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WO2024001006A1 - 空调器 - Google Patents

空调器 Download PDF

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Publication number
WO2024001006A1
WO2024001006A1 PCT/CN2022/133287 CN2022133287W WO2024001006A1 WO 2024001006 A1 WO2024001006 A1 WO 2024001006A1 CN 2022133287 W CN2022133287 W CN 2022133287W WO 2024001006 A1 WO2024001006 A1 WO 2024001006A1
Authority
WO
WIPO (PCT)
Prior art keywords
plug
assembly
door
edge
air outlet
Prior art date
Application number
PCT/CN2022/133287
Other languages
English (en)
French (fr)
Inventor
田亮
何忠桦
Original Assignee
重庆美的制冷设备有限公司
广东美的制冷设备有限公司
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 CN202221638060.2U external-priority patent/CN217685376U/zh
Priority claimed from CN202210743530.XA external-priority patent/CN117346224A/zh
Application filed by 重庆美的制冷设备有限公司, 广东美的制冷设备有限公司 filed Critical 重庆美的制冷设备有限公司
Publication of WO2024001006A1 publication Critical patent/WO2024001006A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0011Indoor units, e.g. fan coil units characterised by air outlets
    • F24F1/0014Indoor units, e.g. fan coil units characterised by air outlets having two or more outlet openings
    • 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
    • F24F1/0035Indoor units, e.g. fan coil units characterised by introduction of outside air to the room
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2130/00Control inputs relating to environmental factors not covered by group F24F2110/00
    • F24F2130/10Weather information or forecasts
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2130/00Control inputs relating to environmental factors not covered by group F24F2110/00
    • F24F2130/20Sunlight

Definitions

  • the present application relates to the technical field of air conditioning, and in particular to an air conditioner.
  • Air conditioners in the related art blow low-temperature or high-temperature airflow to the indoor environment through the air outlet to adjust the indoor environmental temperature.
  • a door is usually used to block and close the air outlet.
  • the air conditioner is turned on, the door is opened to open the air outlet.
  • the switch door is closed, the gap between the door and the casing of the air conditioner is difficult to control, and problems such as concavity or convexity may easily occur.
  • This application aims to solve at least one of the technical problems existing in the prior art. To this end, this application proposes an air conditioner that can better control the closing gap of the door assembly and improve the problem of concavity or convexity at the first side.
  • An air conditioner includes: a housing assembly having an air outlet on the housing assembly, the air outlet including a first edge and a second edge arranged oppositely, and the housing assembly has an air outlet on the first edge.
  • a first plug-in part is provided at one edge; a door assembly is movable relative to the housing assembly and is configured to move from the second edge toward the first edge to close The air outlet, the side of the door assembly close to the first edge is a first side, the first side has a second plug-in part, the second plug-in part is connected to the The first plug-in part is plug-fitted along the closing movement direction of the door assembly, and in the plug-fit state, at least part of the first plug-in part blocks at least part of the second plug-in part. medial and/or lateral.
  • the closing gap of the door body assembly can be better controlled, and the problem of concavity or convexity at the first side can be improved.
  • At least one of the first plug-in parts and the second plug-in parts is plural, and is provided corresponding to the central area of the first side and along the first side. Spaced apart in the length direction, in the length direction of the first side, the minimum distance H between the central area and either end of the length of the first side satisfies, 0.2L ⁇ H ⁇ 0.5L, L is the The length of the first side.
  • the housing assembly includes an air outlet frame and a panel bracket.
  • the air outlet frame defines the air outlet.
  • the panel bracket is provided outside the air outlet frame and located at the outlet. On the side of the first edge of the air outlet away from the second edge, the air outlet frame and the panel bracket cooperate at the first edge to form the first plug-in part.
  • one of the first plug-in part and the second plug-in part is formed as a plug-in slot and the other is formed as a plug-in pin, and the notch of the plug-in slot is formed along the door. The direction of movement of the body component is open.
  • the first edge is further provided with a support portion located inside the first plug-in portion, and the first side is further provided with a support portion located inside the second plug-in portion.
  • the overlapping portion overlaps the outside of the support portion.
  • the housing assembly includes an air outlet frame, the air outlet frame defines the air outlet, and the air outlet frame is formed with an air outlet extending along the first edge at the first edge.
  • a step surface defines the support portion; and/or the door body assembly includes a door panel formed as one piece, the door panel includes a panel portion and a side panel portion, and the side panel portion is connected to the The side of the panel portion close to the first edge, the outer end of the side plate portion is connected to the panel portion, and the inner end of the side plate portion extends inward relative to the panel portion and defines the Overlap part.
  • the outer end of the housing assembly is formed with a first slope at the first edge, and the outer end of the door assembly is formed with a second slope at the first side.
  • the first inclined surface and the second inclined surface extend obliquely in a direction away from each other along the direction from the inside to the outside.
  • the door body assembly includes a door panel and a reinforcement member assembled inside the door panel, and the length direction of the reinforcement member extends along the length direction of the door panel.
  • the cross section of the reinforcing member is formed into an axially symmetrical shape; and/or the reinforcing member is a hollow extruded molded part.
  • the inner side of the door panel is provided with a stop structure, and the stop structures are respectively blocked on both sides of the length of the reinforcement member; and/or the inner side of the door panel is provided with a limiter and a stopper.
  • the stopper and the buckle, the two sides of the width of the reinforcement are the first side and the second side respectively, the limiter is located on the first side, and defines a direction toward the third side with the door panel.
  • a slot with two sides open, the edge of the first side of the reinforcement member is arranged to be inserted into the slot, the stopper and the buckle are both arranged on the second side, so The stopper is stopped on the second side of the reinforcement, and the buckle is stopped on the inside of the reinforcement.
  • the air conditioner further includes: a driving assembly, the driving assembly is provided on the housing assembly, the driving assembly is connected to the door body assembly through a connecting piece, and is used to drive the door. Body component movement.
  • the air conditioner is provided with two air outlets spaced apart in the left and right directions and extending vertically, and the air conditioner includes two door bodies provided corresponding to the two air outlets.
  • the connecting pieces connected to each door body assembly have the same structural shape, so as to achieve universal installation of the connecting pieces relative to each door body assembly.
  • the two ends of the length of the door assembly are respectively provided with the driving components, the connectors are provided with insertion holes, and the two ends of the inner length of the door assembly correspond to the respective connectors.
  • Connection parts are respectively provided, and the connection parts each have a latch extending along the length direction of the door assembly, and the extension direction of each latch is the same.
  • one of the two connecting pieces located at both ends of the length of the door assembly is fastened to the corresponding connecting portion by screws extending along the length direction of the door assembly. connect.
  • the inner side of the door assembly is provided with a first limiting structure and a second limiting structure, and the first limiting structure is limited on the connecting member along the width direction of the door assembly.
  • the second limiting structure is provided on the outside of the plug to stop the outer wall of the connecting piece.
  • Figure 1 is a front view of an air conditioner according to an embodiment of the present application.
  • Figure 2 is a partial exploded view of an air conditioner according to an embodiment of the present application.
  • Figure 3 is a cross-sectional view of an air conditioner according to an embodiment of the present application.
  • Figure 4 is an enlarged view of part A circled in Figure 3;
  • Figure 5 is an enlarged view of part B circled in Figure 3;
  • Figure 6 is a state diagram of the door assembly of the air conditioner in a closed position according to an embodiment of the present application
  • Figure 7 is an enlarged view of part C circled in Figure 6;
  • Figure 8 is an enlarged view of the portion D circled in Figure 6;
  • Figure 9 is a cross-sectional view of a door assembly according to an embodiment of the present application.
  • Figure 10 is an enlarged view of part E circled in Figure 9;
  • Figure 11 is a perspective view of a door panel according to an embodiment of the present application.
  • Figure 12 is an enlarged view of the F portion circled in Figure 11;
  • Figure 13 is an enlarged view of the H portion circled in Figure 11;
  • Figure 14 is an enlarged view of the J portion circled in Figure 11;
  • Figure 15 is an exploded view of a drive assembly according to one embodiment of the present application.
  • Figure 16 is a perspective view of the connector shown in Figure 15;
  • Figure 17 is an exploded view of the driving assembly and the door body assembly according to one embodiment of the present application.
  • Figure 18 is an enlarged view of the K portion circled in Figure 17;
  • Figure 19 is an enlarged view of the L portion circled in Figure 17;
  • Figure 20 is an assembly diagram of the connector and the door body assembly according to one embodiment of the present application.
  • Figure 21 is an enlarged view of the M portion circled in Figure 20;
  • Figure 22 is an enlarged view of the N portion circled in Figure 20;
  • Figure 23 is an exploded view of an air conditioner according to an embodiment of the present application.
  • Air conditioner 100 closed gap G; center plane S;
  • Shell assembly 1 air outlet 11; first edge 111; second edge 112;
  • Panel bracket 13 first slope 131; rear box 14; top cover 15;
  • Base 16 lower frame 17; upper panel 18; lower panel 19;
  • Door body assembly 2 first side 20; central area 201;
  • Reinforcement member 22 first side 221; second side 222;
  • first limiting structure 281 first limiting structure 281; second limiting structure 282;
  • Driving component 3 connector 31; jack 311; connection hole 312;
  • Heat exchange module 41 ventilation module 42; fresh air module 5; air guide component 6; electronic control component 7;
  • the air conditioner 100 includes: a housing assembly 1 and a door assembly 2.
