WO2020156237A1 - 窗式空调器的后围板组件、窗式空调器及窗式空调器装置 - Google Patents

窗式空调器的后围板组件、窗式空调器及窗式空调器装置 Download PDF

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Publication number
WO2020156237A1
WO2020156237A1 PCT/CN2020/072723 CN2020072723W WO2020156237A1 WO 2020156237 A1 WO2020156237 A1 WO 2020156237A1 CN 2020072723 W CN2020072723 W CN 2020072723W WO 2020156237 A1 WO2020156237 A1 WO 2020156237A1
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WO
WIPO (PCT)
Prior art keywords
air conditioner
window
rear panel
vent
type air
Prior art date
Application number
PCT/CN2020/072723
Other languages
English (en)
French (fr)
Inventor
刘雨
邢志钢
张康文
雷志盛
喻辉
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 CN201910108811.6A external-priority patent/CN109724163B/zh
Priority claimed from CN201920188023.8U external-priority patent/CN209689074U/zh
Priority claimed from CN201920188024.2U external-priority patent/CN209689080U/zh
Priority claimed from CN201920188022.3U external-priority patent/CN209689073U/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
Priority to US17/427,284 priority Critical patent/US20220113040A1/en
Priority to CA3128411A priority patent/CA3128411C/en
Publication of WO2020156237A1 publication Critical patent/WO2020156237A1/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
    • F24F1/028Self-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
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/20Casings or covers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • 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
    • F24F13/24Means for preventing or suppressing noise
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K5/00Casings; Enclosures; Supports
    • 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
    • F24F2013/205Mounting a ventilator fan therein

Definitions

  • the application relates to the field of air treatment technology, and in particular to a rear panel assembly of a window air conditioner and a window air conditioner.
  • the outdoor part of the window-type air conditioner is blocked by internal components, which restricts the air intake of the outdoor part of the window-type air conditioner, which results in low heat exchange efficiency of the window-type air conditioner, which in turn leads to poor performance of the window-type air conditioner.
  • the cooling capacity and heating capacity decrease.
  • the present application aims to solve at least one of the technical problems existing in the prior art. To this end, the present application proposes a rear panel assembly of a window air conditioner, which has a large wind passing area.
  • the present application also proposes a window air conditioner, which includes the rear panel assembly of the above window air conditioner.
  • the rear panel assembly of the window type air conditioner includes: a rear panel body with vents provided on the rear panel body; a motor bracket, the motor bracket provided on the rear panel body At least part of the motor bracket is opposite to the vent, and the motor bracket is provided with air holes to allow airflow to flow into the vent through the air holes mouth.
  • the motor bracket is provided with air holes to allow airflow to flow into the vent through the air holes, which can reduce the blocking of the airflow by the motor bracket and increase the wind wheel
  • the air passage area on the air inlet side improves the heat exchange efficiency of the window air conditioner, thereby improving the cooling and heating capacity of the window air conditioner.
  • the air hole is provided on the motor bracket, which can also reduce the resistance in the air flow process, which is beneficial to reduce the noise.
  • the motor support includes: a motor mounting part; a support part, one end of the support part is connected to the outer peripheral wall of the motor mounting part, and the other end of the support part is connected to the rear wall
  • the board body is connected; at least one connecting arm, one end of the connecting arm is connected with the outer peripheral wall of the motor mounting portion, the other end of the connecting arm is connected with the rear panel body, the at least one connecting arm and the
  • the support portions are distributed at intervals along the circumferential direction of the motor mounting portion, the motor mounting portion, at least part of the support portion, and at least part of the connecting arm are all opposed to the vent, and the motor mounting portion , At least one of the supporting portion and the at least one connecting arm is provided with the air passage hole.
  • the rear panel body includes a support member, and the other end of the support portion is connected to the support member.
  • the supporting portion includes a first bottom plate and a plurality of staggered ribs, and the plurality of ribs are connected to a side of the first bottom plate away from the rear panel body .
  • the motor mounting part is provided with a motor mounting hole for mounting the motor.
  • the motor mounting portion includes a second bottom plate, a first annular plate and a second annular plate, and the first annular plate and the second annular plate are both connected to the second bottom plate
  • the second ring plate is sleeved outside the first ring plate, the first ring plate and the second ring plate are spaced apart, the first ring plate
  • a plurality of connecting plates are connected between the plate and the second annular plate, the plurality of connecting plates are arranged at intervals along the circumferential direction of the first annular plate, and the first annular plate defines the motor mounting hole
  • the second bottom plate is provided with an escape hole opposite to the motor mounting hole.
  • the connecting arm is provided with a plurality of air passing holes, and the plurality of air passing holes are spaced apart along the length direction of the connecting arm.
  • the connecting arm includes: a first section, one end of the first section is connected to the rear panel body; a second section, one end of the second section is connected to the first section The other end of a section is connected, the other end of the second section is connected with the outer peripheral wall of the motor mounting portion, and the first section and the second section are at an angle to each other.
  • the projection of the second section in the plane where the vent is located is in the vent
  • the projection of the first section in the plane where the vent is located is in the Outside the vent
  • the connecting arm includes a bottom plate and two side plates. One ends of the two side plates are respectively connected to the bottom plate to define a groove, and the groove is along the connecting arm. The length of the groove extends, and the opening of the groove faces the space defined by the motor bracket and the rear panel.
  • the bottom plate and the side plate are smoothly connected in transition.
  • the inner wall of the vent is smoothly connected to the surface of the rear panel body facing the motor bracket.
  • an air guide ring is provided at the vent, and the air guide ring extends toward a side away from the motor support.
  • the window air conditioner includes a heat exchanger, side panels are provided on opposite sides of the heat exchanger, and spaced apart panels are provided on opposite sides of the rear panel body.
  • the other end of one of the first vertical plate and the second vertical plate is connected with a second baffle, the second baffle is parallel to the first baffle, and the second baffle is parallel to the first baffle.
  • the second baffle is multiple, and the multiple second baffles are connected to the multiple gaps.
  • One-to-one correspondence and one-to-one correspondence of the second baffle plate and the gap are arranged oppositely, and the part of the side plate is located in the sliding groove defined by the first baffle plate and the second baffle plate, wherein
  • the surface of the first baffle facing the chute has a first guiding slope, the first guiding slope is located at the lower end of the first baffle, and the first guiding slope is in a direction from top to bottom Inclined in a direction away from the chute, the surface of the second baffle facing the chute has a second guide slope, the second guide slope is located at the lower end of the second baffle, and the first baffle
  • the two guiding inclined surfaces are inclined in a direction away from the sliding groove in a direction from top to bottom.
  • the rear panel body has a vertical reference plane passing through the central axis of the vent, and a first water retaining rib is provided at the vent, and the first water retaining rib is located at On one side of the reference surface, the first water-retaining rib protrudes toward a side of the rear panel body, the first water-retaining rib extends in the circumferential direction of the vent, and the first The lower end of the water retaining rib is adjacent to the bottom end of the vent.
  • the angle between the line between the bottom end of the first water retaining rib and the center of the vent and the reference plane is ⁇ 1, and the ⁇ 1 satisfies: 10 ° ⁇ 1 ⁇ 20°.
  • the angle between the line between the top end of the first water retaining rib and the center of the vent and the reference plane is ⁇ 2, and the ⁇ 2 satisfies: 45° ⁇ 2 ⁇ 145°.
  • the ⁇ 2 satisfies: 90° ⁇ 2 ⁇ 145°.
  • a second water retaining rib is provided at the vent, the second water retaining rib is located on the other side of the reference surface, and the second water retaining rib faces the rear One side of the enclosure body protrudes, the second water-retaining rib extends along the circumferential direction of the vent, and the lower end of the second water-retaining rib is adjacent to the bottom end of the vent.
  • the angle between the line between the bottom end of the second water retaining rib and the center of the vent and the reference plane is ⁇ 1, and the ⁇ 1 satisfies: 10° ⁇ 1 ⁇ 20° .
  • the angle between the line between the top end of the second water retaining rib and the center of the vent and the reference plane is ⁇ 2, and the ⁇ 2 satisfies: 45° ⁇ 2 ⁇ 65°.
  • the window-type air conditioner includes: a cabinet; the rear panel assembly of the above-mentioned window-type air conditioner, and the rear panel assembly is provided in the cabinet.
  • the window air conditioner of the embodiment of the present application by providing air holes on the motor bracket to allow airflow to flow into the vents through the air holes, the blocking of the airflow by the motor bracket can be reduced, and the air inlet side of the wind wheel can be increased.
  • the air passage area improves the heat exchange efficiency of the window air conditioner, thereby improving the cooling and heating capacity of the window air conditioner.
  • the air hole is provided on the motor bracket, which can also reduce the resistance in the air flow process, which is beneficial to reduce the noise.
  • the window type air conditioner is supported on a window on a wall, and a movable window is provided in the window, a receiving groove is provided on the cabinet, and at least a part of the window is extendable Into the receiving groove, the window type air conditioner further includes: a sealing assembly respectively in contact with the window and the inner wall of the window, and the sealing assembly includes: a first connection with a variable length
  • the first connecting part includes a fixing part and a sliding block, the fixing part is arranged in the receiving groove, and the sliding block is slidingly fitted with the fixing part; a plurality of second connecting parts, any one of the The second connecting part is detachably connected with the sliding block, and any two second connecting parts are detachably connected.
  • a movable window is provided at the window of the wall.
  • the window type air conditioner device includes the above-mentioned window type air conditioner, and the window type air conditioner includes a casing, and The housing is provided with a receiving groove, the window air conditioner has an installed state and an uninstalled state; an installation assembly, the installation assembly includes a storage box and an installation accessory; wherein, in the installed state, the window air conditioner The installation accessory is installed to the window, and the receiving groove is suitable for receiving the window; in the uninstalled state, the installation accessory is stored in the storage box, and the storage box is placed in the storage Inside the groove and clamped by the opposite side walls of the containing groove.
  • the window-type air conditioner device of the embodiment of the present application in the unmounted state, by storing the mounting accessories in the storage box, while the storage box is placed in the containing groove and clamped by the opposite side walls of the containing groove, there is It is beneficial to reduce the size of the packaging box of the window type air conditioner device, thereby increasing the amount of the window type air conditioner device, which is beneficial to reduce the transportation cost, thereby improving the market competitiveness of the window type air conditioner device, and is beneficial to improving the window type The overall structural stability of the air conditioner device.
  • the storage box is made of polystyrene foam.
  • the mounting accessory includes: a mounting frame, the mounting frame includes a bracket part and a connecting part, the bracket part is installed on a wall and used to install a window air conditioner, the connecting part Connected to the bracket part and located on the indoor or outdoor side of the wall; and a partition, the partition is installed at the connecting part and located on the side of the connecting part close to the wall,
  • a plane perpendicular to the thickness direction of the wall is defined as a projection plane, and the orthographic projection area S1 of the spacer on the projection plane is larger than the orthographic projection area S2 of the connecting portion on the projection plane.
  • the shelf includes a telescopic mechanism
  • the telescopic mechanism includes a first drawing member and a second drawing member
  • the first drawing member and the second drawing member are in sliding fit So that the length of the telescopic mechanism can be adjusted telescopically.
  • the first drawing member is installed on the connecting portion, and the second drawing member is sleeved and slidingly moved outside the first drawing member.
  • the first drawing member has a plurality of first positioning holes
  • the second drawing member has a second positioning hole
  • the installation accessory further includes a positioning member
  • the The positioning member penetrates through the second positioning hole and the first positioning hole directly opposite to the second positioning hole.
  • the installation accessory further includes a connecting piece, and the spacer is detachably mounted to the connecting portion through the connecting piece.
  • the mounting frame further includes a bottom support part connected to the lower part of the connecting part and supported on the bottom of the partition frame.
  • the bracket part has at least one hinge hole
  • the installation accessory further includes:
  • a support rod one end of the support rod is hinged with the bracket part through the hinge hole, and the other end of the support rod is provided with a non-slip member and is stopped against the wall.
  • the bracket portion is provided on the bottom edge of the window, the connecting portion extends downward from the bracket portion, and the spacer extends along the length direction of the bottom edge.
  • the window-type air conditioner includes a sealing assembly that respectively contacts the window and the inner wall of the window, and the sealing assembly includes: a first connecting member with a variable length ,
  • the first connecting part includes a fixing part and a sliding block, at least part of the fixing part is disposed in the receiving groove, and the sliding block is slidingly fitted with the fixing part; any one of a plurality of second connecting parts
  • the second connecting part is detachably connected with the sliding block, and any two second connecting parts are detachably connected to adjust the length of the sealing assembly.
  • the sealing assembly further includes a rotating support, the rotating support is fixed on the casing, and the fixing member is rotatably provided on the rotating support to make the The sealing component can be rotated to be received in the containing groove.
  • the sealing assembly further includes a sliding positioning assembly, the sliding positioning assembly is provided on the fixed component and cooperates with the sliding block to position the sliding block at the current position.
  • a sliding cavity is provided in the fixed component, and at least a part of the sliding block extends into the sliding cavity;
  • the sliding positioning assembly is a rotating member, and the rotating member is rotatable
  • the ground penetrates the fixed part and is threadedly engaged with the fixed part.
  • the rotating part rotates to adjust the length of the part of the rotating part that extends into the sliding cavity.
  • the rotating part can stop against the sliding cavity. Block to locate the sliding block.
  • the cabinet includes: a chassis; a rear box body, the rear box body is fixed on the chassis, the rear box body contains an outdoor heat exchanger; a front box body, The front box body is fixed on the chassis, and the front box body and the rear box body are spaced back and forth to define the containing groove; an intermediate partition plate is fixed on the chassis and Located in the accommodating groove, the front and rear ends of the middle partition are respectively matched with the rear box body and the front box body, and the rotating support is installed to the middle partition.
  • the installation accessory includes a plurality of components, a plurality of accommodating cavities spaced apart from each other are formed in the storage box, and the plurality of accommodating cavities correspond to the plurality of components in a one-to-one manner. A plurality of the components are respectively accommodated in the corresponding accommodating cavity.
  • Figure 1 is a perspective view of a rear panel assembly according to Embodiment 1 of the present application.
  • Figure 2 is a perspective view from another angle of the back panel assembly according to the first embodiment of the present application.
  • Figure 3 is a front view of a rear panel assembly according to the first embodiment of the present application.
  • Figure 4 is a rear view of the rear panel assembly according to the first embodiment of the present application.
  • Fig. 5 is a side view of the rear panel assembly according to the first embodiment of the present application.
  • Fig. 6 is a top view of the rear panel assembly according to the first embodiment of the present application.
  • FIG. 7 is a perspective view of a window air conditioner according to Embodiment 1 of the present application.
  • Figure 8 is a perspective view of a window air conditioner according to the first embodiment of the present application.
  • Figure 9 is a top view of a window air conditioner according to the first embodiment of the present application.
  • Fig. 10 is a partial structural diagram of the window air conditioner in Fig. 9;
  • Figure 11 is an exploded view of the sealing assembly of the window air conditioner according to the first embodiment of the present application.
  • Figure 12 is a perspective view of a rear panel assembly according to a second embodiment of the present application.
  • Figure 13 is a perspective view from another angle of the rear panel assembly according to the second embodiment of the present application.
  • Figure 14 is a front view of a rear panel assembly according to a second embodiment of the present application.
  • Figure 15 is a cross-sectional view at A-A in Figure 14;
  • Figure 16 is a cross-sectional view at B-B in Figure 14;
  • Figure 17 is an enlarged view of C in Figure 15;
  • Figure 18 is an enlarged view of D in Figure 16;
  • Figure 19 is a rear view of the rear panel assembly according to the second embodiment of the present application.
  • FIG. 20 is a side view of the rear panel assembly according to the second embodiment of the present application.
  • Figure 21 is a top view of a rear panel assembly according to a second embodiment of the present application.
  • Fig. 22 is a three-dimensional structural diagram of a window air conditioner device according to an embodiment of the present application.
  • Figure 23 is a schematic structural diagram of an installation assembly according to an embodiment of the present application.
  • Fig. 24 is a schematic cross-sectional view at E-E in Fig. 23;
  • Figure 25 is a schematic side view of an installation assembly according to an embodiment of the present application.
  • FIG. 26 is a schematic structural diagram of the installation accessory when installed to a window according to an embodiment of the present application.
  • FIG. 27 is a schematic diagram of projection on the projection surface of the shelf and the connecting portion shown in FIG. 26;
  • Fig. 28 is a partial enlarged schematic diagram of F in Fig. 26;
  • Figure 29 is a schematic side view according to Figure 26;
  • Fig. 30 is a partial enlarged schematic diagram of G in Fig. 29;
  • Figure 31 is a schematic structural diagram of a telescopic structure according to an embodiment of the present application.
  • Fig. 32 is a structural diagram of a window air conditioner according to an embodiment of the present application.
  • FIG. 33 is a partial enlarged schematic diagram of H in FIG. 32;
  • Figure 34 is a schematic plan view of a window air conditioner according to an embodiment of the present application.
  • FIG. 35 is a partial enlarged schematic diagram of J in FIG. 34;
  • Fig. 36 is a structural diagram of a window air conditioner according to an embodiment of the present application.
  • Fig. 37 is a structural diagram of a window air conditioner according to an embodiment of the present application, in which the sealing component is removed from the casing.
  • Indoor part 1011 air inlet a, air outlet b, outdoor part 1012, front box 101a, rear box 101b, chassis 101c, middle partition 101d, placement space 101e,
  • connection should be interpreted broadly 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 interpreted broadly 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 rear panel assembly 100 of the window air conditioner 1000 includes a rear panel body 11 and a motor bracket 12.
  • the rear panel body 11 is provided with a vent 111
  • the motor bracket 12 is provided on one side of the rear panel body 11 and is connected to the rear panel body 11, and the motor bracket 12 At least part of is opposite to the vent 111.
  • An air guide ring 110 is provided at the vent 111, and the air guide ring 110 extends toward a side away from the motor support 12.
  • the motor can be arranged on the motor support 12, and the output shaft of the motor is connected with the wind wheel to drive the wind wheel to rotate. At least a part of the wind wheel is located in the wind guide ring 110, and the wind guide ring 110 can function as a wind guide.
  • the motor support 12 is provided with an air hole 124 to allow airflow to flow into the vent 111 through the air hole 124.
  • the airflow enters from the outdoor air inlet of the outdoor part of the window air conditioner. Driven by the wind wheel, it bypasses the motor bracket and enters the vent to exchange heat with the heat exchanger.
  • the motor bracket blocks the air intake, which restricts the wind passing on the air inlet side of the wind wheel, reduces the heat exchange efficiency, and the motor bracket blocks the air flow, increases the resistance of the air flow, and improves the noise.
  • the motor bracket 12 is provided with an air hole 124.
  • the air flow can enter the vent 111 through the air hole 124 on the motor bracket 12, which reduces the influence of the motor bracket 12 on the air flow. Blocking increases the wind passing area on the inlet side of the wind wheel, improves the heat exchange efficiency of the window air conditioner 1000, and improves the cooling and heating capacity of the window air conditioner 1000.
  • the air hole 124 is provided on the motor support 12, which can also reduce the resistance in the air flow process, which is beneficial to reduce noise.
  • the motor bracket 12 is provided with an air hole 124 so that airflow flows into the vent 111 through the air hole 124, which can reduce the airflow of the motor bracket 12
  • the barrier increases the wind passing area on the inlet side of the wind wheel, and improves the heat exchange efficiency of the window air conditioner 1000, thereby improving the cooling and heating capacity of the window air conditioner 1000.
  • the air hole 124 is provided on the motor support 12, which can also reduce the resistance in the air flow process, which is beneficial to reduce noise.
  • the motor bracket 12 includes a motor mounting portion 121, a supporting portion 122, and at least one connecting arm 123.
  • the motor is mounted on the motor mounting portion 121, and the motor mounting portion 121 Opposite the vent 111, it is convenient for the motor to connect with the wind wheel and drive the wind wheel to rotate.
  • One end of the supporting portion 122 is connected to the outer peripheral wall of the motor mounting portion 121, and the other end of the supporting portion 122 is connected to the rear panel body 11, thereby fixing the motor mounting portion 121.
  • At least part of the supporting portion 122 is opposite to the vent 111, thereby not only facilitating the connection between the supporting portion 122 and the motor mounting portion 121, but also facilitating the connection between the supporting portion 122 and the rear panel body 11.
  • one end of the connecting arm 123 is connected to the outer peripheral wall of the motor mounting portion 121, and the other end of the connecting arm 123 is connected to the rear panel body 11, thereby fixing the motor mounting portion 121 and improving the motor mounting portion 121 The reliability of the fixation, thereby improving the reliability of the motor fixation.
  • the above-mentioned at least one connecting arm 123 and the supporting portion 122 are distributed at intervals along the circumferential direction of the motor mounting portion 121, thereby increasing the fixing effect of the motor mounting portion 121. Thereby, the fixing effect of the motor is increased, and the reliability of the fixing of the motor is improved.
  • At least a part of the connecting arm 123 is opposite to the vent 111, which not only facilitates the connection between the connecting arm 123 and the motor mounting portion 121, but also facilitates the connection between the connecting arm 123 and the rear panel body 11.
