WO2021219111A1 - 一种可拆洗的空调室内机 - Google Patents

一种可拆洗的空调室内机 Download PDF

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Publication number
WO2021219111A1
WO2021219111A1 PCT/CN2021/091220 CN2021091220W WO2021219111A1 WO 2021219111 A1 WO2021219111 A1 WO 2021219111A1 CN 2021091220 W CN2021091220 W CN 2021091220W WO 2021219111 A1 WO2021219111 A1 WO 2021219111A1
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WO
WIPO (PCT)
Prior art keywords
indoor unit
conditioner indoor
removable
air conditioner
washable
Prior art date
Application number
PCT/CN2021/091220
Other languages
English (en)
French (fr)
Inventor
朱建国
向毅
Original Assignee
海信(广东)空调有限公司
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 CN202020718831.3U external-priority patent/CN212457156U/zh
Priority claimed from CN202010366435.3A external-priority patent/CN113251479A/zh
Priority claimed from CN202010368308.7A external-priority patent/CN113251480A/zh
Priority claimed from CN202020720119.7U external-priority patent/CN212805832U/zh
Priority claimed from CN202020719240.8U external-priority patent/CN212618664U/zh
Priority claimed from CN202020715167.7U external-priority patent/CN212618660U/zh
Application filed by 海信(广东)空调有限公司 filed Critical 海信(广东)空调有限公司
Priority to JP2022565637A priority Critical patent/JP7481493B2/ja
Publication of WO2021219111A1 publication Critical patent/WO2021219111A1/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
    • F24F1/0018Indoor units, e.g. fan coil units characterised by fans
    • 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
    • F24F1/0043Indoor units, e.g. fan coil units characterised by mounting arrangements
    • F24F1/0057Indoor units, e.g. fan coil units characterised by mounting arrangements mounted in or on a wall
    • 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
    • F24F13/02Ducting arrangements
    • F24F13/06Outlets for directing or distributing air into rooms or spaces, e.g. ceiling air diffuser

Definitions

  • This application relates to the technical field of air conditioners, in particular to a removable and washable air conditioner indoor unit.
  • the air outlet assembly of the existing air-conditioning indoor unit generally includes a panel and a longitudinal wind plate installed on the panel.
  • the panel needs to be connected to the outer cover of the air-conditioning indoor unit.
  • the panel and the outer cover are generally integrally formed and fixed or detachable by bolts. connect.
  • the bolt connection makes the disassembly process of the panel complicated, and because the fan assembly and air duct parts of the indoor unit of the air conditioner need to be disassembled and cleaned regularly, the panel needs to be disassembled many times, and there are many bolts.
  • the second disassembly and assembly will easily cause the stability of the bolt connection to decrease, and the bolt will slip or slip off, which will lead to the unreliable connection between the air outlet component and the outer cover.
  • the embodiment of the present application provides a removable and washable air conditioner indoor unit, including:
  • An outer cover the outer cover is provided with a first opening, and the outer cover is provided with the base body to form a second opening;
  • An upper panel, one end of the upper panel is hinged to the upper edge of the first opening and covers the first opening;
  • An air outlet assembly one end of the air outlet assembly is hinged on the lower edge of the first opening, and can open or close the second opening;
  • the side of the air outlet assembly is provided with a plurality of first clamping members that are detachably clamped with the outer cover on the side of the second opening.
  • Fig. 1 is a schematic structural diagram of some embodiments according to the present application.
  • Figure 2 is an exploded view of some embodiments according to the present application.
  • Fig. 3 is a schematic diagram of the structure after the upper panel is disassembled according to some embodiments of the present application.
  • Fig. 4 is a schematic structural diagram of an air outlet assembly according to some embodiments of the present application.
  • FIG. 5 is a schematic diagram of the structure after disassembling the wall panel and the base body according to some embodiments of the present application.
  • Fig. 6 is an enlarged schematic view of A in Fig. 5;
  • Fig. 7 is a schematic structural diagram of an air duct component according to some embodiments of the present application.
  • Fig. 8 is a schematic structural diagram of the assembly of air duct components and fans according to some embodiments of the present application.
  • Fig. 9 is a schematic structural view of another view of the air duct component according to some embodiments of the present application.
  • Fig. 10 is an enlarged schematic diagram of B in Fig. 9;
  • FIG. 11 is a schematic diagram of the assembly of the air duct component and the base body according to some embodiments of the present application.
  • Fig. 12 is a partial structural schematic diagram of assembling the air duct component and the base body according to some embodiments of the present application.
  • FIG. 13 is a schematic structural diagram of a base body according to some embodiments of the present application.
  • Fig. 14 is a schematic structural diagram of assembling a second connecting rod and a wind guide blade according to some embodiments of the present application.
  • FIG. 15 is a schematic structural diagram of the connection between the first connecting rod and the third driving mechanism according to some embodiments of the present application.
  • Figure 16 is a schematic structural diagram of a locking member according to some embodiments of the present application.
  • Fig. 17 is a partial structural diagram of a base body from another perspective according to some embodiments of the present application.
  • FIG. 18 is a schematic structural diagram from another perspective of assembling the air duct component and the fan according to some embodiments of the present application
  • Fig. 19 is an enlarged schematic diagram of C in Fig. 18;
  • 20 is a schematic diagram of the assembly of the fan and the first driving mechanism according to some preferred embodiments of the present application.
  • FIG. 21 is an enlarged schematic diagram of D in FIG. 20;
  • Fig. 22 is a schematic structural diagram of a third driving mechanism according to some preferred embodiments of the present application.
  • Base body 11, base bottom plate, 111, connecting part, 111a, hook groove, 112, pipe space, 12, base side plate, 12a, first base side plate, 12b, second base Side plate, 121, first limit structure, 122, second limit structure, 122a, second guide surface, 13, motor mounting part, 131, motor mounting plate, 131a, through hole, 131b, stiffener, 131c, Boss, 131d, first mounting hole, 132, enclosure plate, 14, locking groove, 15, mounting cavity;
  • Air duct components 31, locking block, 32, slot, 33, arched body, 34, opening slot, 35, locking piece, 351, body, 352, connecting shaft, 353, toggle part, 36, Snap hook, 37, second mating part, 371, third guide surface, 39, disassembly hole, 310, second mounting hole, 320, bearing seat assembly;
  • Electronically controlled drive components 71, first drive mechanism, 711, fan motor, 712, first motor shaft, 712a, annular groove, 713, stopper, 72, second drive mechanism, 721, connecting rod drive motor , 722, crank structure, 73, third drive mechanism, 731, first lateral drive motor, 732, second lateral drive motor, 74, electric control box;
  • first and second are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Thus, the features defined with “first” and “second” may explicitly or implicitly include one or more of these features. In the description of this application, unless otherwise specified, “plurality” means two or more.
  • connection should be understood in a broad sense, unless otherwise clearly specified and limited.
  • it can be a fixed connection or a detachable connection.
  • Connected or integrally connected it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication between two components.
  • connection should be understood in a broad sense, unless otherwise clearly specified and limited.
  • it can be a fixed connection or a detachable connection.
  • Connected or integrally connected it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication between two components.
  • the specific meanings of the above terms in this application can be understood under specific circumstances.
  • Fig. 1 is a schematic diagram of the structure according to some embodiments of the present application
  • Fig. 2 is an exploded view of some embodiments according to the present application
  • Fig. 3 is a schematic diagram of the structure after the upper panel is disassembled according to some embodiments of the present application.
  • the embodiment of the present application provides a removable and washable air conditioner indoor unit, including a base body 1, an outer cover 2, an upper panel 8, a fan 4, an air outlet assembly 5, an evaporation component 6 and an air duct component 3.
  • an electronically controlled drive component 7 which includes an electrical control box 74, a first drive mechanism 71, a second drive mechanism 72 and a third drive mechanism 73, a fan 4 and a second drive mechanism.
  • a driving mechanism 71 is detachably connected, and the electric control box 74 is the electric control center of the indoor unit, which is used to control the operation of various components;
  • the outer cover 2 is provided with a first opening 21 and an air inlet, and the outer cover 2 covers the base body 1 to form a second opening 22.
  • the outer cover 2 in the present application may have a rectangular parallelepiped, columnar, or cube structure;
  • One end of the upper panel 8 is hinged on the upper edge of the first opening 21 and covers the first opening 21.
  • the upper panel 8 is generally arranged corresponding to the evaporation part 6, so that the upper panel 8 can be opened to realize the cleaning of the evaporation part 6, etc.
  • one side of the upper panel 8 is connected to the outer cover 2 through a rotating shaft, so that the upper panel 8 can be rotated to open or close through the rotating shaft;
  • One end of the air outlet assembly 5 is hinged on the lower edge of the first opening 21, and can open or close the second opening 22. Referring to Figs. A first clamping member 511 that can be detachably clamped on one side of the opening 22;
  • the air duct component 3 is arranged in the space formed by the outer cover 2 and the base body 1, and can be taken out from the second opening 22.
  • the base body 1 in this embodiment includes a base bottom plate 11 and a base side plate 12 ,
  • the air duct component 3 is detachably connected to the base bottom plate 11, and the fan 4 is arranged in the air duct component 3;
  • the evaporating part 6 is connected to the base body 1 and is located in the outer cover 2.
  • the evaporating part 6 is arranged on the upper part of the fan 4, and the air enters the air duct from the air inlet and exchanges heat with the fan 4 and the evaporating part 6 and then exits the air.
  • Component 5 is blown out;
  • a wall-hanging board 9 is provided at the rear of the outer cover 2, and the indoor unit is fixedly installed on the wall through the wall-hanging board 9.