  • the housing assembly 1 has an air outlet 11, and the air outlet 11 includes a first edge 111 and a second edge 112 that are oppositely arranged.
  • the door assembly 2 is movable relative to the housing assembly 1 and is configured to block and close the air outlet 11 by moving from the second edge 112 to the first edge 111 .
  • the door assembly 2 can move from the first edge 111 to the second edge 112 to avoid opening the air outlet 11 .
  • the movement mode of the door body is not limited.
  • the door body may be sliding movement along the slide rail, or may be a compound movement including rotation, etc.
  • the housing assembly 1 is provided with a first plug-in portion 121 at the first edge 111.
  • the side of the door assembly 2 close to the first edge 111 is the first side 20.
  • the side 20 is provided with a second plug-in part 2121, and the second plug-in part 2121 is plug-fitted with the first plug-in part 121 along the closing movement direction of the door assembly 2. That is to say, when the door body assembly 2 moves in the direction from the second edge 112 to the first edge 111 to the closing position of closing the air outlet 11, the first plug-in part 121 and the second plug-in part 2121 can be inserted along the way. Cooperate.
  • the plug-fitting state at least part of the first plug-in part 121 is blocked at least part of the inside and/or outside of the second plug-in part 2121.
  • the “inside” mentioned herein refers to the side close to the center of the air conditioner 100, and the opposite direction is the “outside”, that is, the side away from the center of the air conditioner 100.
  • the first plug-in part 121 and the second plug-in part 2121 are in a plug-fit state.
  • the first plug-in part 121 At least part of the stop is at least part of the inside of the second plug-in part 2121, which can prevent the first side 20 from moving to the inside of the air outlet 11 and avoid the concave phenomenon.
  • At least part of the first plug-in part 121 is at least part of the stop on the inside of the air outlet 11
  • At least part of the outer side of the second plug-in part 2121 can prevent the first side 20 from moving to the outer side of the air outlet 11 and avoid the bulging phenomenon.
  • the first side 20 of the door assembly 2 can be adjusted using the insertion fit of the first plug-in part 121 and the second plug-in part 2121 .
  • the limiting function improves the matching stability of the housing component 1 and the door component 2 at the first edge 111, improves the stability and uniformity of the closing gap G between the door component 2 and the housing component 1, and improves Concave or convex problem at the first side 20.
  • the housing assembly 1 includes an air outlet frame 12 and a panel bracket 13.
  • the air outlet frame 12 defines an air outlet 11, and the panel bracket 13 is provided in the air outlet frame. 12 and located on the side of the first edge 111 of the air outlet 11 away from the second edge 112 .
  • the air outlet frame 12 and the panel bracket 13 cooperate at the first edge 111 to form a first plug-in part 121 .
  • one of the first plug-in part 121 and the second plug-in part 2121 is formed as a plug-in slot, and the other is formed as a plug-in pin.
  • the slot opening is open along the movement direction of the door body assembly 2 . Therefore, the structure of the first plug-in part 121 and the second plug-in part 2121 is simple, easy to process, and convenient for plug-in fitting, and the plug-in fitting action can be effectively and reliably realized.
  • the second plug-in part 2121 is formed as a plug-in pin, and the notch of the plug-in slot is along the opening movement direction of the door assembly 2 (that is, from the first edge 111 direction to the second edge 112 ); for another example, when the second plug-in part 2121 is formed as a plug-in slot, the first plug-in part 121 is formed as a plug-in pin, and the slot of the plug-in slot is formed along the door body assembly 2
  • the closing movement direction ie, the direction from the second edge 112 to the second edge 112 ) is open.
  • one of the first plug-in part 121 and the second plug-in part 2121 may include a plurality of first pins and a plurality of first holes, and the other may include a plurality of second pins and a plurality of second holes.
  • One pin is inserted into the second hole, the second pin is inserted into the first hole, and so on, which will not be described here.
  • the air outlet frame 12 defines an air outlet 11
  • the panel bracket 13 is disposed outside the air outlet frame 12 and located on the first edge 111 of the air outlet 11
  • a plug-in slot is formed between the outer end of the air outlet frame 12 at the first edge 111 and the outer end of the panel bracket 13 at the first edge 111.
  • the slot of the plug-in slot is It is open toward the direction of the door assembly 2 and the insertion slot serves as the first insertion portion 121 .
  • the panel bracket 13 defines the outer wall of the insertion slot.
  • the air outlet frame 12 defines the inner side wall of the insertion slot.
  • the door assembly 2 The first side 20 has a plug pin extending toward the first edge 111 .
  • the plug pin serves as a second plug portion 2121 and extends toward the direction of the first edge 111 .
  • the plug pin extends toward the first edge 111 .
  • the connector pin is inserted into the connector slot, the panel bracket 13 defines a portion of the outer wall of the connector slot to stop the connector pin from moving outward, and the air outlet frame 12 defines a portion of the inner wall of the connector slot to stop the connector from being connected. The pin moves inward.
  • At least one of the first plug-in parts 121 and the second plug-in parts 2121 is multiple and spaced apart along the length direction of the first edge 111 set up.
  • the coordination stability of the door assembly 2 and the housing assembly 1 at at least multiple positions along the entire length direction can be improved, and the stability and stability of the closing gap G between the door assembly 2 and the housing assembly 1 can be further improved. Uniformity.
  • first plug-in parts 121 there are multiple first plug-in parts 121 and are spaced apart along the length direction of the first edge 111 .
  • second plug-in part 2121 there is one second plug-in part 2121 and extends along the length direction of the first side 20 to connect with the plurality of third plug-in parts 2121 .
  • a plug-in part 121 is plug-fitted, wherein one of the first plug-in part 121 and the second plug-in part 2121 is formed as a plug-in groove, and the other is formed as a plug-in pin. Therefore, the processing of the second plug-in part 2121 can be simplified, and the ease of plug-in between the first plug-in part 121 and the second plug-in part 2121 can be improved.
  • first plug-in part 121 there are multiple second plug-in parts 2121 and are spaced apart along the length direction of the first side 20 .
  • first plug-in part 121 there is one first plug-in part 121 and extends along the length direction of the first edge 111 to connect with the plurality of third plug-in parts 2121 .
  • the two plug-in parts 2121 are plug-fitted, wherein one of the first plug-in part 121 and the second plug-in part 2121 is formed as a plug-in groove, and the other is formed as a plug-in pin. Therefore, the processing of the first plug-in part 121 can be simplified, and the ease of plug-in between the first plug-in part 121 and the second plug-in part 2121 can be improved.
  • first plug-in parts 121 there are multiple first plug-in parts 121 and they are spaced apart along the length direction of the first edge 111 .
  • second plug-in parts 2121 there are multiple second plug-in parts 2121 and they are spaced apart along the length direction of the first side 20 .
  • Each first plug-in part 121 is plug-fitted with a plurality of second plug-in parts 2121 in a one-to-one correspondence.
  • At least one of the first plug-in parts 121 and the second plug-in parts 2121 is multiple, and is provided corresponding to the central area 201 of the first side 20 and along the first side 20 are spaced apart in the length direction.
  • the minimum distance H between the central area 201 and either end of the length of the first side 20 satisfies, 0.2L ⁇ H ⁇ 0.5L, L is the first side 20 in length.
  • the driving assembly 3 is provided at both ends of the length of the door assembly 2, and the two ends of the length of the door assembly 2 have a better closing gap G, while the length of the door assembly 2 is
  • the closing gap G in the central area 201 between the ends can be improved through the cooperation of the first plug-in part 121 and the second plug-in part 2121, thereby improving the uniformity of the closing gap G of the door body assembly 2 as a whole.
  • the second plug-in portions 2121 are plug-in pins and are plural in number and are spaced apart from each other in the central region 201 of the first side 20 . Therefore, the structure is simple and processing is easy.
  • the air outlet frame 12 defines an air outlet 11
  • the panel bracket 13 is located outside the air outlet frame 12 and located at the air outlet 11
  • a plug-in slot is formed between the outer end of the air outlet frame 12 located at the first edge 111 and the outer end of the panel bracket 13 located at the first edge 111.
  • the slot of the plug-in slot is open toward the direction of the door assembly 2 and the plug-in slot serves as the first plug-in portion 121 .
  • the first side 20 of the door assembly 2 has slots spaced apart along the length direction of the first side 20 .
  • plug-in pins serve as the second plug-in portion 2121.
  • the plurality of plug-in pins can extend into the plug-in slot. Internally, the problem of bulging edges when the door assembly 2 is closed is improved.
  • the plurality of second plug-in parts 2121 may be located at non-length ends of the first side 20 , for example, they may be spaced apart along the length direction of the first side 20 , so that the door assembly 2 can be
  • the closed gap G is relatively uniform along the entire length direction.
  • the first edge 111 is also provided with a support portion 122 located inside the first plug portion 121
  • the first side 20 is also provided with a support portion 122 located inside the first plug portion 121.
  • the overlapping portion 2122 on the inner side of the two plug-in portions 2121 overlaps on the outside of the supporting portion 122 (that is, the side away from the center of the air conditioner 100) when the door assembly 2 closes the air outlet 11. Therefore, the problem of the first side 20 of the door assembly 2 being concave inward can be avoided, and the uniformity and stability of the closing gap G of the door assembly 2 can be improved.
  • the housing assembly 1 includes an air outlet frame 12.
  • the air outlet frame 12 defines an air outlet 11.
