WO2018196784A1 - 一种导风模块及具有该导风模块的空调器 - Google Patents

一种导风模块及具有该导风模块的空调器 Download PDF

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Publication number
WO2018196784A1
WO2018196784A1 PCT/CN2018/084431 CN2018084431W WO2018196784A1 WO 2018196784 A1 WO2018196784 A1 WO 2018196784A1 CN 2018084431 W CN2018084431 W CN 2018084431W WO 2018196784 A1 WO2018196784 A1 WO 2018196784A1
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WIPO (PCT)
Prior art keywords
air
sweeping
air guiding
wind
module according
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PCT/CN2018/084431
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English (en)
French (fr)
Inventor
林青辉
余卫权
邓浩光
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珠海格力电器股份有限公司
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Application filed by 珠海格力电器股份有限公司 filed Critical 珠海格力电器股份有限公司
Publication of WO2018196784A1 publication Critical patent/WO2018196784A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • 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

Definitions

  • the invention relates to the technical field of refrigeration engineering, and in particular to a wind guiding module and an air conditioner having the air guiding module.
  • the air deflector is widely used in air conditioning equipment, and its function is to control the wind angle and achieve sweeping.
  • the air-conditioning Sweeping mechanism 1002 is disposed in the air-conditioning duct 1001, and the air-conditioning air deflector 1003 is disposed at the air outlet of the air-conditioning duct 1001, and the air-conditioning hot and cold air passes through the air-conditioning Sweeping mechanism. 1002 then completes the air conditioning and air guiding work through the air conditioning air deflector 1003.
  • the air-conditioning air-sweeping mechanism and the air-conditioning air deflector of the air deflector are separately disposed in the air-conditioning air duct and the air outlet, and need to be separately assembled and disassembled, and each has an independent driving system, which occupies a large space, and is disposed inside the air-conditioning duct.
  • the air-conditioning air-swept mechanism has a small air-conditioning air duct space, and the air-conditioning air duct, the air-conditioning air-sweeping mechanism and the air-conditioning air deflector are difficult to clean and are likely to cause secondary pollution caused by cumulative pollution, and since the air-conditioning air-swept mechanism is placed inside the air-conditioning duct, the air conditioner The internal space of the air duct is limited, and the sweeping range of the air-conditioning sweeping mechanism is small, which seriously affects the cooling effect of the air conditioner.
  • the air-conditioning air-sweeping mechanism and the air-conditioning air deflector of the air guiding component are disposed inside the air-conditioning air duct and the air outlet.
  • the wind sweeping mechanism cannot Disassembly or obstruction of the sweeping mechanism due to the blockage of the space inside the air duct is extremely complicated, resulting in troublesome disassembly of the air-conditioning swept mechanism and inconvenient cleaning.
  • the air sweeping component is located on the air deflector, the air conditioner bottom shell and the like will interfere with the position of the air sweeping component, and the sweeping blade of the air sweeping plate has to reduce the outer contour size of the blade and reduce the blade size due to the position interference. In order to avoid other air-conditioning components, this will inevitably reduce the amount of sweeping wind and sweeping range of the sweeping blades.
  • the technical problem to be solved by the present invention is to overcome the cumbersome disassembly of the wind sweeping mechanism and the wind deflector in the prior art and the inconvenience of cleaning, and the air sweeping component and the air conditioning bottom case or other air conditioning components disposed at the air outlet of the air conditioner occur.
  • a defect in positional interference, thereby providing a wind guiding module comprising:
  • a wind deflector disposed at the air outlet and driven to close or open the air outlet;
  • the wind sweeping assembly is mounted on the wind deflector and located at a rear side of the wind deflector opening the direction of movement of the air outlet.
  • the air guiding module further includes a drive mechanism including an automatic sweeping drive mechanism and/or a manual sweeping drive mechanism for driving the sweep assembly.
  • the automatic sweeping drive mechanism has a sweep output shaft that is drivingly coupled to the sweeping shaft of the sweep assembly.
  • the sweeping output shaft and the sweeping shaft are connected by different shafts of the connecting assembly.
  • the connecting components are externally meshing gears that mesh with each other.
  • a connecting end of the sweeping output shaft and the sweeping shaft is provided with a first supporting frame and a second supporting frame installed inside the wind deflecting plate;
  • the first supporting frame has a first card slot,
  • the sweeping output shaft is rotatably disposed in the first card slot;
  • the second support frame has a second card slot, and the sweeping shaft is rotatably disposed in the second card slot.
  • the first card slot and the second card slot are grooves provided with openings, and the grooves are coupled with the card plate matched thereto to enclose a wind sweeping output shaft or a wind sweeping shaft. Through hole.
  • the connecting end of the sweeping output shaft and the sweeping shaft is provided with a support cover, and the support cover is coupled to the wind deflector.
  • the support cover and the air guiding plate are provided with a limiting post and a connecting hole that are engaged with each other, and a hook and a buckle that are engaged with each other.
  • the first support frame and the second support frame are disposed inside the support cover.
  • the manual wind sweeping drive mechanism includes a rotary dial disposed at an end of the sweeping shaft, and the rotary dial is configured to drive the wind sweeping assembly to sweep the wind.
  • the rotating dial has a non-slip rib on a circumferential surface thereof.
  • the pulsating wheel is evenly arranged with a reinforcing rib connected to the sweeping output shaft in the circumferential direction.
  • the driving mechanism further includes an air guiding driving mechanism disposed on the air conditioning housing, and the air guiding output shaft on the air guiding driving mechanism is drivingly connected to the air guiding plate for driving the air guiding plate to rotate.
  • the air guiding driving mechanism and the air blowing driving mechanism are respectively disposed on two sides of the air conditioning housing, and the inner side ends of the air guiding plate are respectively provided with a third supporting frame and a fourth supporting frame, and the air guiding output shaft
  • the third support frame is drivingly coupled to the fourth support hole on the fourth support frame.
  • the driving mechanism further includes an air guiding driving mechanism disposed on the air conditioning housing for driving the air guiding plate, and an air guiding support mechanism for supporting the air guiding plate.
  • the air guiding drive mechanism and the air guiding support mechanism are respectively disposed on two sides of the air conditioning housing, and the air guiding output shaft of the air guiding driving mechanism is drivingly connected with the fifth supporting frame disposed on the air guiding plate.
  • the air guiding support mechanism is movably connected to a sixth support frame disposed on the air guiding plate.
  • the air guiding plate is provided with a seventh supporting frame disposed in an axial direction of the sweeping shaft, and the seventh supporting frame is provided with a seventh card slot rotatably connected to the sweeping shaft.
  • the seventh card slot is a groove provided with an opening, and the groove is coupled to the card plate matched thereto to surround the through hole for accommodating the sweeping shaft.
  • the air guiding driving mechanism, the automatic air blowing driving mechanism and the air guiding supporting mechanism are connected to the air guiding plate through a telescopic driving rod, and drive the air guiding plate to open or close the air outlet.
  • An air conditioner includes the air guiding module, and the air guiding module is disposed at an air outlet of the air conditioner.
