WO2022252735A1 - 空调室内机 - Google Patents

空调室内机 Download PDF

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Publication number
WO2022252735A1
WO2022252735A1 PCT/CN2022/080195 CN2022080195W WO2022252735A1 WO 2022252735 A1 WO2022252735 A1 WO 2022252735A1 CN 2022080195 W CN2022080195 W CN 2022080195W WO 2022252735 A1 WO2022252735 A1 WO 2022252735A1
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WO
WIPO (PCT)
Prior art keywords
air
guide
rack
air outlet
indoor unit
Prior art date
Application number
PCT/CN2022/080195
Other languages
English (en)
French (fr)
Inventor
覃强
宋英杰
周何杰
周向阳
王波
杨帆
王艺璨
雍文涛
Original Assignee
广东美的制冷设备有限公司
美的集团股份有限公司
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.)
Filing date
Publication date
Priority claimed from CN202110602664.5A external-priority patent/CN115479304A/zh
Priority claimed from CN202121204303.7U external-priority patent/CN214791477U/zh
Application filed by 广东美的制冷设备有限公司, 美的集团股份有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2022252735A1 publication Critical patent/WO2022252735A1/zh

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Classifications

    • 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
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0011Indoor units, e.g. fan coil units characterised by air outlets
    • 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
    • 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
    • F24F13/20Casings or covers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H19/00Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion
    • F16H19/02Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion for interconverting rotary or oscillating motion and reciprocating motion
    • F16H19/04Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion for interconverting rotary or oscillating motion and reciprocating motion comprising a rack

Definitions

  • the present application relates to the field of air conditioners, in particular to an air conditioner indoor unit.
  • traditional air-conditioning indoor units generally design the air deflector inside the air outlet, and usually design a plurality of parallel air deflector structures, and the multiple air deflectors are connected by connecting rods, and the motor drives them One air deflector rotates, thereby driving all the air deflectors to rotate.
  • the rotating air deflector scheme inside the traditional air outlet has a small air supply angle and a short lateral air supply distance, and the generated air volume is small when preventing direct blowing. poor comfort.
  • an object of the present application is to propose an air-conditioning indoor unit, the air-conditioning indoor unit avoids blowing directly to the user from the air outlet, and at the same time, there are no air-dispersing parts to block the airflow, the flow rate of the airflow is large, the air volume is sufficient, and the air guide
  • the movement trajectory of the parts is simple, the opening and closing control of the air outlet of the air conditioner is more convenient, no complicated transmission structure is required, the number of parts of the air conditioner is reduced, the cost of the air conditioner is reduced, and the stability of the air conditioner is improved.
  • the air conditioner indoor unit includes: a casing, the casing is provided with an air outlet; An air outlet; a mobile driving device, the mobile driving device is arranged on the casing, and the mobile driving device is connected with the air guide and drives the air guide to open or close the air outlet; wherein the mobile drive The device is adapted to drive the air guide to move between a first position and a second position when the air outlet is open; in the first position, the air guide is in contact with the first side of the air outlet Cooperate to guide air toward the second side of the air outlet; in the second position, the air guide cooperates with the second side of the air outlet to face the first side of the air outlet Air guide: between the first position and the second position, an air outlet channel is defined between the air guide member and the first side and the second side of the air outlet respectively.
  • the opening and closing of the air outlet is realized by controlling the forward and backward movement of the air guide.
  • the moving track of the air guide is simple, which makes the opening and closing control of the air outlet of the air conditioner more convenient, and does not require complex transmission structures. , reducing the number of parts of the air conditioner, reducing the cost of the air conditioner, and improving the stability of the air conditioner.
  • Fig. 1 is a schematic structural view of an air conditioner indoor unit closing body according to an embodiment of the present application
  • Fig. 2 is a front view of an air conditioner indoor unit in a closed state according to an embodiment of the present application
  • Fig. 3 is the sectional view of A-A section among Fig. 2;
  • Fig. 4 is a schematic structural diagram of an air conditioner indoor unit in a three-way air outlet state according to an embodiment of the present application
  • Fig. 5 is a cross-sectional view of an air conditioner indoor unit in a three-way air outlet state according to an embodiment of the present application
  • Fig. 6 is a schematic structural diagram of the air outlet state on both sides of the air conditioner indoor unit according to the embodiment of the present application;
  • Fig. 7 is a cross-sectional view of the air outlet state on both sides of the air conditioner indoor unit according to the embodiment of the present application;
  • Fig. 8 is a schematic structural diagram of air outlet from the front side of an air conditioner indoor unit according to an embodiment of the present application.
  • Fig. 9 is a structural cross-sectional view of the front air outlet of the air conditioner indoor unit according to the embodiment of the present application.
  • Fig. 10 is a schematic structural diagram of a mobile driving device and a sliding surface driving assembly according to an embodiment of the present application
  • Fig. 11 is a schematic diagram of cooperation between a mobile drive device and an air guide according to an embodiment of the present application.
  • Fig. 12 is a schematic diagram of the assembly of the mobile driving device and the air guide according to the embodiment of the present application.
  • FIG. 13 is an exploded view of a mobile driving device according to an embodiment of the present application.
  • Fig. 14 is an exploded view of a mobile drive device and a rotational drive mechanism according to an embodiment of the present application
  • Fig. 15 is a schematic structural diagram of a switch door according to an embodiment of the present application.
  • 16 is an exploded view of a sliding door drive assembly according to an embodiment of the present application.
  • Fig. 17 is a structural schematic diagram of an air conditioner indoor unit whose switch door is a swing door according to an embodiment of the present application;
  • Fig. 18 is a cross-sectional view of an air conditioner indoor unit whose switch door is a revolving door according to an embodiment of the present application;
  • Fig. 19 is a schematic structural view of an air conditioner indoor unit with a switch door provided on the outside of the air guide according to an embodiment of the present application;
  • Fig. 20 is a cross-sectional view of an air conditioner indoor unit with a switch door provided on the outside of the air guide according to an embodiment of the present application;
  • Fig. 21 is a structural cross-sectional view of an air conditioner indoor unit with the air guide in the first position according to an embodiment of the present application;
  • Fig. 22 is a structural sectional view of an air conditioner indoor unit with the air guide in the second position according to an embodiment of the present application;
  • Fig. 23 is a structural cross-sectional view of an air conditioner indoor unit in a state where the air guides are separated from each other according to an embodiment of the present application;
  • Fig. 24 is a structural sectional view of an air conditioner indoor unit according to other embodiments of the present application.
  • Fig. 24 is a schematic diagram of cooperation between the air guide and the mobile driving device according to the embodiment of the present application.
  • Fig. 25 is an exploded view of an air guide and a mobile driving device according to an embodiment of the present application.
  • Fig. 26 is a schematic structural diagram of a mobile driving device according to other embodiments of the present application.
  • Fig. 27 is a schematic diagram of a mobile driving device driving the air guide to move back and forth according to other embodiments of the present application;
  • Fig. 28 is a schematic diagram of a mobile driving device driving the air guide to move back and forth according to other embodiments of the present application;
  • Fig. 29 is a schematic diagram of a mobile driving device driving the air guide to swing left and right according to other embodiments of the present application;
  • Fig. 30 is a schematic diagram of the mobile driving device driving the air guide to move backward to open the air outlet according to other embodiments of the present application;
  • Fig. 31 is a cross-sectional view of an air guide member closing an air outlet according to other embodiments of the present application.
  • Fig. 32 is a cross-sectional view of the air guide when the air outlet is opened according to other embodiments of the present application.
  • Fig. 33 is a cross-sectional view of the air guides according to other embodiments of the present application when they are accommodated in the avoidance space away from each other and the air outlet is opened;
  • Fig. 34 is a cross-sectional view of an air guide in a first position according to other embodiments of the present application.
  • Air conditioner indoor unit 1 Air conditioner indoor unit 1,
  • the casing 11 The casing 11, the air outlet 111, the avoidance space 112, the air duct part 113, the windshield 114,
  • Air guide 12 air guide surface 121, inner air guide 122, outer air guide 123, air guide box frame 124, air guide box cover 125, air guide box seat 126
  • Base 1351a first guide column 1352a, sliding block 1353a, first guide groove 1354a,
  • Rotate drive mechanism 14 drive shaft 141, rotate motor 142,
  • Switch door 15 sliding door driving assembly 150, sliding door box seat 151, first track 1511, second track 1512, sliding rack 152, pivot shaft 1521, limit post 1522, swing plate 153, pivot hole 1531, limit Position slot 1532, second driving member 154, air guide edge 155, sliding door box cover 156,
  • the air conditioner according to the present application is provided with an organic casing 11, an air guide 12 and a mobile driving device 13, and the air guide 12 according to the present application can be movably arranged at the air outlet 111, and by moving to change the air outlet 111. the direction of the wind.
  • the moving driving device 13 is disposed on the casing 11 and connected to the air guide 12 to drive the air guide 12 to move between the first position and the second position.
  • Traditional air-conditioning indoor units generally design the air deflector inside the air outlet, and usually design a plurality of parallel air deflector structures.
  • the multiple air deflectors are connected by connecting rods, and the motor drives one of the air deflectors.
  • the plate rotates, thereby driving all the air deflectors to rotate.
  • the traditional rotating air deflector scheme inside the air outlet has a small air supply angle and a short lateral air supply distance. When preventing direct blowing, the air volume generated is small and the comfort is poor.
  • a mobile driving device 13 is provided, and the mobile driving device 13 drives the air guide 12 to move between the first position and the second position, so that the indoor unit in the air conditioner room has a variety of different air outlet modes. , in the process of preventing direct blowing, it can provide sufficient air volume and increase the comfort of the indoor unit 1 of the air conditioner
  • the air guide 12 when the mobile driving device 13 drives the air guide 12 to move to the first position, the air guide 12 cooperates with the first side of the air outlet 111 to guide the air toward the second side of the air outlet 111;
  • the air guide 12 cooperates with the second side of the air outlet 111 to guide the air toward the first side of the air outlet 111 .
  • the first side of the air outlet 111 and the second side of the air outlet 111 can refer to both sides of the air outlet 111 in the width direction.
  • the air guide 12 and The cooperation between the first side of the air outlet 111 can be overlapped, staggered or stopped, but not limited to the above-mentioned cooperation method, the purpose of the cooperation between the air guide 12 and the side of the air outlet 111 is to limit the flow of air from the air guide 12 and the outlet. Air is released between the first sides of the air outlets 111 .
  • the cooperation between the air guide 12 and the second side of the air outlet 111 can be overlapped, interlaced or stopped, but not limited to the above-mentioned cooperation method.
  • the purpose of the cooperation between the two sides of the air outlet 111 is to restrict the airflow from exiting between the air guide 12 and the second side of the air outlet 111 .
  • there is a large gap between the air guide 12 and the first side of the air outlet 111 most of the air flow can be derived from the gap between the air guide 12 and the air outlet 111, and the air flow at this time is large.
  • the air flow at this time will bypass the user to prevent the cold wind from blowing directly, and there are no air diffusers to block the air flow, so the flow rate of the air flow is large and the air volume is sufficient.
  • the air guide 12 can also move between the first position and the second position, between the air guide 12 and the first side of the air outlet 111, the air guide 12 and the second side of the air outlet 111
  • the air outlet passages are defined between the sides, so that the airflow can pass through the two sides. Since the air guide 12 is located in the middle of the air outlet 111, the airflow is prevented from blowing directly to the user, and the air-cooled wind is blown directly.
  • the airflow blown out through the air outlet channels on both sides forms the effect of enveloping the airflow, which can quickly and evenly reduce the indoor air temperature, and at the same time quickly cool down the wall, which solves the heat effect of the furnace in hot summer.
  • the air conditioner indoor unit 1 of the present application by setting the air guide 12 to move between the first position and the second position, on the one hand, it avoids direct blowing of the air outlet 111 to the user, and at the same time ensures the air volume of the indoor air.
  • the air condition of the user in the air-conditioning indoor unit 1 is improved, the user experience is improved, and the cooling effect of the air-conditioning indoor unit 1 is enhanced.
  • the air guides 12 are constructed in multiples, and the multiple air guides 12 can move synchronously after being combined, and the airflow cannot pass between two adjacent air guides 12 .
  • the plurality of air guides 12 move between the first position, the second position, and the first position and the second position, so as to change the air outlet direction and the air outlet mode.
  • the plurality of air guides 12 can be selectively separated from each other to define an air outlet channel between two adjacent air guides 12 .
  • the airflow can pass between two adjacent air guides 12 so that the air conditioner indoor unit 1 can discharge air from the front.
  • a first air outlet passage is formed between the air guide 12 on the side and the first side of the air outlet 111
  • a second air outlet is formed between the air guide 12 adjacent to the second side of the air outlet 111 and the second side of the air outlet 111.
  • a third air outlet channel is formed between two adjacent air guides 12, a plurality of air outlet channels can carry out wind flow to the air flow, and the third air outlet channel is facing the user, but the air volume is small, and the air flow of the air outlet The sense is weak, but the user experience is good.
  • the first air outlet channel and the second air outlet channel form an airflow that surrounds the indoor space, so as to form an environmentally friendly airflow and improve the cooling effect on the room.
  • the air outlet modes of the air conditioner indoor unit 1 are enriched, the user's choice space is further improved, the air conditioner indoor unit 1 can better meet the user's use requirements, and the user's use experience is improved.
  • the air guide 12 has an air guide surface 121, and the air guide surface 121 is configured as an arc-shaped surface protruding toward the outside of the casing 11.
  • the air guide 12 can be kept facing the air outlet 111, and the air guide The wind surface 121 is used to guide the airflow blown out by the air outlet 111.
  • the airflow surface 121 is configured as a curved surface, which can reduce the loss of the airflow velocity during the airflow guidance process of the airflow guide 12, and improve the efficiency of the indoor unit 1 of the air conditioner. air supply efficiency.
  • the air guide surface 121 is configured to protrude toward the outside of the casing 11.
  • the arc-shaped surface allows the airflow to flow along the arc-shaped surface of the air-guiding surface 121 when blowing on the air-guiding surface 121, thereby reducing the friction between the air-flow and the air-guiding surface 121 when changing the wind-out direction, and also reducing the airflow
  • the noise generated by the friction with the air guide member 12 further optimizes the use effect of the air conditioner indoor unit 1 .
  • the wind deflector 12 includes an inner wind deflector 122 and an outer wind deflector 123.
  • the wind deflector 123 is positioned at the outside of the inner wind deflector 122, and a cavity is defined between the outer wind deflector 123 and the inner wind deflector 122, and the wind deflector 12 is provided with a structure consisting of the inner wind deflector 122 and the outer wind deflector 123.
  • the manufacturing difficulty of the air guide 12 is reduced, and a cavity is provided between the inner air guide 122 and the outer air guide 123 to reduce the weight of the air guide 12, thereby reducing the overall weight of the air conditioner indoor unit 1 , saving the cost of the air conditioner.
  • the ends of the outer wind deflector 123 and the inner wind deflector 122 cooperate, and the ends mentioned here can be the outer periphery of the outer wind deflector 123 and the outer periphery of the inner wind deflector 122, and the outer periphery of the outer wind deflector 123
  • a plurality of first connecting parts may be provided on the inner wind deflector 122, and a plurality of second connecting parts matching with the first connecting parts may be arranged on the outer periphery of the inner wind deflector 122, and the first connecting part and the second connecting part may pass through
  • the outer air deflector 123 and the inner air deflector 122 are fixed by clamping, screwing and other methods to form a complete air deflector structure.
  • the snap fit between the outer wind deflector 123 and the inner wind deflector 122 can reduce the difficulty of cooperation between the inner wind deflector 122 and the outer wind deflector 123, the snap fit is firm, and the first connecting part and the second
  • the two connecting parts can be respectively formed on the inner wind deflector 122 and the outer wind deflector 123, which are easy to form, and can be clamped and fitted during the subsequent assembly process of the inner wind deflector 122 and the outer wind deflector 123, thus eliminating the need for a separate
  • the advanced assembly process helps to improve the production rhythm.
  • the outer surface of the outer air deflector 123 is configured as a convex arc surface, and the arc surface may be the same as the roundness of the outer surface of the casing 11, so that the air guide 12 is closed. In the state of the air outlet 111 , it overlaps or cooperates with the casing 11 to form an appearance surface with the same curvature, thereby improving the aesthetics of the air guide 12 when the air outlet 111 is closed.
