WO2021135600A1 - 窗式空调器的机壳和窗式空调器 - Google Patents

窗式空调器的机壳和窗式空调器 Download PDF

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Publication number
WO2021135600A1
WO2021135600A1 PCT/CN2020/125178 CN2020125178W WO2021135600A1 WO 2021135600 A1 WO2021135600 A1 WO 2021135600A1 CN 2020125178 W CN2020125178 W CN 2020125178W WO 2021135600 A1 WO2021135600 A1 WO 2021135600A1
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WO
WIPO (PCT)
Prior art keywords
outdoor
air conditioner
box
window
outdoor side
Prior art date
Application number
PCT/CN2020/125178
Other languages
English (en)
French (fr)
Inventor
喻辉
邢志钢
张康文
雷志盛
刘雨
赵阿立
Original Assignee
广东美的制冷设备有限公司
美的集团股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201922497417.4U external-priority patent/CN211476125U/zh
Priority claimed from CN201922501604.5U external-priority patent/CN211345785U/zh
Priority claimed from CN201922494998.6U external-priority patent/CN211476124U/zh
Priority claimed from CN201922500842.4U external-priority patent/CN211345784U/zh
Priority claimed from CN201922501765.4U external-priority patent/CN211575483U/zh
Priority claimed from CN201922494925.7U external-priority patent/CN211476123U/zh
Application filed by 广东美的制冷设备有限公司, 美的集团股份有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2021135600A1 publication Critical patent/WO2021135600A1/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
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/022Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing comprising a compressor cycle
    • F24F1/027Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing comprising a compressor cycle mounted in wall openings, e.g. in windows
    • 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
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/028Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by air supply means, e.g. fan casings, internal dampers or ducts
    • 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
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/029Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by the layout or mutual arrangement of components, e.g. of compressors or 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
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/03Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by mounting arrangements
    • F24F1/031Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by mounting arrangements penetrating a wall or window
    • 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
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/032Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by heat exchangers
    • F24F1/0323Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by heat exchangers by the mounting or arrangement of the heat exchangers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/20Casings or covers

Definitions

  • the application relates to the field of air conditioners, and in particular to a casing of a window type air conditioner and a window type air conditioner.
  • This application aims to solve at least one of the technical problems existing in the related technology.
  • the present application proposes a casing of a window air conditioner to make the operation of the window air conditioner more stable.
  • This application also proposes a window air conditioner with the above-mentioned cabinet.
  • the window type air conditioner includes a compressor and an outdoor air duct assembly
  • the casing includes: an outdoor side box, the compressor and the outdoor wind
  • the duct assembly is suitable for being arranged in the outdoor side box, and the top of the outdoor side box is provided with a ventilation area and a shielding area, and the shielding area is adapted to interact with at least part of the compressor and/or at least part of the outdoor box.
  • the air duct components are set directly opposite.
  • the shielding area shields at least part of the compressor and/or at least part of the outdoor air duct assembly, thereby avoiding rainwater or debris entering the rear cabinet through the ventilation area and the compressor and / Or the outdoor air duct components are in contact to achieve the purpose of protecting the compressor and/or the outdoor air duct components, thereby making the operation of the window air conditioner more stable.
  • a part of the shielding area is arranged directly opposite to the motor line of the compressor, and another part of the shielding area is arranged directly opposite to the motor line of the outdoor air duct assembly.
  • the shielding area includes a first shielding portion and a second shielding portion that are spaced apart, the first shielding portion is arranged directly opposite to the motor line of the compressor, and the second shielding portion is opposite to the motor line of the compressor.
  • the wind blades of the outdoor air duct assembly are arranged directly opposite to each other.
  • the shielding area is defined by a part of the top wall of the outdoor side box.
  • the ventilation area includes a plurality of first vents arranged at intervals, and the length of some of the first vents is smaller than the length of the adjacent first vents to define the shielding area.
  • the cabinet further includes: an indoor side box body and a chassis, the indoor side box body and the outdoor side box body are spaced back and forth on the chassis to define an area suitable for window sashes.
  • the side surface of the outdoor box body facing the indoor side box body is an inner side surface, and a second vent is provided on the inner side surface.
  • a reinforcing portion is provided on the inner side surface, and the reinforcing portion includes a first reinforcing rib and a plurality of second reinforcing ribs connected to the first reinforcing rib.
  • the window air conditioner includes an outdoor heat exchanger
  • the cabinet further includes a chassis
  • the outdoor side box is provided on the chassis
  • the outdoor heat exchanger is suitable for being placed on the chassis.
  • the chassis is suitable for being arranged in the outdoor side box
  • the outdoor side box includes a top cover and an outer box with an opening at the top
  • the top cover is provided on the opening
  • the outer box A plurality of first connecting portions are arranged at intervals in the circumferential direction of the top cover, a plurality of second connecting portions are arranged at intervals in the circumferential direction of the top cover, and the plurality of first connecting portions are connected to the plurality of second connecting portions in one-to-one correspondence
  • a plurality of fixing parts, each of the first connecting part and the corresponding second connecting part are connected by the fixing part to connect the top cover to the outer box.
  • the top cover is provided with a side edge, the side edge is arranged around the outer box, and a part of the side edge is recessed toward the outer box to define a plurality of the second connecting portions; And/or, a part of the side wall of the outer box protrudes toward the top cover to define a plurality of the first connecting portions.
  • a vent is provided on the outer surface of the outer box, and at least one side wall of the vent is provided with a flaring recessed outward to increase the amount of ventilation.
  • the side wall of the vent is provided with connecting parts located on both sides of the flaring, and the connecting parts on both sides are respectively connected to the chassis and the top cover.
  • a vent is provided on the outer surface of the outer box, and at least one side wall of the vent is provided with a shielding side, and the shielding side is connected to the heat exchange tube of the outdoor heat exchanger. It is arranged directly opposite to shield the heat exchange tube.
  • the chassis is provided with a first through hole
  • the first fixing connecting member passing through the first through hole is adapted to be fixed on the outdoor heat exchanger
  • the outer box is provided with A second through hole
  • a second fixing connecting member passing through the second through hole is suitable for being fixed on the outdoor heat exchanger
  • the first through hole and the second through hole are arranged directly opposite.
  • the window air conditioner includes an electric control box
  • the outdoor air duct assembly includes an outdoor fan
  • the cabinet further includes: a rear wall, the rear wall being arranged in the outdoor side box Inside the body, the outdoor fan is suitable for being fixed on the rear wall, the electric control box is suitable for being placed in the outdoor side box, and the top of the outdoor side box is provided with a fixing part, the fixing part It is connected with the electric control box and/or the rear wall to limit the position of the electric control box relative to the rear wall.
  • the fixing part includes a first mounting part and a second mounting part, the first mounting part is adapted to be connected to the electric control box, and the second mounting part is connected to the rear panel .
  • the cabinet further includes a sealing member, which is sealingly arranged between the rear panel and the top wall of the outdoor cabinet.
  • the top wall of the outdoor side box is provided with an escape portion, and the escape portion is adapted to be arranged directly opposite to a part of the compressor to avoid the compressor.
  • the cabinet further includes: an indoor side box body and a chassis, the indoor side box body and the outdoor side box body are spaced back and forth on the chassis to define an area suitable for window sashes. Containment slot.
  • the window type air conditioner according to the second aspect of the present application includes: a cabinet, the cabinet being the cabinet of the window type air conditioner according to the above-mentioned first aspect of the present application; a compressor and an outdoor air duct assembly, the compressor Both the outdoor air duct assembly and the outdoor air duct assembly are arranged in the outdoor side box.
  • the window type air conditioner of the present application by adopting the above-mentioned cabinet, the operation of the window type air conditioner can be made more stable.
  • the window type air conditioner is adapted to be installed on a wall provided with a window
  • the window type air conditioner includes a chassis and an indoor side component and an outdoor side component provided on the chassis.
  • the outdoor side component includes: the outdoor side box body, including an outer box and a top cover, the outer box is arranged on the chassis, the top cover is arranged on an end of the outer box away from the chassis, and the outer box
  • the box includes an air outlet, the air outlet is provided with a vent, the vent is formed as an outdoor side air outlet and penetrates both sides of the air outlet in a first direction, and makes the air outlet include an edge
  • the first flanging and the second flanging arranged at intervals in the second direction, the first direction being the arrangement direction of the chassis and the top cover;
  • the outdoor heat exchanger is arranged in the outdoor side box, And located at the air outlet portion, the outdoor heat exchanger has an air outlet surface, the first flange and the second flange are located on both sides of the air outlet surface in the second direction
  • the air outlet surface includes a central air outlet area and a first fastening area and a second fastening area located on the outer periphery of the central air outlet area, and the central air outlet area corresponds to the vent
  • the outdoor side assembly further includes a compression located in the outer box
  • the compressor is provided on the chassis, and the refrigerant pipe of the outdoor heat exchanger is drawn from the side of the outdoor heat exchanger close to the second buckling area and connected with the compressor, so The first flanging is provided with the flaring, and the second flanging shields the leading refrigerant pipe.
  • the outer box is a square tube, and the outer box further includes a first side plate, a second side plate, and a third side plate that are connected in sequence, and the first side plate is opposite to the third side plate.
  • the second side plate is directly opposite to the air outlet, the first side plate, the second side plate, the third side plate and the air outlet are integrally formed, and the first side
  • the board, the second side board, the third side board and the top cover are all air inlet boards, and the outdoor side air inlets are opened on the air inlet boards.
  • the flaring extends along the first direction in an elongated shape, and two ends of the flaring are respectively provided with connecting parts.
  • the second side panel is provided with a stiffener, and the stiffener is located between the chassis and the outdoor side air inlet of the second side panel to avoid the second side The plate bulges outward and deforms.
  • the window air conditioner is adapted to be installed on a wall with a window
  • the window air conditioner includes an indoor side component and an outdoor side component
  • the window-type air conditioner has an outdoor side air inlet
  • the outdoor side air inlet includes a first outdoor side air inlet
  • the outdoor side component includes:
  • the outdoor side box includes a second side panel facing the indoor side assembly, a fourth side panel opposite to the second side panel, and a connection connecting the second side panel and the fourth side panel
  • a circumferential plate the second side plate is provided with the first outdoor side air inlet
  • the fourth side plate is provided with a vent; and an electric control box, arranged in the outdoor side box and located in the The first outdoor side air inlet to the air flow path of the vent, so that the air flow entering the outdoor side cabinet through the first outdoor side air inlet is at least partially directly blown to the electric control box.
  • the heat dissipation of the electric control box is arranged in the outdoor side box and located in the The first
  • the outdoor side assembly further includes an outdoor fan, the outdoor fan is arranged in the outdoor side box and is located between the second side plate and the fourth side plate, and the electric The control box is located at one end of the outdoor fan close to the second side plate.
  • the electrical control box in the direction from outdoor to indoor, is separated from the second side plate by 10 mm-40 mm.
  • the orthographic projection of the electric control box on the second side panel covers a part of the first outdoor side air inlet, so that airflow can enter through the uncovered part of the first outdoor side.
  • the tuyere directly reaches the outdoor fan.
  • the outdoor side air inlet further includes a second outdoor side air inlet
  • the circumferential plate includes a plurality of plate bodies, and the plurality of plate bodies are sequentially connected along the circumferential direction of the outdoor side box.
  • a bent plate is formed, each of the plate bodies is provided with the second outdoor side air inlet, the plate body is three, and the three plate bodies are enclosed to form a U-shaped structure and are respectively the first side plate
  • the third side plate and the top cover, the first side plate, the third side plate, the second side plate, and the fourth side plate are integrally formed to form a frame structure, and the top cover and the frame structure Removably connected
  • the first outdoor side air inlet includes a plurality of first elongated holes arranged at intervals in parallel
  • the second outdoor side air inlet includes a plurality of second elongated holes arranged at intervals in parallel.
  • the window type air conditioner is suitable for installation on a wall with a window
  • the window type air conditioner further includes a chassis, a weather strip, an indoor side component and an outdoor side component, the indoor side component and The outdoor side components are all arranged on the chassis, and the outdoor side components and the indoor side components are spaced from the outdoor to the indoor direction and define a receiving groove
  • the sealing strip is movably connected to the chassis , Can switch between the storage position and the sealing position, when the sealing strip is in the storage position, the sealing strip is located in the containing groove, and when the sealing strip is in the sealing position, the sealing strip is sealed Between the bottom wall of the window and the shielding member extending into the containing groove.
  • Fig. 1 is a schematic diagram of a three-dimensional structure of a window air conditioner according to an embodiment of the present application
  • FIG. 2 is a schematic diagram of a three-dimensional structure of an outdoor box according to an embodiment of the present application.
  • Fig. 3 is an exploded view of a casing according to an embodiment of the present application.
  • Fig. 4 is a partial enlarged view of A in Fig. 3;
  • Fig. 5 is an exploded view of the casing according to an embodiment of the present application from another perspective;
  • Fig. 6 is a three-dimensional schematic view of another view of the outdoor cabinet according to an embodiment of the present application.
  • Fig. 7 is a three-dimensional structural diagram of a window air conditioner in a storage position according to an embodiment of the present application.
  • FIG. 8 is a three-dimensional structural diagram of a window air conditioner in a sealing position according to an embodiment of the application.
  • Fig. 9 is a structural schematic diagram of the window air conditioner shown in Fig. 8 installed on the indoor side behind the wall;
  • Fig. 10 is a three-dimensional structural diagram of a window air conditioner according to an embodiment of the present application with a sealing strip between a storage position and a sealing position;
  • Fig. 11 is a three-dimensional structural diagram of the window air conditioner shown in Fig. 7 from another perspective;
  • FIG. 12 is a partial exploded schematic view of the three-dimensional structure of the window air conditioner shown in FIG. 7 after omitting the indoor side components;
  • Fig. 13 is a partial structural diagram of the three-dimensional structure of the outdoor side box in Fig. 7;
  • Fig. 14 is a three-dimensional structural diagram of a window air conditioner according to an embodiment of the present application, wherein the sealing strip is between the storage position and the sealing position;
  • Figure 15 is a front view of the window air conditioner shown in Figure 14;
  • Figure 16 is a schematic cross-sectional view taken along line B-B in Figure 15;
  • Figure 17 is a schematic cross-sectional view taken along line C-C in Figure 15;
  • Figure 18 is a schematic cross-sectional view taken along the line D-D in Figure 15;
  • Figure 19 is a schematic cross-sectional view taken along line A-A in Figure 15;
  • FIG. 20 is a schematic diagram of the three-dimensional structure of the outdoor side assembly of the window air conditioner shown in FIG. 14;
  • FIG. 21 is a schematic diagram of a partially exploded three-dimensional structure of the outdoor side assembly of the window air conditioner shown in FIG. 20;
  • FIG. 22 is a schematic diagram of the three-dimensional structure of the outdoor side assembly of the window air conditioner shown in FIG. 20 omitting the outdoor side housing;
  • Fig. 23 is a schematic cross-sectional view of the outdoor side assembly of the window air conditioner shown in Fig. 20;
  • FIG. 24 is a schematic diagram of a three-dimensional structure of a window air conditioner according to an embodiment of the present application.
  • FIG. 25 is a schematic diagram of the three-dimensional structure of the window air conditioner shown in FIG. 24 from another perspective;
  • 26 is a partial exploded schematic view of the three-dimensional structure of the window air conditioner shown in FIG. 24 after omitting the indoor side components;
  • Figure 27 is a schematic cross-sectional view taken along line A-A in Figure 26;
  • Fig. 28 is a partial enlarged schematic diagram of B in Fig. 26;
  • FIG. 29 is a schematic diagram of the three-dimensional structure of the outdoor housing in FIG. 24.
  • 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.
  • the window type air conditioner 100 includes an outdoor heat exchanger, an electric control box 6, a compressor, and an outdoor air duct assembly.
  • the channel assembly includes an outdoor fan, and the outdoor fan may be an axial fan.
  • the cabinet 10 of the window type air conditioner 100 includes: an outdoor side cabinet 1, the compressor and the outdoor air duct assembly are suitable for being arranged in the outdoor side cabinet 1, and the top of the outdoor side cabinet 1 is provided There are a ventilation area 14 and a shielding area 15, and the shielding area 15 is adapted to be arranged directly opposite to at least part of the compressor and/or at least part of the outdoor air duct assembly.
  • the ventilation area 14 may be the air inlet of the window type air conditioner 100.
  • the shielding area 15 shields at least part of the compressor and/or at least part of the outdoor air duct assembly. Furthermore, rainwater or debris that enters the outdoor cabinet 1 through the ventilation area 14 is prevented from contacting the compressor and/or the outdoor air duct assembly, so as to protect the compressor and/or the outdoor air duct assembly, thereby making the window type The operation of the air conditioner 100 is more stable.
  • a part of the shielding area 15 is arranged directly opposite to the motor line of the compressor, and another part of the shielding area 15 is arranged directly opposite to the motor line of the outdoor air duct assembly. That is to say, by making a part of the shielding area 15 shield the motor line of the compressor, the rainwater or debris that enters the outdoor cabinet 1 through the ventilation area 14 is prevented from contacting the motor line of the compressor, thereby protecting the compressor. The purpose of the machine. By making another part of the shielding area 15 shield the motor wires of the outdoor air duct assembly, the rainwater or debris that enters the outdoor cabinet 1 through the ventilation area 14 is prevented from contacting the motor wires of the outdoor air duct assembly, thereby protecting The purpose of outdoor air duct components.
  • the shielding area 15 includes a first shielding portion 151 and a second shielding portion 152 arranged at intervals, the first shielding portion 151 and the compression
  • the motor wires of the machine are arranged directly opposite to each other, and the second shielding portion 152 is arranged directly opposite to the wind blades of the outdoor air duct assembly. That is to say, the first shielding portion 151 and the second shielding portion 152 are spaced apart to prevent the rainwater on the first shielding portion 151 and the rainwater on the second shielding portion 152 from flowing mutually.