  • the supporting portion 122 is located below the motor mounting portion 121 (as shown in FIG. 3), the lower end of the supporting portion 122 is connected to the rear panel body 11, and the upper end of the supporting portion 122 is mounted to the motor
  • the outer peripheral wall of the part 121 is connected to support the motor mounting part 121.
  • the two connecting arms 123 are both located above the motor mounting portion 121 (as shown in FIG. 3).
  • the two connecting arms 123 are spaced apart along the circumferential direction of the motor mounting portion 121.
  • the lower ends of the arms 123 are all connected to the outer peripheral wall of the motor mounting portion 121, and the upper ends of each connecting arm 123 are all connected to the rear panel body 11 to increase the fixing effect of the motor mounting portion 121.
  • At least one of the motor mounting portion 121, the supporting portion 122 and the at least one connecting arm 123 is provided with an air hole 124.
  • the structure diversity of the motor support 12 can be increased to meet different requirements.
  • the supporting portion 122 includes a first bottom plate 1222 and a plurality of staggered ribs 1221, and the plurality of ribs 1221 are connected to the first bottom plate 1222.
  • the supporting portion 122 includes a plurality of first ribs extending in the vertical direction and spaced apart in the horizontal direction, and a plurality of first ribs spaced in the vertical direction and spaced apart in the horizontal direction.
  • Each of the second ribs extending in the horizontal direction is staggeredly connected with each of the first ribs, and the first ribs and the second ribs are both arranged on the first bottom plate 1222.
  • the motor mounting portion 121 is provided with a motor mounting hole 1211 for mounting a motor.
  • the motor can be installed in the motor mounting hole 1211, which can simplify the installation method of the motor and improve production efficiency.
  • the motor mounting portion 121 includes a second bottom plate 1215, a first annular plate 1212, and a second annular plate 1213.
  • the first annular plate 1212 and the second annular plate 1213 are both connected to the second On the side of the bottom plate 1215 away from the rear panel body 11, the second ring plate 1213 is sleeved outside the first ring plate 1212, the first ring plate 1212 and the second ring plate 1213 are spaced apart, the first ring plate 1212 and the second ring plate 1212 are spaced apart from each other.
  • a plurality of connecting plates 1214 are connected between the annular plates 1213, and the plurality of connecting plates 1214 are arranged at intervals along the circumferential direction of the first annular plate 1212.
  • the first annular plate 1212 defines a motor mounting hole 1211, and the second bottom plate 1215 is provided with An escape hole opposite to the motor mounting hole 1211.
  • the connecting arm 123 is provided with a plurality of air passage holes 124, and the plurality of air passage holes 124 are distributed at intervals along the length direction of the connecting arm 123.
  • the connecting arm 123 can flow to the vent 111 through the multiple air holes 124 on the connecting arm 123, which reduces the resistance of the connecting arm 123 to the air flow and increases the wind passing area on the air inlet side of the wind wheel , To improve the heat exchange efficiency of the window air conditioner 1000, thereby improving the cooling and heating capacity of the window air conditioner 1000.
  • the connecting arm 123 is provided with air holes 124, which can also reduce the resistance in the air flow process, which is beneficial to reduce noise.
  • the connecting arm 123 includes a first section 1231 and a second section 1232.
  • One end of the first section 1231 is connected to the rear panel body 11, and one end of the second section 1232 is connected to The other end of the first section 1231 is connected, the other end of the second section 1232 is connected with the outer peripheral wall of the motor mounting portion 121, and the first section 1231 and the second section 1232 are at an angle to each other.
  • the motor mounting portion 121 can be spaced apart from the rear panel body 11, which facilitates the installation of the motor and the coordination of the motor and the wind wheel.
  • the structural strength of the motor support 12 can be improved.
  • At least one of the first section 1231 and the second section 1232 is provided with an air hole 124. That is to say, only the first section 1231 is provided with air holes 124, or only the second section 1232 is provided with air holes 124, or both the first section 1231 and the second section 1232 are provided with air holes 124 . Therefore, the structure diversity of the motor support 12 can be increased. For example, in the example shown in FIG. 1, the first section 1231 and the second section 1232 are both provided with air holes 124.
  • the projection of the second section 1232 in the plane where the vent 111 is located is in the vent 111, and the first section 1231 is in the plane where the vent 111 is located.
  • the projection of is located outside the vent 111. Therefore, the blocking of the connecting arm 123 to the air intake can be reduced, which is beneficial to increase the wind passing area and improve the heat exchange effect of the window air conditioner 1000.
  • the second section 1232 is substantially perpendicular to the rear panel body 11.
  • the connecting arm 123 includes a bottom plate 1233 and two side plates 1234. One end of the two side plates 1234 is respectively connected to the bottom plate 1233 to define a groove 1235, The groove 1235 extends along the length direction of the connecting arm 123, and the opening of the groove 1235 faces the space defined by the motor bracket 12 and the rear panel. This not only increases the structural strength of the connecting arm 123, but also reduces the weight of the motor bracket 12, thereby reducing the weight of the window air conditioner 1000.
  • the bottom plate 1233 and the side plate 1234 are smoothly connected in transition. That is to say, the connection between the bottom plate 1233 and the side plate 1234 is connected by a smooth curved surface, thereby reducing the resistance of the connecting arm 123 to the air flow, which is beneficial to reducing noise.
  • the inner wall of the vent 111 is smoothly connected to the surface of the rear panel body 11 facing the motor bracket 12. Therefore, the wind resistance from the vent 111 can be reduced, which is beneficial to reduce noise.
  • the motor support 12 and the rear panel body 11 are integrally formed. As a result, the number of parts can be reduced, the assembly efficiency of the window air conditioner 1000 can be improved, the production efficiency of the window air conditioner 1000 can be improved, and the cost can be effectively reduced.
  • the rear panel body 11 has a vertical reference plane passing through the central axis of the vent 111, and the vent 111 is provided with a first water retaining rib 112,
  • the water rib 112 is located on one side of the reference surface.
  • the first water retaining rib 112 protrudes toward the side of the rear panel body 11 close to the motor bracket 12, and the first water retaining rib 112 extends in the circumferential direction of the vent 111.
  • the lower end of a water retaining rib 112 is adjacent to the bottom end of the vent 111.
  • the condensed water in the drain pan is easily thrown out of the drain pan.
  • the first water-retaining rib 112 has a blocking effect on the thrown water, which can prevent the condensed water from being thrown out, thereby improving the safety of the window type air conditioner 1000 in operation.
  • the angle between the line between the bottom end of the first water retaining rib 112 and the center of the vent 111 and the reference plane is ⁇ 1, and ⁇ 1 satisfies: 10° ⁇ 1 ⁇ 20° .
  • the condensate in the drain pan has a certain inertial force when it is thrown out, and the condensed water thrown out will continue to move a certain distance under the action of the inertial force, that is, Near the bottom end of the reference surface, no condensate is thrown out.
  • the layout range of the first water retaining rib 112 can be reduced, thereby reducing the space occupied by the first water retaining rib 112 and manufacturing materials, and saving costs.
  • the angle between the line between the bottom end of the first water retaining rib 112 and the center of the vent 111 and the reference plane may be 12°, 14°, 16°, 18°, etc., specifically, the first The angle between the connecting line between the bottom end of the water retaining rib 112 and the center of the vent 111 and the reference surface can be designed according to the model of the rear panel assembly 100 and the working environment.
  • the present application is not limited to this, and the angle between the connection line between the bottom end of the first water retaining rib 112 and the center of the vent 111 and the reference plane may also be 25°, 30°, 35°, etc.
  • the angle between the line between the top end of the first water retaining rib 112 and the center of the vent 111 and the reference plane is ⁇ 2, and ⁇ 2 satisfies: 45° ⁇ 2 ⁇ 145°.
  • the angle between the line between the top end of the first water retaining rib 112 and the center of the vent 111 and the reference plane may be 50°, 70°, 90°, 110°, 130°, etc.
  • the angle between the connection line between the bottom end of the first water retaining rib 112 and the center of the vent 111 and the reference surface may be designed according to the model of the rear panel assembly 100 and the working environment.
  • ⁇ 2 satisfies: 90° ⁇ 2 ⁇ 145°.
  • the first water retaining rib 112 can be further increased.
  • the water-retaining range can further improve the water-retaining effect of the first water-retaining rib 112, so that the working safety of the window air conditioner 1000 is further improved.
  • the angle between the line between the top end of the first water retaining rib 112 and the center of the vent 111 and the reference plane may be 95°, 105°, 115°, 120°, 125°, 130°, 135° °, 140°, etc.
  • a second water-retaining rib 113 is provided at the vent 111, the second water-retaining rib 113 is located on the other side of the reference surface, and the second water-retaining rib 113 faces backward
  • the second water-retaining rib 113 can shield the water thrown from the other side of the reference surface, which can prevent the condensed water from being thrown from the other side of the reference surface.
  • the safety of the window air conditioner 1000 can be further improved.
  • the angle between the line between the bottom end of the second water retaining rib 113 and the center of the vent 111 and the reference plane is ⁇ 1, and ⁇ 1 satisfies: 10° ⁇ 1 ⁇ 20°.
  • the layout range of the second water retaining rib 113 can be reduced, thereby reducing the space occupied by the second water retaining rib 113 and manufacturing materials, and saving costs.
  • the angle between the line between the top end of the second water retaining rib 113 and the center of the vent 111 and the reference plane is ⁇ 2, and ⁇ 2 satisfies: 45° ⁇ 2 ⁇ 65°.
  • the angle between the line between the top end of the second water retaining rib 113 and the center of the vent 111 and the reference plane may be 50°, 55°, 60°, and so on.
  • the angle between the connection line between the bottom end of the second water retaining rib 113 and the center of the vent 111 and the reference surface may be designed according to the model of the rear panel assembly 100 and the working environment.
  • the window type air conditioner 1000 includes a heat exchanger, and side plates are provided on opposite sides of the heat exchanger.
  • the rear panel assembly 100 includes: a rear panel body 11, and spaced apart first vertical plates 114 are provided on opposite sides of the rear panel body 11 And the second vertical plate 115, the first vertical plate 114 and the second vertical plate 115 both extend in the vertical direction, one end of the first vertical plate 114 (the outer end as shown in FIG. 12) and one end of the second vertical plate 115 (The outer end as shown in FIG.
  • first baffle 12 is connected between the first baffle 116, there are multiple first baffles 116, the multiple first baffles 116 are spaced apart in the vertical direction, and two adjacent first baffles 116 A gap 119 is defined between the baffles 116, and the other end of one of the first vertical plate 114 and the second vertical plate 115 (the inner end as shown in FIG.
  • the second baffle 117 is connected with a second baffle 117, and the second baffle 117 Parallel to the first baffle 116, there is a gap between the second baffle 117 and the other of the first vertical plate 114 and the second vertical plate 115 for the passage of the edge plate, the second baffle 117 is multiple, multiple
  • the second baffle 117 corresponds to the plurality of gaps 119 one-to-one, and the corresponding second baffle 117 and the gap 119 are arranged opposite to each other.
  • the side plate is located in the sliding groove defined by the first baffle 116 and the second baffle 117 118 within.
  • the side plate when the heat exchanger is assembled with the rear panel assembly 100, the side plate is located in the sliding groove 118 defined by the first baffle 116 and the second baffle 117, and the first baffle 116 and the second baffle 117 are used.
  • the second baffle plate 117 limits the position of the side plate to realize the connection and fixation of the heat exchanger and the rear panel assembly 100.
  • there are four first baffles 116 there are four first baffles 116, the four first baffles 116 are spaced apart in the vertical direction, and one first baffle 116 is provided between adjacent two first baffles 116.
  • the second baffle 117 is spaced apart from the first baffle 116.
  • the surface of the first baffle 116 facing the sliding groove 118 has a first guide slope 1161 (refer to FIG. 17), and the first guide slope 1161 is located on the first baffle 116 And the first guide inclined surface 1161 is inclined in a direction away from the sliding groove 118 in a top-down direction, and the surface of the second baffle 117 facing the sliding groove 118 has a second guiding inclined surface 1171 (refer to FIG. 19), The second guiding inclined surface 1171 is located at the lower end of the second baffle 117, and the second guiding inclined surface 1171 is inclined in a direction away from the sliding groove 118 in a top-down direction.
  • the side plate of the heat exchanger can be slid vertically upwards from the lower end of the rear panel assembly 100 into the predetermined installation position along the vertical direction, with the side panel in the upward direction.
  • the first guiding inclined surface 1161 and the second guiding inclined surface 1171 have a guiding effect on the upward sliding of the side plate, so that the side plate can slide upward more smoothly.
  • the side board in the process of sliding the side board from bottom to top, when the side board slides into the first guide inclined surface 1161 of the first baffle 116, the side board can be directed toward the sliding groove 118 under the guidance of the first guide inclined surface 1161. Sliding in the direction of, so that the side board slides upward more smoothly.
  • the side board in the process of sliding the side board from bottom to top, when the side board slides into the second guide inclined surface 1171 of the second baffle 117, the side board can be directed toward and approaching the sliding groove under the guidance of the second guiding inclined surface 1171 Sliding in the direction of 118, the side board slides upwards more smoothly.
  • the rear panel assembly 100 includes a rear panel body 11, and spaced apart first vertical panels are provided on opposite sides of the rear panel body 11 114 and the second vertical plate 115.
  • a plurality of spaced apart first baffles 116 are connected between one end of the first vertical plate 114 and one end of the second vertical plate 115.
  • a plurality of second baffles 117 spaced apart are connected to the other end of one of them.
  • the second baffle 117 and the first baffle 116 define a sliding groove 118, which is provided on the surface of the first baffle 116 facing the sliding groove 118
  • the first guiding inclined surface 1161, and the first guiding inclined surface 1161 is inclined in a direction away from the sliding groove 118 in a top-down direction
  • a second guiding inclined surface 1171 is provided on the surface of the second baffle 117 facing the sliding groove 118
  • the second guide slope 1171 is inclined from the top to the bottom in the direction away from the sliding groove 118.
  • the rear panel body 11 is provided with a vent 111, and the rear panel body 11 has a vertical reference plane passing through the central axis of the vent 111, and the vent A first water-retaining rib 112 is provided at 111.
  • the first water-retaining rib 112 is located on one side of the reference plane.
  • the first water-retaining rib 112 protrudes toward the side of the rear panel body 11, and the first water-retaining rib 112 is along the ventilation
  • the opening 111 extends in the circumferential direction, and the lower end of the first water retaining rib 112 is adjacent to the bottom end of the vent 111.
  • the condensed water in the drain pan is easily thrown out of the drain pan.
  • the first water-retaining rib 112 has a blocking effect on the thrown water, which can prevent the condensed water from being thrown out, thereby improving the safety of the window type air conditioner 1000 in operation.
  • the line between the bottom end (the lower end shown in FIG. 14) of the first water retaining rib 112 and the center of the vent 111 and the reference plane The angle between is ⁇ 1, and ⁇ 1 satisfies: 10° ⁇ 1 ⁇ 20°.
  • the condensate in the drain pan has a certain inertial force when it is thrown out, and the condensed water thrown out will continue to move under the action of the inertial force. That is, near the bottom end of the reference surface, no condensate is thrown out.
  • the layout range of the first water retaining rib 112 can be reduced, thereby reducing the space occupied by the first water retaining rib 112 and manufacturing materials, and saving costs.
  • the angle between the line between the bottom end of the first water retaining rib 112 and the center of the vent 111 and the reference plane may be 12°, 14°, 16°, 18°, etc., specifically, the first The angle between the connecting line between the bottom end of the water retaining rib 112 and the center of the vent 111 and the reference surface can be designed according to the model of the rear panel assembly 100 and the working environment. Of course, the present application is not limited to this.
  • the angle between the line between the bottom end of the first water retaining rib 112 and the center of the vent 111 and the reference plane can also be 25°, 30°, 35°, and so on.
  • the line between the top end of the first water retaining rib 112 (the upper end shown in FIG. 14) and the center of the vent 111 is between the reference plane
  • the angle between is ⁇ 2, and ⁇ 2 satisfies: 45° ⁇ 2 ⁇ 145°.
  • the angle between the line between the top end of the first water retaining rib 112 and the center of the vent 111 and the reference plane may be 50°, 70°, 90°, 110°, 130°, etc.
  • the angle between the connection line between the bottom end of the first water retaining rib 112 and the center of the vent 111 and the reference surface may be designed according to the model of the rear panel assembly 100 and the working environment.
  • ⁇ 2 satisfies: 90° ⁇ 2 ⁇ 145°.
  • the water-retaining range can further improve the water-retaining effect of the first water-retaining rib 112, so that the safety of the window air conditioner 1000 (refer to FIG. 7) is further improved.
  • the angle between the line between the top end of the first water retaining rib 112 and the center of the vent 111 and the reference plane may be 95°, 105°, 115°, 120°, 125°, 130°, 135° °, 140°, etc.
  • a second water retaining rib 113 is provided at the vent 111, the second water retaining rib 113 is located on the other side of the reference plane, and the second water retaining rib 113 faces one side of the rear panel body 11.
  • the side protrudes, the second water retaining rib 113 extends along the circumferential direction of the vent 111, and the lower end of the second water retaining rib 113 is adjacent to the bottom end of the vent 111. It is understandable that by providing the second water-retaining rib 113, the second water-retaining rib 113 can shield the water thrown from the other side of the reference surface, which can prevent the condensed water from being thrown from the other side of the reference surface. Therefore, the safety of the operation of the window air conditioner 1000 (refer to FIG. 7) can be further improved.
  • the angle between the line between the bottom end of the second water retaining rib 113 (the lower end shown in FIG. 14) and the center of the vent 111 and the reference plane is ⁇ 1, ⁇ 1 satisfy: 10° ⁇ 1 ⁇ 20°.
  • the condensate in the drain pan has a certain inertial force when it is thrown out, and the condensed water thrown out will continue to move under the action of the inertial force. That is, near the bottom end of the reference surface, no condensate is thrown out.
  • the layout range of the second water retaining rib 113 can be reduced, thereby reducing the space occupied by the second water retaining rib 113 and manufacturing materials, and saving costs.
  • the line between the top end of the second water retaining rib 113 (the upper end shown in FIG. 14) and the center of the vent 111 is between the reference plane
  • the angle between is ⁇ 2, and ⁇ 2 satisfies: 45° ⁇ 2 ⁇ 65°.
  • the angle between the line between the top end of the second water retaining rib 113 and the center of the vent 111 and the reference plane may be 48°, 52°, 56°, 60°, 64°, etc.
  • the angle between the connection line between the bottom end of the second water retaining rib 113 and the center of the vent 111 and the reference surface may be designed according to the model of the rear panel assembly 100 and the working environment.
  • the rear panel assembly 100 further includes: a motor bracket 12, which is connected to the rear panel body 11, and at least part of the motor bracket 12 is connected to the vent 111 is opposite, the motor bracket 12 is provided with an air hole 124 to allow airflow to flow into the vent 111 through the air hole 124.
  • the airflow enters from the outdoor air inlet of the outdoor part of the window air conditioner 1000 (refer to FIG. 7), driven by the wind wheel, bypasses the motor bracket 12 and enters the vent 111 to exchange heat with the heat exchanger.
  • the motor bracket 12 blocks the air intake, which restricts the wind passing on the air inlet side of the wind wheel and reduces the heat exchange efficiency.
  • the motor bracket 12 blocks the air flow, increases the resistance of the air flow, and increases noise.
  • the motor bracket 12 is provided with an air hole 124.
  • the air flow can enter the vent 111 through the air hole 124 on the motor bracket 12, which reduces the influence of the motor bracket 12 on the air flow. Blocking increases the air passage area on the inlet side of the wind wheel, improves the heat exchange efficiency of the window air conditioner 1000 (refer to FIG. 7), thereby improving the cooling and heating capacity of the window air conditioner 1000.
  • the air hole 124 is provided on the motor support 12, which can also reduce the resistance in the air flow process, which is beneficial to reduce noise.
  • the motor support 12 includes a motor mounting portion 121, a support portion 122 and at least one connecting arm 123, one end of the support portion 122 is connected to the outer peripheral wall of the motor mounting portion 121, The other end of the supporting portion 122 is connected to the supporting member, thereby fixing the motor mounting portion 121.
  • one end of the connecting arm 123 is connected to the outer peripheral wall of the motor mounting portion 121, and the other end of the connecting arm 123 is connected to the rear panel body 11, thereby fixing the motor mounting portion 121 and improving the motor mounting portion 121 The reliability of the fixation, thereby improving the reliability of the motor fixation.
  • the above-mentioned at least one connecting arm 123 and the support portion 122 are distributed at intervals along the circumferential direction of the motor mounting portion 121, thereby increasing the fixing effect of the motor mounting portion 121. Thereby, the fixing effect of the motor is increased, and the reliability of the fixing of the motor is improved.
  • At least a part of the connecting arm 123 is opposite to the vent 111, which not only facilitates the connection between the connecting arm 123 and the motor mounting portion 121, but also facilitates the connection between the connecting arm 123 and the rear panel body 11.
  • the support portion 122 is located below the motor mounting portion 121, the lower end of the support portion 122 is connected to the rear panel body 11, and the upper end of the support portion 122 is connected to the outer periphery of the motor mounting portion 121
  • the walls are connected to support the motor mounting part 121.