  • the air outlet frame 12 is formed with a step surface at the first edge 111.
  • the step surface is The length direction extends along the length direction of the first edge 111 , and the step surface defines the support portion 122 .
  • the step surface refers to a structure with a step-shaped cross section. Therefore, there is no need to separately provide several protrusions as the support portion 122. On the one hand, the processing difficulty of the support portion 122 can be reduced, and on the other hand, the support stability of the support portion 122 for the overlapping portion 2122 can be improved.
  • the door assembly 2 includes a door panel 21 formed as one piece.
  • the door panel 21 includes a panel part 211 and a side plate part 212 .
  • the side plate part 212 is connected to the panel part 211 close to the first On one side of the edge 111 , the outer end of the side plate portion 212 is connected to the panel portion 211 , and the inner end of the side plate portion 212 extends inward relative to the panel portion 211 and defines an overlapping portion 2122 . Therefore, the inner end of the side plate portion 212 of the door panel 21 is directly used to define the overlapping portion 2122, which can simplify the processing difficulty of the overlapping portion 2122, simplify the structure, and reduce the processing cost.
  • the housing assembly 1 includes an air outlet frame 12.
  • the air outlet frame 12 defines an air outlet 11.
  • the air outlet frame 12 is formed with a step surface at the first edge 111.
  • the step surface is The length direction extends along the length direction of the first edge 111, and the step surface defines the support portion 122.
  • the door body assembly 2 includes a door panel 21 formed as one piece.
  • the door panel 21 includes a panel portion 211 and a side panel portion 212.
  • the side panel portion 212 is connected to the side of the panel portion 211 close to the first edge 111 , the outer end of the side plate portion 212 is connected to the panel portion 211 , and the inner end of the side plate portion 212 extends inward relative to the panel portion 211 and defines an overlapping portion 2122 . Therefore, when the door assembly 2 moves to the closed position, the inner end of the side plate portion 212 of the door panel 21 can overlap the step surface of the air outlet frame 12 , thereby improving the possibility of inward movement of the door assembly 2 at the first edge 111 . Concave problem.
  • the outer end of the housing assembly 1 is formed with a first slope 131 at the first edge 111
  • the door assembly 2 is formed with a first slope 131 at the first side 20
  • a second slope 213 is formed at the outer end.
  • the first slope 131 and the second slope 213 face each other along the direction from the inside to the outside (ie, the direction away from the center of the air conditioner 100 ). Extends obliquely in the away direction.
  • the closing gap G between the door assembly 2 and the housing assembly 1 at the first edge 111 can be located on the first slope 131 and the second slope 213 are close to each other, thereby ensuring that the closing gap G is small, and improving problems such as collision and interference between the housing component 1 and the door component 2.
  • the housing assembly 1 when the housing assembly 1 includes an air outlet frame 12 and a panel bracket 13, the air outlet frame 12 defines an air outlet 11, and the panel bracket 13 is located outside the air outlet frame 12 and located at the air outlet 11
  • the first slope 131 may be formed at an outer end of the panel bracket 13 close to the first edge 111 and extend obliquely from the inside to the outside in a direction away from the air outlet 11 . Therefore, the first slope 131 is easy to process.
  • the side panel portion 212 is connected to the side of the panel portion 211 close to the first edge 111, and the outer end of the side panel portion 212 is in contact with the panel portion.
  • 211 is connected, and when the inner end of the side plate portion 212 extends inward relative to the panel portion 211, the second slope 213 can be located at the connection position between the panel portion 211 and the outer end of the side plate portion 212, and is directed from the inside to the outside toward the center of the panel portion 211 direction extends obliquely. Therefore, the second slope 213 is easy to process.
  • the door body assembly 2 may include a door panel 21 and a reinforcement 22 assembled inside the door panel 21 .
  • the length direction of the reinforcement 22 extends along the length direction of the door panel 21 . . Therefore, the reinforcing member 22 can be used to strengthen the door panel 21 and improve the problem of deformation of the door panel 21. Even if the door panel 21 is long, the original shape can be better maintained and the movement instability of the door panel 21 caused by the deformation can be improved. Problems such as smoothness and uneven closing gap G.
  • the cross section of the reinforcement 22 may be formed into an axially symmetrical shape. That is to say, the reinforcement 22 may be disposed axially symmetrically about its own center plane S, which center plane S refers to It is a plane located at the width center of the reinforcement 22 and extending along the length direction of the reinforcement 22 .
  • center plane S refers to It is a plane located at the width center of the reinforcement 22 and extending along the length direction of the reinforcement 22 .
  • the reinforcement 22 can have versatile properties.
  • both the left and right door assemblies 2 may include door bodies and reinforcements 22. Since the reinforcements 22 have an axially symmetrical structure, the reinforcements 22 of the left and right door assemblies 2 can be exactly the same, realizing the common use of the reinforcements 22. The matching effect can be processed uniformly, reducing production costs. There is no need to distinguish left and right during assembly, which improves assembly efficiency. For example, assembly efficiency can be increased by 50%.
  • the reinforcing member 22 is a hollow extruded part. Therefore, the structural strength of the reinforcing member 22 is better, and the processing is easy and the cost is low. Moreover, the straightness of the extruded reinforcement 22 is better. After being assembled on the door panel 21, the shape of the door panel 21 can be better corrected to ensure a uniform closing gap G. It should be noted that the material of the reinforcing member 22 is not limited. For example, it can be made of metal such as aluminum, which has lower cost and better reinforcing effect.
  • the cross section of the reinforcing member 22 can be formed into an axially symmetrical shape, and the reinforcing member 22 can be a hollow extruded molded piece. Therefore, the cross section of the reinforcing member 22 can be made very small through the extrusion molding process. It can be easily processed into an axially symmetrical shape, thereby ensuring the left-right universal performance of the reinforcement 22 and making assembly more efficient.
  • a stop structure 23 is provided on the inside of the door panel 21 , and the stop structures 23 are respectively stopped on both sides of the length of the reinforcement 22 .
  • a limiter 24 , a stopper 25 and a buckle 26 are provided on the inside of the door panel 21 , and both sides of the width of the reinforcement 22 are the first side respectively. 221 and the second side 222.
  • the width direction of the reinforcement 22 is consistent with the width direction of the door body assembly 2.
  • the stopper 24 is located on the first side 221 and defines a slot open toward the second side 222 with the door panel 21 .
  • the edge of the first side 221 of the reinforcement 22 is configured to be inserted into the slot.
  • the stopper 25 and the buckle 26 are both disposed on the second side 222 , the stopper 25 stops on the second side 222 of the reinforcement 22 , and the buckle 26 stops on the inside of the reinforcement 22 .
  • the edge of the first side 221 of the reinforcement 22 can be inserted into the slot, and then the second side 222 of the door panel 21 is inserted between the buckle 26 and the door panel 21 and stopped by the stopper. 25 close to the first side 221, so that the reinforcement 22 can be assembled simply and quickly.
  • the limiter 24 and the stopper 25 can be used to limit the movement of the reinforcement 22 relative to the door panel 21 along its own width direction, and at the same time, the buckle 26, the limiter 24 and the door panel 21 can be used to jointly limit the thickness of the reinforcement 22 along the door panel 21. The direction moves relative to the door panel 21, thereby improving the installation stability of the reinforcement 22.
  • the stopper 25 and the buckle 26 at the same time, there is no need to use the buckle 26 for width side stop. On the one hand, it ensures that the buckle 26 is easy to deform and facilitates the installation of the reinforcement 22. On the other hand, the stopper can be used Part 25 ensures the reliability of position limiting along the width direction. Moreover, screw fixing is reduced, making assembly more convenient and efficient.
  • the side panel portion 212 is connected to a side of the panel portion 211 close to the first edge 111
  • the outer end of the side panel portion 212 is connected to the panel portion 211
  • the side panel portion 212 is connected to the panel portion 211.
  • the stopper structure 23, the limiter 24, the stopper 25, and the buckle 26 can be integrally formed on the panel portion 211, thereby simplifying the structure and reducing costs. , improve the functional reliability of the stop structure 23.
  • the application is not limited to this. At least one of the stopper structure 23, the limiter 24, the stopper 25, and the buckle 26 can also be processed separately and assembled to the door panel 21, etc., which will not be described again here.
  • the numbers of the limiting members 24 , the stoppers 25 and the buckling members 26 are not limited respectively.
  • they can be multiple and spaced apart along the length direction of the reinforcing member 22 , thereby improving the stability of the reinforcing member 22 .
  • the limit reliability and stability when there are multiple stoppers 25 and snappers 26 , they can be spaced and staggered, thereby improving the reliability and stability of limiting the reinforcing member 22 from multiple dimensions.
  • the inner surface of the door panel 21 is provided with six buckles 26 and three stoppers 25, and two buckles are provided between two adjacent stoppers 25. 26.
  • a buckle 26 is provided on both sides of the two stoppers 25 on both sides, and so on.
  • the air conditioner 100 may include: a driving assembly 3 , which is provided in the housing assembly 1 .
  • the driving assembly 3 is connected to the door assembly through a connecting piece 31 2 are connected to drive the door body assembly 2 to move. Therefore, there is no need to manually drive the switch of the door assembly 2, thus eliminating manual operation.
  • the air conditioner 100 may have two air outlets 11 spaced apart in the left and right directions and extending vertically.
  • the air conditioner 100 includes two air outlets 11 provided corresponding to the two air outlets 11 .