  • an air outlet grill is provided at the air outlet 111 .
  • the cross section of the air guide 12 when there is one air guide 12, can be configured as a triangle, a wedge, and a moon arc; when there are multiple air guides 12, the multiple air guides 12
  • the structures formed after the combination are triangular, wedge-shaped and crescent-shaped.
  • the cross-section of the air guide 12 mentioned here is the cross-section formed by the combination of multiple air guides 12 .
  • the air guide 12 when there are one or more air guides 12, in the scheme in which the cross section of the air guide 12 or the combination of the air guides 12 is triangular, the air guide 12 can be configured as an isosceles obtuse triangle, and the angle of the obtuse triangle is the same as that of the obtuse triangle.
  • the air outlet 111 is facing directly, and the long side of the triangle is located on the side away from the air outlet 111 .
  • the mobile driving device 13 includes a guide and a transmission.
  • the transmission can cooperate with the guide to move along a preset movement track under the guidance of the guide.
  • the guide can be used to limit The direction of movement of the transmission part enables the transmission part to complete the prescribed motion trajectory.
  • the transmission part is used to connect the air guide part 12.
  • the motion trajectory of the air guide part 12 and the transmission part is the same.
  • the transmission part can be located inside the casing 11, and the matching relationship between the transmission part and the guide part cannot be directly observed outside the casing 11. , to protect the internal drive mechanism.
  • the casing 11 can be used to protect the transmission part and the guide part, and the guide part can be configured as a slide rail 131, a guide rail, a chute 1311, etc. have the same track structure as the track of the preset air guide part 12, and the transmission part and the guide part Cooperate to limit the movement of the transmission member along the guide rail structure in the preset track, so as to ensure the stability and reliability of the air guide member 12 during the moving process.
  • the mobile driving device 13 further includes a first driving member 134 , which is linked with the transmission member and adapted to drive the transmission member to drive the air guide 12 to move from the first position to the second position.
  • the first driving part 134 is the driving part of the mobile driving device 13, and is the power source for the movement of the air guiding part 12.
  • the first driving part 134 can drive the transmission part to move, so that the transmission part moves along the preset track of the guide part. , the wind guide 12 also moves accordingly.
  • the trajectory of the guide is the same as that of the air guide 12, both having a first position and a second position.
  • the air guide 12 Correspondingly moving to the first position, when the transmission member moves to the other end of the guide track corresponding to the second position, the air guide 12 correspondingly moves to the second position.
  • the first driving part 134 can drive the transmission part to move according to the track of the guide part, so as to complete the whole transmission structure.
  • the guide member is configured as a slide rail 131
  • the transmission member includes a rack 132.
  • the rack 132 cooperates with the slide rail 131 and moves along the extending direction of the slide rail 131.
  • the rack 132 Connected with the air guiding part 12, the first driving part 134 is configured as a driving motor, the output end of the driving motor is provided with a gear 133 meshed with the rack 132, and the gear 133 meshes with the rack 132 so as to be suitable for transmitting driving force to the rack 132 , after the gear 133 rotates, the teeth on the gear 133 in the circumferential direction mesh with the teeth on the rack 132, and the teeth on the rack 132 extend in its length direction and are arranged sequentially, so after the gear 133 rotates, it is equivalent to the teeth of the gear 133 Climb continuously on the rack 132, so that the relative movement between the gear 133 and the rack 132 occurs, and the motor is fixed on the casing 11.
  • the motor drives the gear Bar 132 moves.
  • the rack 132 can be configured as an arc-shaped rack 132, the gear 133 meshes with the teeth on one side of the arc-shaped rack 132, and the track of the slide rail 131 is also configured as an arc, so that The relative friction between the rack 132 and the slide rail 131 will not occur, and the rack 132 is prevented from detaching from the track of the slide rail 131 .
  • the rack 132 is provided with a plurality of limiting columns 1522, and the plurality of limiting columns 1522 are arranged at intervals in the extending direction of the rack 132, and the plurality of limiting columns 1522 are connected to the rack 132 or
  • the distances between the centers of the arcs formed by the orbits are the same.
  • the radius of the arc of the moving track of the rack 132 is the same as the distance between the plurality of limiting posts 1522 and the center of the moving track of the rack 132, and the moving tracks of the plurality of limiting posts 1522 also fall into the slide rail. 131 on the arc formed. Therefore, the detachment of the rack 132 from the slide rail 131 is further restricted, and the stability of the relative movement between the rack 132 and the slide rail 131 is improved.
  • the air guide 12, the rack 132, the gear 133, the slide rail 131 and the first driving member 134 are all configured in two, and the two air guides 12 can be combined to move to the first position synchronously Or move to the second position synchronously, no wind can be released between two adjacent air guides 12, and the two air guides 12 move together to avoid the front air outlet 111 from blowing cold wind directly to the user, and at the same time can realize Long-distance air supply mode with side air supply.
  • the combination of the two air guides 12 can be configured as a structure with a thick middle and thin ends, and each air guide 12 is configured as a crescent arc.
  • the crescent arc described here means that both the inner surface and the outer surface are convex outward. out of the curved surface.
  • the two air guides 12 can also move relatively away from each other to form an air outlet channel between the two air guides 12, so that part of the air flow can pass through the two air guides 12 to discharge the wind, so as to control the air outlet.
  • Air blowing is carried out in the forward direction of the air outlet 111 to increase the air volume of the air outlet 111 on the front side of the air conditioner indoor unit 1 .
  • the two wind guides 12 need to move synchronously and relative to each other, it is necessary to set up two sets of independent mobile drive devices 13. There are two of them, so that the two air guiding elements 12 are configured to move independently relative to each other, and the synchronous movement of the two air guiding elements 12 is also realized under the control of two corresponding first driving elements 134 .
  • the two gears 133 are meshed with the two racks 132 respectively, so that each gear 133 drives the corresponding rack 132 to move along the corresponding slide rail 131, so as to ensure that the two air guides 12 can be mounted on their respective cabinets.
  • the two first driving parts 134 correspond to the two gears 133 respectively, and each first driving part 134 controls the corresponding gear 133 so that the air guiding part 12 moves accordingly.
  • the two air guiding elements 12 are far away from each other, and can be controlled under the driving of a first driving element 134, and the first driving element 134 can drive a gear 133 corresponding to the two air guiding elements 12
  • the racks 132 are provided with teeth meshing with the gear 133 on the surfaces facing each other.
  • the gear 133 is arranged between the two racks 132. When the gear 133 rotates, the two racks 132 move away from each other, so that Make the corresponding two air guides 12 away from each other to open the air guide channel between the two air guides 12 .
  • the two air guides 12 and the racks 132 that drive the two air guides 12 can move under the drive of another driving device, and the two air guides 12 can be driven by another first driving member while maintaining the merged state. Driven by 134, it moves between the first position and the second position, so as to realize the single-side air outlet of the air conditioner indoor unit 1 .
  • the two slide rails 131 are configured as arc-shaped slide rails 131 and arranged concentrically and with equal radii.
  • the cabinet machine is the same, when the two air guides 12 move in the direction away from each other, the moving tracks of the two air guides 12 can be developed along the appearance surface of the cabinet 11, so that the two air guides 12 move away from each other During the process, the distance between the central line in the width direction of the air outlet 111 is kept the same, so as to ensure the uniformity of the air outlet of the air conditioner indoor unit 1 .
  • the casing 11 is provided with an air guide frame 124, and the upper and lower sides of the air guide frame 124 are respectively provided with concentric and equal-radius slide rails 131.
  • Parts box frame 124 is also configured as an arc shape, and an air guide part box cover 125 is provided on the upper side of the air guide part box frame 124, and an air guide part box seat 126 is provided on the lower side of the air guide part box frame 124.
  • the air part box cover 125, the air guide part box seat 126 and the upper and lower sides of the air guide part box frame 124 respectively define a space spaced apart from each other and suitable for the movement of the rack 132.
  • the rack 132 is configured in two and cooperates respectively.
  • a gear 133 meshing with the rack 132 is provided in the corresponding space, and the motor is arranged on the upper side of the air guide box cover 125 or the air guide box seat 126 On the lower side of the motor, the output shaft of the motor extends into the space and is connected with the gear 133 to drive the gear 133 to rotate.
  • the gear 133 drives the corresponding rack 132 to move along the slide rail 131 .
  • the rack 132 can be provided with a mating pin that passes through the air guide box cover 125 or the air guide box seat 126, and the mating pin can be exposed to the mobile drive device 13, at the upper end of the air guide 12 Or the lower end, the upper and lower ends of the air guide 12 are provided with pin holes that are mated with the mating pins, and the mating pins are inserted into the pin holes, so that the motor drives the gear 133 to rotate so that the air guide 12 remains in the first position , the second position or moving between the first position and the second position, a plurality of mating pins cooperate with the corresponding air guides 12, so that the plurality of air guides 12 can be selectively moved away from each other to form a pattern between each other wind channel.
  • the sliding rails 131 each include a slide groove 1311 disposed on at least one side of the corresponding rack 132 in the thickness direction, and a sliding post 1321 is provided on the corresponding side of each rack 132 in the thickness direction.
  • the sliding post 1321 is matched with the corresponding sliding slot 1311 .
  • the slide rail 131 can be arranged on the air guide box frame 124, and two slide rails 131 are respectively arranged on the upper and lower surfaces of the air guide box frame 124, and the slide rail 131 is formed by a chute 1311, and the chute 1311 can It is configured as two protruding ribs arranged on the upper and lower surfaces of the air guide box frame 124, a slide rail 131 is formed between the two protruding ribs, and each rack 132 is provided with a sliding column 1321 to be embedded in the chute 1311 , and move along the preset trajectory under the limitation of two raised ribs.
  • the edge of adjacent chute 1311 is provided with the through hole that is suitable for cooperating bolt to pass through, can make the mating pin on the rack 132 on the upper side of the air guide box frame 124 or the tooth on the lower side of the air guide box frame 124
  • the matching pin on the bar 132 is used so that the matching pin can pass through the air guide box frame 124 and be connected with the corresponding air guide 12 .
  • each mobile driving device 13 there are two mobile driving devices 13 and they are arranged on the casing 11 on both sides of the air guide 12 in the longitudinal direction, and each mobile driving device 13 may be provided with two racks 132, two guide rails and two first driving parts 134, the two racks 132 on the mobile driving device 13 on the upper and lower sides face each other, and the upper and lower sides of an air guiding part 12 are respectively driven by a rack 132 , so that the movement of the wind guide 12 is stable.
  • only one of the mobile driving devices 13 on the upper and lower sides may be provided with a motor, while the other mobile driving device 13 may only be provided with slide rails 131 and guide grooves only for guiding the wind.
  • the movement of the component 12 plays a guiding role to reduce the cost of the air conditioner indoor unit 1 .
  • a motor can be provided in each of the mobile driving devices 13 on the upper and lower sides, and the mobile driving devices 13 on the upper and lower sides can each be connected to one of the two air guides 12 To drive to direct another.
  • two motors are provided on one of the mobile driving devices 13 on the upper and lower sides, and no motor is provided on the other of the mobile driving devices 13 on the upper and lower sides.
  • each air guide 12 can be driven to rotate around the matching bolt and installed on the mobile driving device 13, so that the air guide 12 has a larger adjustment range of the air outlet angle of the air conditioner indoor unit.
  • each air guide 12 When each air guide 12 is in the first position, the distance between the second side of the air outlet 111 is increased by rotation to adjust the air output of the air guide 12 at the first position; when each air guide When 12 is in the second position, the distance from the first side of the air outlet 111 is increased by self-rotation to adjust the air output of the air guide 12 at the second position; when the two air guides 12 are far away from each other to
  • an air outlet passage is formed between two air guide members 12, the size of the air outlet passage between the two air guide members 12 can be changed by the rotation of the air guide member 12, thereby controlling the air outlet between the two air guide members 12.
  • the outlet air volume of the channel When each air guide 12 is in the first position, the distance between the second side of the air outlet 111 is increased by rotation to adjust the air output of the air guide 12 at the first position; when each air guide When 12 is in the second position, the distance from the first side of the air outlet 111 is increased by self-rotation to adjust the air output of the air guide 12 at the second position
  • the rack 132 is arranged on one side of the corresponding air guide member 12 in the length direction.
  • the length direction referred to here may be the height direction, and the air guide member 12 may be in The height direction is extended to be configured as a strip-shaped air guide 12, and the air guide 12 is provided with matching holes facing the corresponding rack 132.
  • the upper and lower end faces of the air guide 12 can be respectively connected to the The mobile driving device 13 on the side or the mobile driving device 13 on the lower side is facing each other, matching holes are respectively provided on the upper and lower end surfaces of the wind guide 12 , and through holes 1222 are provided on each rack 132 .
  • a rotation drive mechanism 14 is also provided on the air conditioner indoor unit, and the rotation drive mechanism 14 is suitable for driving the air guide 12 to rotate to change the angle of the air guide 12 so as to adjust the air outlet direction of the air conditioner indoor unit 1 .
  • the rotation drive mechanism 14 includes a drive shaft 141 and a rotation motor 142.
  • the drive shaft 141 passes through the through hole 1222 to make the drive shaft 141 idle relative to the corresponding rack 132.
  • the drive shaft 141 is mated to the matching hole so that the drive shaft 141 drives the corresponding air guide. 12 rotation, it should be noted here that the drive shaft 141 remains relatively stationary with the rack 132, and the drive shaft 141 can move with the rack 132.
  • the drive shaft 141 After the drive shaft 141 passes through the through hole 1222 on the rack 132, there is no contact between the drive shaft 141 and the inner peripheral wall of the through hole 1222, so as to avoid interference between the drive shaft 141 and the rack 132, the drive shaft 141 can be On the one hand, it is used to drive the air guide 12 to move with the movement of the rack 132; 12 angles of the piece.
  • the drive shaft 141 and the air guide 12 can be constructed in a one-to-one correspondence, and each air guide 12 corresponds to at least one drive shaft 141 corresponding to the drive shaft 141.
  • the air guide 12 corresponds to two drive shafts 141
  • the two drive shafts 141 extend in the same direction and drive the wind guide 12 to rotate on the upper and lower sides respectively.
  • the rotation drive mechanism 14 also includes a rotation motor 142, the rotation motor 142 corresponds to the drive shaft 141 respectively, the rotation motor 142 drives the corresponding drive shaft 141 to rotate, and the drive shaft 141 rotates under the drive of the rotation motor 142 And the driving force is transmitted to the air guide 12 , the rotating motor 142 is used as the driving device during the rotation of the air guide 12 , and the rotation angle of the air guide 12 is controlled by controlling the rotating motor 142 .
  • the rotating motor 142 can be arranged on the rack 132 to move synchronously with the rack 132. During the movement of the rack 132, the rotating motor 142 and the drive shaft 141 all move synchronously to ensure that the rotating drive mechanism 14 is independent from the driving process of the mobile drive mechanism on the air guide 12, which improves the reliability of the movement of the air guide 12.
  • the indoor unit of the air conditioner further includes a switch door component.
  • the switch door component includes two switch doors 15 extending in the vertical direction. Two switch doors 15 are respectively movable between the closed position and the open position, and the two switch doors 15 can be moved to the closed position, so that the switch doors 15 are adjacent to the wind guide 12, when the two switch doors 15 are moved to the open position , the wind guide 12 can selectively move between the first position and the second position.
  • the opening and closing parts can be arranged on the outer periphery of the casing 11.
  • the opening and closing door 15 and the air guide 12 are adjacent to each other. Part of the edge of the air guide 12 is in contact with each other to join together.
  • the part of the air guide 12 is facing the air outlet 111, and the edges on both sides of the air guide 12 are adjacent to the switch door 15 to keep the switch door 15 in line with the guide.
  • the wind parts 12 together constitute the exterior surface of the casing 11 .
  • the two switch doors 15 are far away from each other, so as to avoid the moving track of the air guide 12, especially the switch door 15 can be far away from the first position and the second position, so that the air guide 12 Interference with the switch door 15 is avoided during the movement process between the first position and the second position.
  • the air conditioner indoor unit 1 of the present application by setting the switch door 15 to move between the open position and the closed position, the closed position and the air guide 12 form a complete appearance surface, which improves the air conditioner indoor unit. 1, reduces the action angle of the opening and closing door 15, improves the sense of technology of the air conditioner indoor unit 1, and increases the stability of the opening and closing door 15 during the action.