  • the electronically controlled drive components 7 are all set on the base body 1, and correspondingly, the power cords connected to the electronically controlled drive components 7, the wires of various electrical loads, and the connection signal wires
  • the air duct component 3 can be disassembled from the base body 1, the fan 4 can be disassembled from the first driving mechanism 71, and the lower panel 51 can be disassembled from the outer cover 2.
  • the air outlet assembly 5, the air duct part 3 and the fan 4 can be removed from the second opening 22 for cleaning, while the electric control drive part 7 and other live parts are left on the base body 1, thereby avoiding the live parts together with the disassembly and washing parts Disassembly to ensure the safety of the disassembly process.
  • the air outlet assembly 5, the air duct part 3 and the fan 4 are disassembled without live parts, the user can directly use water washing and other methods for thorough cleaning when cleaning. The operation is more convenient, and the user can clean it by himself, without the need for professionals to disassemble and assemble.
  • Fig. 4 is a schematic structural diagram of an air outlet assembly according to some embodiments of the present application. 3 and 4, further, one end of the air outlet assembly 5 is provided with a plurality of claws 512 in a row, the claws 512 are specifically three, and each claw 512 has an arc-shaped groove 512a.
  • the top of the outer cover 2 is provided with a plurality of clamping shafts 513, and each clamping shaft 513 is clamped into the arc-shaped clamping groove 512a.
  • the circular arc-shaped clamping groove 512a can rotate around the axis of the clamping shaft 513.
  • the staff can The air outlet assembly 5 is operated to rotate along the clamping shaft 513 to make the air outlet assembly 5 open or close the second opening 22. After the upper panel 8 is rotated and opened, the claw 512 can be separated from the clamping shaft 513 to remove the air outlet assembly 5.
  • the pawl 512 of the present application includes a first arc-shaped pawl 512b and a second arc-shaped pawl 512c.
  • the first arc-shaped pawl 512b and the second arc-shaped pawl 512c are smoothly connected to form an arc-shaped slot 512a with an opening.
  • the arc-shaped slot 512a is detachably and rotatably engaged with the clamping shaft 513.
  • the first arc-shaped claw 512b and the second arc-shaped claw 512c are integrally processed and formed.
  • the front part of the air outlet assembly 5 and the front part of the outer cover 2 can be connected by other rotating connection structures, such as hinges.
  • the hinges are detachably connected with the air outlet assembly 5 and the outer cover 2 to achieve The purpose of the air outlet assembly 5 being connected to the outer cover 2 by rotation.
  • FIG. 5 is a schematic diagram of the structure after disassembling the wall-hanging board and the base body according to some embodiments of the present application;
  • FIG. 6 is an enlarged schematic diagram of A in FIG. 5.
  • first clamping members 511 there are specifically two first clamping members 511, the first clamping members 511 extend upward from the air outlet assembly 5, and the first clamping members 511 are away from the air outlet assembly
  • One end of 5 is integrally connected with a first protrusion 511a
  • the outer cover 2 has a groove 23 for clamping with the first clamping member 511.
  • first clamping members 511 on opposite sides of the air outlet assembly 5.
  • Two opposite sides of the outer cover 2 are provided with grooves 23, and the first clamping member 511 is used to fixly connect the side surface of the air outlet assembly 5 with the outer cover 2 to prevent the side surface of the air outlet assembly 5 from loosening.
  • the front part of the air outlet assembly 5 is provided with a plurality of hooks 514 that are detachably clamped to the air duct member 3, and the hooks 514 are connected with the air duct member 3 to limit the relative relationship between the air outlet assembly 5 and the air duct member 3. Displacement; at the same time, the front of the air outlet assembly 5 is also provided with a plurality of second clamping members 515 that can be detachably clamped with the air duct component 3, through the second clamping member 515 on the air outlet assembly 5 and the air duct component 3 is clamped to fix the position of the front part of the air outlet assembly 5 on the air duct component 3.
  • Fig. 7 is a schematic structural diagram of an air duct component according to some embodiments of the present application. 4 and 7, the hook 514 is specifically plate-shaped. The width of the end of the hook 514 is smaller than the width of the other end of the hook 514. The end of the hook 514 forms a hook groove 514a on the air duct component 3. A locking block 31 that matches and stops the hook groove 514a is provided, and the locking block 31 corresponds to the hook groove 514a. When the second opening 22 is closed, the hook 514 is locked with the locking block 31 on the air duct member 3, and the air outlet assembly 5 and the air duct member 3 are locked.
  • the second clamping members 515 are first perpendicular to the air outlet assembly 5 from the surface of the air outlet assembly 5 and extend backwards obliquely.
  • the end of the member 515 away from the air outlet assembly 5 is integrally connected with a second protrusion 515a extending forward, wherein the front of the air duct member 3 is provided with a slot 32, and the second clamping member 515 is inserted into the slot 32,
  • the second protrusion 515a is locked with the outer wall of the fork groove, so that the second locking member 515 is locked into the slot 32 to limit the displacement of the front part of the air outlet assembly 5.
  • the rear of the air outlet assembly 5 is also provided with a plurality of third clamping members 516 detachably clamping with the air duct component 3, the number of the third clamping members 516 is specifically two, and the third clamping member 516
  • the member 516 is arranged at the middle position of the rear part of the air outlet assembly 5, and is used to fix the rear part of the air outlet assembly 5 and the air duct component 3 to prevent the rear part of the air outlet assembly 5 from moving or shaking.
  • the third clamping member 516 is provided with an arched groove 516a
  • the air duct member 3 is provided with an arched body 33 inserted into the arched groove 516a.
  • the arched body 33 is matched and inserted into the arched groove 516a. To locate the air outlet component 5.
  • the first clamping member 511, the second clamping member 515, and the third clamping member 516 are used to limit the positions of the tuyere assembly and the outer cover 2 and the air duct member 3, and the air outlet assembly 5 and the outer cover are realized by the above-mentioned connection. 2 and the air duct component 3 are detachable to prevent the air outlet component 5 from falling off.
  • the air outlet assembly 5 of the present application has the advantages of convenient disassembly and assembly, the air outlet assembly 5 is not easy to slip off, and the connection is reliable.
  • a first limit block 517 is also provided at the rear of the air outlet assembly 5.
  • the number of the first limit block 517 is two.
  • the rear two corners of the air outlet assembly 5 are provided with second limit blocks 518 for snap-fitting with the outer cover 2, and the air outlet assembly 5 is covered in the second
  • the opening 22 further facilitates the fixed connection of the air outlet assembly 5 and the outer cover 2.
  • the end of the second limiting block 518 away from the upper panel 8 is provided with a weight reducing groove, which helps reduce the overall weight of the air outlet assembly 5, facilitates disassembly and assembly, and reduces the input cost of raw materials.
  • the side of the air outlet assembly 5 is also provided with a clasp groove 519 which faces the air outlet assembly. 5Inside extension.
  • a hook or a boss for clasping can be provided to facilitate the staff to operate the air outlet assembly 5 to open the second opening 22.
  • the claws 512, the first clamping member 511, the second clamping member 515, the third clamping member 516, and the hook 514 on the air outlet assembly 5 Both the first limiting block 517 and the second limiting block 518 are formed integrally with the air outlet assembly 5.
  • the air outlet assembly 5 in this embodiment includes a lower panel 51, a wind deflector 52, and a link mechanism 53, and one side of the upper panel 8 is connected to the outer cover 2 through a rotating shaft, thereby The upper panel 8 can be opened or closed by rotating through the rotating shaft.
  • the other side of the upper panel 8 is provided with a clamping structure. The tight structure passes through the clearance groove at the upper end of the lower panel 51 to be clamped and fixed to the hole structure on the outer cover 2, so as to facilitate the disassembly and installation of the upper panel 8.
  • the lower panel 51 is provided with an air outlet 520
  • the air guide plate 52 is rotatably arranged at the air outlet 520 to open or close the air outlet 520.
  • FIG. 11 is a schematic diagram of the assembly of the air duct component and the base body according to some embodiments of the present application
  • FIG. 12 is a partial structural diagram of the assembly of the air duct component and the base body according to some embodiments of the present application
  • a schematic diagram of the structure of the base body of some embodiments is applied.
  • 11-13 the base body 1 is provided with a disassembly channel for disassembling the air duct component 3
  • the outer side of the base side plate 12 is provided with a third driving mechanism 73, and the output shaft of the third driving mechanism 73 passes through the base
  • the side plate 12 and the air guide plate 52 are detachably connected, and the end of the output shaft of the third driving motor 73 is located at the outer edge of the disassembly channel.
  • the third drive mechanism 73 is located on the outer side of the base side plate 12, and the end of the output shaft of the third drive mechanism 73 that is detachably connected to the air deflector 52 Located at the outer edge of the disassembly channel, so that the air duct component 3 is disassembled through the disassembly channel.
  • the driving mechanism 73 avoids safety hazards caused by the loosening or deformation of the installation part of the third driving mechanism 73 caused by multiple disassembly and installation, and the air duct component 3 is more convenient to disassemble and assemble.
  • the outer side of the base side plate 12 is provided with a motor mounting member 13, the mounting position of the motor mounting member 13 completely avoids the disassembly channel of the air duct component 3, and the motor mounting member 13 is provided with a third drive mechanism 73 In the accommodating cavity, the third driving mechanism 73 is installed in the accommodating cavity. Since the motor mounting member 13 avoids the installation cavity 15 and the disassembly channel, the third driving mechanism 73 avoids the disassembly channel.