  • the air conditioning air guiding module provided by the present invention, the air sweeping assembly and the air guiding plate are arranged as a whole, and the air sweeping component is mounted on the air guiding plate to guide the wind direction of the air outlet, and when disassembling and cleaning, The windswept component and the air deflector can be removed together conveniently, so that the user can clean the air outlet frame, thereby solving the technical defect that the existing air conditioner is difficult to thoroughly clean the air outlet frame, and avoiding the air passing through the air outlet frame.
  • the side wall of the side limits the sweeping area of the sweeping mechanism and reduces the problem of the air-conditioning sweeping range.
  • the air sweeping component is located at the rear side of the air deflector opening air outlet, and is placed in the gap of the air conditioner bottom shell to avoid positional interference with the air conditioner bottom shell.
  • the wind sweeping component is simply installed on the air deflector.
  • the sweeping blades provided on the air deflector may interfere with the position of the air conditioning bottom case or other air conditioning components disposed at the air conditioning air outlet, and the wind sweeping blades on the air sweeping plate Due to the influence of positional interference, the outer contour size of the blade has to be reduced, and the blade size has been reduced to avoid other air-conditioning components.
  • the air conditioning air guiding module provided by the present invention further comprises an automatic wind sweeping driving mechanism and/or a manual wind sweeping driving mechanism for driving the air sweeping assembly, and a plurality of different sweeping modes are provided.
  • the automatic sweeping drive mechanism drives the sweeping assembly, it has the advantages of high degree of automation and simple and convenient operation; when only the manual sweeping drive mechanism is used to drive the sweeping assembly, the motor that drives the sweeping assembly is not required to be manually completed.
  • the wind sweeping action reduces the cost of the air conditioner; when the wind sweeping mechanism is controlled by the automatic wind sweeping mechanism and the manual wind sweeping mechanism, the user can select the automatic wind sweep and the manual wind sweep according to the need. Provide users with more choices.
  • the air-conditioning air guiding module provided by the invention has the sweeping output shaft and the sweeping shaft of the wind-driven shaft, and the two shafts are connected by different axes, and the sweeping assembly can be changed under the position that the position of the sweeping drive mechanism does not change.
  • the position on the wind plate prevents the wind sweeping component from interfering with the components such as the air conditioner bottom shell, so that the sweeping blades on the wind sweeping plate can obtain a larger outer contour size of the blade, the blade size, and the sweep of the sweeping blade. Air volume and sweeping range.
  • the air-conditioning air guiding module provided by the invention has the sweeping output shaft and the sweeping shaft different shafts connected through the meshing external meshing gears, and the externally meshing gears make the sweeping output shaft and the sweeping shaft different axes, and have a simple structure. The advantages of high reliability and low production cost.
  • the air conditioning air guiding module provided by the present invention, the connecting end of the sweeping output shaft and the sweeping shaft is provided with a first supporting frame and a second supporting frame for fixing the two, and the sweeping output shaft and the sweeping shaft are mutually A stable drive is connected and no relative positional shift occurs.
  • the air conditioning air guiding module provided by the present invention, the first support frame and the second support frame are provided with grooves for fixing the sweeping output shaft or the sweeping shaft, and the groove is connected with the matching card board, and is used. Firstly, the sweeping output shaft or the sweeping shaft is installed in the groove and then clamped by the card plate, so that the sweeping output shaft and the sweeping shaft rotate stably in the groove to prevent the sweeping output shaft or the sweeping shaft from falling off. Improve the reliability of the sweeping components.
  • the air-conditioning air guiding module provided by the invention has a support cover at the connecting end of the sweeping output shaft and the sweeping shaft, which realizes the full sealing and fixing of the connecting end of the sweeping output shaft and the sweeping shaft, preventing the condensation water from affecting the sweeping wind.
  • the transmission performance of the connecting end improves the service life of the automatic sweeping drive mechanism and improves the user experience.
  • the air conditioning air guiding module provided by the invention has the structure of simple and convenient structure, wherein the supporting cover and the air guiding plate are connected by the limiting post and the insertion hole which are mutually engaged with each other, and the hooks and the buckles which are mutually engaged with each other.
  • the air-conditioning air guiding module provided by the invention has the advantages of simple structure and convenient operation by manually setting a rotating dial provided at the end of the sweeping shaft to manually sweep the wind sweeping assembly.
  • the air conditioning air guiding module provided by the invention has a non-slip rib on the circumferential surface of the rotating dial, which is convenient for the user to use and improves the user experience.
  • the air conditioning air guiding module provided by the invention has a reinforcing rib connected to the sweeping output shaft on the rotating dial to ensure the reliability of the rotating dial.
  • the air conditioning air guiding module provided by the present invention, the air guiding driving mechanism and the wind sweeping driving mechanism are respectively disposed on the two sides of the air conditioning shell respectively connected with the third support frame and the fourth support frame on the air guiding plate, which is beneficial to the air conditioning guide.
  • the spatial layout of the wind module frees up more space for the air conditioner.
  • the air conditioning air guiding module provided by the present invention, when the manual air blowing driving mechanism is used alone, the driving mechanism further includes an air guiding driving mechanism and an air guiding support mechanism disposed on the air conditioning housing, and the air guiding support mechanism does not need to be provided with driving.
  • the motor drives the air deflector, which reduces the manufacturing and maintenance costs of the air conditioner.
  • the air conditioning air guiding module provided by the present invention, the air guiding driving mechanism and the air guiding support mechanism are respectively disposed on two sides of the air conditioning housing, and the air guiding driving mechanism is connected with the fifth supporting frame of the air guiding plate, and the air guiding supporting mechanism
  • the movable connection with the sixth support frame on the air deflector facilitates the spatial layout of the air conditioning air guiding module and frees more space for the air conditioner.
  • the air conditioning air guiding module provided by the present invention is provided with a seventh support frame disposed in the axial direction of the sweeping shaft to ensure stable rotation of the sweeping shaft.
  • FIG. 1 is a schematic view showing the position of an air-conditioning sweeping assembly and an air-conditioning deflector provided by the present invention
  • FIG. 2 is a schematic view showing an offset position of an air-conditioning air-swept component provided on an air-conditioning air deflector according to the present invention
  • FIG. 3 is an exploded view of an assembly structure of an automatic sweeping drive mechanism and a sweeping assembly provided by the present invention
  • FIG. 4 is a schematic structural view of an air conditioning air guiding module provided by the present invention.
  • FIG. 5 is a schematic view showing the assembled structure of an automatic wind sweeping drive mechanism and a sweeping assembly according to the present invention
  • connection assembly connecting a sweeping output shaft and a sweeping shaft according to the present invention
  • Figure 7 is a perspective view of a wind sweeping assembly provided by the present invention.
  • FIG. 8 is a perspective view of a wind deflector provided by the present invention.
  • Figure 9 is a perspective view of a support cover provided by the present invention.
  • Figure 10 is a perspective view of a sweeping output shaft provided by the present invention.
