate through a fixing plate 46, and the fixing plate 46 is fixedly connected to the inner wall of the adjusting housing 41;
[0093] One side of the rotating shaft 45 is connected to a driving structure;
[0094] One end of the adjusting housing 41 is connected to one end of the concentrating housing 2, and the other end of the adjusting housing 41 is connected to the inner wall of the air conditioner body 1.
[0095] In this technical solution, the adjusting assembly 4 can rotate the switching assembly 3, and use the switching assembly 3 to switch the air outlet channels.
[0096] The driving assembly one 6 or the driving assembly two 8 can drive the corresponding rotating shaft 45 to rotate, thereby respectively driving the rotating gear 44 or the central column 31 to rotate, and then can respectively drive the corresponding first gear ring 42 or the second gear ring 43 to rotate. At this time, the small sleeve 32 and the large sleeve 33 can be respectively rotated, that is, the central column 31, the small sleeve 32 and the large sleeve 33 can be respectively rotated to switch the air outlet channels.
[0097] The driving structure includes a driving assembly one 6. The driving assembly one 6 includes a moving motor 61. The moving motor 61 is installed on the inner wall of the adjusting housing 41. The output end of the moving motor 61 is fixedly connected to a threaded column 62. A moving plate 63 is threadedly connected to the surface of the threaded column 62. A rotating motor 64 is installed on one side of the moving plate 63. The output end of the rotating motor 64 is fixedly connected to a first electromagnet block 65.
[0098] In this technical solution, the driving assembly one 6 can provide a driving force for the adjusting assembly 4.
[0099] When it is necessary to rotate different rotating shafts 45, the moving motor 61 is used to drive the threaded column 62 to rotate, thereby driving the moving plate 63 to move along the anti-deviation strip 67, thereby driving the rotating motor 64 and the first electromagnet block 65 to rotate. The first electromagnet block 65 is moved to the corresponding rotating shaft 45, and then the first electromagnet block 65 and the second electromagnet block 66 are energized. At this time, the first electromagnet block 65 and the second electromagnet block 66 are adsorbed together. At this time, the rotating motor 64 is used to drive the first electromagnet block 65 and the second electromagnet block 66 to rotate, thereby driving the corresponding rotating shaft 45 to rotate.
[0100] A second electromagnet block 66 is fixedly connected to one end of each of the three rotating shafts 45 close to the first electromagnet block 65;
[0101] Two symmetrically distributed anti-deviation strips 67 are connected to the inner wall of the adjustment housing 41, and the anti-deviation strips 67 are connected through the moving plate 63;
[0102] One end of the threaded column 62 away from the moving motor 61 is rotatably connected to the inner wall of the adjustment housing 41.
[0103] In this technical solution, the anti-deviation strip 67 can be used to limit the movement trajectory of the moving plate 63.
[0104] The air guide channel assembly 5 includes an upper channel 51, a middle channel 52, and a lower channel 53, and the upper channel 51, the middle channel 52, and the lower channel 53 are all arranged inside the air conditioner body 1;
[0105] One end of each of the upper channel 51, the middle channel 52, and the lower channel 53 is connected to the outside of the centralized housing 2, and the other end is connected to the inside of the air conditioner body 1;
[0106] The upper channel 51 and the lower channel 53 are respectively arranged on both sides of the middle channel 52, and the upper channel 51 and the lower channel 53 are symmetrically distributed;
[0107] A plurality of sound-absorbing cotton strips 54 are arranged inside each of the upper channel 51, the middle channel 52, and the lower channel 53;
[0108] A plurality of equally spaced first air distribution and noise reduction plates 55 are connected to the inner wall of the upper channel 51 and the lower channel 53 near the outlet of the air conditioner body 1;
[0109] A plurality of equally spaced second air distribution and noise reduction plates 56 are connected to the inner wall of the middle channel 52 near the outlet of the air conditioner body 1, and one end of the second air distribution and noise reduction plate 56 is connected to one end of the sound-absorbing cotton strip 54 at this place.
[0110] In this technical solution, the air guide channel assembly 5 can guide the air outlet of the air conditioner body 1, and can perform sound absorption and noise reduction treatment on the air outlet, reducing the noise of the air conditioner outlet.