  • the motor mounting member 13 includes a motor mounting plate 131 and a surrounding plate 132 for fixing the edge of the motor installation.
  • the motor mounting plate 131 is fixedly connected to the end of the base body 1, and the motor mounting plate 131 and the surrounding plate 132 form an accommodating cavity.
  • the motor mounting plate 131 and the enclosure plate 132 may be integrally formed or may be fixedly connected by pasting or bolts.
  • the motor mounting plate 131 and the enclosure plate 132 are vertically fixed and integrally formed.
  • a base side plate 12 may be provided at both ends of the base body 1, respectively, a first base side plate 12a and a second base side plate 12a.
  • the side plate 12b, the base bottom plate 11, the first base side plate 12a and the second base side plate 12b can be integrally formed or bolted to form, using the base bottom plate 11, the first base side plate 12a and the second base
  • the side plate 12b forms the mounting cavity 15 of the air duct component 3, the disassembly channel is located at the front of the base body 1, and the motor mounting plate 131 is provided on the front side of one of the base side plates 12.
  • the base side plate 12 is specifically a triangular plate, and the motor mounting plate 131 is connected to the side of the triangular plate away from the disassembly channel and extends in this direction.
  • the base side plate 12 is perpendicular to the base bottom plate 11, and the motor The mounting plate 131 and the base side plate 12 are coplanar.
  • the motor mounting plate 131 and the base side plate 12 are integrally injection molded to increase the connection strength between the motor mounting plate 131 and the base and avoid loosening.
  • the width of the motor mounting plate 131 increases and then decreases from front to back, so that the width of the accommodating cavity first increases and then decreases from front to back, so as to accommodate the third driving mechanism 73 of different sizes.
  • the motor mounting plate 131 in the accommodating cavity is provided with a through hole 131a for the output shaft of the third drive mechanism 73 to pass through.
  • the output shaft passes through the motor mounting plate 131 and is detachably connected to the wind deflector 52, and the third drive mechanism
  • the end of the output shaft of 73 is located outside the disassembly channel.
  • the motor mounting plate 131 is also integrally formed with a plurality of reinforcing ribs 131b arranged in a cross-net shape to increase the strength of the motor mounting plate 131.
  • the front end of the base bottom plate 11 extends downward to form a connecting portion 111.
  • a pipe space 112 is formed between the base bottom plate 11 and the connecting portion 111.
  • the pipeline assembly is directly separated to A certain angle is used to avoid the removal of the air duct component 3. In this way, the pipeline assembly of the indoor unit can be directly routed from the duct space 112 and separated from the air duct component 3 by the base bottom plate 11.
  • the part of the output shaft of the third driving mechanism 73 that passes through the through hole 131a is provided with an anti-electric shaft.
  • Fig. 14 is a schematic structural diagram of assembling a second connecting rod and a wind guide blade according to some embodiments of the present application.
  • the link mechanism 53 is provided at the air outlet 520 for guiding the direction of the wind from the air outlet 520, and the link mechanism 53 includes a first link 531 and a first link that are detachably connected.
  • the first connecting rod 531 is provided with a plurality of wind guide blades 533 at intervals.
  • One end of the base body 1 is provided with a second driving mechanism 72.
  • the second connecting rod 532 extends to the outside of the air duct part 3 and the second The output shaft of the driving mechanism 72 is rotatably connected, and the air duct member 3 is provided with an opening slot 34 for the second connecting rod 532 to pass through.
  • the first connecting rod 531 is horizontally arranged on the lower panel 51 at the air outlet 520, and the second driving mechanism 72 drives the first connecting rod 531 to rotate through the second connecting rod 532, so that the air guide blade 533 swings to adjust the air outlet The direction of the 520 wind.
  • the lower panel 51 is covered on the opening groove 34, and the opening groove 34 is a square groove or an arc groove.
  • the air duct part 3 can be disassembled without disassembling the second drive mechanism 72, so as to avoid the safety caused by the loosening or deformation of the installation part of the second driving mechanism 72 caused by multiple disassembly and installation Hidden hazards, and make the assembly and disassembly of the air duct component 3 more convenient.
  • the arrangement of the opening groove 34 helps to avoid the second on the air duct component 3.
  • the two connecting rods 532 prevent the second connecting rod 532 from increasing the gap between the lower panel 51 and the opening groove 34, and the opening groove 34 is used to further improve the compactness of the installation of the lower panel 51 and the air duct component 3.
  • the end of the first link 531 is provided with an elastic buckle 531a
  • the end of the second link 532 is provided with a hook groove 532a for detachably hooking the elastic buckle 531a.
  • the elastic buckle 531a is specifically an elastic hook made of rubber and plastic material, and the elastic hook is integrally formed with the first connecting rod 531;
  • the hook groove 532a includes a stop block for the entrance 532b and a hook block provided with a through groove 532c extending up and down.
  • the stop block, the hook block and the second connecting rod 532 are integrally formed, and the inlet 532b is in communication with the through groove 532c.
  • the elastic hook can be inserted into the through groove 532c from the inlet 532b to connect the first connecting rod 531 and the second connecting rod 531.
  • the elastic hook is compressed to reduce the volume of the elastic hook.
  • the elastic hook is sequentially detached from the through groove 532c and the inlet 532b, thereby separating the first connecting rod 531 from the second connecting rod 532.
  • the second link 532 includes a first support rod 532d, a second support rod 532e, and a third support rod 532f arranged in sequence, the first support rod 532d and the third support rod 532f are arranged in parallel
  • the second support rod 532e is vertically fixed to the first support rod 532d and the third support rod 532f.
  • the hook groove 532a is provided at the end of the first support rod 532d away from the second support rod 532e.
  • the size of the first support rod 532d is the same as The opening slots 34 match.
  • the shape of the second connecting rod 532 may be other shapes, so that the second driving mechanism 72 is installed at a suitable position of the base body 1 for connection.
  • the second driving mechanism 72 includes a connecting rod driving motor 721 and a crank structure 722.
  • the output end of the connecting rod driving motor 721 is connected to one end of the crank structure 722, and the other end of the crank mechanism is connected to the second end of the second connecting rod 532.
  • the connecting rod drive motor 721 drives the crank structure 722 to rotate to realize the swing of the wind guide blade 533 driven by the connecting rod mechanism 53.
  • the second connecting rod 532 It can rotate around the crank structure 722 so that its first end rotates to the outside of the air duct component 3 to avoid interference with the disassembly channel of the air duct component 3.
  • the wind deflector 52 in this embodiment includes a first transverse wind plate 521 and a second transverse wind plate 522
  • the third drive mechanism 73 includes a first transverse drive motor 731 and a second transverse drive motor 732.
  • the first lateral drive motor 731 is detachably connected to one end of the first lateral wind plate 521
  • the second lateral drive motor 732 is detachably connected to one end of the second lateral wind plate 522.
  • first lateral wind plate 521 and the first lateral wind plate 521 are detachably connected to one end of the
  • the two transverse wind plates 522 are both rotatably connected to the lower panel 51 at one end, and a second shaft sleeve is arranged on the other end.
  • the second motor shaft, the first transverse wind plate 521 and the second transverse wind plate 522 are mated with the corresponding first transverse drive motor 731 and the second transverse drive motor 732 through the second sleeve.
  • the first The one transverse wind panel 521 and the second transverse wind panel 522 are respectively driven to swing by different driving motors to change the air outlet direction of the air outlet 520, so as to realize the independent operation of the two transverse wind panels, so as to meet different user requirements.
  • Fig. 9 is a schematic structural diagram of another view of the air duct component according to some embodiments of the present application
  • Fig. 10 is an enlarged schematic view at B in Fig. 9
  • 15 is a first link and a third drive according to some embodiments of the present application
  • FIG. 16 is a schematic structural view of a locking member according to some embodiments of the present application
  • FIG. 17 is a partial structural schematic view of a base body according to some embodiments of the present application from another perspective.
  • an air duct is formed in the air duct component 3, locking pieces 35 are movably provided on both sides of the air duct component 3, and the base body 1 is provided with a locking piece 35 corresponding to In the locking groove 14, the locking member 35 can be rotatably locked into the locking groove 14 to lock the air duct member 3 to the base body 1, or the locking member 35 is separated from the locking groove 14 to lock the air duct member 3 Unlock with the base body 1.
  • the air duct component 3 is installed in the installation cavity 15 of the base body 1, the two are realized by the locking member 35 on the air duct component 3 and the locking groove 14 on the base body 1. The operation is simple for locking or unlocking between the two.
  • the locking groove 14 is provided on the base bottom plate 11, and the locking member 35 can be rotated downward to lock with the locking groove 14, or rotated upward to disengage
  • the locking groove 14 is unlocked to lock the air duct component 3 in the up and down direction, and the first base side plate 12a and the second base side plate 12b can limit the installation of the air duct component 3 in the left and right directions
  • a hook groove 111a is also provided on the connecting portion 111 of the base body 1, and the lower end of the air duct component 3 is provided with a plurality of hooks 36 that are correspondingly snap-fitted with the hook groove 111a.
  • the locking member 35 includes a body 351 that can be partially inserted into the locking groove 14.
  • One end of the body 351 is provided with a connecting shaft 352 for assembling with the second mounting hole 310, and the other end of the body 351
  • a toggle portion 353 is provided. Specifically, the toggle portion 353 drives the connecting shaft 352 to rotate and inserts the body 351 into the locking groove 14 on the lower base bottom plate 11 to lock the air duct component 3 on the base body 1.
  • a first limiting structure 121 and a second limiting structure 122 are respectively provided on the inner side of the first base side plate 12a and the second base side plate 12b.