  • Figure 11 is a perspective view of a card board provided by the present invention.
  • FIG. 12 is a perspective view showing the connection between the support frame and the card board provided by the present invention.
  • Figure 13 is an exploded view showing the assembled structure of the manual wind sweeping drive mechanism and the sweeping assembly provided by the present invention
  • FIG. 14 is a schematic view showing the assembly structure of a manual wind sweeping drive mechanism and a sweeping assembly provided by the present invention
  • Figure 15 is a schematic view showing the connection between the air guiding drive mechanism and the air deflector provided by the present invention.
  • Figure 16 is a schematic view showing the connection of a sweeping shaft and a wind deflector provided with a rotary dial according to the present invention
  • Figure 17 is a schematic structural view of a rotary dial provided by the present invention.
  • FIG. 18 is a schematic view showing the position of an air-conditioning air sweeping assembly and an air-conditioning air deflector in the prior art.
  • a wind guiding module as shown in Figures 1 and 2, includes:
  • the air deflector 1 includes an inner air deflector 35 and an outer air deflector 36.
  • the air deflector 1 is disposed at the air outlet 2, and is driven to close or open the air outlet 2; the air outlet direction of the air outlet 2 Is the direction of arrow b in Figure 2;
  • the wind sweeping assembly 3 is mounted on the wind deflector 1 and located at a rear side of the wind deflector 1 that opens the direction in which the air outlet 2 moves.
  • the moving direction of the wind deflector 1 is the direction of the arrow a
  • the wind sweeping assembly 3 is disposed along the direction of the arrow a in FIG. 2 on the side of the air guiding plate 1 which is close to the air outlet position c of the air-conditioning case in FIG. .
  • the air-conditioning air guiding module, the air sweeping component and the air guiding plate are arranged as a whole, and the air sweeping component is installed on the air guiding plate to guide the wind direction of the air outlet, and the wind sweeping can be conveniently performed when the disassembling and cleaning is performed.
  • the component and the air deflector are removed together, so that the user can clean the air outlet frame, thereby solving the technical defect that the existing air conditioner is difficult to thoroughly clean the air outlet frame, and avoids the air being blown out through the air outlet frame twice.
  • the air-swept component is disposed on the air deflector at the outlet of the air-conditioning duct, so as to avoid the prior art air-conditioning swept mechanism disposed in the air-conditioning duct, the side walls on both sides of the air-conditioning housing may limit the sweep The wind sweeping area of the wind mechanism reduces the problem of the air-conditioning sweeping range.
  • the air sweeping component is located at the rear side of the air deflector opening air outlet, and is placed in the gap of the air conditioner bottom shell to avoid positional interference with the air conditioner bottom shell.
  • the wind sweeping assembly is simply installed on the air deflector. When the air deflector is driven to be closed, the sweeping blades provided on the air deflector may interfere with the position of the air conditioning bottom case or other air conditioning components disposed at the air conditioning air outlet, and the wind sweeping blades on the air sweeping plate Due to the influence of positional interference, the outer contour size of the blade has to be reduced, and the blade size has been reduced to avoid other air-conditioning components.
  • the air guiding module further includes a driving mechanism 5 including an automatic wind driving mechanism 6 for driving the operation of the wind sweeping assembly 3.
  • the automatic sweeping drive mechanism drives the sweeping assembly, which does not require manual operation, and has the advantages of high automation and simple and convenient operation.
  • the automatic wind drive mechanism 6 has a sweep output shaft 8 that is drivingly coupled to the sweep shaft 9 of the sweep assembly 3.
  • the sweeping blades 34 are elliptical and are disposed obliquely on the sweeping shaft 9.
  • the sweeping output shaft 8 and the sweeping shaft 9 are connected by the externally meshing externally meshing gears 10, so that the sweeping assembly 3 is disposed along the direction of the arrow a in FIG.
  • the side of the air deflector 1 is close to the side of the air outlet position c of the air conditioner casing in Fig. 2 .
  • the above-mentioned sweeping output shaft and the sweeping shaft are connected by different shafts, and the position of the sweeping assembly on the air deflector can be changed without changing the position of the sweeping drive mechanism, so that the sweeping assembly can be avoided and the air conditioner bottom shell and the like Position interference occurs, so that the sweeping blades on the windshield obtain larger blade outer contour size, blade size, and increase the sweeping volume and sweeping range of the sweeping blades.
  • the connecting end of the sweeping output shaft 8 and the sweeping shaft 9 is provided with a first supporting frame 11 and a second supporting frame 12 which are installed inside the wind deflector 1;
  • the first supporting frame 11 has The first card slot 13 and the sweeping output shaft 8 are rotatably disposed in the first card slot 13.
  • the first card slot 13 is a groove provided with an opening, and is then engaged by a card 15 adapted thereto;
  • the second support frame 12 has a second card slot 14 and the second card slot 14 is a groove provided with an opening.
  • the sweeping shaft 9 is rotatably disposed in the second card slot 14, and the second card slot 14 is further engaged by the card board 15 adapted to the second card slot 14.
  • the connecting end of the sweeping output shaft and the sweeping shaft is provided with a first supporting frame and a second supporting frame for fixing the two, and the transmission output shaft and the sweeping shaft are stably connected with each other, and the transmission does not occur. Relative position offset.
  • the first support frame and the second support frame are provided with a groove for fixing the sweeping output shaft or the sweeping shaft, and the groove is connected with the matching card plate, and the wind output shaft or the wind sweep is used first.
  • the rotating shaft is installed in the groove and is clamped by the card plate, so that the sweeping output shaft and the sweeping shaft rotate stably in the groove, thereby improving the reliability of the sweeping assembly.
  • the connecting end of the sweeping output shaft 8 and the sweeping shaft 9 is provided with a support cover 16, and the support cover 16 is coupled to the wind deflector 1.
  • the first support frame 11 and the second support frame 12 are disposed inside the support cover 16.
  • a support cover is arranged at the connection end of the sweeping output shaft and the sweeping shaft to prevent dust from entering the driving end of the sweeping output shaft and the sweeping shaft, thereby affecting the transmission effect.
  • the support cover 16 and the air deflector 1 are provided with a limiting post 17 and a latching hole 18 which are engaged with each other, and a hook 19 and a latch 20 which are engaged with each other.
  • the support cover and the air deflector are fastened by the binding rods and the insertion holes which are engaged with each other, and the hooks and the buckles which are engaged with each other, and have the advantages of simple structure and convenient disassembly.
  • the driving mechanism 5 further includes an air guiding driving mechanism 24 disposed on the air conditioning housing, and the air guiding output shaft 25 on the air guiding driving mechanism 24 is drivingly connected with the air guiding plate 1 for driving The air deflector 1 rotates.
  • the air guiding drive mechanism 24 is connected to the air deflector 1 through a telescopic drive rod, and the automatic wind sweeping drive mechanism 6 is connected to the air sweeping assembly 3 through a telescopic drive rod to drive the air deflector to open or close the air outlet.