  • the indoor unit of the air conditioner includes a switch door component
  • the switch door component includes two switch doors 15 extending vertically.
  • the doors 15 are respectively movable between a closed position and an open position, and the two switch doors 15 can move to the closed position to cover the wind guide 12 .
  • the opening and closing door 15 When the opening and closing door 15 is in the closed state, the air outlet 111 will be covered to close the air outlet 111.
  • the opening and closing door 15 not only closes the air outlet 111 but also is used to close the air guide 12 located at the air outlet 111.
  • the opening and closing door 15 has a large coverage in the closed state, and can effectively protect the outer surface of the wind guiding surface 121 in the closed state.
  • the switch door 15 is configured as a swing door, and the rear edge of the switch door 15 is hinged with the cabinet 11 to rotate the rear edge of the swing door.
  • the switch door 15 can be configured as two split-type switch doors 15.
  • the switch door 15 is configured as a strip-shaped switch door 15 and has the same extension direction as the air outlet 111.
  • the rear side of the switch door 15 extends in the vertical direction. It is hingedly connected with the casing 11 , and the opening and closing door 15 avoids the movement track of the air guide 12 during the rotation process.
  • the switch door 15 when the switch door 15 is in the closed state, the outer surface of the switch door 15 is spliced with the outer surface of the wind guide 12 to form an integral body, and the switch door 15 moves from the closed state to the open state.
  • the opening and closing door 15 rotates toward the inside of the casing 11, so that the opening and closing door 15 and the air guide 12 are staggered to form an air outlet channel.
  • This arrangement of the opening and closing door 15 makes the moving range of the opening and closing door 15 small , Easy to operate and easy to control.
  • the switch door 15 when the switch door 15 is in the closed state, the inner surface of the switch door 15 covers the outside of the wind guide 12, the outer surface of the switch door 15 is used as an appearance surface, and the switch door 15 faces towards The outer side of the casing 11 is opened to expose the air guide 12 so that the air guide 12 can move on a preset track.
  • the switch door 15 is configured as a sliding door, and the sliding door surrounds the outer periphery of the casing 11 and slides along the circumferential direction of the casing 11, and the switch door 15 is configured as a sliding door, which greatly reduces the number of switching doors.
  • the transition between the opening and closing states of the opening and closing door 15 is more beautiful, which improves the use experience of the air-conditioning indoor unit and enhances the user's use experience.
  • the sliding door mentioned here can be provided with a fixed sliding track on the casing 11 of the air conditioner indoor unit, and when the sliding door is in the closed position, the sliding door keeps surrounding the casing 11 in a circumferential position.
  • the sliding track can be set around the casing 11 , so that the sliding doors can slide toward and away from each other when opened, and slide along the extension direction of the outer peripheral edge of the casing 11 .
  • the air conditioner indoor unit includes a sliding door drive assembly 150
  • the sliding door drive assembly 150 includes a sliding door box seat 151
  • a first track 1511 is provided on the sliding door box seat 151 and the second track 1512.
  • Both the first rail 1511 and the second rail 1512 are configured as arc-shaped rails protruding away from the direction of the casing 11.
  • the sliding door box seat 151 can be fixed on the casing 11, and the sliding door box seat 151 serves as The installation base of the switch door 15 defines a first track 1511 and a second track 1512 on the sliding door box seat 151 to limit the movement track of the switch door 15 .
  • a plurality of ribs protruding toward the upper side are arranged in the sliding door box seat 151, and the plurality of ribs are spaced apart from each other to form the above-mentioned first track 1511 and the second track between two adjacent tracks.
  • the sliding door drive assembly 150 is also provided with a sliding door cover 156, the sliding door cover 156 is covered on the sliding door seat 151 to form a closed activity space, so as to protect the first rail 1511 and Parts that move within the second track 1512.
  • the sliding door driving assembly 150 also includes a sliding rack 152 and a second driving member 154, the sliding rack 152 is slidably arranged on the first track 1511, and the second driving member 154 is suitable for driving the sliding rack 152 on the first track 1511 To move, the second driving member 154 is used as the power source of the sliding door driving assembly 150 to provide motive force for the movement of the sliding door and to control the opening and closing of the sliding door.
  • the sliding door drive assembly 150 further includes a swing plate 153, the swing plate 153 is rotatably arranged on the sliding rack 152, and slides along the second track 1512, the swing plate 153 is linked with the opening and closing door 15, The swing of the swing plate 153 can drive the sliding door to move, and the swing plate 153 has degrees of freedom in multiple directions.
  • the swing plate 153 slides on the second track 1512, so that the swing plate 153 drives the opening and closing doors 15 to translate on the track of the second track 1512 to complete the opening action of the opening and closing doors 15 away from each other.
  • the swing plate 153 also rotates relative to the sliding rack 152 while translating. Since the sliding rack 152 slides on the first track 1511, the sliding of the sliding rack 152 on the first track 1511 is the same as that of the swing plate 153 on the second track 1512. Simultaneously, the swing plate 153 also rotates relative to the sliding teeth, so that the swing plate 153 further expands the switch door 15 during the process of gradually opening the switch door 15, so as to avoid the contact between the switch door 15 and the casing during the opening process.
  • both the first track 1511 and the second track 1512 are configured as arc tracks, the first track 1511 is arranged inside the second track 1512 and the distance between the first track 1511 and the second track 1512 It gradually increases in the opening direction of the switch door 15 .
  • the sliding rack 152 drives one end of the swing plate 153 to slide along the track of the first track 1511, and the other end of the swing plate 153 cooperates with the second track 1512, so that the swing plate 153 The other end slides along the track of the second track 1512, and the swing plate 153 drives the opening and closing door 15 to open and rotate during the opening process, so that the opening and closing door 15 completes the compound movement of opening and gradually opening, so that the opening and closing door 15 can be effectively opened. Ensure that the switch door 15 does not touch the casing 11 when it is opened.
  • the lower side of the sliding rack 152 is provided with a plurality of sliding shafts, and the sliding shafts fit in the first track 1511 , and one end of the sliding rack 152 is provided with a pivot shaft 1521 , on the top of the swing plate 153 A pivot hole 1531 matched with the pivot shaft 1521 is provided on the side to make the swing plate 153 and the sliding rack 152 rotate relative to each other.
  • a limit post 1522 is provided on the upper side of the sliding rack 152, and a fitting gap suitable for accommodating the stop post 1522 is provided on the swing plate 153, and the fitting gap is arranged on the swing plate 153 relative to the sliding rack.
  • 152 extends in the direction of rotation to limit the degree of freedom of the swing plate 153 during the rotation relative to the sliding rack 152 and prevent the sliding rack 152 from being disengaged from the swing plate 153 .
  • the limiting post 1522 is configured as a plurality of one of which is located at the other end of the sliding rack 152 in the extending direction, and the limiting post 1522 and the pivot shaft 1521 are respectively arranged on the sliding rack 152
  • the two ends of the swing plate 153 are provided with a limit groove 1532 that cooperates with the limit post 1522 at the other end of the sliding rack 152.
  • the limit groove 1532 is used to limit the freedom of rotation between the slide rack 152 and the swing plate 153.
  • the outer edge on the swing plate 153 is provided with a rotating arm extending outward, and the rotating arm is used to connect the opening and closing door 15, and the upper end surface of the opening and closing door 15 and the rotating arm can be connected by bolts, Fixed by bonding and clamping.
  • the sliding door driving assembly 150 may be disposed on the upper and lower sides of the cabinet 11 to support the switch door 15 in both up and down directions.
  • the air-conditioning indoor unit 1 further includes a diffuser plate, which is rotatably arranged on the casing 11 and can selectively close the air outlet channel.
  • the airflow can pass through the diffused wind plate at the diffused wind area, and the diffused wind structure is arranged on the diffused wind area for the diffused wind, which reduces the air pressure of the air conditioner and realizes the windless wind.
  • the wind diffuser structure can be configured as a plurality of microholes formed on the diffuser area of the wind diffuser, and the airflow from the air outlet channel flows out after passing through the plurality of microholes to reduce the airflow.
  • the wind pressure of the road can be realized without wind feeling.
  • a plurality of air diffuser holes are arranged on the air diffuser plate, and the air diffuser structure is configured as a blade arranged at the air diffuser hole. Wind pressure, to achieve windless wind.
  • the air diffuser plate and the air guide member 12 are constructed in the same structure, and the air guide member 12 is provided with a wind diffuser area for achieving windless wind.
  • the wind diffuser plate and the switch door 15 are configured in the same structure, and the switch door 15 is provided with a wind diffuser area for achieving windless wind.
  • the air guide 12 is provided at the air outlet 111 so as to be movable back and forth so as to selectively open or close the air outlet 111 .
  • the opening and closing of the air outlet 111 is realized by the forward and backward movement of the air guide 12.
  • the air guide 12 closes the air outlet 111, the air guide 12 is in a state of cooperating with the outer edge of the air outlet 111.
  • the outer edge of the air guide member 12 can stop, intersect or adjoin the outer edge of the air outlet 111 to close or partially close the air outlet 111 .
  • a gap is formed between the outer edge of the air guide 12 and the air outlet 111 to open the air outlet 111 so that the air conditioner indoor unit 1 can discharge air.
  • the opening and closing of the air outlet 111 is realized by controlling the forward and backward movement of the air guide 12.
  • a complex transmission structure is set, which reduces the number of components of the air conditioner, reduces the cost of the air conditioner, and improves the stability of the air conditioner.
  • the air conditioner is provided with a mobile driving device 13.
  • the mobile driving device 13 is arranged on the casing 11, and the mobile driving device 13 drives the air guide 12 to move to control the air guide.
  • the element 12 opens or closes the air outlet 111.
  • the mobile driving device 13 is connected with the air guide 12 and drives the air guide 12 to open or close the air outlet 111; Item 12 moves further.
  • the moving driving device 13 can further drive the air guide 12 to move between the first position and the second position.
  • the mobile drive device 13 drives the air guide 12 to move to the first position, the air guide 12 cooperates with the first side of the air outlet 111 to guide the wind toward the second side of the air outlet 111; the mobile drive 13 drives the air guide When the air guide 12 moves to the second position, the air guide 12 cooperates with the second side of the air outlet 111 to guide the air toward the first side of the air outlet 111 .
  • the first side of the air outlet 111 and the second side of the air outlet 111 can refer to both sides of the air outlet 111 in the width direction.
  • the air guide 12 and The cooperation between the first side of the air outlet 111 can be overlapped, staggered or stopped, but not limited to the above-mentioned cooperation method, the purpose of the cooperation between the air guide 12 and the side of the air outlet 111 is to limit the flow of air from the air guide 12 and the outlet. Air is released between the first sides of the air outlets 111 .
  • the cooperation between the air guide 12 and the second side of the air outlet 111 can be overlapped, interlaced or stopped, but not limited to the above-mentioned cooperation method.
  • the purpose of the cooperation between the two sides of the air outlet 111 is to restrict the airflow from exiting between the air guide 12 and the second side of the air outlet 111 .
  • there is a large gap between the air guide 12 and the first side of the air outlet 111 most of the air flow can be derived from the gap between the air guide 12 and the air outlet 111, and the air flow at this time is large.
  • the air flow at this time will bypass the user to prevent the cold wind from blowing directly, and there are no air diffusers to block the air flow, so the flow rate of the air flow is large and the air volume is sufficient.
  • the air guiding member 12 can also move between the first position and the second position, between the air guiding member 12 and the first side of the air outlet 111, and between the air guiding member 12 and the second side of the air outlet 111.
  • the air outlet channel allows the air flow to flow out through both sides. Since the air guide 12 is located in the middle of the air outlet 111, it avoids the direct blowing of the air flow to the user and plays the role of direct blowing of cold wind. At the same time, it passes through the air outlet channels on both sides.
  • the blown airflow forms the effect of enveloping the airflow, which can quickly and evenly reduce the indoor air temperature, and at the same time quickly cool down the wall, which solves the heat effect of the furnace in hot summer.
  • the air conditioner indoor unit 1 of the present application by setting the air guide 12 to move between the first position and the second position, on the one hand, it avoids direct blowing of the air outlet 111 to the user, and at the same time ensures the air volume of the indoor air.
  • the air condition of the user in the air-conditioning indoor unit 1 is improved, the user experience is improved, and the cooling effect of the air-conditioning indoor unit 1 is enhanced.
  • the air guides 12 are constructed in multiples, and the multiple air guides 12 can move synchronously after being combined.
  • the member 12 moves between the first position, the second position and the first position and the second position, so as to change the air outlet direction and air outlet mode.
  • the plurality of air guides 12 can be selectively separated from each other to define an air outlet channel between two adjacent air guides 12 .
  • the airflow can pass between two adjacent air guides 12 so that the air conditioner indoor unit 1 can discharge air from the front.
  • a first air outlet passage is formed between the air guide 12 on the side and the first side of the air outlet 111
  • a second air outlet is formed between the air guide 12 adjacent to the second side of the air outlet 111 and the second side of the air outlet 111.
  • a third air outlet channel is formed between two adjacent air guides 12, a plurality of air outlet channels can carry out wind flow to the air flow, and the third air outlet channel is facing the user, but the air volume is small, and the air flow of the air outlet The sense is weak, but the user experience is good.
  • the first air outlet channel and the second air outlet channel form an airflow that surrounds the indoor space, so as to form an environmentally friendly airflow and improve the cooling effect on the room.
  • the air outlet modes of the air conditioner indoor unit 1 are enriched, the user's choice space is further improved, the air conditioner indoor unit 1 can better meet the user's use requirements, and the user's use experience is improved.
  • the air conditioner indoor unit 1 is also provided with a switch door 15, the switch door 15 is arranged on the outer surface of the wind guide 12 and moves synchronously with the wind guide 12, the switch door 15 is suitable for opening and closing on the wind guide 12 When the air outlet 111 is closed, it cooperates with the casing 11 so that the front surface of the switch door 15 forms the exterior surface of the casing 11 .
  • the air conditioner indoor unit 1 of this embodiment cancels the opening and closing door 15 , or it can be understood that the opening and closing door 15 and the air guide member 12 are integrally constructed.
  • the air guide 12 is provided with an air guide surface 121, the air guide surface 121 can be configured as two and each air guide surface 121 is configured as an arc surface, and the two arc surfaces are symmetrically arranged on the inside of the air guide 12 , the two wind guiding surfaces 121 protrude toward the outside, so that the wind guiding member 12 is configured as a wedge-shaped structure.
  • a switch door 15 is provided on the front side of the air guide 12, the switch door 15 is arranged on the front surface of the air guide 12 and has a width greater than the width of the air guide 12, the switch door 15 can be used for wind guidance, and the switch door 15 is configured as The elongated rectangular plate is arranged on the front side of the air guide 12, so that when the air guide 12 moves to open the air outlet 111 and moves between the first position and the second position, the switch door 15 can be used to move toward the air outlet 111.
  • the side surfaces guide the air.
  • the air guide 12 can move toward the front side, so that a gap is formed between the switch door 15 and the cabinet 11, so that the airflow is discharged from the air outlet 111 and passes through the cabinet 11 and the switch door 15.
  • the air outlet channel between the surfaces flows out, and the forward movement of the air guide 12 can be used to open the air outlet 111 on the one hand, so that the airflow at the air outlet 111 can flow out, and on the other hand, the air guide 12 can be moved forward to The collision between the opening and closing door 15 and the casing 11 during the movement from the first position to the second position is avoided, and the stability of the opening and closing door 15 is improved.
  • the two sides of the opening and closing door 15 can be formed with wind guiding sides 155, and the wind guiding sides 155 are configured to be bent toward the side of the air outlet 111 or away from the side of the air outlet 111, and are located on both sides of the opening and closing door 15.
  • the air guide edge 155 can be further used to guide the airflow, so that the airflow flows to the two sides of the opening and closing door 15 under the guidance of the air guiding member 12, and further moves away from the opening and closing door 15 under the guidance of the air guiding edge 155. flow so that the air from the air conditioner forms an enveloping wind.