  • the motor line of the compressor is shielded by the first shielding portion 151 to prevent rainwater or debris entering the outdoor cabinet 1 through the ventilation area 14 from contacting the motor line of the compressor, thereby protecting the compressor the goal of.
  • the fan blades of the outdoor air duct assembly are shielded by the second shielding portion 152.
  • the outdoor air duct assembly may be an outdoor fan, so as to prevent raindrops from falling on the fan blades of the outdoor air duct assembly and affect the rotation of the fan blades.
  • the second shielding portion 152 can also prevent fingers or sundries from contacting the wind blades, and improve the safety of the window air conditioner 100.
  • the shielding area 15 is defined by a part of the top wall of the outdoor cabinet 1. It can be understood that the shielding area 15 may be formed by extending the top wall of the outdoor cabinet 1 into the ventilation area 14, so that the shielding area 15 and the top wall of the outdoor cabinet 1 are an integral piece, so that the shielding area 15 The structure is simpler and the structure of the shell is more stable.
  • the ventilation area 14 includes a plurality of first vents arranged at intervals, and the length of some of the first vents is smaller than the length of the first vents adjacent thereto to define the shielding area 15. It can be understood that the ventilation area 14 includes a plurality of first vents arranged at intervals, the shielding area 15 may be arranged in the ventilation area 14, and the plurality of first vents may be elongated, and part of the length of the first vents It is shorter so that the top of part of the outdoor side box 1 defines the shielding area 15, so that the structure of the shielding area 15 is simpler.
  • the first vent may be an outdoor side air inlet of the window air conditioner 100.
  • the casing 10 further includes an indoor side box 4 and a chassis 5, and the indoor side box 4 and the outdoor side box 1 are arranged on the chassis 5 at intervals from front to back.
  • a receiving groove 41 suitable for the window sash to extend into.
  • the window air conditioner 100 is adapted to be supported on a window on a wall, and a movable window sash is provided in the window, and the window sash can be moved up and down in the window to open or close the window.
  • the casing 10 is divided into an indoor side box 4 and an outdoor side box 1 by a containing groove 41. At least a part of the window sash can be extended into the containing groove 41.
  • the indoor side box 4 is provided with an indoor heat exchanger and an indoor fan.
  • the outdoor side box 1 is provided with an outdoor heat exchanger and an outdoor fan.
  • the cabinet 10 is divided into an indoor part and an outdoor part, and at least a part of the window sash can extend into the receiving groove 41.
  • This facilitates the installation of the window type air conditioner 100 into the window, facilitates the window type air conditioner 100 to cooperate with the window and the window sash, facilitates the improvement of the structural reliability and stability of the window type air conditioner 100 after installation, and facilitates the improvement of the window type air conditioner 100 The reliability of the work.
  • the accommodating groove 41 is recessed downward from the top wall of the cabinet 10, which not only makes the force of the window air conditioner 100 more uniform, but also prevents the top wall of the window air conditioner 100 from receiving more force. Damage occurs due to large size, and the installation reliability and working performance of the window air conditioner 100 are improved.
  • the side surface of the outdoor box body 1 facing the indoor side box 4 is the inner side 16, and the inner side 16 is provided with a second vent 161, and the second vent 161 Set adjacent to the electric control box 6.
  • the window air conditioner 100 can also take in air through the second vent 161 to increase the air intake volume of the window air conditioner 100.
  • the second vent may be an outdoor side air inlet of the window type air conditioner 100.
  • a reinforcing portion 162 is provided on the inner side surface 16.
  • the inner surface 16 of the outdoor cabinet 1 can be reinforced by the reinforcement portion 162 to prevent the inner surface 16 from being deformed, thereby making the structure of the cabinet 10 more stable.
  • the reinforcing portion 162 includes a first reinforcing rib 1621 and a plurality of second reinforcing ribs 1622 connected to the first reinforcing rib 1621.
  • the inner side 16 of the outdoor cabinet 1 is reinforced by the first reinforcing rib 1621 and the plurality of second reinforcing ribs 1622 to make the inner side 16 more stable.
  • the first reinforcing ribs 1621 may extend along the width direction of the outdoor side box 1, and a plurality of second ribs 1622 extend along the height direction of the outdoor side box 1, so that the inner side 16 The structure is more stable.
  • the reinforcement portion 162 is located below the second vent 161.
  • the reinforcing part 162 can be arranged below the second vent 161 to ensure that the structure of the part of the inner side 16 below the second vent 161 is more stable.
  • the cabinet 10 of the window air conditioner 100 includes a chassis 5, an outdoor-side cabinet 1 and a plurality of fixing members 7, and the outdoor-side cabinet 1 is provided in On the chassis 5, the outdoor heat exchanger of the window air conditioner 100 is suitable for being placed on the chassis 5, and the outdoor heat exchanger is suitable for being arranged in the outdoor side box 1, which includes a top cover 17 and a top device. An outer box 18 with an opening, and a top cover 17 covering the opening.
  • the outdoor side box 1 is a split structure.
  • the top cover can be 17 is disassembled so that the internal structure of the outdoor cabinet 1 can be seen through the opening, thereby facilitating the maintenance of the window air conditioner 100, reducing the difficulty of disassembly, and improving the efficiency of disassembly and assembly.
  • the outer box 18 is provided with a plurality of first connecting portions 181 at intervals in the circumferential direction
  • the top cover 17 is provided with a plurality of second connecting portions 171 at intervals in the circumferential direction.
  • the connecting portions 171 are in contact with each other, and each first connecting portion 181 and the corresponding second connecting portion 171 are connected by a fixing member 7 to connect the top cover 17 to the outer box 18.
  • each first connecting portion 181 of the outer box 18 is in contact with the corresponding second connecting portion 171 on the top cover 17, thereby facilitating the installation of the fixing member 7 so that the first connecting portion 181 and the second connecting portion 181 are in contact with each other.
  • the connection between the two connecting parts 171 is more stable, so that the top cover 17 can be stably installed on the outer box 18.
  • the outdoor cabinet 1 a split structure
  • the top cover 17 can be removed so that the inside of the outdoor cabinet 1 can be seen through the opening
  • the structure facilitates the maintenance of the window air conditioner 100, reduces the difficulty of disassembly, and improves the efficiency of disassembly and assembly.
  • each second connecting portion 171 is provided with a mounting hole
  • each first connecting portion 181 is provided with a threaded hole
  • the fixing member 7 is threadedly connected in the threaded hole through the mounting hole.
  • first connecting portions 181, second connecting portions 171, and fixing members 7 there are seven first connecting portions 181, second connecting portions 171, and fixing members 7, so that the top cover 17 can be stably installed on the outer box 18.
  • the number of the first connecting portion 181, the second connecting portion 171, and the fixing member 7 can be limited according to actual use conditions, as long as the top cover 17 can be stably installed on the outer box 18, here The number is not limited.
  • the top cover 17 is provided with a side edge 172, the side edge 172 is arranged around the outer box 18, and a part of the side edge 172 is recessed toward the outer box 18 to define more A second connection part 171. It is understandable that the side 172 of the top cover 17 is arranged around the outer box 18 to protect the outer box 18, and part of the side 172 is recessed to form the second connecting portion 171, so that the second connecting portion 171 and the side edge 172 are integral parts, thereby reducing the number of parts and making the structure of the top cover 17 simpler.
  • a part of the side wall of the outer box 18 protrudes toward the top cover 17 to define a plurality of first connecting portions 181.
  • the first connecting portion 181 may be defined by a part of the side wall of the outer box 18 protruding toward the top cover 17, so that the first connecting portion 181 and the outer box 18 are integrated, thereby reducing the number of parts. This makes the structure of the outer box 18 simpler.
  • the top cover 17 is provided with side edges 172, the side edges 172 are arranged around the outer box 18, and a part of the side edges 172 are recessed toward the outer box 18 to define more A portion of the side wall of the outer box 18 protrudes toward the top cover 17 to define a plurality of first connection portions 181.
  • each first connecting portion 181 and the corresponding second connecting portion 171 are in surface contact. Thereby, the stability of the contact between the first connecting portion 181 and the second connecting portion 171 is improved, so that the structure of the casing 10 is more stable.
  • a vent 182 is provided on the outer surface of the outer box 18, and at least one side wall of the vent 182 is provided with a flaring 1821 that is recessed outward to increase ventilation. the amount. It is understandable that the outdoor heat exchanger exchanges heat through the vent 182, and the flaring 1821 is provided on the side wall of the vent 182 to increase the ventilation area of the vent 182 to increase the ventilation volume of the vent 182, thereby Improve the heat exchange efficiency of outdoor heat exchangers.
  • the vent 182 may be formed as an outdoor side air outlet of the window air conditioner 100.
  • the side wall of the vent 182 is provided with connecting portions 1822 located on both sides of the flaring 1821, and the connecting portions 1822 on both sides are connected to the chassis 5 and top respectively.
  • the cover 17 is connected. That is to say, through the connecting parts 1822 provided on both sides of the flaring 1821, on the one hand, the assembly space between the outer box 18 and the chassis 5 and the top cover 17 is increased, so that the connection between the outer box 18 and the chassis 5 and the top cover 17 is more stable.
  • the connecting portion 1822 is arranged on both sides of the flaring 1821 to reduce the windshield phenomenon of the connecting portion 1822, thereby preventing the connecting portion 1822 from affecting the heat exchange effect of the outdoor heat exchanger.
  • a vent 182 is provided on the outer surface of the outer box 18, and at least one side wall of the vent 182 is provided with a shielding side 1823, and a shielding side 1823 is provided.
  • the heat exchange tube of the outdoor heat exchanger is arranged directly opposite to shield the heat exchange tube.
  • the heat exchange tubes of the outdoor heat exchanger are shielded by shielding the side edges 1823, so as to protect the heat exchange tubes.
  • the chassis 5 is provided with a first through hole 51, and the first fixing connecting member passing through the first through hole 51 is suitable for fixing to an outdoor heat exchanger on. That is to say, the first fixed connecting member is connected to the outdoor heat exchanger through the first through hole 51, so that the outdoor heat exchanger is connected to the chassis 5, so that the outdoor heat exchanger can be more stably installed in the outdoor side box. ⁇ 1 ⁇ In the body 1.
  • the outer box 18 is provided with a second through hole 183, and the second fixed connection member passing through the second through hole 183 is suitable for being fixed in the outdoor heat exchange ⁇ On the device. That is to say, the second fixed connecting member is connected to the outdoor heat exchanger through the second through hole 183, so that the outdoor heat exchanger is connected to the outer box 18, so as to improve the restraint on the outdoor heat exchanger, thereby improving the stability. .
  • the first through hole 51 and the second through hole 183 are arranged directly opposite. That is to say, the first through hole 51 and the second through hole 183 can be arranged directly opposite to each other, so that the fixed connecting member passes through the first through hole 51 and the second through hole 183 in sequence and then is connected to the outdoor heat exchanger to Improve the stability of the outdoor heat exchanger.
  • the fixed connection member may be a bolt.
  • the casing 10 includes an outdoor side box 1 and a rear wall 2.
  • the rear wall 2 is arranged in the outdoor side box 1, and the outdoor air duct assembly
  • the outdoor fan is suitable for being fixed on the rear panel 2
  • the electric control box 6 is suitable for being placed in the outdoor side box 1
  • the top of the outdoor side box 1 is provided with a fixing part 11, the fixing part 11 and the electric control box 6 and /Or the rear wall 2 is connected to limit the position of the electric control box 6 relative to the rear wall 2.
  • the outdoor fan is installed on the rear wall 2 in the box body, and the electric control box 6 and/or the rear wall 2 pass through the fixing part 11 at the same time. It is connected with the outdoor side box 1 so that the electric control box 6 and the rear wall 2 are fixed in the outdoor side box 1, so as to limit the position between the electric control box 6 and the rear wall 2, thereby avoiding electric control
  • the box 6 shakes relative to the rear panel 2 so as to avoid interference between the electric control box 6 and the outdoor fan, so as to improve the stability of the window air conditioner 100.
  • the outdoor side box 1 can be set outdoors, and the electrical control box 6 is installed in the outdoor side box 1 to increase the installation space of the electrical control box 6, thereby making the installation and fixing of the electrical control box 6 more convenient.
  • the electric control box 6 can be arranged in the air flow channel corresponding to the outdoor fan, so that the flowing air can be used to dissipate the electric control box 6 and the service life of the electric control box 6 can be improved.
  • the fixing portion 11 includes a first mounting portion 111 and a second mounting portion 112, and the first mounting portion 111 is adapted to be connected to the electric control box 6.
  • the second mounting portion 112 is connected to the rear panel 2. That is to say, the electric control box 6 is connected to the outdoor side cabinet 1 through the first mounting part 111, and the rear panel 2 is connected to the outdoor side cabinet 1 through the second mounting part 112, so that the electric control box 6 and the rear panel 2 can be more stably arranged in the outdoor side cabinet 1, and at the same time, the electric control box 6 is further prevented from shaking relative to the rear panel 2, so as to improve the stability of the window air conditioner 100.
  • the first mounting portion 111 may include a first perforation and a first bolt provided on the top wall of the outdoor box 1 through which the first bolt passes
  • the first perforated thread is connected to the electric control box 6 so as to make the connection between the electric control box 6 and the outdoor cabinet 1 more stable.
  • the second mounting portion 112 may include a second perforation and a second bolt provided on the top wall of the outdoor box 1 through which the second bolt passes The second perforation is screwed on the rear panel 2 so as to make the connection between the rear panel 2 and the outdoor box 1 more stable.
  • first mounting portion 111 there may be one first mounting portion 111, and two second mounting portions 112 may be used to fix the electric control box 6 and the rear panel 2 respectively.
  • second mounting portions 112 On the outdoor side cabinet 1.
  • the number of the first mounting portion 111 and the second mounting portion 112 can be limited according to actual use conditions, as long as it can ensure that the electric control box 6 and the rear wall 2 are between the outdoor cabinet 1 The connection strength is sufficient, and there is no limit to the number here.
  • the first mounting portion 111 and the second mounting portion 112 are spaced apart. That is to say, by arranging the first mounting part 111 and the second mounting part 112 on the top of the outdoor cabinet 1 at intervals, it is convenient to fix the electric control box 6 and the control box according to the positions of the first mounting part 111 and the second mounting part 112.
  • the rear panel 2 to further avoid interference between the electric control box 6 and the outdoor fan.
  • the casing 10 further includes a sealing member 3 which is sealingly arranged between the rear panel 2 and the top wall of the outdoor cabinet 1. That is to say, by sealing the seal 3 provided between the rear panel 2 and the outdoor side box 1, it is possible to prevent wind from passing through the gap between the rear panel 2 and the outdoor side box 1 during operation of the air conditioner, thereby avoiding Affect the air exchange to ensure that the energy efficiency of the air conditioner is not affected.
  • the sealing member 3 may be a PE sponge, an outdoor heat exchanger is provided in the outdoor side box 1, and the sealing member 3 extends between the outdoor heat exchanger and the top wall of the outdoor side box 1. ,
  • the sealing member 3 extends between the outdoor heat exchanger and the top wall of the outdoor side box 1.
  • a reinforcing member 12 is provided on the top wall of the outdoor box body 1.
  • the strength of the top wall of the outdoor cabinet 1 is reinforced by the reinforcement 12 to make the structure of the casing more stable.
  • the reinforcing member 12 extends along the width direction of the outdoor side box 1, and the reinforcing member 12 is generally elongated to further interfere with the top wall of the outdoor side box 1. Strength is strengthened. In some embodiments of the present application, the reinforcing member 12 may be defined by a part of the top wall of the outdoor side box 1 protruding upward, thereby making the structure of the reinforcing member 12 simpler.
  • the window air conditioner 100 includes a compressor, and the top wall of the outdoor side cabinet 1 is provided with an escape portion 13, which is suitable for contact with Some compressors are set directly opposite to avoid the compressor. It can be understood that the compressor of the window type air conditioner 100 is arranged in the outdoor cabinet 1, and the avoidance portion 13 and some of the compressors are arranged directly opposite to prevent the window type air conditioner 100 from being transported and transported. The outdoor side box 1 collides, so as to protect the compressor.
  • the avoiding portion 13 may be defined by a part of the top wall of the outdoor side box 1 protruding upward, so that the structure of the avoiding portion 13 is simpler.
  • the top of the compressor is provided with a refrigerant pipe, and the avoiding portion 13 is arranged directly opposite to the refrigerant pipe to avoid collision of the refrigerant pipe with the outdoor side box 1 during transportation of the window-type air conditioner 100. In order to protect the refrigerant pipe.
  • the casing 10 further includes an anti-collision sponge.
  • the anti-collision sponge is arranged on the inner surface of the outdoor side cabinet 1, and at least part of the anti-collision sponge is arranged on the avoiding portion 13.
  • the anti-collision sponge is suitable for Set directly opposite to some compressors. In other words, by arranging the anti-collision sponge on the inner surface of the outdoor cabinet 1, it is possible to further prevent the compressor from colliding with the outdoor cabinet 1 during transportation of the window air conditioner 100, thereby protecting the compression The purpose of the machine.
  • the cabinet 10 further includes an indoor side box 4 and a chassis 5, and the indoor side box 4 and the outdoor side box 1 are arranged on the chassis 5 at intervals between the front and rear.
  • a receiving groove 41 suitable for the window sash to extend into.
  • the window air conditioner 100 is adapted to be supported on a window on a wall, and a movable window sash is provided in the window, and the window sash can be moved up and down in the window to open or close the window.
  • the casing 10 is divided into an indoor side box 4 and an outdoor side box 1 by a containing groove 41. At least a part of the window sash can be extended into the containing groove 41.
  • the indoor side box 4 is provided with an indoor heat exchanger and an indoor fan.
  • the outdoor side box 1 is provided with an outdoor heat exchanger and an outdoor fan.
  • the cabinet 10 is divided into an indoor part and an outdoor part, and at least a part of the window sash can extend into the receiving groove 41.
  • This facilitates the installation of the window type air conditioner 100 into the window, facilitates the window type air conditioner 100 to cooperate with the window and the window sash, facilitates the improvement of the structural reliability and stability of the window type air conditioner 100 after installation, and facilitates the improvement of the window type air conditioner 100 The reliability of the work.