  • Door assembly 2 with reference to Figures 15-17, the structural shape of the connecting piece 31 connected to each door assembly 2 is the same, so as to achieve universal installation of the connecting piece 31 relative to each door assembly 2.
  • the structural shape of the connecting piece 31 connecting the door assembly 2 on the left is exactly the same as the structural shape of the connecting piece 31 connecting the door assembly 2 on the right, so that the universal effect of the connecting piece 31 can be achieved and unified Processing, reducing production costs, no need to distinguish left and right during assembly, and improving assembly efficiency, for example, assembly efficiency can be increased by 50%.
  • the connecting piece 31 is designed to be a universal shape, it can avoid the problem of confusion and misuse during the assembly process, making the assembly of the driving assembly 3 and the door body assembly 2 simpler and more efficient.
  • the two ends of the length of the door body assembly 2 are respectively provided with driving assemblies 3.
  • the connector 31 has a socket 311.
  • the door body assembly 2 Both ends of the inner length are respectively provided with connecting portions 27 corresponding to each connecting piece 31.
  • the connecting portions 27 each have a latch 271 extending along the length direction of the door assembly 2, and the extending direction of each latch 271 is the same.
  • the door body assembly 2 can be connected to the connectors 31 on the two drive assemblies 3 by moving the door body assembly 2 along the length direction of the door body, making assembly quick and easy.
  • the length direction of the door assembly 2 is in the up and down direction, and each latch 271 extends downward. Therefore, by pushing the door assembly 2 downward, each latch 271 can be inserted downward into the corresponding socket 311 on the connector 31. Therefore, not only can it have the effect of plugging and limiting, but the connecting piece 31 can also have the effect of supporting the connecting part 27 and thereby supporting the door assembly 2 .
  • one of the two connecting pieces 31 located at both ends of the length of the door assembly 2 is tightly connected to the corresponding connecting portion 27 through screws extending along the length direction of the door assembly 2 . Therefore, the steps of inserting the jack 311 and the plug 271 and screwing do not need to change the operating direction, thereby improving the assembly efficiency. In addition, through screw connection, the structure can be simplified and the cost can be reduced.
  • the connecting piece 31 may have a connecting hole 312 (for example, as shown in FIG. 16 ), the connecting part 27 may have a screw seat 272 (for example, as shown in FIGS. 18 and 19 ), and the screw passes through the connecting hole 312 and is then threadedly connected to the screw. Seat 272, allowing quick connection via screws.
  • the connecting piece 31 of the lower part of the door assembly 2 and the corresponding connecting part 27 can be fastened with screws, thereby avoiding the possibility of damage caused by the door assembly. 2
  • the upper connecting piece 31 of the door assembly 2 and the corresponding connecting part 27 can be fastened with screws, thereby avoiding the door assembly from being Related problems caused by upward elongation and deformation of component 2.
  • the latch 271 is designed with a guide slope, thereby improving the mating efficiency of the latch 271 and the jack 311, reducing the difficulty of assembly, and making the assembly more convenient.
  • the inner side of the door body assembly 2 has a first limiting structure 281 and a second limiting structure 282 .
  • the first limiting structure 281 is limited to the connecting member 31 along the width direction of the door body assembly 2 .
  • the second limiting structure 282 is provided on the outside of the plug 271 to block the outer wall of the connecting member 31 .
  • the door body assembly 2 is not only connected to the connecting member 31 through the latch 271 and screws, but also limits the connecting member 31 through the first limiting structure 281 and the second limiting structure 282, thereby effectively improving the door performance.
  • the problem of shaking of the door body assembly 2 is eliminated, and the stability and low noise of the movement of the door body assembly 2 are improved.
  • the specific structure of the driving assembly 3 is not limited.
  • it may also include a driving box cover 32, a driving box base 33, a driving motor 34, a driving mechanism 35 (such as a gear rack assembly), etc.
  • the drive box cover 32 and the drive box seat 33 form an installation box.
  • An installation space is defined in the installation box.
  • the drive mechanism 35 can be located in the installation space.
  • the drive motor 34 can be located outside the installation space and connected to the drive mechanism 35 to drive the drive mechanism. 35 perform actions.
  • the connector 31 is inserted through the installation box.
  • an escape opening is formed at the splicing position between the installation box cover and the installation box base.
  • the connector 31 can be inserted through the escape opening to connect the driving mechanism 35 inside the installation box and the door outside the installation box.
  • Body component 2 is formed at the splicing position between the installation box cover and the installation box base.
  • the air conditioner 100 includes two door assemblies 2
  • two driving mechanisms 35 can be provided in the installation box, and each driving mechanism 35 is connected to a driving motor 34.
  • the two driving mechanisms 35 can also be arranged symmetrically to connect the ends on the same side of the length direction of the two door body assemblies 2 respectively, thereby improving the compactness of the structure and simplifying production.
  • the air conditioner 100 is an air conditioning cabinet and includes an upper part and a lower part.
  • the upper part includes a heat exchange module 41 and a ventilation module 42, and the lower part It includes a fresh air module 5.
  • the upper part has two left and right air outlets 11 for sending out the air flow exchanged by the heat exchange module 41.
  • the door assembly 2 is provided on the upper part and has two left and right air outlets to correspond to the opening and closing of the two air outlets 11.
  • the upper part can also have two air guide assemblies 6, the two air guide assemblies 6 are respectively provided corresponding to the two air outlets 11, and when the door body assembly 2 is in the closed position, the air guide assembly 6 is located on the side of the door body assembly 2
  • the upper part may also have electronic control components 7 and so on inside, which will not be described in detail here.
  • the housing assembly 1 may also include a rear box 14 arranged corresponding to the upper and lower parts, a top cover 15 located at the top of the whole machine, a base 16 located at the bottom of the whole machine, The air outlet frame 12 and panel bracket 13 located at the upper part, the lower frame 17 located at the lower part, the upper panel 18 located at the upper part, the lower panel 19 located at the lower part, etc. will not be described again here.
  • the reinforcement 22 of the door assembly 2 adopts a hollow aluminum profile structure, and the left and right structures of the aluminum bars are symmetrical, ensuring that both the left and right door assemblies 2 can be assembled.
  • the assembly process Much simpler.
  • the connecting piece 31 of the driving assembly 3 also adopts a left and right universal structure, making the assembly of the driving assembly 3 simpler.
  • a first limiting structure 281 and a second limiting structure 282 are designed to cooperate with the connector 31 to ensure that the door body assembly 2 does not shake after assembly.
  • the aluminum strip is assembled into the door body assembly 2, and the limiter 24, the stopper 25 and the buckle 26 are used to fix the limiter.
  • steps are designed on the air outlet frame 12 as the support portion 122 so that the door body assembly 2 does not recess inwards.
  • two plug-in pins are designed at the middle position in the length of the door body assembly 2. After the door body assembly 2 moves to the closed position, the plug-in pins can extend into the air outlet frame 12 and In the insertion slot of the panel bracket 13, ensure that the closing gap G of the door assembly 2 is uniform. In short, the problem of uneven closing gap G of the door assembly 2 can be effectively solved, and the problem of incompatible materials of the left and right door assemblies 2 can be simultaneously solved.
  • the structures of the reinforcing bars of the door assembly 2 and the connectors 31 of the driving assembly 3 are not compatible with each other, making assembly errors prone and the assembly efficiency low.
  • the reinforcing strip of the door body assembly 2 is designed as a single piece of sheet metal, and the material cost is too high. Since the length of the door body assembly 2 is too long and the closing gap G is uneven, there is a problem that the two ends of the length are completely closed while the middle position of the two ends of the length is convex. Moreover, the overall assembly efficiency of the door body assembly 2 is not high, and the positioning is incomplete, causing the door body assembly 2 to easily shake after assembly. This application effectively solves the above technical problems.
  • first and second are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of indicated technical features. Therefore, features defined as “first” and “second” may explicitly or implicitly include one or more of these features.
  • plurality means two or more than two, unless otherwise explicitly and specifically limited.
  • connection In this application, unless otherwise clearly stated and limited, the terms “installation”, “connection”, “connection”, “fixing” and other terms should be understood in a broad sense. For example, it can be a fixed connection or a detachable connection. , or integrated into one; it can be directly connected or indirectly connected through an intermediate medium. It can be the internal connection between two elements or the interaction between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.
  • a first feature being “on” or “below” a second feature may mean that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediary. touch.
  • the terms “above”, “above” and “above” the first feature is above the second feature may mean that the first feature is directly above or diagonally above the second feature, or simply means that the first feature is higher in level than the second feature.
  • "Below”, “below” and “beneath” the first feature to the second feature may mean that the first feature is directly below or diagonally below the second feature, or simply means that the first feature has a smaller horizontal height than the second feature.
  • references to the terms “one embodiment,” “some embodiments,” “an example,” “specific examples,” or “some examples” or the like means that specific features are described in connection with the embodiment or example. , structures, materials or features are included in at least one embodiment or example of the present application. In this specification, the schematic expressions of the above terms are not necessarily directed to the same embodiment or example. Furthermore, the specific features, structures, materials or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, those skilled in the art may combine and combine different embodiments or examples and features of different embodiments or examples described in this specification unless they are inconsistent with each other.