  • the wind guiding edge 155 When the wind guiding edge 155 is bent towards the side of the air outlet 111, the wind guiding edge 155 can be adjacent to the outer periphery of the casing 11, and the wind guiding edge 155 can be spliced or interlaced with the casing 11, so that the casing forms a complete appearance surface, and the wind guiding edge
  • the curved radian of the side 155 may be the same as the curved radian of the outer peripheral surface of the casing 11, so as to further improve the flatness of the appearance surface of the air conditioner indoor unit 1 in the off state.
  • an escape space 112 is provided inside the casing 11 , and when the air guide 12 opens the air outlet 111 , at least part of the air guide 12 It is accommodated in the avoidance space 112 .
  • the edge of the air guide 12 is spliced or adjacent to the edge of the air outlet 111 to close the air outlet 111, and the air guide 12 closes the air outlet.
  • the air guide 12 moves backward, so that the air guide 12 retreats into the air outlet 111 , so that an air outlet is formed between the air guide 12 and the two side edges of the air outlet 111 .
  • the escape space 112 provided in the casing 11 may be located on both sides of the air outlet 111, and when the air guide 12 is in the first position, the air guide 12 enters the avoidance space 112 located on the first side of the air outlet 111 In this way, an air outlet channel is formed between the air guide member 12 and the second side of the air outlet 111 , so that the air guide member 12 can discharge air. And when the air guide 12 is in the second position, the air guide 12 enters into the escape space 112 located in the second side of the air outlet 111, so that a gap is formed between the air guide 12 and the first side of the air outlet 111. The air channel enables the air guide 12 to discharge air.
  • avoidance spaces 112 are provided on both sides of the air outlet 111, and each avoidance space 112 is correspondingly provided with a movable windshield 114, and the windshield 114 has an avoidance state and a windshield state.
  • the wind deflector 114 opens the avoidance space 112 so that the air guide 12 can extend in.
  • the wind deflector 114 blocks the avoidance space 112 as a part of the air passage.
  • the windshield 114 can be used to close the avoidance space 112, avoiding the phenomenon of driving around in the open state of the avoidance space 112, and the windshield 114 can be used as a part of the air outlet duct to guide the airflow so The flow of airflow is smoother, reducing the generation of noise.
  • the air conditioner indoor unit 1 includes a casing 11 and an air duct part 113, the front surface of the casing 11 is provided with an air outlet 111; An air outlet duct extending toward the air outlet 111 is provided, and the front side of the air duct part 113 is provided with an avoidance space 112, and at least one side of the air outlet 111 is provided with the avoidance space 112; the air guide 12 is movably located on The air outlet 111 is used to change the air outlet direction.
  • the mobile driving device 13 is arranged in the casing 11. The mobile driving device 13 is connected with the air guide 12 to drive the air guide 12 to move.
  • the air conditioner indoor unit has a power-off state and a first air outlet state.
  • the air guide 12 in the shutdown state, the air guide 12 is located at the air outlet 111 and the air guide 12 cooperates with the casing 11 to close the air outlet 111; in the first air outlet state, the air guide 12 moves so that the air guide 12 At least a part of it protrudes into the avoidance space 112 .
  • an avoidance space 112 is provided in the air duct part 113 to accommodate the air guide part 12, so that the air guide part 12 opens the air outlet 111 after moving toward the air duct part 113.
  • This air outlet The opening method of 111 makes the air guide 12 no longer expand outward, so that the space required for opening or closing the air conditioner indoor unit is smaller, and the air guide 12 is stored in the avoidance space 112 when guiding the airflow, which improves the The aesthetics of the indoor unit 1 of the air conditioner.
  • avoidance spaces 112 are provided on both sides of the air outlet 111, and each avoidance space 112 is correspondingly provided with a movable windshield 114, and the windshield 114 has an avoidance state and a windshield state.
  • the windshield 114 opens the avoidance space 112 so that the wind guide 12 can be stretched in.
  • the windshield state the windshield 114 blocks the avoidance space 112 as a part of the air flow path;
  • the wind mode in the single-side wind-out mode, at least a part of the air guide 12 protrudes into one of the avoidance spaces 112 and the windshield of the other avoidance space 112 is in a wind-shielding state.
  • the airflow from the air outlet 111 can be effectively prevented from entering the avoidance space 112, and the blocking effect of the avoidance space 112 on the airflow can be reduced, so that the air circulation of the air conditioner indoor unit 1 is smoother.
  • the first air outlet state includes an intermediate air outlet mode. At least a part of the member 12 protrudes into the avoidance space 112 .
  • the two air guides 12 move away from each other and enter the avoidance space 112 on both sides of the air outlet 111.
  • the distance between the two air guides 12 can be adjusted.
  • the size of the middle air outlet 111 is adjusted by controlling the distance between the two air guides 12 .
  • each air guide 12 After the two air guides 12 are spaced apart from each other, at least part of each air guide 12 can be accommodated in the corresponding avoidance space 112, and the air guides 12 can be partially accommodated in the avoidance space 112, and can also be completely accommodated in the avoidance space 112 inside.
  • the mobile driving device 13 when the indoor unit of the air conditioner is turned on, the mobile driving device 13 is configured to first drive the air guide 12 to move backward and then drive the air guide 12 to move left and right and make the air conditioner Switch to the first air outlet state.
  • the mobile driving device 13 first drives the air guide 12 to move back and forth to open the air outlet 111, so that an air outlet channel is formed between the air guide 12 and the air outlet 111, and then controls the air guide 12 to move left and right, so as to be in the first air outlet state. Utilize the air guide 12 to adjust the air outlet direction.
  • the mobile driving device 13 includes a front and rear pushing device 135 and a left and right swing device 136
  • the front and rear pushing device 135 is provided with a first driving end that moves in the front and rear direction
  • the left and right swing device 136 Connected with the first driving end and moved back and forth under the driving of the first driving end, the left and right swinging device 136 has a plurality of second driving ends, and each second driving end is connected with the corresponding air guide 12 so as to be suitable for driving the air guide 12 moves.
  • the mobile driving device 13 in this embodiment has two parts, which are respectively used to realize the forward and backward movement and left and right swing of the air guiding member 12.
  • the first driving end of the front and rear pushing device 135 can drive the left and right swinging device 136 to move to drive the air guiding member. 12 moves in the front-rear direction to selectively open or close the air outlet 111.
  • the left and right swinging device 136 can act synchronously with the first driving end, and the left and right swinging device 136 can further drive the air guiding member 12 to swing left and right after the air guiding member 12 completes moving back and forth, so that the air guiding member 12 is in the first position and the second position. Switching between two positions is used to drive the outside of the air guide 12 to change the wind direction, or to drive a plurality of air guides 12 away from each other to form a gap between two adjacent air guides 12 wind channel. Realize the front air outlet of the air conditioner.
  • the front and rear pushing device 135 includes: a base 1351a, a sliding block 1353a and a first driving member 134, the base 1351a is provided with a first guide column 1352a, and the sliding block 1353a is provided with a The first guide slot 1354a matched with the first guide column 1352a, the sliding block 1353a is provided with a first driving end, and the first driving member 134 is provided on the base 1351a and drives the sliding block 1353a to move.
  • the base 1351a is configured as a plate-shaped structure, and a first guide post 1352a is provided on the base 1351a, and the first guide groove 1354a on the sliding block 1353a cooperates with the first guide post 1352a to limit the movement of the sliding block 1353a Direction, wherein the first guide groove 1354a is configured to extend in the front-rear direction, when the driving member drives the sliding block 1353a to move, the movement direction of the sliding block 1353a is limited due to the cooperation between the first guide post 1352a and the first guide groove 1354a,
  • the sliding block 1353a can only slide in the front-back direction, and the sliding block 1353a can be provided with a first driving end connected with the left-right swinging device 136 .
  • a slide rail seat is provided on the upper side of the base 1351a, and a slide rail is provided in the slide rail seat, and a slide block that cooperates with the slide rail is provided on the bottom of the left and right swing device 136, and the slide block is embedded in the slide rail.
  • the slideway extends in the front-to-back direction, and a through hole is provided on the bottom wall of the slideway.
  • the first driving end can be configured as a boss arranged on the sliding block 1353a, and the boss can pass through the hole and slide with the slide
  • the block 1353a is connected and matched to drive the slide block at the bottom of the left-right swing device 136 to move in the extending direction of the slideway.
  • the two side edges of the sliding block 1353a are provided with matching strips protruding toward the upper side, and the sides of the matching strips facing each other are provided with a plurality of teeth arranged in sequence in the front and rear directions, the first The driving member 134 is configured as two motors, the two motors are provided with gears, and are engaged with the teeth on the corresponding matching strips, so as to drive the sliding block 1353a to move back and forth during the rotation of the motors.
  • the left and right swinging device 136 includes a swing box frame 1361a, a matching block 1362a and a second driving member 154, the swing box frame 1361a is connected with the first driving end, and the swing box frame 1361a is provided with a The guide rail; the matching block 1362a is movably arranged on the guide rail, and the second driving end connected with the corresponding air guide piece 12 is arranged on the matching block 1362a; the second driving member 154 is arranged on the swing box frame 1361a and drives the matching block 1362a moves to drive the wind guide 12 to move between the first position and the second position.
  • the air guide 12 is configured in two, the guide rails include two and are respectively arranged on the upper and lower sides of the swing box frame 1361a, and the matching block 1362a is configured as two pieces respectively located on the swing box frame 1361a.
  • the upper and lower sides are matched with the corresponding guide rails and connected with the corresponding air guides 12 .
  • the swing box frame 1361a includes a body part, an arc-shaped bending part is arranged on the front side of the body part, guide rails are arranged on the upper and lower sides of the bending part, and the guide rails can be configured as raised ribs on the upper and lower sides of the bending part, and the raised ribs are arranged on the upper and lower sides of the bending part.
  • the ribs are configured in multiples spaced apart in the front and rear direction, and the matching column 1362a is provided with a matching column, which can be accommodated between two adjacent protruding ribs to limit the moving track of the matching block 1362a.
  • the front side of the matching block 1362a is provided with a swing arm protruding toward the front side, and the swing arm can be directly connected with the wind guide 12, so that the connecting position of the matching block 1362a is connected with the connecting position of the swinging wall. It is arranged on the front side far away from the box holder, so as to ensure that the air guide 12 will not collide with the casing 11 during the movement.
  • the rear side of the mating block 1362a is provided with a plurality of mating teeth arranged sequentially in the width direction, and the mating block 1362a can be configured as an arc-shaped rack 132 protruding toward the front side, and the mating block
  • the radian of 1362a is the same as the radian of the guide rail of the track.
  • the second drive member 154 is configured as a motor.
  • the output end of the motor is provided with a gear 133, and the gear 133 engages with the mating teeth on the rear side of the mating block 1362a to drive when the gear 133 rotates.
  • the mating block 1362a moves along the guide rail.
  • the air guide member 12 is configured in two, the guide rails include two and are respectively arranged on the upper and lower sides of the swing box frame 1361a, and the matching block 1362a is configured as two pieces respectively located on the upper and lower sides of the swing box frame 1361a. side and cooperate with the corresponding guide rail and connect with the corresponding air guide piece 12 .
  • the air guide 12, the guide rail and the matching block 1362a are all configured as two corresponding ones, so that the two air guides 12 can be selectively kept away from each other, and the two matching blocks 1362a are arranged on the upper and lower sides of the swing box frame 1361a.
  • the internal structure of the left and right swing device 136 is reasonably arranged to make the structure of the left and right swing device 136 more compact.
  • the second driving member 154 is configured as two and respectively drives the corresponding matching blocks 1362a, and the second driving member 154 can drive the corresponding matching blocks 1362a, so that the two air guide members 12 can move independently .
  • the second driving member 154 can be configured as one, and is synchronously matched with the two matching blocks 1362a respectively.
  • the output end of the second driving member 154 is provided with the first gear 133, and the first gear 133 is connected to the The mating teeth on one mating hole mesh, and the other mating block 1362a meshes with the second gear 133, and the second gear 133 meshes with the first gear 133, so that the second driving member 154 drives the first gear 133 simultaneously when outputting power
  • the first gear 133 and the second gear 133 rotate in opposite directions, and simultaneously drive the two matching blocks 1362a to move in opposite directions.
  • the guide rail is configured as an arc-shaped guide rail protruding forward.
  • the air conditioner indoor unit 1 further includes a front and rear pushing device 135, a left and right swinging device 136, and a drive rod 137.
  • a front and rear pushing device 135, a left and right swinging device 136, and a drive rod 137 Three driving ends, the left and right swinging device 136 is provided with a fourth driving end moving in the left and right direction; the driving rod 137 is respectively movably connected with the third driving end and the fourth driving end, the The driving rod 137 is connected with the air guide 12 and drives the air guide 12 to move forward and backward and swing left and right.
  • the driving rod 137 can move forward and backward and then swing left and right under the action of the third driving end and the fourth driving end. It can be understood that the power output by the forward and backward pushing device 135 and the left and right swinging device 136 act on the driving rod 137 together. , so that the driving rod 137 can have two degrees of freedom of movement at the same time.
  • One end of the drive rod 137 is connected with the air guide 12, and the air guide 12 moves back and forth or swings left and right under the drive of the drive rod 137, so as to open or close the air outlet 111 and move from the first position to the second after opening the air outlet 111. Move between two positions.
  • the front and rear pushing device 135 includes: a housing 1351b, a first rack 1353b and a second rack 1354b, two first guides 1352b are arranged on the bottom wall of the housing 1351b; Both the rack 1353b and the second rack 1354b are provided with a second guide 1355b that cooperates with the corresponding first guide 1352b, so that the first rack 1353b and the second rack 1354b are positioned on the first guide. 1352b and the second guide 1355b cooperate to move in the forward and backward direction, and the driving rod 137 is two hinged with the first rack 1353b and the second rack 1354b respectively, and the first rack 1353b and the second rack 1354b are configured as third drive end.
  • the left and right swing device 136 includes: a third rack 1361b and a fourth rack 1362b, the third rack 1361b and the fourth rack 1362b are respectively provided with a third guide 1363b, two
  • the driving rod 137 is provided with a fourth guide 1371 that cooperates with the third guide 1363b, so that the driving rod 137 can swing in the left and right direction under the cooperation of the third guide 1363b and the fourth guide 1371.
  • the third rack 1361b and the fourth rack 1362b are configured as a fourth driving end.
  • the housing 1351b is provided with a chute 1311 for the rack 132
  • the third rack 1361b and the fourth rack 1362b are provided with a sliding column that cooperates with the chute 1311 of the rack 132
  • the chute 1311 for the rack 132 cooperates with the sliding column to
  • the moving tracks of the third rack 1361b and the fourth rack 1362b are defined.
  • Both the first rack 1353b and the second rack 1354b are configured as arc-shaped racks 132 protruding toward each other, and the second rack 1354b and the fourth rack 1362b are configured as arc-shaped racks 132 protruding toward the front side.
  • the first rack 1353b and the second rack 1354b are configured as arc-shaped racks, and the first rack 1353b and the second rack 1354b are configured as arcs protruding toward each other.
  • the guide piece 1355b is configured as an arc-shaped notch provided on the first rack 1353b and the second rack 1354b, and a limit post matching the arc-shaped notch is arranged on the bottom wall of the housing 1351b, and the limit post is configured as The first guide 1352b, the first guide 1352b and the second guide 1355b cooperate to limit the moving direction of the first rack 1353b and the second rack 1354b.
  • the first rack 1353b and the second rack 1354b are used to control the forward and backward movement of the driving rod 137 so that the air guide 12 is used to open or close the air outlet 111 .
  • the bottom wall of the housing 1351b is provided with limiting slots for limiting the corresponding third rack 1361b and fourth rack 1362b, and the third rack 1361b and the fourth rack and the limiting slots
  • the slots are all configured in an arc shape, and two limiting slots are provided on both sides of the front side of the housing 1351b, and the limiting slots are bent toward the rear side in a direction away from each other.
  • the driving rod 137 is provided with a connecting post to be configured as a fourth guide 1371, and the third rack 1361b and the fourth rack 1362b are provided with a connecting post that extends in the front-rear direction.
  • the linear notch is suitable for the first rack 1353b and the second rack 1354b to drive the driving rod 137 to move in the forward and backward direction, and maintain relative movement with the third rack 1361b and the fourth rack 1362b.
  • the connecting column is rotatably arranged in the linear notch, when the third rack 1361b and the fourth rack move along the limit groove, the connecting column rotates in the linear notch and stops against the side wall of the linear notch , to pull the driving rod 137 to swing in the left and right direction.
