Energy-saving air conditioner with comfortable indoor airflow and using method
By switching components and humidification components to adjust the air outlet direction and method of air conditioner, the comfort and energy consumption problems caused by the single air outlet of the air conditioner are solved, and diversified air outlet modes and energy-saving effects are achieved.
Patent Information
- Application Number
- CN202410084446.0
- 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 existing air conditioner has a single air outlet direction and low comfort in air outlet flow, resulting in uneven indoor temperature and more energy consumption.
The switching components are used to switch the upper air outlet duct, the middle air outlet duct and the lower air outlet duct, combined with the temperature sensor and humidification component, the air outlet direction and method are adjusted according to user needs or temperature detection results, and diversified air outlet modes and humidification functions are realized.
It improves the comfort and energy-saving effect of air conditioning, improves temperature unevenness through mixed flow of hot and cold air, and reduces the operating time and energy consumption of air conditioning.
Smart Images

Figure CN120385118A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to an energy-saving air conditioner with comfortable indoor air flow and a usage method thereof. Background Art
[0002] An air conditioner, that is, 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. An air conditioner generally includes a cold source / heat source device, a cold and heat medium distribution system, a terminal device, and several other auxiliary devices. It mainly includes: a refrigeration host, a water pump, a fan, and a pipeline system. The terminal device is responsible for utilizing the cold and heat transferred through the distribution system to specifically process the air state so that the air parameters of the target environment meet certain requirements. Air conditioners are an indispensable part of modern life. They provide people with coolness and warmth. However, constantly turning on the air conditioner is also likely to cause diseases such as "air conditioner disease", so it needs to be used with caution.
[0003] In order to make the indoor air flow comfortable, existing air conditioners are provided with a structure to prevent direct blowing. However, this structure generally directs the air outlet upward or downward, and the air outlet mode of the air conditioner is still relatively single. The hot or cold air in the room is not evenly mixed, resulting in a longer time required to balance the indoor temperature, causing the air conditioner to consume more energy. In the authorized Chinese utility model patent "Publication No.: CN206831785U, Name: Comfortable Central Air Conditioner Air Outlet Mechanism", it uses a first annular sleeve, a second annular sleeve, and a third annular sleeve to avoid direct blowing of the air outlet to improve the comfort of the air conditioner. However, although it avoids direct blowing of the air outlet, the air outlet direction is single, and it is difficult to adjust the air outlet direction according to different modes such as refrigeration and heating of the air conditioner, resulting in discomfort for users when using the air conditioner. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to overcome the defects that the air outlet direction of the air conditioner in the prior art is single and the comfort of the air outlet air flow is low, and to provide an energy-saving air conditioner with comfortable indoor air flow and a usage method thereof.
[0005] The present invention solves the above technical problem through the following technical solutions:
[0006] The present invention provides an energy-saving air conditioner with comfortable indoor air flow and a usage method thereof.
[0007] In this technical solution, a switching component is used to switch different upper air outlet ducts, middle air outlet ducts, and lower air outlet ducts for air outlet. These three ducts can be used alone or in combination, making the air outlet direction and air outlet mode more diverse. An air outlet mode such as a non-blowing feeling can be selected according to the user's usage experience, making the air flow of the air conditioner outlet in the room more comfortable. Moreover, different air outlet modes can be selected according to the different air outlet temperatures of the air conditioner, enabling the hot and cold air in the room to be mixed, thereby improving the uneven temperature and making the air conditioner more energy-saving.
[0008] Preferably, the ventilation component further includes a wind guiding channel and a temperature sensor. The wind guiding channel is installed on one side of the central housing, and the end of the wind guiding channel away from the central housing is close to the air outlet of the air conditioner body.
[0009] A temperature sensor is installed inside the wind guiding channel.
[0010] An inlet is provided at the connection between the central housing and the wind guiding channel.
[0011] Three outlets with different positions are provided on the side of the central housing, and the three outlets are respectively connected to the upper air outlet duct, the middle air outlet duct, and the lower air outlet duct.
[0012] The ends of the upper air outlet duct, the middle air outlet duct, and the lower air outlet duct away from the central housing are respectively connected to the inner wall of the air conditioner body.
[0013] In this technical solution, the ventilation component is used to provide three air ducts with different directions. At this time, according to the user's usage requirements or the detection results of the temperature sensor, the three air ducts are opened and closed differently, so as to control the air outlet mode of the air conditioner body.
[0014] Preferably, the switching component includes a first closing plate and a second closing plate. The first closing plate and the second closing plate are both arranged inside the central housing. A plurality of connecting plates are fixedly connected to one side of the first closing plate and the second closing plate, and the plurality of connecting plates are respectively installed on the side of the switching shaft.
[0015] One end of the switching shaft is rotatably connected to the inner wall of the central housing, and the other end of the switching shaft is fixedly connected to the output end of the switching motor. The switching motor is installed on the inner wall of the central housing.
[0016] The cross sections of the first closing plate and the second closing plate are both arc-shaped structures.
[0017] The areas of the first closing plate and the second closing plate are smaller than the area of the inlet.