  • the rear end of the air duct component 3 is respectively provided with a first mating part that cooperates with the first limiting structure 121 and a second mating part 37 that cooperates with the second limiting structure 122, through the first limiting structure 121 and the second limiting structure 121
  • the second limit structure 122 ensures the accuracy of the assembly position of the air duct component 3, thereby ensuring the assembly quality.
  • the lower ends of the first limit structure 121 and the second limit structure 122 are respectively provided with guiding surfaces, so that the air duct When the component 3 is installed, the front end of the air duct component 3 can be guided along the guide surface to ensure the installation quality.
  • the second limiting structure 122 has a second guide surface 122a extending up and down
  • the second mating portion 37 has a third guide surface 371 extending up and down.
  • the second guide surface 122a and the third guide surface 371 are slidably matched.
  • the second guide surface 122a and the third guide surface 371 guide and slide.
  • the installation and disassembly process of the duct component 3 it can be directly matched with the guide movement to cooperate with the installation and disassembly.
  • the disassembly is convenient, and it can be installed and positioned at one time, and multiple attempts and adjustments are not allowed to improve the efficiency of disassembly and installation.
  • Fig. 18 is a schematic structural diagram from another perspective of the assembly of air duct components and fans according to some embodiments of the present application;
  • Fig. 19 is an enlarged schematic view at C in Fig. 18;
  • FIG. 21 is an enlarged schematic diagram at D in FIG. 20;
  • FIG. 22 is a schematic structural diagram of a third driving mechanism according to some preferred embodiments of the present application. 1 and 18-22
  • the first driving mechanism 71 in this embodiment includes a fan motor 711.
  • the fan motor 711 has a first motor shaft 712.
  • One end of the fan 4 passes through the bearing housing assembly 320 and the air duct component 3 One side is connected, the other end of the fan 4 is provided with a first sleeve 41 that can be movably inserted into the first motor shaft 712, the first motor shaft 712 is provided with a limiting member 713, and the first sleeve 41 is provided with a lock Tighten the locking screw 42 of the first motor shaft 712.
  • the locking screw 42 is arranged along its radial direction. In this way, after the locking screw 42 is removed, the fan 4 can be moved toward the bearing housing assembly 320 along its axial direction.
  • the fan 4 and the fan motor 711 can be disassembled by retreating a certain distance so that the first shaft sleeve 41 is separated from the first motor shaft 712. Then, when assembling, directly insert the first shaft sleeve 41 of the fan 4 onto the first motor shaft 712 , When the limiting member 713 abuts on the end of the first sleeve 41, tighten the locking screw 42.
  • the limiting member 713 and the locking screw 42 realize the axial and radial limiting of the fan 4 to ensure the fan 4
  • the first motor shaft 712 is provided
  • the first motor shaft 712 can also be set as Stepped shaft
  • the first shaft sleeve 41 is set as a corresponding stepped hole.
  • the large diameter section of the first motor shaft 712 matches the small diameter section of the first shaft sleeve 41 A gap is formed.
  • the locking screw 42 is locked, its lower end surface directly abuts on the gap, which can also achieve the effect of avoiding local protrusions.
  • the existing locking screw 42 on the fan 4 is provided with a notch on the blade of the fan 4 to facilitate the removal of the locking screw 42 by inserting a disassembly tool.
  • a disassembly hole 39 is provided at the front end of the air duct component 3. When the locking screw 42 is locked on the first motor shaft 712, the dismounting hole 39 is radially opposite to the locking screw 42.
  • the air outlet assembly 5 is disassembled, and the fan 4 is rotated so that the locking screw 42 is exposed at the disassembly hole 39, and then the locking screw 42 can be disassembled by directly inserting it from the disassembly hole 39 of the air duct component 3, compared with the fan 4
  • the fan blades are disassembled. Since the disassembly hole 39 in this embodiment is provided at the front end of the air duct component 3, the space is larger and the operation is more convenient.
