WO2020038044A1 - 一种导风装置及方法、空调器、计算机设备、存储介质 - Google Patents

一种导风装置及方法、空调器、计算机设备、存储介质 Download PDF

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Publication number
WO2020038044A1
WO2020038044A1 PCT/CN2019/089574 CN2019089574W WO2020038044A1 WO 2020038044 A1 WO2020038044 A1 WO 2020038044A1 CN 2019089574 W CN2019089574 W CN 2019089574W WO 2020038044 A1 WO2020038044 A1 WO 2020038044A1
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WIPO (PCT)
Prior art keywords
rack
air
air conditioner
auxiliary
wind deflector
Prior art date
Application number
PCT/CN2019/089574
Other languages
English (en)
French (fr)
Inventor
朱振学
胡兰岐
庄佳兰
马令庆
于永平
Original Assignee
青岛海尔空调器有限总公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 青岛海尔空调器有限总公司 filed Critical 青岛海尔空调器有限总公司
Publication of WO2020038044A1 publication Critical patent/WO2020038044A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/72Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
    • F24F11/79Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling the direction of the supplied air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • F24F13/14Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • F24F13/14Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre
    • F24F13/1426Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre characterised by actuating means

Definitions

  • the present application relates to the technical field of air guiding of an air conditioner, for example, an air guiding device and method applied to a hanging air conditioner, an air conditioner, a computer device, and a storage medium.
  • air conditioners can be divided into vertical air conditioners and hanging air conditioners according to different installation methods.
  • the hanging air conditioner is installed on the wall, and the airflow direction of the air conditioner is controlled by the air deflector.
  • the narrow air deflector of the existing hanging air conditioner has limited air guiding capacity, which will cause the air blown out by the air conditioner to directly blow people, especially in the cooling process, the direct blowing of cold air will make the user experience very uncomfortable, and even Will cause users to catch a cold and affect their health.
  • the auxiliary guide plate is mainly used to control the wind direction
  • the structure of the auxiliary guide plate is mainly Including: (1) Install a separate detachable wind deflector on the outside of the air conditioner.
  • the wind deflector can be rotated manually or electrically to achieve the purpose of changing the wind direction.
  • An auxiliary air deflector structure is disclosed. Although this auxiliary air deflector structure can change the wind direction, the installation is troublesome, unreliable, and cannot be stowed, which affects the beauty of the air conditioner.
  • An embodiment of the present disclosure provides a wind guide device.
  • the wind deflector includes: a rack, a gear, a rack support, a first driving motor, a first control unit, and an auxiliary wind deflector;
  • the rack is assembled in a rack support. One end of the rack extends out of the rack support and is fixedly connected to the auxiliary wind deflector. The other end moves inside the rack support.
  • the rack is provided with teeth that mesh with the gear. ;
  • the first control unit controls a rotation angle of the first driving motor, and an output shaft of the first driving motor is connected to the gear to drive the rack to move along a preset track of the rack bracket, and the tooth The bar pushes the auxiliary wind deflector to a preset position.
  • An embodiment of the present disclosure provides a method for guiding wind.
  • the method includes:
  • the position of the auxiliary wind deflector is controlled according to the air outlet direction of the air conditioner.
  • An embodiment of the present disclosure provides an air conditioner.
  • the air conditioner includes the above-mentioned air guiding device.
  • An embodiment of the present disclosure provides an electronic device.
  • the electronic device includes:
  • At least one processor At least one processor
  • a memory connected in communication with the at least one processor; wherein,
  • the memory stores instructions executable by the at least one processor, and when the instructions are executed by the at least one processor, causes the at least one processor to execute the foregoing air guiding method.
  • An embodiment of the present disclosure provides a computer-readable storage medium.
  • the computer-readable storage medium stores computer-executable instructions, and the computer-executable instructions are configured to perform the above-mentioned wind guiding method.
  • An embodiment of the present disclosure provides a computer program product.
  • the computer program product includes a computer program stored on a computer-readable storage medium, where the computer program includes program instructions, and when the program instructions are executed by a computer, cause the computer to execute the foregoing guidance. Wind method.
  • An embodiment of the present disclosure provides a storage medium.
  • a computer program is stored on the storage medium, and is characterized in that when the computer program is executed by a processor, the above-mentioned wind guiding method.
  • the air guiding device is used to adjust the airflow direction of the air conditioner to prevent cold wind from directly blowing people and improve the user experience.
  • FIG. 1a is a schematic structural side view of one side of a wind deflector provided by an embodiment of the present disclosure
  • FIG. 1b is a schematic structural side view of another side of a wind guide device according to an embodiment of the present disclosure
  • FIG. 1c is an assembly schematic diagram of a wind guide device provided by an embodiment of the present disclosure.
  • FIG. 1d is a block diagram of a wind guide device according to an embodiment of the present disclosure.
  • FIG. 2 is a schematic structural diagram of a rack according to an embodiment of the present disclosure
  • 3a is a schematic diagram of an overall structure of a rack bracket provided by an embodiment of the present disclosure
  • FIG. 3b is an assembly schematic diagram of a rack bracket and a rack according to an embodiment of the present disclosure
  • 3c is a schematic diagram of an internal structure of a rack bracket provided by an embodiment of the present disclosure.
  • FIG. 4 is a block diagram of a wind deflector provided by an embodiment of the present disclosure.
  • FIG. 5 is a block diagram of a wind deflector provided by an embodiment of the present disclosure.
  • FIG. 6 is a schematic perspective view of an auxiliary wind deflector according to an embodiment of the present disclosure.
  • FIG. 7 is a schematic perspective view of an auxiliary wind deflector according to an embodiment of the present disclosure.
  • FIG. 8 is a schematic perspective view of an auxiliary wind deflector according to an embodiment of the present disclosure.
  • FIG. 9 is a schematic flowchart of a wind guiding method according to an embodiment of the present disclosure.
  • FIG. 10 is a schematic flowchart of a wind guiding method according to an embodiment of the present disclosure.
  • FIG. 11 is a schematic structural diagram of an electronic device according to an embodiment of the present disclosure.
  • FIGS 1a, 1b, 1c and 1d show an alternative embodiment of the wind deflector.
  • the wind deflector 100 includes a rack 10, a gear, a rack rack 50, a first drive motor 30, a first control unit 60, and an auxiliary wind deflector 40.
  • the rack 10 is assembled In the rack bracket 50, one end of the rack bracket 50 protrudes from the rack bracket 50 and is fixedly connected to the auxiliary wind deflector 40. The other end of the rack bracket 50 moves inside the rack bracket 50.