  • the accommodating groove 41 is recessed downward from the top wall of the cabinet 10, which not only makes the force of the window air conditioner 100 more uniform, but also prevents the top wall of the window air conditioner 100 from receiving more force. Damage occurs due to large size, and the installation reliability and working performance of the window air conditioner 100 are improved.
  • the top of the electric control box 6 is provided with a raised portion 61 that protrudes toward the top wall of the outdoor cabinet 1, and the raised portion 61 is connected to the fixing portion 11 to fix the electric control box 6 On the outdoor side cabinet 1.
  • the electric control box 6 is connected to the fixing portion 11 through the raised portion 61, so that rainwater can slide down along the raised portion 61 to prevent rainwater from being deposited on the top of the electric control box 6.
  • the window type air conditioner 100 includes: a casing 10, a compressor, and an air duct assembly.
  • the casing 10 is the machine of the window type air conditioner 100 in the above embodiment of the present application.
  • the casing 10, the compressor and the air duct assembly are all arranged in the outdoor side box 1.
  • the shielding area 15 shields at least part of the compressor and/or at least part of the outdoor air duct assembly, thereby preventing rainwater and compressor from entering the outdoor cabinet 1 through the ventilation area 14.
  • the window air conditioner 100 may be installed on the wall 20 provided with the window 22.
  • the size of the window 22 is generally larger than the size of the window air conditioner 100.
  • the bottom of the window air conditioner 100 is usually carried on the bottom wall 222 of the window 22, and other parts of the window air conditioner 100 are usually spaced from the corresponding wall surface of the window 22.
  • the top of the window air conditioner 100 is usually spaced from the top wall 224 of the window 22, and the side of the window air conditioner 100 is spaced from at least one of the left side wall 226 and the right side wall 228 of the window 22.
  • the shield 30 on the top wall 224 of the window 22 can move downwards, and the window 22 is closed in the space above the window type air conditioner 100, which separates indoor and outdoor to a certain extent. Avoid exchanging airflow between indoor and outdoor spaces.
  • the window 22 is a window, and the blocking member 30 may be a window sash, curtain, window shutter, or the like.
  • the window air conditioner 100 includes a chassis 11, an indoor-side component 12, and an outdoor-side component 13.
  • the indoor-side component 12 and the outdoor-side component 13 are both installed on the chassis 11 and separated by a certain distance.
  • a receiving groove 14 located between the indoor side component 12 and the outdoor side component 13 is defined.
  • the indoor side component 12 and the outdoor side component 13 are both provided on the chassis 11, that is, the indoor side component 12 and the outdoor side component 13 share the same chassis 11, and the chassis of the indoor side component 12 and the outdoor side component
  • the chassis of the component 13 is integrally formed.
  • the outdoor side assembly 13 includes the chassis 11, it can be considered that the chassis 11 of the outdoor side assembly 13 extends inward to form an extension, so that related elements of the indoor side assembly 12 are arranged on the extension.
  • the indoor side assembly 12 includes the chassis 11, it can be considered that the chassis 11 of the indoor side assembly 12 extends outward to form an extension, so that related elements of the outdoor assembly 13 are arranged on the extension.
  • the overall structure of the window type air conditioner 100 can be made more stable, which facilitates the installation of the overall structure of the window type air conditioner 100 on the window 22, and improves the installation efficiency of the window type air conditioner 100.
  • the indoor side component 12 and the outdoor side component 13 may each have their own chassis, the indoor side component 12 has an indoor side chassis, the outdoor side component 13 has an outdoor side chassis, and the indoor side chassis and the outdoor side chassis are separated Settings, independent of each other.
  • the window air conditioner 100 further includes a sealing strip 15.
  • the sealing strip 15 is movably connected with the chassis 11 and can be switched between the storage position and the sealing position. As shown in FIG. 7, when the sealing strip 15 is in the storage position, the sealing strip 15 is located in the containing groove 14. As shown in FIGS. 8 and 9, when the sealing strip 15 is in the sealing position, the sealing strip 15 is sealed between the bottom wall 222 of the window 22 and the blocking member 30 extending into the containing groove 14. The sealing strip 15 further separates indoor and outdoor.
  • sealing strips 15 there are two sealing strips 15, namely a left sealing strip and a right sealing strip.
  • the window air conditioner 100 further includes a partition assembly 16 which is provided on the chassis 11 and located between the indoor side assembly 12 and the outdoor side assembly 13. Therefore, the surface of the partition assembly 16 away from the chassis 11 is the bottom of the accommodating groove 14.
  • the refrigerant pipes, wires, etc. between the indoor side assembly 12 and the outdoor side assembly 13 can pass between the partition assembly 16 and the chassis 11, which can effectively protect the refrigerant pipes, wires and other components.
  • the sealing strip 15 is rotatably connected with the partition assembly 16.
  • the indoor side assembly 12 includes an indoor side box 122, an indoor fan, and an indoor heat exchanger.
  • the indoor side box 122 has an indoor side air inlet 122a and an indoor side air outlet 122b.
  • the indoor side box 122, indoor side fan and indoor side heat exchanger are all arranged on the chassis 11 (when the indoor side component 12 and the outdoor side component 13 do not share a chassis, the indoor side chassis can be a part of the indoor side box 122),
  • the indoor side fan and the indoor side heat exchanger are both located in the indoor side box 122.
  • indoor side fan When the indoor side fan is running, indoor air can flow into the indoor side box 122 through the indoor side air inlet 122a, exchange heat with the indoor side heat exchanger, and then flow into the room from the indoor side air outlet 122b.
  • the indoor side component 12 further includes a display component 124 disposed on the indoor side box 122 for displaying the temperature, humidity and other working parameters of the indoor side component 12.
  • the outdoor side assembly 13 includes an outdoor side box 400, an outdoor fan 500 and an outdoor heat exchanger 600.
  • the outdoor box 400 has an outdoor air inlet 402 and a vent 422a, and the vent 422a is an outdoor air outlet.
  • the outdoor side cabinet 400, the outdoor fan 500 and the outdoor heat exchanger 600 are all arranged on the chassis 11 (when the indoor side component 12 and the outdoor side component 13 do not share a chassis, the outdoor side chassis may be a part of the outdoor side box 400) , And the outdoor fan 500 and the outdoor heat exchanger 600 are both located in the outdoor side box 400.
  • outdoor fan 500 When the outdoor fan 500 is operating, outdoor air can flow into the outdoor cabinet 400 through the outdoor air inlet 402, exchange heat with the outdoor heat exchanger 600, and then flow into the outdoor from the vent 422a.
  • the outdoor side component 13 further includes a compressor 700, and the compressor 700, the indoor side heat exchanger and the outdoor heat exchanger 600 are connected by a refrigerant pipe 600a to form a refrigerant circulation structure.
  • the compressor 700 is arranged on the outdoor side assembly 13 to reduce the noise effect on the room when the compressor 700 is working.
  • the outdoor side assembly 13 further includes an electric control box 800 which is arranged in the outdoor side box 400.
  • the electric control box 800 can be connected to the indoor fan, indoor heat exchanger, display assembly 124 and other components of the indoor side assembly 12 through wires, and can also be connected to the outdoor fan 500, outdoor heat exchanger 600, and compressor of the outdoor side assembly 13 through wires. 700 and other components are connected.
  • the electric control box 800 is arranged in the outdoor side box 400 of the outdoor side assembly 13, so that there is no need to reserve the installation space of the electric control box 800 on the indoor side box 122, so that the volume of the indoor side box 122 can be reduced.
  • the window air conditioner 100 requires an installation space on the indoor side.
  • the outdoor side assembly 13 includes an outdoor side box 400, and the outdoor side box 400 includes an outer box A420 and a top cover A430.
  • the outer box A420 is a hollow structure with open ends. One end of the outer box A420 is provided on the outdoor chassis A410, and the top cover A430 is provided on the end of the outer box A420 away from the outdoor chassis A410.
  • the outer box A420 includes an air outlet A422.
  • the air outlet A422 is provided with a vent 422a.
  • the vent 422a is formed as an outdoor air outlet, and the vent 422a penetrates the air outlet in a first direction (for example, the up-down direction in FIG.
  • A422 is located on both sides in the first direction, and the air outlet portion A422 includes two shielding sides arranged at intervals along the second direction.
  • the two shielding sides are the first flange C422, the first flange A4222 and the first flange A4222.
  • the first direction is the arrangement direction of the outdoor chassis A410 and the top cover A430. When the user is facing the air outlet A422, the second direction may be the left-right direction.
  • the air outlet A422 includes the first flanging C422, the first flanging A4222 and the second flanging A4224, and the first flanging C422, the first flanging A4222 and the second flanging A4224 Defining the vent 422a can effectively reduce the obstruction of the air outlet A422 to the airflow, so that the vent 422a has a larger air volume, thereby improving the energy efficiency of the window air conditioner 100.
  • the outdoor side assembly 13 also includes an outdoor heat exchanger 600, the outdoor heat exchanger 600 is arranged in the outdoor side box 400, and the outdoor heat exchanger 600 is located at the air outlet A422, and the outdoor heat exchanger 600 has an air outlet surface A610.
  • the first flange C422, the first flange A4222 and the second flange A4224 are respectively buckled with two sides of the air outlet surface A610 in the second direction.
  • At least one of the first flange C422, the first flange A4222 and the second flange A4224 is indented outward in the second direction to form a flaring A422b to expose a part of the air outlet surface A610, so that the vent 422a has A larger air volume improves the energy efficiency of the window air conditioner 100.
  • the air outlet surface A610 includes a central air outlet area A612 and a first fastening area A614 and a second fastening area A616 located on the outer periphery of the central air outlet area A612.
  • the central air outlet area A612, the first buckling area A614, and the second buckling area A616 are roughly divided in the second direction by the dashed line a and the dashed line b.
  • the central air outlet area A612 is arranged corresponding to the vent 422a, and the first buckling area A614 and the second buckling area A616 are respectively buckled with the first flange C422, the first flange A4222 and the second flange A4224. In this way, not only can the air flow in the outdoor side box 400 be prevented from being directly discharged without passing through the outdoor heat exchanger 600 for heat exchange, but it also facilitates the firm fixation of the outdoor heat exchanger 600.
  • At least one of the first flanging C422, the first flanging A4222 and the second flanging A4224 is indented outward in the second direction to form a flaring A422b, so that a part of the first buckling area A614 and/or the first The two buckling areas A616 are exposed, which can further reduce the obstruction of the air outlet A422 to the airflow, so that the vent 422a has a larger air volume, thereby improving the energy efficiency of the window air conditioner 100.
  • the first flange C422 and the first flange A4222 are provided with a flaring A422b, and the second flange A4224 is not provided with a flaring A422b.
  • the refrigerant pipe 600a of the outdoor heat exchanger 600 is drawn from the side of the outdoor heat exchanger 600 close to the second buckling area A616, and is connected to the compressor 700.
  • the second flange A4224 can better shield the refrigerant tube 600a drawn from the side of the outdoor heat exchanger 600 close to the second buckling area A616.
  • the first flange C422 when the refrigerant tube 600a of the outdoor heat exchanger 600 is drawn from the middle of the air inlet surface of the outdoor heat exchanger 600, the first flange C422, the first flange A4222 and the second flange A4224 can be set There is a flaring A422b.
  • the outer box A420 is detachably connected to the chassis 11 shell, for example, the outer box A420 is detachably connected to the outdoor chassis A410 shell, and the top cover A430 is detachably connected to the outer box A420.
  • the outdoor side assembly 13 the outdoor fan 500, outdoor heat exchanger 600, compressor 700, electric control box 800 and other components can be assembled on the outdoor chassis A410 first, and then the outer box A420 is installed in the room.
  • the air outlet A422 is buckled on the outdoor heat exchanger 600, and the top cover A430 is set on the outer box A420.
  • the outer box A420 is a square tube.
  • the outer box A420 also includes a first side panel A424, a second side panel A426, and a third side panel A428 that are connected in sequence.
  • the first side panel A424 is opposite to the third side panel A428, and the second side panel A426 is in front of the air outlet A422. Correct.
  • the second side plate A426 is located on the side of the outer box A420 close to the indoor side assembly 12, and the air outlet A422 is located on the side of the outer box A420 far away from the indoor side assembly 12.
  • the air outlet A422 and the second side plate A426 are respectively located in the front-rear direction, and the first side plate A424 and the third side plate A428 are respectively located in the left-right direction. In this way, it is more conducive to the air flow to the outdoors.
  • the air outlet portion A422 and the second side plate A426 may also be located in the left-right direction, while the first side plate A424 and the third side plate A428 are located in the front-rear direction.
  • the first side panel A424, the second side panel A426, the third side panel A428, and the top cover A430 are all air inlet panels, and the outdoor side air inlet 402 is opened on the air inlet panel.
  • Four directions of air intake can make the air intake area larger, the air intake volume is larger, and the energy efficiency of the outdoor side component 13 is higher.
  • the wind can be introduced in one or two directions.
  • the outdoor fan 500 is located on the side of the outdoor heat exchanger 600 away from the air outlet A422, and the electric control box 800 is located on the side of the outdoor fan 500 away from the outdoor heat exchanger 600.
  • the airflow entering through the outdoor air inlet 402 of the second side plate A426 is at least partially directly blown to the electric control box 800 to dissipate heat for the electric control box 800. In this way, the heat dissipation of the electric control box 800 is very beneficial, so that the electric control box 800 has a longer service life.
  • the first side plate A424, the second side plate A426, the third side plate A428 and the air outlet A422 are integrally formed. In this way, it is very convenient to form the outer box A420, and it is very convenient to disassemble and assemble the outdoor side assembly 13.
  • the flaring A422b extends along the first direction (up and down direction) in a long strip shape, the two ends of the flaring A422b are respectively provided with connecting parts, and the two connecting parts are the first protrusions A422c and The second protrusion A422d. In this way, it is not only convenient to buckle with the outdoor heat exchanger 600, but also very convenient to bend to form an integrated outer box A420.
  • one end of the flaring A422b is a protrusion, and the other end is an opening.
  • reinforcing ribs A429 are provided on the second side plate A426 to prevent the second side plate A426 from bulging and deforming outward.
  • the first side plate A424, the third side plate A428, etc. have a pressing force on the second side plate A426, the second side plate A426 is prone to bulge and deform outwards.
  • the provision of the reinforcing rib A429 can effectively avoid the second side plate A426.
  • the side plate A426 bulges and deforms outward.
  • the reinforcing rib A429 is located between the outdoor side chassis A410 and the outdoor side air inlet 402 of the second side panel A426, that is, the reinforcing rib A429 is provided on the second side panel A426 close to the outdoor side chassis A410 area. In this way, the second side plate A426 can be further prevented from bulging and deforming outward.
  • the reinforcing rib A429 includes a horizontal bar 4292 and a vertical bar 4294.
  • the horizontal bar 4292 is approximately parallel to the outdoor chassis A410.
  • the vertical bars 4294 are connected to the horizontal bars 4292, and the vertical bars 4294 are multiple, and the multiple vertical bars 4294 are arranged along the horizontal bars 4292 at parallel intervals. In this way, not only can the second side plate A426 be prevented from bulging and deformed outwards, but also the overall weight of the reinforcing rib A429 can be lower.
  • the vertical bar 4294 is located between the horizontal bar 4292 and the outdoor chassis A410. In this way, the second side plate A426 can be further prevented from bulging and deforming outward.
  • the outdoor side box 400 of the outdoor side assembly 13 includes a top cover B410 and an air outlet B432.
  • the top cover B410 is an air inlet plate, and the air inlet plate is provided with an outdoor side air inlet 402.
  • the air outlet B432 is provided with a vent 422a, and the vent 422a is an outdoor side air outlet.
  • the top cover B410 includes a first part B410a and a second part B410b.
  • the dotted line X in the embodiment shown in FIGS. 14-23 is the location of the interface between the first part B410a and the second part B410b.
  • the first part B410a and the second part B410b are arranged along the axial direction of the outdoor fan 500, and the first part B410a is closer to the air outlet B432 than the second part B410b.
  • the outdoor fan 500 is an axial fan.
  • the axial direction of the outdoor fan 500 is the arrangement direction of the outdoor side assembly 13 to the indoor side assembly 12, that is, the front-rear direction in the illustrated embodiment.
  • the air outlet B432 is located on the side of the outdoor box 400 away from the indoor assembly 12, that is, the air outlet B432 is located on the front side of the outdoor box 400.
  • the axial direction of the outdoor fan 500 may also be left and right. In this case, the air outlet B432 is located on the left or right of the outdoor box 400.
  • the second part B410b includes a fan protection area B412 and an air inlet area B414.
  • the fan protection area B412 is directly connected to the first part B410a, that is, the fan protection area B412 is formed from the interface between the first part B410a and the second part B410b and extends toward the second part B410b.
  • the outdoor side air inlet 402 includes an air inlet 402a and an air inlet 402b
  • the fan protection area B412 is the area enclosed by the dashed line X and the elongated air inlet B402a and the air inlet B402b.
  • the outdoor side air inlet 402 is located in the air inlet area B414, and the outdoor side air inlet 402 includes a plurality of elongated air inlet holes B402a and air inlet holes B402b.
  • the area where the elongated air inlet holes B402a and B402b are located is the air inlet area B414.
  • the air inlet area B414 is set around the fan protection area B412.
  • the air inlet area B414 may completely surround the fan protection area B412 at the boundary of the second part B410b, or it may partially surround the fan protection area B412 at the boundary of the second part B410b.
  • the air inlet area B414 can surround at least one corner of the fan protection area B412, so that the air inlet area B414 has a turning point, so that the air inlet area B414 has long and short air inlet holes of different lengths.
  • the fan protection area B412 is square, the fan protection area B412 is located in the second part B410b, and the boundary of the second part B410b is square, and the air inlet area B414 completely surrounds the fan protection area B412 and is located in the second part B410b. Borders. In other embodiments, the air inlet area B414 may also only surround the fan protection area B412 and be located on the adjacent two sides of the second part B410b.