  • the specific disassembly process is: first disassemble the upper panel 8 from the outer cover 2 to prevent the upper and lower ends from blocking the rotation of the lower panel 51 to open the second opening 22, and then connect the first transverse wind panel 521 and the second transverse wind panel 522 to the first A lateral drive motor 731 and a second lateral drive motor 732 are unlocked, and then the elastic buckle 531a between the first link 531 and the second link 532 is unlocked, and the second limit block 518 and the third limit block 518 of the lower panel 51 are unlocked.
  • the lower panel 51 is lifted so that the opening of the claw 512 is level with the clamping shaft 513, and then the claw 512 is separated from the clamping shaft 513 through the opening, and the lower panel 51 Remove from the outer cover 2, rotate the second link 532 to rotate its first end to the outside of the air duct part 3 through the opening slot 34, and then use a tool to lock the lock on the first motor shaft 712 through the removal hole 39
  • the screw 42 is removed, and the fan 4 is withdrawn from the bearing housing assembly 320 along its axial direction for a certain distance so that the first sleeve 41 is separated from the first motor shaft 712 to remove the fan 4 from the fan motor 711.
  • the disassembled fan 4 Stay in the air duct component 3, and finally, rotate the locking member 35 upward to disengage it from the locking groove 14, and extract the air duct component 3 together with the fan 4 from the installation cavity 15 of the base body 1.
  • Some embodiments of the present application provide a removable and washable air conditioner indoor unit.
  • the electronically controlled drive components 7 are all arranged on the base body 1, the air duct component 3 can be detached from the base body 1, and the fan 4 can be driven with the first drive.
  • the mechanism 71 can be disassembled, the lower panel 51 can be disassembled from the housing 2 and the first link 531 can be disassembled from the second link 532.
  • the first end of the second link 532 can be rotated to the outside of the air duct part 3 through the opening slot 34
  • the lower panel 51 covers 2 like this.
  • the air outlet assembly 5 and the air duct component can be removed. 3 and the fan 4 are removed from the second opening 22 for cleaning, while the electrically-controlled driving parts 7 and other live parts are left on the base body 1, so as to avoid disassembling the live parts connected to the disassembly and washing parts and ensure the safety of the disassembly process.
  • the air outlet component 5, air duct component 3 and fan 4 are disassembled without live parts, the user can directly use water washing and other methods for thorough cleaning when cleaning. The operation is more convenient, and the user can clean by himself without Professionals carry out disassembly and assembly.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air-Flow Control Members (AREA)
  • Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)

Abstract

一种可拆洗的空调室内机,包括基座体(1);外罩(2)上设有第一开口(21),外罩(2)罩设基座体(1)形成第二开口(22);上面板(8)的一端铰接在第一开口(21)的上边沿并覆盖第一开口(21);出风组件(5)的一端铰接在第一开口(21)的下边沿,并可打开或关闭第二开口(22),出风组件(5)的侧边设有多个与第二开口(22)侧边的外罩(2)可拆卸卡接的第一卡接件(511)。

Description

一种可拆洗的空调室内机
相关申请的交叉引用
本申请要求在2020年04月30日提交中国专利局、申请号为2020103664353,发明名称为一种可拆洗的空调室内机的中国专利申请的优先权;
在2020年04月30日提交中国专利局、申请号为2020103683087,发明名称为一种可拆洗的空调室内机的中国专利申请的优先权;
在2020年04月30日提交中国专利局、申请号为2020207151677,发明名称为一种可拆洗的空调室内机的中国专利申请的优先权;
在2020年04月30日提交中国专利局、申请号为2020207192408,发明名称为一种可拆洗的空调室内机的中国专利申请的优先权;
在2020年04月30日提交中国专利局、申请号为2020207201197,发明名称为可拆洗的空调室内机的中国专利申请的优先权;
在2020年04月30日提交中国专利局、申请号为2020207188313,发明名称为可拆洗的空调室内机的中国专利申请的优先权;
上述中国专利申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及空调技术领域,特别是涉及一种可拆洗的空调室内机。
背景技术
现有空调室内机的出风口组件一般包括面板以及安装在面板上的纵向风板,面板需要与空调室内机的外罩连接,现有技术中的面板与外罩一般为一体成型固定或者通过螺栓可拆卸连接。面板与外罩一体成型时,面板的拆卸困难;采用螺栓连接使,面板的拆卸的工序复杂,且由于空调室内机的风扇组件以及风道部件需要定时拆卸清洗,需要多次拆卸面板,螺栓的多次拆装容易引起螺栓连接的稳固降低,螺栓出现滑丝或者滑脱现象,从而导致出风口部件与外罩的连接不可靠。
发明内容
本申请实施例提供一种可拆洗的空调室内机,包括:
基座体;
外罩,所述外罩上设有第一开口,所述外罩罩设所述基座体形成第二开口;
上面板,所述上面板的一端铰接在所述第一开口的上边沿并覆盖所述第一开口;
出风组件,所述出风组件的一端铰接在所述第一开口的下边沿,并可打开或关闭所述第二开口;
所述出风组件的侧边设有多个与所述第二开口侧边的外罩可拆卸卡接的第一卡接件。
附图说明
图1是根据本申请一些实施例的结构示意图;
图2是根据本申请一些实施例的爆炸图;
图3是根据本申请一些实施例拆卸上面板后的结构示意图;
图4是根据本申请一些实施例的出风组件的结构示意图;
图5是根据本申请一些实施例拆卸挂墙板和基座体后的结构示意图;
图6是图5中A处的放大示意图;
图7是根据本申请一些实施例的风道部件的结构示意图;
图8是根据本申请一些实施例的风道部件与风扇装配的结构示意图;
图9是根据本申请一些实施例的风道部件另一视角的结构示意图;
图10是图9中B处的放大示意图;
图11是根据本申请一些实施例的风道部件与基座体装配的结构示意图;
图12是根据本申请一些实施例的风道部件与基座体装配的局部结构示意图;
图13是根据本申请一些实施例的基座体的结构示意图;
图14是根据本申请一些实施例的第二连杆与导风叶片装配的结构示意图;
图15是根据本申请一些实施例的第一连杆与第三驱动机构连接的结构示意图;
图16是根据本申请一些实施例的锁止件的结构示意图;
图17是根据本申请一些实施例的基座体的另一视角的局部结构示意图;
图18是根据本申请一些实施例的风道部件与风扇装配的另一视角的结构示意图
图19是图18中C处的放大示意图;
图20是根据本申请一些优选实施例的风扇与第一驱动机构装配的结构示意图;
图21是图20中D处的放大示意图;
图22是根据本申请一些优选实施例的第三驱动机构的结构示意图。
附图标记说明:
1、基座体,11、基座底板,111、连接部,111a、勾槽,112、布管空间,12、基座侧板,12a、第一基座侧板,12b、第二基座侧板,121、第一限位结构,122、第二限位结构,122a、第二导向面,13、电机安装件,131、电机安装板,131a、通孔,131b、加强筋,131c、凸台,131d、第一安装孔,132、围板,14、锁止槽,15、安装腔;
2、外罩,21、第一开口,22、第二开口,23、凹槽;
3、风道部件,31、卡止块,32、插槽,33、拱形体,34、开口槽,35、锁止件,351、本体,352、连接轴,353、拨动部,36、卡勾,37、第二配合部,371、第三导向面,39、拆卸孔,310、第二安装孔,320、轴承座组件;
4、风扇,41、第一轴套,42、锁紧螺钉;