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

Abstract

一种空调器,包括:壳体组件和门体组件,壳体组件上具有出风口,出风口包括相对设置的第一边缘和第二边缘,壳体组件在第一边缘处设有第一插接部,门体组件相对壳体组件可运动,且被配置为从第二边缘向第一边缘的方向运动以关闭出风口,门体组件的靠近第一边缘的一侧为第一侧边,第一侧边上具有第二插接部,第二插接部与第一插接部沿门体组件的关闭运动方向插接配合,且在插接配合状态下第一插接部的至少部分止挡在第二插接部的至少部分的内侧和/或外侧。

Description

空调器
相关申请的交叉引用
本申请基于申请号为202210743530.X、申请日为2022-06-27的中国专利申请以及申请号为202221638060.2、申请日为2022-06-27的中国专利申请提出,并要求上述中国专利申请的优先权,上述中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及空调技术领域,尤其是涉及一种空调器。
背景技术
相关技术中的空调器,通过出风口向室内环境吹送低温或高温气流,以调节室内环境温度。在空调器关机时,通常采用开关门遮挡关闭出风口,在空调器开机时,开关门打开出风口。然而,开关门在关闭状态下,与空调器的壳体之间的间隙难以控制,容易发生内凹或外凸等问题。
发明内容
本申请旨在至少解决现有技术中存在的技术问题之一。为此,本申请在于提出一种空调器,所述空调器可以较好地控制门体组件的闭合间隙,改善第一侧边处的内凹或外凸问题。
根据本申请实施例的空调器,包括:壳体组件,所述壳体组件上具有出风口,所述出风口包括相对设置的第一边缘和第二边缘,所述壳体组件在所述第一边缘处设有第一插接部;门体组件,所述门体组件相对所述壳体组件可运动,且被配置为从所述第二边缘向所述第一边缘的方向运动以关闭所述出风口,所述门体组件的靠近所述第一边缘的一侧为第一侧边,所述第一侧边上具有第二插接部,所述第二插接部与所述第一插接部沿所述门体组件的关闭运动方向插接配合,且在插接配合状态下所述第一插接部的至少部分止挡在所述第二插接部的至少部分的内侧和/或外侧。根据本申请的实施例的空调器,可以较好地控制门体组件的闭合间隙,改善第一侧边处的内凹或外凸问题。
在一些实施例中,所述第一插接部与所述第二插接部中的至少一个为多个,且对应所述第一侧边的中央区域设置并沿所述第一侧边的长度方向间隔开,在所述第一侧边的长度方向上,所述中央区域与所述第一侧边的长度任一端的最小间距H满足,0.2L≤H≤0.5L,L为所述第一侧边的长度。
在一些实施例中,所述壳体组件包括出风框和面板支架,所述出风框限定出所述出风口,所述面板支架设于所述出风框的外侧,且位于所述出风口的所述第一边缘的远离所述第二边缘的一侧,所述出风框与所述面板支架在所述第一边缘处配合形成所述第一插接部。
在一些实施例中,所述第一插接部和所述第二插接部中的一个形成为插接槽、另一个形成为插接销,所述插接槽的槽口沿所述门体组件的运动方向敞开。
在一些实施例中,所述第一边缘处还设有位于所述第一插接部的内侧的支撑部,所述第一侧边上还具有位于所述第二插接部的内侧的搭接部,在所述门体组件关闭所述出风口时,所述搭接部搭接在所述支撑部的外侧。
在一些实施例中,所述壳体组件包括出风框,所述出风框限定出所述出风口,所述出风框在所述第一边缘处形成有沿所述第一边缘延伸的台阶面,所述台阶面限定出所述支撑部;和/或,所述门体组件包括形成为一体件的门板,所述门板包括面板部和侧板部,所述侧板部连接在所述面板部的靠近所述第一边缘的一侧,所述侧板部的外端与所述面板部相连,所述侧板部的内端相对所述面板部向内延伸且限定出所述搭接部。
在一些实施例中,所述壳体组件在所述第一边缘处的外端形成有第一斜面,所述门体组件在所述第一侧边处的外端形成有第二斜面,在所述门体组件关闭所述出风口时,所述第 一斜面与所述第二斜面沿着从内到外的方向,朝向彼此远离的方向倾斜延伸。
在一些实施例中,所述门体组件包括门板和装配于所述门板内侧的加强件,所述加强件的长度方向沿所述门板的长度方向延伸。
在一些实施例中,所述加强件的横截面形成为轴对称的形状;和/或,所述加强件为空心的挤出成型件。
在一些实施例中,所述门板的内侧设有止挡结构,所述止挡结构分别止挡在所述加强件的长度两侧;和/或,所述门板的内侧设有限位件、止挡件和卡扣件,所述加强件的宽度两侧分别为第一侧和第二侧,所述限位件位于所述第一侧,且与所述门板之间限定出朝向所述第二侧敞开的插槽,所述加强件的所述第一侧的边沿设于插配于所述插槽,所述止挡件与所述卡扣件均设于所述第二侧,所述止挡件止挡于所述加强件的所述第二侧,所述卡扣件止挡于所述加强件的内侧。
在一些实施例中,所述空调器还包括:驱动组件,所述驱动组件设于所述壳体组件,所述驱动组件通过连接件与所述门体组件相连,以用于驱动所述门体组件运动。
在一些实施例中,所述空调器上具有沿左右方向间隔开且沿竖向延伸的两个所述出风口,所述空调器包括对应两个所述出风口设置的两个所述门体组件,与每个所述门体组件相连的所述连接件的结构形状均相同,以实现所述连接件相对各所述门体组件的通用安装。
在一些实施例中,所述门体组件的长度两端分别对应设有所述驱动组件,所述连接件上具有插孔,所述门体组件的内侧的长度两端对应各所述连接件分别设有连接部,所述连接部上均具有沿所述门体组件的长度方向延伸的插销,各所述插销的延伸方向均相同。
在一些实施例中,分置于所述门体组件的长度两端的两个所述连接件中的一个,通过沿所述门体组件的长度方向延伸的螺钉与对应的所述连接部紧固连接。
在一些实施例中,所述门体组件的内侧具有第一限位结构和第二限位结构,所述第一限位结构沿所述门体组件的宽度方向限位在所述连接件的两侧,所述第二限位结构设于所述插销的外侧以止挡所述连接件的外壁。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
图1是根据本申请一个实施例的空调器的主视图;
图2是根据本申请一个实施例的空调器的局部爆炸图;
图3是根据本申请一个实施例的空调器的剖视图;
图4是图3中圈示的A部的放大图;
图5是图3中圈示的B部的放大图;
图6是根据本申请一个实施例的空调器的门体组件处于关闭位置的状态图;
图7是图6中圈示的C部的放大图;
图8是图6中圈示的D部的放大图;
图9是根据本申请一个实施例的门体组件的剖视图;
图10是图9中圈示的E部的放大图;
图11是根据本申请一个实施例的门板的立体图;
图12是图11中圈示的F部的放大图;
图13是图11中圈示的H部的放大图;
图14是图11中圈示的J部的放大图;
图15是根据本申请一个实施例的驱动组件的爆炸图;
图16是图15中所示的连接件的立体图;
图17是根据本申请一个实施例的驱动组件与门体组件的爆炸图;
图18是图17中圈示的K部的放大图;
图19是图17中圈示的L部的放大图;
图20是根据本申请一个实施例的连接件与门体组件的装配图;
图21是图20中圈示的M部的放大图;
图22是图20中圈示的N部的放大图;
图23是根据本申请一个实施例的空调器的爆炸图。
附图标记:
空调器100;闭合间隙G;中心平面S;
壳体组件1;出风口11;第一边缘111;第二边缘112;
出风框12;第一插接部121;支撑部122;
面板支架13;第一斜面131;后箱体14;顶盖15;
底座16;下面框17;上面板18;下面板19;
门体组件2;第一侧边20;中央区域201;
门板21;面板部211;侧板部212;
第二插接部2121;搭接部2122;第二斜面213;
加强件22;第一侧221;第二侧222;
止挡结构23;限位件24;止挡件25;卡扣件26;
连接部27;插销271;螺钉座272;
第一限位结构281;第二限位结构282;
驱动组件3;连接件31;插孔311;连接孔312;
驱动盒盖32;驱动盒座33;驱动电机34;驱动机构35;
换热模块41;通风模块42;新风模块5;导风组件6;电控组件7;
具体实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本申请,而不能理解为对本申请的限制。
下文的公开提供了许多不同的实施例或例子用来实现本申请的不同结构。为了简化本申请的公开,下文中对特定例子的部件和设置进行描述。当然,它们仅仅为示例,并且目的不在于限制本申请。此外,本申请可以在不同例子中重复参考数字和/或字母。这种重复是为了简化和清楚的目的,其本身不指示所讨论各种实施例和/或设置之间的关系。此外,本申请提供了的各种特定的工艺和材料的例子,但是本领域普通技术人员可以意识到其他工艺的可应用于性和/或其他材料的使用。
下面,参照附图,描述根据本申请实施例的空调器100。
如图1和图2所示,空调器100包括:壳体组件1和门体组件2,壳体组件1上具有出风口11,出风口11包括相对设置的第一边缘111和第二边缘112,门体组件2相对壳体组件1可运动,且被配置为通过从第二边缘112向第一边缘111的方向运动,以遮挡关闭出风口11。
此外,在一些示例中,门体组件2可以通过从第一边缘111向第二边缘112方向的运动,以避让打开出风口11。需要说明的是,门体的运动方式不限,例如,门体可以是沿滑轨的滑移运动,或者可以是包含转动的复合运动等等。