  • the rack 10 is provided with teeth that mesh with the gears. ;
  • the first control unit 60 controls the rotation angle of the first drive motor 30, and the output shaft of the first drive motor 30 is connected to the gear, and drives the rack 10 to move along a preset track of the rack bracket 50;
  • the rack 10 pushes the auxiliary wind deflector 40 to a preset position.
  • the auxiliary wind deflector 40 In the initial state (that is, when the wind deflector is closed), the auxiliary wind deflector 40 is located at the bottom of the air conditioner and fits with the air conditioner cover; when the wind deflector receives the start instruction, the first drive The motor drives the rack to move, pushes the auxiliary wind deflector from the bottom of the air conditioner and pushes it to a preset position; when the wind deflector receives a shutdown instruction, the first drive motor performs a rotation action in a direction opposite to that when the power is turned on The rack is driven to move in the reverse direction. When the auxiliary wind deflector returns to the initial position, the first driving motor stops working to complete a cycle of wind deflection.
  • the air guiding device is used to adjust the airflow direction of the air conditioner to prevent cold wind from directly blowing people and improve the user experience.
  • the auxiliary air deflector does not perform an operation until the user requests to open the air conditioner, and the auxiliary air deflector starts to move according to the open command and reaches a preset position. After finishing the instruction, it returns to the initial position.
  • the preset position of the auxiliary wind deflector is a position perpendicular to the wind direction of the air outlet of the air conditioner. Because the position of the main air plate determines the size and direction of the air outlet, the direction of the air outlet is the direction pointed by the center line of the air outlet, which corresponds to the position of the main air plate, and the auxiliary air baffle is located in the direction of the air outlet. The vertical position of the wind and wind can more effectively disperse the air from the air conditioner, avoid the situation where the cold wind directly blows people, and improve the comfort of user experience.
  • the angle of the auxiliary air deflector is a fixed angle, and the position of the auxiliary air deflector is adjusted by the first control unit, so that the auxiliary air deflector is perpendicular to the air outlet direction of the air outlet of the air conditioner.
  • Figure 2 shows an alternative implementation of the rack.
  • the rack 10 includes a connecting portion 101 at the front end, an engaging portion 102 in the middle, and a guide wing 103 at the rear end.
  • the connecting portion 101 is provided at the front end of the rack and extends out of the rack bracket and communicates with the auxiliary air guide.
  • the plate 40 is fixedly connected;
  • the meshing portion 102 is provided in the middle of the rack, and the whole is arc-shaped, and the arc surface is provided with teeth for meshing with the gear;
  • the guide wing 103 is fixed behind the meshing portion
  • the outer side of the end is a semi-circular structure.
  • the arc surface is in contact with the track of the rack support.
  • a notch 104 is provided on the plane, and the notch 104 is adapted to a limiting block provided on the outer side of the gear.
  • 3a and 3b illustrate an alternative implementation structure of the rack bracket.
  • the rack bracket 50 includes a guide portion 51 and a limit portion 52.
  • the guide portion 51 is provided with a travel path of the rack.
  • the limit portion 52 is semi-circular as a whole and is provided at the bottom end of the guide portion.
  • the auxiliary air deflector when the length of the rack extending out of the rack track reaches the maximum, the auxiliary air deflector reaches a preset position, but the angle is not perpendicular to the air outlet direction of the air outlet of the air conditioner.
  • the card and structure of the limiting block and the guide wing, the rack rotates along the track on the limiting part with the center of the gear circle as the center, and adjusts the angle of the auxiliary air deflector to make it wind with the air outlet of the air conditioner. Phase vertical.
  • the rack bracket is disposed at a middle position or two positions of a back plate of the air conditioner casing.
  • the position of the rack bracket can be reasonably set according to the layout of various components inside the air conditioner.
  • the top end of the rack bracket is fixed to the upper part of the back plate of the air conditioner casing, and the bottom end of the rack bracket is fixed to the lower part of the back plate of the air conditioner casing opposite the air outlet.
  • Figure 3c shows another alternative embodiment of the rack support structure.
  • a first track 53 and a second track 54 are provided on the guide portion.
  • the first track 53 is in contact with the smooth surface of the rack meshing portion 102
  • the second track 54 is in contact with the first track.
  • the second rails 54 are arranged adjacent to and parallel to each other, and the arc surfaces of the guide wings 103 are in contact with each other.
  • the first rails 53 and the second rails 54 on the guide portion extend to the limiting portion 52.
  • the toothed side of the rack meshes with the gear, the toothless side slides on the first track and advances along the track defined by the first track; the arc of a guide wing provided outside the rear end of the rack The surface is in contact with the second track and slides on the second track.
  • the number of the guide wings is one, which is provided on one side of the rack, and the number of the second rails is one.
  • the number of the guide wings is two, which are provided on both sides of the rack, and the number of the second track is two, which are provided on both sides of the first track.
  • two guide wings are provided on the left and right sides of the rack, so that the combination of the rack and the rack bracket can be made firmer, and the rack operation can be more stable.
  • the track diameter of the guide portion on the rack bracket is larger than the track diameter of the limiting portion.
  • the total length of the rack is 300-500 mm.
  • the arc of the rack is 40-60 °.
  • the radius of the outer arc of the rack is 400-500 mm.
  • the gear drives the rack to move, the auxiliary wind deflector is advanced from the initial position to the preset position, and the angle of rotation of the rack around the center of the circle is about 40 to 60 °.
  • the auxiliary wind guide The board can reach multiple preset positions, and the position of the auxiliary air deflector is selected according to the air outlet direction of the air conditioner to better guide the wind.
  • teeth for meshing with a gear are provided on an outer arc.
  • the first driving motor is fixed at a corresponding position on the outer arc side of the rack through a motor bracket, and the gear meshes with the teeth on the outer arc of the rack.
  • the gear meshes with the teeth on the outer arc of the rack, and drives the auxiliary wind deflector to a preset position or to return to an initial position.
  • teeth for meshing with a gear are provided on an inner arc.
  • the first drive motor is fixed at a corresponding position on the inner arc side of the rack through a motor bracket, and the gear meshes with the teeth on the inner arc of the rack.
  • the gear meshes with the teeth on the inner arc of the rack, and drives the auxiliary wind deflector to a preset position or back to the initial position.
  • the gear can mesh with the outer arc of the rack and the inner arc of the rack, it provides more choices for the design of other parts inside the air conditioner, which can be more reasonable Design the layout of each component inside the air conditioner to prevent the components from interfering with each other.
  • the number of the first driving motor is one, and the first driving motor is fixed on the end cover of the air conditioner according to the position of the rack bracket.
  • the auxiliary wind deflector is advanced to a preset position by a motor, thereby reducing the cost of the system.
  • the number of the first driving motors is two, and the first driving motors are fixed to the end cover of the air conditioner according to the position of the rack support, and each motor drives a rack on one side.