  • the two connecting arms 123 are both located above the motor mounting portion 121.
  • the two connecting arms 123 are arranged at intervals along the circumferential direction of the motor mounting portion 121.
  • the lower end of each connecting arm 123 is connected to the motor mounting portion.
  • the outer peripheral wall of 121 is connected, and the upper end of each connecting arm 123 is connected with the rear panel body 11 to increase the fixing effect of the motor mounting portion 121.
  • At least one connecting arm 123 and the support portion 122 are distributed at intervals along the circumferential direction of the motor mounting portion 121, and at least part of the motor mounting portion 121 and the support portion 122 At least a part of the connecting arm 123 is opposite to the vent 111, and at least one of the motor mounting portion 121, the supporting portion 122, and the at least one connecting arm 123 is provided with an air hole 124.
  • the structure diversity of the motor support 12 can be increased to meet different requirements.
  • the supporting portion 122 includes a first bottom plate 1222 and a plurality of staggered ribs 1221, and the plurality of ribs 1221 are connected to the first bottom plate 1222 away from the rear panel body 11 side.
  • the structural strength of the supporting portion 122 can be enhanced, and the supporting effect of the supporting portion 122 on the motor mounting portion 121 can be improved, thereby improving the reliability of the operation of the motor.
  • the supporting portion 122 includes a plurality of first ribs 1221 extending in the vertical direction and spaced apart in the horizontal direction, and a plurality of first ribs 1221 spaced apart in the vertical direction.
  • the second ribs 1221 extending in the horizontal direction, each of the second ribs 1221 are alternately connected with each of the first ribs 1221, and the first ribs and the second ribs are both arranged on the first bottom plate 1222.
  • the motor mounting portion 121 is provided with a motor mounting hole 1211 for mounting a motor.
  • the motor can be installed in the motor mounting hole 1211, which can simplify the installation method of the motor and improve production efficiency.
  • the motor mounting portion 121 includes a second bottom plate 1215, a first annular plate 1212, and a second annular plate 1213.
  • the first annular plate 1212 and the second annular plate 1213 are both connected to the second On the side of the bottom plate 1215 away from the back panel body 11, the second ring plate 1213 is sleeved outside the first ring plate 1212, the first ring plate 1212 and the second ring plate 1213 are spaced apart, and the first ring plate 1212 and the second ring plate 1212 are spaced apart from each other.
  • a plurality of connecting plates 1214 are connected between the annular plates 1213, and the plurality of connecting plates 1214 are arranged at intervals along the circumferential direction of the first annular plate 1212.
  • the first annular plate 1212 defines a motor mounting hole 1211, and the second bottom plate 1215 is provided with An escape hole opposite to the motor mounting hole 1211.
  • the connecting arm 123 is provided with a plurality of air passing holes 124, and the plurality of air passing holes 124 are distributed at intervals along the length direction of the connecting arm 123.
  • the connecting arm 123 can flow to the vent 111 through the multiple air holes 124 on the connecting arm 123, which reduces the resistance of the connecting arm 123 to the air flow and increases the wind passing area on the air inlet side of the wind wheel , Improve the heat exchange efficiency of the window air conditioner 1000 (refer to FIG. 7), thereby improving the cooling and heating capacity of the window air conditioner 1000.
  • the connecting arm 123 is provided with air holes 124, which can also reduce the resistance in the air flow process, which is beneficial to reduce noise.
  • the connecting arm 123 includes: a first section 1231, one end of the first section 1231 is connected to the rear panel body 11; a second section 1232, one end of the second section 1232 is connected to the first The other end of the section 1231 is connected, the other end of the second section 1232 is connected with the outer peripheral wall of the motor mounting portion 121, and the first section 1231 and the second section 1232 are at an angle to each other.
  • the motor mounting portion 121 can be spaced apart from the rear panel body 11, which facilitates the installation of the motor and the coordination of the motor and the wind wheel.
  • the structural strength of the motor support 12 can be improved.
  • At least one of the first section 1231 and the second section 1232 is provided with an air hole 124 (refer to FIG. 21). That is to say, only the first section 1231 is provided with air holes 124, or only the second section 1232 is provided with air holes 124, or both the first section 1231 and the second section 1232 are provided with air holes 124 . Therefore, the structure diversity of the motor support 12 can be increased. For example, in the examples shown in FIG. 13 and FIG. 21, the first section 1231 and the second section 1232 are both provided with air holes 124.
  • the window type air conditioner 1000 includes a cabinet 200 and the aforementioned rear panel assembly 100.
  • the rear panel assembly 100 is provided in the cabinet 200.
  • the motor bracket 12 is provided with an air hole 124 so that the airflow flows into the vent 111 through the air hole 124, which can reduce the blocking of the motor bracket 12 to the airflow and increase the wind
  • the wind passing area on the air inlet side of the wheel improves the heat exchange efficiency of the window air conditioner 1000, thereby improving the cooling and heating capacity of the window air conditioner 1000.
  • the air hole 124 is provided on the motor support 12, which can also reduce the resistance in the air flow process, which is beneficial to reduce noise.
  • the window-type air conditioner 1000 is supported on a window on a wall, and a movable window is arranged in the window.
  • the housing 200 has a receiving groove 21 for receiving The two sides of the groove 21 are an indoor part and an outdoor part respectively, and at least a part of the window can extend into the receiving groove 21.
  • the window air conditioner 1000 further includes a sealing assembly 300, which respectively contacts the window and the inner wall of the window. As shown in FIGS.
  • the sealing assembly 300 includes a first connecting part 31 with a variable length and a plurality of second The connecting part 32, the first connecting part 31 includes a fixing part 311 and a sliding block 312, the fixing part 311 is arranged in the receiving groove 21, and the sliding block 312 is slidingly fitted with the fixing part 311. Any one of the second connecting parts 32 and the sliding block 312 are detachably connected, and any two second connecting parts 32 are detachably connected.
  • the sealing assembly 300 includes the first connecting part 31, the first connecting part 31 includes the fixing part 311 and the sliding block 312, so that not only the fixing part 311 can be used to install the sealing assembly 300 on the window machine, but also to facilitate the sealing assembly 300
  • the setting prevents the sealing assembly 300 from being lost, and through the sliding fit between the sliding block 312 and the fixing part 311, the length of the first connecting part 31 can be adjusted, so that the sealing length of the sealing assembly 300 can be adjusted to make the sealing assembly 300 can seal windows of different sizes, which is convenient to improve the sealing effect of the sealing assembly 300, and the use range of the sealing assembly 300, so as to facilitate the improvement of the application range of the window air conditioner 1000, and the functionality of the window air conditioner 1000 And applicability.
  • any one of the second connecting members 32 and the sliding block 312 can be detachably connected, and any two second connecting members 32 can be detachably connected.
  • the length of the sealing assembly 300 can be adjusted by connecting a different number of the second connecting parts 32, which is convenient to increase the range of the sealing length of the sealing assembly 300, and it is convenient to make the sealing assembly 300 compatible with different sizes.
  • the matching of the windows further facilitates the improvement of the sealing reliability and stability of the sealing assembly 300, and further facilitates the improvement of the use range of the sealing assembly 300.
  • the sealing assembly 300 of the window machine according to the embodiment of the present application has the advantages of variable sealing length and convenient use.
  • the sliding block 312 and the second connecting member 32 constitute a sealing fitting
  • the sealing fitting is connected to the fixing part 311, and the sealing fitting can be rotated to extend out of the receiving groove 21 so as to stop against the inner wall of the window.
  • the sealing length of the sealing assembly 300 can be adjusted by adjusting the length of the sealing fitting.
  • the sealing assembly 300 further includes a rotating support 33, the rotating support 33 is fixed on the casing 200, and the fixing member 311 is rotatably arranged on the rotating support 33 so that the sealing assembly 300 can be rotated to be received in the receiving groove 21.
  • This not only facilitates the installation and arrangement of the fixed component 311, but also facilitates the rotation of the fixed component 311 relative to the rotating support 33, facilitates the storage of the sealing assembly 300, and facilitates reducing the space occupied by the sealing assembly 300.
  • a pivot shaft is provided on the fixed part 311
  • a pivot hole is provided on the rotation support 33
  • the pivot shaft is rotationally matched with the pivot hole.
  • the pivot shaft and the pivot hole can cooperate with each other, which facilitates the smooth rotation of the fixed component 311 and improves the reliability of the rotation of the fixed component 311.
  • the sealing assembly 300 further includes an angle positioning assembly 34, which respectively cooperates with the rotating support 33 and the fixing part 311 to turn the fixing part 311 to a set angle. Position at the current angle.
  • the fixing part 311 can be positioned at a specific angle, for example, the angle between the positioning fixing part 311 and the horizontal direction is 90°, 45°, or 30°, which is convenient for the user to position the rotation angle of the fixing part 311 according to the requirements, which is convenient to improve the seal The performance of the component 300.
  • the angle positioning assembly 34 includes a positioning protrusion 341 and a plurality of positioning grooves 342, one of the rotating support 33 and the fixed part 311 is provided with a positioning protrusion 341, and the rotating support 33 A plurality of positioning grooves 342 are provided with the other of the fixing parts 311.
  • the positioning protrusion 341 is provided on the fixing member 311, and the plurality of positioning grooves 342 are provided on the rotating support 33. Specifically, a plurality of positioning grooves 342 are arranged in a circular ring shape. When the rotating support 33 rotates, the positioning protrusion 341 can switch and cooperate with the plurality of positioning grooves 342. When the positioning protrusion 341 is matched with one of the positioning grooves 342, To position the fixed part 311. In this way, the positioning protrusion 341 and the positioning groove 342 can be used to position the rotation angle of the fixing member 311, which is convenient to improve the positioning reliability and stability of the fixing member 311.
  • the plurality of positioning protrusions 341 are arranged in a ring shape, and the plurality of positioning protrusions 341 are matched with the plurality of positioning grooves 342 in a one-to-one correspondence. In this way, the force of the angle positioning assembly 34 can be more balanced, the structural strength of the angle positioning assembly 34 can be improved, and the positioning reliability and accuracy of the angle positioning assembly 34 can be improved.
  • the sealing assembly 300 further includes a sliding positioning assembly 35 which is provided on the fixed component 311 and cooperates with the sliding block 312 to position the sliding block 312 at the current position.
  • the sliding block 312 can be positioned by the sliding positioning assembly 35, which is convenient to keep the sealing assembly 300 at a specific sealing length, to improve the structural stability of the sealing assembly 300, and to facilitate reliable sealing of the sealing assembly 300.
  • a sliding cavity 3111 is provided in the fixing component 311, and at least a part of the sliding block 312 extends into the sliding cavity 3111. This facilitates the coordinated arrangement of the fixed part 311 and the sliding block 312, and facilitates the sliding of the sliding block 312 relative to the fixed part 311.
  • the sliding positioning assembly 35 is a rotating piece, the rotating piece rotatably penetrates the fixed part 311 to adjust the length of the portion of the rotating piece extending into the sliding cavity 3111, the rotating piece can be stopped on the sliding block 312 for positioning Sliding block 312. In this way, the user can control whether the sliding block 312 can be slid by rotating the rotating member, which further facilitates the user to adjust the length of the sliding block 312 as required.
  • each second connecting part 32 includes an insertion part 321, each second connecting part 32 and the sliding block 312 are provided with an insertion cavity 322, and each insertion part 321 is pluggably fitted with the insertion cavity 322. This facilitates the connection of adjacent second connecting parts 32, facilitates the assembly and molding of multiple second connecting parts 32, and further facilitates changing the sealing length of the sealing assembly 300.
  • the outer peripheral surface of the insertion portion 321 is inclined from back to front inward.
  • the sealing assembly 300 further includes a sealing end cover 36 for sealing the open end of the insertion cavity 322 farthest from the fixing component 311.
  • a sealing end cover 36 for sealing the open end of the insertion cavity 322 farthest from the fixing component 311. This not only facilitates the sealing of the insertion chamber 322 farthest from the fixing member 311, and improves the sealing performance of the second connecting member 32, but also allows the multiple second connecting members 32 to have the same structure, which facilitates the installation of the second connecting member 32. Processing and manufacturing facilitates improving the interchangeability of the second connecting member 32.
  • the top wall of the sealing assembly 300 is provided with a sealing sponge, and the window abuts on the sealing sponge. In this way, the direct contact between the window and the sealing assembly 300 can be avoided, which is convenient to reduce the contact wear between the window and the sealing assembly 300, and the sealing effect between the window and the sealing assembly 300 can be improved.
  • the window type air conditioner device 10000 may include a window type air conditioner 1000 and a mounting assembly 400 .
  • the window type air conditioner 1000 includes a cabinet 200, and the cabinet 200 is provided with a receiving groove 21.
  • the top of the receiving groove 21 is open, and the window type air conditioner 1000 has an installed state and an uninstalled state.
  • the installation assembly 400 includes a storage box 40 and an installation accessory 500.
  • the window air conditioner 1000 in the installed state, the window air conditioner 1000 is installed to the window 801a through the installation accessory 500, and the accommodating groove 21 is suitable for accommodating the window; in the uninstalled state, the installation accessory 500 is stored in the storage box 40, and the storage box 40 is placed in the accommodating groove 21 and clamped by the opposite side walls of the containing groove 21.
  • the window type air conditioner device 10000 when the window type air conditioner device 10000 is shipped or stored at the factory, the window type air conditioner 1000 is in an uninstalled state at this time, the mounting accessory 500 is stored in the storage box 40, and the storage box 40 is placed in the storage slot 21 And clamped by the opposite side walls of the accommodating groove 21, the window type air conditioner device 10000 is packaged in the packaging box of the window type air conditioner device 10000, thereby facilitating reduction in the size of the packaging box of the window type air conditioner device 10000 , Thereby increasing the loading capacity of the window type air conditioner device 10000, which is beneficial to reduce transportation costs, thereby improving the market competitiveness of the window type air conditioner device 10000, and at the same time, it is beneficial to improve the overall structural stability of the window type air conditioner device 10000;
  • the mounting assembly 400 can be taken out of the accommodating slot 21, and then the mounting accessory 500 can be taken out of the storage box 40, and then the mounting accessory 500 and the window type air conditioner 1000 can be installed to The window 801a, in the installed state, the window air conditioner 1000 is installed to the window 801a through the mounting accessory 500, and the receiving groove 21 is suitable for receiving the window at this time.
  • the size of the packaging box of the device 10000 thereby increasing the amount of the window type air conditioner device 10000, is conducive to reducing transportation costs, thereby improving the market competitiveness of the window type air conditioner device 10000, and at the same time helping to improve the window type air conditioner device 10000 Overall structural stability.
  • the mounting accessory 500 in the unmounted state, is stored in the storage box 40, and the storage box 40 is placed in the receiving groove 21 and clamped by the opposite side walls of the receiving groove 21
  • the storage box 40 is made of polystyrene foam. Therefore, when the storage box 40 is placed in the storage groove 21, the storage box 40 can be deformed, so that the storage box 40 and the opposite side walls of the storage groove 21 are tightly attached, which is beneficial to prevent the storage box 40 from moving from the storage groove. 21 to fall out, at the same time, it is helpful to further improve the overall structural stability of the window air conditioner device 10000.
  • the mounting accessory 500 includes a plurality of components, a plurality of accommodating cavities 40b spaced apart from each other are formed in the storage box 40, and the plurality of accommodating cavities 40b and a plurality of said components There is a one-to-one correspondence so that a plurality of components are respectively accommodated in the corresponding accommodating cavity 40b. Therefore, a plurality of components can be accommodated in the storage box 40, and each component is placed in a corresponding accommodating cavity 40b, which is beneficial to avoid incorrect or missing components.
  • the components may be the bracket part 51 and the connecting part 52 described below.
  • the shape of each receiving cavity 40b matches the shape of the corresponding receiving cavity 40b.
  • the side wall of the storage box 40 is provided with a gap 40a communicating with the accommodating cavity 40b, and the mounting accessory 500 is placed in the accommodating cavity 40b.
  • the user can destroy the storage through the gap 40a.
  • the box 40 is used to remove the mounting accessory 500.
  • the mounting accessory 500 includes: a mounting frame 50, the mounting frame 50 includes a bracket portion 51 and a connecting portion 52, and the bracket portion 51 is installed on the wall 801 and used for Install the window air conditioner 1000, as shown in FIG. 28, the connecting part 52 is connected to the bracket part 51 and is located on the indoor side 801e or the outdoor side 801f of the wall 801.
  • the thickness of the wall 801 is the indoor side 801e and the wall 801.
  • the other side of the thickness is the outdoor side 801f.
  • the window air conditioner 1000 can be installed at the window 801a through the installation accessory 500.
  • the shelf 60 is installed on the connecting portion 11 and located on the side of the connecting portion 11 close to the wall 801, defining The plane perpendicular to the thickness direction of the wall 801 is the projection plane 900a, and the orthographic projection area S1 of the shelf 60 on the projection plane 900a is larger than the orthographic projection area S2 of the connecting portion 52 on the projection plane 900a.
  • the window air conditioner 1000 can be fixed on the bracket 51, the bracket 51 can extend from the indoor side 801e of the wall 801 to the outdoor side 801f, and the bracket 51 is located on the indoor side.
  • the extension length of the part 801e may be smaller than the extension length of the part of the bracket part 51 located on the outdoor side 801f
  • the connecting part 52 may be fixedly connected to the bracket part 51 and the connecting part 52 may be located on the indoor side 801e of the wall 801, and the connecting part 52 may Spaced from the inner side wall 801c of the wall 801; the spacer 60 can be fixed on the connecting part 52, and the spacer 60 can be located between the connecting part 52 and the wall 801.
  • the center of gravity of the window type air conditioner 1000 is located on the outdoor side 801f, and the shelf 60 can be stopped on the inner side wall 801c of the wall 801, so that the mounting accessory 500 can be clamped on
  • the edge of the window 801a bears a certain force
  • the orthographic projection area S1 of the shelf 60 on the projection surface 900a is larger than the orthographic projection area of the connecting portion 52 on the projection surface 900a S2
  • the force area of the installation accessory 500 acting on the window 801a is larger, that is, the force area of the edge of the window 801a is larger, so that the unit area of the window 801a is reduced while the force received by the window 801a remains unchanged.
  • the upper force effectively reduces the deformation of the window 801a, avoids damage to the window 801a due to excessive local stress, improves the installation reliability of the window air conditioner 1000, and ensures the normal use
  • the connecting portion 52 may also be located on the outdoor side 801f of the wall 801; for example, when the weight of the portion of the window air conditioner 1000 located on the indoor side 801e is heavy, the center of gravity of the window air conditioner 1000 is located on the indoor side 801e
  • the connecting portion 52 may be located on the outdoor side 801f of the wall 801 to ensure reliable installation of the window air conditioner 1000.
  • the connecting portion 52 may be spaced apart from the outer side wall 801d of the wall 801, and the partition 60 is located between the connecting portion 52 and the wall. Between the bodies 801, the extension length of the portion of the bracket 51 located on the outdoor side 801f may be smaller than the extension length of the portion of the bracket 51 located on the indoor side 801e. Therefore, the force per unit area of the window 801a can be reduced, and the installation reliability of the window air conditioner 1000 can be improved.
  • the frame 60 includes a telescopic mechanism 61
  • the telescopic mechanism 61 includes a first drawing member 611 and a second drawing member 612
  • the first drawing member 611 Slidingly cooperate with the second drawing member 612 so that the length of the telescopic mechanism 61 can be adjusted telescopically, so as to adjust the area of the orthographic projection of the telescopic mechanism 61 on the projection surface 900a, thereby adjusting the orthographic projection of the shelf 60 on the projection surface 900a
  • the area S1 can be increased or decreased, and the area S1 is always larger than the area S2.
  • both the first drawing member 611 and the second drawing member 612 can extend along the length direction of the telescopic mechanism 61, and the first drawing member 611 and the second drawing member 612 are slidingly matched so that the first The drawing member 611 and the second drawing member 612 can move relative to each other in the length direction of the telescopic mechanism 61 to change the mating length of the first drawing member 611 and the second drawing member 612, thereby changing the length of the telescopic mechanism 61
  • the first drawing member 611 and the second drawing member 612 can move toward each other along the length of the telescopic mechanism 61 to increase the mating length of the first drawing member 611 and the second drawing member 612, thereby reducing the expansion and contraction.
  • the length of the mechanism 61, or the first drawing member 611 and the second drawing member 612 can also move back along the length of the telescopic mechanism 61 to reduce the mating length of the first drawing member 611 and the second drawing member 612 , Thereby increasing the length of the telescopic mechanism 61.
  • the telescopic mechanism 61 can be adjusted to a suitable length according to different window air conditioners 1000 to ensure reasonable force on the window 801a, so as to further improve the installation reliability of the window air conditioner 1000 and improve the applicability of the installation accessory 500.
  • the installation accessory 500 can be applied to window air conditioners 1000 of different weights; moreover, the telescopic mechanism 61 can also be applied to windows 801a of different sizes, which further improves the applicability of the installation accessory 500.
  • the first drawing member 611 is installed on the connecting portion 52, and the second drawing member 612 is sleeved and slidingly moved outside the first drawing member 611.