  • the air guiding driving mechanism 24 and the air blowing driving mechanism are respectively disposed on two sides of the air conditioning housing, and the inner side ends of the air guiding plate 1 are respectively provided with a third supporting frame 26 and a fourth supporting frame 27, respectively.
  • the air guiding output shaft 25 is drivingly connected to the third supporting frame 26, and the sweeping output shaft 8 is rotatably disposed in the fourth connecting hole 28 on the fourth supporting frame 27.
  • the air guiding driving mechanism and the sweeping driving mechanism are respectively disposed on the two sides of the air conditioning shell and the third supporting frame and the fourth supporting frame respectively on the air guiding plate, which is beneficial to the space layout of the air conditioning air guiding module, and is used for the air conditioner More space for accommodation.
  • the wind deflector 1 is provided with a seventh support frame 32 disposed in the axial direction of the sweeping shaft 9, and the seventh support frame 32 is provided with a seventh rotation connected to the sweeping shaft 9.
  • Card slot 33 is a groove provided with an opening, and the groove is snap-connected with the matching card plate 15 to surround the through hole for accommodating the wind deflecting shaft 9.
  • the seventh support frame is disposed on the axial direction of the sweeping shaft of the air deflector, and plays a role of limiting the position of the sweeping shaft to ensure stable rotation of the sweeping shaft.
  • An air conditioner includes the air guiding module, and the air guiding module is disposed at an air outlet of the air conditioner.
  • a wind guiding module as shown in Figures 1 and 2, includes:
  • the air deflector 1 includes an inner air deflector 35 and an outer air deflector 36.
  • the air deflector 1 is disposed at the air outlet 2, and is driven to close or open the air outlet 2; the air outlet direction of the air outlet 2 Is the direction of arrow b in Figure 2;
  • the wind sweeping assembly 3 is disposed on the side of the air guiding plate 1 near the air outlet position c of the air conditioning casing in Fig. 2 in the direction of the arrow a in Fig. 2 .
  • the air guiding module further includes a manual wind driving mechanism 7 for driving the operation of the wind sweeping assembly 3.
  • a manual wind driving mechanism 7 for driving the operation of the wind sweeping assembly 3.
  • the automatic wind sweeping mechanism 6 has a sweeping shaft assembly 3 including a sweeping shaft 9 and a sweeping vane 34.
  • the sweeping vane 34 has an elliptical shape and is disposed obliquely on the sweeping shaft 9.
  • the sweeping output shaft 8 and the sweeping shaft 9 are connected by the externally meshing externally meshing gears 10, so that the sweeping assembly 3 is disposed along the direction of the arrow a in FIG.
  • the side of the air deflector 1 is close to the side of the air outlet position c of the air conditioner casing in Fig. 2 .
  • the manual wind sweeping drive mechanism 7 includes a rotary dial 21 disposed at the end of the wind sweeping shaft 9, and the rotary dial 21 is used to drive the wind sweeping assembly 3 to sweep the wind.
  • the manual sweeping wind is provided by the rotary dial provided at the end of the sweeping shaft to manually sweep the wind sweeping assembly, and has the advantages of simple structure and convenient operation.
  • Non-slip rib 22 is provided on the circumferential surface of the rotary dial 21.
  • Non-slip ribs make it easy for users to use and improve the user experience.
  • the ribs 23 connected to the sweeping output shaft 8 are evenly arranged in the circumferential direction of the rotary dial 21. Reinforce the ribs to ensure the reliability of the rotating dial.
  • the drive mechanism 5 further includes an air guiding drive mechanism 24 provided on the air conditioning casing for driving the wind deflector 1 to guide the wind, and an air guiding support mechanism 30 for supporting the wind deflector 1.
  • the air guiding drive mechanism 24 and the air guiding support mechanism 30 are respectively disposed on two sides of the air conditioning housing, and the air guiding output shaft 25 of the air guiding driving mechanism 24 is drivingly connected with the fifth supporting frame 29 disposed on the air guiding plate 1 to guide the air.
  • the support mechanism 30 is movably coupled to a sixth support frame 31 disposed on the wind deflector 1.
  • the air guiding drive mechanism and the air guiding support mechanism are respectively disposed on two sides of the air conditioning housing, the air guiding driving mechanism is drivingly connected with the fifth supporting frame on the air guiding plate, and the air guiding support mechanism and the sixth supporting frame on the air guiding plate are movable.
  • the connection facilitates the spatial layout of the air-conditioning air guiding module and frees more space for the air conditioner.
  • the air deflector 1 is provided with a seventh support frame 32 disposed in the axial direction of the sweeping shaft 9, and the seventh support frame 32 is provided with a seventh card slot 33 rotatably connected to the sweeping shaft 9. .
  • the seventh card slot 33 is a groove provided with an opening, and the groove is snap-connected with the matching card plate 15 to surround the through hole for accommodating the wind deflecting shaft 9.
  • the seventh support frame is disposed on the axial direction of the sweeping shaft of the air deflector, and plays a role of limiting the position of the sweeping shaft to ensure stable rotation of the sweeping shaft.
  • a wind guiding module as shown in Figures 1 and 2, includes:
  • the air deflector 1 includes an inner air deflector 35 and an outer air deflector 36.
  • the air deflector 1 is disposed at the air outlet 2, and is driven to close or open the air outlet 2; the air outlet direction of the air outlet 2 Is the direction of arrow b in Figure 2;
  • the wind sweeping assembly 3 is disposed on the side of the air guiding plate 1 near the air outlet position c of the air conditioning casing in Fig. 2 in the direction of the arrow a in Fig. 2 .
  • the air guiding module further includes an automatic wind sweeping drive mechanism 6 and a manual wind sweeping drive mechanism 7 for driving the operation of the wind sweeping assembly 3.
  • the automatic sweeping drive mechanism and the manual sweeping drive mechanism coexist to control the sweeping assembly to sweep the wind, the user can select the automatic sweeping and manual sweeping according to the need, providing users with more choices to avoid mechanical failure.
  • the automatic sweeping drive mechanism fails.