  • the two driving motors can improve the stability of the rack movement.
  • the width of the auxiliary air deflector is adapted to the width of the air conditioner.
  • the width of the air conditioner is 650-900 mm
  • the width of the auxiliary air deflector is 650-900 mm.
  • the length of the auxiliary air deflector is adapted to the thickness of the air conditioner and is slightly smaller than the thickness of the air conditioner to meet the aesthetic requirements of the air conditioner.
  • the length of the auxiliary wind deflector is 120-150 mm.
  • the length of the auxiliary air deflector is adapted to the thickness of the air conditioner, and the auxiliary air deflector is wider than the main air deflector, which solves the problem of limited air deflection capacity of the main air deflector of the existing air conditioner. .
  • FIG. 4 shows another alternative implementation structure of the wind guiding device.
  • the air guiding device further includes a second control unit 70.
  • the second control unit 70 is configured to obtain an air outlet direction of the air conditioner.
  • the first control unit 60 controls the air outlet direction of the air conditioner.
  • the rotation angle of the first driving motor 30 further controls the position of the auxiliary wind deflector. Since the main air plate of the air conditioner is used to adjust the air outlet direction of the air conditioner, the position of the main air plate and the air outlet direction of the air conditioner correspond to each other.
  • the second control unit 70 checks the table or reads the status bit, etc.
  • the second control unit 70 acquires the position of the main wind plate through a position sensor, and the first control unit 60 controls the rotation angle of the first driving motor 30 according to the position of the main air plate of the air conditioner, Furthermore, the position of the auxiliary air baffle is controlled.
  • the wind deflector controls the position of the auxiliary wind deflector according to the airflow direction of the air conditioner or the position of the main wind plate, so that the airflow direction of the air conditioner can be adjusted more precisely, The wind is more effectively dispersed, avoiding the situation where the cold wind directly blows people, and improves the comfort of the user experience.
  • the angle of the auxiliary wind deflector can be adjusted manually.
  • the user can be provided with more choices of the wind direction, and the user can manually adjust the wind direction according to his preference.
  • FIG. 5 shows another alternative implementation structure of the air guiding device.
  • the wind guiding device further includes a third control unit 80 and a second driving motor 90.
  • the third control unit 80 is configured to control a rotation angle of the second driving motor 90, and the second driving
  • the motor is installed at a connecting portion at the front end of the rack, and an output shaft thereof is connected to the auxiliary wind deflector for adjusting an angle of the auxiliary wind deflector.
  • the angle of the auxiliary wind deflector can be adjusted, which provides more choices for the user, and the user can select the air outlet angle of the air conditioner according to his preference.
  • the second driving motor is disposed at a top end of the rack connecting portion, and an output shaft of the second driving motor directly or indirectly drives a rotation angle of the auxiliary wind deflector.
  • the output shaft of the second drive motor is directly connected to the auxiliary wind deflector, and the rotation angle of the auxiliary wind deflector is adjusted by the rotation of the output shaft of the second drive motor.
  • the output shaft of the second drive motor meshes with the gear on the auxiliary wind deflector shaft through gears, and adjusts the rotation angle of the auxiliary wind deflector through gear engagement.
  • the first control unit controls the rotation angle of the first drive motor, and the first drive The motor drives the auxiliary wind deflector 40 to the lower edge position of the air outlet 45
  • the third control unit controls the rotation angle of the second drive motor
  • the second drive motor drives the auxiliary wind deflector to rotate to and from the outlet.
  • the wind direction 46 is parallel to the angle.
  • the first control unit controls the rotation angle of the first drive motor, and the first drive The motor drives the auxiliary wind deflector to a position perpendicular to the air outlet direction
  • the third control unit controls the rotation angle of the second drive motor
  • the second drive motor drives the auxiliary wind deflector to rotate to assist
  • the included angle between the half surface 41 of the wind deflector and the air outlet direction 46 is greater than 90 °.
  • the flow distance of the cold air will increase as the included angle increases.
  • the distance between the air conditioner and the air outlet can be adjusted by controlling the angle between the half of the auxiliary air deflector and the direction of the air outlet.
  • the direction of the wind provides more choices.
  • the first control unit controls the rotation angle of the first drive motor, and the first drive The motor drives the auxiliary wind deflector to a position perpendicular to the air outlet direction
  • the third control unit controls the rotation angle of the second drive motor
  • the second drive motor drives the auxiliary wind deflector to rotate to assist
  • the included angle between the half surface 41 of the wind deflector and the air outlet direction 46 is less than 90 °.
  • FIG. 9 shows an alternative embodiment of the wind guiding method.
  • the method is used to control the air guiding device described in any of the foregoing optional embodiments.
  • the method includes: step 11 of obtaining an air outlet direction of the air conditioner; and step 12 of controlling a position of the auxiliary air deflector according to the air outlet direction of the air conditioner.
  • the position of the auxiliary air deflector is controlled according to the air-out direction of the air conditioner, so that the air-out direction of the air-conditioner can be adjusted more accurately, and the air-out of the air-conditioner can be more effectively dispersed to avoid cold wind. Directly blowing people to improve the comfort of user experience.
  • the method further includes: obtaining a position of the main wind board by looking up a table or reading a status bit.
  • the method further includes: obtaining a position of the main wind board through a position sensor.
  • the main air plate of the air conditioner is used to adjust the air outlet direction of the air conditioner.
  • the position of the main air plate determines the size and direction of the air outlet.
  • the air outlet direction is the direction indicated by the center line of the air outlet. Therefore, the main air plate
  • the position of the air conditioner and the airflow direction of the air conditioner correspond to each other.
  • the position of the auxiliary air deflector is controlled according to the position of the main air plate of the air conditioner, which can more accurately adjust the airflow direction of the air conditioner, The wind is more effectively dispersed, avoiding the situation where the cold wind directly blows people, improving the comfort of the user experience.
  • the preset position of the auxiliary wind deflector is a position perpendicular to the wind direction of the air outlet of the air conditioner.
  • the auxiliary wind deflector is located at a position perpendicular to the wind direction of the outlet air, which can more effectively disperse the air out of the air conditioner, avoid the situation where the cold wind directly blows people, and improve the comfort of the user experience.
  • the preset position of the auxiliary wind deflector is a position perpendicular to the wind direction when the main wind deflector is fully opened.
  • the wind direction of the air outlet when the main wind board is fully opened can be adjusted, the air outlet of the air conditioner is dispersed, avoiding the situation where the cold wind directly blows people, and improving the comfort of user experience.
  • FIG. 10 shows another alternative embodiment of the wind guiding method.
  • the method is used to control the air guiding device described in any of the foregoing optional embodiments.