  • the first drawing member 611 may be fixedly connected to the connecting portion 52, and the second drawing member 612 may define a hollow cavity, and at least one axial end of the hollow cavity is opened to facilitate the first drawing member 612. At least a part of the drawing member 611 is penetrated in the hollow cavity to realize the sliding fit of the first drawing member 611 and the second drawing member 612.
  • the structure is simple and easy to realize, and the second drawing member 612 has enough Under the premise of strength, the amount of material used for the second drawing member 612 is reduced, the cost of the installation accessory 500 is reduced, the lightweight design of the installation accessory 500 is facilitated, and the force on the window 801a is further reduced.
  • a hollow cavity may also be defined in the first drawing member 611, so that the first drawing member 611 is roughly formed as a hollow structure, so as to further reduce the material cost of the mounting accessory 500 and reduce the weight of the mounting accessory 500.
  • the first drawing member 611 may be formed with a first opening 6111 so that the cross-sectional shape of the first drawing member 611 is approximately C-shaped
  • the second drawing member 612 may be formed with The second opening 6121 makes the cross-sectional shape of the second drawing member 612 approximately C-shaped.
  • the first opening 6111 and the second opening 6121 can both be set toward the wall 801 to ensure the first drawing member 611 and the second drawing
  • the piece 612 has sufficient bending rigidity.
  • the cross-sections of the first drawing member 611 and the second drawing member 612 can also be formed in other shapes, and are not limited thereto; for example, the cross-sectional shape of the first drawing member 611 can also be formed in a ring shape (such as a square ring). ).
  • the first drawing member 611 has a plurality of first positioning holes 6112, and the plurality of first positioning holes 6112 can be sequentially along the length direction of the first drawing member 611.
  • the second drawing member 612 has second positioning holes 6122.
  • the plurality of first positioning holes 6112 can be connected to the second positioning holes 6122 in sequence.
  • the installation accessory 500 also includes a positioning member 70, the positioning member 70 passes through the second positioning hole 6122 and the first positioning hole 6112 directly opposite to the second positioning hole 6122 to restrict the first drawing member 611 and the second
  • the relative movement of the drawing member 612 in the length direction of the telescopic mechanism 61 fixes the relative position between the first drawing member 611 and the second drawing member 612 and ensures the stability of the length of the telescopic mechanism 61.
  • the positioning member 70 may not pass through the second positioning hole 6122 and the corresponding first positioning hole 6112
  • the user can pierce the positioning member 70 in the second positioning hole 6122 and the corresponding first positioning hole 6112
  • the relative movement of the first drawing member 611 and the second drawing member 612 is restricted.
  • the length of the telescopic mechanism 61 cannot be changed, so that the length of the telescopic mechanism 61 is stable and has good reliability in use.
  • the positioning member 70 is a pin, or a screw, or a bolt, so that the positioning member 70 has a good limiting function, is reliable in use, and ensures the use reliability of the installation accessory 500 , And it is convenient for the user to pass the positioning member 70 through the second positioning hole 6122 and the corresponding first positioning hole 6112, which facilitates the assembly of the mounting accessory 500, and the positioning member 70 has a simple structure and low cost. It is understandable that the positioning member 70 can also form other structural components that can realize the limiting effect, and it is not limited to this. It is only necessary to ensure that the positioning member 70 can pass through the second positioning hole 6122 and the corresponding first positioning hole 6112 It is sufficient to limit the relative sliding movement of the first drawing member 611 and the second drawing member 612.
  • the two ends of the length of the telescopic mechanism 61 are respectively a first end 610a and a second end 610b
  • the spacer 60 also includes a sleeve sleeved outside the first end 610a and/or The end cap 613 outside the second end 610b, that is, the spacer 60 includes an end cap 613 sleeved outside the first end 610a, or the spacer 60 includes an end cap 613 sleeved outside the second end 610b, or
  • the spacer 60 includes an end cap 613 sleeved outside the first end 610a and an end cap 613 sleeved outside the second end 610b. Therefore, when the user operates the shelf 60, the first end 610a and/or the second end 610b are prevented from directly contacting the user and scratching the user, so that the end cap 613 can protect the user and ensure the use of the shelf 60 safety.
  • both the first end 610a and the second end 610b are provided with end caps 613.
  • the length of the telescopic mechanism 61 can be adjusted to be greater than that of the window 801a.
  • the two end caps 613 can respectively stop on both sides of the window 801a. Since the end caps 613 have a certain thickness, the end caps 613 can further effectively disperse the force on the edge of the mounting bracket 51 of the window 801a.
  • the installation reliability of the window air conditioner 1000 is further improved.
  • the two second drawing members 612 there are two second drawing members 612, and the two second drawing members 612 are located on both sides of the connecting portion 52.
  • the two second drawing members 612 can be respectively located on both sides of the connecting portion 52 along the length direction of the telescopic mechanism 61, and each second drawing member 612 slides with the first drawing member 611.
  • the shift fit is used to move at least one of the two second drawing members 612 to adjust the length of the telescopic mechanism 61, thereby expanding the length adjustment range of the telescopic mechanism 61 and further improving the applicability of the attachment 500.
  • the shelf 60 when the shelf 60 includes an end cap 613 sleeved outside the first end 610a, the first end 610a is prevented from directly contacting the user and scratching the user; when the shelf 60 includes a sleeve When the end cap 613 is outside the second end 610b, it prevents the second end 610b from directly contacting the user and scratching the user; when the shelf 60 includes an end cap 613 sleeved outside the first end 610a and an end cap 613 sleeved outside the second end 610a.
  • the end cap 613 outside the end 610b is used to prevent the first end 610a and the second end 610b from directly contacting the user and scratching the user.
  • first end 610a may be the end of the first drawing member 611 or the end of the second drawing member 612
  • second end 610b may be the end of the first drawing member 611, It may also be the end of the second drawing member 612.
  • the first end 610a may be the end of the first drawing member 611 away from the second drawing member 612, and the second end 610b It can be the end of the second drawing member 612 away from the first drawing member 611; when there is one first drawing member 611 and there are two second drawing members 612, the two second drawing members 612 can be Located on both sides of the connecting portion 52 along the length of the telescopic mechanism 61, the first end 610a and the second end 610b may be ends of the second drawing member 612 away from each other; but not limited to this.
  • the first end 610a may be a distance of the first drawing member 611 away from the One end of the second drawing member 612
  • the second end 610b may be the end of the second drawing member 612 away from the first drawing member 611.
  • the two second drawing members 612 can be respectively along the length direction of the telescopic mechanism 61 Located on both sides of the connecting portion 52, the first end 610a and the second end 610b may be the ends of the second drawing member 612 away from each other.
  • the user can operate the two
  • the end cap 613 can be selected as a rubber or plastic part, so that the end cap 613 can effectively prevent the telescopic mechanism 61 from scratching the user, and the end cap 613 is easy to form and has a low cost, which ensures the shelf 60 Practicality. It is understandable that the end cap 613 can also be made of other materials.
  • the end cap 613 can also be a metal part such as a sheet metal part.
  • the outer surface of the end cap 613 can be designed as a smooth transitional curved surface, that is, the end cap 613 There are no sharp corners on the outer surface, which can also ensure the safety of the user's operation.
  • the mounting frame 50 further includes a bottom bracket 53, the bottom bracket 53 is connected to the lower part of the connecting part 52 and the bottom bracket 53 is supported on the bottom of the spacer 60.
  • the bracket portion 51 may be provided on the bottom edge 801b of the window 801a
  • the connecting portion 52 may extend in the vertical direction
  • the upper end of the connecting portion 52 is connected to the bracket portion 51
  • the connecting portion 52 The lower end of the bracket can be connected to the bottom bracket 53.
  • the bottom surface of the spacer 60 can be placed on the bottom bracket 53 so that the bottom bracket 53 supports the spacer 60 to limit the spacer. 60 moves downwards, thereby realizing the limit of the spacer 60 and facilitating the installation of the spacer 60.
  • bracket part 51, the connecting part 52 and the bottom support part 53 may be an integral piece.
  • the bracket portion 51 has at least one hinge hole 51a
  • the mounting accessory 500 further includes a support rod 54, one end of the support rod 54 is hinged to the bracket portion 51 through the hinge hole 51a , The other end of the support rod 54 has a non-slip element 54 a and stops against the wall 801.
  • the hinge hole 51a may be located at the end of the bracket part 51 on the outdoor side 801f, there may be multiple hinge holes 51a, and the plurality of hinge holes 51a may be arranged at intervals along the length direction of the bracket part 51, and the above-mentioned end of the support rod 54 is connected by a hinge
  • the hole 51a is connected with the bracket part 51 to adjust the installation position of the support rod 54 and allow the support rod 54 to rotate around its one end to change the angle between the support rod 54 and the bracket part 51, so that the mounting bracket assembly 100 can be effectively applied Because the other end of the support rod 54 is stopped by the anti-skid member 54a against the wall 801, the other end of the support rod 54 and the wall 801 have a relatively large frictional force to ensure the support rod
  • the supporting function of 54 makes it possible to match the supporting rod 54 with the wall 801 without requiring a complicated fixing structure to improve the overall structural stability of the mounting frame assembly 100.
  • only one hinge hole 51a can be provided.
  • the anti-skid member 54a may be a rubber member, but it is not limited thereto.
  • the mounting accessory 500 further includes a connecting piece 80.
  • the spacer 60 is detachably mounted to the connecting portion 52 through the connecting piece 80, and the spacer 60 can be connected to the connecting piece 80 through the connecting piece 80.
  • the connecting part 52 is detachably connected.
  • the spacer 60 and the connecting part 52 are two independent parts, which are connected together by means of assembly, thereby simplifying the structure of the spacer 60 and the connecting part 52, and facilitating the spacer 60 , Machining and disassembly of the connecting part 52.
  • the connecting member 80 may be a threaded connecting member 80, such as bolts, screws, etc., but is not limited thereto.
  • a first connecting hole is formed on the connecting portion 52, and a second connecting hole is formed on the spacer 60. Since the spacer 60 is located on the side of the connecting portion 52 close to the wall 801, the connecting The member 80 can be inserted into the first connecting hole and the second connecting hole in sequence to connect the connecting portion 52 and the supporting member in a fixed manner to realize the installation of the spacer 60. Wherein, since the connecting member 80 penetrates the connecting part 52 and the spacer 60 in turn, and the spacer 60 is located on the side of the connecting part 52 close to the wall 801, the user can install the spacer 60 indoors, which facilitates the installation of accessories 500 is assembled, and the installation of the components of the mounting accessory 500 is smooth and reasonable. For example, the mounting frame 50 can be installed first, and then the spacer 60 can be mounted on the connecting portion 52, which further improves the assembly efficiency of the mounting accessory 500.
  • the bracket portion 51 is provided on the bottom edge 801b of the window 801a, the connecting portion 52 extends downward from the bracket portion 51, and the spacer 60 extends along the length direction of the bottom edge 801b.
  • the window 801a may include multiple edges, and the multiple edges may include a top edge, a bottom edge 801b, and a side edge. The top edge and the bottom edge 801b are opposite to each other, and the side edges are provided on the top edge and the bottom edge 801b.
  • the orthographic projection of the window 801a on the projection surface 900a is formed as a closed figure; the bottom edge 801b can extend horizontally, and the bracket 51 can be arranged on the upper surface of the bottom edge 801b so that the bottom edge 801b supports the bracket 51,
  • a through hole may be formed on the bracket part 51, and the connecting part 52 may be formed by a side edge of the through hole away from the wall 801 extending vertically downward.
  • the spacer 60 can extend along the extension direction of the bottom edge 801b to abut against the inner side wall 801c or the outer side wall 801d, so as to increase the contact area between the mounting accessory 500 and the edge of the window 801a, avoid deformation or damage of the bottom edge 801b, and ensure Reliability of window air conditioner installation.
  • the spacer 60 can abut against the inner side wall 801c of the bottom edge 801b; when the connecting portion 52 is located on the outdoor side 801f of the wall 801, the partition The frame 60 can abut against the outer side wall 801d of the bottom edge 801b.
  • the window type air conditioner 1000 includes a sealing assembly 300, the sealing assembly 300 is in contact with the window and the inner wall of the window 801a, and the sealing assembly 300 includes: A connecting part 31 and a plurality of second connecting parts 32.
  • the first connecting part 31 includes a fixing part 311 and a sliding block 312. At least a part of the fixing part 311 is provided in the receiving groove 21, and the sliding block 312 and the fixing part 311 are slidingly fitted. Any one of the second connecting members 32 is detachably connected to the sliding block 312, and any two of the second connecting members 32 are detachably connected to adjust the length of the sealing assembly 300.
  • “at least a part of the fixing member 311 is provided in the accommodating groove 21” can be understood as a part of the fixing member 311 is provided in the accommodating groove 21, or the entire fixing member 311 is provided in the accommodating groove 21.
  • the sealing assembly 300 include the first connecting part 31, the first connecting part 31 includes the fixing part 311 and the sliding block 312, so that not only the fixing part 311 can be used to mount the sealing assembly 300 to the window air conditioner 1000, which is convenient
  • the arrangement of the sealing assembly 300 avoids the loss of the sealing assembly 300, and through the sliding fit between the sliding block 312 and the fixed part 311, the length of the first connecting part 31 can be adjusted, thereby adjusting the sealing length of the sealing assembly 300 , So that the sealing assembly 300 can seal windows of different sizes, which is convenient to improve the sealing effect of the sealing assembly 300 and the use range of the sealing assembly 300, so as to facilitate the improvement of the application range of the window air conditioner 1000 and the improvement of the window air conditioner 1000's functionality and applicability.
  • the sealing assembly 300 further includes a rotating support 33, the rotating support 33 is fixed on the casing 200, and the fixing member 311 is rotatably arranged on the rotating support 33 so that the sealing assembly 300 can be rotated to be received in the receiving groove 21.
  • This not only facilitates the installation and arrangement of the fixed component 311, but also facilitates the rotation of the fixed component 311 relative to the rotating support 33, facilitates the storage of the sealing assembly 300, and facilitates reducing the space occupied by the sealing assembly 300.
  • the window type air conditioner 1000 further includes a sliding positioning assembly 35.
  • the sliding positioning assembly 35 is provided on the fixed part 311 and cooperates with the sliding block 312 to position the sliding block 312 At the current location.
  • the sliding block 312 can be positioned by the sliding positioning assembly 35, which is convenient for keeping the sealing assembly 300 at a specific sealing length, improving the structural stability of the sealing assembly 300, and facilitating reliable sealing of the sealing assembly 300.
  • a sliding cavity 3111 is provided in the fixed part 311, and at least a part of the sliding block 312 extends into the sliding cavity 3111;
  • the sliding positioning assembly 35 is a rotating part, and the rotating part can be
  • the fixed part 311 is rotatably penetrated to adjust the length of the part of the rotating part extending into the sliding cavity 3111.
  • the rotating part can be stopped on the sliding block 312 to position the sliding block 312. This facilitates the coordinated arrangement of the fixed part 311 and the sliding block 312, and facilitates the sliding of the sliding block 312 relative to the fixed part 311.
  • the sliding positioning assembly 35 is a rotating member, the rotating member rotatably penetrates the fixed part 311 to adjust the length of the portion of the rotating member extending into the sliding cavity 3111, The rotating member can be abutted on the sliding block 312 to position the sliding block 312. In this way, the user can control whether the sliding block 312 can slide by rotating the rotating member, which further facilitates the user to adjust the length of the sliding block 312 as needed.
  • the housing groove 21 divides the cabinet into an indoor part 1011 and an outdoor part 1012.
  • the indoor part 1011 has an air inlet a and an air outlet b, and the indoor part 103 is provided with There is an indoor heat exchanger.
  • the indoor heat exchanger is located between the air inlet a and the air outlet b.
  • the indoor airflow can flow into the indoor part 1011 from the air inlet a and discharge through the air outlet b to adjust the temperature of the indoor environment.
  • the casing 200 includes a chassis 101c, a rear box body 101b, and a front box body 101a.
  • the rear box body 101b is fixed on the chassis 101c, and the rear box body 101b contains an outdoor heat exchanger.
  • the front box body 101a is fixed on the chassis 101c, and the front box body 101a and the rear box body 101b are spaced back and forth to define the receiving groove 21. This not only facilitates the formation of the accommodating groove 21, facilitates the matching of the window-type air conditioner 1000 with the window, but also facilitates the processing and manufacturing of the cabinet 200, and facilitates the improvement of the appearance of the cabinet 200.
  • the cabinet 200 further includes a middle partition 101d, the middle partition 101d is fixed on the chassis 101c and is located in the receiving groove 21, the front and rear ends of the middle partition 101d are connected to the rear box body 101b and the front box body 101a, respectively. Cooperate. In this way, it is convenient for the lower surface of the window to stop on the intermediate partition 101d, which facilitates wiring and drainage of the window type air conditioner 1000, and facilitates the improvement of the working reliability of the window type air conditioner 1000.
  • the aforementioned rotating support 33 may be installed to the intermediate partition 101d.
  • the intermediate partition 101d is provided with a storage space 101e with an open top
  • the rotating support 33 is stored in the storage space 101e
  • the fixed component 311 is provided with a storage space
  • the sealing assembly 300 rotates to extend out of the storage groove 21, the storage space
  • the outer edge of 101e extends into the containing space so that the sealing assembly 300 is substantially flush with the intermediate partition 101d.
  • the state of the sealing assembly 300 in the sealing window 801a can be parallel or substantially parallel to the chassis 101c, and the height of the sealing assembly 300 relative to the window 801a when the sealing assembly 300 is in the sealing window 801a state is reduced to further ensure the sealing effect.