  • a display panel 17 is provided on the upper side of the air outlet 111 of the casing 11, and the display panel 17 can be used to display parameters of the air conditioner.
  • the display panel 17 is arranged on the upper side of the air outlet 111 of the air conditioner, so that the user can observe the detailed parameters of the air conditioner more intuitively.
  • the air conditioner indoor unit 1 is provided with a human detection device 18, the human detection device 18 can be used to detect the moving human body on the front side of the air outlet 111, and the human detection device 18 is suitable for detecting when the air conditioner is turned on.
  • the position of the air guide 12 is controlled so that the air outlet direction of the air outlet 111 avoids the human body, avoids direct blowing of cold wind, and improves user comfort.
  • first and second are used for descriptive purposes only, and cannot be interpreted as indicating or implying relative importance or implicitly specifying the quantity of indicated technical features. Thus, a feature defined as “first” and “second” may explicitly or implicitly include one or more of these features.
  • “plurality” means two or more, unless otherwise specifically defined.
  • first feature may be in direct contact with the first feature or the first and second feature may be in direct contact with the second feature through an intermediary. touch.
  • “above”, “above” and “above” the first feature on the second feature may mean that the first feature is directly above or obliquely above the second feature, or simply means that the first feature is higher in level than the second feature.
  • “Below”, “beneath” and “beneath” the first feature may mean that the first feature is directly below or obliquely below the second feature, or simply means that the first feature is less horizontally than the second feature.

Abstract

一种空调室内机,空调室内机包括机壳(11),机壳设有出风口(111);导风件(12)可前后移动地设在出风口(111)处以可选择地打开或关闭出风口(111);移动驱动装置(13)设于机壳,移动驱动装置(13)与导风件(12)相连并驱动导风件(12)打开或关闭出风口(111);移动驱动装置(13)适于在出风口(111)打开状态下驱动导风件(12)在第一位置与第二位置之间移动;在第一位置,导风件(12)与出风口(111)的第一侧配合以朝向出风口(111)的第二侧导风;在第二位置,导风件(12)与出风口(111)的第二侧配合以朝向出风口(111)的第一侧导风;在第一位置与第二位置之间,导风件(12)分别与出风口(111)的第一侧和第二侧之间均限定出出风通道。

Description

空调室内机
相关申请的交叉引用
本申请要求“广东美的制冷设备有限公司”、“美的集团股份有限公司”于2021年5月31日提交的、发明名称为“空调室内机”的、中国专利申请号“202110602664.5”的优先权;以及“广东美的制冷设备有限公司”、“美的集团股份有限公司”于2021年5月31日提交的、发明名称为“空调室内机”的、中国专利申请号“202121204303.7”的优先权。
技术领域
本申请涉及空调器领域,尤其是涉及一种空调室内机。
背景技术
相关技术中,传统的空调室内机一般将导风板设计在出风口内部,且通常设计为多个平行状的导风板结构,多个导风板之间通过连杆相连接,电机带动其中一根导风板转动,从而带动所有导风板转动,传统出风口内部的转动导风板方案,其送风角度小,侧向送风距离短,在防直吹时所产生的风量小,舒适性差。
发明内容
本申请旨在至少解决现有技术中存在的技术问题之一。为此,本申请的一个目的在于提出一种空调室内机,该空调室内机避免了由出风口处直接吹向用户,同时没有散风件等阻挡气流,气流的流量大,风量充足,导风件的移动轨迹简单,空调器出风口的启闭控制更加方便,不需要设置复杂的传动结构,减少了空调器的零部件数量,降低了空调器的成本,提高了空调器的稳定性。
根据本申请的空调室内机包括:机壳,所述机壳设有出风口;导风件,所述导风件可前后移动地设在所述出风口处以可选择地打开或关闭所述出风口;移动驱动装置,所述移动驱动装置设于所述机壳,所述移动驱动装置与所述导风件相连并驱动所述导风件打开或关闭所述出风口;其中所述移动驱动装置适于在所述出风口打开状态下驱动所述导风件在第一位置与第二位置之间移动;在所述第一位置,所述导风件与所述出风口的第一侧配合以朝向所述出风口的第二侧导风;在所述第二位置,所述导风件与所述出风口的所述第二侧配合以朝向所述出风口的所述第一侧导风;在所述第一位置与所述第二位置之间,所述导风件分别与所述出风口的第一侧和第二侧之间均限定出出风通道。
根据本申请的空调室内机通过控制导风件的前后移动实现出风口的打开和关闭,导风件的移动轨迹简单,使空调器出风口的启闭控制更加方便,不需要设置复杂的传动结构,减少了空调器的零部件数量,降低了空调器的成本,提高了空调器的稳定性。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本申请实施例的空调室内机关闭状体的结构示意图;
图2是根据本申请实施例的空调室内机处于关闭状态的主视图;
图3是图2中A-A截面的剖视图;
图4是根据本申请实施例的空调室内机三向出风状态的结构示意图;
图5是根据本申请实施例的空调室内机三向出风状态的剖视图;
图6是根据本申请实施例的空调室内机两侧出风状态的结构示意图;
图7是根据本申请实施例的空调室内机两侧出风状态的剖视图;
图8是根据本申请实施例的空调室内机前侧出风的结构示意图;
图9是根据本申请实施例的空调室内机前侧出风的结构剖视图;
图10是根据本申请实施例的移动驱动装置与滑动面驱动组件的结构示意图;
图11是根据本申请实施例的移动驱动装置与导风件的配合示意图;
图12是根据本申请实施例的移动驱动装置与导风件的装配示意图;
图13是根据本申请实施例的移动驱动装置的爆炸图;
图14是根据本申请实施例的移动驱动装置与转动驱动机构的爆炸图;
图15是根据本申请实施例的开关门的结构示意图;
图16是根据本申请实施例的滑动门驱动组件的爆炸图;
图17是根据本申请实施例的开关门为转动门的空调室内机的结构示意图;
图18是根据本申请实施例的开关门为转动门的空调室内机的剖视图;
图19是根据本申请实施例的导风件的外侧设置开关门的空调室内机的结构示意图;
图20是根据本申请实施例的导风件的外侧设置开关门的空调室内机的剖视图;
图21是根据本申请实施例的导风件处于第一位置的空调室内机的结构剖视图;
图22是根据本申请实施例的导风件处于第二位置的空调室内机的结构剖视图;
图23是根据本申请实施例的导风件彼此远离状态下空调室内机的结构剖视图;
图24是根据本申请的另一些实施例的空调室内机的结构剖视图;
图24是根据本申请实施例的导风件与移动驱动装置的配合示意图;
图25是根据本申请实施例的导风件与移动驱动装置的爆炸图;
图26是根据本申请另一些实施例的移动驱动装置的结构示意图;
图27是根据本申请另一些实施例的移动驱动装置驱动导风件前后移动的示意图;
图28是根据本申请另一些实施例的移动驱动装置驱动导风件前后移动的示意图;
图29是根据本申请另一些实施例的移动驱动装置驱动导风件左右摆动的示意图;
图30是根据本申请另一些实施例的移动驱动装置驱动导风件后移以打开出风口的示意图;
图31是根据本申请另一些实施例的导风件封闭出风口时的剖视图;
图32是根据本申请另一些实施例的导风件打开出风口时的剖视图;
图33是根据本申请另一些实施例的导风件远离彼此收容于避让空间内打开出风口时的剖视图;
图34是根据本申请另一些实施例的导风件处于第一位置的剖视图。
附图标记:
空调室内机1,
机壳11,出风口111,避让空间112,风道部件113,挡风板114,
导风件12,导风面121,内导风板122,外导风板123,导风件盒架124,导风件盒盖125,导风件盒座126
移动驱动装置13,
滑轨131,滑槽1311,齿条132,滑柱1321,通孔1222,齿轮133,第一驱动件134,
前后推动装置135,
底座1351a,第一导向柱1352a,滑动块1353a,第一导槽1354a,
壳体1351b,滑柱1351b2,
第一导引件1352b,第一齿条1353b,第二齿条1354b,第二导引件1355b,
左右摆动装置136,驱动杆137,第四导引件1371,
摆动盒架1361a,配合块1362a,
第三齿条1361b,第四齿条1362b,第三导引件1363b,
转动驱动机构14,驱动轴141,转动电机142,
开关门15,滑动门驱动组件150,滑动门盒座151,第一轨道1511,第二轨道1512,滑动齿条152,枢转轴1521,限位柱1522,摆动板153,枢转孔1531,限位槽1532,第二驱动件154,导风边155,滑动门盒盖156,
显示面板17,人体检测装置18。
具体实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本申请,而不能理解为对本申请的限制。
下面参考图1-图34描述根据本申请实施例的空调器。
根据本申请的空调器设置有机壳11、导风件12和移动驱动装置13,根据本申请的导风件12可以移动地设置在出风口111处,并通过移动以改变出风口111出风的出风方向。而移动驱动装置13设于机壳11上并与导风件12相连以驱动导风件12在第一位置和第二位置之间移动。
传统的空调室内机一般将导风板设计在出风口内部,且通常设计为多个平行状的导风板结构,多个导风板之间通过连杆相连接,电机带动其中一根导风板转动,从而带动所有导风板转动,传统出风口内部的转动导风板方案,其送风角度小,侧向送风距离短,在防直吹时所产生的风量小,舒适性差。
为此,在本申请中通过设置移动驱动装置13,移动驱动装置13通过驱动导风件12在第一位置和第二位置之间移动,使空调器室室内机具有多种不同的出风模式,在防直吹的过程中,可以提供充足的风量,增加空调室内机1的使用舒适性
如图21-22所示,在移动驱动装置13驱动导风件12移动至第一位置时,导风件12与出风口111的第一侧配合以朝向出风口111的第二侧导风;移动驱动装置13驱动导风件12移动至第二位置时,导风件12与出风口111的第二侧配合以朝向出风口111的第一侧导风。
这里需要说明的是出风口111的第一侧和出风口111的第二侧可以是指出风口111在宽度方向上的两侧,当导风件12移动至第一位置后,导风件12与出风口111的第一侧之间的配合可以是重叠、交错或止抵,但不限于上述配合方法,导风件12与出风口111一侧配合的目的在于限制气流由导风件12与出风口111的第一侧之间出风。此时导风件12与出风口111的第二侧之间间隔开并存在较大的间隙,大部分气流可以由导风件12与出风口111之间的间隙导出,此时的气流量大,避免了由出风口111处直接吹向用户,此时的气流会绕过用户起到防冷风直吹的作用,同时没有散风件等阻挡气流,气流的流量大,风量充足。
而导风件12移动至第二位置后,导风件12与出风口111的第二侧之间的配合可以是重叠、交错或止抵,但不限于上述配合方法,导风件12与出风口111二侧配合的目的在于限制气流由导风件12与出风口111的第二侧之间出风。此时导风件12与出风口111的第一侧之间间隔开并存在较大的间隙,大部分气流可以由导风件12与出风口111之间的间隙导出,此时的气流量大,避免了由出风口111处直接吹向用户,此时的气流会绕过用户起到防冷风直吹的作用,同时没有散风件等阻挡气流,气流的流量大,风量充足。
如图7所示,导风件12还可以在第一位置与第二位置之间移动,导风件12与出风口111的第一侧之间,导风件12与出风口111的第二侧之间均限定出出风通道,使气流可以通过两侧出风,由于导风件12位于出风口111的中部,从而避免了气流直吹用户,起到风冷风直吹的作用,同时通过两侧出风通道吹出的气流形成环抱气流的效果,可以快速并均匀地降低室内空气温度,同时还能对墙体进行快速降温,解决了炎热夏天炉热效应。
根据本申请的空调室内机1,通过设置导风件12在第一位置和第二位置之间移动,一方面避免了出风口111对用户的直吹,同时还保证了室内风的出风量,改善了用户在空调室内机1的出风状况,提高了用户的使用感受,增强了空调室内机1的降温效果。
如图5所示,根据本申请的一些实施例,导风件12构造为多个,多个导风件12可以在组合后同步移动,气流无法由相邻的两个导风件12之间流通,多个导风件12在第一位置、第二位置以及第一位置和第二位置之间移动,以改变出风方向和出风模式。
此外,多个导风件12可选择地远离彼此以在相邻的两个导风件12之间限定出出风通道。气流可以通过相邻的两个导风件12之间以使空调室内机1能够进行正面出风,多个导风件12位于第一位置和第二位置之间时,邻近出风口111第一侧的导风件12与出风口111的第一侧之间形成第一出风通道,邻近出风口111第二侧的导风件12与出风口111的第二侧之间形成第二出风通道,相邻的两个导风件12之间形成第三出风通道,多个出风通道道可以对气流进行风流,第三出风通道与用户正对,但风量小,出风的风感弱,用户的体验好。同时第一出风通道、第二出风通道形成环抱室内空间的气流,以形成环保气流,提高对室内的降温效果。
通过将导风件12构造为多个,丰富了空调室内机1的出风模式,使用户的选择空间进一步提高,空调室内机1更能满足用户的使用需求,提高了用户的使用体验。
根据本申请的一些实施例,导风件12具有导风面121,导风面121构造为朝向机壳11外侧凸出的弧形面,导风件12可以保持与出风口111正对,导风面121用于对出风口111所吹出的气流进行导向,导风面121构造为弧形面后可以减小导风件12在对气流进行导向过程中气流流速的损失,提高空调室内机1的送风效率。
由于导风件12在第一位置和第二位置时,需要将气流导向出风口111的第一侧或第二侧以形成环抱风,将导风面121构造为朝向机壳11外侧凸出的弧形面,使气流在吹向导风面121时可以沿导风面121的弧形面流动,从而在改变出风方向时减少了气流与导风面121之间的摩擦,并且还减少了气流与导风件12之间摩擦所产生的噪音,进一步优化了空调室内机1的使用效果。