如图3和图4所示,壳体组件1在第一边缘111处设有第一插接部121,门体组件2的靠近第一边缘111的一侧为第一侧边20,第一侧边20上具有第二插接部2121,第二插接部2121与第一插接部121沿门体组件2的关闭运动方向插接配合。也就是说,在门体组件2沿着从第二边缘112向第一边缘111的方向运动至关闭出风口11的关闭位置时,第一插接部121与第二插接部2121可以顺势插接配合。
而且,在插接配合状态下第一插接部121的至少部分止挡在第二插接部2121的至少部 分的内侧和/或外侧。需要说明的是,本文所述的“内侧”是靠近空调器100的中心的一侧,相反的方向则为“外侧”,即远离空调器100的中心的一侧。
具体而言,当门体组件2运动至关闭出风口11的位置时,第一插接部121与第二插接部2121呈现插接配合的状态,此时,如果第一插接部121的至少部分止挡在第二插接部2121的至少部分的内侧,可以防止第一侧边20向出风口11的内侧移动,避免内凹现象,如果第一插接部121的至少部分止挡在第二插接部2121的至少部分的外侧,可以防止第一侧边20向出风口11的外侧移动,避免外凸现象。
由此,当门体组件2运动至关闭出风口11的位置时,可以利用第一插接部121与第二插接部2121的插接配合,对门体组件2的第一侧边20位置起到限位作用,提升壳体组件1与门体组件2在第一边缘111处的配合稳定性,改善门体组件2与壳体组件1之间的闭合间隙G的稳定性与均匀性,改善第一侧边20处的内凹或外凸问题。
在本申请的一些实施例中,如图3和图4所示,壳体组件1包括出风框12和面板支架13,出风框12限定出出风口11,面板支架13设于出风框12的外侧,且位于出风口11的第一边缘111的远离第二边缘112的一侧,出风框12与面板支架13在第一边缘111处配合形成第一插接部121。
由此,无需单独在出风框12上加工第一插接部121,也无需单独在面板支架13上加工第一插接部121,也无需在出风框12与面板支架13之间设置额外的部件形成第一插接部121,从而可以降低出风框12和面板支架13的加工难度,提高壳体组件1的结构紧凑性。
在本申请的一些实施例中,如图3和图4所示,第一插接部121和第二插接部2121中的一个形成为插接槽、另一个形成为插接销,插接槽的槽口沿门体组件2的运动方向敞开。由此,第一插接部121和第二插接部2121的结构简单,便于加工,便于插接配合,插接配合的动作能够有效且可靠实现。
例如,当第一插接部121形成为插接槽时,第二插接部2121形成为插接销,插接槽的槽口沿门体组件2的打开运动方向(即从第一边缘111到第二边缘112的方向)敞开;又例如,当第二插接部2121形成为插接槽时,第一插接部121形成为插接销,插接槽的槽口沿门体组件2的关闭运动方向(即从第二边缘112到第二边缘112的方向)敞开。
当然,本申请不限于此,例如第一插接部121和第二插接部2121其中一个可以包括若干第一销和若干第一孔,另一个包括若干第二销和若干第二孔,第一销插入第二孔,第二销插入第一孔,等等,这里不作赘述。
例如,当壳体组件1包括出风框12和面板支架13,出风框12限定出出风口11,面板支架13设于出风框12的外侧,且位于出风口11的第一边缘111的远离第二边缘112的一侧,出风框12的位于第一边缘111位置的外端与面板支架13位于第一边缘111位置的外端之间形成有插接槽,插接槽的槽口朝向门体组件2的方向敞开且插接槽作为第一插接部121,面板支架13限定出插接槽的外侧壁,出风框12限定出插接槽的内侧壁,门体组件2的第一侧边20上具有朝向第一边缘111延伸的插接销,插接销作为第二插接部2121且朝向第一边缘111的方向延伸,当门体组件2运动到关闭位置时,插接销插配于插接槽内,面板支架13限定出插接槽的外侧壁的部分止挡插接销向外侧运动,出风框12限定出插接槽的内侧壁的部分止挡插接销向内侧运动。
在本申请的一些实施例中,如图3和图4所示,第一插接部121与第二插接部2121中的至少一个为多个,且沿第一边缘111的长度方向间隔开设置。由此,可以提升门体组件2在整个长度方向上的至少多个位置与壳体组件1的配合稳定性,进一步改善门体组件2与壳体组件1之间的闭合间隙G的稳定性与均匀性。
例如,第一插接部121为多个,且沿第一边缘111的长度方向间隔开设置,第二插接部2121为一个且沿第一侧边20的长度方向延伸,以与多个第一插接部121均插接配合,其中,第一插接部121和第二插接部2121中的一个形成为插接槽、另一个形成为插接销。由此,可以简化第二插接部2121的加工,且提升第一插接部121与第二插接部2121的易插接性。
例如,第二插接部2121为多个,且沿第一侧边20的长度方向间隔开设置,第一插接部121为一个且沿第一边缘111的长度方向延伸,以与多个第二插接部2121均插接配合,其中,第一插接部121和第二插接部2121中的一个形成为插接槽、另一个形成为插接销。由此,可以简化第一插接部121的加工,且提升第一插接部121与第二插接部2121的易插接性。
例如,第一插接部121为多个,且沿第一边缘111的长度方向间隔开设置,第二插接部2121为多个,且沿第一侧边20的长度方向间隔开设置,多个第一插接部121与多个第二插接部2121一一对应插接配合。
可选地,如图2所示,第一插接部121与第二插接部2121中的至少一个为多个,且对应第一侧边20的中央区域201设置并沿第一侧边20的长度方向间隔开,在第一侧边20的长度方向上,中央区域201与第一侧边20的长度任一端的最小间距H满足,0.2L≤H≤0.5L,L为第一侧边20的长度。由此,当门体组件2的长度较长,驱动组件3设于门体组件2的长度两端,门体组件2的长度两端具有较好的闭合间隙G,而门体组件2长度两端之间的中央区域201的闭合间隙G可以通过第一插接部121和第二插接部2121的配合改善,提升门体组件2整体的闭合间隙G均匀性。例如,第二插接部2121为插接销且为多个并间隔开地设于第一侧边20的中央区域201,由此,结构简单,便于加工。
例如结合图2和图4,当壳体组件1包括出风框12和面板支架13,出风框12限定出出风口11,面板支架13设于出风框12的外侧,且位于出风口11的第一边缘111的远离第二边缘112的一侧,出风框12的位于第一边缘111位置的外端与面板支架13位于第一边缘111位置的外端之间形成有插接槽,插接槽的槽口朝向门体组件2的方向敞开且插接槽作为第一插接部121,门体组件2的第一侧边20具有沿第一侧边20的长度方向间隔开设置的多个(例如两个、三个、四个)插接销,插接销作为第二插接部2121,当门体组件2运动至关闭位置时,多个插接销能够伸入插接槽内,改善门体组件2关闭时边缘外凸的问题。
可选地,多个第二插接部2121可以位于第一侧边20的非长度两端的位置,例如可以大体沿第一侧边20的长度方向间隔开设置,从而可以使得门体组件2在整个长度方向上的闭合间隙G均较为均匀。
在本申请的一些实施例中,如图4和图5所示,第一边缘111处还设有位于第一插接部121的内侧的支撑部122,第一侧边20上还具有位于第二插接部2121的内侧的搭接部2122,在门体组件2关闭出风口11时,搭接部2122搭接在支撑部122的外侧(即远离空调器100中心的一侧)。由此,可以避免门体组件2的第一侧边20向内凹的问题,提高门体组件2的闭合间隙G的均匀性和稳定性。
例如图4和图5所示的示例中,壳体组件1包括出风框12,出风框12限定出出风口11,出风框12在第一边缘111处形成有台阶面,台阶面的长度方向沿第一边缘111的长度方向延伸,台阶面限定出支撑部122。需要说明的是,台阶面指的是:横截面为台阶形的结构。由此,无需单独设置若干凸起作为支撑部122,一方面可以降低支撑部122的加工难度,另一方面可以提高支撑部122对于搭接部2122的支撑稳定性。
例如图4和图5所示的示例中,门体组件2包括形成为一体件的门板21,门板21包括面板部211和侧板部212,侧板部212连接在面板部211的靠近第一边缘111的一侧,侧板部212的外端与面板部211相连,侧板部212的内端相对面板部211向内延伸且限定出搭接部2122。由此,直接利用门板21的侧板部212的内端限定出搭接部2122,可以简化搭接部2122的加工难度,简化结构,降低加工成本。
可选地,图4和图5所示,壳体组件1包括出风框12,出风框12限定出出风口11,出风框12在第一边缘111处形成有台阶面,台阶面的长度方向沿第一边缘111的长度方向延伸,台阶面限定出支撑部122,同时,门体组件2包括形成为一体件的门板21,门板21包括面板部211和侧板部212,侧板部212连接在面板部211的靠近第一边缘111的一侧,侧板部212的外端与面板部211相连,侧板部212的内端相对面板部211向内延伸且限定出搭 接部2122。由此,当门体组件2运动至关闭位置时,门板21的侧板部212的内端可以搭接在出风框12的台阶面上,改善门体组件2在第一边缘111处发生内凹的问题。
在本申请的一些实施例中,如图4和图5所示,壳体组件1在第一边缘111处的外端形成有第一斜面131,门体组件2在第一侧边20处的外端形成有第二斜面213,在门体组件2位于关闭位置时,第一斜面131与第二斜面213沿着从内到外的方向(即远离空调器100的中心的方向),朝向彼此远离的方向倾斜延伸。由此,当门体组件2位于关闭位置时,结合图6-图8,门体组件2与壳体组件1在第一边缘111位置处的闭合间隙G可以位于第一斜面131和第二斜面213彼此靠近的内端位置,从而保证闭合间隙G较小,且改善了壳体组件1与门体组件2的磕碰干涉等问题。