5、出风组件,51、下面板,511、第一卡接件,511a、第一凸起,512、卡爪,512a、圆弧形卡槽, 512b、第一弧形爪,512c、第二弧形爪,513、卡轴,514、卡钩,514a、卡钩槽,515、第二卡接件,515a、第二凸起,516、第三卡接件,516a、拱形槽,517、第一限位块,518、第二限位块,519、扣手槽,520、出风口,52、导风板,521、第一横向风板,522、第二横向风板,53、连杆机构,531、第一连杆,531a、弹性扣,532、第二连杆,532a、钩槽,532b、入口,532c、通槽,532d、第一支杆,532e、第二支杆,532f、第三支杆,533、导风叶片;
6、蒸发部件;
7、电控驱动部件,71、第一驱动机构,711、风扇电机,712、第一电机轴,712a、环形槽,713、限位件,72、第二驱动机构,721、连杆驱动电机,722、曲柄结构,73、第三驱动机构,731、第一横向驱动电机,732、第二横向驱动电机,74、电控盒;
8、上面板;
9、挂墙板。
具体实施方式
下面结合附图和实施例,对本申请的具体实施方式作进一步详细描述。以下实施例用于说明本申请,但不用来限制本申请的范围。
在本申请的描述中,需要理解的是,术语“上”、“下”、“前”、“后”、“左”、“右”、“顶”、“底”、“内”、“外”等指示的方位或位置关系,均基于产品的使用状态以及附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,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申请的限制。具体地,本实施例中,当空调室内机装配于室内墙体上时,面向用户的一侧为前侧/前面/前端,背离用户的一侧为后侧/后面/后端。
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。在本申请的描述中,除非另有说明,“多个”的含义是两个或两个以上。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;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。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本申请中的具体含义。
图1是根据本申请一些实施例的结构示意图;图2是根据本申请一些实施例的爆炸图;
图3是根据本申请一些实施例拆卸上面板后的结构示意图。参考图1-图3,本申请的实施例提供了一种可拆洗的空调室内机,包括基座体1、外罩2、上面板8、风扇4、出风组件5、蒸发部件6和风道部件3。
其中,基座体1的一侧设有电控驱动部件7,电控驱动部件7包括电控盒74、第一驱动机构71、第二驱动机构72和第三驱动机构73,风扇4与第一驱动机构71可拆卸连接,电控盒74为室内机的电控中心,用于控制各部件的运转;
外罩2上设有第一开口21和进风口,外罩2罩设基座体1形成第二开口22,具体的,本申请中 的外罩2可以为长方体或者柱状或者正方体结构;
上面板8的一端铰接在第一开口21的上边沿并覆盖第一开口21,上面板8一般对应于蒸发部件6设置,以便能实现将上面板8打开即可实现对蒸发部件6的清理等操作,上面板8的一侧通过转轴连接在外罩2上,从而使得上面板8可通过该转轴旋转打开或关闭;
出风组件5的一端铰接在第一开口21的下边沿,并可打开或关闭第二开口22,参考图4-图6,出风组件5的侧边设有多个与外罩2靠近第二开口22的一侧边沿可拆卸卡接的第一卡接件511;
风道部件3设置在外罩2和基座体1形成的空间内,并可从第二开口22取出,具体的,本实施例中的基座体1包括基座底板11和基座侧板12,风道部件3与基座底板11可拆卸连接,风扇4设于风道部件3中;
蒸发部件6连接在基座体1上并位于外罩2内,蒸发部件6覆设在风扇4的上部,空气从进风口进入到风道中经与风扇4以及蒸发部件6进行热交换后从出风组件5吹出;
另外,外罩2的后部设有挂墙板9,通过挂墙板9将室内机固定安装在墙壁上。
基于上述的可拆卸的空调室内机,将电控驱动部件7均设置在基座体1上,相对应的,与电控驱动部件7连接的电源线、各个电器负载件的电线以及连接信号线等均设置在基座体1上,风道部件3可与基座体1拆卸,风扇4可与第一驱动机构71拆卸,下面板51可从外罩2上拆卸,如此,在拆洗操作时,可以将出风组件5、风道部件3以及风扇4从第二开口22中拆出清洗,而电控驱动部件7等带电部件均留在基座体1上,从而避免将带电部件连同拆洗部件拆出,保证拆卸过程的安全性,同时,由于出风组件5、风道部件3以及风扇4拆出后均不带有带电部件,用户在清洗时可以直接采用水洗等方式进行彻底清洁,其操作较为便利,用户可以自行清洗,无需专业人士进行拆装。
图4是根据本申请一些实施例的出风组件的结构示意图。参考图3和图4,进一步的,出风组件5的一端成排设有多个卡爪512,卡爪512具体为三个,每一个卡爪512上均具有圆弧形卡槽512a,在外罩2的顶部设有多个卡轴513,各卡轴513卡入到圆弧形卡槽512a内,圆弧形卡槽512a可绕卡轴513轴线转动,在具体安装拆卸时,工作人员可操作出风组件5沿卡轴513转动,以使出风组件5打开或者关闭第二开口22,在是上面板8转动开启之后,卡爪512可以脱离卡轴513以拆卸掉出风组件5。
具体的,本申请的卡爪512包括第一弧形爪512b和第二弧形爪512c,第一弧形爪512b和第二弧形爪512c平滑衔接形成具有开口的圆弧形卡槽512a,圆弧形卡槽512a与卡轴513可拆转动卡接,本申请的实施例中,第一弧形爪512b和第二弧形爪512c为一体加工成型。
在本申请的一些实施例中,出风组件5的前部与外罩2的前部可一起通过其他的转动连接结构,例如铰链,铰链与出风组件5和外罩2为可拆卸的连接,实现出风组件5转动连接外罩2的目的。
图5是根据本申请一些实施例拆卸挂墙板和基座体后的结构示意图;图6是图5中A处的放大示意图。参考图4-图6,在本申请一些实施例中,第一卡接件511具体为两个,第一卡接件511自出风组件5向上延伸,第一卡接件511远离出风组件5的一端一体连接有第一凸起511a,外罩2上具有与第一卡接件511卡接的凹槽23,具体在出风组件5的相对的两侧均具有第一卡接件511,外罩2的相对两侧均设有凹槽23,第一卡接件511用于将出风组件5的侧面与外罩2固定连接,避免出风组件5的侧面松脱。
进一步的,出风组件5的前部设有多个与风道部件3可拆卸卡接的卡钩514,通过卡钩514与风 道部件3连接限制出风组件5与风道部件3的相对位移;同时,出风组件5的前部还设有多个有风道部件3可拆卸卡接的第二卡接件515,通过出风组件5上的第二卡接件515与风道部件3卡接以固定出风组件5的前部在风道部件3上的位置。
图7是根据本申请一些实施例的风道部件的结构示意图。参考图4和图7,卡钩514具体为板块状,卡钩514的端部宽度小于卡钩514的另外一端的宽度,卡钩514的端部形成卡钩槽514a,在风道部件3上设有与卡钩槽514a匹配挡止的卡止块31,卡止块31与卡钩槽514a相对应。在第二开口22关闭时,卡钩514与风道部件3上的卡止块31卡止,进而将出风组件5与风道部件3锁定。
在本申请一些实施例中,第二卡接件515具体为两个,第二卡接件515自出风组件5的表面上先垂直出风组件5并向后倾斜延伸,在第二卡接件515远离出风组件5的端部一体连接有向前延伸的第二凸起515a,其中,风道部件3的前部设有插槽32,第二卡接件515插入插槽32内,同时第二凸起515a与叉槽外壁卡止,以将第二卡接件515卡入到插槽32内,以限制出风组件5前部的位移。
更进一步的,出风组件5的后部还设有多个与风道部件3可拆卸卡接的第三卡接件516,第三卡接件516的数量具体为两个,第三卡接件516设置于出风组件5的后部的中部位置,用于将出风组件5的后部与风道部件3固定,避免出风组件5的后部移动或者晃动。
其中,第三卡接件516开设有拱形槽516a,风道部件3上设有有拱形槽516a插接的拱形体33,具体安装时,拱形体33匹配插入到拱形槽516a内,以定位出风组件5。
利用上述的第一卡接件511、第二卡接件515和第三卡接件516来限制风口组件与外罩2和风道部件3的位置,利用上述的连接实现了将出风组件5与外罩2和风道部件3可拆卸的目的,避免出风组件5脱落。相比现有技术中的出风组件5与外罩2以及风道部件3采用螺栓连接,本申请的出风组件5具有拆装方便、出风组件5不易滑脱、连接可靠的优点。
其中,为定位出风组件5的位置以便准确进行安装,在出风组件5的后部还设有第一限位块517,第一限位块517的数量为两个,在出风组件5罩设在第二开口22时,出风组件5通过第一限位块517与基座体1卡接配合,这样将出风组件5固定连接在外罩2和风道部件3的同时,进一步定位出风组件5与基座体1的位置。
进一步的,参考图4和图6,出风组件5的后部两个边角处均设有用于与外罩2卡接配合的第二限位块518,在出风组件5罩设在第二开口22时,进一步的便于将出风组件5与外罩2固定连接。具体的,第二限位块518远离上面板8的端部设有减重槽,有助于降低出风组件5整体的重量,便于拆装,同时降低原材料投入成本。
在本实施例中,为了方便将出风组件5拆卸后将风道部件3从第二开口22取出,出风组件5的侧边还设有扣手槽519,扣手槽519向出风组件5内侧延伸。在其他的实施例中,可以设置挂钩或者扣手用凸台等来便于工作人员操作出风组件5,从而打开第二开口22。
进一步的,为了提高出风组件5的强度以及美观性能,出风组件5上的卡爪512、第一卡接件511、第二卡接件515、第三卡接件516、卡钩514、第一限位块517和第二限位块518均与出风组件5一体加工成型。
进一步的,参考图2-图4,本实施例中的出风组件5包括下面板51、导风板52和连杆机构53, 上面板8的一侧通过转动轴连接在外罩2上,从而使得上面板8可通过该转动轴旋转打开或关闭,为了保证上面板8、下面板51与外罩2三者之间的连接稳固性,上面板8的另一侧设有卡紧结构,该卡紧结构穿过下面板51上端的避空槽与外罩2上的卡孔结构卡接固定,从而便于上面板8的拆卸安装。
其中,下面板51设有出风口520,导风板52可转动的设置在出风口520处以打开或关闭出风口520。
图11是根据本申请一些实施例的风道部件与基座体装配的结构示意图;图12是根据本申请一些实施例的风道部件与基座体装配的局部结构示意图;图13是根据本申请一些实施例的基座体的结构示意图。参考图11-13,基座体1设有用于拆卸风道部件3的拆卸通道,基座侧板12的外侧面设有第三驱动机构73,第三驱动机构73的输出轴穿过基座侧板12与导风板52可拆卸连接且第三驱动电机73的输出轴的末端位于拆卸通道外沿。由于风道部件3的拆卸通道位于基座体1上,第三驱动机构73位于基座侧板12的外侧面,并且,与导风板52可拆卸连接的第三驱动机构73的输出轴末端位于拆卸通道的外沿,这样在风道部件3经拆卸通道拆卸,拆卸时只需要解开第三驱动机构73与导风板52的连接即可拆卸风道部件3,不需要拆卸掉第三驱动机构73,避免多次拆卸安装引起第三驱动机构73的安装部位的松动或者变形引起的安全隐患,且风道部件3拆装更方便。
进一步的,基座侧板12的外侧面设有电机安装件13,电机安装件13的安装位置完全的避让开风道部件3的拆卸通道,电机安装件13上设有第三驱动机构73的容纳腔,将第三驱动机构73安装到容纳腔内,由于电机安装件13避让开安装腔15和拆卸通道,以使第三驱动机构73避让开拆卸通道。
