WO2020155675A1 - 空调器室内机和空调器 - Google Patents

空调器室内机和空调器 Download PDF

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Publication number
WO2020155675A1
WO2020155675A1 PCT/CN2019/112430 CN2019112430W WO2020155675A1 WO 2020155675 A1 WO2020155675 A1 WO 2020155675A1 CN 2019112430 W CN2019112430 W CN 2019112430W WO 2020155675 A1 WO2020155675 A1 WO 2020155675A1
Authority
WO
WIPO (PCT)
Prior art keywords
wire
air conditioner
indoor unit
module
conditioner indoor
Prior art date
Application number
PCT/CN2019/112430
Other languages
English (en)
French (fr)
Inventor
卢根
刘行
孙泽成
皮书扬
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 CN201920179237.9U external-priority patent/CN209541035U/zh
Priority claimed from CN201910100987.7A external-priority patent/CN109668217B/zh
Priority claimed from CN201920321931.XU external-priority patent/CN209672464U/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 EP19798156.6A priority Critical patent/EP3715733B1/en
Priority to US17/427,028 priority patent/US11982463B2/en
Priority to CA3128268A priority patent/CA3128268C/en
Priority to JP2019564429A priority patent/JP7130002B2/ja
Publication of WO2020155675A1 publication Critical patent/WO2020155675A1/zh

Links

Classifications

    • 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
    • F24F13/28Arrangement or mounting of filters
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D41/00Regeneration of the filtering material or filter elements outside the filter for liquid or gaseous fluids
    • B01D41/04Regeneration of the filtering material or filter elements outside the filter for liquid or gaseous fluids of rigid self-supporting filtering material
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0043Indoor units, e.g. fan coil units characterised by mounting arrangements
    • F24F1/0057Indoor units, e.g. fan coil units characterised by mounting arrangements mounted in or on a wall
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0071Indoor units, e.g. fan coil units with means for purifying supplied air
    • F24F1/0073Indoor units, e.g. fan coil units with means for purifying supplied air characterised by the mounting or arrangement of filters
    • 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
    • F24F13/20Casings or covers
    • F24F2013/207Casings or covers with control knobs; Mounting controlling members or control units therein
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2221/00Details or features not otherwise provided for
    • F24F2221/22Cleaning ducts or apparatus

Definitions

  • This application relates to the technical field of air conditioners, in particular to an air conditioner indoor unit and an air conditioner.
  • a cleaning component is installed in the indoor unit of the air conditioner to clean the filter.
  • the setting of the cleaning component needs to be arranged in the indoor unit of the air conditioner to connect the cleaning component and the electric control box.
  • these wires need to be arranged in the indoor unit of the air conditioner.
  • the chassis is equipped with wires for controlling the movement of the wind deflector. The arrangement of the two wires is prone to confusion, and the required space is relatively large, and the design requirements for the wiring structure are relatively high.
  • the main purpose of this application is to propose an indoor unit of an air conditioner and an air conditioner, aiming to simplify the wiring arrangement of cleaning components.
  • an air conditioner indoor unit including:
  • a cleaning component includes a cleaning module and a filter screen track module, the cleaning module drives the filter screen to move on the filter screen track module to clean the filter screen, the cleaning module is provided with a wire connection end;
  • the electric wire is arranged in the cleaning module and the filter mesh track module, one end of the electric wire is connected to the electric wire connection end, and the other end is connected to the electric control box.
  • the electric wire arranged on the cleaning module is a first electric wire section, and the electric wire arranged on the filter mesh track module is a second electric wire section;
  • the first electric wire section is arranged along the height direction of the cleaning module; and/or the second electric wire section is arranged along the length direction of the filter mesh track module.
  • the electric wire arranged on the cleaning module is a first electric wire section, and the electric wire arranged on the filter mesh track module is a second electric wire section;
  • the first wire section is arranged on the outer side and the front side of the cleaning module, the air conditioner indoor unit is used to hang on a wall, the front side of the cleaning module is far from the wall, and the outer side of the cleaning module A heat exchanger away from the indoor unit of the air conditioner.