  • the method includes: Step 111, obtaining an air outlet direction of an air conditioner; Step 112, controlling a position of the auxiliary air guide plate according to an air outlet direction of the air conditioner; Step 113, controlling an angle of the auxiliary air guide plate according to an instruction .
  • the angle of the auxiliary wind deflector can be adjusted, which provides more choices for the user, and the user can select the air outlet angle of the air conditioner according to his preference.
  • the method further includes: when the air outlet of the air conditioner is in a certain direction, controlling the auxiliary air guide plate to a position below the air outlet, and the auxiliary air guide plate is parallel to the air outlet direction.
  • a negative pressure effect is generated when cold air flows from the side of the auxiliary air deflector at a higher speed, and the indoor air flows in the direction of the cold air. After mixing, it can effectively increase the temperature of the air outlet and improve the user experience.
  • the user can select the air outlet angle, and on the premise that the user's special air supply angle is met, the air outlet temperature can be effectively increased.
  • the method further includes: controlling the auxiliary air deflector to a position perpendicular to the air outlet direction when the air outlet of the air conditioner is in a certain direction, and a half surface of the auxiliary air deflector and the air outlet
  • the included angle in the wind direction is greater than 90 °.
  • the flow distance of the cold air will increase as the included angle increases.
  • the distance between the air conditioner and the air outlet can be adjusted by controlling the angle between the half of the auxiliary air deflector and the direction of the air outlet.
  • the direction of the wind provides more choices.
  • the method further includes: when the main air plate of the air conditioner controls the air outlet of the air conditioner to a certain direction, controlling the auxiliary air guide plate to a position perpendicular to the air outlet direction, and the auxiliary The angle between the half of the air deflector and the direction of the air outlet is less than 90 °.
  • the angle between the half of the auxiliary wind deflector and the direction of the air outlet is less than 90 °, the flow height of the cold wind will increase as the included angle increases.
  • You can control the auxiliary wind deflector by The angle between the half plane and the direction of the air outlet to adjust the height of the air outlet of the air conditioner provides more choices for the air outlet of the air conditioner.
  • an air conditioner is further provided, the air conditioner including the wind guiding device described above.
  • a computer-readable storage medium in which computer instructions are stored, and the instructions are implemented by a processor to implement the foregoing wind guiding method.
  • a computer program product includes a computer program stored on a computer-readable storage medium, and the computer program includes program instructions.
  • the computer is caused to execute the above-mentioned wind guiding method.
  • the computer-readable storage medium described above may be a transitory computer-readable storage medium or a non-transitory computer-readable storage medium.
  • An embodiment of the present disclosure provides an electronic device whose structure is shown in FIG. 11.
  • the electronic device includes:
  • At least one processor 1100, and a processor 1100 is taken as an example in FIG. 11; and memory 1101 may further include a communication interface 1102 and a bus 1103. Among them, the processor 1100, the communication interface 1102, and the memory 1101 can complete communication with each other through the bus 1103.
  • the communication interface 1102 may be used for information transmission.
  • the processor 1100 may call a logic instruction in the memory 1101 to execute the wind guiding method in the foregoing embodiment.
  • logic instructions in the foregoing memory 1101 may be implemented in the form of software functional units and sold or used as an independent product, and may be stored in a computer-readable storage medium.
  • the memory 1101 is a computer-readable storage medium and can be used to store software programs and computer-executable programs, such as program instructions / modules corresponding to the methods in the embodiments of the present disclosure.
  • the processor 1100 executes a functional application and data processing by running software programs, instructions, and modules stored in the memory 1101, that is, implementing the wind guiding method in the foregoing method embodiment.
  • the memory 1101 may include a storage program area and a storage data area, where the storage program area may store an operating system and application programs required for at least one function; the storage data area may store data created according to the use of the terminal device, and the like.
  • the memory 1101 may include a high-speed random access memory, and may further include a non-volatile memory.
  • the technical solution of the embodiment of the present disclosure may be embodied in the form of a software product.
  • the computer software product is stored in a storage medium and includes one or more instructions for making a computer device (which may be a personal computer, a server, or a network). Equipment, etc.) perform all or part of the steps of the method described in the embodiments of the present disclosure.
  • the foregoing storage medium may be a non-transitory storage medium, including: a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, etc.
  • each embodiment focuses on differences from other embodiments, and the same or similar parts between the various embodiments can be referred to each other.
  • the relevant parts can refer to the description of the method portion.
  • each block in the flowchart or block diagram may represent a module, a program segment, or a part of code, which contains one or more components for implementing a specified logical function Executable instructions.
  • the functions marked in the blocks may also occur in a different order than those marked in the drawings. For example, two consecutive blocks may actually be executed substantially in parallel, and they may sometimes be executed in the reverse order, depending on the functions involved.
  • Each block in the block diagrams and / or flowcharts, and combinations of blocks in the block diagrams and / or flowcharts, can be implemented in a dedicated hardware-based system that performs the specified function or action, or can be implemented in dedicated hardware In combination with computer instructions.