Abstract

一种导风模块和空调器,导风模块包括:导风板(1),设置在出风口(2)处,受驱动地封闭或开启出风口(2);扫风组件(3),安装设置在导风板(1)上,且位于导风板(1)开启出风口(2)移动方向的后侧。解决了现有导风机构组装拆卸麻烦且清洗困难、并且导风板受驱动关闭时,设置在导风板上的扫风组件会和设置在空调出风口处的空调底壳或其它空调部件发生位置干涉的问题。

Description

一种导风模块及具有该导风模块的空调器 技术领域
本发明涉及制冷工程技术领域,具体涉及一种导风模块及具有该导风模块的空调器。
背景技术
导风板广泛应用于空调设备,其作用是控制出风角度,实现扫风。
现有技术中,如图18所示,空调扫风机构1002设置于空调风道1001内,空调导风板1003设置于空调风道1001的出风口,空调的冷热风先经过空调扫风机构1002再通过空调导风板1003完成空调导风工作。
上述导风板的空调扫风机构和空调导风板分置在空调风道内部和风口处需要单独组装拆卸,且各自有独立的驱动系统,占用的空间大,此外,设置在空调风道内部的空调扫风机构由于空调风道空间狭小,空调风道、空调扫风机构和空调导风板难于清洗容易产生累积污染造成二次污染,并且由于空调扫风机构置于空调风道内部,空调风道内部空间有限、空调扫风机构的扫风范围小,严重影响空调的制冷效果。
上述导风组件的空调扫风机构和空调导风板分置在空调风道内部和出风口处,当位于空调风道内部底壳上的空调左右扫风机构需要清洗时,由于扫风机构无法拆卸或者由于风道内部的空间造成阻挡造成扫风机构拆卸极为复杂,导致空调扫风机构拆卸麻烦且清洗不方便。
并且扫风组件位于导风板上,空调底壳等部件会和扫风组件发生位置干涉,扫风板上的扫风叶片由于位置干涉的影响不得不减小叶片的外轮廓尺寸、缩小叶片大小,以避开其它空调部件,这样势必会缩小扫风叶片的扫风量和扫风范围。
发明内容
因此,本发明要解决的技术问题在于克服现有技术中扫风机构和挡风板拆卸麻烦且清洗不方便,并且扫风组件会和设置在空调出风口处的空调底壳或其它空调部件发生位置干涉的缺陷,从而提供一种导风模块,包括:
导风板,设置在出风口处,受驱动地封闭或开启所述出风口;
扫风组件,安装设置在所述导风板上,且位于所述导风板开启所述出风口移动方向的后侧。
导风模块还包括驱动机构,所述驱动机构包括用于驱动所述扫风组件动作的自动扫风驱动机构和/或手动扫风驱动机构。
所述自动扫风驱动机构具有与所述扫风组件的扫风转轴传动连接的扫风输出轴。
所述扫风输出轴和所述扫风转轴通过连接组件不同轴传动连接。
所述连接组件为相互啮合的外啮合齿轮。
所述扫风输出轴和所述扫风转轴的连接端设有安装在所述导风板内侧的第一支撑架以及第二支撑架;所述第一支撑架具有第一卡槽,所述扫风输出轴转动设置在所述第一卡槽中;所述第二支撑架具有第二卡槽,所述扫风转轴转动设置在所述第二卡槽中。
所述第一卡槽和所述第二卡槽为设有开口的凹槽,所述凹槽和与其相适配的卡板卡接相连,围成容置扫风输出轴或扫风转轴的通孔。
所述扫风输出轴和所述扫风转轴的连接端设有支撑盖,所述支撑盖与所述导风板卡接相连。
所述支撑盖和所述导风板上设有相互配合卡接的限位柱和插接孔、以及相互配合卡接的卡钩和卡扣。
所述第一支撑架和所述第二支撑架设置在所述支撑盖的内部。
所述手动扫风驱动机构包括设置在所述扫风转轴端部的转动拨轮,所述转动拨轮用于带动所述扫风组件扫风。
所述转动拨轮的圆周面上设有防滑凸条。
所述转动拨轮的圆周方向均匀排布有与所述扫风输出轴相连的加强筋条。
所述驱动机构还包括设置在空调壳体上的导风驱动机构,所述导风驱动机构上的导风输出轴与所述导风板传动连接,用于带动所述导风板转动。
所述导风驱动机构和所述扫风驱动机构分别设置在空调壳体两侧,所述导风板的内侧两端分别设有第三支撑架和第四支撑架,所述导风输出轴与所述第三支撑架传动连接,所述扫风输出轴转动设置在所述第四支撑架上的第四连接孔中。
所述驱动机构还包括设置在空调壳体上用于驱动导风板导风的导风驱动机构和用于支撑导风板的导风支撑机构。
所述导风驱动机构和所述导风支撑机构分别设置在空调壳体两侧,所述导风驱动机构的导风输出轴与设置在所述导风板上的第五支撑架传动连接,所述导风支撑机构与设置在所述导风板上的第六支撑架活动连接。
所述导风板上设有在所述扫风转轴轴向方向设置的第七支撑架,所述第七支撑架上设有与扫风转轴转动相连的第七卡槽。
所述第七卡槽为设有开口的凹槽,所述凹槽和与其相适配的卡板卡接相连,围成容置所述扫风转轴的通孔。
所述导风驱动机构、自动扫风驱动机构和导风支撑机构通过可伸缩的驱动杆与导风板相连,驱动导风板开启或关闭出风口。
一种空调器,包括上述导风模块,所述导风模块设置在所述空调器的出风口。
本发明技术方案,具有如下优点:
1.本发明提供的空调导风模块,扫风组件和导风板作为一个整体进行设置,扫风组件安装在所述导风板上,引导出出风口的风向,在进行拆机清洗时,可以较为方便的将扫风组件和导风板一同拆除,便于用户对出风框进行清洗,从而解决了现有空调器难以对出风框进行彻底清扫的技术缺陷,避免了空气经过出风框吹出对环境造成了二次污染,威胁用户健康,并且扫风组件设置在空调风道出口的导风板上,避免了现有技术中空调扫风机构设置在于空调风道内时,空调壳体两侧的侧壁会限制扫风机构的扫风面积,缩小空调扫风范围的问题。
并且扫风组件位于导风板开启出风口移动方向的后侧,置于空调底壳的空隙处,避免与空调底壳发生位置干涉,现有技术中将扫风组件简单的安装在导风板上,导风板受驱动关闭时,设置在导风板上的扫风叶片会和设置在空调出风口处的空调底壳或其它空调部件发生位置干涉的问题,扫风板上的扫风叶片由于位置干涉的影响不得不减小叶片的外轮廓尺寸、缩小叶片大小,以避开其它空调部件,但缩小扫风叶片尺寸势必会减少扫风组件的扫风量、缩小扫风组件的扫风范围,影响空调的扫风能力,将扫风组件偏置于空调底壳的空隙处有利于增加扫风叶片尺寸,增大扫风叶片的扫风量和扫风范围。
2.本发明提供的空调导风模块,还包括用于驱动所述扫风组件动作的自动扫风驱动机构和/或手动扫风驱动机构,提供的多种不同的扫风方式,当只采用自动扫风驱动机构驱动扫风组件时,具有自动化程度高、操作简单便利的优点;当只采用手动扫风驱动机构驱动扫风组件时,不需要设置驱动扫风组件动作的电机即可手动完成扫风动作,降低了空调整机的成本;当采用自动扫风驱动机构和手动扫风驱动机构并存的方式控制扫风组件扫风时,用户可以根据需要自行选择自动扫风和手动扫风,为用户提供了更多选择。