  • the cleaning module is provided with a first wire clamping portion on the outer side, a second wire clamping portion is provided on the front side of the cleaning module, and the first wire segment passes through the first wire The wire clamping part and the second wire clamping part.
  • the second wire clamping part is close to the filter mesh track module, so that the first electric wire section and the second electric wire section are arranged in a bend.
  • the first wire clamping portion is provided with a first through hole, and the first wire segment passes through the first through hole;
  • the second wire clamping portion is provided with a second through hole, and the first wire segment passes through the second through hole.
  • the front side of the cleaning module is further provided with a third wire clamping portion, and the second wire clamping portion and the third wire clamping portion are divided along the height direction of the cleaning module. It is arranged alternately from top to bottom, and the first wire section also passes through the third wire clamping part.
  • the third wire clamping portion is provided with a wire passing cavity and a wire inlet communicating with the wire passing cavity, and a part of the first wire segment is inserted into the wire inlet through the wire inlet Described the line cavity.
  • the electric wire arranged on the cleaning module is a first electric wire section, and the electric wire arranged on the filter mesh track module is a second electric wire section;
  • the second wire segment is arranged on the front side of the filter screen rail module, the air conditioner indoor unit is used to hang on a wall, and the front side of the filter screen rail module is away from the wall.
  • a fourth wire clamping part is provided on the front side of the filter mesh track module, and the second wire segment passes through the fourth wire clamping part.
  • the fourth wire clamping portion is provided with a wire passing groove and a wire inlet communicating with the wire passing groove, and the wire passing groove is along the length direction of the filter mesh rail module.
  • the wire passing groove is along the length direction of the filter mesh rail module.
  • at least part of the second wire segment is embedded in the wire passing groove through the wire inlet.
  • the fourth wire clamping portion includes a first limiting member and a second limiting member, the number of the first limiting member is at least two, and the first limiting member Interlaced and alternately arranged with the second limiting member, a wire passing groove and a wire inlet communicating with the wire passing groove are formed between the first limiting member and the second limiting member. At least part of the two wire segments is embedded in the wire passing groove through the wire inlet.
  • the second limiting member is arranged along the length direction of the filter mesh track module, and at least part of the second wire segment is supported by the second limiting member.
  • the cleaning module is connected to one end of the filter mesh track module, and the electric control box is close to the other end of the filter mesh track module;
  • the air conditioner indoor unit further includes a face frame, the face frame covers the cleaning component, and the cleaning component is separable from the face frame.
  • the application also discloses an air conditioner, which includes an air conditioner outdoor unit and the air conditioner indoor unit of any of the above embodiments.
  • the technical solution of the application arranges the wires used to connect the cleaning component and the electric control box on the cleaning module and the filter track module, that is, the wires are arranged along the cleaning module and the filter track module, so as not to occupy the chassis of the indoor unit of the air conditioner
  • the wiring space simplifies the wiring arrangement for connecting cleaning components.
  • Figure 1 is a schematic diagram of wires arranged in a cleaning component in an embodiment of the application
  • Figure 2 is an enlarged view shown by the dotted line in the figure
  • Fig. 3 is a schematic diagram of a wire structure arranged in a cleaning component in an embodiment of the application
  • FIG. 4 is a schematic diagram of the structure of a cleaning component in an embodiment of the application.
  • Fig. 5 is an enlarged view marked A in Fig. 4;
  • Fig. 6 is an enlarged view marked as B in Fig. 4;
  • FIG. 7 is a schematic diagram of the structure of the first wire and the second wire fixed to the inlet grille after being connected in an embodiment of the application;
  • Fig. 8 is an enlarged view of the dotted line in Fig. 7;
  • Figure 9 is an exploded view of the first wire, the second wire and the inlet grille in an embodiment of the application.