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Abstract

本申请公开了一种导风装置,属于空调器导风技术领域。该装置包括:齿条、齿轮、齿条支架、第一驱动电机、第一控制单元以及辅助导风板;所述齿条装配在齿条支架中,其一端伸出齿条支架与辅助导风板固定连接,其另一端在齿条支架内部移动,所述齿条上设置有与齿轮相啮合的齿;所述第一控制单元控制所述第一驱动电机的转角,所述第一驱动电机的输出轴与所述齿轮相连接,驱动所述齿条沿齿条支架的预设轨道移动,所述齿条推动所述辅助导风板到预设位置。采用该实施例,导风装置用于对空调器的出风风向进行调节,防止冷风直接吹人,提高用户的体验。本申请还公开了一种导风方法、空调器、计算机设备、存储介质。

Description

一种导风装置及方法、空调器、计算机设备、存储介质
本申请基于申请号为201810955730.5、申请日为2018.08.21的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及空调器导风技术领域,例如涉及一种应用于挂式空调器的导风装置及方法、空调器、计算机设备、存储介质。
背景技术
目前,空调器根据安装方式不同,可以分为立式空调器与挂式空调器。挂式空调器安装在墙壁上,通过导风板来控制空调器的出风方向。现有挂式空调器的导风板较窄,导风能力有限,会使得空调器工作时吹出的空气直接吹人,特别是在制冷过程中,冷风直接吹人会使用户体验非常不适,甚至会使用户感冒,影响身体健康。
在实现本公开实施例的过程中,发现相关技术中至少存在如下问题:为提高现有挂式空调器导风板的导风能力,目前主要通过安装辅助导板进行风向控制,辅助导板的结构主要包括:(1)在空调器外部加装单独可拆卸的导风板,通过手动或电动来实现导风板的旋转,从而实现改变风向的目的,例如在授权公告号CN204853865U的中国实用新型申请中,公开了一种辅助导风板结构,这种辅助导风板结构虽然能够起到改变风向的效果,但是安装麻烦,不可靠,且无法收起,影响空调器的美观。(2)利用齿轮传动来实现导风板的伸缩,例如在公开号CN107388547A的中国发明申请中,公开了一种利用齿轮传动实现伸缩的导风板,但是这种导风板相对较窄,并不能实现良好的导风作用。(3)在其他的一些应用中,还有在空调器端盖安装旋转轴的技术方案,但是这种技术方案对空调器的美观性影响较大。
发明内容
为了对披露的实施例的一些方面有基本的理解,下面给出了简单的概括。所述概括不是泛泛评述,也不是要确定关键/重要组成元素或描绘这些实施例的保护范围,而是作为后面的详细说明的序言。
本公开实施例提供了一种导风装置。
在一些实施例中,所述导风装置包括:齿条、齿轮、齿条支架、第一驱动电机、第一控制单元以及辅助导风板;
所述齿条装配在齿条支架中,其一端伸出齿条支架且与辅助导风板固定连接,其另一端在齿条支架内部移动,所述齿条上设置有与齿轮相啮合的齿;
所述第一控制单元控制所述第一驱动电机的转角,所述第一驱动电机的输出轴与所述齿轮相连接,驱动所述齿条沿齿条支架的预设轨道移动,所述齿条推动所述辅助导风板到预设位置。
本公开实施例提供了一种导风方法。
在一些实施例中,所述方法包括:包括:
获取空调器的出风方向;
根据空调器的出风方向控制所述辅助导风板的位置。
本公开实施例提供了一种空调器。
在一些实施例中,所述空调器包括上述的导风装置。
本公开实施例提供了一种电子设备。
在一些实施例中,所述电子设备包括:
至少一个处理器;和
与所述至少一个处理器通信连接的存储器;其中,
所述存储器存储有可被所述至少一个处理器执行的指令,所述指令被所述至少一个处理器执行时,使所述至少一个处理器执行上述的导风方法。
本公开实施例提供了一种计算机可读存储介质。
在一些实施例中,所述计算机可读存储介质存储有计算机可执行指令,所述计算机可执行指令设置为执行上述的导风方法。
本公开实施例提供了一种计算机程序产品。
在一些实施例中,所述计算机程序产品包括存储在计算机可读存储介质上的计算机程序,所述计算机程序包括程序指令,当所述程序指令被计算机执行时,使所述计算机执行上述的导风方法。
本公开实施例提供了一种存储介质。
在一些实施例中,所述存储介质上存储有计算机程序,其特征在于,当所述计算机程序被处理器执行上述的导风方法。
本公开实施例提供的一些技术方案可以实现以下技术效果:
采用该可选实施例,所述导风装置用于对空调器的出风风向进行调节,防止冷风直接吹人,提高用户的体验。
以上的总体描述和下文中的描述仅是示例性和解释性的,不用于限制本申请。
附图说明
一个或多个实施例通过与之对应的附图进行示例性说明,这些示例性说明和附图并不构成对实施例的限定,附图中具有相同参考数字标号的元件示为类似的元件,附图不构成比例限制,并且其中:
图1a是本公开实施例提供的一种导风装置的其中一侧侧视结构示意图;
图1b是本公开实施例提供的一种导风装置的另一侧侧视结构示意图;
图1c是本公开实施例提供的一种导风装置的装配示意图;
图1d是本公开实施例提供的导风装置的框图;
图2是本公开实施例提供的齿条的结构示意图;
图3a是本公开实施例提供的齿条支架的整体结构示意图;
图3b是本公开实施例提供的齿条支架与齿条的装配示意图;
图3c是本公开实施例提供的齿条支架的内部结构示意图;
图4是本公开实施例提供的导风装置的框图;
图5是本公开实施例提供的导风装置的框图;
图6是本公开实施例提供的辅助导风板的角度示意图;
图7是本公开实施例提供的辅助导风板的角度示意图;
图8是本公开实施例提供的辅助导风板的角度示意图;
图9是本公开实施例提供的一种导风方法的流程示意图;
图10是本公开实施例提供的一种导风方法的流程示意图;
图11是本公开实施例提供的一种电子设备的结构示意图。
具体实施方式
为了能够更加详尽地了解本公开实施例的特点与技术内容,下面结合附图对本公开实施例的实现进行详细阐述,所附附图仅供参考说明之用,并非用来限定本公开实施例。在以下的技术描述中,为方便解释起见,通过多个细节以提供对所披露实施例的充分理解。然而,在没有这些细节的情况下,一个或多个实施例仍然可以实施。在其它情况下,为简化附图,熟知的结构和装置可以简化展示。
图1a、图1b、图1c和图1d示出了导风装置的一个可选实施例。
该可选实施例中,所述导风装置100包括:齿条10、齿轮、齿条支架50、第一驱动电机30、第一控制单元60以及辅助导风板40,所述齿条10装配在齿条支架50中,其一端伸出齿条支架50且与辅助导风板40固定连接,其另一端在齿条支架50内部移动,所述齿条10上设置有与齿轮相啮合的齿;所述第一控制单元60控制所述第一驱动电机30的转角,所述第一驱动电机30的输出轴与所述齿轮相连接,驱动齿条10沿齿条支架50的预设轨道移动,所述齿条10推动所述辅助导风板40到预设位置。