[0018] In this technical solution, the switching component can be used to control the ventilation component, so as to switch different upper air outlet ducts, middle air outlet ducts, and lower air outlet ducts for air outlet.
[0019] Preferably, the humidifying component includes a spraying component, a water adding component, and a rotating component. Spraying components are arranged in the upper air outlet duct, the middle air outlet duct, and the lower air outlet duct. One end of the spraying component is connected to the water adding component, and the other end of the water adding component is connected to the rotating component. The water adding component and the rotating component are both installed outside the air conditioner body.
[0020] In this technical solution, the humidification component can be used to humidify the indoor air, and at the same time, the moisture can be projected into the room along with the air flow from the air conditioner body, making the humidification range wider.
[0021] Preferably, the spray component includes a spray pipe and spray holes, and a plurality of spray holes are formed on the side of the spray pipe.
[0022] In this technical solution, the spray component can be used to add moisture into the corresponding upper air outlet duct, middle air outlet duct or lower air outlet duct.
[0023] Preferably, the water adding component includes a water storage tank body and a spray pump. The water storage tank body and the spray pump are both installed outside the air conditioner body. The inlet end of the spray pump is installed with a water adding pipe, and the water adding pipe is connected to the water storage tank body through penetration. And the end of the water adding pipe away from the spray pump is located in the lower part of the inner cavity of the water storage tank;
[0024] The outlet end of the spray pump is connected to the central pipe, and the water adding pipe is installed outside the air conditioner body;
[0025] Three micro control valves are installed on one side of the water adding pipe, and the end of the micro control valve away from the water adding pipe is rotatably connected to one end of the spray pipe.
[0026] In this technical solution, the water adding component can atomize the water body and introduce the atomized moisture into the spray component for waiting to be projected.
[0027] Preferably, the rotating component includes an installation shell, the installation shell is installed on the side of the air conditioner body away from the water adding component, a rotating motor is installed inside the installation shell, the output end of the rotating motor is fixedly connected with a main sprocket, and auxiliary sprockets are arranged on both the upper and lower sides of the main sprocket. The two auxiliary sprockets are connected to the main sprocket through a transmission chain;
[0028] The sides of the main sprocket and the auxiliary sprockets are both meshed with the transmission chain;
[0029] Spray pipes are fixedly connected to one side of the two auxiliary sprockets and the main sprocket.
[0030] In this technical solution, the rotating component can drive the spray component to rotate, so that the moisture is fully filled in the upper air outlet duct, middle air outlet duct or lower air outlet duct during projection, and the air outlet of the air conditioner body can carry moisture.
[0031] Preferably, the side closing component includes a side closing airbag. One side of the side closing airbag is connected to the air conditioner body, the other side of the side closing airbag is connected to a mounting plate, a plurality of connecting columns are connected to the side of the mounting plate away from the side closing airbag, and the plurality of connecting columns are all connected to a limiting plate. A plurality of first springs are connected to the side of the limiting plate away from the connecting columns, and the plurality of first springs are connected to the inner wall of the air conditioner body;
[0032] Multiple said connecting columns are respectively connected through the air conditioner body;
[0033] One end of the side closing airbag is connected with a side connecting pipe, one end of the side connecting pipe is connected with a first air source, and the first air source is installed outside the air conditioner body.
[0034] In this technical solution, the side closing component can be used to control the opening and closing of the air outlets on the upper and lower sides of the air conditioner body, and prevent dust from entering the air conditioner body when the machine is stopped.
[0035] Preferably, the middle closing component includes a middle closing airbag, both sides of the middle closing airbag are connected with fixing plates, and a plurality of fixing columns are respectively connected to the sides of the two fixing plates far away from the middle closing airbag. The plurality of fixing columns located on both sides are respectively connected with a positioning plate, and a second spring is fixedly connected to the side of the positioning plate far away from the fixing column. The plurality of second springs are connected with the inner wall of the air conditioner body;
[0036] One side of the middle closing airbag is connected with a middle connecting pipe, the middle connecting pipe is connected with a second air source, and the second air source is installed outside the air conditioner body.
[0037] In this technical solution, the middle closing component can be used to control the opening and closing of the air outlet on the front side of the air conditioner body, and prevent dust from entering the air conditioner body when the machine is stopped.
[0038] Preferably, the usage method includes the following operation steps:
[0039] S1. According to the user's usage requirements, drive the switching shaft to rotate by using the switching motor, thereby driving the connecting plate to rotate, and then driving the first closing plate and the second closing plate to rotate. Use the first closing plate to respectively open or close the three air outlet channels opened on the central housing, so as to select different upper air outlet channels, middle air outlet channels and lower air outlet channels for air outlet, that is, the air conditioner can be selected to blow air upward, downward or straight forward. When the air conditioner blows air upward, windless feeling blowing can be realized, making the human body more comfortable. When the air conditioner is heating, select at least two air outlet modes to be used in combination, so that the hot air can be mixed in the room, avoiding the single air outlet mode of the air conditioner resulting in the stagnation of the warm air near the ceiling, improving the uneven temperature, and making the air conditioner more energy-saving;
[0040] S2. According to the user's usage requirements, control the movement or stop of the first closing plate and the second closing plate. When the first closing plate and the second closing plate stop, the air outlet mode of the air conditioner can be fixed. When the first closing plate and the second closing plate move, the air outlet mode can be cyclically changed, avoiding the single flow direction of the indoor air flow and making the indoor air flow more comfortable;
[0041] S3. In the mode where the user does not exert control, the air outlet direction can be automatically selected according to the temperature detected by the temperature sensor, which is the air outlet temperature of the air conditioner. When it is warm air, at least two air outlet modes are selected and used in combination. When it is cold air, upward air outlet is selected. At this time, the cold air descends, which can more quickly reduce the indoor temperature and make the air conditioner more energy-efficient.