  • FIG. 10 is an exploded view of an inlet grille and a butt joint in an embodiment of the application.
  • Fig. 11 is an enlarged view shown by a dotted line in Fig. 10.
  • the terms “connected”, “fixed”, etc. should be understood in a broad sense.
  • “fixed” can be a fixed connection, a detachable connection, or a whole; It can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be an internal communication between two components or an interaction relationship between two components, unless specifically defined otherwise.
  • “fixed” can be a fixed connection, a detachable connection, or a whole; It can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be an internal communication between two components or an interaction relationship between two components, unless specifically defined otherwise.
  • This application proposes an indoor unit of an air conditioner.
  • the air conditioner indoor unit includes:
  • the cleaning component 200 includes a cleaning module 210 and a filter mesh rail module 220.
  • the cleaning module 210 drives the filter mesh to move on the filter mesh rail module 220 to clean the filter mesh.
  • the cleaning module 210 is provided with There are wire connections (not shown in the figure); and
  • the electric wire A400 is arranged in the cleaning module 210 and the filter mesh track module 220, one end of the electric wire A400 is connected to the electric wire connection end, and the other end is connected to the electric control box.
  • the electric control box has a circuit board, which is an important module for controlling the indoor unit of the air conditioner.
  • the cleaning component 200 is a component for driving and cleaning the filter, that is, the air conditioner indoor unit circulates the air during operation. After the air enters the air conditioner indoor unit and before passing through the heat exchanger, it needs to be filtered by the filter. After the indoor unit of the air conditioner is used for a long time, the filter screen becomes dirty, so the cleaning component 200 realizes the cleaning of the filter screen.
  • the process of cleaning the filter by the cleaning component 200 is roughly as follows: the filter is first driven to run in the cleaning component 200, and the filter is cleaned during the operation.
  • the specific structure of the cleaning component 200 can refer to the applicant’s prior application date. Other patent applications.
  • In order to realize the control of the cleaning component 200 it is necessary to connect the electric control box and the cleaning component 200 through a wire A400, which is used to transmit power and/or signals.
  • the cleaning module 210 has a driving mechanism for driving the movement of the filter, a cleaning mechanism for cleaning the filter, a water pump, and a water chamber.
  • the water pump pumps the condensed water generated by the indoor unit of the air conditioner to the water chamber, and the driving mechanism drives the filter.
  • the filter screen track module 220 has a corresponding track, and the filter screen can move in the track.
  • the electric wire A400 needs to be connected to the water pump and the driving mechanism of the cleaning module 210, so the electric wire A400 is divided into two sections. The first section A410 is arranged in the cleaning module 210 and the other section A420 is arranged in the filter track module 220.
  • the wire A400 is arranged along the cleaning module 210 and the filter rail module 220 to avoid arranging the wire A400 on the chassis of the indoor unit of the air conditioner to squeeze the space of other wires, and avoid arranging it with other wires and being too messy, thereby simplifying
  • the wiring of the electric wire A400 connecting the cleaning member 200 is completed. .
  • the electric wire A400 is arranged on the cleaning module 210 is a first electric wire section A410, and the electric wire A400 is arranged on the filter rail module 220. Is the second wire section A420;
  • the first wire segment A410 is arranged along the height direction of the cleaning module 210; and/or, the second wire segment A420 is arranged along the length direction of the filter mesh track module 220.
  • the cleaning module 210 and the filter rail module 220 are arranged to intersect to make full use of the internal space of the indoor unit of the air conditioner.
  • the first wire section A410 is arranged along the height direction of the cleaning module 210
  • the second wire segment A420 is arranged along the length direction of the filter mesh track module 220, which can minimize the length of the wire A400.
  • the electric wire A400 is arranged on the cleaning module 210 is the first electric wire segment A410, and the electric wire A400 is arranged on the filter mesh track module. 220 is the second wire segment A420;
  • the first wire segment A410 is arranged on the outer side and the front side of the cleaning module 210, the air conditioner indoor unit is used to hang on the wall, and the front side of the cleaning module 210 is far away from the wall.