初始状态时(即所述导风装置关闭时),所述辅助导风板40位于空调器底部且与空调器罩壳相贴合;当导风装置接收到启动指令后,所述第一驱动电机驱动所述齿条移动,将辅助导风板从空调器底部推出并推送到预设位置;当导风装置接收到关机指令后,所述第一驱动电机进行与开机时相反方向的旋转动作,驱动所述齿条反向移动,当辅助导风板恢复到初始位置后,第一驱动电机停止工作,完成一次导风动作的循环。
采用该可选实施例,所述导风装置用于对空调器的出风风向进行调节,防止冷风直接吹人,提高用户的体验。
可选地,当空调器开机后,所述辅助导风板不进行动作,直到用户有需求时对空调器发出开启指令,辅助导风板根据开启指令开始运动并到达预设位置,当接收到结束指令后恢复到初始位置。
可选地,所述辅助导风板的预设位置是与空调器出风口出风方向相垂直的位置。由于主导风板的位置决定了出风口的大小和出风方向,因此,出风方向是出风口中心线所指的方向,该方向与主导风板的位置相对应,辅助导风板位于与出风风向相垂直的位置,可以将空调器的出风更有效的分散开,避免出现冷风直接吹人的情况,提高用户体验的舒适性。
可选地,所述辅助导风板的角度为固定角度,通过所述第一控制单元调节辅助导风板的位置,使辅助导风板与空调器出风口的出风方向相垂直。
图2示出了齿条的一个可选实施结构。
所述齿条10包括设置在前端的连接部101、中部的啮合部102和后端的导向翼103;所述连接部101设置在齿条前端,其伸出齿条支架且与所述辅助导风板40固定连接;所述啮合部102设置在齿条中部,其整体为圆弧形,弧面上设置有用于与所述齿轮相啮合的齿;所述导向翼103固定在所述啮合部后端外侧,整体为半圆形结构,其圆弧面与齿条支架的轨道相接触,其平面上设置有缺口104,该缺口104与所述齿轮外侧设置的限位块相适配。
图3a和图3b示出了齿条支架的一个可选实施结构。
所述齿条支架50包括导向部51和限位部52,导向部上51设置有所述齿条的行进轨道,所述限位部52整体为半圆形,设置在导向部底端,导向部上的轨道延伸到限位部;当导向翼103到达齿条支架导向部底端时,齿轮20上的限位块21与导向翼的缺口104相卡和,齿条10以齿轮20圆心为中心沿限位部52上的轨道进行旋转运动,当齿条旋转到预设角度时,所述辅助导风板40到达预设位置。采用该可选实施例,当所述齿条伸出齿条轨道的长度达到最大时,辅助导风板到达预设位置,但角度并不与空调器出风口的出风方向相垂直,通过上述限位块与导向翼的卡和结构,齿条以齿轮圆心为中心沿限位部上的轨道进行旋转运动,对辅助导风板的角度进行调整,使其与空调器出风口的出风方向相垂直。
可选地,所述齿条支架设置在空调器外壳背板的中部位置或者两侧位置。采用该可选实施例,可以根据空调器内部各个部件的布局对齿条支架的位置进行合理设置。
可选地,齿条支架的顶端固定在空调器壳体背板的上部,齿条支架的 底端固定在空调器壳体背板的下部与出风口相对的位置。
图3c示出了齿条支架的另一个可选实施结构。
该实施例中,所述导向部上设置有第一轨道53和第二轨道54,第一轨道53与所述齿条啮合部102的光滑面相接触,第二轨道54与所述第一轨道相邻且平行设置,第二轨道54与所述导向翼103的圆弧面相接触,导向部上的第一轨道53和第二轨道54延伸到限位部52。所述齿条有齿的一面与齿轮相啮合,无齿的一面在所述第一轨道上滑动,沿第一轨道限定的轨迹推进;设置在所述齿条后端外侧的导向翼的圆弧面与第二轨道相接触,在第二轨道上滑动。可选地,所述导向翼的数量为一个,在齿条的其中一侧设置,所述第二轨道的数量为一个。可选地,所述导向翼的数量为两个,在齿条的两侧设置,所述第二轨道的数量为两个,在所述第一轨道的两侧设置。采用该可选实施例,在齿条的左右两侧设置两个导向翼,可以使齿条和齿条支架的结合更牢固,齿条的运行更稳定。
可选地,所述齿条支架上导向部的轨道直径大于限位部的轨道直径。
可选地,所述齿条的总长度为300~500mm。可选地,所述齿条的弧度为40~60°。可选地,所述齿条外圆弧的半径为400~500mm。采用该实施例,齿轮驱动齿条进行运动,所述辅助导风板从初始位置推进到预设位置,齿条围绕圆心旋转的角度大约为40~60°左右,在这个范围内,辅助导风板可以到达多个预设位置,根据空调器出风方向选择辅助导风板的位置,更好地进行导风。
可选地,所述齿条啮合部上,用于与齿轮啮合的齿设置在外圆弧上。所述第一驱动电机通过电机支架固定在所述齿条外圆弧侧的相应位置,齿轮与齿条外圆弧上的齿相啮合。采用该可选实施例,齿轮与齿条外圆弧上的齿相啮合,驱动辅助导风板到预设位置或退回到初始位置。
可选地,所述齿条啮合部上,用于与齿轮啮合的齿设置在内圆弧上。所述第一驱动电机通过电机支架固定在所述齿条内圆弧侧的相应位置,齿轮与齿条内圆弧上的齿相啮合。采用该可选实施例,齿轮与齿条内圆弧上的齿相啮合,驱动辅助导风板到预设位置或退回到初始位置。
采用上述可选实施例,由于齿轮可以与齿条的外圆弧相啮合,也可以与齿条的内圆弧相啮合,为空调器内部其他部件的设计提供了更多选择, 可以更合理地设计空调器内部各个部件的布局,防止部件之间相互干涉。
可选地,所述第一驱动电机的数量为一个,根据齿条支架的位置固定在空调器的端盖上。采用该实施例,通过一个电机推进辅助导风板到预设位置,降低系统的成本。
可选地,所述第一驱动电机的数量为两个,根据齿条支架的位置固定在空调器的端盖上,每个电机驱动一侧的齿条。采用该实施例,两个驱动电机可以提高齿条移动的稳定性。
可选地,所述辅助导风板的宽度与空调器的宽度相适配,例如,空调器的宽度为650~900mm,辅助导风板的宽度为650~900mm。可选地,所述辅助导风板的长度与空调器的厚度相适配且略小于空调器的厚度,以满足空调器美观的要求。可选地,辅助导风板的长度为120~150mm。采用该可选实施例,所述辅助导风板的长度与空调器的厚度相适配,辅助导风板较主导风板更宽,解决了现有空调器主导风板导风能力有限的问题。
图4示出了所述导风装置的另一个可选实施结构。
该实施例中,所述导风装置还包括第二控制单元70,所述第二控制单元70用于获取空调器的出风方向,所述第一控制单元60根据空调器的出风方向控制第一驱动电机30的转角,进而控制辅助导风板的位置。由于空调器主导风板用于调节空调器的出风方向,因此,主导风板的位置与空调器的出风方向是相互对应的,所述第二控制单元70通过查表或者读状态位等方式获取主导风板的位置,或者所述第二控制单元70通过位置传感器获取主导风板的位置,所述第一控制单元60根据空调器主导风板的位置控制第一驱动电机30的转角,进而控制辅助导风板的位置。采用该实施例,所述导风装置根据空调器的出风方向或者主导风板的位置控制辅助导风板的位置,能够对空调器的出风方向进行更为精确的调节,将空调器的出风更有效的分散开,避免出现冷风直接吹人的情况,提高用户体验的舒适性。
可选地,所述辅助导风板的角度可以手动调节。采用该实施例,可以为用户提供更多出风方向的选择,用户可以根据自己的喜好手动调节出风方向。