3.本发明提供的空调导风模块,扫风输出轴和扫风转轴异轴传动连接,其二者异轴连接,可以在扫风驱动机构的位置不发生变化下,改变扫风组件在导风板上的位置,使扫风组件避免和空调底壳等部件发生位置干涉,从而使扫风板上的扫风叶片获得更大的叶片外轮廓尺寸、叶片大小,增大扫风叶片的扫风量和扫风范围。
4.本发明提供的空调导风模块,扫风输出轴和扫风转轴异轴通过相互啮合的外啮合齿轮传动连接,通过外啮合齿轮使扫风输出轴和扫风转轴异轴,具有结构简单、可靠性强、生产成本低的优点。
5.本发明提供的空调导风模块,扫风输出轴和扫风转轴的连接端设有用于固定其二者的第一支撑架以及第二支撑架,保证扫风输出轴和扫风转轴相互之间稳定的传动相连,不会出现相对位置偏移。
6.本发明提供的空调导风模块,第一支撑架和第二支撑架设有用于固定扫风输出轴或扫风转轴的凹槽,凹槽和与其相适配的卡板卡接相连,使用时先将扫风输出轴或扫风转轴安装在凹槽内再用卡板卡接,使扫风输出轴和扫风转轴在凹槽内稳定转动,防止扫风输出轴或扫风转轴脱落失效,提高扫风组件的可靠性。
7.本发明提供的空调导风模块,扫风输出轴和扫风转轴的连接端设有支撑盖,实现了扫风输出轴和扫风转轴连接端的全封闭固定,防止凝露水影响扫风连接端的传动性能,提高自动扫风驱动机构的使用寿命、提高用户体验。
8.本发明提供的空调导风模块,支撑盖和导风板通过相互配合卡接的限位柱和插接孔、以及相互配合卡接的卡钩和卡扣卡接,具有结构简单、方便拆卸的优点。
9.本发明提供的空调导风模块,手动扫风通过人工拨动设置在所述扫风转轴端部的转动拨轮实现带动扫风组件扫风,具有结构简单、方便操作的优点。
10.本发明提供的空调导风模块,转动拨轮的圆周面上设有防滑凸条,方便用户使用、提高了用户的使用体验。
11.本发明提供的空调导风模块,转动拨轮上设有与扫风输出轴相连的加强筋条,保证转动拨轮的可靠性。
12.本发明提供的空调导风模块,导风驱动机构和扫风驱动机构分别设置在空调壳体两侧分别与导风板上的第三支撑架和第四支撑架相连,有利于空调导风模块的空间布局,为空调器腾出更多的容置空间。
13.本发明提供的空调导风模块,当单独使用手动扫风驱动机构时,驱动机构还包括设置在空调壳体上的导风驱动机构和导风支撑机构,导风支撑机构不需要设置驱动电机驱动导风板,降低了空调器的制造维修成本。
14.本发明提供的空调导风模块,导风驱动机构和导风支撑机构分别设置在空调壳体两侧,导风驱动机构与导风板上的第五支撑架传动连接,导风支撑机构与导风板上的第六支撑架活动连接,有利于空调导风模块的空间布局,为空调器腾出更多的容置空间。
15.本发明提供的空调导风模块,所述导风板上设有在扫风转轴轴向方向设置的第七支撑架,保证扫风转轴稳定转动。
附图说明
为了更清楚地说明本实用新型具体实施方式或现有技术中的技术方案,下面将对具体实施方式或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本实用新型的一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明提供的空调扫风组件和空调导风板的位置示意图;
图2为本发明提供的空调扫风组件在空调导风板上的偏移位置示意图;
图3为本发明提供的自动扫风驱动机构与扫风组件的组装结构爆炸图;
图4为本发明提供的空调导风模块的结构示意图;
图5为本发明提供的自动扫风驱动机构与扫风组件的组装结构示意图;
图6为本发明提供的连接扫风输出轴和扫风转轴的连接组件的立体结构示意图;
图7为本发明提供的扫风组件的立体示意图;
图8为本发明提供的导风板的立体示意图;
图9为本发明提供的支撑盖的立体示意图;
图10为本发明提供的扫风输出轴的立体示意图;
图11为本发明提供的卡板的立体示意图;
图12为本发明提供的支撑架与卡板的连接立体示意图;
图13为本发明提供的手动扫风驱动机构与扫风组件的组装结构爆炸图;
图14为本发明提供的手动扫风驱动机构与扫风组件的组装结构示意图;
图15为本发明提供的导风驱动机构与导风板的连接示意图;
图16为本发明提供的设有转动拨轮的扫风转轴与导风板的连接示意图;
图17为本发明提供的转动拨轮的结构示意图;
图18为现有技术中的空调扫风组件和空调导风板的位置示意图。
附图标记说明:1-导风板;2-出风口;3-扫风组件;4-空调底壳;5-驱动机构;6-自动扫风驱动机构;7-手动扫风驱动机构;8-扫风输出轴;9-扫风转轴;10-外啮合齿轮;11-第一支撑架;12-第二支撑架;13-第一卡槽;14-第二卡槽;15-卡板;16-支撑盖;17-限位柱;18-插接孔;19-卡钩;20-卡扣;21-转动拨轮;22-防滑凸条;23-加强筋条;24-导风驱动机构;25-导风输出轴;26-第三支撑架;27-第四支撑架;28-第四连接孔;29-第五支撑架;30-导风支撑机构;31-第六支撑架;32-第七支撑架;33-第七卡槽;34-扫风叶片;35-内导风板;36-外导风板。
具体实施方式
实施例1
一种导风模块,如图1和图2所示,其包括:
导风板1,导风板1包括内导风板35和外导风板36,导风板1设置在出风口2处,受驱动地封闭或开启出风口2;出风口2的出风方向为图2中箭头b的方向;
扫风组件3,安装设置在所述导风板1上,且位于所述导风板1开启所述出风口2移动方向的后侧。导风板1的移动方向为箭头a的方向,扫风组件3沿着图2中箭头a的方向,设置在导风板1的靠近图2中的空调壳体的出风口位置c的一侧。
上述空调导风模块,扫风组件和导风板作为一个整体进行设置,扫风组件安装在导风板上,引导出出风口的风向,在进行拆机清洗时,可以较为方便的将扫风组件和导风板一同拆除,便于用户对出风框进行清洗,从而解决了现有空调器难以对出风框进行彻底清扫的技术缺陷,避免了空气经过出风框吹出对环境造成了二次污染,威胁用户健康,并且扫风组件设置在空调风道出口的导风板上,避免了现有技术中空调扫风机构设置在于空调风道内时,空调壳体两侧的侧壁会限制扫风机构的扫风面积,缩小空调扫风范围的问题。
另外扫风组件位于导风板开启出风口移动方向的后侧,置于空调底壳的空隙处,避免与空调底壳发生位置干涉,现有技术中将扫风组件简单的安装在导风板上,导风板受驱动关闭时,设置在导风板上的扫风叶片会和设置在空调出风口处的空调底壳或其它空调部件发生位置干涉的问题,扫风板上的扫风叶片由于位置干涉的影响不得不减小叶片的外轮廓尺寸、缩小叶片大小以避开其它空调部件,但缩小扫风叶片尺寸势必会减少扫风组件的扫风量、缩小扫风组件的扫风范围,影响空调的扫风能力,将扫风组件偏置于空调底壳的空隙处有利于增加扫风叶片尺寸,增大扫风叶片的扫风量和扫风范围。