  • the outside of the module 210 is far away from the heat exchanger of the indoor unit of the air conditioner.
  • the part of the first wire segment A410 is arranged on the outside, and the remaining part is arranged on the front side, which is convenient for the arrangement of the components in the cleaning module 210 and the wires.
  • the overall arrangement of the A400, the side of the cleaning module 210 away from the wall is the front side, the side close to the wall is the back side, and the side close to the heat exchanger of the indoor unit of the air conditioner is the inside, which is far away from the exchange of the indoor unit of the air conditioner.
  • One side of the heater is the outside.
  • the space corresponding to the front side of the cleaning module 210 is relatively abundant, and the front side space of the cleaning module 210 can be fully utilized.
  • the cleaning module 210 is provided with a first wire clamping portion 211 on the outside, and a second wire clamping portion 212 is provided on the front side of the cleaning module 210.
  • the first wire The segment A410 passes through the first wire clamping portion 211 and the second wire clamping portion 212.
  • the first wire clamping portion 211 is a structure used to limit the first wire segment A410, and therefore can take various forms, for example, other wiring restrictions in the indoor unit of the air conditioner.
  • the second wire clamping part 212 Through the arrangement of the first wire gripping portion 211 and the second wire gripping portion 212, the first wire segment A410 is arranged on the outer side and the front side of the cleaning module 210.
  • the second wire clamping portion 212 is close to the filter mesh track module 220, so that the first wire section A410 and the second wire section A420 are present Bend settings.
  • the first wire segment A410 and the second wire segment A420 form a bend corresponding to the connection of the cleaning module 210 and the filter track module 220, so that the wire A400 will not be separated from the cleaning component 200 It is in a suspended state to prevent the wire A400 from being squeezed when assembling the indoor unit of the air conditioner.
  • the first wire clamping portion 211 is provided with a first through hole 2111, and the first wire segment A410 passes through the first through hole 2111;
  • the second wire clamping portion 212 is provided with a second through hole 2121, and the first wire segment A410 passes through the second through hole 2121.
  • the first wire clamping portion 211 has a closed ring structure with a first through hole 2111, so that the first wire segment A410 passes through the first through hole 2111, that is, the first wire segment A410 passes through
  • the first wire clamping portion 211 and the first wire segment A410 are restricted in the first through hole 2111 to prevent deviation.
  • the same is true for the second wire clamping part 212, and the details are not repeated here.
  • the first wire segment A410 is arranged along the outside and front side of the cleaning module 210. Therefore, the first wire segment A410 is in a bent state.
  • the first wire clamping portion 211 and the second wire clamping portion 212 are provided to prevent the first wire Segment A410 appears to be detached.
  • the front side of the cleaning module 210 is further provided with a third clamping line part 213, and the second clamping line part 212 and the third clamping line 213 are along the The height direction of the cleaning module 210 is arranged alternately from top to bottom, and the first wire segment A410 also passes through the third wire clamping portion 213.
  • the third wire clamping portion 213 is a structure used to limit the first wire segment A410, and therefore can take various forms.
  • the height direction of the cleaning module 210 taking the state of the air conditioner indoor unit hung on the wall as an example, the cleaning module 210 has a certain height, so that the second wire clamping part 212 and the third wire clamping part 213 are arranged alternately to effectively
  • the first wire segment A410 located on the front side of the cleaning module 210 is fixed to prevent the first wire segment A410 from being partially suspended.
  • the third wire clamping portion 213 is provided with a wire passing cavity 2131 and a wire inlet 2132 communicating with the wire passing cavity 2131, and a part of the first wire segment A410 It is inserted into the cable passage cavity 2131 through the cable inlet 2132.