图5示出了所述导风装置的另一个可选实施结构。
在该实施例中,所述导风装置还包括第三控制单元80和第二驱动电机 90,所述第三控制单元80用于控制所述第二驱动电机90的转角,所述第二驱动电机安装在所述齿条前端的连接部,其输出轴与所述辅助导风板相连接,用于调节所述辅助导风板的角度。采用该实施例,所述辅助导风板的角度可以调节,为用户提供了更多的选择,用户可以根据喜好选择空调器的出风角度。
可选地,所述第二驱动电机设置在所述齿条连接部的顶端,第二驱动电机的输出轴直接或者间接驱动所述辅助导风板的转角。例如,所述第二驱动电机的输出轴直接与辅助导风板相连接,通过第二驱动电机的输出轴的转动调节辅助导风板的转角。再例如,所述第二驱动电机的输出轴通过齿轮与辅助导风板转轴上的齿轮相啮合,通过齿轮啮合调节辅助导风板的转角。
可选地,如图6所示,当空调器的主导风板控制空调器的出风为某一方向时,所述第一控制单元控制所述第一驱动电机的转角,所述第一驱动电机驱动所述辅助导风板40到出风口45下边沿位置,所述第三控制单元控制所述第二驱动电机的转角,所述第二驱动电机驱动所述辅助导风板旋转到与出风方向46平行的角度。采用该可选实施例,冷风以较高的速度从辅助导风板上侧流过时产生负压效应,室内空气流向冷空气方向,经过混合后,可以有效提高出风温度,提高用户的使用体验。采用该可选实施例,用户可以选择出风角度,在满足用户特殊送风角度的前提下,可以有效提高出风温度。
可选地,如图7所示,当空调器的主导风板控制空调器的出风为某一方向时,所述第一控制单元控制所述第一驱动电机的转角,所述第一驱动电机驱动所述辅助导风板到与出风方向相垂直的位置,所述第三控制单元控制所述第二驱动电机的转角,所述第二驱动电机驱动所述辅助导风板旋转,辅助导风板上半面41与出风方向46的夹角大于90°。采用该可选实施例,冷风的流动距离会随着该夹角的增加而增加,可以通过控制辅助导风板上半面与出风方向的夹角来调节空调器出风的远近,为空调器的出风方向提供更多选择。
可选地,如图8所示,当空调器的主导风板控制空调器的出风为某一方向时,所述第一控制单元控制所述第一驱动电机的转角,所述第一驱动 电机驱动所述辅助导风板到与出风方向相垂直的位置,所述第三控制单元控制所述第二驱动电机的转角,所述第二驱动电机驱动所述辅助导风板旋转,辅助导风板上半面41与出风方向46的夹角小于90°。采用上述可选实施例,当辅助导风板上半面与出风方向的夹角小于90°时,冷风的流动高度会随着该夹角的增加而增大,可以通过控制辅助导风板上半面与出风方向的夹角来调节空调器出风的高低,为空调器的出风方向提供更多选择。
图9示出了导风方法的一个可选实施例。
该实施例中,所述方法用于控制前文任一可选实施例中所述的导风装置。
所述方法包括:步骤11,获取空调器的出风方向;步骤12,根据空调器的出风方向控制所述辅助导风板的位置。采用该实施例,根据空调器的出风方向控制辅助导风板的位置,能够对空调器的出风方向进行更为精确的调节,将空调器的出风更有效的分散开,避免出现冷风直接吹人的情况,提高用户体验的舒适性。
可选地,所述方法还包括:通过查表或者读状态位的方式获取主导风板的位置。可选地,所述方法还包括:通过位置传感器获取主导风板的位置。空调器的主导风板用于调节空调器的出风方向,主导风板的位置决定了出风口的大小和出风方向,出风方向是出风口中心线所指的方向,因此,主导风板的位置与空调器的出风方向是相互对应的,根据空调器主导风板的位置控制辅助导风板的位置,能够对空调器的出风方向进行更为精确的调节,将空调器的出风更有效的分散开,避免出现冷风直接吹人的情况,提高用户体验的舒适性。
可选地,所述辅助导风板的预设位置是与空调器出风口出风方向相垂直的位置。采用该可选实施例,辅助导风板位于与出风风向相垂直的位置,可以将空调器的出风更有效的分散开,避免出现冷风直接吹人的情况,提高用户体验的舒适性。
可选地,所述辅助导风板的预设位置是主导风板完全打开时与出风方向相垂直的位置。采用该可选实施例,可以对主导风板完全打开时的出风风向进行调节,将空调器的出风分散开,避免出现冷风直接吹人的情况,提高用户体验的舒适性。
图10示出了导风方法的另一个可选实施例。
在该实施例中,所述方法用于控制前文任一可选实施例中所述的导风装置。
所述方法包括:步骤111,获取空调器的出风方向;步骤112,根据空调器的出风方向控制所述辅助导风板的位置;步骤113,根据指令控制所述辅助导风板的角度。采用该实施例,所述辅助导风板的角度可以调节,为用户提供了更多的选择,用户可以根据喜好选择空调器的出风角度。
可选地,所述方法还包括:当空调器的出风为某一方向时,控制所述辅助导风板到出风口下边沿位置,且所述辅助导风板与出风方向平行。采用该可选实施例,冷风以较高的速度从辅助导风板上侧流过时产生负压效应,室内空气流向冷空气方向,经过混合后,可以有效提高出风温度,提高用户的使用体验。采用该可选实施例,用户可以选择出风角度,在满足用户特殊送风角度的前提下,可以有效提高出风温度。
可选地,所述方法还包括:当空调器的出风为某一方向时,控制所述辅助导风板到与出风方向相垂直的位置,且所述辅助导风板上半面与出风方向的夹角大于90°。采用该可选实施例,冷风的流动距离会随着该夹角的增加而增加,可以通过控制辅助导风板上半面与出风方向的夹角来调节空调器出风的远近,为空调器的出风方向提供更多选择。
可选地,所述方法还包括:当空调器的主导风板控制空调器的出风为某一方向时,控制所述辅助导风板到与出风方向相垂直的位置,且所述辅助导风板上半面与出风方向的夹角小于90°。采用上述可选实施例,当辅助导风板上半面与出风方向的夹角小于90°时,冷风的流动高度会随着该夹角的增加而增大,可以通过控制辅助导风板上半面与出风方向的夹角来调节空调器出风的高低,为空调器的出风方向提供更多选择。
在示例性实施例中,还提供了一种空调器,所述空调器包括前文所述的导风装置。
本公开一实施例中,提供一种计算机可读存储介质,其上存储有计算机指令,该指令被处理器执行时实现上述导风方法。
本公开一实施例中,提供一种计算机程序产品,所述计算机程序产品包括存储在计算机可读存储介质上的计算机程序,所述计算机程序包括程 序指令,当所述程序指令被计算机执行时,使所述计算机执行上述导风方法。
上述的计算机可读存储介质可以是暂态计算机可读存储介质,也可以是非暂态计算机可读存储介质。
本公开实施例提供了一种电子设备,其结构如图11所示,该电子设备包括:
至少一个处理器(processor)1100,图11中以一个处理器1100为例;和存储器(memory)1101,还可以包括通信接口(Communication Interface)1102和总线1103。其中,处理器1100、通信接口1102、存储器1101可以通过总线1103完成相互间的通信。通信接口1102可以用于信息传输。处理器1100可以调用存储器1101中的逻辑指令,以执行上述实施例中的导风方法。