如图3、图4和图5所示,导风模块还包括驱动机构5,驱动机构5包括用于驱动扫风组件3动作的自动扫风驱动机构6。采用自动扫风驱动机构驱动扫风组件,不需要手动操作,具有自动化程度高、操作简单便利的优点。自动扫风驱动机构6具有与扫风组件3的扫风转轴9传动连接的扫风输出轴8。扫风叶片34为椭圆形,倾斜设置在扫风转轴9上。
如图6和图7所示,扫风输出轴8和扫风转轴9通过相互啮合的外啮合齿轮10异轴传动连接,使扫风组件3,沿着图2中箭头a的方向,设置在导风板1的靠近图2中的空调壳体的出风口位置c的一侧。
上述扫风输出轴和扫风转轴异轴传动连接,可以在扫风驱动机构的位置不发生变化下,改变扫风组件在导风板上的位置,使扫风组件避免和空调底壳等部件发生位置干涉,从而使扫风板上的扫风叶片获得更大的叶片外轮廓尺寸、叶片大小,增大扫风叶片的扫风量和扫风范围。
如图6和图8所示,扫风输出轴8和扫风转轴9的连接端设有安装在导风板1内侧的第一支撑架11以及第二支撑架12;第一支撑架11具有第一卡槽13,扫风输出轴8转动设置在第一卡槽13中。第一卡槽13为设有开口的凹槽,再通过与其相适配的卡板15卡接;第二支撑架12具有第二卡槽14,第二卡槽14为设有开口的凹槽,扫风转轴9转动设置在第二卡槽14中,第二卡槽14再通过与第二卡槽14相适配的卡板15卡接。
上述扫风输出轴和扫风转轴的连接端设有用于固定其二者的第一支撑架以及第二支撑架,保证扫风输出轴和扫风转轴相互之间稳定的传动相连,不会出现相对位置偏移。并且第一支撑架和第二支撑架设有用于固定扫风输出轴或扫风转轴的凹槽,凹槽和与其相适配的卡板卡接相连,使用时先将扫风输出轴或扫风转轴安装在凹槽内在用卡板卡接,使扫风输出轴和扫风转轴在凹槽内稳定转动,提高扫风组件的可靠性。
如图9所示,扫风输出轴8和扫风转轴9的连接端设有支撑盖16,支撑盖16与导风板1卡接相连。第一支撑架11和第二支撑架12设置在支撑盖16的内部。在扫风输出轴和扫风转轴的连接端设置支撑盖,避免扫风输出轴和扫风转轴的传动端进入灰尘等,进而影响传动效果。
如图9所示,支撑盖16和导风板1上设有相互配合卡接的限位柱17和插接孔18、以及相互配合卡接的卡钩19和卡扣20。支撑盖和导风板通过相互配合卡接的限位柱和插接孔、以及相互配合卡接的卡钩和卡扣卡接,具有结构简单、方便拆卸的优点。
如图3和图5所示,驱动机构5还包括设置在空调壳体上的导风驱动机构24,导风驱动机构24上的导风输出轴25与导风板1传动连接,用于带动导风板1转动。导风驱动机构24通过可伸缩的驱动杆与导风板1相连、自动扫风驱动机构6通过可伸缩的驱动杆与扫风组件3相连,驱动导风板开启或关闭出风口。
如图3和图5所示,导风驱动机构24和扫风驱动机构分别设置在空调壳体两侧,导风板1的内侧两端分别设有第三支撑架26和第四支撑架27,导风输出轴25与第三支撑架26传动连接,扫风输出轴8转动设置在第四支撑架27上的第四连接孔28中。将导风驱动机构和扫风驱动机构分别设置在空调壳体两侧分别与导风板上的第三支撑架和第四支撑架相连,有利于空调导风模块的空间布局,为空调器腾出更多的容置空间。
如图8至图12所示,导风板1上设有在扫风转轴9轴向方向设置的第七支撑架32,第七支撑架32上设有与扫风转轴9转动相连的第七卡槽33。第七卡槽33为设有开口的凹槽,凹槽和与其相适配的卡板15卡接相连,围成容置扫风转轴9的通孔。上述第七支撑架设置在导风板上的扫风转轴的轴向方向,对扫风转轴起到位置限定作用,保证扫风转轴稳定转动。
一种空调器,包括上述导风模块,导风模块设置在空调器的出风口。
实施例2
一种导风模块,如图1和图2所示,其包括:
导风板1,导风板1包括内导风板35和外导风板36,导风板1设置在出风口2处,受驱动地封闭或开启出风口2;出风口2的出风方向为图2中箭头b的方向;
扫风组件3,沿着图2中箭头a的方向,设置在导风板1的靠近图2中的空调壳体的出风口位置c的一侧。
如图13、图14所示,导风模块还包括用于驱动扫风组件3动作的手动扫风驱动机构7。只采用手动扫风驱动机构驱动扫风组件时,不需要设置驱动扫风组件动作的电机即可完成扫风动作,降低了空调整机的成本。自动扫风驱动机构6具有与扫风组件3包括扫风转轴9以及扫风叶片34,扫风叶片34为椭圆形,倾斜设置在扫风转轴9上。
如图6和图7所示,扫风输出轴8和扫风转轴9通过相互啮合的外啮合齿轮10异轴传动连接,使扫风组件3,沿着图2中箭头a的方向,设置在导风板1的靠近图2中的空调壳体的出风口位置c的一侧。
如图13、图14、图15和图16所示,手动扫风驱动机构7包括设置在扫风转轴9端部的转动拨轮21,转动拨轮21用于带动扫风组件3扫风。手动扫风通过人工拨动设置在扫风转轴端部的转动拨轮实现带动扫风组件扫风,具有结构简单、方便操作的优点。
如图17所示,转动拨轮21的圆周面上设有防滑凸条22。防滑凸条,方便用户使用、提高了用户的使用体验。
如图17所示,转动拨轮21的圆周方向均匀排布有与扫风输出轴8相连的加强筋条23。加强筋条,保证转动拨轮的可靠性。
如图13、图14所示,驱动机构5还包括设置在空调壳体上用于驱动导风板1导风的导风驱动机构24和用于支撑导风板1的导风支撑机构30。
导风驱动机构24和导风支撑机构30分别设置在空调壳体两侧,导风驱动机构24的导风输出轴25与设置在导风板1上的第五支撑架29传动连接,导风支撑机构30与设置在导风板1上的第六支撑架31活动连接。导风驱动机构和导风支撑机构分别设置在空调壳体两侧,导风驱动机构与导风板上的第五支撑架传动连接,导风支撑机构与导风板上的第六支撑架活动连接,有利于空调导风模块的空间布局,为空调器腾出更多的容置空间。
如图13所示,导风板1上设有在扫风转轴9轴向方向设置的第七支撑架32,第七支撑架32上设有与扫风转轴9转动相连的第七卡槽33。第七卡槽33为设有开口的凹槽,凹槽和与其相适配的卡板15卡接相连,围成容置扫风转轴9的通孔。上述第七支撑架设置在导风板上的扫风转轴的轴向方向,对扫风转轴起到位置限定作用,保证扫风转轴稳定转动。
实施例3
一种导风模块,如图1和图2所示,其包括:
导风板1,导风板1包括内导风板35和外导风板36,导风板1设置在出风口2处,受驱动地封闭或开启出风口2;出风口2的出风方向为图2中箭头b的方向;
扫风组件3,沿着图2中箭头a的方向,设置在导风板1的靠近图2中的空调壳体的出风口位置c的一侧。