  • the third wire clamping portion 213 is not a closed ring structure, it has a wire passage cavity 2131, and a part of the first wire segment A410 is inserted into the wire cavity 2131 through the wire inlet 2132, so the first wire segment The A410 as a whole is in a state of passing through the third wire clamping portion 213.
  • the part of the first wire segment A410 can be embedded in the third wire clamping portion 213, which improves the assembly of the first wire segment A410 effectiveness.
  • the first wire clamping portion 211 and the second wire clamping portion 212 are in a closed ring structure, the first wire segment A410 is not easily separated from the first wire clamping portion 211 and the second wire clamping portion 212, ensuring that the first wire Under the premise of the fixing effect of the wire section A410, the arrangement efficiency of the first wire section A410 is improved.
  • the electric wire A400 is arranged on the cleaning module 210 is a first electric wire segment A410, and the electric wire A400 is arranged on the filter rail module 220. Is the second wire section A420;
  • the second wire segment A420 is arranged on the front side of the filter mesh track module 220, the air conditioner indoor unit is used to hang on a wall, and the front side of the filter mesh track module 220 is far away from the wall.
  • the second wire segment 220 is arranged on the front side of the filter mesh track module 220, which can also improve the utilization of space and make the length of the wire minimize.
  • the front side of the filter mesh track module 220 is provided with a fourth wire clamping portion 221, and the second wire segment A420 passes through the fourth wire clamping portion 221.
  • the fourth wire clamping portion 221 is a structure used to limit the second wire segment A420, and therefore can take various forms.
  • the second wire segment A420 passes through the fourth wire gripping portion 221, the second wire segment A420 is restricted to the fourth wire gripping portion 221, so as to be arranged in the filter mesh track module 220.
  • the above structure enables the wire A400 to be quickly arranged in the cleaning component 200.
  • the fourth wire clamping portion 221 is provided with a wire passing groove 2213 and a wire inlet 2214 communicating with the wire passing groove 2213.
  • the wire passing groove 2213 It is arranged along the length direction of the filter mesh track module 220, and at least part of the second wire segment A420 is embedded in the wire passing groove 2213 through the wire inlet 2214.
  • the wire trough 2213 is the space for accommodating the second wire section A420.
  • the wire trough 2213 is arranged along the length of the filter mesh track module 220. Therefore, the second wire section A420 generally has no bends.
  • the second wire segment A420 is inserted into the wire passage 2213 through the wire inlet 2214, and the second wire segment A420 is in a state of passing through the fourth wire clamping portion 221. If the length of the wire trough 2213 is longer, the second wire section A420 can almost be embedded in the wire trough 2213, and the end of the second wire section A420 is connected to the electric control box; if the length of the wire trough 2213 is small, the first Part of the second wire segment A420 is embedded in the wire trough.
  • the fourth wire clamping portion 221 includes a first limiting member 2211 and a second limiting member 2212, the number of the first limiting member 2211 is at least two, and the first limiting member 2211 A limiting member 2211 and the second limiting member 2212 are staggered and arranged alternately.
  • the first limiting member 2211 and the second limiting member 2212 form a wire passing groove 2213 and the wire passing groove
  • the wire inlet 2214 connected with 2213, at least part of the second wire segment A420 is embedded in the wire passing groove 2213 through the wire inlet 2214.
  • the second limiting member 2212 is arranged along the length direction of the filter mesh track module 220, and at least part of the second wire segment A420 is supported by The second limiting member 2212.
  • the second wire segment A420 has a tendency to fall downward under the action of gravity
  • the second limiting member 2212 is arranged along the length direction of the filter mesh track module 220, that is, the second limiting member 2212 With a certain length, at least part of the second wire segment A420 is supported by the second limiting member 2212, which makes the arrangement of the second wire segment A420 more stable.
  • the cleaning module 210 is connected to one end of the filter mesh track module 220, and the electric control box is close to the other end of the filter mesh track module 220.