  • the air inlet area B414 is arranged around the fan protection area B412, so that the air inlet area B414 has air inlet holes B402a and air inlet holes B402b of different lengths.
  • the longer air inlet holes B402a can increase the air inlet volume and make the window air conditioner 100 has high energy efficiency, and the short-length air inlet B402a can provide installation space for the fan protection area B412, thereby effectively protecting the outdoor fan 500.
  • the outdoor side air inlet 402 includes a plurality of original air inlet holes B402a, and the plurality of original air inlet holes B402a are arranged in parallel and spaced along the left and right directions, and define the second portion B410b.
  • the fan protection zone B412 shortens the length of part of the original air inlet hole B402a and becomes a new air inlet hole B402b.
  • the plurality of original air inlet holes B402a are arranged in parallel and spaced along the front and rear direction, and define a second part B410b, and the fan protection area B412 divides part of the original air inlet holes B402a into two new air inlet holes.
  • the fan protection area B412 is used to shield the outdoor fan 500 in the up and down direction to prevent outdoor debris from directly falling on the outdoor fan 500.
  • the fan protection area B412 is used to shield the outdoor fan 500 in the up and down direction to prevent outdoor debris from directly falling on the outdoor fan 500.
  • the probability of mechanical damage caused by sundries such as sand and dust directly falling on the outdoor fan 500 can be effectively reduced, and the outdoor fan 500 can be effectively protected.
  • it can also effectively reduce the probability of problems such as poor circuit caused by rainwater and other sundries directly falling on the outdoor fan 500.
  • the outdoor side assembly 14 further includes a rear panel B900.
  • the rear wall B900 is arranged in the outdoor side box 400 and is located between the outdoor fan 500 and the air outlet B432, and the outdoor heat exchanger 600 is arranged between the rear wall B900 and the air outlet B432.
  • the rear wall B900 defines an airflow channel B902 to guide the airflow generated by the outdoor fan 500.
  • the rear panel of the rear panel B900 away from the air outlet B432 defines the first part B410a and the second part B410b, that is, the rear panel of the rear panel B900 away from the air outlet B432 is roughly the size of the first part B410a and the second part B410b Interface.
  • the rear wall B900 will block the air intake holes located above the top of the rear wall B900. Setting the air intake holes above the top of the rear wall B900 has little help to the air intake. Therefore, the rear wall The end surface of B900 away from the air outlet B432 serves as the interface between the first part B410a and the second part B410b.
  • the outdoor fan 500 includes a motor B510 and a wind wheel B520.
  • the wind wheel B520 includes a hub B522 and a wind blade B524 that are connected.
  • the hub B522 is sleeved on the output shaft B512 of the motor B510.
  • the wind turbine protection zone B412 can directly face the wind blade B524.
  • one end of the fan blade B524 is connected to the hub B522, and the other end extends into the air flow channel B902.
  • the fan protection zone B412 can directly face the end of the wind blade B524 close to the hub B522. In this way, the fan blade B524 can be protected more effectively.
  • the hub B522 is at least partially located outside the airflow channel B902.
  • the projection of the side of the fan protection zone B412 away from the first part B410a toward the hub B522 is located on the hub B522. That is, in some embodiments of the present application, the fan protection area B412 can shield the fan blades B524, and at the same time can shield at least a part of the hub B522. In this way, the fan blade B524 can be protected more effectively.
  • the hub B522 and the blades B524 of the wind wheel B520 are completely located in the airflow channel B902, and the fan protection area B412 is directly opposite to the motor B510. At this time, the fan protection zone B412 mainly shields the motor B510.
  • the outdoor side assembly 13 further includes a fan bracket B910 arranged in the outdoor side box 400.
  • the fan bracket B910 includes a mounting base B912 and a support rod B914.
  • the motor B510 is installed on the mounting base B912.
  • the mounting base B912 can not only fix the motor B510, but also protect the motor B510 from being affected by outdoor debris.
  • One end of the support rod B914 is connected to the mounting base B912, and the other end is connected to the rear wall B900.
  • the support rod B914 is provided to facilitate the firm fixation of the outdoor fan 500.
  • the mounting seat B912, the support rod B914, and the rear panel B900 are integrally formed.
  • the fan protection zone B412 is located between two adjacent support rods B914. In this way, mutual interference between the fan protection zone B412 and the support rod B914 can be avoided. Specifically, in some embodiments of the present application, there are two support rods B914.
  • the outdoor side box 400 further includes an outdoor side chassis B420 and an outer box B430.
  • the outer box B430 is a hollow structure with open ends. One end of the outer box B430 is provided on the outdoor side chassis B420, and the top cover B410 is provided on the end of the outer box B430 away from the outdoor side chassis B420.
  • the air outlet B432 is located on the outer box B430.
  • the outdoor heat exchanger 600, the compressor 700, the electric control box 800, the rear wall B900, the mounting seat B912 and other components are all arranged on the outdoor chassis B420.
  • the outer box B430 is oriented and includes three side panels and an air outlet part B432 connected in sequence. The three side panels are all provided with an outdoor side air inlet 402. The air intake in multiple directions can increase the air intake area, thereby improving the energy efficiency of the window air conditioner 100.
  • the outer box B430 and the outdoor chassis B420 are detachably connected.
  • the top cover B410 is detachably connected with the outer box B430. In this way, it is very easy to disassemble and assemble.
  • the outer box B430 and the outdoor chassis B420 are fixed by screws.
  • the top cover B410 is screwed to the outer box B430. More specifically, in some embodiments of the present application, the top cover B410 and the top of the rear panel B900 are fixed with screws. This not only facilitates the firm assembly of the top cover B410, but also prevents the rear panel B900 from shaking.
  • the first part B410a is provided with two first mounting holes B411 for screws to pass through.
  • the compressor 700 in the arrangement direction (front-rear direction) of the outdoor side assembly 13 to the indoor side assembly 12, the compressor 700 is located on the left side of the outdoor fan 500, and the electric control box 800 is located behind the outdoor fan 500. side. Both the outdoor fan 500 and the compressor 700 are electrically connected to the electric control box 800, and may also be electrically connected in a wired manner, or may be electrically connected in a wireless manner. In other embodiments, the compressor 700 may also be located on the right side of the outdoor fan 500.
  • the outdoor fan 500 and the electric control box 800 are electrically connected in a wired manner. Since the electric control box 800 is located behind the outdoor fan 500, the electric control box 800 can shield and connect the outdoor fan 500 and the electric control box. 800 wire.
  • the compressor 700 and the electric control box 800 are electrically connected by wires.
  • the following scheme is designed:
  • the top cover B410 includes a third part B410c, and the first part B410a, the second part B410b, and the third part B410c are sequentially arranged along the axial direction of the outdoor fan 500.
  • the dotted line Y in the illustrated embodiment is the location of the interface between the second part B410b and the third part B410c.
  • the second part B410b also includes a wiring protection area B416.
  • the wiring protection area B416 is directly connected to the third part B410c.
  • the air inlet area B414 is arranged around the wiring protection area B416.
  • the design idea of setting the air inlet area B414 around the wiring protection area B416 is roughly the same as the design idea of setting the air inlet area B414 around the fan protection area B412, and will not be described in detail here.
  • the wiring protection area B416 shields the wires in the up and down direction to prevent outdoor sundries from directly falling on the wires. In this way, it can effectively prevent outdoor rainwater and other sundries from directly falling on the wires, which may cause poor electrical properties. Specifically, the wiring protection area B416 shields the G in FIG. 22.
  • the projection of the side of the second part B410b close to the air outlet B432 toward the electric control box 800 is located on the electric control box 800, that is, the interface between the second part B410b and the third part B410c passes through After the electric control box 800, that is, the dotted line Y can fall on the electric control box 800.
  • part of the air inlet 402a and the air inlet 402b may be located on the electric control box 800, so that the airflow entering the outdoor box 400 from the top cover B410 can dissipate heat for the electric control box 800.
  • the top cover B410 is fastened to the top of the electric control box 800 with screws. In this way, the top cover B410 can be firmly fixed, and the electric control box 800 can be prevented from shaking.
  • the second part B410b further includes a screw fixing area B417, the screw fixing area B417 is directly connected to the third part B410c, and the air inlet area B414 is arranged around the screw fixing area B417.
  • the air inlet area B414 is arranged around the screw fixing area B417, which is roughly the same as the above-mentioned design idea of the air inlet area B414 around the fan protection area B412, and will not be described in detail here.
  • the screw fixing area B417 is provided with two second mounting holes B413 for screws to pass through.
  • the screw fixing area B417 is located between the two first mounting holes B411. In this way, it is advantageous for the top cover B410 to be firmly fixed.
  • the screw fixing area B417 and the fan protection area B412 are arranged at intervals in the front-rear direction, that is, the screw fixing area B417 and the fan protection area B412 are arranged directly opposite to each other in the front-rear direction. In this way, the debris falling on the outdoor fan 500 can be further reduced.
  • the top cover B410 includes a fourth portion B410d, and the fourth portion B410d is located at the same end of the first portion B410a, the second portion B410b, and the third portion B410c.
  • the dotted line Z in the illustrated embodiment is the location of the interface between the fourth part B410d and the first part B410a, the second part B410b, and the third part B410c.
  • the fourth portion B410d shields the compressor 700 in the up and down direction.
  • the dotted line Z is the location of the interface between the fourth part B410d and the air inlet area B414.
  • the fourth part B410d includes a compressor protection zone B418 and a reference zone B419 located on the periphery of the compressor protection zone B418.
  • the compressor protection zone B418 is directly opposite to the top of the compressor 700.
  • the inside of the compressor protection area B418 is sunken outward to form a protection groove B4182, and a boss B4184 protruding from the outside of the reference area B419 is formed in the compressor protection area B418.
  • the distance between the bottom of the protection groove B4182 and the top of the compressor 700 is greater than the distance between the inner side of the reference zone B419 and the top of the compressor 700, so as to protect the compressor 700 when the top cover B410 is impacted.
  • the top of the compressor 700 refers to the location where the highest point of the compressor 700 is located.
  • the window air conditioner 100 needs to go through an anti-fall test before leaving the factory. In the anti-fall test, when the top cover B410 is impacted, the boss B4184 and the protective groove B4182 can effectively prevent the top of the compressor 700 from being damaged by the impact.
  • the height of the boss B4184 protruding from the outside of the reference area B419 is 3-20 mm. If the boss B4184 is too high, it will affect the overall height of the window air conditioner 100, and if the boss B4184 is too low, the effect of preventing the top of the compressor 700 from being damaged due to collision is unsatisfactory. Based on the above reasons, the height of the boss B4184 protruding from the outside of the reference area B419 is 3-20 mm.
  • the outdoor side box 400 includes a second side plate C410 facing the indoor side assembly 12, a fourth side plate C420 opposite to the second side plate C410, and a connection between the second side plate C410 and the second side plate C410.
  • the outdoor air inlet 402 of the outdoor cabinet 400 includes a first outdoor air inlet 402, the second side plate C410 is provided with a first outdoor air inlet 402a, and the fourth side plate C420 is provided with a vent 422a.
  • the vent 422a is Outdoor side air outlet.
  • the electric control box 800 is arranged in the outdoor cabinet 400 and is located on the airflow path from the first outdoor air inlet 402a to the vent 422a, so that the airflow entering the outdoor cabinet 400 through the first outdoor air inlet 402a is at least Part of it is directly blown to the electric control box 800 to dissipate heat for the electric control box 800.
  • the outdoor side box body and the indoor side box body are integrally formed, which is not conducive to the heat dissipation of the electric control box.
  • the indoor side assembly 12 and the outdoor side assembly 13 are spaced apart, so that the first outdoor side air inlet 402a can be opened on the second side plate C410, and the electric control box 800 can be installed on the first side panel C410.
  • the airflow path from the outdoor air inlet 402a to the vent 422a, and the airflow entering the outdoor cabinet 400 through the first outdoor air inlet 402a is directly blown to the electric control box 800, which is very conducive to the heat dissipation of the electric control box 800.
  • the outdoor fan 500 is provided between the second side plate C410 and the fourth side plate C420, the outdoor heat exchanger 600 is located at one end of the outdoor fan 500 close to the fourth side plate C420, and the electric control box 800 It is located at one end of the outdoor fan 500 close to the second side plate C410. That is, the electric control box 800 is closer to the indoor side assembly 12, thereby reducing the bad influence of outdoor rainwater on the electric control box 800.
  • the electric control box 800 is disposed adjacent to the second side plate C410, and in the direction from outdoor to indoor (front-rear direction), the electric control box 800 and the second side plate C410 are separated by a certain distance (for example, 10-40 mm). In this way, it is not only convenient for the electric control box 800 to dissipate heat, but also can further reduce the adverse effects of outdoor rainwater on the electric control box 800.
  • the orthographic projection of the electric control box 800 on the second side plate C410 covers a part of the first outdoor air inlet 402a, so that airflow can pass through the uncovered part of the first outdoor air inlet 402a Directly reach the outdoor fan 500.
  • the outdoor fan 500 can introduce the airflow from the first outdoor side air inlet 402a into the outdoor side box 400.
  • the orthographic projection of the electric control box 800 on the second side plate C410 can also completely cover the first outdoor side air inlet 402a. At this time, the airflow flows from the electric control box 800 to the second side plate C410. The gap flows to the outdoor fan 500.
  • the orthographic projection of the electrical control box 800 on the second side plate C410 covers 1/3-2/3 times the first outdoor side air inlet 402a. In this way, the air inlet effect of the first outdoor side air inlet 402a and the heat dissipation effect of the electric control box 800 can be better considered.
  • the circumferential plate C430 is provided with a second outdoor side air inlet 402b.
  • the outdoor side air inlet 402 of the outdoor side box 400 includes a first outdoor side air inlet 402 and a second outdoor side air inlet 402b, that is, the outdoor side box 400 can enter air from at least two directions, and the air inlet area is large. , The air intake is large, and the outdoor side module 13 has high energy efficiency.
  • the circumferential plate C430 includes a plurality of plate bodies C432, and the plurality of plate bodies C432 are sequentially connected along the circumference of the outdoor side box 400 to form a bent plate, that is, two adjacent plate bodies C432 intersect ,Not parallel.
  • each board C432 is provided with a second outdoor side air inlet 402b. In this way, the air inlet area can be larger, the air inlet volume can be larger, and the energy efficiency of the outdoor side assembly 13 can be higher.
  • the three plate bodies C432 there are three plate bodies C432, and the three plate bodies C432 are enclosed to form a U-shaped structure.
  • the direction from outdoor to indoor is the front-rear direction
  • the three plate bodies C432 are the first side plate C432a, the third side plate C432c, and the top cover C432b, respectively.
  • the first side panel C432a, the third side panel C432c, the second side panel C410, and the fourth side panel C420 are integrally formed to form a frame structure, and the top cover C432b is detachably connected to the frame structure.
  • the outdoor fan 500, outdoor heat exchanger 600, compressor 700, electric control box 800 and other components can be assembled on the chassis 11 first, and then the frame structure is placed on the chassis 11, and finally Set the top cover C432b on the frame structure.
  • the first outdoor side air inlet 402a includes a plurality of first elongated holes, and the plurality of first elongated holes are arranged in parallel and spaced apart.
  • the second outdoor side air inlet 402b includes a plurality of second elongated holes, and the plurality of second elongated holes are arranged in parallel and spaced apart.
  • the vent 422a penetrates the upper and lower sides of the fourth side plate C420 in the up and down direction, so that the fourth side plate C420 includes a first flange C422 and a first flange C422.
  • the first flange C422 and the second flange C424 are buckled on the left and right sides of the outdoor heat exchanger 600, and the airflow passes through the outdoor heat exchanger 600 and is discharged from the vent 422a.
  • the vent 422a not only can the vent 422a have a larger air outlet area, a larger air volume, and the energy efficiency of the outdoor side assembly 13 is higher, but also the outdoor heat exchanger 600 can be easily fixed.