如图12所示,根据本申请的一些实施例,导风件12包括内导风板122和外导风板123,内导风板122上设置有上述实施例中的导风面121,外导风板123位于内导风板122的外侧,外导风板123和内导风板122之间限定出空腔,将导风件12设置有由内导风板122和外导风板123两部分构成,降低了导风件12的制造难度,在内导风板122和外导风板123之间设置空腔以降低导风件12的重量,从而降低了空调室内机1整体的重量,节约了空调器的成本。
外导风板123和内导风板122的端部配合,这里所说的端部可以是外导风板123的外周沿与内导风板122的外周沿,在外导风板123的外周沿上可以设置有多个第一连接部,在内导风板122的外周延伸上设置有多个与第一连接部配合的第二连接部,第一连接部和第二连接部之间可以通过卡接、螺接配合等方式固定,以将外导风板123和内导风板122固定,以构造为完整的导风板结构。
此外,外导风板123和内导风板122之间通过卡扣配合,可以降低内导风板122和外导风板123之间的配合难度,卡扣配合牢固,第一连接部和第二连接部可以分别形成在内导风板122和外导风板123上,成形容易,在后续的内导风板 122和外导风板123的装配过程中,可以卡接配合可以省去单独的装配工序,有助于提高生产节奏。
根据本申请的一些实施例,外导风板123的外表面构造为外凸的弧形面,该弧形面可以与机壳11的外表面的圆度相同,从而使导风件12处于关闭出风口111的状态下,与机壳11之间搭接或配合以形成具有相同弧度的外观面,从而提高了导风件12在关闭出风口111状态下的美观度。
如图10所示,在本申请的一些实施例中出风口111处设置有出风格栅。
根据本申请的一些实施例,导风件12为一个时,导风件12的截面可以构造为三角形、楔形以及月弧形;当导风件12构造为多个时,多个导风件12组合后所形成结构的结构为三角形、楔形以及月弧形,这里所说的导风件12的截面是多个导风件12组合后所构成的截面。
其中,导风件12为一个或多个时,导风件12或导风件12组合后的截面构造为三角形的方案中,导风件12可以构造为等腰钝角三角形,钝角三角形的角与出风口111正对,而三角形的长边位于远离出风口111的一侧。
在本申请的一些实施例中,移动驱动装置13包括导向件和传动件,传动件可以与导向件配合,以在导向件的导向下沿预设的移动轨迹进行移动,导向件可以用于限制传动件的移动方向,使传动件可以完成规定的运动轨迹。
传动件用于连接导风件12,导风件12与传动件的运动轨迹相同,传动件可以位于机壳11的内部,传动件与导向件的配合关系无法在机壳11的外部被直接观察,以保护内部的驱动机构。机壳11可以用于保护传动件以及导向件,导向件可以构造为滑轨131、导轨、滑槽1311等具有与预设的导风件12的轨迹相同的轨道结构,而传动件与导向件配合,以限制传动件沿导轨结构在预设的轨迹中移动,从而保证导风件12在移动过程的稳定可靠。
根据本申请的一些实施例,移动驱动装置13还包括第一驱动件134,第一驱动件134与传动件联动且适于驱动传动件带动导风件12在第一位置至第二位置移动。第一驱动件134作为移动驱动装置13的原动件,是导风件12进行移动的动力源,第一驱动件134可以驱动传动件移动,以使传动件沿导向件的预设轨迹进行运动,导风件12也随之进行运动。而导向件的运动轨迹与导风件12的运动轨迹相同,均存在第一位置和第二位置,在传动件移动至导向件轨迹的与第一位置相应的第一端时,导风件12相应移动到第一位置,在传动件移动至导向件轨迹的与第二位置相应的另一端时,导风件12相应移动到第二位置。而第一驱动件134可以驱动传动件按导向件轨迹移动,以完善整个传动结构。
如图13所示,根据本申请的一些实施例,导向件构造为滑轨131,传动件包括齿条132,齿条132与滑轨131配合并沿滑轨131的延伸方向移动,齿条132与导风件12相连,第一驱动件134构造为驱动电机,驱动电机的输出端设置有与齿条132啮合的齿轮133,齿轮133与齿条132啮合以适于向齿条132传输驱动力,齿轮133转动后,齿轮133周向上的齿牙与齿条132上的齿牙啮合,齿条132上的齿牙在其长度方向上延伸依次排布,因此在齿轮133转动后相当于齿轮133不断在齿条132上爬升,使齿轮133与齿条132之间发生相对移动,而电机固定在机壳11上,当齿轮133与齿条132之间发生相对移动后,可以理解为电机驱动齿条132移动。
同时又由于齿条132与滑轨131保持配合,因此齿条132的移动方向也被限定,所以在齿条132只能沿滑轨131的预设轨迹进行移动,即齿条132只能在带动导风件12在第一位置至第二位置的方向上移动。
根据本申请的一些实施例,齿条132可以构造为弧形齿条132,齿轮133与弧形齿条132的一侧的齿牙啮合,而滑轨131的轨迹也同样构造为弧形,以使齿条132与滑轨131之间不会发生相对搓动,避免齿条132脱离滑轨131的轨道。
根据本申请的一些实施例,齿条132上设置有多个限位柱1522,且多个限位柱1522在齿条132的延伸方向上间隔布置,多个限位柱1522与齿条132或轨道所形成弧形的圆心的距离相同。可以理解为,齿条132移动轨迹的圆弧的半径与多个限位柱1522与齿条132移动轨迹圆心之间的距离相同,多个限位柱1522的移动轨迹也同样落入到滑轨131所构成的圆弧上。从而进一步限制齿条132从滑轨131上脱离,提高了齿条132与滑轨131之间相对移动的稳定性。
根据本申请的一些实施例,导风件12、齿条132、齿轮133、滑轨131和第一驱动件134均构造为两个,两个导风件12可以组合以同步移动至第一位置或同步移动至第二位置,相邻两个导风件12之间无法实现出风,两个导风件12共同运动以避免出风口111的正面出风而导致冷风直吹用户,同时可以实现侧向送风的远距离送风模式。
两个导风件12组合后可以构造为中间厚两端薄的结构,而每个导风件12均构造为月弧形,这里所述的月弧形是内表面与外表面均朝向外侧凸出的弧形面。
两个导风件12还可以相对远离彼此的方向运动,以在两个导风件12之间形成出风通道,使部分气流可以通过两个导风件12之间进行出风,以对出风口111的正向进行吹风,提高空调室内机1正面出风口111的出风风量。
由于两个导风件12需要同步移动以及相对运动,因此需要设置两套相互独立的移动驱动装置13,通过将导风件12、齿条132、齿轮133、滑轨131和第一驱动件134均构造为两个,以使两个导风件12均被构造为独立相对运动,而两个导风件12的同步运动也是在两个相应的第一驱动件134的控制下实现同步移动。
由此,两个齿轮133与两个齿条132分别对应啮合,使每个齿轮133驱动对应的齿条132沿对应的滑轨131运动,以确保两个导风件12可以在各自的柜机中独立运动,两个第一驱动件134与两个齿轮133分别对应,每个第一驱动件134控制相应的齿轮133,使导风件12进行相应的移动。
在本申请的一些实施例中,两个导风件12彼此远离,可以在一个第一驱动件134的驱动下进行控制,第一驱动件134可以驱动一个齿轮133,对应两个导风件12的齿条132在彼此正对的表面设有与齿轮133啮合的齿牙,齿轮133设置于两个齿条132之间,在齿轮133转动时两个齿条132朝向远离彼此的方向移动,以使对应的两个导风件12远离彼此以打开两个导风件12之间的导风通道。
两个导风件12以及驱动两个导风件12的齿条132可以在另一个驱动装置的驱动下进行移动,两个导风件12可以在保持合并的状态下在另一个第一驱动件134的驱动下在第一位置至第二位置之间移动,以实现空调室内机1的单侧出风。
根据本申请的一些实施例,两个滑轨131均构造为弧线形滑轨131且同心等半径设置,将两个滑轨131构造为同心等半径设置以确保两个导风件12所移动的柜机相同,两个导风件12在朝向远离彼此的方向上移动时,两个导风件12的移动轨迹可以沿机壳11的外观面展开,使两个导风件12在远离彼此的过程中与出风口111的宽度方向上的中心线之间的距离保持相同,以保证空调室内机1的出风的均匀度。
如图13所示,根据本申请的一些实施例,机壳11上设置有导风件盒架124,导风件盒架124的上下两侧分别设置有同心等半径的滑轨131,导风件盒架124也同样构造为弧线形,在导风件盒架124的上侧设置有导风件盒盖125,导风件盒架124的下侧设置有导风件盒座126,导风件盒盖125、导风件盒座126分别与导风件盒架124的上下两侧之间限定出彼此间隔开适于齿条132移动的空间,齿条132构造为两个且分别配合在导风件盒架124的上下两侧的空间内,在对应的空间内设置有与齿条132啮合的齿轮133,而电机设置在导风件盒盖125上侧或导风件盒座126的下侧,电机的输出轴伸入至空间内与齿轮133相连以驱动齿轮133转动,齿轮133驱动对应的齿条132在沿滑轨131移动。
如图12所示,在齿条132上可以设置有穿过导风件盒盖125或导风件盒座126的配合插销,配合插销可以露出于移动驱动装置13,在导风件12的上端或下端,导风件12的上下两端设有与配合插销插接配合的插销孔,配合插销插入至插销孔内,以使电机在带动齿轮133转动时使导风件12保持在第一位置、第二位置或在第一位置至第二位置之间移动,多个配合插销与相应的导风件12配合,以使多个导风件12可选择地远离彼此以在彼此之间形成出风通道。
根据本申请的一些实施例,滑轨131均包括设于对应齿条132的厚度方向上的至少一侧的滑槽1311,每个齿条132的厚度方向上的对应侧设有滑柱1321,滑柱1321配合于对应的滑槽1311。滑轨131可以设置于导风件盒架124上,在导风件盒架124的上下两侧的表面分别设置有两个滑轨131,而滑轨131由滑槽1311构成,滑槽1311可以构造为设置于导风件盒架124的上下表面的两条凸起筋,两条凸起筋之间形成滑轨131,而每个齿条132上设置有滑柱1321以嵌入至滑槽1311中,并在两条凸起筋的限定下沿预设的轨迹移动。在邻近滑槽1311的边沿设置有适于配合插销穿过的过孔,可以令位于导风件盒架124上侧的齿条132上的配合插销或位于导风件盒架124下侧的齿条132上的配合插销,以使配合插销可以穿过导风件盒架124与对应的导风件12连接。
根据本申请的一些实施例,移动驱动装置13为两个且设置于机壳11上分别位于导风件12长度方向上的两侧,每个移动驱动装置13上均可以设置有两个齿条132、两个导轨以及两个第一驱动件134,上下两侧的移动驱动装置13上的两个齿条132彼此正对,一个导风件12的上下两侧分别由一个齿条132所带动,使导风件12的移动根据稳定。
根据本申请的一些实施例,在上下两侧的移动驱动装置13中,可以仅在其中一个上设置有电机,而另一个移动驱动装置13中可以仅设置滑轨131和导槽仅对导风件12的移动起到导向作用,以降低空调室内机1的成本。
根据本申请的一些实施例,可以在上下两侧的移动驱动装置13中的每个中设置一个电机,而位于上下两侧的移动驱动装置13可以均可以对两个导风件12中的一个进行驱动对另一个进行导向。
根据本申请的一些实施例,在上下两侧的移动驱动装置13中的一个上设有两个电机,而在上下两侧的移动驱动装置13中的另一个上不设置电机。
根据本申请的一些实施例,每个导风件12可以被驱动绕配合插销自转地安装在移动驱动装置13上,使导风件12具有更大的空调室内机的出风角度调节范围。
当每个导风件12在第一位置时,通过自转以增大与出风口111第二侧之间的距离,以调整导风件12位于第一位置的出风量;当每个导风件12在第二位置时,通过自转以增大与出风口111第一侧之间的距离,以调整导风件12位于第二位置的出风量;在两个导风件12远离彼此以在两个导风件12之间形成出风通道时,通过导风件12的自转以改变两个导风件12之间的出风通道的大小,从而控制两个导风件12之间的出风通道的出风风量。
如图14所示,根据本申请的一些实施例,齿条132设于对应的导风件12的长度方向上的一侧,这里所指的长度方向 可以是高度方向,导风件12可以在高度方向延伸以构造为长条状导风件12,导风件12上设有面向对应的齿条132设置的配合孔,可以理解为导风件12的上下两个端面上可以分别与位于上侧的移动驱动装置13或位于下侧的移动驱动装置13正对,在导风件12的上下两个端面上分别设置有配合孔,每个齿条132上均设置有通孔1222。
在空调室内机上还设置有转动驱动机构14,转动驱动机构14适于驱动导风件12自转以改变导风件12的角度从而调整空调室内机1的出风方向。转动驱动机构14包括驱动轴141和转动电机142,驱动轴141贯穿通孔1222使驱动轴141相对对应的齿条132空转,驱动轴141插配于配合孔使驱动轴141驱动对应的导风件12转动,这里需要说明的是驱动轴141始终保持与齿条132相对静止,驱动轴141可以随齿条132移动。
驱动轴141穿过齿条132上的通孔1222后,驱动轴141与通孔1222的内周壁之间不发生接触,以避免驱动轴141与齿条132之间发生干涉,驱动轴141可以一方面用于驱动导风件12在随齿条132的移动而移动,另一方面,驱动轴141用于驱动导风件12绕驱动轴141转动,以使导风件12可以用于调整导风件12的角度。
此外,驱动轴141与导风件12可以构造为一一对应的多个,每个导风件12均对对应驱动轴141至少一个驱动轴141,当导风件12对应两个驱动轴141时,两个驱动轴141的延伸方向相同并在上下两侧分别驱动导风件12转动。
根据本申请的一些实施例,转动驱动机构14还包括转动电机142,转动电机142与驱动轴141分别对应,转动电机142驱动对应的驱动轴141转动,驱动轴141在转动电机142的驱动下转动并将驱动力传递至导风件12,转动电机142作为导风件12自转过程中的驱动装置,通过控制转动电机142以控制导风件12自转的角度。
根据本申请的一些实施例,转动电机142可以设置在齿条132上与齿条132同步移动,在齿条132移动的过程中,转动电机142、驱动轴141均同步移动,以确保转动驱动机构14与移动驱动机构对导风件12的驱动过程相互独立,提高导风件12移动的可靠性。
根据本申请的一些实施例,空调室内机还包括开关门部件,开关门部件包括两个沿竖直方向延伸的开关门15,两个开关门15沿横向设于出风口111的两侧,两个开关门15分别在关闭位置和打开位置之间可运动,两个开关门15可运动至关闭位置,以使开关门15与导风件12邻近,当两个开关门15运动至打开位置时,导风件12可选择地在第一位置与第二位置之间移动。
在本实施例中的开关门部件可以设置在机壳11的外周,在关闭状态下开关门15与导风件12彼此邻接,这里需要说明的是邻接可以是开关门15的部分边沿与导风件12的部分边沿彼此接触以拼合,在关闭状态下导风件12的部分与出风口111正对,而导风件12的两侧边沿通过与开关门15邻接以使开关门15保持与导风件12共同组成了机壳11的外观面。
在开关门15处于打开状态下,两个开关门15远离彼此,以避让导风件12的移动轨迹,特别是开关门15可以远离至第一位置与第二位置之外,使导风件12在第一位置与第二位置的移动过程中避免与开关门15发生干涉。
如图1所示,根据本申请的空调室内机1,通过设置开关门15在打开位置与关闭位置之间移动,在关闭位置与导风件12组成了完整的外观面,提高了空调室内机1的美观度,降低了开关门15的动作角度,提高了空调室内机1的科技感,同时增加的开关门15在动作过程中的稳定性。
根据本申请的一些实施例,空调室内机包括开关门部件,开关门部件包括两个沿竖直延伸的开关门15,两个开关门15沿横向设于出风口111的两侧,两个开关门15分别在关闭位置和打开位置之间可运动,两个开关门15可有运动至关闭位置以覆盖导风件12。在开关门15处于关闭状态下,将覆盖出风口111,以将出风口111封闭,开关门15不仅仅封闭出风口111还用于封闭位于出风口111处的导风件12。在本实施例中,开关门15在关闭状态下的覆盖范围大,可以在关闭状态有效地保护导风面121的外表面。
如图17-18所示,根据本申请的一些实施例,开关门15构造为转动门,开关门15的后侧沿与机壳11铰接以转动门的后侧沿转动。开关门15可以构造为两个对开式开关门15,开关门15构造为长条状开关门15且与出风口111的延伸方向相同,开关门15的后侧沿在竖直方向延伸,可以与机壳11铰链连接,开关门15在转动过程中以避让导风件12的运动轨迹。
如图18所述,在一些实施例中,当开关门15在关闭状态下,开关门15的外表面与导风件12的外表面拼接以形成一体,开关门15在由关闭状态朝向开打状态切换时,开关门15朝向机壳11内侧转动,以使开关门15与导风件12之间交错开以形成出风通道,这种开关门15的布置方式,使得开关门15的移动范围小,操作方便控制容易。
在一些实施例中,当开关门15在关闭状态下,开关门15的内表面覆盖在导风件12的外侧,开关门15的外表面作为外观面,而开关门15通过对开的方式朝向机壳11外侧打开,以将导风件12露出,使导风件12可以在预设的轨迹下移动。
根据本申请的一些实施例,开关门15构造为滑动门,滑动门围绕机壳11的外周并沿机壳11的周向滑移,将开关门15构造为滑动门,大大减小了开关门15的运动幅度,开关门15的打开和关闭状态的转换更加美观,提高了空调室内机 的使用体验,增强了用户的使用感受。