具体的,电机安装件13包括电机安装板131和固定电机安装的边沿的围板132,电机安装板131与基座体1的端部固定连接,电机安装板131与围板132形成容纳腔,其中,电机安装板131与围板132可以一体成型也可以通过粘贴或者螺栓固定连接,本实施例中,电机安装板131与围板132垂直固定且一体成型。
在本申请的一些实施例中,根据基座体1的使用需求,基座体1的两端可以分别设有一个基座侧板12,分别为第一基座侧板12a和第二基座侧板12b,基座底板11与第一基座侧板12a和第二基座侧板12b可以一体成型或者螺栓固定成型,利用基座底板11、第一基座侧板12a和第二基座侧板12b形成风道部件3的安装腔15,拆卸通道位于其基座体1的前部,电机安装板131设在其中一个基座侧板12的前部侧边。
进一步的,基座侧板12具体为三角状板,电机安装板131连接于三角板远离拆卸通道的一侧且向该方向延伸布置,具体的,基座侧板12与基座底板11垂直,电机安装板131与基座侧板12共面,本申请的实施例中,电机安装板131与基座侧板12为一体注塑成型,以增加电机安装板131与基座的连接强度,避免松动。
其中,电机安装板131的宽度由前至后依次现增加后减小,使容纳腔的宽度由前至后先增加后减小,以适应不同尺寸大小的第三驱动机构73容纳。
容纳腔内的电机安装板131上设有用于第三驱动机构73的输出轴穿过的通孔131a,输出轴穿过电机安装板131之后与导风板52可拆卸连接,且第三驱动机构73的输出轴的末端位于拆卸通道外侧,在解除第三驱动机构73的输出轴与导风板52的连接之后即可拆卸风道部件3,不需要拆卸第三驱动机 构73。
电机安装板131上还一体成型有多个呈网状交叉布置的加强筋131b,以增加电机安装板131的强度,同时,在加强筋131b的交叉处具有凸台131c,凸台131c上具有第一安装孔131d,第一安装孔131d通过紧固件与第三驱动机构73连接。
参考图13,基座底板11的前端向下延伸形成连接部111,基座底板11与连接部111之间形成有布管空间112,相较于现有的直接将管路总成掰开到一定的角度以对风道部件3拆出进行避让,如此,室内机的管路总成可直接从该布管空间112布管,并通过基座底板11与风道部件3分隔开,这样,在风道部件3安装和拆卸过程中,有效避免连接管路对风道部件3的阻碍,同时避免风道部件3在拆装过程中对连接管路造成损伤,保证风道部件3拆卸的顺畅性。
进一步的,第三驱动机构73的输出轴穿过通孔131a的部分设有防电轴。
图14是根据本申请一些实施例的第二连杆与导风叶片装配的结构示意图。参考图3、图13和图14,其中,连杆机构53设置于出风口520处,用于引导出风口520的风的方向,连杆机构53包括可拆卸连接的第一连杆531和第二连杆532,第一连杆531上间隔设有多个导风叶片533,基座体1的一端设有第二驱动机构72,第二连杆532延伸至风道部件3外侧与第二驱动机构72的输出轴可转动连接,风道部件3上设有供第二连杆532穿过的开口槽34。
具体的,第一连杆531水平设在出风口520处的下面板51上,第二驱动机构72通过第二连杆532带动第一连杆531转动,从而使导风叶片533摆动调整出风口520的风吹出的方向。另外,下面板51盖设在开口槽34上,开口槽34为方型槽或者弧形槽。在需要清洗拆卸风道部件3时,打开下面板51,解除第一连杆531与第二连杆532的连接,然后转动第二连杆532使第二连杆532从开口槽34内转出,直至转动至风道部件3的外侧,即可拆卸风道部件3,又不需要拆卸掉第二驱动机构72,避免多次拆卸安装引起第二驱动机构72的安装部位松动或者变形引起的安全隐患,且使风道部件3拆装更方便。
本实施例中的可拆洗的空调室内机的拆卸过程中,由于下面板51与风道部件3为匹配贴合的上下布置,故开口槽34的设置有助于在风道部件3上避让第二连杆532,避免第二连杆532使下面板51与开口槽34的间隙增加,利用开口槽34进一步提高下面板51与风道部件3安装的紧凑性。
具体的,第一连杆531的端部设有弹性扣531a,第二连杆532的端部设有用于弹性扣531a可拆卸钩挂的钩槽532a。弹性扣531a具体为橡塑材料的弹性钩,且弹性钩与第一连杆531为一体成型;钩槽532a包括入口532b的挡止块和设有上下延伸的通槽532c的钩挂块,挡止块、钩挂块和第二连杆532为一体成型,且入口532b与通槽532c连通,弹性钩能够自入口532b插入之后卡入通槽532c内,以连接第一连杆531和第二连杆532,在需要拆卸时,弹性钩压缩,使弹性钩的体积减小,弹性钩依次从通槽532c和入口532b拆卸出,从而将第一连杆531与第二连杆532分离。
进一步的,参考图9和图14,第二连杆532包括依次布置的第一支杆532d、第二支杆532e和第三支杆532f,第一支杆532d与第三支杆532f平行布置,第二支杆532e与第一支杆532d和第三支杆532f均垂直固定,钩槽532a设于第一支杆532d远离第二支杆532e的端部,第一支杆532d的尺寸与开口槽34匹配。在本申请的其他实施例中,第二连杆532的形状可以为其他的形状,以便于第二驱动机构72安装于基座体1的合适位置上进行连接。
具体的,第二驱动机构72包括连杆驱动电机721和曲柄结构722,连杆驱动电机721的输出端与曲柄结构722的一端连接,曲柄机构的另一端与第二连杆532的第二端转动连接,连杆驱动电机721驱动曲柄结构722转动以实现连杆机构53带动导风叶片533的摆动,另外,当第一连杆531与第二连杆532解除连接后,第二连杆532可以绕曲柄结构722转动从而使其第一端旋转至风道部件3外一避免与风道部件3的拆卸通道产生干涉。
进一步的,参考图2,本实施例中的导风板52包括第一横向风板521和第二横向风板522,第三驱动机构73包括第一横向驱动电机731和第二横向驱动电机732,第一横向驱动电机731与第一横向风板521的一端可拆卸连接,第二横向驱动电机732与第二横向风板522的一端可拆卸连接,具体的,第一横向风板521和第二横向风板522均是一端转动连接于下面板51上,另一端设有第二轴套,第一横向驱动电机731和第二横向驱动电机732均具有与第二轴套分别插接配合的第二电机轴,第一横向风板521和第二横向风板522通过第二轴套与相对应的第一横向驱动电机731和第二横向驱动电机732插接配合,本实施例中,第一横向风板521和第二横向风板522分别通过不同的驱动电机驱动其摆动从而改变出风口520的出风方向,以实现两个横向风板的独立运行,从而满足不同的用户需求。
图9是根据本申请一些实施例的风道部件另一视角的结构示意图;图10是图9中B处的放大示意图图;15是根据本申请一些实施例的第一连杆与第三驱动机构连接的结构示意图;图16是根据本申请一些实施例的锁止件的结构示意图;图17是根据本申请一些实施例的基座体的另一视角的局部结构示意图。参考9-图10、图13-图17,风道部件3内形成有风道,风道部件3的两侧活动设有锁止件35,基座体1上设有与锁止件35对应的锁止槽14,锁止件35可转动锁入至锁止槽14中以将风道部件3锁定至基座体1上,或锁止件35脱离锁止槽14以将风道部件3与基座体1解锁,当风道部件3安装到基座体1的安装腔15中到位后,通过风道部件3上的锁止件35与基座体1上的锁止槽14实现两者之间的锁紧或解锁,其操作简单,在实施例中,锁止槽14设置在基座底板11上,锁止件35可向下旋转与锁止槽14锁止,或者向上旋转脱离锁止槽14进行解锁,从而在上下方向对风道部件3进行锁紧,而第一基座侧板12a和第二基座侧板12b可在左右方向对风道部件3安装进行限位,为了保证风道部件3安装的稳固性,在基座体1的连接部111上还设有勾槽111a,风道部件3的下端设有多个与勾槽111a对应卡接配合的卡勾36,实现在前后方向对风道部件3的锁紧,以进一步地将风道部件3锁紧在基座体1上,避免两者之间发生脱落,具体地,风道部件3的两侧分别设有第二安装孔310,锁止件35包括可部分插入至锁止槽14中的本体351,本体351的一端设有用于与第二安装孔310装配的连接轴352,本体351的另一端设有拨动部353,具体通过拨动部353带动连接轴352转动将本体351部分插入至下方基座底板11上的锁止槽14,从而将风道部件3锁定在基座体1上。
更进一步的,为了保证风道部件3安装过程的平稳性,在第一基座侧板12a和第二基座侧板12b的内侧分别设有第一限位结构121和第二限位结构122,风道部件3的后端分别对应设有与第一限位结构121配合的第一配合部以及与第二限位结构122配合的第二配合部37,通过第一限位结构121和第二限位结构122保证风道部件3装配位置的准确性,进而保证装配质量,一般地,第一限位结构121和第二限位结构122的下端分别设有有导向面,从而使得风道部件3在安装时,风道部件3的前端可以沿着该导向面进行导向,保证安装质量。
具体的,第二限位结构122具有上下方向延伸的第二导向面122a,第二配合部37具有上下延伸 的第三导向面371,第二导向面122a与第三导向面371滑动匹配,在风道部件3与基座体1安装或者拆卸过程中,第二导向面122a与第三导向面371导向滑动,在风道部件3的安装与拆卸过程中能够直接匹配导向移动配合安装和拆卸,不需要人预估左右方向的定位距离,拆卸方便,且能够一次安装定位,不许要多次尝试和调整,提高拆卸和安装的效率。
图18是根据本申请一些实施例的风道部件与风扇装配的另一视角的结构示意图;图19是图18中C处的放大示意图;图20是根据本申请一些优选实施例的风扇与第一驱动机构装配的结构示意图;图21是图20中D处的放大示意图;图22是根据本申请一些优选实施例的第三驱动机构的结构示意图。参考图1、图18-图22,本实施例中的第一驱动机构71包括风扇电机711,风扇电机711具有第一电机轴712,风扇4的一端通过轴承座组件320与风道部件3的一侧连接,风扇4的另一端设有可活动插入至第一电机轴712中的第一轴套41,第一电机轴712上设有限位件713,第一轴套41上设有用于锁紧第一电机轴712的锁紧螺钉42,锁紧螺钉42沿其径向方向布置,如此,即可通过将锁紧螺钉42拆卸后,将风扇4沿着其轴向方向向轴承座组件320退出一段距离使得第一轴套41与第一电机轴712脱离即可将风扇4与风扇电机711拆卸,然后,装配时,直接将风扇4的第一轴套41插入至第一电机轴712上,当限位件713抵接在第一轴套41端部时拧紧锁紧螺钉42即可,通过限位件713和锁紧螺钉42实现对风扇4的轴向和径向限位,保证风扇4运行过程的稳定性,为了避免锁紧螺钉42锁紧在第一电机轴712上造成第一电机轴712表面出现局部凸起而影响装配,本实施例中,在第一电机轴712上设置环形槽712a,当锁紧螺钉42锁紧时,其下端面抵接在该环形槽712a中从而避免第一电机轴712产生局部凸起,作为可替代的,也可以设置第一电机轴712为阶梯轴,第一轴套41设置为相对应的阶梯孔,当第一轴套41与第一电机轴712装配时,第一电机轴712的大径段与第一轴套41的小径段配合形成间隙,锁紧螺钉42在锁紧时,其下端面直接抵接在该间隙上也可以同样达到避免产生局部凸起的效果。