Abstract

一种窗式空调器的后围板组件(100)、窗式空调器(1000)及窗式空调器装置(10000),其中后围板组件(100)包括:后围板本体(11),后围板本体(11)上设有通风口(111);电机支架(12),电机支架(12)设在后围板本体(11)的一侧且与后围板本体(11)连接,电机支架(12)的至少部分与通风口(111)相对,电机支架(12)上设有过风孔(124)以使气流通过过风孔(124流入通风口(111)。

Description

窗式空调器的后围板组件、窗式空调器及窗式空调器装置
相关申请的交叉引用
本申请基于申请号为201920188024.2、201910108811.6、201920188022.3和201920188023.8,申请日均为2019年02月03日的中国专利申请提出,并要求该中国专利申请的优先权,该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
本申请涉及空气处理技术领域,尤其是涉及一种窗式空调器的后围板组件及窗式空调器。
背景技术
相关技术中,窗式空调器的室外部分由于内部零部件的阻挡使得窗式空调器的室外部分进风受限,从而导致窗式空调器的换热效率较低,进而导致窗式空调器的制冷能力和制热能力下降。
发明内容
本申请旨在至少解决现有技术中存在的技术问题之一。为此,本申请提出一种窗式空调器的后围板组件,所述窗式空调器的后围板组件过风面积大。
本申请还提出一种窗式空调器,所述窗式空调器包括上述窗式空调器的后围板组件。
根据本申请实施例的窗式空调器的后围板组件,包括:后围板本体,所述后围板本体上设有通风口;电机支架,所述电机支架设在所述后围板本体的一侧且与所述后围板本体连接,所述电机支架的至少部分与所述通风口相对,所述电机支架上设有过风孔以使气流通过所述过风孔流入所述通风口。
根据本申请实施例的窗式空调器的后围板组件,通过在电机支架上设置过风孔以使气流通过过风孔流入通风口,可以降低电机支架对气流的阻挡,增大了风轮的进风侧的过风面积,提高窗式空调器的换热效率,从而提高窗式空调器制冷和制热能力。另外,电机支架上设置过风孔,还可以降低气流流动过程中的阻力,有利于降低噪音。
根据本申请的一些实施例,所述电机支架包括:电机安装部;支撑部,所述支撑部的一端与所述电机安装部的外周壁连接,所述支撑部的另一端与所述后围板本体连接;至少一个连接臂,所述连接臂的一端与所述电机安装部的外周壁连接,所述连接臂的另 一端与所述后围板本体连接,所述至少一个连接臂和所述支撑部沿所述电机安装部的周向方向间隔分布,所述电机安装部、所述支撑部的至少部分和所述连接臂的至少部分均与所述通风口相对,所述电机安装部、所述支撑部和所述至少一个连接臂中的至少一个上设有所述过风孔。
在本申请的一些实施例中,所述后围板本体包括支撑件,所述支撑部的另一端与所述支撑件连接。
在本申请的一些实施例中,所述支撑部包括第一底板以及交错分布的多个筋板,多个所述筋板连接在所述第一底板的远离所述后围板本体的一侧。
在本申请的一些实施例中,所述电机安装部上设有用于安装电机的电机安装孔。
在本申请的一些实施例中,所述电机安装部包括第二底板、第一环形板和第二环形板,所述第一环形板和所述第二环形板均连接在所述第二底板的远离所述后围板本体的一侧,所述第二环形板套设在所述第一环形板外,所述第一环形板和所述第二环形板间隔开,所述第一环形板和所述第二环形板之间连接有多个连接板,多个所述连接板沿所述第一环形板的周向方向间隔设置,所述第一环形板限定出所述电机安装孔,所述第二底板上设有与所述电机安装孔相对的避让孔。
在本申请的一些实施例中,所述连接臂上设有多个所述过风孔,多个所述过风孔沿所述连接臂的长度方向间隔分布。
在本申请的一些实施例中,所述连接臂包括:第一段,所述第一段的一端与所述后围板本体连接;第二段,所述第二段的一端与所述第一段的另一端连接,所述第二段的另一端与所述电机安装部的外周壁连接,所述第一段和所述第二段互成角度。
在本申请的一些实施例中,所述第二段在所述通风口所在的平面内的投影位于所述通风口内,所述第一段在所述通风口所在的平面内的投影位于所述通风口外。
在本申请的一些实施例中,所述连接臂包括底板和两个侧板,两个所述侧板的一端分别与所述底板连接以限定出凹槽,所述凹槽沿所述连接臂的长度方向延伸,所述凹槽的敞开口朝向所述电机支架与所述后围板限定的空间。
在本申请的一些实施例中,所述底板和所述侧板圆滑过渡连接。
根据本申请的一些实施例,所述通风口的内壁与所述后围板本体的朝向所述电机支架的表面圆滑过渡连接。
根据本申请的一些实施例,所述通风口处设有导风圈,所述导风圈朝向远离所述电机支架的一侧延伸。
根据本申请的一些实施例,所述窗式空调器包括换热器,所述换热器相对的两侧均 设有边板,所述后围板本体相对的两侧均设有间隔开的第一立板和第二立板,所述第一立板和所述第二立板均沿竖直方向延伸,所述第一立板的一端和所述第二立板的一端之间连接有第一挡板,所述第一挡板为多个,多个所述第一挡板沿竖直方向间隔开,相邻的两个所述第一挡板之间限定出空隙,所述第一立板和所述第二立板中的一个的另一端连接有第二挡板,所述第二挡板与所述第一挡板平行,所述第二挡板与所述第一立板和所述第二立板中的另一个之间具有供所述边板通过的间隙,所述第二挡板为多个,多个所述第二挡板与多个所述空隙一一对应,且一一对应的所述第二挡板和所述空隙相对设置,所述边板的部分位于所述第一挡板和所述第二挡板限定的滑槽内,其中,所述第一挡板的朝向所述滑槽的表面具有第一导向斜面,所述第一导向斜面位于所述第一挡板的下端,且所述第一导向斜面在由上至下的方向上朝向远离所述滑槽的方向倾斜,所述第二挡板的朝向所述滑槽的表面具有第二导向斜面,所述第二导向斜面位于所述第二挡板的下端,且所述第二导向斜面在由上至下的方向上朝向远离所述滑槽的方向倾斜。
根据本申请的一些实施例,所述后围板本体具有过所述通风口的中心轴线的竖直参考面,所述通风口处设有第一挡水筋,所述第一挡水筋位于所述参考面的一侧,所述第一挡水筋朝向所述后围板本体的一侧凸出,所述第一挡水筋沿所述通风口的周向方向延伸,所述第一挡水筋的下端邻近所述通风口的底端。
在本申请的一些实施例中,所述第一挡水筋的底端与所述通风口的中心之间的连线与所述参考面之间的夹角为α1,所述α1满足:10°≤α1≤20°。
在本申请的一些实施例中,所述第一挡水筋的顶端与所述通风口的中心之间的连线与所述参考面之间的夹角为α2,所述α2满足:45°≤α2≤145°。
在本申请的一些实施例中,所述α2满足:90°≤α2≤145°。
在本申请的一些实施例中,所述通风口处设有第二挡水筋,所述第二挡水筋位于所述参考面的另一侧,所述第二挡水筋朝向所述后围板本体的一侧凸出,所述第二挡水筋沿所述通风口的周向方向延伸,所述第二挡水筋的下端邻近所述通风口的底端。
进一步地,所述第二挡水筋的底端与所述通风口的中心之间的连线与所述参考面之间的夹角为β1,所述β1满足:10°≤β1≤20°。
在本申请的一些实施例中,所述第二挡水筋的顶端与所述通风口的中心之间的连线与所述参考面之间的夹角为β2,所述β2满足:45°≤β2≤65°。
根据本申请实施例的窗式空调器,包括:机壳;上述的窗式空调器的后围板组件,所述后围板组件设在所述机壳内。
根据本申请实施例的窗式空调器,通过在电机支架上设置过风孔以使气流通过过风 孔流入通风口,可以降低电机支架对气流的阻挡,增大了风轮的进风侧的过风面积,提高窗式空调器的换热效率,从而提高窗式空调器制冷和制热能力。另外,电机支架上设置过风孔,还可以降低气流流动过程中的阻力,有利于降低噪音。
根据本申请的一些实施例,所述窗式空调器支撑在墙体的窗口上,所述窗口内设有可移动的窗户,所述机壳上有容纳槽,所述窗户的至少一部分可伸入到所述容纳槽内,所述窗式空调器还包括:密封组件,所述密封组件分别与所述窗户和所述窗口的内壁接触,所述密封组件包括:长度可变的第一连接部件,所述第一连接部件包括固定部件和滑动块,所述固定部件设在所述容纳槽内,所述滑动块与所述固定部件滑动配合;多个第二连接部件,任一个所述第二连接部件与所述滑动块可拆卸连接,任意两个所述第二连接部件之间可拆卸连接。
根据本申请实施例的窗式空调器装置,墙体的窗口处设有可移动的窗户,所述窗式空调器装置包括上述窗式空调器,所述窗式空调器包括机壳,所述机壳设有的容纳槽,所述窗式空调器具有安装状态和未安装状态;安装组件,所述安装组件包括收纳盒和安装附件;其中,在所述安装状态,所述窗式空调器通过所述安装附件安装至所述窗口,所述容纳槽适于容纳所述窗户;在所述未安装状态,所述安装附件收纳在所述收纳盒内、所述收纳盒置于所述容纳槽内且被所述容纳槽的相对侧壁夹持。
根据本申请实施例的窗式空调器装置,在未安装状态,通过将安装附件收纳在收纳盒内,同时收纳盒置于容纳槽内且被容纳槽的相对侧壁夹持,由此,有利于减小窗式空调器装置的包装箱的尺寸,从而提高窗式空调器装置的装柜量,有利于降低运输成本,进而提高窗式空调器装置的市场竞争力,同时有利于提高窗式空调器装置整体的结构稳定性。
在本申请的一些实施例中,所述收纳盒为聚苯乙烯泡沫件。
在本申请的一些实施例中,所述安装附件包括:安装架,所述安装架包括支架部和连接部,所述支架部安装于墙体且用于安装窗式空调器,所述连接部与所述支架部相连且位于所述墙体的室内侧或室外侧;和隔架,所述隔架安装于所述连接部,且位于所述连接部的靠近所述墙体的一侧,定义与所述墙体的厚度方向相垂直的平面为投影面,所述隔架在所述投影面上的正投影面积S1大于所述连接部在所述投影面上的正投影面积S2。
在本申请的一些实施例中,所述隔架包括伸缩机构,所述伸缩机构包括第一抽拉件和第二抽拉件,所述第一抽拉件和第二抽拉件滑移配合以使所述伸缩机构的长度可伸缩调节。
在本申请的一些实施例中,所述第一抽拉件安装于所述连接部,所述第二抽拉件套设在所述第一抽拉件外滑移。
在本申请的一些实施例中,所述第一抽拉件上具有多个第一定位孔,所述第二抽拉件上具有第二定位孔,所述安装附件还包括定位件,所述定位件穿设于所述第二定位孔和与所述第二定位孔正对的所述第一定位孔。
在本申请的一些实施例中,所述安装附件还包括连接件,所述隔架通过所述连接件可拆卸地安装于所述连接部。
在本申请的一些实施例中,所述安装架还包括底托部,所述底托部与所述连接部的下部相连且支撑在所述隔架的底部。
在本申请的一些实施例中,所述支架部上具有至少一个铰接孔,所述安装附件还包括:
支撑杆,所述支撑杆的一端通过所述铰接孔与所述支架部铰接,所述支撑杆的另一端具有防滑件且止抵于所述墙体。
在本申请的一些实施例中,所述支架部设在所述窗口的底边沿上,所述连接部由所述支架部向下延伸,所述隔架沿所述底边沿的长度方向延伸。
在本申请的一些实施例中,所述窗式空调器包括密封组件,所述密封组件分别与所述窗户和所述窗口的内壁接触,所述密封组件包括:长度可变的第一连接部件,所述第一连接部件包括固定部件和滑动块,所述固定部件的至少部分设在所述容纳槽内,所述滑动块与所述固定部件滑动配合;多个第二连接部件,任一个所述第二连接部件与所述滑动块可拆卸连接,任意两个所述第二连接部件之间可拆卸连接用以调节所述密封组件的长度。
在本申请的一些实施例中,所述密封组件还包括转动支座,所述转动支座固定在所述机壳上,所述固定部件可转动地设在所述转动支座上以使所述密封组件可转动至收纳在所述容纳槽内。
在本申请的一些实施例中,所述密封组件还包括滑动定位组件,所述滑动定位组件设在所述固定部件上且与所述滑动块配合、以将所述滑动块定位在当前位置。
在本申请的一些实施例中,所述固定部件内设有滑动腔,所述滑动块的至少一部分伸入到所述滑动腔内;所述滑动定位组件为旋转件,所述旋转件可旋转地穿设在固定部件且与所述固定部件螺纹配合,所述旋转件转动以调整所述旋转件伸入到所述滑动腔内的部分的长度,所述旋转件可止抵在所述滑动块上以定位所述滑动块。
在本申请的一些实施例中,所述机壳包括:底盘;后箱体,所述后箱体固定在所述 底盘上,所述后箱体内容纳有室外换热器;前箱体,所述前箱体固定在所述底盘上,所述前箱体与所述后箱体前后间隔设置以限定出所述容纳槽;中间隔板,所述中间隔板固定在所述底盘上且位于所述容纳槽内,所述中间隔板的前后两端分别与所述后箱体和所述前箱体配合,所述转动支座安装至所述中间隔板。
在本申请的一些实施例中,所述安装附件包括多个构件,所述收纳盒内形成有多个彼此间隔开的容纳腔,多个所述容纳腔与多个所述构件一一对应以使得多个所述构件分别容纳至对应的所述容纳腔。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
图1是根据本申请实施例一的后围板组件的立体图;
图2是根据本申请实施例一的后围板组件的另一个角度的立体图;
图3是根据本申请实施例一的后围板组件的主视图;
图4是根据本申请实施例一的后围板组件的后视图;
图5是根据本申请实施例一的后围板组件的侧视图;
图6是根据本申请实施例一的后围板组件的俯视图;
图7是根据本申请实施例一的窗式空调器的立体图;
图8是根据本申请实施例一的窗式空调器的立体图;
图9是根据本申请实施例一的窗式空调器的俯视图;
图10是图9中窗式空调器的局部结构示意图;
图11是根据本申请实施例一的窗式空调器的密封组件的爆炸图;
图12是根据本申请实施例二的后围板组件的立体图;
图13是根据本申请实施例二的后围板组件的另一个角度的立体图;
图14是根据本申请实施例二的后围板组件的主视图;
图15是图14中A-A处的剖面图;
图16是图14中B-B处的剖面图;
图17是图15中C处的放大图;
图18是图16中D处的放大图;
图19是根据本申请实施例二的后围板组件的后视图;
图20是根据本申请实施例二的后围板组件的侧视图;
图21是根据本申请实施例二的后围板组件的俯视图;
图22是根据本申请实施例的窗式空调器装置的立体结构示意图;
图23是根据本申请实施例的安装组件的结构示意图;
图24是图23中E-E处的剖视示意图;
图25是根据本申请实施例的安装组件的侧视示意图;
图26是根据本申请实施例的安装附件安装到窗口时的结构示意图;
图27是图26中所示的隔架和连接部在投影面上的投影示意图;
图28是图26中F处的局部放大示意图;
图29是根据图26的侧视示意图;
图30是图29中G处的局部放大示意图;
图31是根据本申请实施例的伸缩结构的结构示意图;
图32是根据本申请实施例的窗式空调器的结构示意图;
图33是图32中H处的局部放大示意图;
图34是根据本申请实施例的窗式空调器的平面结构示意图;
图35是图34中J处的局部放大示意图;
图36是根据本申请实施例的窗式空调器的结构示意图;
图37是根据本申请实施例的窗式空调器的结构示意图,其中密封组件从机壳上拆除。
附图标记:
窗式空调器装置10000;
窗式空调器1000,
后围板组件100,
后围板本体11,通风口111,第一挡水筋112,第二挡水筋113,导风圈110,
第一立板114,第二立板115,第一挡板116,第一导向斜面1161,
第二挡板117,第二导向斜面1171,滑槽118,空隙119,
电机支架12,
电机安装部121,电机安装孔1211,第一环形板1212,第二环形板1213,连接板1214,第二底板1215,
支撑部122,筋板1221,第一底板1222,
连接臂123,第一段1231,第二段1232,底板1233,侧板1234,凹槽1235,
过风孔124,
机壳200,容纳槽21,
密封组件300,
第一连接部件31,固定部件311,滑动腔3111,滑动块312,
第二连接部件32,插入部321,插入腔室322,
转动支座33,
角度定位组件34,定位凸起341,定位凹槽342,
滑动定位组件35,密封端盖36,
室内部分1011,进风口a,出风口b,室外部分1012,前箱体101a,后箱体101b,底盘101c,中间隔板101d,放置空间101e,
安装组件400,
收纳盒40,缺口40a,容纳腔40b,
安装附件500,
安装架50,支架部51,铰接孔51a,连接部52,底托部53,支撑杆54,防滑件54a,
隔架60,伸缩机构61,第一端610a,第二端610b,
第一抽拉件611,第二抽拉件612,端帽613,第一开口6111,第一定位孔6112,第二开口6121,第二定位孔6122,
定位件70,连接件80,
墙体801,窗口801a,底边沿801b,内侧壁801c,外侧壁801d,室内侧801e,室外侧801f,投影面900a。
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”、“长度”、“上”、“下”、“前”、“后”、“竖直”、“顶”、“底”“内”、“外”、“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。
下面参考图附图描述根据本申请实施例一的后围板组件100及窗式空调器1000。
如图1所示,根据本申请实施例一的窗式空调器1000的后围板组件100,包括后围板本体11和电机支架12。
具体而言,如图1和图2所示,后围板本体11上设有通风口111,电机支架12设在后围板本体11的一侧且与后围板本体11连接,电机支架12的至少部分与通风口111相对。通风口111处设有导风圈110,导风圈110朝向远离电机支架12的一侧延伸。电机可以设在电机支架12上,电机的输出轴与风轮连接以驱动风轮转动。风轮的至少部分位于导风圈110内,导风圈110可以起到导风的作用。
如图1所示,电机支架12上设有过风孔124以使气流通过过风孔124流入通风口111。一般情况下,气流从窗式空调器室外部分的室外进风口进入,在风轮的驱动下,绕过电机支架进入通风口内与换热器进行换热。但是电机支架阻挡进风,使得风轮的进风侧过风受限,换热效率降低,并且电机支架会阻挡气流流动,增加气流流动的阻力,提高噪音。
而在电机支架12上设置过风孔124,当气流流动时,在风轮的驱动下,气流可以通过电机支架12上的过风孔124进入通风口111内,降低了电机支架12对气流的阻挡,增大了风轮的进风侧的过风面积,提高窗式空调器1000的换热效率,从而提高窗式空调器1000制冷和制热能力。另外,电机支架12上设置过风孔124,还可以降低气流流动过程中的阻力,有利于降低噪音。
根据本申请实施例一的窗式空调器1000的后围板组件100,通过在电机支架12上设置过风孔124以使气流通过过风孔124流入通风口111,可以降低电机支架12对气流的阻挡,增大了风轮的进风侧的过风面积,提高窗式空调器1000的换热效率,从而提高窗式空调器1000制冷和制热能力。另外,电机支架12上设置过风孔124,还可以降低气流流动过程中的阻力,有利于降低噪音。
在本申请的一些实施例中,如图1和图3所示,电机支架12包括电机安装部121、支撑部122和至少一个连接臂123,电机安装在电机安装部121上,电机安装部121与通风口111相对,便于电机与风轮连接并驱动风轮转动。支撑部122的一端与电机安装部121的外周壁连接,支撑部122的另一端与后围板本体11连接,从而起到固定电机 安装部121的作用。支撑部122的至少部分与通风口111相对,由此不但便于支撑部122与电机安装部121之间的连接,还便于支撑部122与后围板本体11连接,
如图1和图3所示,连接臂123的一端与电机安装部121的外周壁连接,连接臂123的另一端与后围板本体11连接,从而固定电机安装部121,提高电机安装部121固定的可靠性,进而提高电机固定的可靠性。在本申请的一些实施例中,如图3所示,上述至少一个连接臂123和支撑部122沿电机安装部121的周向方向间隔分布,由此可以增加对电机安装部121的固定效果,从而增加对电机的固定效果,提高电机固定的可靠性。其中连接臂123的至少部分与通风口111相对,由此不但便于连接臂123与电机安装部121的连接,还便于连接臂123与后围板本体11之间的连接。
例如,在图3的示例中,支撑部122位于电机安装部121的下方(如图3所示的下方),支撑部122的下端与后围板本体11连接,支撑部122的上端与电机安装部121的外周壁连接以支撑电机安装部121。连接臂123为两个,两个连接臂123均位于电机安装部121的上方(如图3所示的上方),两个连接臂123沿电机安装部121的周向方向间隔设置,每个连接臂123的下端均与电机安装部121的外周壁连接,每个连接臂123的上端均与后围板本体11连接以增加电机安装部121的固定效果。
在本申请的一些实施例中,如图3和图4所示,电机安装部121、支撑部122和上述至少一个连接臂123中的至少一个上设有过风孔124。由此可以增加电机支架12的结构的多样性,满足不同的需求。
在本申请的一些实施例中,如图1、图3和图4所示,支撑部122包括第一底板1222以及交错分布的多个筋板1221,多个筋板1221连接在第一底板1222的远离后围板本体11的一侧。由此,可以增强支撑部122的结构强度,提高支撑部122对电机安装部121的支撑效果,从而提高电机工作的可靠性。
例如,在图3和图4所示的示例中,支撑部122包括多个沿竖直方向延伸且沿水平方向间隔开的多个第一筋板,以及多个沿竖直方向间隔开且沿水平方向延伸的第二筋板,每个第二筋板均与每个第一筋板交错连接,第一筋板和第二筋板均设在第一底板1222上。
在本申请的一些实施例中,如图1和图3所示,电机安装部121上设有用于安装电机的电机安装孔1211。电机可以安装在电机安装孔1211内,由此可以简化电机的安装方式,提高生产效率。
进一步地,如图1和图3所示,电机安装部121包括第二底板1215、第一环形板1212和第二环形板1213,第一环形板1212和第二环形板1213均连接在第二底板1215的远离后围板本体11的一侧,第二环形板1213套设在第一环形板1212外,第一环形板1212 和第二环形板1213间隔开,第一环形板1212和第二环形板1213之间连接有多个连接板1214,多个连接板1214沿第一环形板1212的周向方向间隔设置,第一环形板1212限定出电机安装孔1211,第二底板1215上设有与电机安装孔1211相对的避让孔。由此不仅可以节省电机安装部121的材料,降低成本,还可以提高电机安装部121的结构强度,从而提高电机固定的可靠性。