这里所说滑动门可以是在空调室内机的机壳11上设置有固定的滑动轨迹,当滑动门处于关闭位置时滑动门保持围绕在机壳11周向上的位置。滑动轨迹可以为环绕机壳11设置,以使滑动门打开时能够朝向远离彼此滑动,并沿机壳11的外周边沿的延伸方向滑动。
如图15-16所示,根据本申请的一些实施例,空调室内机包括滑动门驱动组件150,滑动门驱动组件150包括滑动门盒座151,滑动门盒座151上设有第一轨道1511和第二轨道1512。第一轨道1511和第二轨道1512均构造为远离机壳11方向凸出的弧形轨道,这里需要说明的是,滑动门盒座151座可以固定在机壳11上,滑动门盒座151作为开关门15的安装基础,在滑动门盒座151上内限定出第一轨道1511和第二轨道1512,以用于限定开关门15的活动轨迹。
在滑动门盒座151内设有朝向上侧凸出的多个筋条,多个筋条之间彼此间隔开,以在相邻的两个轨道之间形成上述第一轨道1511和第二轨道1512,一般地,滑动门驱动组件150中还设置有滑动门盒盖156,滑动门盒盖156盖设于滑动门盒座151上以形成封闭的活动空间,以便于保护在第一轨道1511和第二轨道1512内移动的零部件。
滑动门驱动组件150还包括滑动齿条152和第二驱动件154,滑动齿条152可滑动地设置于第一轨道1511,第二驱动件154适于驱动滑动齿条152在第一轨道1511上移动,第二驱动件154作为滑动门驱动组件150的动力源,用于为滑动门的移动提供原动力,并控制滑动门的打开和关闭。
根据本申请的一些实施例,滑动门驱动组件150还包括摆动板153,摆动板153可转动地设置于滑动齿条152上,并沿第二轨道1512滑动,摆动板153与开关门15联动,摆动板153的摆动可以带动滑动门运动,摆动板153具有多个方向上的自由度。
摆动板153在第二轨道1512上滑动,以使摆动板153带动开关门15在第二轨道1512的轨迹上平移以完成开关门15远离彼此的打开动作。摆动板153在平移的同时还相对滑动齿条152转动,由于滑动齿条152在第一轨道1511上滑动,滑动齿条152在第一轨道1511上的滑动与摆动板153在第二轨道1512上的滑动同步动作,同时摆动板153还相对滑动齿转动,以使摆动板153在开关门15逐渐打开的过程中,使开关门15进一步展开,以避免开关门15在打开的过程中与机壳11之间发生干涉,确保开关门15打开过程中的流畅度。根据本申请的一些实施例,第一轨道1511和第二轨道1512均构造为弧形轨道,第一轨道1511设置于第二轨道1512的内侧且第一轨道1511与第二轨道1512之间的距离在开关门15打开方向上逐渐增加。
在滑动齿条152沿第一轨道1511滑动时,滑动齿条152带动摆动板153的一端一起沿第一轨道1511的轨迹滑动,摆动板153另一端与第二轨道1512配合,以使摆动板153的另一端沿第二轨道1512的轨迹滑动,摆动板153在打开的过程中带动开关门15打开并转动,使开关门15完成打开的同时还会逐渐张开的复合运动,这样就能有效地保证开关门15打开时不碰到机壳11。
根据本申请的一些实施例,滑动齿条152的下侧设置有多个滑轴,滑轴配合在第一轨道1511内,滑动齿条152的一端设置有枢转轴1521,在摆动板153的上侧设置有与枢转轴1521配合的枢转孔1531,以使摆动板153与滑动齿条152相对转动。
根据本申请的一些实施例,在滑动齿条152的上侧设置有限位柱1522,在摆动板153上设置有适于容纳限位柱1522的配合缺口,配合缺口在摆动板153相对滑动齿条152转动的方向上延伸,以限制摆动板153相对滑动齿条152转动过程中的自由度,避免滑动齿条152与摆动板153之间脱离配合。
根据本申请的一些实施例,限位柱1522构造为多个其中一个限位柱1522设于滑动齿条152延伸方向上的另一端,限位柱1522与枢转轴1521分别设置于滑动齿条152的两端,摆动板153上设置有与位于滑动齿条152另一端的限位柱1522配合的限位槽1532,限位槽1532用于限制滑动齿条152与摆动板153之间的转动自由度。
根据本申请的一些实施例,摆动板153上的外侧边设有朝向外侧延伸的转动臂,转动臂用于连接开关门15,开关门15的上端面与转动臂之间可以通过螺栓连接、粘接卡接等方式固定。
根据本申请的一些实施例,滑动门驱动组件150可以设置于机壳11的上下两侧,以在上下两个方向上支撑开关门15。
根据本申请的一些实施例,空调室内机1还包括散风板,散风板可转动地设置于机壳11且可选择地封闭出风通道,散风板上设置有与出风通道正对的散风区,气流可以在散风区处穿过散风板,散风区上设置有散风结构以用于散风,降低空调器的出风风压,实现无风感出风。
根据本申请的一些实施例,散风结构可以构造为形成于散风板散风区上的多个微孔,来自出风风道的气流经过多个微孔后流出以用于降低出风风道的风压,实现无风感出风。
根据本申请的一些实施例,在散风板上设置有多个散风孔,散风结构构造为设于散风孔处的叶片,叶片可以在气流经 过时转动以降低来自出风风道处的风压,实现无风感出风。
根据本申请的一些实施例,散风板与导风件12构造为同一结构,导风件12上设置有散风区以用于实现无风感出风。
根据本申请的一些实施例,散风板与开关门15构造为同一结构,开关门15上设置有散风区以用于实现无风感出风。
根据本申请的一些实施例,导风件12可前后移动地设在所述出风口111处以可选择地打开或关闭所述出风口111。在本实施例中,出风口111的开启和关闭由导风件12的前后移动实现,在导风件12关闭出风口111时,导风件12处于与出风口111的外边沿配合的状态,可以使导风件12的外边沿与出风口111的外边沿止抵、交错或邻接,以将出风口111进行封闭或部分封闭。
在导风件12向前或向后移动后,导风件12的外边沿与出风口111之间形成间隙,以将出风口111打开,使空调室内机1可以进行出风。
根据本申请的空调室内机1通过控制导风件12的前后移动实现出风口111的打开和关闭,导风件12的移动轨迹简单,使空调器出风口111的启闭控制更加方便,不需要设置复杂的传动结构,减少了空调器的零部件数量,降低了空调器的成本,提高了空调器的稳定性。
根据本申请的一些实施例,空调器中设置有移动驱动装置13,在本实施例中的移动驱动装置13设置在机壳11上,移动驱动装置13驱动导风件12移动,以控制导风件12打开或关闭出风口111。
根据本申请的一些实施例,移动驱动装置13与导风件12相连并驱动导风件12打开或关闭出风口111;并且在导风件12处于打开出风口111的状态下还可以驱动导风件12进一步动作。
在导风件12处于打开状态下,即导风件12已经完成前后移动的动作后,移动驱动装置13可以进一步驱动导风件12在第一位置与第二位置之间移动。
在移动驱动装置13驱动导风件12移动至第一位置时,导风件12与出风口111的第一侧配合以朝向出风口111的第二侧导风;移动驱动装置13驱动导风件12移动至第二位置时,导风件12与出风口111的第二侧配合以朝向出风口111的第一侧导风。
这里需要说明的是出风口111的第一侧和出风口111的第二侧可以是指出风口111在宽度方向上的两侧,当导风件12移动至第一位置后,导风件12与出风口111的第一侧之间的配合可以是重叠、交错或止抵,但不限于上述配合方法,导风件12与出风口111一侧配合的目的在于限制气流由导风件12与出风口111的第一侧之间出风。此时导风件12与出风口111的第二侧之间间隔开并存在较大的间隙,大部分气流可以由导风件12与出风口111之间的间隙导出,此时的气流量大,避免了由出风口111处直接吹向用户,此时的气流会绕过用户起到防冷风直吹的作用,同时没有散风件等阻挡气流,气流的流量大,风量充足。
而导风件12移动至第二位置后,导风件12与出风口111的第二侧之间的配合可以是重叠、交错或止抵,但不限于上述配合方法,导风件12与出风口111二侧配合的目的在于限制气流由导风件12与出风口111的第二侧之间出风。此时导风件12与出风口111的第一侧之间间隔开并存在较大的间隙,大部分气流可以由导风件12与出风口111之间的间隙导出,此时的气流量大,避免了由出风口111处直接吹向用户,此时的气流会绕过用户起到防冷风直吹的作用,同时没有散风件等阻挡气流,气流的流量大,风量充足。
导风件12还可以在第一位置与第二位置之间移动,导风件12与出风口111的第一侧之间,导风件12与出风口111的第二侧之间均限定出出风通道,使气流可以通过两侧出风,由于导风件12位于出风口111的中部,从而避免了气流直吹用户,起到风冷风直吹的作用,同时通过两侧出风通道吹出的气流形成环抱气流的效果,可以快速并均匀地降低室内空气温度,同时还能对墙体进行快速降温,解决了炎热夏天炉热效应。
根据本申请的空调室内机1,通过设置导风件12在第一位置和第二位置之间移动,一方面避免了出风口111对用户的直吹,同时还保证了室内风的出风量,改善了用户在空调室内机1的出风状况,提高了用户的使用感受,增强了空调室内机1的降温效果。
根据本申请的一些实施例,导风件12构造为多个,多个导风件12可以在组合后同步移动,气流无法由相邻的两个导风件12之间流通,多个导风件12在第一位置、第二位置以及第一位置和第二位置之间移动,以改变出风方向和出风模式。
此外,多个导风件12可选择地远离彼此以在相邻的两个导风件12之间限定出出风通道。气流可以通过相邻的两个导风件12之间以使空调室内机1能够进行正面出风,多个导风件12位于第一位置和第二位置之间时,邻近出风口111第一侧的导风件12与出风口111的第一侧之间形成第一出风通道,邻近出风口111第二侧的导风件12与出风口111的第二侧之间形成第二出风通道,相邻的两个导风件12之间形成第三出风通道,多个出风通道道可以对气流进行风流,第三出风通道与用户正对,但风量小,出风的风感弱,用户的体验好。同时第一出风通道、第二出风通道形成环抱室内空间的气流, 以形成环保气流,提高对室内的降温效果。
通过将导风件12构造为多个,丰富了空调室内机1的出风模式,使用户的选择空间进一步提高,空调室内机1更能满足用户的使用需求,提高了用户的使用体验。
根据本申请的一些实施例,空调室内机1还设置有开关门15,开关门15设置于导风件12的外表面且与导风件12同步移动,开关门15适于在导风件12关闭出风口111时与机壳11配合令开关门15的前表面形成机壳11的外观面。本实施例的空调室内机1取消了开关门15,或是可以理解为开关门15与导风件12构造为一体结构。
导风件12上设置有导风面121,导风面121可以构造为两个且每个导风面121均构造为弧形面,两个弧形面对称布置于导风件12的内侧,两个导风面121均朝向外侧凸出,以使导风件12构造为楔形结构。
在导风件12的前侧设置有开关门15,开关门15设置于导风件12的前表面且宽度大于导风件12的宽度,开关门15可以用于导风,开关门15构造为长条的矩形板设置在导风件12的前侧,以在导风件12移动至打开出风口111并在第一位置和第二位置移动的过程中可以利用开关门15朝向出风口111一侧的表面对空气进行导引。
根据本申请的一些实施例,导风件12可以朝向前侧移动,以使开关门15与机壳11之间形成间隙以适于气流由出风口111排出后经过机壳11与开关门15后表面之间的出风通道流出,导风件12向前移动一方面可以用于打开出风口111,使出风口111处的气流可以流出,另一方面可以通过导风件12向前移动,以避免开关门15在第一位置至第二位置的移动过程中与机壳11之间发生碰撞,提高开关门15移动的稳定性。
根据本申请的一些实施例,开关门15的两侧边可以形成有导风边155,导风边155构造为朝向出风口111一侧或远离出风口111一侧弯曲,位于开关门15两侧的导风边155可以进一步用于对气流导向,使气流在导风件12的导向下流动至开关门15的两侧边,并进一步在导风边155的导向下向远离开关门15的方向流动,以使空调器的出风形成环抱风。
导风边155朝向出风口111一侧弯曲时,导风边155可以与机壳11的外周邻近,导风边155可以与机壳11拼接或交错,以使外壳形成完整的外观面,导风边155的弯曲弧度可以与机壳11的外周面的弯曲弧度相同,以进一步提高空调室内机1在关机状态下外观面的平整度。
如图31-34所示,根据本申请的一些实施例,机壳11内设置有避让空间112,在所述导风件12打开所述出风口111时,所述导风件12的至少部分收容于所述避让空间112内。在本实施例中,当导风件12处于关闭出风口111的状态下,导风件12的边缘与出风口111的边缘拼接或邻接,以封闭出风口111,在导风件12将出风口111打开时,导风件12向后移动,以使导风件12退入至出风口111中,使导风件12与出风口111的两侧边缘之间形成出风风道。
在机壳11内所设置的避让空间112可以位于出风口111的两侧,而当导风件12处于第一位置时,导风件12进入到位于出风口111第一侧内的避让空间112中,以使导风件12与出风口111的第二侧之间形成出风通道,使导风件12进行出风。而当导风件12处于第二位置时,导风件12进入到位于出风口111第二侧内的避让空间112中,以使导风件12与出风口111的第一侧之间形成出风通道,使导风件12进行出风。
根据本申请的一些实施例,出风口111的两侧均设有避让空间112,每个避让空间112对应设置一个可活动的挡风板114,挡风板114具有避让状态和挡风状态,在避让状态挡风板114打开避让空间112以使所述导风件12可伸入,在所述挡风状态,挡风板114遮挡避让空间112以作为空气流道的一部分。
在本实施例中,挡风板114可以用于封闭避让空间112,避免避让空间112在敞开状态下产生兜风现象,挡风板114可以作为出风风道的一部分,用于导引气流,使气流的流动更加顺畅,减小噪音的产生。
根据本申请的一些实施例,空调室内机1中包括机壳11和风道部件113,机壳11的前表面设有出风口111;风道部件113设在机壳11内,风道部件113内设有朝向出风口111延伸的出风风道,风道部件113的前侧设有避让空间112,出风口111的至少一侧设有所述避让空间112;导风件12可移动地设在出风口111处以改变出风方向,移动驱动装置13设在机壳11内,移动驱动装置13与导风件12相连以驱动导风件12移动,空调室内机具有关机状态和第一出风状态,在关机状态,导风件12位于出风口111的且导风件12与机壳11配合以关闭出风口111;在第一出风状态,导风件12移动至使得所述导风件12的至少一部分伸入到所述避让空间112内。
根据本申请的空调室内机1,在风道部件113内设置避让空间112,便于收容导风件12,使导风件12在朝向风道部件113内移动后打开出风口111,这种出风口111的打开方式使导风件12不再向外展开,使空调室内机进行打开或关闭动作所需要的空间更小,导风件12在对气流进行导向时收纳于避让空间112中,提高了空调室内机1的美观度。
根据本申请的一些实施例,出风口111的两侧均设有避让空间112,每个避让空间112对应设置一个可活动的挡风板114,挡风板114具有避让状态和挡风状态,在避让状态挡风板114打开避让空间112以使导风件12可伸入,在挡风状态,挡风板114遮挡避让空间112以作为空气流道的一部分;第一出风状态包括单侧出风模式,在单侧出风模式,导风件12 的至少一部分伸入到其中一个避让空间112内且另一个避让空间112的挡风件处于挡风状态。
通过设置挡风板114结构,可以有效地避免出风口111的气流进入到避让空间112内,减少避让空间112对气流的阻挡作用,使空调室内机1空气的流通更加顺畅。
根据本申请的一些实施例,导风件12为两个,第一出风状态包括中间出风模式,在中间出风模式下两个挡风板114均位于所述避让状态且两个导风件12的至少一部分均伸入到避让空间112内。
导风件12处于中间出风模式时,两个导风件12朝向远离彼此的方向移动并进入到出风口111两侧的避让空间112中,两个导风件12之间的距离可以调节,通过控制两个导风件12之间的距离以调整中间出风口111的大小。
两个导风件12彼此间隔开后,每个导风件12的至少部分可以容纳在对应的避让空间112中,导风件12可以部分容纳在避让空间112内,也可以全部容纳在避让空间112内。
如图31-34所示,根据本申请的一些实施例,空调室内机开机时,移动驱动装置13被构造成先驱动导风件12向后移动后驱动导风件12左右移动且使空调器切换至第一出风状态。移动驱动装置13先驱动导风件12前后移动以打开出风口111,使导风件12与出风口111之间形成出风通道,再控制导风件12左右移动,以在第一出风状态下利用导风件12调整出风方向。
如图26所示,根据本申请的一些实施例,移动驱动装置13包括前后推动装置135和左右摆动装置136,前后推动装置135设置有在前后方向上移动的第一驱动端,左右摆动装置136与第一驱动端相连并在第一驱动端的驱动下前后移动,左右摆动装置136具有多个第二驱动端,每个第二驱动端与对应的导风件12相连以适于驱动导风件12移动。