现有风扇4上的锁紧螺钉42是通过在风扇4扇叶上开设缺口便于拆装工具伸入将锁紧螺钉42拆卸,本实施例中,为了便于拆卸风扇4上的锁紧螺钉42,在风道部件3的前端设有拆卸孔39,当锁紧螺钉42锁紧在第一电机轴712上时,拆卸孔39与锁紧螺钉42径向相对,用户在拆风扇4时,先将出风组件5拆卸下来,转动风扇4使得锁紧螺钉42暴露在拆卸孔39处,然后直接从风道部件3的拆卸孔39伸入即可将锁紧螺钉42拆卸,相较于从风扇4扇叶上进行拆卸,本实施例中的拆卸孔39由于设置在风道部件3的前端,其空间较大,更加便于操作。
具体的拆卸过程为:先将上面板8从外罩2上拆卸,避免上面下端阻挡下面板51转动打开第二开口22,然后将第一横向风板521和第二横向风板522对应地与第一横向驱动电机731和第二横向驱动电机732解锁,然后将第一连杆531与第二连杆532之间的弹性扣531a解锁,并将下面板51的第二限位块518、第三卡接件516以及第第一限位块517均松开后,掀起下面板51使得卡爪512的开口与卡轴513相平,然后将卡爪512通过其开口脱离卡轴513即将下面板51从外罩2上拆卸,转动第二连杆532使其第一端经开口槽34旋转至风道部件3的外侧,然后,使用工具经拆卸孔39将锁定在第一电机轴712上的锁紧螺钉42拆卸,将风扇4沿着其轴向方向向轴承座组件320退出一段距离使得第一轴套41与第一电机轴712脱离即可将风扇4与风扇电机711拆卸,拆卸后的风扇4留在风道部件3中,最后,向上旋转锁止件35使其脱离锁止槽14,将风道部件3连同风扇4从基座体1的安装腔15中抽 出即可。
本申请一些实施例提供了一种可拆洗的空调室内机,将电控驱动部件7均设置在基座体1上,风道部件3可与基座体1拆卸,风扇4可与第一驱动机构71拆卸,下面板51可从外罩2上拆卸且第一连杆531可与第二连杆532拆卸,第二连杆532的第一端可经开口槽34旋转至风道部件3的外侧以将第一连杆531与第二驱动机构72拆卸,且可同时避让出风道部件3的拆卸通道,下面板51外罩2如此,在拆洗操作时,可以将出风组件5、风道部件3以及风扇4从第二开口22中拆出清洗,而电控驱动部件7等带电部件均留在基座体1上,从而避免将带电部件连通拆洗部件拆出,保证拆卸过程的安全性,同时,由于出风组件5、风道部件3以及风扇4拆出后均不带有带电部件,用户在清洗时可以直接采用水洗等方式进行彻底清洁,其操作较便利,用户可以自行清洗,无需专业人士进行拆装。
本说明书参考附图来公开本申请,并且还使本领域中的技术人员能够实施本申请,包括制造和使用任何装置或系统、采用合适的材料以及使用任何结合的方法。本申请的范围由请求保护的技术方案限定,并且包括本领域中的技术人员想到的其他实例。只要此类其他实例包括并非不同于请求保护的技术方案字面语言的结构元件,或此类其他实例包含与请求保护的技术方案的字面语言没有实质性区别的等价结构元件,则此类其他实例应当被认为处于本申请请求保护的技术方案所确定的保护范围内。

Claims (36)

  1. 一种可拆洗的空调室内机,其特征在于,包括:
    基座体;
    外罩,所述外罩上设有第一开口,所述外罩罩设所述基座体形成第二开口;
    上面板,所述上面板的一端铰接在所述第一开口的上边沿并覆盖所述第一开口;
    出风组件,所述出风组件的一端铰接在所述第一开口的下边沿,并可打开或关闭所述第二开口;
    所述出风组件的侧边设有多个与所述第二开口侧边的外罩可拆卸卡接的第一卡接件。
  2. 如权利要求1所述的可拆洗的空调室内机,其特征在于,所述出风组件的一端成排设有多个卡爪,所述外罩上设有多个与所述卡爪匹配的卡轴,各所述卡爪分别可转动卡接在各所述卡轴上。
  3. 如权利要求2所述的可拆洗的空调室内机,其特征在于,所述卡爪包括第一弧形爪和第二弧形爪,所述第一弧形爪和所述第二弧形爪平滑衔接形成具有开口的圆弧形卡槽,所述圆弧形卡槽与所述卡轴可拆转动卡接。
  4. 如权利要求1所述的可拆洗的空调室内机,其特征在于,所述第一卡接件自所述出风组件的表面向上延伸,所述第一卡接件远离所述出风组件的一端设有第一凸起,所述外罩上具有用于所述第一卡接件插入并与所述第一凸起卡止的凹槽。
  5. 如权利要求1所述的可拆洗的空调室内机,其特征在于,所述出风组件上还设有用于与基座体卡接配合的第一限位块。
  6. 如权利要求1所述的可拆洗的空调室内机,其特征在于,所述出风组件的侧边还设有扣手槽,所述扣手槽沿所述出风组件的侧端边缘向出风组件内侧延伸。
  7. 如权利要求1所述的可拆洗的空调室内机,其特征在于,所述出风组件的后部边角处设有用于与外罩卡接配合的第二限位块。
  8. 如权利要求7所述的可拆洗的空调室内机,其特征在于,所述第二限位块的上端面开设有减重槽。
  9. 如权利要求1所述的可拆洗的空调室内机,其特征在于,所述上面板的另外一端与所述外罩可拆卸卡接。
  10. 如权利要求1所述的可拆洗的空调室内机,其特征在于,还包括风道部件,所述风道部件设置在所述外罩和所述基座体形成的空间内,并可从所述第二开口取出。
  11. 如权利要求10所述的可拆洗的空调室内机,其特征在于,所述出风组件的前部设有多个与所述风道部件可拆卸卡接的第二卡接件和多个与所述风道部件可拆卸卡接的卡钩。
  12. 如权利要求10所述的可拆洗的空调室内机,其特征在于,所述出风组件上设有多个与所述风道部件可拆卸卡接的第三卡接件。
  13. 如权利要求12所述的可拆洗的空调室内机,其特征在于,所述第三卡接件开设有拱形槽,所述风道部件上设有与所述拱形槽插接的拱形体。
  14. 如权利要求11所述的可拆洗的空调室内机,其特征在于,所述第二卡接件自所述出风组件表 面先垂直出风组件并向后倾斜延伸,所述第二卡接件远离所述出风组件的端部具有向前延伸的第二凸起,所述风道部件的前部设有插槽,所述第二卡接件插入所述插槽内,所述第二凸起与所述插槽外壁卡止。
  15. 如权利要求10所述的可拆洗的空调室内机,其特征在于,所述出风组件包括下面板和导风板,所述下面板设有出风口,所述导风板可转动的设置在所述出风口处以打开或关闭所述出风口。
  16. 如权利要求15所述的可拆洗的空调室内机,其特征在于,所述基座体包括基座底板和基座侧板,所述风道部件与所述基座底板可拆卸连接;
    所述基座体设有用于拆卸所述风道部件的拆卸通道,所述基座侧板的外侧面设有第三驱动机构,所述第三驱动机构的输出轴穿过所述基座侧板与所述导风板可拆卸连接,所述第三驱动电机的输出轴的末端位于所述拆卸通道外沿。
  17. 如权利要求16所述的可拆洗的空调室内机,其特征在于,所述基座侧板的外侧面设有电机安装件,所述第三驱动机构设于所述电机安装件上。
  18. 如权利要求17所述的可拆洗的空调室内机,其特征在于,所述电机安装件包括与所述基座体的端部固定连接的电机安装板以及设置于所述电机安装板的边沿的围板,所述电机安装板与所述围板形成用于容纳所述第三驱动机构的容纳腔。
  19. 如权利要求18所述的可拆洗的空调室内机,其特征在于,所述基板侧板为三角板,所述电机安装板自所述三角板的一侧向远离所述拆卸通道的方向延伸布置。
  20. 如权利要求19所述的可拆洗的空调室内机,其特征在于,所述围板垂直连接于所述电机安装板并与电机安装板一体成型。
  21. 如权利要求13-20任一项所述的可拆洗的空调室内机,其特征在于,所述电机安装板的宽度由前至后依次先增加后减小。
  22. 如权利要求21所述的可拆洗的空调室内机,其特征在于,所述容纳腔内的电机安装板上设有多个凸台和用于所述第三驱动机构的输出轴穿过的通孔,多个所述凸台上设有用于与所述第三驱动机构可拆卸固定连接的安装孔。
  23. 如权利要求22所述的可拆洗的空调室内机,其特征在于,所述电机安装板面向所述容纳腔的一侧设有多个呈网状交叉布置的加强筋,多个所述凸台位于多个所述加强筋的交叉处。
  24. 如权利要求22所述的可拆洗的空调室内机,其特征在于,所述第三驱动机构的输出轴穿过所述通孔的部分设有防电轴。
  25. 如权利要求15所述的可拆洗的空调室内机,其特征在于,所述出风组件还包括连杆机构,所述连杆机构设于所述出风口处,所述连杆机构包括可拆卸连接的第一连杆和第二连杆,所述第一连杆上间隔设有多个导风叶片,所述基座体的一端设有第二驱动机构,所述第二连杆延伸至所述风道部件外侧与所述第二驱动机构的输出轴可转动连接,所述风道部件上设有供所述第二连杆穿过的开口槽。
  26. 如权利要求25所述的可拆洗的空调室内机,其特征在于,所述第一连杆的一端设有弹性扣,所述第二连杆的第一端设有用于所述弹性扣可拆钩挂的钩槽。
  27. 如权利要求26所述的可拆洗的空调室内机,其特征在于,所述第二连杆一体成型,所述第二 连杆包括依次布置的第一支杆、第二支杆和第三支杆,所述第一支杆与所述第三支杆平行布置,所述第二支杆与所述第一支杆和第三支杆均垂直固定,所述钩槽设于所述第一支杆远离第二支杆的端部,所述第一支杆的尺寸与所述开口槽匹配。
  28. 如权利要求26所述的可拆洗的空调室内机,其特征在于,所述弹性扣为弹性钩,所述钩槽包括设有入口的挡止块和设有上下延伸的通槽的钩挂块,所述入口与所述通槽连通,所述弹性钩能够自所述入口卡入所述通槽内。
  29. 如权利要求26所述的可拆洗的空调室内机,其特征在于,所述弹性钩为橡塑材料。
  30. 如权利要求25所述的可拆洗的空调室内机,其特征在于,所述第二驱动机构包括连杆驱动电机和曲柄结构,所述连杆驱动电机的输出端与所述曲柄结构的一端连接,所述曲柄结构的另一端与所述第二连杆的第二端转动链接。
  31. 如权利要求26所述的可拆洗的空调室内机,其特征在于,还包括风扇,所述风扇设于所述风道部件中;
    所述基座体的一侧设有电控驱动部件,所述电控驱动部件包括电控盒、第一驱动机构、第三驱动机构和所述第二驱动机构,所述风扇与所述第一驱动机构可拆卸连接,所述第三驱动机构与所述导风板可拆卸连接。
  32. 如权利要求26或31所述的可拆洗的空调室内机,其特征在于,所述开口槽为方型槽或者弧形槽。
  33. 如权利要求31所述的可拆洗的空调室内机,其特征在于,所述导风板包括第一横向风板和第二横向风板,所述第三驱动机构包括第一横向驱动电机和第二横向驱动电机,所述第一横向驱动电机与所述第一横向风板的一端可拆卸连接,所述第二横向驱动电机与所述第二横向风板的一端可拆卸连接。
  34. 如权利要求33所述的可拆洗的空调室内机,其特征在于,所述风道部件的两侧活动设有锁止件,所述基座体上设有与所述锁止件对应的锁止槽;
    所述锁止件可转动锁入至所述锁止槽中以将所述风道部件锁定至所述基座体上,或所述锁止件脱离所述锁止槽以将所述风道部件与所述基座体解锁。
  35. 如权利要求34所述的可拆洗的空调室内机,其特征在于,所述第一驱动机构包括风扇电机,所述风扇电机具有第一电机轴,所述第一电机轴上设有环形槽,所述风扇的一端通过轴承座组件与所述风道部件的一侧连接,所述风扇的另一端设有可活动插入至所述第一电机轴中的第一轴套,所述第一轴套上设有沿其径向方向布置的锁紧螺钉,所述锁紧螺钉的下端可抵接锁紧在所述环形槽中。
  36. 如权利要求35所述的可拆洗的空调室内机,其特征在于,所述风道部件的前端设有拆卸孔,当所述锁紧螺钉锁紧在所述第一电机轴上时,所述拆卸孔与所述锁紧螺钉径向相对。
PCT/CN2021/091220 2020-04-30 2021-04-29 一种可拆洗的空调室内机 WO2021219111A1 (zh)

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