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Abstract

一种窗式空调器(100)的机壳(10(和窗式空调器(100),窗式空调器(100)包括压缩机和室外风道组件,机壳(10)包括室外侧箱体(1),压缩机和室外风道组件适于设置在室外侧箱体(1)内,室外侧箱体(1)的顶部设有通风区域(14)和遮挡区域(15),遮挡区域(14)适于与至少部分压缩机和/或至少部分室外风道组件正对设置。

Description

窗式空调器的机壳和窗式空调器
相关申请的交叉引用
本申请基于申请号为201922500842.4、申请日为2019年12月31日的中国专利申请;申请号为201922501604.5、申请日为2019年12月31日的中国专利申请;申请号为201922501765.4、申请日为2019年12月31日的中国专利申请;申请号为201922494925.7、申请日为2019年12月31日的中国专利申请;申请号为201922494998.6、申请日为2019年12月31日的中国专利申请以及申请号为201922497417.4、申请日为2019年12月31日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
本申请涉及空调领域,尤其是涉及一种窗式空调器的机壳和窗式空调器。
背景技术
在相关技术中,外界的杂物或雨水会通过通风口进入到窗式空调器内,以影响窗式空调器内的压缩机或风机等部件的运行,造成窗式空调器的运行不稳定。
发明内容
本申请旨在至少解决相关技术中存在的技术问题之一。
为此,本申请提出一种窗式空调器的机壳,以使窗式空调器的运行更稳定。
本申请还提出一种具有上述机壳的窗式空调器。
根据本申请第一方面的窗式空调器的机壳,所述窗式空调器包括压缩机和室外风道组件,所述机壳包括:室外侧箱体,所述压缩机和所述室外风道组件适于设置在所述室外侧箱体内,所述室外侧箱体的顶部设有通风区域和遮挡区域,所述遮挡区域适于与至少部分所述压缩机和/或至少部分所述室外风道组件正对设置。
根据本申请的窗式空调器的机壳,通过使遮挡区域遮挡至少部分压缩机和/或至少部分室外风道组件,进而避免通过通风区域进入到后箱体内的雨水或杂物与压缩机和/或室外风道组件接触,以达到保护压缩机和/或室外风道组件的目的,从而使得窗式空调器的运行更稳定。
在一些实施例中,所述遮挡区域的一部分与所述压缩机的电机线正对设置,所述遮挡区 域的另一部分与所述室外风道组件的电机线正对设置。
在一些实施例中,所述遮挡区域包括间隔设置的第一遮挡部和第二遮挡部,所述第一遮挡部与所述压缩机的电机线正对设置,所述第二遮挡部与所述室外风道组件的风叶正对设置。
在一些实施例中,所述遮挡区域由所述室外侧箱体的部分顶壁限定出。
在一些实施例中,所述通风区域包括多个间隔设置的第一通风口,部分所述第一通风口的长度小于邻近其的所述第一通风口的长度以限定出所述遮挡区域。
在一些实施例中,所述机壳还包括:室内侧箱体和底盘,所述室内侧箱体与所述室外侧箱体前后间隔设置在所述底盘上以限定出适于窗扇伸入的容纳槽,所述室外侧箱体朝向所述室内侧箱体的侧面为内侧面,所述内侧面上设有第二通风口。
在一些实施例中,所述内侧面上设有加强部,所述加强部包括第一加强筋以及连接在所述第一加强筋上的多个第二加强筋。
在一些实施例中,所述窗式空调器包括室外换热器,所述机壳还包括:底盘,所述室外侧箱体设在所述底盘上,所述室外换热器适于放置在所述底盘上且适于设在所述室外侧箱体内,所述室外侧箱体包括顶盖和顶部设有开口的外箱,所述顶盖盖设在所述开口上,所述外箱的周向上间隔设有多个第一连接部,所述顶盖的周向上间隔设有多个第二连接部,多个所述第一连接部一一对应地与多个所述第二连接部相接触;多个固定件,每个所述第一连接部和相应的所述第二连接部均通过所述固定件连接以将所述顶盖连接在所述外箱上。
在一些实施例中,所述顶盖上设有侧边,所述侧边围绕所述外箱设置,部分所述侧边朝向所述外箱凹陷以限定出多个所述第二连接部;和/或,所述外箱的部分侧壁朝向所述顶盖凸起限定出多个所述第一连接部。
在一些实施例中,所述外箱的外侧面上设有通风口,所述通风口的至少一个侧壁上设有朝外凹入的扩口以增加通风量。
在一些实施例中,所述通风口的侧壁上设有位于所述扩口两侧的连接部,两侧的所述连接部分别与所述底盘和顶盖相连。
在一些实施例中,所述外箱的外侧面上设有通风口,所述通风口的至少一个侧壁设有遮挡侧边,所述遮挡侧边与所述室外换热器的换热管正对设置以遮挡所述换热管。
在一些实施例中,所述底盘上设有第一通孔,穿过所述第一通孔的第一固定连接件适于固定在所述室外换热器上,所述外箱上设有第二通孔,穿过所述第二通孔的第二固定连接件适于固定在所述室外换热器上,所述第一通孔和所述第二通孔正对设置。
在一些实施例中,所述窗式空调器包括电控盒,所述室外风道组件包括室外风机,所述机壳还包括:后围板,所述后围板设置在所述室外侧箱体内,所述室外风机适于固定在所述后围板上,所述电控盒适于放置在所述室外侧箱体内,所述室外侧箱体的顶部设有固定部,所述固定部与所述电控盒和/或所述后围板相连以限制所述电控盒相对于所述后围板的位置。
在一些实施例中,所述固定部包括第一安装部和第二安装部,所述第一安装部适于与所述电控盒相连,所述第二安装部与所述后围板相连。
在一些实施例中,所述机壳还包括:密封件,所述密封件密封设置在所述后围板与所述室外侧箱体的顶壁之间。
在一些实施例中,所述室外侧箱体的顶壁设有避让部,所述避让部适于与部分所述压缩机正对设置以避让所述压缩机。
在一些实施例中,所述机壳还包括:室内侧箱体和底盘,所述室内侧箱体与所述室外侧箱体前后间隔设置在所述底盘上以限定出适于窗扇伸入的容纳槽。
根据本申请第二方面的窗式空调器,包括:机壳,所述机壳为根据本申请上述第一方面的窗式空调器的机壳;压缩机和室外风道组件,所述压缩机和所述室外风道组件均设置在所述室外侧箱体内。
根据本申请的窗式空调器,通过采用上述的机壳,可以使得窗式空调器的运行更稳定。
在一些实施例中,所述窗式空调器适合于安装在开设有窗口的墙体上,所述窗式空调器包括底盘及设于所述底盘上的室内侧组件与室外侧组件,所述室外侧组件包括:所述室外侧箱体,包括外箱及顶盖,所述外箱设于所述底盘上,所述顶盖设于所述外箱远离所述底盘的一端,所述外箱包括出风部,所述出风部开设有通风口,所述通风口形成为室外侧出风口且沿第一方向贯穿所述出风部的两侧,并使得所述出风部包括沿第二方向间隔排布的第一翻边及第二翻边,所述第一方向为所述底盘与所述顶盖的排布方向;室外换热器,设于所述室外侧箱体内,并位于所述出风部处,所述室外换热器具有出风面,所述第一翻边及所述第二翻边分别与所述出风面位于所述第二方向上的两侧扣接,其中,所述第一翻边与所述第二翻边中的至少一者在所述第二方向上向外侧、内陷形成扩口,以露出部分所述出风面。
在一些实施例中,所述出风面包括中心出风区及位于所述中心出风区外周的第一扣接区及第二扣接区,所述中心出风区与所述通风口对应设置,所述第一翻边及所述第二翻边分别与所述第一扣接区及所述第二扣接区扣接,所述室外侧组件还包括位于所述外箱内的压缩机,所述压缩机设于所述底盘,所述室外换热器的冷媒管自所述室外换热器靠近所述第 二扣接区的一侧引出,并与所述压缩机连接,所述第一翻边开设有所述扩口,所述第二翻边遮蔽引出的所述冷媒管。
在一些实施例中,所述外箱为方筒,所述外箱还包括依次连接的第一侧板、第二侧板及第三侧板,所述第一侧板与第三侧板相对,所述第二侧板与所述出风部正对,所述第一侧板、所述第二侧板、所述第三侧板及所述出风部一体成型,所述第一侧板、所述第二侧板、第三侧板及所述顶盖均为进风板,所述进风板上开设有室外侧进风口。
在一些实施例中,所述扩口沿所述第一方向延伸呈长条状,所述扩口的两端部分别设置连接部。
在一些实施例中,所述第二侧板上设置有加强筋,所述加强筋位于所述底盘与所述第二侧板的所述室外侧进风口之间,以避免所述第二侧板向外***变形。
在一些实施例中,所述窗式空调器适合于安装在开设有窗口的墙体上,所述窗式空调器包括室内侧组件与室外侧组件,所述室外侧组件与所述室内侧组件在室外至室内的方向上间隔、并限定出容纳槽,所述窗式空调器具有室外侧进风口,所述室外侧进风口包括第一室外侧进风口,其中,所述室外侧组件包括:所述室外侧箱体,包括朝向所述室内侧组件的第二侧板、与所述第二侧板相对的第四侧板,以及连接所述第二侧板及所述第四侧板的周向板,所述第二侧板开设有所述第一室外侧进风口,所述第四侧板开设有通风口;以及电控盒,设于所述室外侧箱体内,并位于所述第一室外侧进风口至所述通风口的气流路径上,以使得经所述第一室外侧进风口进入所述室外侧箱体的气流至少部分直接吹至所述电控盒上,为所述电控盒散热。
在一些实施例中,所述室外侧组件还包括室外风机,所述室外风机设于所述室外侧箱体内,并位于所述第二侧板与所述第四侧板之间,所述电控盒位于所述室外风机靠近所述第二侧板的一端。
在一些实施例中,在室外至室内的方向上,所述电控盒与所述第二侧板间隔10毫米-40毫米。
在一些实施例中,所述电控盒位于所述第二侧板上的正投影覆盖部分所述第一室外侧进风口,以使得气流能经未被覆盖的部分所述第一室外侧进风口直接到达所述室外风机。
在一些实施例中,所述室外侧进风口还包括第二室外侧进风口,所述周向板包括多块板体,多块所述板体沿所述室外侧箱体的周向依次连接形成弯折板,每一所述板体开设有所述第二室外侧进风口,所述板体为三块,三块所述板体围合形成U形结构且分别为第一侧板、第三侧板和顶盖,所述第一侧板、所述第三侧板、所述第二侧板及所述第四侧板一体成型构成框结构,所述顶盖与所述框结构可拆卸连接,所述第一室外侧进风口包括多条平 行间隔排布的第一长条孔,所述第二室外侧进风口包括多条平行间隔排布的第二长条孔。
在一些实施例中,所述窗式空调器适合于安装在开设有窗口的墙体上,所述窗式空调器还包括底盘、密封条、室内侧组件和室外侧组件,所述室内侧组件与所述室外侧组件均设于所述底盘上,且所述室外侧组件与所述室内侧组件在室外至室内的方向上间隔、并限定出容纳槽,所述密封条与所述底盘活动连接,能在收容位置与密封位置之间切换,当所述密封条处于所述收容位置时,所述密封条位于所述容纳槽内,当所述密封条处于密封位置时,所述密封条密封在所述窗口的底壁与伸入所述容纳槽的遮挡件之间。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1为根据本申请一个实施例的窗式空调器的立体结构示意图;
图2为根据本申请一个实施例的室外侧箱体的立体结构示意图;
图3为根据本申请一个实施例的机壳的***图;
图4为图3中A处的局部放大图;
图5为根据本申请一个实施例的机壳另一个视角的***图;
图6为根据本申请一个实施例的室外侧箱体另一个视角的立体结构示意图
图7为根据本申请一个实施例的窗式空调器的密封条处于收容位置的立体结构示意图;
图8为本申请一实施例的窗式空调器的密封条处于密封位置的立体结构示意图;
图9为图8所示的窗式空调器安装于墙体后的室内侧的结构示意图;
图10为根据本申请一个实施例的窗式空调器的密封条介于收容位置与密封位置之间的立体结构示意图;
图11为图7所示的窗式空调器的另一视角的立体结构示意图;
图12为图7所示的窗式空调器省略室内侧组件后的立体结构的部分分解示意图;
图13为图7中的室外侧箱体的立体结构的部分结构示意图;
图14为根据本申请一个实施例的窗式空调器的密封条介于收容位置与密封位置之间的立体结构示意图;
图15为图14所示的窗式空调器的主视图;
图16为沿图15中的B-B线的剖面示意图;
图17为沿图15中的C-C线的剖面示意图;
图18为沿图15中的D-D线的剖面示意图;
图19为沿图15中的A-A线的剖面示意图;
图20为图14所示的窗式空调器的室外侧组件的立体结构的示意图;
图21为图20所示的窗式空调器的室外侧组件的部分分解立体结构的示意图;
图22为图20所示的窗式空调器的室外侧组件省略室外侧壳体后的立体结构的示意图;
图23为图20所示的窗式空调器的室外侧组件的剖面示意图;
图24为根据本申请一个实施例的窗式空调器的立体结构示意图;
图25为图24所示的窗式空调器的另一视角的立体结构示意图;
图26为图24所示的窗式空调器省略室内侧组件后的立体结构的部分分解示意图;
图27为沿图26中的A-A线的剖面示意图;
图28为图26中的B处的局部放大示意图;
图29为图24中的室外侧壳体的立体结构示意图。
具体实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本申请,而不能理解为对本申请的限制。
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”、“顺时针”、“逆时针”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,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,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。
另外,若全文中出现的“和/或”的含义为,包括三个并列的方案,以“A和/或B”为例,包括A方案,或B方案,或A和B同时满足的方案。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
下面参考图1-图6描述根据本申请实施例的窗式空调器100的机壳10,窗式空调器100包括室外换热器、电控盒6、压缩机和室外风道组件,室外风道组件包括室外风机,该室外风机可以是轴流风机。
根据本申请实施例的窗式空调器100的机壳10,包括:室外侧箱体1,压缩机和室外风道组件适于设置在室外侧箱体1内,室外侧箱体1的顶部设有通风区域14和遮挡区域15,遮挡区域15适于与至少部分压缩机和/或至少部分室外风道组件正对设置。
根据本申请实施例的窗式空调器100的机壳10,通风区域14可以是窗式空调器100的进风口,通过使遮挡区域15遮挡至少部分压缩机和/或至少部分室外风道组件,进而避免通过通风区域14进入到室外侧箱体1内的雨水或杂物与压缩机和/或室外风道组件接触,以达到保护压缩机和/或室外风道组件的目的,从而使得窗式空调器100的运行更稳定。
在本申请的一些实施例中,遮挡区域15的一部分与压缩机的电机线正对设置,遮挡区域15的另一部分与室外风道组件的电机线正对设置。也就是说,通过使遮挡区域15的一部分遮挡压缩机的电机线,进而避免通过通风区域14进入到室外侧箱体1内的雨水或杂物与压缩机的电机线接触,从而起到保护压缩机的目的。通过使遮挡区域15的另一部分遮挡室外风道组件的电机线,进而避免通过通风区域14进入到室外侧箱体1内的雨水或杂物与室外风道组件的电机线接触,从而起到保护室外风道组件的目的。
如图1、图2、图3和图6所示,在本申请的一些实施例中,遮挡区域15包括间隔设置的第一遮挡部151和第二遮挡部152,第一遮挡部151与压缩机的电机线正对设置,第二遮挡部152与室外风道组件的风叶正对设置。也就是说,将第一遮挡部151和第二遮挡部152间隔设置,进而避免第一遮挡部151上的雨水和第二遮挡部152上的雨水相互流动。同时,通过第一遮挡部151对压缩机的电机线进行遮挡,以避免通过通风区域14进入到室外侧箱体1内的雨水或杂物与压缩机的电机线接触,从而起到保护压缩机的目的。通过第二遮挡部152对室外风道组件的风叶进行遮挡,该室外风道组件可以是室外风机,从而避免雨水滴落到室外风道组件的风叶上,影响风叶的转动,并且该第二遮挡部152也能避免手指或 杂物与风叶接触,提高窗式空调器100的安全性。
在本申请的一些实施例中,遮挡区域15由室外侧箱体1的部分顶壁限定出。可以理解的是,遮挡区域15可以是室外侧箱体1的顶壁向通风区域14内延伸形成的,进而使得遮挡区域15和室外侧箱体1的顶壁是一体件,以使遮挡区域15的结构更简单,壳体的结构更稳定。
在本申请的一些实施例中,通风区域14包括多个间隔设置的第一通风口,部分第一通风口的长度小于邻近其的第一通风口的长度以限定出遮挡区域15。可以理解的是,通风区域14包括多个间隔设有的第一通风口,遮挡区域15可以设置在通风区域14内,多个第一通风口可以是长条形,部分第一通风口的长度较短以使部分室外侧箱体1的顶部限定出遮挡区域15,从而使得遮挡区域15的结构更简单。第一通风口可以为窗式空调器100的室外侧进风口。
如图1至图3所示,在本申请的一些实施例中,机壳10还包括室内侧箱体4和底盘5,室内侧箱体4与室外侧箱体1前后间隔设置在底盘5上以限定出适于窗扇伸入的容纳槽41。可以理解的是,窗式空调器100适于支撑在墙体的窗口上,窗口内设有可移动的窗扇,该窗扇可以沿上下方向移动地设在窗口内以打开或关闭窗口。机壳10被容纳槽41分隔成室内侧箱体4和室外侧箱体1,窗扇的至少一部分可伸入到容纳槽41内,该室内侧箱体4内设有室内换热器和室内风机,该室外侧箱体1内设有室外换热器和室外风机。
可以理解的是,通过在机壳10的外周壁上设有容纳槽41,将机壳10分隔成室内部分和室外部分,窗扇的至少一部分可伸入到容纳槽41内。这样便于将窗式空调器100安装到窗口内,便于窗式空调器100与窗口和窗扇相配合,便于提高窗式空调器100安装后的结构可靠性和稳定性,便于提高窗式空调器100的工作可靠性。
在本申请的一些实施例中,容纳槽41由机壳10的顶壁向下凹入,不仅可以使窗式空调器100的受力更加均匀,避免窗式空调器100的顶壁受力较大而发生损坏,提高窗式空调器100的设置可靠性和工作性能。
如图2所示,在本申请的一些实施例中,室外侧箱体1朝向室内侧箱体4的侧面为内侧面16,内侧面16上设有第二通风口161,第二通风口161邻近电控盒6设置。可以理解的是,在室外风机运行,气流能通过第二通风口161流动对电控盒6进行散热,进而达到对电控盒6散热的目的。同时,窗式空调器100也可以通过第二通风口161进风,以提高窗式空调器100的进风量。第二通风口可以为窗式空调器100的室外侧进风口。