[0042] S4. When the air is relatively dry, the user can use the humidifying component to humidify the air outlet of the air conditioner, increase the humidity of the indoor air, make the human body more comfortable, and at the same time, the humid air can be projected farther by the air outlet of the air conditioner.
[0043] On the basis of conforming to the common knowledge in the art, the above preferred conditions can be combined arbitrarily to obtain various preferred embodiments of the present invention. Description of the Drawings
[0044] Figure 1 It is a schematic structural diagram of an energy-saving air conditioner with comfortable indoor air flow and its usage method according to an embodiment of the present invention.
[0045] Figure 2 is Figure 1 The internal front view structural diagram of the energy-saving air conditioner with comfortable indoor air flow and its usage method shown in the figure.
[0046] Figure 3 is Figure 1 The internal top view structural diagram of the energy-saving air conditioner with comfortable indoor air flow and its usage method shown in the figure.
[0047] Figure 4 is Figure 1 The structural diagram of the switching component of the energy-saving air conditioner with comfortable indoor air flow and its usage method shown in the figure.
[0048] Figure 5 is Figure 1 The exploded structural diagram of the rotating component of the energy-saving air conditioner with comfortable indoor air flow and its usage method shown in the figure.
[0049] Figure 6 is Figure 1 The structural diagram of the water adding component of the energy-saving air conditioner with comfortable indoor air flow and its usage method shown in the figure.
[0050] Figure 7 is Figure 2 The partial enlarged structural diagram at A of the energy-saving air conditioner with comfortable indoor air flow and its usage method shown in the figure.
[0051] Figure 8 is Figure 2 The partial enlarged structural diagram at B of the energy-saving air conditioner with comfortable indoor air flow and its usage method shown in the figure.
[0052] Figure 9 isFigure 1 Exploded structural schematic diagram of the side enclosure assembly of the energy-saving air conditioner with comfortable indoor air flow and its usage method as shown
[0053] Figure 10 For Figure 1 Structural schematic diagram of the middle enclosure assembly of the energy-saving air conditioner with comfortable indoor air flow and its usage method as shown
[0054] Explanation of reference numerals
[0055] 1. Air conditioner body
[0056] 2. Ventilation assembly; 21. Central housing; 22. Upper air outlet duct; 23. Middle air outlet duct; 24. Lower air outlet duct; 25. Air guiding channel; 26. Temperature sensor
[0057] 3. Switching assembly; 31. First closing plate; 32. Second closing plate; 33. Connecting plate; 34. Switching shaft; 35. Switching motor
[0058] 4. Humidification assembly; 41. Spraying assembly; 411. Spraying pipe; 412. Spraying holes; 42. Water adding assembly; 421. Water storage tank body; 422. Spraying pump; 423. Water adding pipe; 424. Central pipe; 425. Micro control valve; 43. Rotating assembly; 431. Installation housing; 432. Rotating motor; 433. Main sprocket; 434. Sub sprocket; 435. Transmission chain
[0059] 5. Side enclosure assembly; 51. Side enclosure airbag; 52. Mounting plate; 53. Connecting column; 54. Limiting plate; 55. First spring; 56. Side connecting pipe; 57. First air source
[0060] 6. Middle enclosure assembly; 61. Middle enclosure airbag; 62. Fixed plate; 63. Fixed column; 64. Positioning plate; 65. Second spring; 66. Middle connecting pipe; 67. Second air source Detailed implementation manners
[0061] The present invention will be further described below by way of embodiments, but the present invention is not limited to the scope of the embodiments
[0062] Figures 1 to 4 Shown is the structural schematic diagram of Embodiment 1 of the energy-saving air conditioner with comfortable indoor air flow and its usage method of the present invention. The energy-saving air conditioner with comfortable indoor air flow and its usage method includes an air conditioner body 1
[0063] The ventilation component 2 is disposed inside the air conditioner body 1. The ventilation component 2 includes a central housing 21, an upper air outlet duct 22, a middle air outlet duct 23, and a lower air outlet duct 24. The outside of the central housing 21 is respectively connected to the upper air outlet duct 22, the middle air outlet duct 23, and the lower air outlet duct 24. The ventilation component 2 enables the air conditioner to switch different air outlet modes according to different requirements;
[0064] The switching component 3 is disposed inside the central housing 21. The switching component 3 is used to switch different air outlet modes;
[0065] The humidifying component 4 is respectively connected to the upper air outlet duct 22, the middle air outlet duct 23, and the lower air outlet duct 24. The humidifying component 4 increases the humidity in the room along with the air outlet direction of the air conditioner;
[0066] Two side closing components 5 are respectively installed on the upper and lower sides of the air conditioner body 1. The side closing component 5 is used to open and close two air outlets on the upper and lower parts of the air conditioner body 1;
[0067] The middle closing component 6 is installed on the right side of the air conditioner body 1. The middle closing component 6 is used to open and close the air outlet on the right side of the air conditioner body 1.