[0111] When the air outlet of the air conditioner body 1 moves in the upper air passage 51, the middle air passage 52 and the lower air passage 53, the sound-absorbing cotton strip 54 can be used to absorb the noise generated by the air flow, and the first air-distributing and noise-reducing plate 55 and the second air-distributing and noise-reducing plate 56 can be respectively used to disperse and reduce the noise of the air flow in the corresponding air passages, thereby reducing the noise of the air outlet of the air conditioner.
[0112] One end of the centralized housing 2 far from the adjusting assembly 4 is further provided with a blocking assembly 7;
[0113] The blocking assembly 7 includes a blocking housing 71. One ends of the central column 31, the small sleeve 32 and the large sleeve 33 far from the adjusting assembly 4 extend to the inner side of the blocking housing 71. A first rotating ring 72 is connected to the surface of the large sleeve 33, a second rotating ring 73 is connected to the surface of the small sleeve 32, and a rotating disk 74 is connected to one end of the central column 31;
[0114] Blocking plates 75 are arranged on both sides of the first rotating ring 72, the second rotating ring 73 and the rotating disk 74, and connecting springs 76 are connected to the opposite ends of the two blocking plates 75;
[0115] One end of the blocking housing 71 is connected to the centralized housing 2, and the other end of the blocking housing 71 is connected to the inner wall of the air conditioner body 1.
[0116] In this technical solution, the blocking assembly 7 can be used to prevent the first blocking plate 35, the second blocking plate 37 and the third blocking plate 39 from moving due to wind force when not connected to the power assembly one 6, ensuring the stability of the air outlet passage.
[0117] When the central column 31, the small sleeve 32 and the large sleeve 33 rotate, they can respectively drive the rotating disk 74, the second rotating ring 73 and the first rotating ring 72 to rotate. When the central column 31, the small sleeve 32 or the large sleeve 33 does not rotate, that is, when not in contact with the power assembly one 6, under the action of the connecting spring 76, the blocking plates 75 on both sides can be in close contact with the rotating disk 74, the second rotating ring 73 or the first rotating ring 72, preventing the central column 31, the small sleeve 32 and the large sleeve 33 from being driven by the air flow to rotate by mistake. When the central column 31, the small sleeve 32 or the large sleeve 33 is connected to the power assembly one 6, the driving force of the power assembly one 6 is greater than the friction force between the blocking plate 75 and the first rotating ring 72, the second rotating ring 73 or the rotating disk 74, that is, this friction force will not affect the rotation of the central column 31, the small sleeve 32 or the large sleeve 33.
[0118] The adjustment method includes the following operation steps:
[0119] S1. According to the air outlet requirement, the switching component 3 is rotated by using the power component 6 or the power component 8, so as to control the opening and closing of different air outlets on the centralized housing 2. Different air outlets can control the opening and closing of the upper channel 51, the middle channel 52 and the lower channel 53, so as to realize the upper air outlet, the horizontal air outlet and the lower air outlet of the air conditioner. Moreover, the upper channel 51, the middle channel 52 and the lower channel 53 can be used alone, or two or more of them can be used in combination, making the air outlet mode more diverse;
[0120] S2. When in use, the blocking component 7 can increase the resistance of the central column 31, the small sleeve 32 and the large sleeve 33 to rotate, and avoid the accidental rotation of the central column 31, the small sleeve 32 and the large sleeve 33 due to the wind force of the air conditioner when there is no power;
[0121] S3. When passing through the upper channel 51, the middle channel 52 or the lower channel 53, the sound absorption cotton strip 54 can adsorb the noise of the air flow, and the first air distribution and noise reduction plate 55 and the second air distribution and noise reduction plate 56 can make the air flow uniform and reduce the noise, so as to reduce the noise when the air conditioner blows out air.
[0122] As another embodiment of the present application, as Figure 11 shown, the difference from the first embodiment is that the driving structure further includes a power component 8. The power component 8 includes a first motor 81, a second motor 82 and a third motor 83. The output ends of the first motor 81, the second motor 82 and the third motor 83 are respectively fixedly connected to three rotating shafts 45, and the first motor 81, the second motor 82 and the third motor 83 are all installed inside the adjusting housing 41.
[0123] In this technical solution, the power component 8 can provide driving force for the adjusting component 4.
[0124] When in use, the first motor 81, the second motor 82 or the third motor 83 can drive the corresponding rotating shaft 45 to rotate respectively, so as to drive the central column 31, the small sleeve 32 or the large sleeve 33 to rotate respectively. This solution requires more driving sources, but the rotating shaft 45 can be driven without passing through other transmission components.