此外,上述的存储器1101中的逻辑指令可以通过软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。
存储器1101作为一种计算机可读存储介质,可用于存储软件程序、计算机可执行程序,如本公开实施例中的方法对应的程序指令/模块。处理器1100通过运行存储在存储器1101中的软件程序、指令以及模块,从而执行功能应用以及数据处理,即实现上述方法实施例中的导风方法。
存储器1101可包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序;存储数据区可存储根据终端设备的使用所创建的数据等。此外,存储器1101可以包括高速随机存取存储器,还可以包括非易失性存储器。
本公开实施例的技术方案可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括一个或多个指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本公开实施例所述方法的全部或部分步骤。而前述的存储介质可以是非暂态存储介质,包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等多种可以存储程序代码的介质,也可以是暂态存储介质。
以上描述和附图充分地示出了本公开的实施例,以使本领域的技术人员能够实践它们。其他实施例可以包括结构的、逻辑的、电气的、过程的以及其他的改变。实施例仅代表可能的变化。除非明确要求,否则单独的部件和功能是可选的,并且操作的顺序可以变化。一些实施例的部分和特征可以被包括在或替换其他实施例的部分和特征。本公开实施例的范围包括权利要求书的整个范围,以及权利要求书的所有可获得的等同物。当用于本申请中时,虽然术语“第一”、“第二”等可能会在本申请中使用以描述各元件,但这些元件不应受到这些术语的限制。这些术语仅用于将一个元件与另一个元件区别开。本申请中使用的用词仅用于描述实施例并且不用于限制权利要求。如在实施例以及权利要求的描述中使用的,除非上下文清楚地表明,否则单数形式的“一个”(a)、“一个”(an)和“所述”(the)旨在同样包括复数形式。另外,当用于本申请中时,术语“包括”(comprise)及其变型“包括”(comprises)和/或包括(comprising)等指陈述的特征、整体、步骤、操作、元素,和/或组件的存在,但不排除一个或一个以上其它特征、整体、步骤、操作、元素、组件和/或这些的分组的存在或添加。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法或者设备中还存在另外的相同要素。本文中,每个实施例重点说明的可以是与其他实施例的不同之处,各个实施例之间相同相似部分可以互相参见。对于实施例公开的方法、产品等而言,如果其与实施例公开的方法部分相对应,那么相关之处可以参见方法部分的描述。
本领域技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,可以取决于技术方案的特定应用和设计约束条件。所述技术人员可以对每个特定的应用来使用不同方法以实现所描述的功能,但是这种实现不应认为超出本公开实施例的范围。所述技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统、装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
附图中的流程图和框图显示了根据本公开实施例的系统、方法和计算机程序产品的可能实现的体系架构、功能和操作。在这点上,流程图或框图中的每个方框可以代表一个模块、程序段或代码的一部分,所述模块、程序段或代码的一部分包含一个或多个用于实现规定的逻辑功能的可执行指令。在有些作为替换的实现中,方框中所标注的功能也可以以不同于附图中所标注的顺序发生。例如,两个连续的方框实际上可以基本并行地执行,它们有时也可以按相反的顺序执行,这可以依所涉及的功能而定。框图和/或流程图中的每个方框、以及框图和/或流程图中的方框的组合,可以用执行规定的功能或动作的专用的基于硬件的系统来实现,或者可以用专用硬件与计算机指令的组合来实现。

Claims (10)

  1. 一种导风装置,其特征在于,包括:齿条、齿轮、齿条支架、第一驱动电机、第一控制单元以及辅助导风板;
    所述齿条装配在齿条支架中,其一端伸出齿条支架且与辅助导风板固定连接,其另一端在齿条支架内部移动,所述齿条上设置有与齿轮相啮合的齿;
    所述第一控制单元控制所述第一驱动电机的转角,所述第一驱动电机的输出轴与所述齿轮相连接,驱动所述齿条沿齿条支架的预设轨道移动,所述齿条推动所述辅助导风板到预设位置。
  2. 如权利要求1所述的装置,其特征在于,所述齿条包括设置在前端的连接部、中部的啮合部和后端的导向翼;所述连接部设置在齿条前端,伸出齿条支架与所述辅助导风板固定连接;所述啮合部设置在齿条中部,其整体为圆弧形,弧面上设置有用于与所述齿轮相啮合的齿;所述导向翼固定在所述啮合部后端外侧,整体为半圆形结构,其圆弧面与齿条支架的轨道相接触,其平面上设置有缺口,该缺口与所述齿轮外侧设置的限位块相适配;
    所述齿条支架包括导向部和限位部,导向部上设置有所述齿条的行进轨道,所述限位部整体为半圆形,设置在导向部底端,导向部上的轨道延伸到限位部;当导向翼到达齿条支架导向部底端时,齿轮上的限位块与导向翼的缺口相卡和,齿条以齿轮圆心为中心沿限位部上的轨道进行旋转运动。
  3. 如权利要求2所述的装置,其特征在于,所述齿条支架上导向部的轨道直径大于限位部的轨道直径。
  4. 如权利要求1所述的装置,其特征在于,还包括第二驱动电机,所述第二驱动电机安装在所述齿条前端的连接部,其输出轴与所述辅助导风板相连接,用于调节所述辅助导风板的角度。
  5. 一种导风方法,其特征在于,用于控制权利要求1至4任一项所述的装置,包括:
    获取空调器的出风方向;
    根据空调器的出风方向控制所述辅助导风板的位置。
  6. 如权利要求5所述的方法,其特征在于,所述辅助导风板的预设位置是与空调器出风口出风方向相垂直的位置。
  7. 如权利要求5所述的方法,其特征在于,还包括:
    根据指令控制所述辅助导风板的角度。
  8. 一种空调器,其特征在于,还包括如权利要求1至4任一项所述的导风装置。
  9. 一种计算机设备,包括存储器、处理器及存储在所述存储器上并可被所述处理器运行的程序,其特征在于,所述处理器执行所述程序时实现如权利要求5至7任一项所述的方法。
  10. 一种存储介质,其上存储有计算机程序,其特征在于,当所述计算机程序被处理器执行时实现如权利要求5至7任一项所述的方法。
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