在本申请的一些实施例中,如图1和图3所示,连接臂123上设有多个过风孔124,多个过风孔124沿连接臂123的长度方向间隔分布。当气流流经连接臂123时,可以通过连接臂123上的多个过风孔124流向通风口111,降低了连接臂123对气流的阻挡,增大了风轮的进风侧的过风面积,提高窗式空调器1000的换热效率,从而提高窗式空调器1000制冷和制热能力。另外,连接臂123上设置过风孔124,还可以降低气流流动过程中的阻力,有利于降低噪音。
进一步地,如图1、图5和图6所示,连接臂123包括第一段1231和第二段1232,第一段1231的一端与后围板本体11连接,第二段1232的一端与第一段1231的另一端连接,第二段1232的另一端与电机安装部121的外周壁连接,第一段1231和第二段1232互成角度。由此可以使得电机安装部121与后围板本体11间隔开,便于电机的安装以及便于电机与风轮的配合。同时还可以提高电机支架12的结构强度。
其中,第一段1231和第二段1232中的至少一个上设有过风孔124。也就是说,可以仅第一段1231上设有过风孔124,或者仅第二段1232上设有过风孔124,或者第一段1231和第二段1232上均设有过风孔124。由此可以增加电机支架12结构的多样性。例如,在图1所示的示例中,第一段1231和第二段1232上均设有过风孔124。
在本申请的一些实施例中,如图3和图4所示,第二段1232在通风口111所在的平面内的投影位于通风口111内,第一段1231在通风口111所在的平面内的投影位于通风口111外。由此可以降低连接臂123对进风的阻挡,有利于增大过风面积,提高窗式空调器1000的换热效果。其中,如图5所示,第二段1232大体与后围板本体11垂直。
在本申请的一些实施例中,如图1和图4所示,连接臂123包括底板1233和两个侧板1234,两个侧板1234的一端分别与底板1233连接以限定出凹槽1235,凹槽1235沿连接臂123的长度方向延伸,凹槽1235的敞开口朝向电机支架12与后围板限定的空间。由此不仅可以增加连接臂123的结构强度,还可以减轻电机支架12的重量,从而减轻窗式空调器1000的重量。
进一步地,如图1所示,底板1233和侧板1234圆滑过渡连接。也就是说底板1233和侧板1234的连接处通过圆滑的曲面过渡连接,由此可以减小连接臂123对气流的阻 力,有利于降低噪音。
在本申请的一些实施例中,如图3所示,通风口111的内壁与后围板本体11的朝向电机支架12的表面圆滑过渡连接。由此可以减小通风口111出的风阻,有利于降低噪音。
在本申请的一些实施例中,如图1所示,电机支架12与后围板本体11为一体成型件。由此可以减少零部件的数量,提高窗式空调器1000的装配效率,从而提高窗式空调器1000的生产效率,有效降低成本。
在本申请的一些实施例中,如图1所示,后围板本体11具有过通风口111的中心轴线的竖直参考面,通风口111处设有第一挡水筋112,第一挡水筋112位于参考面的一侧,第一挡水筋112朝向后围板本体11的靠近电机支架12的一侧凸出,第一挡水筋112沿通风口111的周向方向延伸,第一挡水筋112的下端邻近通风口111的底端。
需要说明的是,窗式空调器1000在工作的过程中,接水盘中的冷凝水容易从接水盘中甩出。通过设置第一挡水筋112,第一挡水筋112对甩出的水具有遮挡的作用,可以避免冷凝水甩出,从而可以提升窗式空调器1000工作的安全性。
在本申请的一些实施例中,第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角为α1,α1满足:10°≤α1≤20°。窗式空调器1000在工作的过程中,接水盘中的冷凝水在被甩出时具有一定的惯性力,被甩出的冷凝水在惯性力的作用下会继续运动一定的距离,也就是靠近参考面底端处并没有冷凝水甩出。通过将第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角设置在10°-20°之间,由此在保证后围板组件100具有较好的挡水效果的同时,可以减少第一挡水筋112的布局范围,从而减少第一挡水筋112占用的空间以及制造用料,节省成本。
例如,第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角可以为12°、14°、16°、18°等,具体地,第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角可以根据后围板组件100的型号、工作环境设计。当然,本申请不限于此,第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角也可以为25°、30°、35°等。
在本申请的一些实施例中,第一挡水筋112的顶端与通风口111的中心之间的连线与参考面之间的夹角为α2,α2满足:45°≤α2≤145°。通过将第一挡水筋112的顶端与通风口111的中心之间的连线与参考面之间的夹角设置在45°-145°之间,可以在较大的范围内实现对甩出的冷凝水的遮挡,从而可以提升第一挡水筋112的挡水效果。
例如,第一挡水筋112的顶端与通风口111的中心之间的连线与参考面之间的夹角可以为50°、70°、90°、110°、130°等。具体地,第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角可以根据后围板组件100的型号、工作环境设计。
在本申请的一些实施例中,α2满足:90°≤α2≤145°。通过将第一挡水筋112的顶端与通风口111的中心之间的连线与参考面之间的夹角设置在90°-145°之间,可以进一步增大第一挡水筋112的挡水范围,从而可以进一步提升第一挡水筋112的挡水效果,使得窗式空调器1000工作的安全性得到进一步的提升。例如,第一挡水筋112的顶端与通风口111的中心之间的连线与参考面之间的夹角可以为95°、105°、115°、120°、125°、130°、135°、140°等。
在本申请的一些实施例中,如图1所示,通风口111处设有第二挡水筋113,第二挡水筋113位于参考面的另一侧,第二挡水筋113朝向后围板本体11的靠近电机支架12的一侧凸出,第二挡水筋113沿通风口111的周向方向延伸,第二挡水筋113的下端邻近通风口111的底端。可以理解的是,通过设置第二挡水筋113,第二挡水筋113可以对从参考面的另一侧甩出的水进行遮挡,可以避免冷凝水从参考面的另一侧甩出,从而可以进一步提升窗式空调器1000工作的安全性。
进一步地,第二挡水筋113的底端与通风口111的中心之间的连线与参考面之间的夹角为β1,β1满足:10°≤β1≤20°。窗式空调器1000在工作的过程中,接水盘中的冷凝水在被甩出时具有一定的惯性力,被甩出的冷凝水在惯性力的作用下会继续运动一定的距离,也就是靠近参考面底端处并没有冷凝水甩出。通过将第二挡水筋113的底端与通风口111的中心之间的连线与参考面之间的夹角设置在10°-20°之间,由此在保证后围板组件100具有较好的挡水效果的同时,可以减少第二挡水筋113的布局范围,从而减少第二挡水筋113占用的空间以及制造用料,节省成本。
在本申请的一些实施例中,第二挡水筋113的顶端与通风口111的中心之间的连线与参考面之间的夹角为β2,β2满足:45°≤β2≤65°。通过将第二挡水筋113的顶端与通风口111的中心之间的连线与参考面之间的夹角设置在45°-65°之间,可以在较大的范围内实现对甩出的冷凝水的遮挡,从而可以提升第二挡水筋113的挡水效果。
例如,第二挡水筋113的顶端与通风口111的中心之间的连线与参考面之间的夹角可以为50°、55°、60°等。具体地,第二挡水筋113的底端与通风口111的中心之间的连线与参考面之间的夹角可以根据后围板组件100的型号、工作环境设计。
下面参考附图描述根据本申请实施例二的窗式空调器1000的后围板组件100,窗式 空调器1000包括换热器,换热器相对的两侧均设有边板,
如图12和图13所示,根据本申请实施例二的后围板组件100,包括:后围板本体11,后围板本体11相对的两侧均设有间隔开的第一立板114和第二立板115,第一立板114和第二立板115均沿竖直方向延伸,第一立板114的一端(如图12所示的外侧一端)和第二立板115的一端(如图12所示的外侧一端)之间连接有第一挡板116,第一挡板116为多个,多个第一挡板116沿竖直方向间隔开,相邻的两个第一挡板116之间限定出空隙119,第一立板114和第二立板115中的一个的另一端(如图12所示的内侧一端)连接有第二挡板117,第二挡板117与第一挡板116平行,第二挡板117与第一立板114和第二立板115中的另一个之间具有供边板通过的间隙,第二挡板117为多个,多个第二挡板117与多个空隙119一一对应,且一一对应的第二挡板117和空隙119相对设置,边板的部分位于第一挡板116和第二挡板117限定的滑槽118内。
可以理解的是,换热器在与后围板组件100装配完成时,边板的部分位于第一挡板116和第二挡板117限定的滑槽118内,利用第一挡板116和第二挡板117对边板的限位作用,实现换热器与后围板组件100的连接和固定。例如,在图12所示的实施例中,第一挡板116设置有四个,四个第一挡板116沿竖直方向间隔开,相邻两个第一挡板116之间设置有一个第二挡板117,第二挡板117与第一挡板116间隔开。
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。
如图12、图15和图16所示,所示,第一挡板116的朝向滑槽118的表面具有第一导向斜面1161(参照图17),第一导向斜面1161位于第一挡板116的下端,且第一导向斜面1161在由上至下的方向上朝向远离滑槽118的方向倾斜,第二挡板117的朝向滑槽118的表面具有第二导向斜面1171(参照图19),第二导向斜面1171位于第二挡板117的下端,且第二导向斜面1171在由上至下的方向上朝向远离滑槽118的方向倾斜。
可以理解的是,换热器与后围板组件100装配时,换热器的边板可以沿着竖直方向从后围板组件100的下端竖直向上滑入预定安装位置,边板在向上滑入的过程中,第一导向斜面1161和第二导向斜面1171对边板的向上滑入具有导向作用,使得边板可以更加顺畅的向上滑动。
例如,边板在由下至上滑动的过程中,当边板滑入第一挡板116的第一导向斜面1161处时,边板在第一导向斜面1161的导向作用下可以朝向靠近滑槽118的方向滑动,由此边板更为顺畅的朝上滑动。再如,边板在由下至上滑动的过程中,当边板滑入第二挡板117的第二导向斜面1171处时,边板在第二导向斜面1171的导向作用下可以朝向靠 近滑槽118的方向滑动,由此边板更为顺畅的朝上滑动。
根据本申请实施例二的窗式空调器1000的后围板组件100,后围板组件100包括后围板本体11,后围板本体11相对的两侧均设有间隔开的第一立板114和第二立板115,第一立板114的一端和第二立板115的一端之间连接有多个间隔开的第一挡板116,第一立板114和第二立板115中的一个的另一端连接有多个间隔开的第二挡板117,第二挡板117与第一挡板116限定出滑槽118,通过在第一挡板116的朝向滑槽118的表面设置第一导向斜面1161,且第一导向斜面1161在由上至下的方向上朝向远离滑槽118的方向倾斜,同时在第二挡板117的朝向滑槽118的表面设置第二导向斜面1171,且第二导向斜面1171在由上至下的方向上朝向远离滑槽118的方向倾斜,换热器在与后围板组件100进行装配时,换热器的边板可以在第一导向斜面1161和第二导向斜面1171的导向作用下更加顺畅的向上滑动,从而可以降低换热器与后围板组件100装配的难度,提升换热器与后围板组件100装配的效率。
根据本申请的一些实施例,如图12和图13所示,后围板本体11上设有通风口111,后围板本体11具有过通风口111的中心轴线的竖直参考面,通风口111处设有第一挡水筋112,第一挡水筋112位于参考面的一侧,第一挡水筋112朝向后围板本体11的一侧凸出,第一挡水筋112沿通风口111的周向方向延伸,第一挡水筋112的下端邻近通风口111的底端。
需要说明的是,窗式空调器1000在工作的过程中,接水盘中的冷凝水容易从接水盘中甩出。通过设置第一挡水筋112,第一挡水筋112对甩出的水具有遮挡的作用,可以避免冷凝水甩出,从而可以提升窗式空调器1000工作的安全性。
在本申请的一些实施例中,如图12和图14所示,第一挡水筋112的底端(如图14所示的下端)与通风口111的中心之间的连线与参考面之间的夹角为α1,α1满足:10°≤α1≤20°。窗式空调器1000(参照图7)在工作的过程中,接水盘中的冷凝水在被甩出时具有一定的惯性力,被甩出的冷凝水在惯性力的作用下会继续运动一定的距离,也就是靠近参考面底端处并没有冷凝水甩出。通过将第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角设置在10°-20°之间,由此在保证后围板组件100具有较好的挡水效果的同时,可以减少第一挡水筋112的布局范围,从而减少第一挡水筋112占用的空间以及制造用料,节省成本。
例如,第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角可以为12°、14°、16°、18°等,具体地,第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角可以根据后围板组件100的型号、工作环境设计。当 然,本申请不限于此,第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角也可以为25°、30°、35°等。
在本申请的一些实施例中,如图12和图14所示,第一挡水筋112的顶端(如图14所示的上端)与通风口111的中心之间的连线与参考面之间的夹角为α2,α2满足:45°≤α2≤145°。通过将第一挡水筋112的顶端与通风口111的中心之间的连线与参考面之间的夹角设置在45°-145°之间,可以在较大的范围内实现对甩出的冷凝水的遮挡,从而可以提升第一挡水筋112的挡水效果。
例如,第一挡水筋112的顶端与通风口111的中心之间的连线与参考面之间的夹角可以为50°、70°、90°、110°、130°等。具体地,第一挡水筋112的底端与通风口111的中心之间的连线与参考面之间的夹角可以根据后围板组件100的型号、工作环境设计。
在本申请的一些实施例中,α2满足:90°≤α2≤145°。通过将第一挡水筋112的顶端与通风口111的中心之间的连线与参考面之间的夹角设置在90°-145°之间,可以进一步增大第一挡水筋112的挡水范围,从而可以进一步提升第一挡水筋112的挡水效果,使得窗式空调器1000(参照图7)工作的安全性得到进一步的提升。例如,第一挡水筋112的顶端与通风口111的中心之间的连线与参考面之间的夹角可以为95°、105°、115°、120°、125°、130°、135°、140°等。
在本申请的一些实施例中,通风口111处设有第二挡水筋113,第二挡水筋113位于参考面的另一侧,第二挡水筋113朝向后围板本体11的一侧凸出,第二挡水筋113沿通风口111的周向方向延伸,第二挡水筋113的下端邻近通风口111的底端。可以理解的是,通过设置第二挡水筋113,第二挡水筋113可以对从参考面的另一侧甩出的水进行遮挡,可以避免冷凝水从参考面的另一侧甩出,从而可以进一步提升窗式空调器1000(参照图7)工作的安全性。
进一步地,如图12和图14所示,第二挡水筋113的底端(如图14所示的下端)与通风口111的中心之间的连线与参考面之间的夹角为β1,β1满足:10°≤β1≤20°。窗式空调器1000(参照图7)在工作的过程中,接水盘中的冷凝水在被甩出时具有一定的惯性力,被甩出的冷凝水在惯性力的作用下会继续运动一定的距离,也就是靠近参考面底端处并没有冷凝水甩出。通过将第二挡水筋113的底端与通风口111的中心之间的连线与参考面之间的夹角设置在10°-20°之间,由此在保证后围板组件100具有较好的挡水效果的同时,可以减少第二挡水筋113的布局范围,从而减少第二挡水筋113占用的空间以及制造用料,节省成本。
在本申请的一些实施例中,如图12和图14所示,第二挡水筋113的顶端(如图14所示的上端)与通风口111的中心之间的连线与参考面之间的夹角为β2,β2满足:45°≤β2≤65°。通过将第二挡水筋113的顶端与通风口111的中心之间的连线与参考面之间的夹角设置在45°-65°之间,可以在较大的范围内实现对甩出的冷凝水的遮挡,从而可以提升第二挡水筋113的挡水效果。
例如,第二挡水筋113的顶端与通风口111的中心之间的连线与参考面之间的夹角可以为48°、52°、56°、60°、64°等。具体地,第二挡水筋113的底端与通风口111的中心之间的连线与参考面之间的夹角可以根据后围板组件100的型号、工作环境设计。
需要说明的是,在本申请的描述中,需要理解的是,术语“顶”、“底”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。
在本申请的一些实施例中,如图13和图19所示,后围板组件100还包括:电机支架12,电机支架12与后围板本体11连接,电机支架12的至少部分与通风口111相对,电机支架12上设有过风孔124以使气流通过过风孔124流入通风口111。一般情况下,气流从窗式空调器1000(参照图7)室外部分的室外进风口进入,在风轮的驱动下,绕过电机支架12进入通风口111内与换热器进行换热。但是电机支架12阻挡进风,使得风轮的进风侧过风受限,换热效率降低,并且电机支架12会阻挡气流流动,增加气流流动的阻力,提高噪音。
而在电机支架12上设置过风孔124,当气流流动时,在风轮的驱动下,气流可以通过电机支架12上的过风孔124进入通风口111内,降低了电机支架12对气流的阻挡,增大了风轮的进风侧的过风面积,提高窗式空调器1000(参照图7)的换热效率,从而提高窗式空调器1000制冷和制热能力。另外,电机支架12上设置过风孔124,还可以降低气流流动过程中的阻力,有利于降低噪音。
进一步地,如图12、图13和图20所示,电机支架12包括:电机安装部121、支撑部122和至少一个连接臂123,支撑部122的一端与电机安装部121的外周壁连接,支撑部122的另一端与支撑件连接,从而起到固定电机安装部121的作用。
如图12和图13所示,连接臂123的一端与电机安装部121的外周壁连接,连接臂123的另一端与后围板本体11连接,从而固定电机安装部121,提高电机安装部121固定的可靠性,进而提高电机固定的可靠性。在本申请的一些实施例中,如图2所示,上 述至少一个连接臂123和支撑部122沿电机安装部121的周向方向间隔分布,由此可以增加对电机安装部121的固定效果,从而增加对电机的固定效果,提高电机固定的可靠性。其中连接臂123的至少部分与通风口111相对,由此不但便于连接臂123与电机安装部121的连接,还便于连接臂123与后围板本体11之间的连接。
例如,在图12和图13所示的示例中,支撑部122位于电机安装部121的下方,支撑部122的下端与后围板本体11连接,支撑部122的上端与电机安装部121的外周壁连接以支撑电机安装部121。连接臂123为两个,两个连接臂123均位于电机安装部121的上方,两个连接臂123沿电机安装部121的周向方向间隔设置,每个连接臂123的下端均与电机安装部121的外周壁连接,每个连接臂123的上端均与后围板本体11连接以增加电机安装部121的固定效果。
在本申请的一些实施例中,如图12和图13所示,至少一个连接臂123和支撑部122沿电机安装部121的周向方向间隔分布,电机安装部121、支撑部122的至少部分和连接臂123的至少部分均与通风口111相对,电机安装部121、支撑部122和至少一个连接臂123中的至少一个上设有过风孔124。由此可以增加电机支架12的结构的多样性,满足不同的需求。
进一步地,如图12、图14和图19所示,支撑部122包括第一底板1222以及交错分布的多个筋板1221,多个筋板1221连接在第一底板1222的远离后围板本体11的一侧。由此,可以增强支撑部122的结构强度,提高支撑部122对电机安装部121的支撑效果,从而提高电机工作的可靠性。
例如,在图12和图14所示的示例中,支撑部122包括多个沿竖直方向延伸且沿水平方向间隔开的多个第一筋板1221,以及多个沿竖直方向间隔开且沿水平方向延伸的第二筋板1221,每个第二筋板1221均与每个第一筋板1221交错连接,第一筋板和第二筋板均设在第一底板1222上。
在本申请的一些实施例中,如图12、图14和图19所示,电机安装部121上设有用于安装电机的电机安装孔1211。电机可以安装在电机安装孔1211内,由此可以简化电机的安装方式,提高生产效率。
进一步地,如图12和图14所示,电机安装部121包括第二底板1215、第一环形板1212和第二环形板1213,第一环形板1212和第二环形板1213均连接在第二底板1215的远离后围板本体11的一侧,第二环形板1213套设在第一环形板1212外,第一环形板1212和第二环形板1213间隔开,第一环形板1212和第二环形板1213之间连接有多个连接板1214,多个连接板1214沿第一环形板1212的周向方向间隔设置,第一环形板 1212限定出电机安装孔1211,第二底板1215上设有与电机安装孔1211相对的避让孔。由此不仅可以节省电机安装部121的材料,降低成本,还可以提高电机安装部121的结构强度,从而提高电机固定的可靠性。
在本申请的一些实施例中,如图12、图14和图19所示,连接臂123上设有多个过风孔124,多个过风孔124沿连接臂123的长度方向间隔分布。当气流流经连接臂123时,可以通过连接臂123上的多个过风孔124流向通风口111,降低了连接臂123对气流的阻挡,增大了风轮的进风侧的过风面积,提高窗式空调器1000(参照图7)的换热效率,从而提高窗式空调器1000制冷和制热能力。另外,连接臂123上设置过风孔124,还可以降低气流流动过程中的阻力,有利于降低噪音。