如图2所示,在本申请的一些实施例中,内侧面16上设有加强部162。也就是说,可通过加强部162对室外侧箱体1的内侧面16进行加固,以防止内侧面16发生变形,进而 使得机壳10的结构更稳定。
如图2所示,在本申请的一些实施例中,加强部162包括第一加强筋1621以及连接在第一加强筋1621上的多个第二加强筋1622。也就是说,通过第一加强筋1621和多个第二加强筋1622分别对室外侧箱体1的内侧面16进行加固,以使内侧面16更稳固,
在本申请的一些实施例中,第一加强筋1621可以沿室外侧箱体1的宽度方向延伸,多个第二加强筋1622沿室外侧箱体1的高度方向延伸,进而使得内侧面16的结构更稳固。
如图2所示,在本申请的一些实施例中,加强部162位于第二通风口161的下方。也就是说,可将加强部162设置在第二通风口161的下方,进而保证第二通风口161下方的部分内侧面16的结构更稳定。
在本申请的一些实施例中,如图2和图5所示,窗式空调器100的机壳10包括底盘5、室外侧箱体1和多个固定件7,室外侧箱体1设在底盘5上,窗式空调器100的室外换热器适于放置在底盘5上,且室外换热器适于设在室外侧箱体1内,室外侧箱体1包括顶盖17和顶部设有开口的外箱18,顶盖17盖设在开口上。
可以理解的是,通过将顶盖17盖设在外箱18的开口上,进而使得室外侧箱体1为分体式结构,在需要对室外侧箱体1内的零件进行检修时,可将顶盖17拆掉,以便通过开口看到室外侧箱体1的内部结构,从而便于对窗式空调器100进行检修,减小拆卸难度,提高了拆装效率。
外箱18的周向上间隔设有多个第一连接部181,顶盖17的周向上间隔设有多个第二连接部171,多个第一连接部181一一对应地与多个第二连接部171相接触,每个第一连接部181和相应的第二连接部171均通过固定件7连接以将顶盖17连接在外箱18上。可以理解的是,通过外箱18的每个第一连接部181均和顶盖17上相应的第二连接部171相接触,进而便于固定件7的安装,以使第一连接部181和第二连接部171的连接更稳固,从而使顶盖17能稳定地安装在外箱18上。
由此,通过使室外侧箱体1为分体式结构,在需要对室外侧箱体1内的零件进行检修时,可将顶盖17拆掉,以便通过开口看到室外侧箱体1的内部结构,从而便于对窗式空调器100进行检修,减小拆卸难度,提高了拆装效率。
在本申请的一些实施例中,每个第二连接部171上均设有安装孔,每个第一连接部181上均设有螺纹孔,固定件7穿过安装孔螺纹连接在螺纹孔内,以使顶盖17稳固地安装在外箱18上。同时通过使每个第一连接部181均和相应的第二连接部171相接触,以避免顶盖17和外箱18之间的接触面不平导致安装孔和螺纹孔之间形成错位的现象发生,从而使安装孔和螺纹孔的对孔更精准,进而便于固定件7的安装固定。
例如,第一连接部181、第二连接部171和固定件7均为七个,进而使得顶盖17能稳定地安装在外箱18上。当然可以理解的是,第一连接部181、第二连接部171和固定件7的数量可根据实际使用情况进行限定,只要能使顶盖17稳定地安装在外箱18上即可,在此对该数量不做限制。
如图3至图6所示,在本申请的一些实施例中,顶盖17上设有侧边172,侧边172围绕外箱18设置,部分侧边172朝向外箱18凹陷以限定出多个第二连接部171。可以理解的是,通过使顶盖17的侧边172围绕外箱18设置,以起到保护外箱18的目的,并且使部分侧边172凹陷形成第二连接部171,以使第二连接部171和侧边172为一体件,从而减小零件数量,使得顶盖17的结构更简单。
在本申请的一些实施例中,外箱18的部分侧壁朝向顶盖17凸起限定出多个第一连接部181。可以理解的是,第一连接部181可以是外箱18的部分侧壁朝向顶盖17凸起限定出的,进而使得第一连接部181和外箱18为一体件,从而减小零件数量,使得外箱18的结构更简单。
在本申请的一些实施例中,如图3和图4所示,顶盖17上设有侧边172,侧边172围绕外箱18设置,部分侧边172朝向外箱18凹陷以限定出多个第二连接部171,外箱18的部分侧壁朝向顶盖17凸起限定出多个第一连接部181。
在本申请的一些实施例中,每个第一连接部181和相应的第二连接部171均为面接触。从而提高第一连接部181和第二连接部171接触的稳定性,以使机壳10的结构更稳定。
如图6所示,在本申请的一些实施例中,外箱18的外侧面上设有通风口182,通风口182的至少一个侧壁上设有朝外凹入的扩口1821以增加通风量。可以理解的是,室外换热器通过通风口182进行换热,通过在通风口182的侧壁上设置扩口1821,进而增加通风口182的通风面积,以提高通风口182的通风量,从而提高室外换热器的换热效率。通风口182可以形成为窗式空调器100的室外侧出风口。
如图5和图6所示,在本申请的一些实施例中,通风口182的侧壁上设有位于扩口1821两侧的连接部1822,两侧的连接部1822分别与底盘5和顶盖17相连。也就是说,通过设置在扩口1821两侧的连接部1822,一方面增加了外箱18与底盘5和顶盖17的装配空间,使得外箱18与底盘5和顶盖17的连接更稳固。另一方面,将连接部1822设置在扩口1821的两侧以减少连接部1822的挡风现象,进而避免连接部1822影响室外换热器的换热效果。
如图5和图6所示,在本申请的一些实施例中,外箱18的外侧面上设有通风口182,通风口182的至少一个侧壁设有遮挡侧边1823,遮挡侧边1823与室外换热器的换热管正对设置以遮挡换热管。也就是说,通过遮挡侧边1823对室外换热器的换热管进行遮挡,进而 起到保护换热管的目的。
如图5和图6所示,在本申请的一些实施例中,底盘5上设有第一通孔51,穿过第一通孔51的第一固定连接件适于固定在室外换热器上。也就是说,第一固定连接件穿过第一通孔51连接在室外换热器上,进而使得室外换热器连接在底盘5上,以室外换热器能更稳固地安装在室外侧箱体1内。
如图5和图6所示,在本申请的一些实施例中,外箱18上设有第二通孔183,穿过第二通孔183的第二固定连接件适于固定在室外换热器上。也就是说,第二固定连接件穿过第二通孔183连接在室外换热器上,进而使得室外换热器连接在外箱18上,以提高对室外换热器的约束,从而提高稳定性。
在本申请的一些实施例中,第一通孔51和第二通孔183正对设置。也就是说,可以使第一通孔51和第二通孔183正对设置,进而使固定连接件依次穿过第一通孔51和第二通孔183后连接在室外换热器上,以提高室外换热器的稳定性。在本申请的一些实施例中,固定连接件可以是螺栓。
在本申请的一些实施例中,如图1和图3所示,机壳10包括室外侧箱体1和后围板2,后围板2设置在室外侧箱体1内,室外风道组件的室外风机适于固定在后围板2上,电控盒6适于放置在室外侧箱体1内,室外侧箱体1的顶部设有固定部11,固定部11与电控盒6和/或后围板2相连以限制电控盒6相对于后围板2的位置。
可以理解的是,通过将电控盒6设置在室外侧箱体1内,将室外风机安装在箱体内的后围板2上,同时电控盒6和/或后围板2通过固定部11与室外侧箱体1相连,以使电控盒6和后围板2固定在室外侧箱体1内,从而达到限制电控盒6和后围板2之间位置的目的,进而避免电控盒6相对于后围板2晃动,从而达到避免电控盒6和室外风机发生干涉的现象,以提高窗式空调器100的稳定性。
具体地,室外侧箱体1可以设置在室外,通过将电控盒6设置在室外侧箱体1内,以增大电控盒6的安装空间,从而使得电控盒6的安装固定更方便。优选地,可以将电控盒6设在室外风机对应的空气流道中,从而可以利用流动的空气对电控盒6进行散热,提高电控盒6的使用寿命。
由此,通过限制电控盒6相对于后围板2的位置,进而避免电控盒6相对于后围板2晃动,以达到避免电控盒6和室外风机发生干涉的现象。
如图1-图3和图6所示,在本申请的一些实施例中,固定部11包括第一安装部111和第二安装部112,第一安装部111适于与电控盒6相连,第二安装部112与后围板2相连。也就是说,电控盒6通过第一安装部111与室外侧箱体1相连,后围板2通过第二安装部 112与室外侧箱体1相连,进而使得电控盒6和后围板2能更稳固地设置在室外侧箱体1内,同时也进一步避免电控盒6相对于后围板2晃动,以提高窗式空调器100的稳定性。
如图1和图3所示,在本申请的一些实施例中,第一安装部111可以包括设在室外侧箱体1的顶壁上的第一穿孔和第一螺栓,第一螺栓穿过第一穿孔螺纹连接在电控盒6上,进而使得电控盒6与室外侧箱体1之间的连接更稳固。
如图1和图3所示,在本申请的一些实施例中,第二安装部112可以包括设在室外侧箱体1的顶壁上的第二穿孔和第二螺栓,第二螺栓穿过第二穿孔螺纹连接在后围板2上,进而使得后围板2与室外侧箱体1之间的连接更稳固。
如图1和图3所示,在本申请的一些实施例中,第一安装部111可以是一个,第二安装部112可以是两个,进而分别将电控盒6和后围板2固定在室外侧箱体1上。在本申请的一些实施例中,第一安装部111和第二安装部112的数量可根据实际使用情况进行限定,只要能保证电控盒6和后围板2与室外侧箱体1之间的连接强度即可,在此对数量不做限制。
如图1和图3所示,在本申请的一些实施例中,第一安装部111和第二安装部112间隔设置。也就是说,通过使第一安装部111和第二安装部112间隔设置在室外侧箱体1的顶部,从而便于根据第一安装部111和第二安装部112的位置固定电控盒6和后围板2,,以进一步避免电控盒6和室外风机发生干涉的现象。
如图5所示,在本申请的一些实施例中,机壳10还包括密封件3,密封件3密封设置在后围板2与室外侧箱体1的顶壁之间。也就是说,通过密封设置在后围板2与室外侧箱体1之间的密封件3,可以防止空调运行时风从后围板2与室外侧箱体1之间的间隙通过,从而避免对空气交换造成影响,以保证空调的能效不受影响。
在本申请的一些实施例中,密封件3可以是PE海绵,室外侧箱体1内设有室外换热器,密封件3延伸至室外换热器与室外侧箱体1的顶壁之间,进而防止空调运行时风从室外换热器与室外侧箱体1的顶壁之间的间隙通过,从而保证大部分空气全部流向室外换热器进行换热,避免对空气交换造成影响,以保证空调的能效不受影响。
如图1-图3和图6所示,在本申请的一些实施例中,室外侧箱体1的顶壁上设有加强件12。也就是说,通过加强件12对室外侧箱体1的顶壁的强度进行加强,以使壳体的结构更稳固。
如图1所示,在本申请的一些实施例中,加强件12沿室外侧箱体1的宽度方向延伸,加强件12大体呈长条形,以进一步对室外侧箱体1的顶壁的强度进行加强。在本申请的一些实施例中,加强件12可以是由室外侧箱体1的部分顶壁向上凸起限定出,进而使得加强 件12的结构更简单。
如图1-图3和图6所示,在本申请的一些实施例中,窗式空调器100包括压缩机,室外侧箱体1的顶壁设有避让部13,避让部13适于与部分压缩机正对设置以避让压缩机。可以理解的是,窗式空调器100的压缩机设置在室外侧箱体1内,通过使避让部13与部分压缩机正对设置,进而避免窗式空调器100在运输搬运时,压缩机与室外侧箱体1发生碰撞,从而起到保护压缩机的目的。
在本申请的一些实施例中,避让部13可以是由室外侧箱体1的部分顶壁向上凸起限定出,从而使得避让部13的结构更简单。
在本申请的一些实施例中,压缩机的顶部设有冷媒管,避让部13与冷媒管正对设置,避免窗式空调器100在运输搬运时,冷媒管与室外侧箱体1发生碰撞,以起到保护冷媒管的目的。
在本申请的一些实施例中,机壳10还包括防撞海绵,防撞海绵设在室外侧箱体1的内表面上,至少部分防撞海绵设置在避让部13上,防撞海绵适于与部分压缩机正对设置。也就是说,通过在室外侧箱体1的内表面上设置防撞海绵,从而进一步避免在窗式空调器100在运输搬运时,压缩机与室外侧箱体1发生碰撞,从而起到保护压缩机的目的。
如图1和图3所示,在本申请的一些实施例中,机壳10还包括室内侧箱体4和底盘5,室内侧箱体4与室外侧箱体1前后间隔设置在底盘5上以限定出适于窗扇伸入的容纳槽41。可以理解的是,窗式空调器100适于支撑在墙体的窗口上,窗口内设有可移动的窗扇,该窗扇可以沿上下方向移动地设在窗口内以打开或关闭窗口。机壳10被容纳槽41分隔成室内侧箱体4和室外侧箱体1,窗扇的至少一部分可伸入到容纳槽41内,该室内侧箱体4内设有室内换热器和室内风机,该室外侧箱体1内设有室外换热器和室外风机。
可以理解的是,通过在机壳10的外周壁上设有容纳槽41,将机壳10分隔成室内部分和室外部分,窗扇的至少一部分可伸入到容纳槽41内。这样便于将窗式空调器100安装到窗口内,便于窗式空调器100与窗口和窗扇相配合,便于提高窗式空调器100安装后的结构可靠性和稳定性,便于提高窗式空调器100的工作可靠性。
在本申请的一些实施例中,容纳槽41由机壳10的顶壁向下凹入,不仅可以使窗式空调器100的受力更加均匀,避免窗式空调器100的顶壁受力较大而发生损坏,提高窗式空调器100的设置可靠性和工作性能。
在本申请的一些实施例中,电控盒6的顶部设有朝向室外侧箱体1的顶壁凸起的凸起部61,凸起部61与固定部11相连以使电控盒6固定在室外侧箱体1上。也就是说,电控盒6通过凸起部61与固定部11连接,进而使得雨水能沿着凸起部61向下滑落,避免雨水沉积 在电控盒6的顶部。
下面,参考附图描述根据本申请第二方面实施例的窗式空调器100。
如图1至图6所示,根据本申请实施例的窗式空调器100,包括;机壳10、压缩机和风道组件,机壳10为本申请上述实施例的窗式空调器100的机壳10,压缩机和风道组件均设置在室外侧箱体1内。
根据本申请实施例的窗式空调器100,通过使遮挡区域15遮挡至少部分压缩机和/或至少部分室外风道组件,进而避免通过通风区域14进入到室外侧箱体1内雨水与压缩机和/或室外风道组件接触,以达到保护压缩机和室外风道组件的目的,从而使得窗式空调器100的运行更稳定。
在本申请的一些实施例中,如图7-图9所示,窗式空调器100可以安装于开设有窗口22的墙体20上。为了便于安装,窗口22的尺寸通常大于窗式空调器100的尺寸。将窗式空调器100安装于窗口22后,窗式空调器100的底部通常承载于窗口22的底壁222上,而窗式空调器100的其他部分通常与窗口22的相应壁面间隔。其中,窗式空调器100的顶部通常与窗口22的顶壁224间隔,窗式空调器100的侧部与窗口22的左侧壁226和右侧壁228中的至少一者间隔。
将窗式空调器100安装于窗口22后,窗口22的顶壁224上的遮挡件30能向下移动,封闭窗口22位于窗式空调器100上方的空间,在一定程度上隔断室内与室外,避免室内与室外通过间隔交换气流。在本申请的一些实施例中,窗口22为窗口,遮挡件30可以为窗扇、窗帘、窗百叶等。
在本申请的一些实施例中,窗式空调器100包括底盘11、室内侧组件12及室外侧组件13,室内侧组件12及室外侧组件13均设于底盘11上,并间隔一定距离,从而限定出位于室内侧组件12及室外侧组件13之间的容纳槽14。将窗式空调器100安装于窗口22后,窗式空调器100的底盘11承载于窗口22的底壁222上,向下移动的遮挡件30能伸入容纳槽14,从而进一步隔断室内与室外,并明确限定室内侧组件12及室外侧组件13,室内侧组件12位于遮挡件30内侧,室外侧组件13位于遮挡件30外侧。
在本申请的一些实施例中,室内侧组件12及室外侧组件13均设于底盘11上,也即室内侧组件12及室外侧组件13共用同一底盘11,室内侧组件12的底盘与室外侧组件13的底盘一体成型。例如,当室外侧组件13包括底盘11时,可以认为室外侧组件13的底盘11向内延伸形成延伸部,从而再将室内侧组件12的相关元件设于延伸部上。室内侧组件12包括底盘11时,可以认为室内侧组件12的底盘11向外延伸形成延伸部, 从而再将室外侧组件13的相关元件设于延伸部上。如此,可以使得窗式空调器100整体结构更稳定,便于将窗式空调器100整体结构安装于窗口22,提升了窗式空调器100的安装效率。
在其他一些实施例中,室内侧组件12与室外侧组件13可以各自具有各自的底盘,室内侧组件12具有室内侧底盘,室外侧组件13具有室外侧底盘,室内侧底盘与室外侧底盘的分开设置,相互独立。
在本申请的一些实施例中,窗式空调器100还包括密封条15。密封条15与底盘11活动连接,能在收容位置与密封位置之间切换。如图7所示,当密封条15处于收容位置时,密封条15位于容纳槽14内。如图8及图9所示,当密封条15处于密封位置时,密封条15密封在窗口22的底壁222与伸入容纳槽14的遮挡件30之间。密封条15进一步隔断室内与室外。
在本申请的一些实施例中,密封条15为两条,分别为左密封条及右密封条。在其他实施例中,当窗式空调器100的一侧部与窗口22的左侧壁226或右侧壁228抵触密封时,密封条15也可以只有一条。
在本申请的一些实施例中,窗式空调器100还包括分隔组件16,分隔组件16设于底盘11上,并位于室内侧组件12与室外侧组件13之间。从而分隔组件16远离底盘11的表面为容纳槽14的槽底。室内侧组件12与室外侧组件13之间的冷媒管、导线等可以从分隔组件16与底盘11之间穿过,可以有效保护冷媒管、导线等元件。具体地,在本申请的一些实施例中,密封条15与分隔组件16转动连接。
在本申请的一些实施例中,如图7-图9所示,室内侧组件12包括室内侧箱体122、室内风机和室内换热器。室内侧箱体122具有室内侧进风口122a及室内侧出风口122b。室内侧箱体122、室内侧风机和室内侧换热器均设于底盘11上(当室内侧组件12与室外侧组件13不共用底盘时,室内侧底盘可以为室内侧箱体122的一部分),且室内侧风机和室内侧换热器均位于室内侧箱体122内。室内侧风机运行时,室内空气可以通过室内侧进风口122a流入室内侧箱体122、与室内侧换热器换热后,从室内侧出风口122b流入室内。
在本申请的一些实施例中,室内侧组件12还包括显示组件124,显示组件124设于室内侧箱体122上,用于显示室内侧组件12的温度、湿度等工种参数。