[0068] In this technical solution, the switching component 3 can be used to switch different upper air outlet duct 22, middle air outlet duct 23, and lower air outlet duct 24 for air outlet. These three ducts can be used alone or in combination, making the air outlet direction and air outlet mode more diverse. The air outlet mode such as no wind feeling can be selected according to the user's usage experience, making the air flow of the air conditioner in the room more comfortable. And different air outlet modes can be selected according to the different air outlet temperatures of the air conditioner, enabling the hot air and cold air in the room to be mixed, thereby improving the uneven temperature and making the air conditioner more energy-efficient.
[0069] The ventilation component 2 further includes a wind guiding channel 25 and a temperature sensor 26. The wind guiding channel 25 is installed on one side of the central housing 21. The end of the wind guiding channel 25 far from the central housing 21 is close to the air outlet of the air conditioner body 1;
[0070] The temperature sensor 26 is installed inside the wind guiding channel 25;
[0071] An inlet is provided at the connection between the central housing 21 and the wind guiding channel 25;
[0072] Three guiding outlets with different positions are provided on the side of the central housing 21. The three guiding outlets are respectively connected to the upper air outlet duct 22, the middle air outlet duct 23, and the lower air outlet duct 24;
[0073] The ends of the upper air outlet duct 22, the middle air outlet duct 23, and the lower air outlet duct 24 far from the central housing 21 are respectively connected to the inner wall of the air conditioner body 1.
[0074] In this technical solution, the ventilation component 2 is used to provide three air ducts with different directions. At this time, according to the user's usage requirements or the detection results of the temperature sensor 26, the three air ducts are opened and closed differently, so as to control the air outlet mode of the air conditioner body 1.
[0075] During use, the air outlet of the air conditioner body 1 is guided into the central housing 21 through the air guiding channel 25, and then, according to the air outlet mode of the air conditioner body 1, the air flow in the central housing 21 is discharged from the air conditioner body 1 through one or more of the upper air outlet duct 22, the middle air outlet duct 23 and the lower air outlet duct 24, so as to complete the air outlet of the air conditioner.
[0076] It should be noted that when the user does not select the air outlet mode, the temperature sensor 26 is used to detect the temperature of the air outlet of the air conditioner body 1, and the air outlet direction is automatically selected according to the detection results of the temperature sensor 26. For example, when the temperature detected by the temperature sensor 26 is relatively high, at least two air outlet modes are selected and used in combination, so that the hot air can be mixed in the room, avoiding the single air outlet mode of the air conditioner resulting in the heat staying near the ceiling, improving the temperature unevenness, and making the air conditioner more energy-efficient. When the temperature detected by the temperature sensor 26 is relatively low, the upper air outlet duct 22 is selected for air outlet, that is, the air outlet direction of the air conditioner body 1 is upward. Since the cold air is heavier, the cold air will drop at this time, which can more quickly reduce the indoor air temperature and make the air conditioner more energy-efficient.
[0077] The switching component 3 includes a first closing plate 31 and a second closing plate 32. Both the first closing plate 31 and the second closing plate 32 are arranged inside the central housing 21. A plurality of connecting plates 33 are fixedly connected to one side of the first closing plate 31 and the second closing plate 32, and the plurality of connecting plates 33 are respectively installed on the side surface of the switching shaft 34;
[0078] One end of the switching shaft 34 is rotatably connected to the inner wall of the central housing 21, and the other end of the switching shaft 34 is fixedly connected to the output end of the switching motor 35. The switching motor 35 is installed on the inner wall of the central housing 21;
[0079] The cross sections of the first closing plate 31 and the second closing plate 32 are both arc-shaped structures;
[0080] The areas of the first closing plate 31 and the second closing plate 32 are smaller than the area of the inlet.
[0081] In this technical solution, the switching component 3 can be used to control the ventilation component 2, so as to switch different upper air outlet ducts 22, middle air outlet ducts 23 and lower air outlet ducts 24 for air outlet.
[0082] When the user uses the air conditioner body 1, the air outlet direction can be selected according to the usage requirements. At this time, the switching motor 35 drives the switching shaft 34 to rotate, thereby driving the connecting plate 33 to rotate, and further driving the second closing plate 32 and the first closing plate 31 to rotate. At this time, the second closing plate 32 and the first closing plate 31 can open or close the three air outlet ports of the central housing 21, thereby controlling the closing and opening of the upper air outlet duct 22, the middle air outlet duct 23, and the lower air outlet duct 24, so as to switch the air outlet mode of the air conditioner body 1.