进一步地,如图12和图13所示,连接臂123包括:第一段1231,第一段1231的一端与后围板本体11连接;第二段1232,第二段1232的一端与第一段1231的另一端连接,第二段1232的另一端与电机安装部121的外周壁连接,第一段1231和第二段1232互成角度。由此可以使得电机安装部121与后围板本体11间隔开,便于电机的安装以及便于电机与风轮的配合。同时还可以提高电机支架12的结构强度。
其中,第一段1231和第二段1232中的至少一个上设有过风孔124(参照图21)。也就是说,可以仅第一段1231上设有过风孔124,或者仅第二段1232上设有过风孔124,或者第一段1231和第二段1232上均设有过风孔124。由此可以增加电机支架12结构的多样性。例如,在图13和图21所示的示例中,第一段1231和第二段1232上均设有过风孔124。
根据本申请实施例的窗式空调器1000,包括机壳200和上述后围板组件100。后围板组件100设在机壳200内。
根据本申请实施例的窗式空调器1000,通过在电机支架12上设置过风孔124以使气流通过过风孔124流入通风口111,可以降低电机支架12对气流的阻挡,增大了风轮的进风侧的过风面积,提高窗式空调器1000的换热效率,从而提高窗式空调器1000制冷和制热能力。另外,电机支架12上设置过风孔124,还可以降低气流流动过程中的阻力,有利于降低噪音。
在本申请的一些实施例中,窗式空调器1000支撑在墙体的窗口上,窗口内设有可移动的窗户,如图7和图8所示,机壳200上有容纳槽21,容纳槽21的两侧分别为室内部分和室外部分,窗户的至少一部分可伸入到容纳槽21内。窗式空调器1000还包括密封组件300,密封组件300分别与窗户和窗口的内壁接触,如图9和图10所示,密封组件300包括长度可变的第一连接部件31和多个第二连接部件32,第一连接部件31包括 固定部件311和滑动块312,固定部件311设在容纳槽21内,滑动块312与固定部件311滑动配合。任一个第二连接部件32与滑动块312可拆卸连接,任意两个第二连接部件32之间可拆卸连接。
由此,通过使密封组件300包括第一连接部件31,第一连接部件31包括固定部件311和滑动块312,这样不仅可以利用固定部件311将密封组件300安装到窗机上,便于密封组件300的设置,避免密封组件300发生丢失,而且通过滑动块312与固定部件311之间的滑动配合,可以对第一连接部件31的长度进行调节,从而对密封组件300的密封长度进行调节,使密封组件300可以对不同尺寸的窗户进行密封,便于提高密封组件300的密封效果,便于提高密封组件300的使用范围,从而便于提高窗式空调器1000的应用范围,便于提高窗式空调器1000的功能性和适用性。
此外,通过设置多个第二连接部件32,使任一个第二连接部件32与滑动块312可拆卸连接,任意两个第二连接部件32之间可拆卸连接。这样便于提高密封组件300的结构灵活性,可以通过连接不同数量的第二连接部件32来调节密封组件300的长度,便于提高密封组件300密封长度的变化范围,便于使密封组件300与不同尺寸的窗户相适配,进一步便于提高密封组件300的密封可靠性和稳定性,进一步便于提高密封组件300的使用范围。
因此,根据本申请实施例的窗机的密封组件300具有密封长度可变、使用方便等优点。
具体地,滑动块312和第二连接部件32组成密封配合件,密封配合件和固定部件311相连,密封配合件可转动至伸出容纳槽21以止抵在窗口的内壁上。这样通过调节密封配合件的长度可以调节密封组件300的密封长度。
在本申请的一些实施例中,如图10和图11所示,密封组件300还包括转动支座33,转动支座33固定在机壳200上,固定部件311可转动地设在转动支座33上以使密封组件300可转动至收纳在容纳槽21内。这样不仅便于固定部件311的安装设置,而且便于实现固定部件311相对转动支座33的转动,便于对密封组件300进行收纳,便于减小密封组件300占用的空间。
进一步地,如图10和图11所示,固定部件311上设有枢转轴,转动支座33上设有枢转孔,枢转轴与枢转孔转动配合。这样枢转轴和枢转孔可以相互配合,便于实现固定部件311的顺畅转动,便于提高固定部件311转动的可靠性。
具体地,如图11所示,密封组件300还包括角度定位组件34,角度定位组件34分别与转动支座33和固定部件311配合、以在固定部件311转动至设定角度时将固定部件311定 位在当前角度。这样可以将固定部件311定位在特定的角度,例如定位固定部件311与水平方向的夹角为90°、45°或30°,便于用户根据需求对固定部件311的转动角度进行定位,便于提高密封组件300的使用性能。
更为具体地,如图11所示,角度定位组件34包括定位凸起341和多个定位凹槽342,转动支座33和固定部件311中的其中一个设置定位凸起341,转动支座33和固定部件311中的另一个设置多个定位凹槽342。
进一步地,定位凸起341设在固定部件311上,多个定位凹槽342设在转动支座33上。具体地,多个定位凹槽342排布成圆环形,转动支座33转动时定位凸起341可与多个定位凹槽342切换配合,定位凸起341与其中一个定位凹槽342配合时以定位固定部件311。这样可以利用定位凸起341和定位凹槽342对固定部件311的转动角度进行定位,便于提高固定部件311的定位可靠性和稳定性。
更进一步地,定位凸起341为多个,多个定位凸起341排布成环形,多个定位凸起341与多个定位凹槽342一一对应配合。这样可以使角度定位组件34的受力更加平衡,便于提高角度定位组件34的结构强度,便于提高角度定位组件34的定位可靠性和准确性。
具体地,密封组件300还包括滑动定位组件35,滑动定位组件35设在固定部件311上且与滑动块312配合、以将滑动块312定位在当前位置。这样可以利用滑动定位组件35对滑动块312进行定位,便于使密封组件300保持在特定的密封长度,便于提高密封组件300结构稳定性,便于实现密封组件300的可靠密封。
更为具体地,固定部件311内设有滑动腔3111,滑动块312的至少一部分伸入到滑动腔3111内。这样便于固定部件311和滑动块312的配合设置,便于滑动块312相对固定部件311进行滑动。
进一步地,滑动定位组件35为旋转件,旋转件可旋转地穿设在固定部件311以调整旋转件伸入到滑动腔3111内的部分的长度,旋转件可止抵在滑动块312上以定位滑动块312。这样用户通过旋转旋转件可以控制滑动块312能否进行滑动,进一步便于用户根据需要对滑动块312的长度进行调节。
具体地,每个第二连接部件32包括插入部321,每个第二连接部件32和滑动块312均设有插入腔室322,每个插入部321可插拔地与插入腔室322配合。这样便于相邻的第二连接部件32相连接,便于实现多个第二连接部件32的装配成型,进一步便于改变密封组件300的密封长度。
在本申请的一些实施例中,在第二连接部件32的插拔方向上,插入部321的外周面由后向前向内倾斜设置。
在本申请的一些实施例中,如图11所示,密封组件300还包括密封端盖36,密封端盖36用于密封离固定部件311最远的插入腔室322的开口端。这样不仅便于对离固定部件311最远的插入腔室322进行密封,提高第二连接部件32的密封性,而且可以使多个第二连接部件32具有相同的结构,便于第二连接部件32的加工制造,便于提高第二连接部件32的互换性。
具体地,密封组件300的顶壁设有密封海绵,窗户止抵在密封海绵上。这样不仅可以避免窗户与密封组件300直接接触,便于减少窗户与密封组件300的接触磨损,而且可以提高窗户与密封组件300之间的密封效果。
下面参考附图描述根据本申请实施例的窗式空调器装置10000。
如图22所示,根据本申请实施例的窗式空调器装置10000,墙体801的窗口801a处设有可移动的窗户,窗式空调器装置10000可以包括窗式空调器1000和安装组件400。
如图22和图23所示,窗式空调器1000包括机壳200,机壳200设有容纳槽21,例如,容纳槽21的顶部敞开,窗式空调器1000具有安装状态和未安装状态,安装组件400包括收纳盒40和安装附件500。其中,在安装状态,窗式空调器1000通过安装附件500安装至窗口801a,容纳槽21适于容纳窗户;在未安装状态,安装附件500收纳在收纳盒40内、收纳盒40置于容纳槽21内且被容纳槽21的相对侧壁夹持。
具体而言,例如,在窗式空调器装置10000出厂运输或存放时,此时窗式空调器1000处于未安装状态,安装附件500收纳在收纳盒40内、收纳盒40置于容纳槽21内且被容纳槽21的相对侧壁夹持,窗式空调器装置10000被打包在窗式空调器装置10000的包装箱内,由此,有利于减小窗式空调器装置10000的包装箱的尺寸,从而提高窗式空调器装置10000的装柜量,有利于降低运输成本,进而提高窗式空调器装置10000的市场竞争力,同时有利于提高窗式空调器装置10000整体的结构稳定性;
在将窗式空调器1000安装至窗口801a前,可先将安装组件400从容纳槽21内取出,接着从收纳盒40内取出安装附件500,然后将安装附件500和窗式空调器1000安装至窗口801a,在安装状态,窗式空调器1000通过安装附件500安装至窗口801a,此时容纳槽21适于容纳窗户。
由此,在未安装状态,通过将安装附件500收纳在收纳盒40内,同时收纳盒40置于容纳槽21内且被容纳槽21的相对侧壁夹持,有利于减小窗式空调器装置10000的包装箱的尺寸,从而提高窗式空调器装置10000的装柜量,有利于降低运输成本,进而提高窗式空调器装置10000的市场竞争力,同时有利于提高窗式空调器装置10000整体的结构稳定性。
根据本申请实施例的窗式空调器装置10000,在未安装状态,通过将安装附件500收纳在收纳盒40内,同时收纳盒40置于容纳槽21内且被容纳槽21的相对侧壁夹持,有利于减小窗式空调器装置10000的包装箱的尺寸,从而提高窗式空调器装置10000的装柜量,有利于降低运输成本,进而提高窗式空调器装置10000的市场竞争力,同时通过有利于提高窗式空调器装置10000整体的结构稳定性。
在本申请的实施例中,参照图23-图24所示,收纳盒40为聚苯乙烯泡沫件。由此,当将收纳盒40置于容纳槽21时,收纳盒40可发生形变,从而使得收纳盒40和容纳槽21的相对侧壁之间贴合紧密,有利于防止收纳盒40从容纳槽21内脱出,同时,有利于进一步提高窗式空调器装置10000整体的结构稳定性。
在本申请的一些实施例中,如图24所示,安装附件500包括多个构件,收纳盒40内形成有多个彼此间隔开的容纳腔40b,多个容纳腔40b与多个所述构件一一对应以使得多个构件分别容纳至对应的容纳腔40b。由此,收纳盒40内可容纳多个构件,且每个构件放置在相应的容纳腔40b内,有利于避免构件装错或漏装。例如,构件可以为下述的支架部51和连接部52。在本申请的一些实施例中,每个容纳腔40b的形状与相应的容纳腔40b的形状相匹配。
在本申请的一些实施例中,如图25所示,收纳盒40的侧壁上设有与容纳腔40b连通的缺口40a,安装附件500置于容纳腔40b内,用户可通过缺口40a破坏收纳盒40以取出安装附件500。
在本申请的一些实施例中,如图26-图28所示,安装附件500包括:安装架50,安装架50包括支架部51和连接部52,支架部51安装于墙体801且用于安装窗式空调器1000,如图28所示,连接部52与支架部51相连且位于墙体801的室内侧801e或室外侧801f,墙体801厚度的一侧为室内侧801e、墙体801厚度的另一侧为室外侧801f,窗式空调器1000可以通过安装附件500设于窗口801a处,隔架60安装于连接部11,且位于连接部11的靠近墙体801的一侧,定义与墙体801的厚度方向相垂直的平面为投影面900a,隔架60在投影面900a上的正投影面积S1大于连接部52在投影面900a上的正投影面积S2。
例如,如图26-图28所示,窗式空调器1000可以固定设在支架部51上,支架部51可以由墙体801的室内侧801e延伸至室外侧801f,支架部51的位于室内侧801e的部分的延伸长度可以小于支架部51的位于室外侧801f的部分的延伸长度,连接部52可以与支架部51固定相连且连接部52可以位于墙体801的室内侧801e,连接部52可以与墙体801的内侧壁801c间隔设置;隔架60可以固定设在连接部52上,且隔架60可 以位于连接部52与墙体801之间。
当安装附件500用于安装窗式空调器1000时,窗式空调器1000的重心位于室外侧801f,隔架60可以止抵在墙体801的内侧壁801c上,使得安装附件500可以卡设在窗口801a处,由于窗式空调器1000的重力作用使得窗口801a的边沿承受一定作用力;由于隔架60在投影面900a上的正投影面积S1大于连接部52在投影面900a上的正投影面积S2,使得安装附件500作用在窗口801a上的作用力面积较大,即窗口801a边沿的受力面积较大,从而在窗口801a受到的作用力不变的情况下,减小了窗口801a单位面积上的受力,有效减小了窗口801a的变形,避免窗口801a局部受力过大导致破坏,提升了窗式空调器1000的安装可靠性,保证了用户的正常使用。
可以理解的是,连接部52还可以位于墙体801的室外侧801f;例如当窗式空调器1000的位于室内侧801e的部分的重量较重时,窗式空调器1000的重心位于室内侧801e,连接部52可以位于墙体801的室外侧801f以保证窗式空调器1000的安装可靠,此时连接部52可以与墙体801的外侧壁801d间隔设置,隔架60位于连接部52与墙体801之间,支架部51的位于室外侧801f的部分的延伸长度可以小于支架部51的位于室内侧801e的部分的延伸长度。由此,同样可以减小窗口801a单位面积上的受力,提升窗式空调器1000的安装可靠性。
在本申请的一些实施例中,如图30和图31所示,隔架60包括伸缩机构61,伸缩机构61包括第一抽拉件611和第二抽拉件612,第一抽拉件611和第二抽拉件612滑移配合以使伸缩机构61的长度可伸缩调节,从而调节伸缩机构61在投影面900a上的正投影的面积,进而调节隔架60在投影面900a上的正投影的面积S1,使得面积S1可以增大、也可以减小,而面积S1始终大于面积S2。例如,如图所示,第一抽拉件611和第二抽拉件612均可以沿伸缩机构61的长度方向延伸,第一抽拉件611和第二抽拉件612滑移配合使得第一抽拉件611和第二抽拉件612可以在伸缩机构61的长度方向上彼此相对移动,以改变第一抽拉件611和第二抽拉件612的配合长度,从而改变伸缩机构61的长度;例如,第一抽拉件611和第二抽拉件612可以沿伸缩机构61的长度方向相向运动以增大第一抽拉件611和第二抽拉件612的配合长度,从而减短伸缩机构61的长度,或者第一抽拉件611和第二抽拉件612还可以沿伸缩机构61的长度方向背向运动以减短第一抽拉件611和第二抽拉件612的配合长度,从而增大伸缩机构61的长度。由此,可以根据不同的窗式空调器1000将伸缩机构61调节至合适长度,保证窗口801a受力合理,以进一步提升窗式空调器1000的安装可靠性,同时提升了安装附件500的适用性,使得安装附件500可以适用于不同重量的窗式空调器1000;而且,伸缩机构 61还可以适用于不同尺寸的窗口801a,进一步提升了安装附件500的适用性。
在本申请的一些实施例中,参照图31所示,第一抽拉件611安装于连接部52,第二抽拉件612套设在第一抽拉件611外滑移。例如,在图31的示例中,第一抽拉件611可以与连接部52固定相连,第二抽拉件612内可以限定出中空腔,中空腔的至少轴向一端敞开设置,以便于第一抽拉件611的至少一部分穿设于中空腔内,以实现第一抽拉件611与第二抽拉件612的滑移配合,结构简单、便于实现,且在第二抽拉件612具有足够强度的前提下,减少了第二抽拉件612的用材量,降低了安装附件500的成本,有利于安装附件500的轻量化设计,进一步减小窗口801a的受力。
可以理解的是,第一抽拉件611内也可以限定出中空腔,使得第一抽拉件611大致形成为中空结构,以进一步降低安装附件500的材料成本,减轻安装附件500的重量。
例如,在图31的示例中,第一抽拉件611上可以形成有第一开口6111使得第一抽拉件611的横截面形状大致形成为C形,第二抽拉件612上可以形成有第二开口6121使得第二抽拉件612的横截面形状大致形成为C形,第一开口6111和第二开口6121可以均朝向墙体801设置,保证第一抽拉件611和第二抽拉件612具有足够的抗弯刚度。当然,第一抽拉件611和第二抽拉件612的横截面还可以形成为其他形状,而不限于此;例如第一抽拉件611的横截面形状还可以形成为环形(例如方形环)。
在本申请的一些实施例中,如图31所示,第一抽拉件611上具有多个第一定位孔6112,多个第一定位孔6112可以沿第一抽拉件611的长度方向依次间隔布置,第二抽拉件612上具有第二定位孔6122,当第一抽拉件611和第二抽拉件612相对移动时,多个第一定位孔6112可以依次与第二定位孔6122正对;安装附件500还包括定位件70,定位件70穿设于第二定位孔6122和与第二定位孔6122正对的第一定位孔6112,以限制第一抽拉件611和第二抽拉件612在伸缩机构61长度方向上的相对移动,从而固定第一抽拉件611和第二抽拉件612之间的相对位置,保证伸缩机构61长度的稳定性。
具体地,当第一抽拉件611与第二抽拉件612相对滑移以调节伸缩机构61的长度时,定位件70可以未穿设于第二定位孔6122和对应的第一定位孔6112内;当第一抽拉件611与第二抽拉件612滑移至使得伸缩机构61长度合适时,用户可以将定位件70穿设于第二定位孔6122和对应的第一定位孔6112以限制第一抽拉件611和第二抽拉件612的相对移动,此时伸缩机构61的长度无法改变,从而伸缩机构61长度稳定,具有良好的使用可靠性。
在本申请的一些实施例中,如图31所示,定位件70为插销、或螺钉、或螺栓,从而定位件70具有良好的限位作用、使用可靠,保证了安装附件500的使用可靠性,且 便于用户将定位件70穿设于第二定位孔6122和对应的第一定位孔6112,方便了安装附件500的组装,且定位件70结构简单、成本低。可以理解的是,定位件70还可以形成其他可以实现限位作用的结构部件,而不限于此,只需保证定位件70可穿设于第二定位孔6122和对应的第一定位孔6112内以限制第一抽拉件611和第二抽拉件612的相对滑移即可。
在本申请的进一步实施例中,参照图31所示,伸缩机构61的长度两端分别为第一端610a和第二端610b,隔架60还包括套设在第一端610a外和/或第二端610b外的端帽613,也就是说,隔架60包括套设在第一端610a外的端帽613,或者隔架60包括套设在第二端610b外的端帽613,或者隔架60包括套设在第一端610a外的端帽613和套设在第二端610b外的端帽613。由此,用户操作隔架60时,避免了第一端610a和/或第二端610b与用户直接接触而划伤用户,使得端帽613可以起到保护用户的作用,保证隔架60的使用安全性。
例如,如图31所示,第一端610a和第二端610b均设有端帽613,当安装附件500用于安装窗式空调器1000时,伸缩机构61的长度可以调节至大于窗口801a的宽度,此时两个端帽613可以分别止抵在窗口801a的两侧,由于端帽613具有一定的厚度,从而端帽613可以进一步将窗口801a的安装支架部51的边沿的受力有效分散至上述边沿两侧的未安装支架部51的边沿,从而在增大窗口801a受力面积的前提下、有效降低了窗口801a的安装支架部51的边沿的受力,使得窗口801a边沿受力分布合理,进一步提升了窗式空调器1000的安装可靠性。
在本申请的一些可选实施例中,第二抽拉件612为两个,两个第二抽拉件612位于连接部52的两侧。例如,如图31所示,两个第二抽拉件612可以沿伸缩机构61的长度方向分别位于连接部52的两侧,每个第二抽拉件612均与第一抽拉件611滑移配合,用于可以移动两个第二抽拉件612中的至少一个以调节伸缩机构61的长度,从而扩大了伸缩机构61的长度调节范围,进一步提升了安装附件500的适用性。
在本申请的一些实施例中,当隔架60包括套设在第一端610a外的端帽613时,避免了第一端610a与用户直接接触而划伤用户;当隔架60包括套设在第二端610b外的端帽613时,避免了第二端610b与用户直接接触而划伤用户;当隔架60包括套设在第一端610a外的端帽613和套设在第二端610b外的端帽613时,避免第一端610a和第二端610b与用户直接接触而划伤用户。
可以理解的是,第一端610a可以为第一抽拉件611的端部、也可以为第二抽拉件612的端部,第二端610b可以为第一抽拉件611的端部、也可以为第二抽拉件612的端 部。例如,当第一抽拉件611为一个、且第二抽拉件612为一个时,第一端610a可以为第一抽拉件611的远离第二抽拉件612的一端,第二端610b可以为第二抽拉件612的远离第一抽拉件611的一端;当第一抽拉件611为一个、且第二抽拉件612为两个时,两个第二抽拉件612可以沿伸缩机构61的长度方向分别位于连接部52的两侧,第一端610a和第二端610b可以分别为第二抽拉件612的远离彼此的一端;但不限于此。
进一步地,当第一抽拉件611和第二抽拉件612分别为一个、且第一抽拉件611安装于连接部52时,第一端610a可以为第一抽拉件611的远离第二抽拉件612的一端,第二端610b可以为第二抽拉件612的远离第一抽拉件611的一端,此时当需要改变伸缩机构61的长度时,用户可以仅通过操作第二抽拉件612即可,则端帽613可以仅套设在第二端610b外;但不限于此。当第一抽拉件611为一个、第二抽拉件612为两个且第一抽拉件611安装于连接部52时,两个第二抽拉件612可以沿伸缩机构61的长度方向分别位于连接部52的两侧,第一端610a和第二端610b可以分别为第二抽拉件612的远离彼此的一端,此时当需要改变伸缩机构61的长度时,用户可以通过操作两个第二抽拉件612中的至少一个,则端帽613可以为两个,两个端面可以分别套设在第一端610a和第二端610b外;但不限于此。