例如结合图4和图5,当壳体组件1包括出风框12和面板支架13,出风框12限定出出风口11,面板支架13设于出风框12的外侧,且位于出风口11的第一边缘111的远离第二边缘112的一侧,第一斜面131可以形成在面板支架13的靠近第一边缘111的外端位置,且自内向外朝向远离出风口11的方向倾斜延伸。由此,第一斜面131便于加工。
例如结合图4和图5,当门板21包括面板部211和侧板部212,侧板部212连接在面板部211的靠近第一边缘111的一侧,侧板部212的外端与面板部211相连,侧板部212的内端相对面板部211向内延伸时,第二斜面213可以位于面板部211与侧板部212的外端的衔接位置,且自内向外朝向靠近面板部211的中心的方向倾斜延伸。由此,第二斜面213便于加工。
在本申请的一些实施例中,如图9-图12所示,门体组件2可以包括门板21和装配于门板21内侧的加强件22,加强件22的长度方向沿门板21的长度方向延伸。由此,可以利用加强件22起到对门板21的加强作用,改善门板21变形的问题,即便门板21的长度较长,也可以较好地维持原本形状,改善门板21由于变形引发的运动不顺畅,闭合间隙G不均匀等问题。
在一些可选示例中,如图10所示,加强件22的横截面可以形成为轴对称的形状,也就是说,加强件22可以关于自身中心平面S轴对称设置,该中心平面S指的是位于加强件22的宽度中心位置且沿加强件22的长度方向延伸的平面。由此,加强件22可以具有通用性能。
例如在图1所示的示例中,当空调器100上具有沿左右方向间隔开且沿竖向延伸的两个出风口11,空调器100包括对应两个出风口11设置的两个门体组件2时,左右两个门体组件2均可以包括门体和加强件22,由于加强件22为轴对称结构,从而左右两个门体组件2的加强件22可以一模一样,实现加强件22的通配效果,可以统一加工,降低生产成本,装配时无需区分左右,提高了装配效率,例如装配效率可提高50%。
在一些可选示例中,如图10所示,加强件22为空心的挤出成型件。由此,加强件22的结构强度更好,且加工方便,成本低。并且,挤出成型的加强件22的直线度更好,装配于门板21后,可以更好地对门板21的形状进行校正,保证闭合间隙G均匀。需要说明的是,加强件22的材质不限,例如可以为铝等金属材质,成本较低且加强效果较好。
可选地,加强件22的横截面可以形成为轴对称的形状,且加强件22为空心的挤出成型件,由此,可以通过挤出成型的工艺,使得加强件22的横截面可以很容易地加工为轴对称的形状,从而确保加强件22的左右通用性能,装配效率更高。
在本申请的一些实施例中,如图11和图12所示,门板21的内侧设有止挡结构23,止挡结构23分别止挡在加强件22的长度两侧。由此,可以改善加强件22沿自身长度方向相对门板21窜动的问题,提升加强件22的安装稳定性。
在本申请的一些实施例中,如图11-图14所示,门板21的内侧设有限位件24、止挡件25和卡扣件26,加强件22的宽度两侧分别为第一侧221和第二侧222,值得说明的是,加强件22的宽度方向与门体组件2的宽度方向一致。限位件24位于第一侧221,且与门板21之间限定出朝向第二侧222敞开的插槽,加强件22的第一侧221的边沿设于插配于插槽, 止挡件25与卡扣件26均设于第二侧222,止挡件25止挡于加强件22的第二侧222,卡扣件26止挡于加强件22的内侧。
例如,在装配时,可以将加强件22的第一侧221的边沿插入插槽,然后将门板21的第二侧222卡入卡扣件26与门板21之间,且止挡在止挡件25的靠近第一侧221的一侧,从而可以简单且快捷地实现加强件22的装配。并且可以利用限位件24与止挡件25限制加强件22沿自身宽度方向相对门板21窜动,同时利用卡扣件26、限位件24与门板21共同限制加强件22沿门板21的厚度方向相对门板21窜动,进而提升加强件22的安装稳定性。而且,通过同时设置止挡件25与卡扣件26,无需利用卡扣件26进行宽度侧止挡,一方面保证卡扣件26容易变形利于加强件22的安装,另一方面可以利用止挡件25保证沿宽度方向限位的可靠性。并且,减少了螺钉固定,装配更为便捷、高效。
例如,当门板21包括面板部211和侧板部212,侧板部212连接在面板部211的靠近第一边缘111的一侧,侧板部212的外端与面板部211相连,侧板部212的内端相对面板部211向内延伸时,可以将止挡结构23、限位件24、止挡件25、卡扣件26均一体成型在面板部211上,从而可以简化结构,降低成本,提高止挡结构23的作用可靠性。当然,本申请不限于此,也可以单独加工止挡结构23、限位件24、止挡件25、卡扣件26中的至少一个,并装配至门板21等等,这里不作赘述。
需要说明的是,限位件24、止挡件25和卡扣件26的数量分别不限,例如,均可以为多个且沿加强件22的长度方向间隔开设置,从而提高对加强件22的限位可靠性与稳定性。此外,当止挡件25和卡扣件26均为多个时,可以间隔且交错设置,从而可以提升从多个维度对加强件22的限位的可靠性与稳定性。例如在图11所示的具体示例中,门板21的内表面设有六个卡扣件26和三个止挡件25,相邻的两个止挡件25之间设有两个卡扣件26,两侧的两个止挡件25的两侧各设置一个卡扣件26等等。
在本申请的一些实施例中,如图2所示,空调器100可以包括:驱动组件3,驱动组件3设于壳体组件1,结合图17,驱动组件3通过连接件31与门体组件2相连,以用于驱动门体组件2运动。由此,无需手动驱动门体组件2开关,省去了人力操作。
例如在一些具体示例中,如图2所示,空调器100上可以具有沿左右方向间隔开且沿竖向延伸的两个出风口11,空调器100包括对应两个出风口11设置的两个门体组件2,结合图15-图17,与每个门体组件2相连的连接件31的结构形状均相同,以实现连接件31相对各门体组件2的通用安装。也就是说,连接左侧的门体组件2的连接件31的结构形状与连接右侧的门体组件2的连接件31的结构形状一模一样,从而可以实现连接件31的通配效果,可以统一加工,降低生产成本,装配时无需区分左右,提高了装配效率,例如装配效率可提高50%。简言之,由于连接件31设计为左右通用的形状,可以避免装配过程中易出现混乱用错的问题,使得驱动组件3与门体组件2的装配更为简单、装配效率更高。
可选地,如图17所示,门体组件2的长度两端分别对应设有驱动组件3,结合图16,连接件31上具有插孔311,结合图18-图19,门体组件2的内侧的长度两端对应各连接件31分别设有连接部27,连接部27上均具有沿门体组件2的长度方向延伸的插销271,各插销271的延伸方向均相同。
由此,结合图20-图22,可以通过使门体组件2沿门体的长度方向的运动,完成与两个驱动组件3上的连接件31的插接配合,装配快捷、容易。
例如,门体组件2的长度方向为上下方向,各插销271均向下延伸,从而可以通过向下推动门体组件2使得各插销271向下插配于连接件31上的对应插孔311,从而不但可以起到插接限位的效果,而且连接件31还可以起到支撑连接部27,从而支撑门体组件2的效果。
可选地,分置于门体组件2的长度两端的两个连接件31中的一个,通过沿门体组件2的长度方向延伸的螺钉与对应的连接部27紧固连接。由此,插孔311与插销271的插接步骤与打螺钉的步骤不用改换操作方向,从而可以提高装配效率。此外,通过螺钉连接,可以简化结构,降低成本。
例如,连接件31上可以具有连接孔312(例如图16所示),连接部27上可以具有螺钉座272(例如图18和图19所示),螺钉穿过连接孔312后螺纹连接至螺钉座272,从而可以实现通过螺钉的快速连接。
例如,当门体组件2沿上下方向延伸,且位于空调器100的上部时,可以将门体组件2的下部的连接件31与对应的连接部27采用螺钉紧固,从而可以避免由于门体组件2向下伸长变形引发的相关问题。
又例如,当门体组件2沿上下方向延伸,且位于空调器100的下部时,可以将门体组件2的上部的连接件31与对应的连接部27采用螺钉紧固,从而可以避免由于门体组件2向上伸长变形引发的相关问题。
可选地,插销271设计有导向斜面,从而提高插销271与插孔311的插配效率,降低装配难度,使得装配更为方便。
在本申请的一些实施例中,门体组件2的内侧具有第一限位结构281和第二限位结构282,第一限位结构281沿门体组件2的宽度方向限位在连接件31的两侧,第二限位结构282设于插销271的外侧以止挡连接件31的外壁。由此,可以提高连接件31与门体组件2配合的稳定性与可靠性,改善晃动等问题。
简言之,门体组件2不但与连接件31通过插销271和螺钉配合连接,还通过第一限位结构281和第二限位结构282对连接件31进行限位,从而有效地改善了门体组件2晃动的问题,提升门体组件2运动的稳定性与低噪音性。
需要说明的是,驱动组件3的具体结构不限,例如还可以包括驱动盒盖32、驱动盒座33、驱动电机34、驱动机构35(如齿轮齿条组件)等。驱动盒盖32与驱动盒座33组成安装盒,安装盒内限定出安装空间,驱动机构35可以设于安装空间内,驱动电机34可以位于安装空间外且与驱动机构35相连,以驱动驱动机构35执行动作。连接件31穿设于安装盒,例如安装盒盖与安装盒座的拼接位置形成有避让开口,连接件31可以穿设于避让开口,以连接安装盒内的驱动机构35和安装和外的门体组件2。