[0083] It should be noted that the switching motor 35 controls the movement or stop of the first closing plate 31 and the second closing plate 32. When the first closing plate 31 and the second closing plate 32 stop, the air outlet mode of the air conditioner can be fixed. When the first closing plate 31 and the second closing plate 32 move, the air outlet mode can be changed cyclically, avoiding a single flow direction of the indoor air flow and making the indoor air flow more comfortable.
[0084] As the second embodiment of the present application, as Figure 2 、 Figure 5 、 Figure 6 and Figure 7 shown, the difference from the first embodiment is that the humidifying component 4 includes a spraying component 41, a water adding component 42, and a rotating component 43. Spraying components 41 are arranged in the upper air outlet duct 22, the middle air outlet duct 23, and the lower air outlet duct 24. One end of the spraying component 41 is connected to the water adding component 42, and the other end of the water adding component 42 is connected to the rotating component 43. The water adding component 42 and the rotating component 43 are both installed outside the air conditioner body 1.
[0085] In this technical solution, the humidifying component 4 can be used to humidify the indoor air, and at the same time, the moisture can be ejected into the room along with the air flow of the air conditioner body 1, making the humidifying range wider.
[0086] The spraying component 41 includes a spraying pipe 411 and spraying holes 412. A plurality of spraying holes 412 are formed on the side surface of the spraying pipe 411.
[0087] In this technical solution, the spraying component 41 can be used to add moisture into the corresponding upper air outlet duct 22, middle air outlet duct 23, or lower air outlet duct 24.
[0088] The moisture fed into the spraying pipe 411 is respectively added into the upper air outlet duct 22, the middle air outlet duct 23, or the lower air outlet duct 24 through a plurality of spraying holes 412.
[0089] The water adding assembly 42 includes a water storage tank body 421 and a spray pump 422. Both the water storage tank body 421 and the spray pump 422 are installed outside the air conditioner body 1. A water adding pipe 423 is installed at the inlet end of the spray pump 422. The water adding pipe 423 is connected to the water storage tank body 421 in a penetrating manner, and the end of the water adding pipe 423 away from the spray pump 422 is located at the lower part of the inner cavity of the water storage tank body 421.
[0090] The outlet end of the spray pump 422 is connected to the central pipe 424, and the water adding pipe 423 is installed outside the air conditioner body 1.
[0091] Three micro control valves 425 are installed on one side of the water adding pipe 423. The end of the micro control valve 425 away from the water adding pipe 423 is rotatably connected to one end of the spray pipe 411.
[0092] In this technical solution, the water adding assembly 42 can atomize the water body and introduce the atomized moisture into the spray assembly 41 for waiting to be ejected.
[0093] During humidification, the spray pump 422 is used to atomize the water body in the water storage tank body 421 and introduce it into the central pipe 424. At this time, multiple micro control valves 425 can respectively control the opening and closing of different spray pipes 411. That is, when the upper air outlet duct 22, the middle air outlet duct 23 or the lower air outlet duct 24 is opened, the moisture can be sent into the corresponding spray pipe 411. At this time, the air flow discharged from the air conditioner body 1 passes through the upper air outlet duct 22, the middle air outlet duct 23 or the lower air outlet duct 24 and can carry out the moisture inside it. That is, the moisture can be ejected to a farther position along with the air discharged from the air conditioner body 1, thereby expanding the humidification range.
[0094] The rotating assembly 43 includes an installation housing 431. The installation housing 431 is installed on the side of the air conditioner body 1 away from the water adding assembly 42. A rotating motor 432 is installed inside the installation housing 431. The output end of the rotating motor 432 is fixedly connected to the main sprocket 433. Both the upper and lower sides of the main sprocket 433 are provided with secondary sprockets 434. The two secondary sprockets 434 are drivingly connected to the main sprocket 433 through a drive chain 435.
[0095] Both the sides of the main sprocket 433 and the secondary sprockets 434 are meshed and connected with the drive chain 435.
[0096] Both of the two secondary sprockets 434 and one side of the main sprocket 433 are fixedly connected with a spray pipe 411.
[0097] In this technical solution, the rotating assembly 43 can drive the spray assembly 41 to rotate, so that the moisture is fully filled in the upper air outlet duct 22, the middle air outlet duct 23 or the lower air outlet duct 24 during ejection, so that the air discharged from the air conditioner body 1 can carry moisture.
[0098] When humidifying, the rotation motor 432 is used to drive the main sprocket 433 to rotate, thereby driving the transmission chain 435 to rotate, and further driving the two sub-sprockets 434 to rotate. When the two sub-sprockets 434 and the main sprocket 433 rotate, they can drive the spray pipe 411 to rotate, so that the moisture can fully fill the upper air outlet duct 22, the middle air outlet duct 23 or the lower air outlet duct 24, and the air blown out by the air conditioner body 1 can carry moisture.