本实施例中的移动驱动装置13具有两部分,分别用于实现导风件12的前后移动和左右摆动,前后推动装置135的第一驱动端可以带动左右摆动装置136移动,以带动导风件12在前后方向上移动以可选择地打开或关闭出风口111。而左右摆动装置136可以随第一驱动端同步动作,左右摆动装置136可以在导风件12完成前后移动后,进一步驱动导风件12左右摆动,以使导风件12在第一位置与第二位置之间切换,以用于驱动导风件12的外置从而改变出风风向,或是驱动多个导风件12远离彼此,以在相邻的两个导风件12之间形成出风通道。实现空调器的正面出风。
根据本申请的一些实施例,前后推动装置135包括:底座1351a、滑动块1353a和第一驱动件134,底座1351a上设置有第一导向柱1352a,滑动块1353a上设置有在前后方向延伸的且与第一导向柱1352a配合的第一导槽1354a,滑动块1353a上设置有第一驱动端,第一驱动件134设置于底座1351a上并驱动滑动块1353a移动。底座1351a构造为板状结构,在底座1351a上设置有外凸的第一导向柱1352a,滑动块1353a上的第一导槽1354a与第一导向柱1352a配合,以用于限制滑动块1353a的移动方向,其中第一导槽1354a构造为在前后方向延伸,驱动件在驱动滑动块1353a移动时,由于第一导向柱1352a与第一导槽1354a之间的配合限制了滑动块1353a的移动方向,使滑动块1353a仅能沿前后方向滑动,滑动块1353a上可以设置有与左右摆动装置136相连的第一驱动端。
根据本申请的一些实施例,底座1351a上侧还设置有滑轨座,滑轨座内设置有滑道,左右摆动装置136的底部上设置有与滑道配合的滑块,滑块嵌入至滑道内,滑道在前后方向延伸,在滑道的底壁上设置有贯通的通孔,第一驱动端可以构造为设置于滑动块1353a上的凸柱,凸柱可以穿过通孔并与滑动块1353a连接并配合,以驱动左右摆动装置136底部的滑块在滑道的延伸方向上移动。
根据本申请的一些实施例,滑动块1353a的两侧边沿设置有朝向上侧凸出的配合条,配合条中彼此正对的侧面设置有多个在前后方向依次排布的齿牙,第一驱动件134构造为两个电机,两个电机上设置有齿轮,并与对应的配合条上的齿牙啮合,以在电机转动过程中驱动滑动块1353a前后移动。
根据本申请的一些实施例,左右摆动装置136包括摆动盒架1361a、配合块1362a和第二驱动件154,摆动盒架1361a与第一驱动端相连,摆动盒架1361a上设置有在左右方向延伸的导轨;配合块1362a可移动地设置于导轨上,配合块1362a上设置有与对应的导风件12相连的第二驱动端;第二驱动件154设置于摆动盒架1361a上并驱动配合块1362a移动,以带动导风件12在第一位置至第二位置之间移动。所述导风件12构造为两个,所述导轨包括两个且分别设置于所述摆动盒架1361a的上下两侧,所述配合块1362a构造为两个分别位于所述摆动盒架1361a的上下两侧且与对应的所述导轨配合并连接对应的导风件12。
其中,摆动盒架1361a包括本体部,本体部的前侧设置有弧形的弯曲部,弯曲部的上下两侧设置有导轨,导轨可以构造为设置弯曲部上下两侧的凸起筋,凸起筋构造为在前后方向间隔开的多个,配合块1362a上设有配合柱,配合柱可以收容在相邻的两个凸起筋之间,以限制配合块1362a的移动轨迹。
根据本申请的一些实施例,配合块1362a的前侧设置有朝向前侧伸出的摆动臂,摆动臂可以与导风件12直接相连,以使配合块1362a的连接位置与摆动壁的连接位置设置在远离盒架的前侧,以确保导风件12在移动过程中不会碰撞到机 壳11。
根据本申请的一些实施例,配合块1362a的后侧设置有多个在宽度方向依次排布的配合齿牙,配合块1362a可以构造为朝向前侧凸出的弧形齿条132,且配合块1362a的弧度与轨道的导轨的弧度相同,第二驱动件154构造为电机,电机的输出端设置有齿轮133,齿轮133与配合块1362a后侧的配合齿牙啮合,以在齿轮133转动时驱动配合块1362a沿导轨移动。
根据本申请的一些实施例,导风件12构造为两个,导轨包括两个且分别设置于摆动盒架1361a的上下两侧,配合块1362a构造为两个分别位于摆动盒架1361a的上下两侧且与对应的导轨配合并连接对应的导风件12。可以理解为导风件12、导轨和配合块1362a均构造为对应的两个,以使两个导风件12可以选择地远离彼此,将两个配合块1362a设置于摆动盒架1361a的上下两侧,合理地布置左右摆动装置136的内部结构,使左右摆动装置136的结构更加紧凑。
根据本申请的一些实施例,第二驱动件154构造为两个且分别驱动对应的配合块1362a,第二驱动件154可以驱动对应的配合块1362a,以使两个导风件12可以独立运动。
根据本申请的一些实施例,第二驱动件154可以构造为一个,且分别与两个配合块1362a同步配合,第二驱动件154的输出端设置有第一齿轮133,第一齿轮133与其中一个配合孔上的配合齿啮合,另一个配合块1362a与第二齿轮133啮合,第二齿轮133与第一齿轮133啮合,以使第二驱动件154在输出动力时,同时驱动第一齿轮133和第二齿轮133转动,第一齿轮133和第二齿轮133的转动方向相反,并同时驱动两个配合块1362a朝向相反的方向运动。
根据本申请的一些实施例,导轨构造为朝前凸出的弧形导轨。
如图27-29所示,根据本申请的一些实施例,空调室内机1还包括前后推动装置135、左右摆动装置136和驱动杆137,前后推动装置135上设有在前后方向上移动的第三驱动端,所述左右摆动装置136上设置有在左右方向上移动的第四驱动端;所述驱动杆137分别与所述第三驱动端、所述第四驱动端可活动连接,所述驱动杆137与导风件12相连并驱动所述导风件12在前后方向移动和左右方向摆动。
驱动杆137可以在第三驱动端和第四驱动端的工作作用下实现前后移动后左右摆动两种动作,可以理解为前后推动装置135和左右摆动装置136所输出的动力共同作用于驱动杆137上,使驱动杆137能够同时具有两种方向的移动自由度。
驱动杆137的一端与导风件12相连,导风件12在驱动杆137的带动下前后移动或左右摆动,以实现打开或关闭出风口111以及在打开出风口111后在第一位置至第二位置之间移动。
根据本申请的一些实施例,前后推动装置135包括:壳体1351b、第一齿条1353b和第二齿条1354b,壳体1351b的底壁上设置有两个第一导引件1352b;第一齿条1353b与第二齿条1354b上均设置有与对应的第一导引件1352b配合的第二导引件1355b,以使第一齿条1353b和第二齿条1354b在第一导引件1352b和第二导引件1355b的配合下在前后方向移动,驱动杆137为两个分别与第一齿条1353b和第二齿条1354b铰接,第一齿条1353b和第二齿条1354b构造为第三驱动端。
根据本申请的一些实施例,左右摆动装置136包括:第三齿条1361b和第四齿条1362b,第三齿条1361b和第四齿条1362b上分别设置有第三导引件1363b,两个驱动杆137上设置有与第三导引件1363b配合的第四导引件1371,以在第三导引件1363b和第四导引件1371的配合下使驱动杆137在左右方向摆动,第三齿条1361b和第四齿条1362b构造为第四驱动端。壳体1351b上设置有齿条132滑槽1311,第三齿条1361b和第四齿条1362b上设置有与齿条132滑槽1311配合的滑柱,齿条132滑槽1311与滑柱配合以限定第三齿条1361b和第四齿条1362b的移动轨迹。第一齿条1353b与第二齿条1354b均构造为朝向彼此凸出的弧形齿条132,第二齿条1354b与第四齿条1362b构造为朝向前侧凸出的弧形齿条132。
根据本申请的一些实施例,第一齿条1353b和第二齿条1354b构造为弧形齿条,且第一齿条1353b和第二齿条1354b构造为朝向彼此凸出的弧形,第二导引件1355b构造为设置于第一齿条1353b和第二齿条1354b上的弧形缺口,在壳体1351b的底壁上设置有与弧形缺口配合的限位柱,限位柱构造为第一导引件1352b,第一导引件1352b和第二导引件1355b配合,以限制第一齿条1353b和第二齿条1354b的移动方向。
第一齿条1353b和第二齿条1354b用于控制驱动杆137的前后移动,使导风件12用于打开或关闭出风口111。
根据本申请的一些实施例,壳体1351b的底壁上设置有用于限制对应的第三齿条1361b和第四齿条1362b的限位槽,第三齿条1361b和第四齿条以及限位槽均构造为弧形,两个限位槽设置于壳体1351b前侧的两侧边,限位槽在朝向远离彼此的方向上朝向后侧弯曲。
根据本申请的一些实施例,驱动杆137上设置有连接柱以构造为第四导引件1371,第三齿条1361b和第四齿条1362b上设置有与连接柱配合的在前后方向上延伸的直线型缺口,以适于第一齿条1353b和第二齿条1354b驱动驱动杆137在前后方向上移动时,与第三齿条1361b和第四齿条1362b之间保持相对移动。其中连接柱可转动地设置于直线型缺口内,在 第三齿条1361b和第四齿条沿限位槽移动时,连接柱在直线形缺口内转动,并与直线型缺口的侧壁止抵,以拉动驱动杆137在左右方向摆动。
根据本申请的一些实施例,机壳11出风口111的上侧设置有显示面板17,显示面板17可以用于显示空调器的参数。将显示面板17设置于空调器出风口111的上侧,可以使用户更加直观地观察到空调器的详细参数。
根据本申请的一些实施例,空调室内机1上设置有人体检测装置18,人体检测装置18可用于检测出风口111前侧的活动人体,人体检测装置18适于在空调器开启状态下,检测到出风口111前侧有人体活动时,控制导风件12的位置以使出风口111的出风方向避让人体,避免冷风直吹,提高用户的舒适性。
在本发明的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”、“顺时针”、“逆时针”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本发明的描述中,“多个”的含义是两个以上,除非另有明确具体的限定。在本发明中,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。在本发明中,除非另有明确的规定和限定,第一特征在第二特征“上”或“下”可以是第一和第二特征直接接触,或第一和第二特征通过中间媒介间接接触。而且,第一特征在第二特征“之上”、“上方”和“上面”可是第一特征在第二特征正上方或斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”可以是第一特征在第二特征正下方或斜下方,或仅仅表示第一特征水平高度小于第二特征。在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不必须针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。尽管上面已经示出和描述了本发明的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本发明的限制,本领域的普通技术人员在本发明的范围内可以对上述实施例进行变化、修改、替换和变型。

Claims (16)

  1. 一种空调室内机,其中,包括:
    机壳,所述机壳设有出风口;
    导风件,所述导风件可前后移动地设在所述出风口处以可选择地打开或关闭所述出风口;
    移动驱动装置,所述移动驱动装置设于所述机壳,所述移动驱动装置与所述导风件相连并驱动所述导风件打开或关闭所述出风口;其中
    所述移动驱动装置适于在所述出风口打开状态下驱动所述导风件在第一位置与第二位置之间移动;
    在所述第一位置,所述导风件与所述出风口的第一侧配合以朝向所述出风口的第二侧导风;
    在所述第二位置,所述导风件与所述出风口的所述第二侧配合以朝向所述出风口的所述第一侧导风;
    在所述第一位置与所述第二位置之间,所述导风件分别与所述出风口的第一侧和第二侧之间均限定出出风通道。
  2. 根据权利要求1所述的空调室内机,其中,还包括:开关门,所述开关门设置于所述导风件的外表面且与所述导风件同步移动,所述开关门适于在所述导风件关闭所述出风口时与所述机壳配合令所述开关门的前表面形成所述机壳的外观面。
  3. 根据权利要求1所述的空调室内机,其中,所述机壳内设置有避让空间,在所述导风件打开所述出风口时,所述导风件的至少部分收容于所述避让空间内。
  4. 根据权利要求3所述的空调室内机,其中,所述出风口的两侧均设有所述避让空间,每个所述避让空间对应设置一个可活动的挡风板,所述挡风板具有避让状态和挡风状态,在所述避让状态所述挡风板打开所述避让空间以使所述导风件可伸入,在所述挡风状态,所述挡风板遮挡所述避让空间以作为空气流道的一部分。
  5. 根据权利要求2-4中任意一项所述的空调室内机,其中,所述导风件构造为多个,多个导风件可选择地远离彼此以在相邻的两个导风件之间限定出出风通道。
  6. 根据权利要求5所述的空调室内机,其中,所述移动驱动装置包括:
    前后推动装置,所述前后推动装置上设置有在前后方向上移动的第一驱动端;
    左右摆动装置,所述左右摆动装置与所述第一驱动端相连并在所述第一驱动端的驱动下前后移动,所述左右摆动装置具有多个第二驱动端,每个所述第二驱动端与对应的所述导风件相连以适于驱动所述导风件移动。
  7. 根据权利要求6所述的空调室内机,其中,所述前后推动装置包括:
    底座,所述底座上设置有第一导向柱;
    滑动块,所述滑动块上设置有在前后方向延伸的且与所述第一导向柱配合的第一导槽,所述滑动块上设置有所述第一驱动端;
    第一驱动件,所述第一驱动件设置于所述底座上并驱动所述滑动块移动。
  8. 根据权利要求7所述的空调室内机,其中,所述左右摆动装置包括:
    摆动盒架,所述摆动盒架与所述第一驱动端相连,所述摆动盒架上设置有在左右方向延伸的导轨;
    配合块,所述配合块可移动地设置于所述导轨上,所述配合块上设置有与对应的所述导风件相连的第二驱动端;
    第二驱动件,所述第二驱动件设置于所述摆动盒架上并驱动所述配合块移动,以带动所述导风件在第一位置至第二位置之间移动。
  9. 根据权利要求8所述的空调室内机,其中,所述导风件构造为两个,所述导轨包括两个且分别设置于所述摆动盒架的上下两侧,所述配合块构造为两个分别位于所述摆动盒架的上下两侧且与对应的所述导轨配合并连接对应的导风件。
  10. 根据权利要求9所述的空调室内机,其中,所述第二驱动件构造为两个且分别驱动对应的所述配合块。
  11. 根据权利要求10所述的空调室内机,其中,所述导轨构造为朝前凸出的弧形导轨。
  12. 根据权利要求5所述的空调室内机,其中,还包括:
    前后推动装置,所述前后推动装置上设置有在前后方向上移动的第三驱动端;
    左右摆动装置,所述左右摆动装置上设置有在左右方向上移动的第四驱动端;
    驱动杆,所述驱动杆分别与所述第三驱动端、所述第四驱动端可活动连接,所述驱动杆与导风件相连并驱动所述导风件在前后方向移动和左右方向摆动。
  13. 根据权利要求12所述的空调室内机,其中,所述前后推动装置包括:
    壳体,所述壳体的底壁上设置有两个第一导引件;
    第一齿条和第二齿条,所述第一齿条与所述第二齿条上均设置有与对应的第一导引件配合的第二导引件,以使所述第一齿条和所述第二齿条在第一导引件和第二导引件的配合下在前后方向移动,所述驱动杆为两个分别与所述第一齿条和所述第二齿条铰接,所述第一齿条和所述第二齿条构造为所述第三驱动端。
  14. 根据权利要求13所述的空调室内机,其中,所述左右摆动装置包括:
    第三齿条和第四齿条,所述第三齿条和所述第四齿条上分别设置有第三导引件,两个所述驱动杆上设置有与所述第三导引件配合的第四导引件,以在所述第三导引件和所述第四导引件的配合下使所述驱动杆在左右方向摆动,所述第三齿条和所述第四齿条构造为所述第四驱动端。
  15. 根据权利要求14所述的空调室内机,其中,所述壳体上设置有齿条滑槽,所述第三齿条和所述第四齿条上设置有与所述齿条滑槽配合的滑柱,所述齿条滑槽与所述滑柱配合以限定所述第三齿条和所述第四齿条的移动轨迹。
  16. 根据权利要求15所述的空调室内机,其中,所述第一齿条与所述第二齿条均构造为朝向彼此凸出的弧形齿条,所述第二齿条与所述第四齿条构造为朝向前侧凸出的弧形齿条。
PCT/CN2022/080195 2021-05-31 2022-03-10 空调室内机 WO2022252735A1 (zh)

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