  • the cleaning module 210 is located at one end of the filter screen rail module 220, the electric control box is close to the other end of the filter screen rail module 220, and the heat exchanger and air duct assembly are located between the cleaning module 210 and the electric control box. In this way, the space of the indoor unit of the air conditioner can be fully utilized.
  • the air conditioner indoor unit further includes a face frame (not shown in the figure), the face frame covers the cleaning component 200, and the cleaning component 200 is separable relative to the face frame.
  • the face frame is provided with an air inlet
  • the filter mesh track module 220 is located at the air inlet
  • the air passes through the air inlet and then passes through the filter mesh track module 220.
  • the filter located in the filter track module filters the air.
  • the cleaning component is separable from the face frame, so the cleaning component 200 is an independent functional component, and the function of the cleaning component 200 can be tested before the indoor unit of the air conditioner is assembled.
  • the wire A400 is arranged on the cleaning component 200 (the cleaning module 210 and the filter rail module 220), the arrangement of the wire A400 can be realized before the indoor unit of the air conditioner is assembled, avoiding the installation of the cleaning component 200 in the air conditioner
  • the wiring A400 is arranged only after the chassis of the indoor unit, which further improves the assembly efficiency.
  • the air conditioner indoor unit includes:
  • a first wire 110, one end of the first wire 110 is connected to the cleaning module, and the other end is provided with a first connecting terminal B210;
  • a second wire 120, one end of the second wire 120 is connected to the electric control box, and the other end is provided with a second connection terminal B220;
  • the inlet grill 300 is arranged between the cleaning module and the electric control box, the first electric wire 110 extends toward the electric control box, and the second electric wire 120 faces the electric control box.
  • the cleaning module extends so that the first connecting terminal B210 and the second connecting terminal B220 are connected to a pair of joints B200, and the pair of joints B200 is fixed to the inlet grill 300.
  • the inlet grill 300 is set at the air inlet of the indoor unit of the air conditioner, and the filter is installed on the inlet grill 300.
  • the indoor unit of the air conditioner circulates air during operation, and the air is filtered when passing through the inlet grill 300 After a long time use of the indoor unit of the air conditioner, dust, lint and other filth are easy to collect on the filter, so the filter is cleaned by setting a cleaning module.
  • the cleaning module is located at one end of the inlet grill 300.
  • the cleaning module includes a cleaning box, a cleaning mechanism, a driving mechanism, and electrical components.
  • the electrical components include a motor, a water pump, and a drain valve.
  • the cleaning box is equipped with a water chamber, and the motor drives the driving mechanism. Drive the filter screen to move, and at the same time drive the cleaning mechanism to clean the filter screen.
  • the dirt on the filter screen is separated from the filter screen and falls into the water chamber.
  • the water pump pumps water into the water chamber and mixes the dirt into dirty water.
  • the drain valve controls the drainage to remove The dirty water is drained.
  • a first wire 110 needs to be provided.
  • One end of the first wire 100 is connected to the electrical components of the cleaning module, and the other end is provided with a first connection.
  • the electric control box and the cleaning module are arranged alternately, and the electric control box is arranged near the other end of the inlet grill 300.
  • the electric control box is provided with a second wire 120, and the end of the second wire 120 is provided with a second connecting terminal B220.
  • the first wire 110 extends toward the electric control box, and the second wire 120 extends toward the cleaning module, so that the first connection terminal B210 and the second connection terminal B220 are connected to a pair of joints B200, and the pair of joints B200 is fixed on the air inlet grill 300.
  • the control box serves as the control center of the indoor unit of the air conditioner, it needs to be electrically connected with other components, that is, the area where the control box is located has more connection terminals.
  • the second wire 120 extends toward the cleaning module, that is, the first The second connecting terminal B220 is far away from the electric control box, and the second connecting terminal B220 and the first connecting terminal B210 are connected to the paired joint B200, that is, the first connecting terminal B210 is also far away from the electric control box, thus reducing the number of connecting terminals in the area where the electric control box is located.