[0099] As the third embodiment of the present application, as Figure 2 , Figure 8 , Figure 9 and Figure 10 shown, the difference between it and the first and second embodiments is that the side closing assembly 5 includes a side closing airbag 51. One side of the side closing airbag 51 is connected to the air conditioner body 1, and the other side of the side closing airbag 51 is connected to the mounting plate 52. A plurality of connecting columns 53 are connected to the side of the mounting plate 52 away from the side closing airbag 51. The plurality of connecting columns 53 are all connected to the limiting plate 54. A plurality of first springs 55 are connected to the side of the limiting plate 54 away from the connecting columns 53. The plurality of first springs 55 are connected to the inner wall of the air conditioner body 1;
[0100] The plurality of connecting columns 53 are respectively connected to the air conditioner body 1 through penetration;
[0101] One end of the side closing airbag 51 is connected to a side connecting pipe 56. One end of the side connecting pipe 56 is connected to the first air source 57. The first air source 57 is installed outside the air conditioner body 1.
[0102] In this technical solution, the side closing assembly 5 can be used to control the opening and closing of the air outlets on the upper and lower sides of the air conditioner body 1, and prevent dust from entering the air conditioner body 1 when the machine is stopped.
[0103] When the air outlet on the upper or lower side needs to blow air, the first air source 57 and the side connecting pipe 56 are used to deflate the corresponding side closing airbag 51. At this time, under the action of the first spring 55, the limiting plate 54, the connecting column 53 and the mounting plate 52 can squeeze the side closing airbag 51 to make the side closing airbag 51 shrink. At this time, the air outlet can be exposed to blow air;
[0104] When the air outlet on the upper or lower side does not need to blow air, the first air source 57 and the side connecting pipe 56 are used to inflate the corresponding side closing airbag 51. At this time, the side closing airbag 51 expands and fills the air outlet, so as to block the air outlet by using the side closing airbag 51 and complete the blocking of the air outlet.
[0105] And when the side closing airbag 51 blocks the air outlet, it clings to the side wall of the air outlet, making the sealing of the air outlet better and preventing dust from entering.
[0106] The middle closing component 6 includes a middle closing airbag 61. Both sides of the middle closing airbag 61 are connected with fixing plates 62. A plurality of fixing columns 63 are connected to the sides of the two fixing plates 62 away from the middle closing airbag 61. The plurality of fixing columns 63 located on both sides are respectively connected with a positioning plate 64. A second spring 65 is fixedly connected to the side of the positioning plate 64 away from the fixing columns 63. The plurality of second springs 65 are connected with the inner wall of the air conditioner body 1;
[0107] One side of the middle closing airbag 61 is connected with a middle connecting pipe 66. The middle connecting pipe 66 is connected with a second air source 67. The second air source 67 is installed outside the air conditioner body 1.
[0108] In this technical solution, the middle closing component 6 can be used to control the opening and closing of the front air outlet of the air conditioner body 1, and prevent dust from entering the air conditioner body 1 when the machine is stopped.
[0109] When the front air outlet needs to blow air, the second air source 67 and the middle connecting pipe 66 are used to deflate the middle closing airbag 61. At this time, under the action of the second springs 65 on both sides, the fixing plates 62, the fixing columns 63 and the positioning plate 64 on both sides move towards each other, so as to compress the middle closing airbag 61. At this time, the front air outlet can be exposed, and the front air outlet can be used to blow air;
[0110] When the front air outlet does not need to blow air, the second air source 67 and the middle connecting pipe 66 are used to inflate the middle closing airbag 61. At this time, the middle closing airbag 61 expands and fills the front air outlet, and the front air outlet can be blocked at this time.
[0111] The usage method includes the following operation steps:
[0112] S1. According to the user's usage requirements, the switching motor 35 is used to drive the switching shaft 34 to rotate, thereby driving the connecting plate 33 to rotate, and further driving the first closing plate 31 and the second closing plate 32 to rotate. The first closing plate 31 is used to open or close the three air outlets opened on the central housing 21 respectively, so as to select different upper air outlet ducts 22, middle air outlet ducts 23 and lower air outlet ducts 24 for air outlet, that is, the air conditioner can be selected to blow air upward, downward or straight forward. When the air conditioner blows air upward, the no-wind feeling blowing can be realized, making the human body more comfortable. When the air conditioner is heating, at least two air outlet modes are selected and used in combination, so that the hot air can be mixed in the room, avoiding the single air outlet mode of the air conditioner resulting in the retention of the warm air near the ceiling, improving the uneven temperature, and making the air conditioner more energy-saving;
[0113] S2. According to the user's usage requirements, control the movement or stop of the first closing plate 31 and the second closing plate 32. When the first closing plate 31 and the second closing plate 32 stop, the air outlet mode of the air conditioner can be fixed. When the first closing plate 31 and the second closing plate 32 move, the air outlet mode can be cyclically changed, avoiding a single flow direction of the indoor air flow and making the indoor air flow more comfortable.
[0114] S3. In the mode where the user does not exert control, the air outlet direction can be automatically selected according to the temperature detected by the temperature sensor 26, which is the air outlet temperature of the air conditioner. When it is warm air, at least two air outlet modes are selected for combined use. When it is cold air, upward air outlet is selected. At this time, the cold air descends, which can more quickly reduce the indoor temperature and make the air conditioner more energy-efficient.