如图13、图14所示,导风模块还包括用于驱动扫风组件3动作的自动扫风驱动机构6和手动扫风驱动机构7。当采用自动扫风驱动机构和手动扫风驱动机构并存的方式控制扫风组件 扫风时,用户可以根据需要自行选择自动扫风和手动扫风,为用户提供了更多选择,避免机械故障造成自动扫风驱动机构失效。
显然,上述实施例仅仅是为清楚地说明所作的举例,而并非对实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而由此所引伸出的显而易见的变化或变动仍处于本发明创造的保护范围之中。

Claims (21)

  1. 一种导风模块,其特征在于,包括:
    导风板(1),设置在出风口(2)处,受驱动地封闭或开启所述出风口(2);
    扫风组件(3),安装设置在所述导风板(1)上,且位于所述导风板(1)开启所述出风口(2)移动方向的后侧。
  2. 根据权利要求1所述的导风模块,其特征在于:还包括驱动机构(5),所述驱动机构(5)包括用于驱动所述扫风组件(3)动作的自动扫风驱动机构(6)和/或手动扫风驱动机构(7)。
  3. 根据权利要求2所述的导风模块,其特征在于:所述自动扫风驱动机构(6)具有与所述扫风组件(3)的扫风转轴(9)传动连接的扫风输出轴(8)。
  4. 根据权利要求3所述的导风模块,其特征在于:所述扫风输出轴(8)和所述扫风转轴(9)通过连接组件不同轴传动连接。
  5. 根据权利要求4所述的导风模块,其特征在于:所述连接组件为相互啮合的外啮合齿轮(10)。
  6. 根据权利要求4所述的导风模块,其特征在于:所述扫风输出轴(8)和所述扫风转轴(9)的连接端设有安装在所述导风板(1)内侧的第一支撑架(11)以及第二支撑架(12);所述第一支撑架(11)具有第一卡槽(13),所述扫风输出轴(8)转动设置在所述第一卡槽(13)中;所述第二支撑架(12)具有第二卡槽(14),所述扫风转轴(9)转动设置在所述第二卡槽(14)中。
  7. 根据权利要求6所述的导风模块,其特征在于:所述第一卡槽(13)和所述第二卡槽(14)为设有开口的凹槽,所述凹槽和与其相适配的卡板(15)卡接相连,围成容置扫风输出轴(8)或扫风转轴(9)的通孔。
  8. 根据权利要求6所述的导风模块,其特征在于:所述扫风输出轴(8)和所述扫风转轴(9)的连接端设有支撑盖(16),所述支撑盖(16)与所述导风板(1)卡接相连,设有用于容置所述连接组件的空腔。
  9. 根据权利要求8所述的导风模块,其特征在于:所述支撑盖(16)和所述导风板(1)上设有用于限定所述支撑盖(16)和所述导风板(1)相对位置的限位结构,以及用于固定所述支撑盖(16)和所述导风板(1)的连接结构。
  10. 根据权利要求9所述的导风模块,其特征在于:所述限位结构包括分别设置在所述支撑盖(16)和所述导风板(1)上,相互配合卡接的限位柱(17)和插接孔(18)。
  11. 根据权利要求9所述的导风模块,其特征在于:所述连接结构包括分别设置在所述支撑盖(16)和所述导风板(1)上,相互配合卡接的卡钩(19)和卡扣(20)。
  12. 根据权利要求3所述的导风模块,其特征在于:所述手动扫风驱动机构(7)包括设置在所述扫风转轴(9)端部的转动拨轮(21),所述转动拨轮(21)用于带动所述扫风组件(3)扫风。
  13. 根据权利要求12所述的导风模块,其特征在于:所述转动拨轮(21)的圆周面上设有防滑凸条(22)。
  14. 根据权利要求12所述的导风模块,其特征在于:所述转动拨轮(21)的圆周方向均匀排布有与所述扫风输出轴(8)相连的加强筋条(23)。
  15. 根据权利要求3-11中任一项所述的导风模块,其特征在于:所述驱动机构(5)还包括导风驱动机构(24),所述导风驱动机构(24)上的导风输出轴(25)与所述导风板(1)传动连接,用于带动所述导风板(1)转动。
  16. 根据权利要求15所述的导风模块,其特征在于:所述导风驱动机构(24)和所述扫风驱动机构分别设置在空调壳体两侧,所述导风板(1)的内侧两端分别设有第三支撑架(26)和第四支撑架(27),所述导风输出轴(25)与所述第三支撑架(26)传动连接,所述扫风输出轴(8)转动设置在所述第四支撑架(27)上的第四连接孔(28)中。
  17. 根据权利要求12-14中任一项所述的导风模块,其特征在于:所述驱动机构(5)还包括设置在空调壳体上用于驱动导风板(1)导风的导风驱动机构(24)和用于支撑导风板(1)的导风支撑机构(30)。
  18. 根据权利要求17所述的导风模块,其特征在于:所述导风驱动机构(24)和所述导风支撑机构(30)分别设置在空调壳体两侧,所述导风驱动机构(24)的导风输出轴(25)与设置在所述导风板(1)上的第五支撑架(29)传动连接,所述导风支撑机构(30)与设置在所述导风板(1)上的第六支撑架(31)活动连接。
  19. 根据权利要求3-18中任一项所述的导风模块,其特征在于:所述导风板(1)上设有在所述扫风转轴(9)轴向方向设置的第七支撑架(32),所述第七支撑架(32)上设有与扫风转轴(9)转动相连的第七卡槽(33)。
  20. 根据权利要求19所述的导风模块,其特征在于:所述第七卡槽(33)为设有开口的凹槽,所述凹槽和与其相适配的卡板(15)卡接相连,围成容置所述扫风转轴(9)的通孔。
  21. 一种空调器,其特征在于:包括权利要求1-20中任一项所述的导风模块,所述导风模块设置在所述空调器的出风口。
PCT/CN2018/084431 2017-04-26 2018-04-25 一种导风模块及具有该导风模块的空调器 WO2018196784A1 (zh)

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CN102313347A (zh) * 2010-07-02 2012-01-11 珠海格力电器股份有限公司 空调机及空调机室内机
CN202792437U (zh) * 2012-07-23 2013-03-13 珠海格力电器股份有限公司 一种空调及其扫风装置
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CN207247497U (zh) * 2017-04-26 2018-04-17 珠海格力电器股份有限公司 一种导风模块及具有该导风模块的空调器

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