[0125] Although the specific embodiments of the present invention have been described above, those skilled in the art should understand that this is only an example. The protection scope of the present invention is defined by the appended claims. Without departing from the principle and essence of the present invention, those skilled in the art can make various changes or modifications to these embodiments, but these changes and modifications all fall within the protection scope of the present invention.
Claims
1. An air conditioner with diverse air outlet modes, comprising an air conditioner body (1). The air outlet of the air conditioner body (1) includes three outlets, which are respectively arranged on the right side, the upper side and the lower side of the air conditioner body (1). It is characterized in that, The air conditioner with diverse air outlet modes further includes: a centralized housing (2), which is arranged inside the air conditioner main body (1) and at a position between the air outlet of the air conditioner main body (1) and the air outlet opening, and is used for collecting the air discharged from the air conditioner main body (1). The centralized housing (2) is provided with an inlet and three outlet openings, and the inlet and the three outlet openings are distributed in an annular array; a switching component (3), which is arranged inside the centralized housing (2). The switching component (3) can be adjusted and is used for controlling the opening and closing of the outlet openings of the centralized housing (2); an adjusting component (4), which is connected to the switching component (3) and is used for adjusting the switching component (3); an air guiding channel component (5), which is arranged outside the centralized housing (2). The air guiding channel component (5) is used for guiding the air discharged from the air conditioner main body (1) to achieve diverse air outlet; 2. The air conditioner with diverse air outlet modes according to claim 1, characterized in that: A centralized pipe (9) is connected to the inlet of the centralized housing (2); The openings at both ends of the centralized pipe (9) are of different sizes. The end with the larger opening faces the air outlet of the air conditioner main body (1), and the end with the smaller opening is connected to the centralized housing (2).
3. The air conditioner with diverse air outlet modes according to claim 1, wherein: The switching component (3) includes a central column (31), a small sleeve (32), and a large sleeve (33). The small sleeve (32) is sleeved outside the central column (31), and the large sleeve (33) is sleeved outside the small sleeve (32). The central column (31), the small sleeve (32), and the large sleeve (33) can all rotate independently; Two symmetrically distributed first connecting plates (34) are connected to the surface of the central column (31). One end of each of the two first connecting plates (34) far from the central column (31) is connected to one side of a first sealing plate (35); Two symmetrically distributed second connecting plates (36) are connected to the surface of the small sleeve (32). One end of each of the two second connecting plates (36) far from the small sleeve (32) is connected to one side of a second sealing plate (37); Two symmetrically distributed third connecting plates (38) are connected to the surface of the large sleeve (33). One side of each of the two third connecting plates (38) far from the large sleeve (33) is connected to one side of the third connecting plate (38); Both the small sleeve (32) and the large sleeve (33) are provided with communication openings for the first connecting plate (34) and the second connecting plate (36) to pass through.
4. The air conditioner with diverse air outlet modes according to claim 3, wherein: The adjusting component (4) includes an adjusting housing (41). One end of the central column (31), the small sleeve (32), and the large sleeve (33) all extends to the inner side of the adjusting housing (41). A first gear ring (42) is fixedly connected to the surface of the large sleeve (33). A second gear ring (43) is fixedly connected to the surface of the small sleeve (32). Rotating gears (44) are meshed and connected to the opposite sides of the first gear ring (42) and the second gear ring (43). One side of the two rotating gears (44) and the central column (31) is fixedly connected to a rotating shaft (45). The three rotating shafts (45) are connected through the fixing plate (46), and the fixing plate (46) is fixedly connected to the inner wall of the adjusting housing (41). One side of the rotating shaft (45) is connected to a driving structure; One end of the adjusting housing (41) is connected to one end of the centralized housing (2), and the other end of the adjusting housing (41) is connected to the inner wall of the air conditioner body (1).
5. The air conditioner with diverse air outlet modes according to claim 4, characterized in that: The driving structure includes a first power component (6). The first power component (6) includes a moving motor (61). The moving motor (61) is installed on the inner wall of the adjusting housing (41). The output end of the moving motor (61) is fixedly connected to a threaded column (62). A moving plate (63) is threadedly connected to the surface of the threaded column (62). A rotating motor (64) is installed on one side of the moving plate (63). The output end of the rotating motor (64) is fixedly connected to a first electromagnet block (65).