当空调器100包括两个门体组件2时,安装盒内可以设置两个驱动机构35,每个驱动机构35对应连接一个驱动电机34,当两个门体组件2对称设置时,两个驱动机构35也可以对称设置,从而分别连接两个门体组件2长度方向上的同侧端,从而可以提高结构紧凑性,简化生产。
例如,在本申请的一些实施例中,如图1-图2、以及图23所示,空调器100为空调柜机,且包括上部和下部,上部包括换热模块41和通风模块42,下部包括新风模块5,上部具有左右两个出风口11,以用于送出经换热模块41换热的气流,门体组件2设于上部且为左右两个,以分别对应开关两个出风口11,此外,上部还可以具有两个导风组件6,两个导风组件6分别对应两个出风口11设置,且当门体组件2位于关闭位置时,导风组件6位于门体组件2的内侧,另外,上部还可以具有电控组件7等等,这里不作赘述。
此外,在一些实施例中,如图23所示,壳体组件1还可以包括对应上部和下部共同设置的后箱体14、位于整机顶部的顶盖15、位于整机底部的底座16、位于上部的出风框12和面板支架13、位于下部的下面框17、位于上部的上面板18、位于下部的下面板19等等,这里不作赘述。
综上所述,根据本申请一些实施例的空调器100,门体组件2的加强件22采用中空的铝型材结构,且铝条左右结构对称,确保左右门体组件2均可装配,装配过程更加简单。驱动组件3的连接件31,也采用左右通配结构,使得驱动组件3装配更为简单。在门体组件2装配过程中,与连接件31配合处设计有第一限位结构281和第二限位结构282,保证门体组件2装配后不晃动。铝条装配至门体组件2中,采用限位件24、止挡件25和卡扣件26固定限位。在门体组件2闭合间隙G设计中,在出风框12设计有台阶作为支撑部122,使得门体组件2不往内凹。同步为了解决门体组件2长度中间位置外凸的问题,在门体组件2长度中部位置设计两个插接销,门体组件2运动至闭合位置后插接销可伸入出风框12 与面板支架13的插接槽中,确保门体组件2的闭合间隙G均匀。简言之,可以较为有效地解决门体组件2的闭合间隙G不均匀的问题,同步解决左右门体组件2的物料不通配问题。
相关技术中的空调柜机,门体组件2的加强条、驱动组件3的连接件31的结构左右不通配兼容,装配易出错,装配效率不高。而且,门体组件2的加强条采用整块钣金设计,材料成本过高。由于门体组件2的长度过长,闭合间隙G不均匀,出现长度两端闭合完整,而长度两端中间的位置外凸的问题。而且,门体组件2的整体装配效率不高,且定位不完整,导致门体组件2装配后易晃动。本申请有效地解决了上述技术问题。
在本申请的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,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。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本申请的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
在本申请中,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
在本申请中,除非另有明确的规定和限定,第一特征在第二特征“上”或“下”可以是第一和第二特征直接接触,或第一和第二特征通过中间媒介间接接触。而且,第一特征在第二特征“之上”、“上方”和“上面”可是第一特征在第二特征正上方或斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”可以是第一特征在第二特征正下方或斜下方,或仅仅表示第一特征水平高度小于第二特征。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不必须针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。
尽管已经示出和描述了本申请的实施例,本领域的普通技术人员可以理解:在不脱离本申请的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本申请的范围由权利要求及其等同物限定。

Claims (15)

  1. 一种空调器,其中,包括:
    壳体组件,所述壳体组件上具有出风口,所述出风口包括相对设置的第一边缘和第二边缘,所述壳体组件在所述第一边缘处设有第一插接部;
    门体组件,所述门体组件相对所述壳体组件可运动,且被配置为从所述第二边缘向所述第一边缘的方向运动以关闭所述出风口,所述门体组件的靠近所述第一边缘的一侧为第一侧边,所述第一侧边上具有第二插接部,所述第二插接部与所述第一插接部沿所述门体组件的关闭运动方向插接配合,且在插接配合状态下所述第一插接部的至少部分止挡在所述第二插接部的至少部分的内侧和/或外侧。
  2. 根据权利要求1所述的空调器,其中,所述第一插接部与所述第二插接部中的至少一个为多个,且对应所述第一侧边的中央区域设置并沿所述第一侧边的长度方向间隔开,在所述第一侧边的长度方向上,所述中央区域与所述第一侧边的长度任一端的最小间距H满足,0.2L≤H≤0.5L,L为所述第一侧边的长度。
  3. 根据权利要求1或2所述的空调器,其中,所述壳体组件包括出风框和面板支架,所述出风框限定出所述出风口,所述面板支架设于所述出风框的外侧,且位于所述出风口的所述第一边缘的远离所述第二边缘的一侧,所述出风框与所述面板支架在所述第一边缘处配合形成所述第一插接部。
  4. 根据权利要求1-3中任一项所述的空调器,其中,所述第一插接部和所述第二插接部中的一个形成为插接槽、另一个形成为插接销,所述插接槽的槽口沿所述门体组件的运动方向敞开。
  5. 根据权利要求1-4中任一项所述的空调器,其中,所述第一边缘处还设有位于所述第一插接部的内侧的支撑部,所述第一侧边上还具有位于所述第二插接部的内侧的搭接部,在所述门体组件关闭所述出风口时,所述搭接部搭接在所述支撑部的外侧。
  6. 根据权利要求5所述的空调器,其中,所述壳体组件包括出风框,所述出风框限定出所述出风口,所述出风框在所述第一边缘处形成有沿所述第一边缘延伸的台阶面,所述台阶面限定出所述支撑部;
    和/或,所述门体组件包括形成为一体件的门板,所述门板包括面板部和侧板部,所述侧板部连接在所述面板部的靠近所述第一边缘的一侧,所述侧板部的外端与所述面板部相连,所述侧板部的内端相对所述面板部向内延伸且限定出所述搭接部。
  7. 根据权利要求1-6中任一项所述的空调器,其中,所述壳体组件在所述第一边缘处的外端形成有第一斜面,所述门体组件在所述第一侧边处的外端形成有第二斜面,在所述门体组件关闭所述出风口时,所述第一斜面与所述第二斜面沿着从内到外的方向,朝向彼此远离的方向倾斜延伸。
  8. 根据权利要求1-7中任一项所述的空调器,其中,所述门体组件包括门板和装配于所述门板内侧的加强件,所述加强件的长度方向沿所述门板的长度方向延伸。
  9. 根据权利要求8所述的空调器,其中,所述加强件的横截面形成为轴对称的形状;和/或,所述加强件为空心的挤出成型件。
  10. 根据权利要求8或9所述的空调器,其中,所述门板的内侧设有止挡结构,所述止挡结构分别止挡在所述加强件的长度两侧;和/或,所述门板的内侧设有限位件、止挡件和卡扣件,所述加强件的宽度两侧分别为第一侧和第二侧,所述限位件位于所述第一侧,且与所述门板之间限定出朝向所述第二侧敞开的插槽,所述加强件的所述第一侧的边沿设于插配于所述插槽,所述止挡件与所述卡扣件均设于所述第二侧,所述止挡件止挡于所述加强件的所述第二侧,所述卡扣件止挡于所述加强件的内侧。
  11. 根据权利要求1-10中任一项所述的空调器,其中,还包括:
    驱动组件,所述驱动组件设于所述壳体组件,所述驱动组件通过连接件与所述门体组件 相连,以用于驱动所述门体组件运动。
  12. 根据权利要求11所述的空调器,其中,所述空调器上具有沿左右方向间隔开且沿竖向延伸的两个所述出风口,所述空调器包括对应两个所述出风口设置的两个所述门体组件,与每个所述门体组件相连的所述连接件的结构形状均相同,以实现所述连接件相对各所述门体组件的通用安装。
  13. 根据权利要求11或12所述的空调器,其中,所述门体组件的长度两端分别对应设有所述驱动组件,所述连接件上具有插孔,所述门体组件的内侧的长度两端对应各所述连接件分别设有连接部,所述连接部上具有沿所述门体组件的长度方向延伸的插销,各所述插销的延伸方向均相同。
  14. 根据权利要求13所述的空调器,其中,分置于所述门体组件的长度两端的两个所述连接件中的一个,通过沿所述门体组件的长度方向延伸的螺钉与对应的所述连接部紧固连接。
  15. 根据权利要求13或14所述的空调器,其中,所述门体组件的内侧具有第一限位结构和第二限位结构,所述第一限位结构沿所述门体组件的宽度方向限位在所述连接件的两侧,所述第二限位结构设于所述插销的外侧以止挡所述连接件的外壁。
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