  • the number of connection terminals is avoided, which makes it easier to manage cables, and because the number of connection terminals in the area where the electric control box is located is reduced, electromagnetic interference is also reduced to a certain extent.
  • the butt joint B200 is formed by connecting the first connecting terminal B210 and the second connecting terminal B220 (for example, the first connecting terminal B210 is connected to the second connecting terminal B220).
  • the electrical connection of the electric wire 110 and the second electric wire 120 in order to effectively fix the first electric wire 110, the first connecting terminal B210, the second connecting terminal B220, and the second electric wire 120 as a whole, in an embodiment of the present application
  • at least part of the first wire 110 is fixed to the air inlet grill 300
  • at least part of the second wire 120 is fixed to the air inlet grill 300.
  • At least part of the first wire 110 is fixed to the air inlet grill 300, and at least part of the second wire 120 is fixed to the air inlet grill 300, so that the first wire 110, the first connecting terminal B210, and the The second connecting terminal B220 and the second wire 120 as a whole are effectively fixed.
  • the first electric wire 110 includes a first electric wire section and a second electric wire section
  • the first electric wire section of the first electric wire 110 is led out from the cleaning module
  • the second electric wire section of the first electric wire 110 is fixed to the inlet grill 300.
  • the second wire 120 includes a first wire section and a second wire section.
  • the first wire section of the second wire 120 is led out from the electric control box.
  • the second wire section of the second wire 120 is fixed to the inlet grill 300.
  • the second wire segment of 110 is provided with a first connection terminal B210
  • the second wire segment of the second wire 120 is provided with a second connection terminal B220
  • the first connection terminal B210 and the second connection terminal B220 are connected to a pair of joint B200.
  • the butt joint B200 is fixed to the front side of the inlet grill 300, and at least part of the first wire 110 is fixed to the inlet grill.
  • the rear side of the air inlet grille 300 is close to the chassis, and the butt joint B200, at least part of the first wire 110 and at least part of the second wire 120 are fixed to the air inlet
  • the front side of the grille 300 is more convenient for workers to perform installation operations.
  • the front side of the inlet grill 300 is provided with a plurality of first limiting members 410, and the plurality of first limiting members 410
  • the inlet grille 300 is alternately arranged in the length direction, a second limiting member 420 is arranged between the adjacent first limiting members 410, and the first limiting member 410 and the second limiting member 410
  • the member 420 defines a accommodating cavity 401 and a wire inlet 402 communicating with the accommodating cavity 401, the mating joint B200 is embedded in the accommodating cavity 401 through the wire inlet 402, and at least part of the first wire 110 passes
  • the wire inlet 402 is embedded in the accommodating cavity 401, and at least part of the second wire 120 is embedded in the accommodating cavity 401 through the wire inlet 402.
  • the accommodating cavity 401 extends along the length of the inlet grill 300, and the accommodating cavity 401 and the wire inlet 402 are the first limiting member 410 and the second limiting member 420.
  • the first stopper 410 and the second stopper 420 are the butt joint B200 , At least part of the first electric wire 110 and at least part of the second electric wire 120 form a restriction to prevent the electric wire from falling.
  • a wire inlet 402 is provided in this embodiment, and the first wire 110 and the second wire 120 as a whole can be inserted into the receiving cavity through the wire inlet 402 In 401, installation is more convenient.
  • the first limiting member 410 extends along the thickness direction of the inlet grill 300, and the butt joint B200 is provided at the first An inner side of a limiting member 410, and the inner side of the first limiting member 410 is adjacent to the receiving cavity 401.
  • the first limiting member 410 extends along the thickness direction of the air inlet grill 300.
  • the first limiting member 410 extends up and down. In this way, Prevent the entire connected first wire 110 and the second wire 120 from moving forward and backward of the indoor unit of the air conditioner.
  • a limit stop rib 411 is provided on the inner side of the first limit member 410, and the number of limit stop ribs 411 is at least two.