在本申请的一些实施例中,如图10-图29所示,室外侧组件13包括室外侧箱体400、室外风机500和室外换热器600。室外侧箱体400具有室外侧进风口402及通风口422a,通风口422a为室外侧出风口。室外侧箱体400、室外风机500和室外换热器600均设 于底盘11(当室内侧组件12与室外侧组件13不共用底盘时,室外侧底盘可以为室外侧箱体400的一部分)上,且室外风机500和室外换热器600均位于室外侧箱体400内。室外风机500运行时,室外空气可以通过室外侧进风口402流入室外侧箱体400、与室外换热器600换热后,从通风口422a流入室外。
其中,室外侧组件13还包括压缩机700,压缩机700、室内侧换热器与室外换热器600通过冷媒管600a连接形成冷媒循环结构。压缩机700设于室外侧组件13可以降低压缩机700工作时对室内的噪音影响。
在本申请的一些实施例中,室外侧组件13还包括电控盒800,电控盒800设于室外侧箱体400内。电控盒800通过导线可以与室内侧组件12的室内风机、室内换热器、显示组件124等元件连接,也可以通过导线与室外侧组件13的室外风机500、室外换热器600、压缩机700等元件连接。
电控盒800设于室外侧组件13的室外侧箱体400,从而不需要在室内侧箱体122上预留电控盒800的安装空间,从而可以减小室内侧箱体122的体积,降低窗式空调器100对室内侧的安装空间的要求。
下面,参考附图7-图13,描述根据本申请的窗式空调器100的一些实施例。
在本申请的一些实施例中,室外侧组件13包括室外侧箱体400,室外侧箱体400包括外箱A420及顶盖A430。外箱A420为两端开口的中空结构,外箱A420一端设于室外侧底盘A410上,顶盖A430设于外箱A420远离室外侧底盘A410的一端。外箱A420包括出风部A422,出风部A422开设有通风口422a,通风口422a形成为室外侧出风口,且通风口422a沿第一方向(例如图10中的上下方向)贯穿出风部A422的位于第一方向上的两侧,并使得出风部A422包括沿第二方向间隔排布的两个遮挡侧边,两个遮挡侧边分别为第一翻边C422第一翻边A4222和第二翻边A4224。也即外箱A420为断开的环状折板结构,断开形成的缺口即为通风口422a。其中,第一方向为室外侧底盘A410与顶盖A430的排布方向。当用户正对出风部A422时,第二方向可以为左右方向。
相对于栅格出风部,上述出风部A422因包括第一翻边C422第一翻边A4222及第二翻边A4224,并由第一翻边C422第一翻边A4222及第二翻边A4224限定出通风口422a,可以有效降低出风部A422对气流的阻挡,使得通风口422a具有较大的风量,从而提高窗式空调器100的能效。
室外侧组件13还包括室外换热器600,室外换热器600设于室外侧箱体400内,且室外换热器600位于出风部A422处,室外换热器600具有出风面A610,第一翻边C422 第一翻边A4222及第二翻边A4224分别与出风面A610位于第二方向上的两侧扣接。
其中,第一翻边C422第一翻边A4222与第二翻边A4224中的至少一者在第二方向上向外侧内陷形成扩口A422b,以露出部分出风面A610,使得通风口422a具有较大的风量,从而提高窗式空调器100的能效。
在一些实施例中,出风面A610包括中心出风区A612及位于中心出风区A612外周的第一扣接区A614及第二扣接区A616。在图11所示视角中,以虚线a与虚线b在第二方向上将中心出风区A612、第一扣接区A614及第二扣接区A616大致区分。中心出风区A612与通风口422a对应设置,第一扣接区A614及第二扣接区A616分别与第一翻边C422第一翻边A4222及第二翻边A4224扣接。如此,不仅可以防止室外侧箱体400内的气流不经过室外换热器600换热而直接排出,而且还利于室外换热器600牢固固定。
例如,第一翻边C422第一翻边A4222与第二翻边A4224中的至少一者在第二方向上向外侧内陷形成扩口A422b,以使得部分第一扣接区A614和/或第二扣接区A616露出,可以进一步降低出风部A422对气流的阻挡,使得通风口422a具有较大的风量,从而提高窗式空调器100的能效。
在本申请的一些实施例中,第一翻边C422第一翻边A4222开设有扩口A422b,第二翻边A4224不开设扩口A422b。室外换热器600的冷媒管600a自室外换热器600靠近第二扣接区A616的一侧引出,并与压缩机700连接。第二翻边A4224可以较好的遮蔽自室外换热器600靠近第二扣接区A616的一侧引出的冷媒管600a。在其他实施例中,当室外换热器600的冷媒管600a自室外换热器600的进风面的中部引出时,第一翻边C422第一翻边A4222及第二翻边A4224均可以设有扩口A422b。
在本申请的一些实施例中,外箱A420与底盘11壳拆卸连接,例如外箱A420与室外侧底盘A410壳拆卸连接,顶盖A430与外箱A420可拆卸连接。如此,非常便于拆装室外侧组件13。具体地,在组装室外侧组件13时,可以先在室外侧底盘A410上组装好室外风机500、室外换热器600、压缩机700、电控盒800等元件,再将外箱A420设于室外侧底盘A410上,使得出风部A422扣接在室外换热器600上,再将顶盖A430设于外箱A420上。
在本申请的一些实施例中,外箱A420为方筒。外箱A420还包括依次连接的第一侧板A424、第二侧板A426及第三侧板A428,第一侧板A424与第三侧板A428相对,第二侧板A426与出风部A422正对。
在本申请的一些实施例中,第二侧板A426位于外箱A420靠近室内侧组件12的一侧,出风部A422位于外箱A420远离室内侧组件12的一侧。室外至室内为前后方向时, 出风部A422与第二侧板A426分别位于前后方向,第一侧板A424与第三侧板A428分别位于左右方向。如此,更利于气流流至室外。在其他实施中,出风部A422与第二侧板A426也可以位于左右方向,而第一侧板A424与第三侧板A428位于前后方向。
在本申请的一些实施例中,第一侧板A424、第二侧板A426、第三侧板A428及顶盖A430均为进风板,进风板上开设有室外侧进风口402。四个方位进风,可以使得进风面积更大,进风量更大,室外侧组件13的能效更高。在其他实施例中,也可以一个或两个方位进风。
在本申请的一些实施例中,室外风机500位于室外换热器600远离出风部A422的一侧,电控盒800位于室外风机500远离室外换热器600的一侧。且经第二侧板A426的室外侧进风口402进入的气流至少部分直接吹至电控盒800,为电控盒800散热。如此,非常利于电控盒800散热,从而使得电控盒800具有更长的使用寿命。
在本申请的一些实施例中,第一侧板A424、第二侧板A426、第三侧板A428及出风部A422一体成型。如此,非常便于形成外箱A420,且非常便于拆装室外侧组件13。
在本申请的一些实施例中,扩口A422b沿第一方向(上下方向)延伸呈长条状,扩口A422b的两端部分别设置连接部,两个连接部分别为第一凸起A422c及第二凸起A422d。如此,不仅便于与室外换热器600扣接,还非常便于弯折形成一体成型的外箱A420。在其他实施例中,扩口A422b的一个端部为凸起,另一端为开口。
在本申请的一些实施例中,第二侧板A426上设置有加强筋A429,以避免第二侧板A426向外***变形。在实际应用中,由于第一侧板A424、第三侧板A428等对第二侧板A426具有挤压力,导致第二侧板A426容易向外***变形,设置加强筋A429可以有效避免第二侧板A426向外***变形。
在本申请的一些实施例中,加强筋A429位于室外侧底盘A410与第二侧板A426的室外侧进风口402之间,也即加强筋A429设于第二侧板A426靠近室外侧底盘A410的区域。如此,能进一步避免第二侧板A426向外***变形。
在本申请的一些实施例中,加强筋A429包括横条4292及竖条4294。横条4292与室外侧底盘A410大致平行。竖条4294与横条4292连接,且竖条4294为多条,多条竖条4294沿横条4292平行间隔排布。如此,不仅能避免第二侧板A426向外***变形,还能使得加强筋A429的整体重量较低。
在本申请的一些实施例中,竖条4294位于横条4292与室外侧底盘A410之间。如此,能进一步避免第二侧板A426向外***变形。
下面,参考附图14-图23,描述根据本申请的窗式空调器100的一些实施例。
在本申请的一些实施例中,室外侧组件13的室外侧箱体400包括顶盖B410及出风部B432。顶盖B410为进风板,进风板开设有室外侧进风口402。出风部B432开设有通风口422a,通风口422a为室外侧出风口。
顶盖B410包括第一部分B410a及第二部分B410b。图14-图23所示实施例中的虚线X为第一部分B410a及第二部分B410b的分界面所在位置。第一部分B410a及第二部分B410b沿室外风机500的轴线方向排布,且第一部分B410a相对于第二部分B410b更靠近出风部B432。在本申请的一些实施例中,室外风机500为轴流风机。室外风机500的轴线方向为室外侧组件13至室内侧组件12的排布方向,也即图示实施例中的前后方向。出风部B432位于室外侧箱体400远离室内侧组件12的一侧,也即出风部B432位于室外侧箱体400的前侧。在其他实施例中,室外风机500的轴线方向也可以左右方向,此时,出风部B432位于室外侧箱体400的左侧或右侧。
在本申请的一些实施例中,第二部分B410b包括风机保护区B412及进风区B414。风机保护区B412与第一部分B410a直接连接,也即风机保护区B412由第一部分B410a与第二部分B410b的分界面处、朝向第二部分B410b延伸形成。在图示实施例中,室外侧进风口402包括进风孔402a和进风孔402b,风机保护区B412即为虚线X与长条状的进风孔B402a及进风孔B402b围合的区域。室外侧进风口402位于进风区B414,室外侧进风口402包括多个长条状的进风孔B402a及进风孔B402b。在图示实施例中,长条状的进风孔B402a及进风孔B402b所在的区域即为进风区B414。
进风区B414环绕风机保护区B412设置。其中,进风区B414可以完全环绕风机保护区B412位于第二部分B410b的边界,也可以是部分环绕风机保护区B412位于第二部分B410b的边界。进风区B414能包围风机保护区B412的至少一个角落,以使进风区B414存在转折,从而使得进风区B414具有长短不一的长条状的进风孔即可。例如,在图实施例中,风机保护区B412呈方形,风机保护区B412位于第二部分B410b的边界为方形的依次连接的三侧,进风区B414完全环绕风机保护区B412位于第二部分B410b的边界。在其他实施例中,进风区B414也可以只环绕风机保护区B412位于第二部分B410b的相邻两侧。
进风区B414环绕风机保护区B412设置,可以使得进风区B414具有长短不一的进风孔B402a及进风孔B402b,长度较长的进风孔B402a可以增加进风量,使得窗式空调器100具有较高的能效,长度较短的进风孔B402a可以为风机保护区B412提供设置空间,从而有效保护室外风机500。
在本申请的一些实施例中,可以认为室外侧进风口402包括多个原始进风孔B402a,多个原始进风孔B402a沿左右方向平行间隔排布,并限定出第二部分B410b。风机保护区B412使得部分原始进风孔B402a的长度缩短、变成新生进风孔B402b。在其他实施例中,多个原始进风孔B402a沿前后方向平行间隔排布,并限定出第二部分B410b,风机保护区B412使得部分原始进风孔B402a分割为两个新生进风孔。
风机保护区B412用于在上下方向上遮挡室外风机500,以避免室外的杂物直接落在室外风机500上。如此,在室外风机500高速运转时,可以有效降低因沙尘等杂物直接落在室外风机500上而引起的机械损伤的概率,有效保护室外风机500。当然还可以有效降低因雨水等杂物直接落在室外风机500上而引起电路不良等问题的概率。
在本申请的一些实施例中,室外侧组件14还包括后围板B900。后围板B900设于室外侧箱体400内,并位于室外风机500与出风部B432之间,室外换热器600设于后围板B900与出风部B432之间。后围板B900限定出气流通道B902,以对室外风机500产生的气流导流。后围板B900远离出风部B432的后围板限定出第一部分B410a与第二部分B410b,也即后围板B900远离出风部B432的后围板大致为第一部分B410a与第二部分B410b的分界面。
在实际应用中,后围板B900会遮挡位于后围板B900的顶部上方的进风孔,在后围板B900的顶部上方设置进风孔对进风量的帮助很小,因此,将后围板B900远离出风部B432的端面作为第一部分B410a与第二部分B410b的分界面。
在本申请的一些实施例中,室外风机500包括电机B510及风轮B520。风轮B520包括相连的轮毂B522及风叶B524。轮毂B522套设于电机B510的输出轴B512上。在风轮B520转动过程中,风机保护区B412能与风叶B524正对。
在风轮B520转动过程中,若沙尘等杂物直接落在风叶B524上,会导致风叶B524机械损伤。设置与风叶B524正对的风机保护区B412,可以有效降低因沙尘等杂物直接落在风叶B524上而引起的机械损伤的概率,有效保护风叶B524。
在一些实施例中,风叶B524一端与轮毂B522连接,另一端伸至气流通道B902内。在风轮B520转动过程中,风机保护区B412能与风叶B524靠近轮毂B522的一端正对。如此,能更有效保护风叶B524。
在一些实施例中,轮毂B522至少部分位于气流通道B902外。风机保护区B412远离第一部分B410a的一侧的朝向轮毂B522的投影位于轮毂B522上。也即在本申请的一些实施例中,风机保护区B412可以遮蔽风叶B524,同时还是可以至少遮蔽部分轮毂B522。如此,能更有效保护风叶B524。
在其他实施例中,风轮B520的轮毂B522及风叶B524完全位于气流通道B902内,风机保护区B412与电机B510正对。此时,风机保护区B412主要遮蔽电机B510。
在本申请的一些实施例中,室外侧组件13还包括设于室外侧箱体400内的风机支架B910。风机支架B910包括安装座B912及支撑杆B914。电机B510设于安装座B912上,安装座B912不仅能固定电机B510,还能保护电机B510,避免电机B510受到室外杂物影响。支撑杆B914一端与安装座B912连接,另一端与后围板B900连接。设置支撑杆B914,有利于室外风机500牢固固定。在一些实施例中,安装座B912、支撑杆B914及后围板B900一体成型。
其中,支撑杆B914为多根,且多根支撑杆B914环绕室外风机500的轴线方向间隔排布。风机保护区B412位于相邻两根支撑杆B914之间。如此,可以避免风机保护区B412与支撑杆B914相互干涉。具体地,在本申请的一些实施例中,支撑杆B914为两根。
在本申请的一些实施例中,室外侧箱体400还包括室外侧底盘B420及外箱B430。外箱B430为两端开口的中空结构,外箱B430一端设于室外侧底盘B420上,顶盖B410设于外箱B430远离室外侧底盘B420的一端。出风部B432位于外箱B430上。室外换热器600、压缩机700、电控盒800、后围板B900、安装座B912等元件均设于室外侧底盘B420上。外箱B430呈方向,包括依次连接的三块侧板以及出风部B432,三块侧板均开设有室外侧进风口402。多个方位进风,可以增加进风面积,从而提高窗式空调器100的能效。
在本申请的一些实施例中,外箱B430与室外侧底盘B420可拆卸连接。顶盖B410与外箱B430可拆卸连接。如此,非常便于拆装。具体地,在本申请的一些实施例中,外箱B430与室外侧底盘B420打螺钉固定。顶盖B410与外箱B430打螺钉固定。更具体地,在本申请的一些实施例中,顶盖B410与后围板B900的顶部打螺钉固定。如此,不仅便于顶盖B410牢固组装,还能避免后围板B900晃动。在图示实施例中,第一部分B410a上开设有两个用于供螺钉穿过的第一安装孔B411。
在本申请的一些实施例中,在室外侧组件13至室内侧组件12的排布方向(前后方向)上,压缩机700位于室外风机500的左侧,电控盒800位于室外风机500的后侧。室外风机500及压缩机700均与电控盒800电连接,也可以有线方式电连接,也可以采用无线方式电连接。在其他实施例中,压缩机700也可以位于室外风机500的右侧。
在本申请的一些实施例中,室外风机500与电控盒800采用有线的方式电连接,由于电控盒800位于室外风机500后侧,电控盒800可以遮蔽连接室外风机500与电控盒 800的导线。
在本申请的一些实施例中,压缩机700与电控盒800通过导线电连接。为了保护导线,降低室外的雨水等杂物直接落在导线上,而出现电性不良的概率,设计如下方案:
顶盖B410包括还第三部分B410c,第一部分B410a、第二部分B410b及第三部分B410c依次沿室外风机500的轴线方向排布。图示实施例中的虚线Y为第二部分B410b与第三部分B410c的分界面所在位置。第二部分B410b还包括接线保护区B416。接线保护区B416直接与第三部分B410c连接。进风区B414环绕接线保护区B416设置。进风区B414环绕接线保护区B416设置与上述的进风区B414环绕风机保护区B412设置的设计思想大致相同,这里不再详细说明。
接线保护区B416在上下方向上遮挡导线,以避免室外的杂物直接落在导线上。如此,可以有效避免室外的雨水等杂物直接落在导线上,而出现电性不良的问题。具体地,接线保护区B416遮蔽图22中的G处。
在本申请的一些实施例中,第二部分B410b靠近出风部B432的一侧朝向电控盒800的投影位于电控盒800上,也即第二部分B410b与第三部分B410c的分界面穿过电控盒800,也即虚线Y可以落在电控盒800上。如此,部分进风口402a及进风口402b可以位于电控盒800上,从而从顶盖B410进入室外侧箱体400的气流,可以为电控盒800散热。