6. The air conditioner with diverse air outlet modes as claimed in claim 5, wherein: One end of the three rotating shafts (45) close to the first electromagnet block (65) is fixedly connected to a second electromagnet block (66); Two symmetrically distributed anti-deviation strips (67) are connected to the inner wall of the adjusting housing (41), and the anti-deviation strips (67) are connected through the moving plate (63); One end of the threaded column (62) away from the moving motor (61) is rotatably connected to the inner wall of the adjusting housing (41).
7. The air conditioner with diverse air outlet modes according to claim 3, characterized in that: The air guiding channel component (5) includes an upper channel (51), an intermediate channel (52), and a lower channel (53). The upper channel (51), the intermediate channel (52), and the lower channel (53) are all arranged inside the air conditioner body (1); One end of the upper channel (51), the intermediate channel (52), and the lower channel (53) is connected to the outside of the centralized housing (2), and the other end is connected to the inside of the air conditioner body (1); The upper channel (51) and the lower channel (53) are respectively arranged on both sides of the intermediate channel (52), and the upper channel (51) and the lower channel (53) are symmetrically distributed; A plurality of sound-absorbing cotton strips (54) are arranged inside the upper channel (51), the intermediate channel (52), and the lower channel (53); A plurality of equally spaced first air distribution and noise reduction plates (55) are connected to the inner wall of the upper channel (51) and the lower channel (53) near the outlet of the air conditioner body (1); A plurality of equally spaced second air distribution and noise reduction plates (56) are connected to the inner wall of the intermediate channel (52) near the outlet of the air conditioner body (1), and one end of the second air distribution and noise reduction plate (56) is connected to one end of the sound-absorbing cotton strip (54) at this place.
8. The air conditioner with diverse air outlet modes according to claim 3, wherein: One end of the centralized housing (2) far from the adjustment component (4) is also provided with a blocking component (7); The blocking component (7) includes a blocking housing (71). One ends of the central column (31), the small sleeve (32) and the large sleeve (33) far from the adjustment component (4) extend to the inner side of the blocking housing (71). A first rotating ring (72) is connected to the surface of the large sleeve (33). A second rotating ring (73) is connected to the surface of the small sleeve (32). One end of the central column (31) is connected to a rotating disc (74); Blocking plates (75) are arranged on both sides of the first rotating ring (72), the second rotating ring (73) and the rotating disc (74). Connecting springs (76) are connected to one ends of the two blocking plates (75) facing away from each other; One end of the blocking housing (71) is connected to the centralized housing (2), and the other end of the blocking housing (71) is connected to the inner wall of the air conditioner body (1).
9. The air conditioner with diverse air outlet modes as claimed in claim 4, characterized in that: The driving structure further includes a power component two (8). The power component two (8) includes a first motor (81), a second motor (82) and a third motor (83). Output ends of the first motor (81), the second motor (82) and the third motor (83) are respectively fixedly connected to three rotating shafts (45). The first motor (81), the second motor (82) and the third motor (83) are all installed inside the adjustment housing (41).
10. The adjustment method of the air conditioner with diverse air outlet modes according to any one of claims 1-9, characterized in that: The adjustment method includes the following operation steps: S1. According to the air outlet requirement, use the power component one (6) or the power component two (8) to rotate the switching component (3), so as to control the opening and closing of different air outlets on the centralized housing (2). Different air outlets can control the opening and closing of the upper channel (51), the middle channel (52) and the lower channel (53), so as to realize the upper air outlet, the horizontal air outlet and the lower air outlet of the air conditioner. Moreover, the upper channel (51), the middle channel (52) and the lower channel (53) can be used alone, or two or more of them can be used in combination, making the air outlet mode more diverse; S2. During use, the blocking component (7) can increase the resistance of the central column (31), the small sleeve (32) and the large sleeve (33) to rotate, and avoid the accidental rotation of the central column (31), the small sleeve (32) and the large sleeve (33) due to the wind force of the air conditioner when there is no power; S3. When passing through the upper channel (51), the middle channel (52) or the lower channel (53), the sound absorption cotton strip (54) can adsorb the noise of the air flow, and the first air flow equalizing and noise reduction plate (55) and the second air flow equalizing and noise reduction plate (56) can equalize the air flow and reduce the noise, so as to reduce the noise when the air conditioner blows out air.
Citation Information
Patent Citations
air conditioner
CN106123276B