其中,如图31所示,端帽613可选为橡胶件、或塑料件,从而端帽613可以有效避免伸缩机构61划伤用户,且端帽613便于成型、成本低,保证了隔架60的实用性。可以理解的是,端帽613还可以其他材料件,例如端帽613还可以为金属件例如钣金件,此时可以将端帽613的外表面设计为光滑过渡的曲面,即端帽613的外表面无尖角,同样可以保证用户的操作安全。
在本申请的一些实施例中,参照图28所示,安装架50还包括底托部53,底托部53与连接部52的下部相连且底托部53支撑在隔架60的底部。例如,在图27和图30的示例中,支架部51可以设在窗口801a的底边沿801b上,连接部52可以沿上下方向延伸,且连接部52的上端与支架部51相连、连接部52的下端可以与底托部53相连、将隔架60安装于连接部52的过程中,隔架60的底表面可以置于底托部53上使得底托部53支撑隔架60以限制隔架60向下运动,从而实现了隔架60的限位,方便了隔架60的安装。
在本申请的一些实施例中,支架部51、连接部52和底托部53可以为一体件。
在本申请的一些实施例中,如图29所示,支架部51上具有至少一个铰接孔51a,安装附件500还包括:支撑杆54,支撑杆54的一端通过铰接孔51a与支架部51铰接,支撑杆54的另一端具有防滑件54a且止抵于墙体801。铰接孔51a可以位于支架部51 的位于室外侧801f的端部,铰接孔51a可以为多个,多个铰接孔51a可以沿支架部51的长度方向间隔设置,支撑杆54的上述一端通过一个铰接孔51a与支架部51交接,以调整支撑杆54的安装位置且使得支撑杆54可以绕其上述一端转动以改变支撑杆54与支架部51之间的夹角,使得安装架组件100可以有效适用于不同厚度的墙体801;由于支撑杆54的另一端通过防滑件54a止抵于墙体801,使得支撑杆54的上述另一端与墙体801之间具有较大的摩擦力,保证支撑杆54的支撑作用,从而无需设置复杂的固定结构就可以将支撑杆54与墙体801配合,提升安装架组件100的整体结构稳定性。当然,铰接孔51a还可以仅设置为一个。
其中,防滑件54a可选为橡胶件,但不限于此。
在本申请的进一步实施例中,参照图28所示,安装附件500还包括连接件80,隔架60通过连接件80可拆卸地安装于连接部52,则隔架60可以通过连接件80与连接部52可拆卸地相连,此时隔架60与连接部52为两个互相独立的部件,采用装配的手段连接在一起,从而简化了隔架60和连接部52的结构,便于隔架60、连接部52的加工和拆装。其中,连接件80可选为螺纹连接件80,例如螺栓、螺钉等,但不限于此。
例如,在图28的示例中,连接部52上形成有第一连接孔,隔架60上形成有第二连接孔,由于隔架60位于连接部52的靠近墙体801的一侧,则连接件80可以依次穿入第一连接孔和第二连接孔内,以将连接部52和支撑件固定相连,实现隔架60的安装。其中,由于连接件80依次穿入连接部52和隔架60、且隔架60位于连接部52的靠近墙体801的一侧,从而用户可以在室内进行隔架60的安装,方便了安装附件500的组装,而且安装附件500各部件的安装顺利较为合理,例如可以先安装安装架50、而后将隔架60安装于连接部52,进一步提升了安装附件500的组装效率。
在本申请的一些实施例中,支架部51设在窗口801a的底边沿801b上,连接部52由支架部51向下延伸,隔架60沿底边沿801b的长度方向延伸。例如,如图26所示,窗口801a可以包括多个边沿,多个边沿可以包括顶边沿、底边沿801b和侧边沿,顶边沿和底边沿801b上下相对,侧边沿设在顶边沿和底边沿801b的侧部,使得窗口801a在投影面900a上的正投影形成为封闭图形;底边沿801b可以水平延伸,支架部51可以设在底边沿801b的上表面上以使底边沿801b支撑支架部51,减小将支架部51安装于墙体801的固定件的受力,支架部51上可以形成有通孔,连接部52可以由通孔的远离墙体801的一侧边缘竖直向下延伸形成,隔架60可以沿底边沿801b的延伸方向延伸以与内侧壁801c或外侧壁801d相止抵,以增大安装附件500与窗口801a边沿的接触面积,避免底边沿801b变形或破坏,保证了窗式空调器安装的可靠性。
可以理解的是,当连接部52位于墙体801的室内侧801e时,隔架60可以与底边沿801b的内侧壁801c相止抵;当连接部52位于墙体801的室外侧801f时,隔架60可以与底边沿801b的外侧壁801d相止抵。
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”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
在本申请的一些实施例中,如图32和33所示,窗式空调器1000包括密封组件300,密封组件300分别与窗户和窗口801a的内壁接触,密封组件300包括:长度可变的第一连接部件31和多个第二连接部件32,第一连接部件31包括固定部件311和滑动块312,固定部件311的至少一部分设在容纳槽21内,滑动块312与固定部件311滑动配合,任一个第二连接部件32与滑动块312可拆卸连接,任意两个第二连接部件32之间可拆卸连接用于以调节密封组件300的长度。其中,“固定部件311的至少一部分设在容纳槽21内”可以理解为固定部件311的一部分设在容纳槽21内,或者整个固定部件311设在容纳槽21内。
由此,通过使密封组件300包括第一连接部件31,第一连接部件31包括固定部件311和滑动块312,这样不仅可以利用固定部件311将密封组件300安装到窗式空调器1000上,便于密封组件300的设置,避免密封组件300发生丢失,而且通过滑动块312与固定部件311之间的滑动配合,可以对第一连接部件31的长度进行调节,从而对密封组件300的密封长度进行调节,使密封组件300可以对不同尺寸的窗户进行密封,便于提高密封组件300的密封效果,便于提高密封组件300的使用范围,从而便于提高窗式空调器1000的应用范围,便于提高窗式空调器1000的功能性和适用性。
在本申请的一些实施例中,如图34和图35所示,密封组件300还包括转动支座33,转动支座33固定在机壳200上,固定部件311可转动地设在转动支座33上以使密封组件300可转动至收纳在容纳槽21内。这样不仅便于固定部件311的安装设置,而且便于实现固定部件311相对转动支座33的转动,便于对密封组件300进行收纳,便于减小密封组件300占用的空间。
在本申请的一些实施例中,如图35所示,窗式空调器1000还包括滑动定位组件35,滑动定位组件35设在固定部件311上且与滑动块312配合、以将滑动块312定位在当前位置。这样可以利用滑动定位组件35对滑动块312进行定位,便于使密封组件300 保持在特定的密封长度,便于提高密封组件300结构稳定性,便于实现密封组件300的可靠密封。
在本申请的一些实施例中,如图35所示,固定部件311内设有滑动腔3111,滑动块312的至少一部分伸入到滑动腔3111内;滑动定位组件35为旋转件,旋转件可旋转地穿设在固定部件311以调整旋转件伸入到滑动腔3111内的部分的长度,旋转件可止抵在滑动块312上以定位滑动块312。这样便于固定部件311和滑动块312的配合设置,便于滑动块312相对固定部件311进行滑动。
进一步地,如图35所示,滑动定位组件35为旋转件,所述旋转件可旋转地穿设在固定部件311以调整所述旋转件伸入到滑动腔3111内的部分的长度,所述旋转件可止抵在滑动块312上以定位滑动块312。这样用户通过旋转所述旋转件可以控制滑动块312能否进行滑动,进一步便于用户根据需要对滑动块312的长度进行调节。
在本申请的一些实施例中,如图36所示,容纳槽21将机壳分隔成室内部分1011和室外部分1012,所述室内部分1011具有进风口a和出风口b,室内部分103内设有室内换热器,室内换热器位于进风口a和出风口b之间,室内气流可从进风口a流入室内部分1011,并通过出风口b排出以调节室内环境的温度。
具体地,如图37所示,机壳200包括底盘101c、后箱体101b和前箱体101a,后箱体101b固定在底盘101c上,后箱体101b内容纳有室外换热器。前箱体101a固定在底盘101c上,前箱体101a与后箱体101b前后间隔设置以限定出容纳槽21。这样不仅便于容纳槽21的形成,便于窗式空调器1000与窗户相配合,而且便于机壳200的加工制造,便于提高机壳200的外观美观性。
更为具体地,机壳200还包括中间隔板101d,中间隔板101d固定在底盘101c上且位于容纳槽21内,中间隔板101d的前后两端分别与后箱体101b和前箱体101a配合。这样便于窗户的下表面止抵在中间隔板101d上,便于窗式空调器1000进行走线和排水,便于提高窗式空调器1000的工作可靠性。
在本申请的一些实施例中,上述的转动支座33可安装至中间隔板101d。具体地,中间隔板101d上设有顶部敞开的放置空间101e,转动支座33收纳至放置空间101e内,固定部件311设有容纳空间,密封组件300转动至伸出容纳槽21时、放置空间101e的外侧边缘伸入到容纳空间使得密封组件300与中间隔板101d大致平齐。从而使得密封组件300位于密封窗口801a的状态可与底盘101c平行或者大体平行,降低密封组件300处于密封窗口801a的状态时相对窗口801a的高度,可以进一步保证密封效果。
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 (40)

  1. 一种窗式空调器的后围板组件,其特征在于,包括:
    后围板本体,所述后围板本体上设有通风口;
    电机支架,所述电机支架设在所述后围板本体的一侧且与所述后围板本体连接,所述电机支架的至少部分与所述通风口相对,所述电机支架上设有过风孔以使气流通过所述过风孔流入所述通风口。
  2. 根据权利要求1所述的窗式空调器的后围板组件,其特征在于,所述电机支架包括:
    电机安装部;
    支撑部,所述支撑部的一端与所述电机安装部的外周壁连接,所述支撑部的另一端与所述后围板本体连接;
    至少一个连接臂,所述连接臂的一端与所述电机安装部的外周壁连接,所述连接臂的另一端与所述后围板本体连接,所述至少一个连接臂和所述支撑部沿所述电机安装部的周向方向间隔分布,所述电机安装部、所述支撑部的至少部分和所述连接臂的至少部分均与所述通风口相对,所述电机安装部、所述支撑部和所述至少一个连接臂中的至少一个上设有所述过风孔。
  3. 根据权利要求2所述的窗式空调器的后围板组件,其特征在于,所述后围板本体包括支撑件,所述支撑部的另一端与所述支撑件连接。
  4. 根据权利要求2所述的窗式空调器的后围板组件,其特征在于,所述支撑部包括第一底板以及交错分布的多个筋板,多个所述筋板连接在所述第一底板的远离所述后围板本体的一侧。
  5. 根据权利要求2所述的窗式空调器的后围板组件,其特征在于,所述电机安装部上设有用于安装电机的电机安装孔。
  6. 根据权利要求5所述的窗式空调器的后围板组件,其特征在于,所述电机安装部包括第二底板、第一环形板和第二环形板,所述第一环形板和所述第二环形板均连接在所述第二底板的远离所述后围板本体的一侧,所述第二环形板套设在所述第一环形板外,所述第一环形板和所述第二环形板间隔开,所述第一环形板和所述第二环形板之间连接有多个连接板,多个所述连接板沿所述第一环形板的周向方向间隔设置,所述第一环形板限定出所述电机安装孔,所述第二底板上设有与所述电机安装孔相对的避让孔。
  7. 根据权利要求2所述的窗式空调器的后围板组件,其特征在于,所述连接臂上设有多个所述过风孔,多个所述过风孔沿所述连接臂的长度方向间隔分布。
  8. 根据权利要求2所述的窗式空调器的后围板组件,其特征在于,所述连接臂包括:
    第一段,所述第一段的一端与所述后围板本体连接;
    第二段,所述第二段的一端与所述第一段的另一端连接,所述第二段的另一端与所述电机安装部的外周壁连接,所述第一段和所述第二段互成角度。
  9. 根据权利要求8所述的窗式空调器的后围板组件,其特征在于,所述第二段在所述通风口所在的平面内的投影位于所述通风口内,所述第一段在所述通风口所在的平面内的投影位于所述通风口外。
  10. 根据权利要求2所述的窗式空调器的后围板组件,其特征在于,所述连接臂包括底板和两个侧板,两个所述侧板的一端分别与所述底板连接以限定出凹槽,所述凹槽沿所述连接臂的长度方向延伸,所述凹槽的敞开口朝向所述电机支架与所述后围板限定的空间。
  11. 根据权利要求10所述的窗式空调器的后围板组件,其特征在于,所述底板和所述侧板圆滑过渡连接。
  12. 根据权利要求1-11中任一项所述的窗式空调器的后围板组件,其特征在于,所述通风口的内壁与所述后围板本体的朝向所述电机支架的表面圆滑过渡连接。
  13. 根据权利要求1-12中任一项所述的窗式空调器的后围板组件,其特征在于,所述电机支架与所述后围板本体为一体成型件。
  14. 根据权利要求1-13中任一项所述的窗式空调器的后围板组件,其特征在于,所述通风口处设有导风圈,所述导风圈朝向远离所述电机支架的一侧延伸。
  15. 根据权利要求1-14中任一项所述的窗式空调器的后围板组件,其特征在于,所述窗式空调器包括换热器,所述换热器相对的两侧均设有边板,所述后围板本体相对的两侧均设有间隔开的第一立板和第二立板,所述第一立板和所述第二立板均沿竖直方向延伸,所述第一立板的一端和所述第二立板的一端之间连接有第一挡板,所述第一挡板为多个,多个所述第一挡板沿竖直方向间隔开,相邻的两个所述第一挡板之间限定出空隙,
    所述第一立板和所述第二立板中的一个的另一端连接有第二挡板,所述第二挡板与所述第一挡板平行,所述第二挡板与所述第一立板和所述第二立板中的另一个之间具有供所述边板通过的间隙,所述第二挡板为多个,多个所述第二挡板与多个所述空隙一一对应,且一一对应的所述第二挡板和所述空隙相对设置,所述边板的部分位于所述第一 挡板和所述第二挡板限定的滑槽内,
    其中,所述第一挡板的朝向所述滑槽的表面具有第一导向斜面,所述第一导向斜面位于所述第一挡板的下端,且所述第一导向斜面在由上至下的方向上朝向远离所述滑槽的方向倾斜,所述第二挡板的朝向所述滑槽的表面具有第二导向斜面,所述第二导向斜面位于所述第二挡板的下端,且所述第二导向斜面在由上至下的方向上朝向远离所述滑槽的方向倾斜。
  16. 根据权利要求15所述的窗式空调器的后围板组件,其特征在于,所述后围板本体具有过所述通风口的中心轴线的竖直参考面,所述通风口处设有第一挡水筋,所述第一挡水筋位于所述参考面的一侧,所述第一挡水筋朝向所述后围板本体的一侧凸出,所述第一挡水筋沿所述通风口的周向方向延伸,所述第一挡水筋的下端邻近所述通风口的底端。
  17. 根据权利要求16所述的窗式空调器的后围板组件,其特征在于,所述第一挡水筋的底端与所述通风口的中心之间的连线与所述参考面之间的夹角为α1,所述α1满足:10°≤α1≤20°。
  18. 根据权利要求16所述的窗式空调器的后围板组件,其特征在于,所述第一挡水筋的顶端与所述通风口的中心之间的连线与所述参考面之间的夹角为α2,所述α2满足:45°≤α2≤145°。
  19. 根据权利要求18所述的窗式空调器的后围板组件,其特征在于,所述α2满足:90°≤α2≤145°。
  20. 根据权利要求16所述的窗式空调器的后围板组件,其特征在于,所述通风口处设有第二挡水筋,所述第二挡水筋位于所述参考面的另一侧,所述第二挡水筋朝向所述后围板本体的一侧凸出,所述第二挡水筋沿所述通风口的周向方向延伸,所述第二挡水筋的下端邻近所述通风口的底端。
  21. 根据权利要求20所述的窗式空调器的后围板组件,其特征在于,所述第二挡水筋的底端与所述通风口的中心之间的连线与所述参考面之间的夹角为β1,所述β1满足:10°≤β1≤20°。
  22. 根据权利要求20所述的窗式空调器的后围板组件,其特征在于,所述第二挡水筋的顶端与所述通风口的中心之间的连线与所述参考面之间的夹角为β2,所述β2满足:45°≤β2≤65°。
  23. 一种窗式空调器,其特征在于,包括:
    机壳;
    根据权利要求1-22中任一项所述的窗式空调器的后围板组件,所述后围板组件设在所述机壳内。
  24. 根据权利要求23所述的窗式空调器,其特征在于,所述窗式空调器支撑在墙体的窗口上,所述窗口内设有可移动的窗户,所述机壳上设有容纳槽,所述窗户的至少一部分可伸入到所述容纳槽内,所述窗式空调器还包括:
    密封组件,所述密封组件分别与所述窗户和所述窗口的内壁接触,所述密封组件包括:
    长度可变的第一连接部件,所述第一连接部件包括固定部件和滑动块,所述固定部件设在所述容纳槽内,所述滑动块与所述固定部件滑动配合;
    多个第二连接部件,任一个所述第二连接部件与所述滑动块可拆卸连接,任意两个所述第二连接部件之间可拆卸连接。
  25. 一种窗式空调器装置,其特征在于,墙体的窗口处设有可移动的窗户,所述窗式空调器装置包括:
    根据权利要求23或24所述的窗式空调器,所述窗式空调器包括机壳,所述机壳设有容纳槽,所述窗式空调器具有安装状态和未安装状态;
    安装组件,所述安装组件包括收纳盒和安装附件;
    其中,在所述安装状态,所述窗式空调器通过所述安装附件安装至所述窗口,所述容纳槽适于容纳所述窗户;在所述未安装状态,所述安装附件收纳在所述收纳盒内、所述收纳盒置于所述容纳槽内且被所述容纳槽的相对侧壁夹持。
  26. 根据权利要求25所述的窗式空调器装置,其特征在于,所述收纳盒为聚苯乙烯泡沫件。
  27. 根据权利要求25所述的窗式空调器装置,其特征在于,所述安装附件包括:
    安装架,所述安装架包括支架部和连接部,所述支架部安装于墙体且用于安装窗式空调器,所述连接部与所述支架部相连且位于所述墙体的室内侧或室外侧;和
    隔架,所述隔架安装于所述连接部,且位于所述连接部的靠近所述墙体的一侧,定义与所述墙体的厚度方向相垂直的平面为投影面,所述隔架在所述投影面上的正投影面积S1大于所述连接部在所述投影面上的正投影面积S2。
  28. 根据权利要求27所述的窗式空调器装置,其特征在于,所述隔架包括伸缩机构,所述伸缩机构包括第一抽拉件和第二抽拉件,所述第一抽拉件和第二抽拉件滑移配合以使所述伸缩机构的长度可伸缩调节。
  29. 根据权利要求28所述的窗式空调器装置,其特征在于,所述第一抽拉件安装于 所述连接部,所述第二抽拉件套设在所述第一抽拉件外滑移。
  30. 根据权利要求29所述的窗式空调器装置,其特征在于,所述第一抽拉件上具有多个第一定位孔,所述第二抽拉件上具有第二定位孔,所述安装架组件还包括定位件,所述定位件穿设于所述第二定位孔和与所述第二定位孔正对的所述第一定位孔。
  31. 根据权利要求27所述的窗式空调器装置,其特征在于,所述安装附件还包括连接件,所述隔架通过所述连接件可拆卸地安装于所述连接部。
  32. 根据权利要求27所述的窗式空调器装置,其特征在于,所述安装架还包括底托部,所述底托部与所述连接部的下部相连且支撑在所述隔架的底部。
  33. 根据权利要求27所述的窗式空调器装置,其特征在于,所述支架部上具有至少一个铰接孔,所述安装附件还包括:
    支撑杆,所述支撑杆的一端通过所述铰接孔与所述支架部铰接,所述支撑杆的另一端具有防滑件且止抵于所述墙体。
  34. 根据权利要求27-33中任一项所述的窗式空调器装置,其特征在于,所述支架部设在所述窗口的底边沿上,所述连接部由所述支架部向下延伸,所述隔架沿所述底边沿的长度方向延伸。
  35. 根据权利要求25所述的窗式空调器装置,其特征在于,所述窗式空调器包括密封组件,所述密封组件分别与所述窗户和所述窗口的内壁接触,所述密封组件包括:
    长度可变的第一连接部件,所述第一连接部件包括固定部件和滑动块,所述固定部件的至少一部分设在所述容纳槽内,所述滑动块与所述固定部件滑动配合;
    多个第二连接部件,任一个所述第二连接部件与所述滑动块可拆卸连接,任意两个所述第二连接部件之间可拆卸连接用以调节所述密封组件的长度。
  36. 根据权利要求35所述的窗式空调器装置,其特征在于,所述密封组件还包括转动支座,所述转动支座固定在所述机壳上,所述固定部件可转动地设在所述转动支座上以使所述密封组件可转动至收纳在所述容纳槽内。
  37. 根据权利要求35所述的窗式空调器装置,其特征在于,所述密封组件还包括滑动定位组件,所述滑动定位组件设在所述固定部件上且与所述滑动块配合、以将所述滑动块定位在当前位置。
  38. 根据权利要求37所述的窗式空调器装置,其特征在于,所述固定部件内设有滑动腔,所述滑动块的至少一部分伸入到所述滑动腔内;
    所述滑动定位组件为旋转件,所述旋转件可旋转地穿设在固定部件且与所述固定部件螺纹配合,所述旋转件转动以调整所述旋转件伸入到所述滑动腔内的部分的长度, 所述旋转件可止抵在所述滑动块上以定位所述滑动块。
  39. 根据权利要求36所述的窗式空调器装置,其特征在于,所述机壳包括:
    底盘;
    后箱体,所述后箱体固定在所述底盘上,所述后箱体内容纳有室外换热器;
    前箱体,所述前箱体固定在所述底盘上,所述前箱体与所述后箱体前后间隔设置以限定出所述容纳槽;
    中间隔板,所述中间隔板固定在所述底盘上且位于所述容纳槽内,所述中间隔板的前后两端分别与所述后箱体和所述前箱体配合,所述转动支座安装至所述中间隔板。
  40. 根据权利要求25所述的窗式空调器装置,其特征在于,所述安装附件包括多个构件,所述收纳盒内形成有多个彼此间隔开的容纳腔,多个所述容纳腔与多个所述构件一一对应以使得多个所述构件分别容纳至对应的所述容纳腔。
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