在本申请的一些实施例中,顶盖B410与电控盒800的顶部打螺钉固定。如此,利于顶盖B410牢固固定,还能避免电控盒800晃动。
在本申请的一些实施例中,第二部分B410b还包括螺钉固定区B417,螺钉固定区B417与第三部分B410c直接连接,进风区B414环绕螺钉固定区B417设置。进风区B414环绕螺钉固定区B417设置,与上述的进风区B414环绕风机保护区B412设置的设计思想大致相同,这里不再详细说明。具体地,螺钉固定区B417上开设有两个用于供螺钉穿过的第二安装孔B413。
在本申请的一些实施例中,螺钉固定区B417位于两个第一安装孔B411之间。如此,利于顶盖B410牢固固定。
在本申请的一些实施例中,螺钉固定区B417与风机保护区B412沿前后方向间隔排布,也即螺钉固定区B417与风机保护区B412在前后方向正对设置。如此,能进一步减少落至室外风机500上杂物。
在本申请的一些实施例中,顶盖B410包括还第四部分B410d,第四部分B410d位于第一部分B410a、第二部分B410b及第三部分B410c的同一端。图示实施例中的虚线Z 为第四部分B410d与第一部分B410a、第二部分B410b及第三部分B410c的分界面所在位置。第四部分B410d在上下方向上遮挡压缩机700。在本申请的一些实施例中,虚线Z为第四部分B410d与进风区B414的分界面所在位置。
如图19及图20所示,第四部分B410d包括压缩机保护区B418及位于压缩机保护区B418外周的基准区B419。压缩机保护区B418与压缩机700的顶部正对。压缩机保护区B418的内侧向外内陷形成保护槽B4182,并在压缩机保护区B418形成凸出于基准区B419的外侧的凸台B4184。保护槽B4182的槽底与压缩机700的顶部之间的间距大于基准区B419的内侧与压缩机700的顶部之间的间距,以在顶盖B410受到碰撞时,保护压缩机700。需要说明的是,压缩机700的顶部是指压缩机700的最高点所在部位。窗式空调器100在出厂前,需要经过防摔实验,在防摔实验中,在顶盖B410受到碰撞时,凸台B4184与保护槽B4182可以有效防止压缩机700的顶部因碰撞而损坏。
在本申请的一些实施例中,凸台B4184凸出于基准区B419的外侧的高度为3-20毫米。凸台B4184太高,会影响窗式空调器100的整体高度,而凸台B4184太低,防止压缩机700的顶部因碰撞而损坏的效果不理想。综合上述原因,设置凸台B4184凸出于基准区B419的外侧的高度为3-20毫米。
下面,参考附图24-图29,描述根据本申请的窗式空调器100的一些实施例。
在本申请的一些实施例中,室外侧箱体400包括朝向室内侧组件12的第二侧板C410、与第二侧板C410相对的第四侧板C420,以及连接第二侧板C410及第四侧板C420的周向板C430。室外侧箱体400的室外侧进风口402包括第一室外侧进风口402,第二侧板C410开设有第一室外侧进风口402a,第四侧板C420开设有通风口422a,通风口422a为室外侧出风口。
电控盒800设于室外侧箱体400内,并位于第一室外侧进风口402a至通风口422a的气流路径上,以使得经第一室外侧进风口402a进入室外侧箱体400的气流至少部分直接吹至电控盒800上,为电控盒800散热。
在常规的窗式空调器中,室外侧箱体与室内侧箱体一体成型,不利于电控盒散热。而在上述窗式空调器100中,室内侧组件12与室外侧组件13间隔设置,从而可以在第二侧板C410上开设第一室外侧进风口402a,并将电控盒800设置于第一室外侧进风口402a至通风口422a的气流路径上,且使得经第一室外侧进风口402a进入室外侧箱体400的气流直接吹至电控盒800上,非常利于电控盒800散热。
在本申请的一些实施例中,室外风机500设于第二侧板C410与第四侧板C420之间, 室外换热器600位于室外风机500靠近第四侧板C420的一端,电控盒800位于室外风机500靠近第二侧板C410的一端。也即电控盒800更靠近室内侧组件12,从而降低室外雨水对电控盒800的不良影响。
在本申请的一些实施例中,电控盒800邻近第二侧板C410设置,且在室外至室内的方向(前后方向)上,电控盒800与第二侧板C410间隔一定距离(例如,10-40毫米)。如此,不仅便于电控盒800散热,还能进一步降低室外雨水对电控盒800的不良影响。
在本申请的一些实施例中,电控盒800位于第二侧板C410上的正投影覆盖部分第一室外侧进风口402a,以使得气流能经未被覆盖的部分第一室外侧进风口402a直接到达室外风机500。如此,不仅能保证电控盒800具有较好的散热效果,还利于室外风机500将气流从第一室外侧进风口402a引入室外侧箱体400。在其他实施例中,电控盒800位于第二侧板C410上的正投影也可以完全覆盖第一室外侧进风口402a,此时,气流从电控盒800与第二侧板C410之间的间隙流向室外风机500。
在本申请的一些实施例中,电控盒800位于第二侧板C410上的正投影覆盖1/3-2/3倍第一室外侧进风口402a。如此,能更好地兼顾第一室外侧进风口402a的进风效果及电控盒800的散热效果。
在本申请的一些实施例中,如图26及图29所示,周向板C430开设有第二室外侧进风口402b。如此,室外侧箱体400的室外侧进风口402包括第一室外侧进风口402及第二室外侧进风口402b,也即室外侧箱体400可以从至少两个方向进风,进风面积大,进风量大,室外侧组件13的能效高。
在本申请的一些实施例中,周向板C430包括多块板体C432,多块板体C432沿室外侧箱体400的周向依次连接形成弯折板,也即相邻两板体C432相交,不平行。其中,每一板体C432均开设有第二室外侧进风口402b。如此,可以使得进风面积更大,进风量更大,室外侧组件13的能效更高。
具体地,在本申请的一些实施例中,板体C432为三块,三块板体C432围合形成U形结构。其中,室外至室内的方向为前后方向,三块板体C432分别为第一侧板C432a、第三侧板C432c及顶盖C432b。
在本申请的一些实施例中,第一侧板C432a、第三侧板C432c、第二侧板C410及第四侧板C420一体成型、构成框结构,顶盖C432b与框结构可拆卸连接。如此,在组装室外侧组件13时,可以先在底盘11上组装好室外风机500、室外换热器600、压缩机700、电控盒800等元件,再将框结构设于底盘11上,最后将顶盖C432b设于框结构上。
在本申请的一些实施例中,第一室外侧进风口402a包括多条第一长条孔,多条第一长条孔平行间隔排布。第二室外侧进风口402b包括多条第二长条孔,多条第二长条孔平行间隔排布。
在本申请的一些实施例中,如图25及图29所示,通风口422a在上下方向上贯穿第四侧板C420的上下两侧,从而第四侧板C420包括第一翻边C422与第二翻边C424。第一翻边C422与第二翻边C424扣合在室外换热器600的左右两侧,气流穿过室外换热器600后,从通风口422a排出。如此,不仅可以使得通风口422a具有较大的出风面积,出风量更大,室外侧组件13的能效更高,而且便于固定室外换热器600。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“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一定指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何的一个或多个实施例或示例中以合适的方式结合。
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 (30)

  1. 一种窗式空调器的机壳,所述窗式空调器包括压缩机和室外风道组件,其中,所述机壳包括:
    室外侧箱体,所述压缩机和所述室外风道组件适于设置在所述室外侧箱体内,所述室外侧箱体的顶部设有通风区域和遮挡区域,所述遮挡区域适于与至少部分所述压缩机和/或至少部分所述室外风道组件正对设置。
  2. 根据权利要求1所述的窗式空调器的机壳,其中,所述遮挡区域的一部分与所述压缩机的电机线正对设置,所述遮挡区域的另一部分与所述室外风道组件的电机线正对设置。
  3. 根据权利要求2所述的窗式空调器的机壳,其中,所述遮挡区域包括间隔设置的第一遮挡部和第二遮挡部,所述第一遮挡部与所述压缩机的电机线正对设置,所述第二遮挡部与所述室外风道组件的风叶正对设置。
  4. 根据权利要求1-3中任一项所述的窗式空调器的机壳,其中,所述遮挡区域由所述室外侧箱体的部分顶壁限定出。
  5. 根据权利要求4所述的窗式空调器的机壳,其中,所述通风区域包括多个间隔设置的第一通风口,部分所述第一通风口的长度小于邻近其的所述第一通风口的长度以限定出所述遮挡区域。
  6. 根据权利要求1-5中任一项所述的窗式空调器的机壳,其中,所述机壳还包括:
    室内侧箱体和底盘,所述室内侧箱体与所述室外侧箱体前后间隔设置在所述底盘上以限定出适于窗扇伸入的容纳槽,所述室外侧箱体朝向所述室内侧箱体的侧面为内侧面,所述内侧面上设有第二通风口。
  7. 根据权利要求6所述的窗式空调器的机壳,其中,所述内侧面上设有加强部,所述加强部包括第一加强筋以及连接在所述第一加强筋上的多个第二加强筋。
  8. 根据权利要求1-7中任一项所述的窗式空调器的机壳,所述窗式空调器包括室外换热器,其中,所述机壳还包括:
    底盘,所述室外侧箱体设在所述底盘上,所述室外换热器适于放置在所述底盘上且适于设在所述室外侧箱体内,所述室外侧箱体包括顶盖和顶部设有开口的外箱,所述顶盖盖设在所述开口上,所述外箱的周向上间隔设有多个第一连接部,所述顶盖的周向上间隔设有多个第二连接部,多个所述第一连接部一一对应地与多个所述第二连接部相接触;
    多个固定件,每个所述第一连接部和相应的所述第二连接部均通过所述固定件连接以将所述顶盖连接在所述外箱上。
  9. 根据权利要求8所述的窗式空调器的机壳,其中,
    所述顶盖上设有侧边,所述侧边围绕所述外箱设置,部分所述侧边朝向所述外箱凹陷以限定出多个所述第二连接部;和/或,
    所述外箱的部分侧壁朝向所述顶盖凸起限定出多个所述第一连接部。
  10. 根据权利要求8或9所述的窗式空调器的机壳,其中,所述外箱的外侧面上设有通风口,所述通风口的至少一个侧壁上设有朝外凹入的扩口以增加通风量。
  11. 根据权利要求10所述的窗式空调器的机壳,其中,所述通风口的侧壁上设有位于所述扩口两侧的连接部,两侧的所述连接部分别与所述底盘和顶盖相连。
  12. 根据权利要求8-11中任一项所述的窗式空调器的机壳,其中,所述外箱的外侧面上设有通风口,所述通风口的至少一个侧壁设有遮挡侧边,所述遮挡侧边与所述室外换热器的换热管正对设置以遮挡所述换热管。
  13. 根据权利要求8-12中任一项所述的窗式空调器的机壳,其中,所述底盘上设有第一通孔,穿过所述第一通孔的第一固定连接件适于固定在所述室外换热器上,所述外箱上设有第二通孔,穿过所述第二通孔的第二固定连接件适于固定在所述室外换热器上,所述第一通孔和所述第二通孔正对设置。
  14. 根据权利要求1-13中任一项所述的窗式空调器的机壳,所述窗式空调器包括电控盒,所述室外风道组件包括室外风机,其中,所述机壳还包括:
    后围板,所述后围板设置在所述室外侧箱体内,所述室外风机适于固定在所述后围板上,所述电控盒适于放置在所述室外侧箱体内,所述室外侧箱体的顶部设有固定部,所述固定部与所述电控盒和/或所述后围板相连以限制所述电控盒相对于所述后围板的位置。
  15. 根据权利要求14所述的窗式空调器的机壳,其中,所述固定部包括第一安装部和第二安装部,所述第一安装部适于与所述电控盒相连,所述第二安装部与所述后围板相连。
  16. 根据权利要求14或15所述的窗式空调器的机壳,其中,还包括:
    密封件,所述密封件密封设置在所述后围板与所述室外侧箱体的顶壁之间。
  17. 根据权利要求14-16中任一项所述的窗式空调器的机壳,其中,所述室外侧箱体的顶壁设有避让部,所述避让部适于与部分所述压缩机正对设置以避让所述压缩机。
  18. 根据权利要求1至17中任一项所述的窗式空调器的机壳,其中,所述机壳还包括:
    室内侧箱体和底盘,所述室内侧箱体与所述室外侧箱体前后间隔设置在所述底盘上以限定出适于窗扇伸入的容纳槽。
  19. 一种窗式空调器,其中,包括;
    机壳,所述机壳为根据权利要求1-18中任一项所述的窗式空调器的机壳;
    压缩机和室外风道组件,所述压缩机和所述室外风道组件均设置在所述室外侧箱体内。
  20. 根据权利要求19所述的窗式空调器,适合于安装在开设有窗口的墙体上,所述窗式空调器包括底盘及设于所述底盘上的室内侧组件与室外侧组件,其中,所述室外侧组件包括:
    所述室外侧箱体,包括外箱及顶盖,所述外箱设于所述底盘上,所述顶盖设于所述外箱远离所述底盘的一端,所述外箱包括出风部,所述出风部开设有通风口,所述通风口形成为室外侧出风口且沿第一方向贯穿所述出风部的两侧,并使得所述出风部包括沿第二方向间隔排布的第一翻边及第二翻边,所述第一方向为所述底盘与所述顶盖的排布方向;
    室外换热器,设于所述室外侧箱体内,并位于所述出风部处,所述室外换热器具有出风面,所述第一翻边及所述第二翻边分别与所述出风面位于所述第二方向上的两侧扣接,
    其中,所述第一翻边与所述第二翻边中的至少一者在所述第二方向上向外侧、内陷形成扩口,以露出部分所述出风面。
  21. 根据权利要求20所述的窗式空调器,其中,所述出风面包括中心出风区及位于所述中心出风区外周的第一扣接区及第二扣接区,所述中心出风区与所述通风口对应设置,所述第一翻边及所述第二翻边分别与所述第一扣接区及所述第二扣接区扣接,
    所述室外侧组件还包括位于所述外箱内的压缩机,所述压缩机设于所述底盘,所述室外换热器的冷媒管自所述室外换热器靠近所述第二扣接区的一侧引出,并与所述压缩机连接,所述第一翻边开设有所述扩口,所述第二翻边遮蔽引出的所述冷媒管。
  22. 根据权利要求20或21所述的窗式空调器,其中,所述外箱为方筒,所述外箱还包括依次连接的第一侧板、第二侧板及第三侧板,所述第一侧板与第三侧板相对,所述第二侧板与所述出风部正对,所述第一侧板、所述第二侧板、所述第三侧板及所述出风部一体成型,所述第一侧板、所述第二侧板、第三侧板及所述顶盖均为进风板,所述进风板上开设有室外侧进风口。
  23. 根据权利要求22所述的窗式空调器,其中,所述扩口沿所述第一方向延伸呈长条状,所述扩口的两端部分别设置连接部。
  24. 根据权利要求22或23所述的窗式空调器,其中,所述第二侧板上设置有加强筋,所述加强筋位于所述底盘与所述第二侧板的所述室外侧进风口之间,以避免所述第二侧板向外***变形。
  25. 根据权利要求19-24中任一项所述的窗式空调器,适合于安装在开设有窗口的墙体上,所述窗式空调器包括室内侧组件与室外侧组件,所述室外侧组件与所述室内侧组件在室外至室内的方向上间隔、并限定出容纳槽,所述窗式空调器具有室外侧进风口,所述室 外侧进风口包括第一室外侧进风口,其中,所述室外侧组件包括:
    所述室外侧箱体,包括朝向所述室内侧组件的第二侧板、与所述第二侧板相对的第四侧板,以及连接所述第二侧板及所述第四侧板的周向板,所述第二侧板开设有所述第一室外侧进风口,所述第四侧板开设有通风口;以及
    电控盒,设于所述室外侧箱体内,并位于所述第一室外侧进风口至所述通风口的气流路径上,以使得经所述第一室外侧进风口进入所述室外侧箱体的气流至少部分直接吹至所述电控盒上,为所述电控盒散热。
  26. 根据权利要求25所述的窗式空调器,其中,所述室外侧组件还包括室外风机,所述室外风机设于所述室外侧箱体内,并位于所述第二侧板与所述第四侧板之间,所述电控盒位于所述室外风机靠近所述第二侧板的一端。
  27. 根据权利要求26所述的窗式空调器,其中,在室外至室内的方向上,所述电控盒与所述第二侧板间隔10毫米-40毫米。
  28. 根据权利要求26或27所述的窗式空调器,其中,所述电控盒位于所述第二侧板上的正投影覆盖部分所述第一室外侧进风口,以使得气流能经未被覆盖的部分所述第一室外侧进风口直接到达所述室外风机。
  29. 根据权利要求26所述的窗式空调器,其中,所述室外侧进风口还包括第二室外侧进风口,所述周向板包括多块板体,多块所述板体沿所述室外侧箱体的周向依次连接形成弯折板,每一所述板体开设有所述第二室外侧进风口,
    所述板体为三块,三块所述板体围合形成U形结构且分别为第一侧板、第三侧板和顶盖,所述第一侧板、所述第三侧板、所述第二侧板及所述第四侧板一体成型构成框结构,所述顶盖与所述框结构可拆卸连接,
    所述第一室外侧进风口包括多条平行间隔排布的第一长条孔,所述第二室外侧进风口包括多条平行间隔排布的第二长条孔。
  30. 根据权利要求19-29中任一项所述的窗式空调器,适合于安装在开设有窗口的墙体上,其中,所述窗式空调器还包括底盘、密封条、室内侧组件和室外侧组件,所述室内侧组件与所述室外侧组件均设于所述底盘上,且所述室外侧组件与所述室内侧组件在室外至室内的方向上间隔、并限定出容纳槽,所述密封条与所述底盘活动连接,能在收容位置与密封位置之间切换,当所述密封条处于所述收容位置时,所述密封条位于所述容纳槽内,当所述密封条处于密封位置时,所述密封条密封在所述窗口的底壁与伸入所述容纳槽的遮挡件之间。
PCT/CN2020/125178 2019-12-31 2020-10-30 窗式空调器的机壳和窗式空调器 WO2021135600A1 (zh)

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