[0115] S4. When the air is relatively dry, the user can use the humidifying component 4 to humidify the air outlet of the air conditioner, increase the humidity of the indoor air, make the human body more comfortable, and at the same time, the moisture can be projected farther by using the air outlet of the air conditioner.
[0116] Although the specific implementation manners of the present invention have been described above, those skilled in the art should understand that this is only for illustration. The protection scope of the present invention is defined by the appended claims. Without departing from the principles and essence of the present invention, those skilled in the art can make various changes or modifications to these implementation manners, but these changes and modifications all fall within the protection scope of the present invention.
Claims
1. An energy-saving air conditioner with comfortable indoor air flow, comprising an air conditioner body (1), characterized in that, The energy-saving air conditioner with comfortable indoor air flow further includes: a ventilation component (2), which is arranged inside the air conditioner body (1). The ventilation component (2) includes a central housing (21), an upper air outlet duct (22), a middle air outlet duct (23), and a lower air outlet duct (24). The outside of the central housing (21) is respectively connected to the upper air outlet duct (22), the middle air outlet duct (23), and the lower air outlet duct (24). The ventilation component (2) enables the air conditioner to switch different air outlet modes according to different needs; a switching component (3), which is arranged inside the central housing (21). The switching component (3) is used to switch different air outlet modes; a humidifying component (4), which is respectively connected to the upper air outlet duct (22), the middle air outlet duct (23), and the lower air outlet duct (24). The humidifying component (4) increases the humidity in the room along with the air outlet direction of the air conditioner; two side closing components (5), which are respectively installed on the upper and lower sides of the air conditioner body (1). The side closing components (5) are used to open and close the two air outlets on the upper and lower sides of the air conditioner body (1); a middle closing component (6), which is installed on the right side of the air conditioner body (1). The middle closing component (6) is used to open and close the air outlet on the right side of the air conditioner body (1).
2. The energy-saving air conditioner with comfortable indoor air flow as claimed in claim 1, wherein: The ventilation component (2) further includes a wind guiding channel (25) and a temperature sensor (26). The wind guiding channel (25) is installed on one side of the central housing (21). The end of the wind guiding channel (25) far from the central housing (21) is close to the air outlet of the air conditioner body (1); The temperature sensor (26) is installed inside the wind guiding channel (25); An inlet is opened at the connection between the central housing (21) and the wind guiding channel (25); Three guiding outlets with different positions are opened on the side of the central housing (21). The three guiding outlets are respectively connected to the upper air outlet duct (22), the middle air outlet duct (23), and the lower air outlet duct (24); The ends of the upper air outlet duct (22), the middle air outlet duct (23), and the lower air outlet duct (24) far from the central housing (21) are respectively connected to the inner wall of the air conditioner body (1).
3. The energy-saving air conditioner with comfortable indoor air flow as claimed in claim 1, wherein: The switching component (3) includes a first closing plate (31) and a second closing plate (32). Both the first closing plate (31) and the second closing plate (32) are arranged inside the central housing (21). A plurality of connecting plates (33) are fixedly connected to one side of both the first closing plate (31) and the second closing plate (32). The plurality of connecting plates (33) are respectively installed on the side of a switching shaft (34); One end of the switching shaft (34) is rotatably connected to the inner wall of the central housing (21). The other end of the switching shaft (34) is fixedly connected to the output end of a switching motor (35). The switching motor (35) is installed on the inner wall of the central housing (21); The cross-sections of both the first closing plate (31) and the second closing plate (32) are in an arc-shaped structure; The areas of both the first closing plate (31) and the second closing plate (32) are smaller than the area of the inlet.
4. The energy-saving air conditioner with comfortable indoor air flow as claimed in claim 1, wherein: The humidifying assembly (4) includes a spraying assembly (41), a water adding assembly (42) and a rotating assembly (43). The spraying assemblies (41) are arranged in the upper air outlet duct (22), the middle air outlet duct (23) and the lower air outlet duct (24). One end of the spraying assembly (41) is connected to the water adding assembly (42), and the other end of the water adding assembly (42) is connected to the rotating assembly (43). Both the water adding assembly (42) and the rotating assembly (43) are installed on the outer side of the air conditioner body (1).
5. The energy-saving air conditioner with comfortable indoor air flow as claimed in claim 4, wherein: The spraying assembly (41) includes a spraying pipe (411) and spraying holes (412). A plurality of spraying holes (412) are formed in the side surface of the spraying pipe (411).
6. The energy-saving air conditioner with comfortable indoor air flow as claimed in claim 4, wherein: The water adding assembly (42) includes a water storage tank body (421) and a spraying pump (422). Both the water storage tank body (421) and the spraying pump (422) are installed on the outer side of the air conditioner body (1). A water adding pipe (423) is installed at the inlet end of the spraying pump (422). The water adding pipe (423) is connected to the water storage tank body (421) in a penetrating manner, and the end of the water adding pipe (423) away from the spraying pump (422) is located at the lower part of the inner cavity of the water storage tank body (421). The outlet end of the spraying pump (422) is connected to a central pipe (424), and the water adding pipe (423) is installed on the outer side of the air conditioner body (1). Three micro control valves (425) are installed on one side of the water adding pipe (423). The ends of the micro control valves (425) away from the water adding pipe (423) are rotatably connected to one end of the spraying pipe (411).
7. The energy-saving air conditioner with comfortable indoor air flow as claimed in claim 4, characterized in that: The rotating assembly (43) includes a mounting housing (431). The mounting housing (431) is installed on the side of the air conditioner body (1) away from the water adding assembly (42). A rotating motor (432) is installed inside the mounting housing (431). A main sprocket (433) is fixedly connected to the output end of the rotating motor (432). Auxiliary sprockets (434) are arranged on both the upper and lower sides of the main sprocket (433). The two auxiliary sprockets (434) are in transmission connection with the main sprocket (433) through a transmission chain (435). The side surfaces of the main sprocket (433) and the auxiliary sprockets (434) are meshed with the transmission chain (435). Spraying pipes (411) are fixedly connected to one side of the two auxiliary sprockets (434) and the main sprocket (433).
8. The energy-saving air conditioner with comfortable indoor air flow as claimed in claim 1, characterized in that: The side closing assembly (5) includes a side closing airbag (51). One side of the side closing airbag (51) is connected to the air conditioner body (1), and the other side is connected to a mounting plate (52). A plurality of connecting columns (53) are connected to the side of the mounting plate (52) away from the side closing airbag (51). The plurality of connecting columns (53) are all connected to a limiting plate (54). A plurality of first springs (55) are connected to the side of the limiting plate (54) away from the connecting columns (53). The plurality of first springs (55) are connected to the inner wall of the air conditioner body (1). The plurality of connecting columns (53) are respectively connected to the air conditioner body (1) in a penetrating manner. One end of the side closing airbag (51) is connected with a side connecting pipe (56), one end of the side connecting pipe (56) is connected with a first air source (57), and the first air source (57) is installed outside the air conditioner body (1).
9. The energy-saving air conditioner with comfortable indoor air flow as claimed in claim 1, characterized in that: The middle closing assembly (6) includes a middle closing airbag (61). Both sides of the middle closing airbag (61) are connected with fixing plates (62). A plurality of fixing columns (63) are connected to the sides of the two fixing plates (62) away from the middle closing airbag (61). The plurality of fixing columns (63) located on both sides are respectively connected with a positioning plate (64). A second spring (65) is fixedly connected to the side of the positioning plate (64) away from the fixing columns (63). The plurality of second springs (65) are connected with the inner wall of the air conditioner body (1). One side of the middle closing airbag (61) is connected with a middle connecting pipe (66). The middle connecting pipe (66) is connected with a second air source (67), and the second air source (67) is installed outside the air conditioner body (1).
10. The method of using an energy-saving air conditioner with comfortable indoor air flow according to any one of claims 1-9, characterized in that: The usage method includes the following operation steps: S1. According to the user's usage requirements, use the switching motor (35) to drive the switching shaft (34) to rotate, thereby driving the connecting plate (33) to rotate, and further driving the first closing plate (31) and the second closing plate (32) to rotate. Use the first closing plate (31) to open or close the three air outlet openings provided on the central housing (21) respectively, so as to select different upper air outlet ducts (22), middle air outlet ducts (23) and lower air outlet ducts (24) for air outlet. That is, it is possible to select upper air outlet, lower air outlet or forward direct blowing of the air conditioner. When the air conditioner blows air upward, it is possible to achieve windless feeling blowing, making the human body more comfortable. When the air conditioner is heating, select at least two air outlet modes for combined use, so that the hot air can be mixed in the room, avoiding the single air outlet mode of the air conditioner resulting in the retention of warm air near the ceiling, improving the uneven temperature, and making the air conditioner more energy-saving. S2. According to the user's usage requirements, control the movement or stop of the first closing plate (31) and the second closing plate (32). When the first closing plate (31) and the second closing plate (32) stop, the air outlet mode of the air conditioner can be fixed. When the first closing plate (31) and the second closing plate (32) move, the air outlet mode can be cyclically changed, avoiding the single flow direction of the indoor air flow and making the indoor air flow more comfortable. S3. In the mode where the user does not apply control, the air outlet direction can be automatically selected according to the temperature detected by the temperature sensor (26). This temperature is the air outlet temperature of the air conditioner. When it is warm air, select at least two air outlet modes for combined use. When it is cold air, select upward air outlet. At this time, the cold air descends, which can more quickly reduce the indoor air temperature and make the air conditioner more energy-saving. S4. When the air is relatively dry, the user can use the humidifying assembly (4) to humidify the air outlet of the air conditioner, increase the humidity of the indoor air, make the human body more comfortable, and at the same time use the air outlet of the air conditioner to make the moisture spray farther.
Citation Information
Patent Citations
Comfortable type central air conditioning air -out mechanism
CN206831785U