  • the limit stop ribs 411 are alternately arranged along the length direction of the inlet grill 300, and the butt joint B200 is placed between the two limit stop ribs 411.
  • the butt joint B200 is placed between the two limit stop ribs 411, which can prevent the butt joint B200 from reciprocating along the length direction of the inlet grill 300, thereby aligning the butt joint B200. B200 performs better limit.
  • the second limiting member 420 protrudes toward the front of the inlet grill 300, and the second limiting member 420 is used to support the first wire 110 and the second wire 120, and the first wire 110 and the second wire After the wire 120 is connected, it is embedded in the receiving cavity 401 as a whole, and is supported by the second limiting member 420 under the action of gravity.
  • the first limit member 410 provided with the butt joint B200 inside is defined as the butt joint limit member 4101, and the remaining first limit
  • the positioning member 410 is a non-matching joint limiting member 4102;
  • the second limiting member 420 close to the butting joint limiting member 4101 is the supporting member 421, and the second limiting member 420 close to the non-matching joint limiting member 4102 is the supporting member 422;
  • the supporting member 421 includes a first supporting portion 4211 and a second supporting portion 4212 that are fixed.
  • the first supporting portion 4211 is in the shape of a flat plate and arranged laterally. At least part of the first wire 110 is At least part of the second wire 120 is supported by the first supporting portion 4211;
  • the supporting member 422 includes a first supporting portion 4221 and a second supporting portion 4222 which are fixed, and the first supporting portion 4221 is in the shape of a flat plate and is arranged longitudinally. At least part of the first electric wire 110 and the second electric wire At least part of the 120 is supported by the first supporting portion 4221.
  • the butt joint B200 needs to be inserted into the inner side of the butt joint limiter 4101 through the wire inlet 402, and a supporting member 421 is provided close to the butt joint limiter 4101.
  • the supporting member 421 has a plate shape and is arranged horizontally. In this way, the contact area with the wires near the connector B200 can be increased, and the fixing of the connector B200 can be more stable.
  • the non-matching joint limiting member 4102 does not need to be provided with the butting joint B200. Therefore, by providing the supporting member 422, the supporting member 422 includes a first supporting portion 4221 and a second supporting portion 4222.
  • the first supporting portion 4221 is in the shape of a flat plate and is arranged longitudinally. It can increase the operating space when the wire is embedded, and facilitate assembly.
  • the air conditioner indoor unit includes a face frame (not shown in the figure), the face frame is provided with an air inlet, and the air inlet grill 300 is provided at the air inlet, so The style grill 300 can be separated from the face frame.
  • the inlet grille 300 is separable from the face frame, so before the air conditioner indoor unit is assembled, the inlet grille 300 and the filter can be assembled separately to avoid the need to match the face frame to assemble the filter network.
  • the application also discloses an air conditioner, which includes an air conditioner outdoor unit and the air conditioner indoor unit of any of the above embodiments.
  • the indoor unit of the air conditioner includes:
  • a first wire 110, one end of the first wire 110 is connected to the cleaning module, and the other end is provided with a first connecting terminal B210;
  • a second wire 120, one end of the second wire 120 is connected to the electric control box, and the other end is provided with a second connection terminal B220;
  • the inlet grill 300 is arranged between the cleaning module and the electric control box, the first electric wire 110 extends toward the electric control box, and the second electric wire 120 faces the electric control box.
  • the cleaning module extends so that the first connecting terminal B210 and the second connecting terminal B220 are connected to a pair of joints B200, and the pair of joints B200 is fixed to the inlet grill 300.
  • the outdoor unit of the air conditioner may be an outdoor unit of the air conditioner in the current technology, which forms a refrigerant circulation with the indoor unit of the air conditioner.
  • the structure of the air conditioner indoor unit of this embodiment refers to the above-mentioned embodiment. Since the structure of the air-conditioner indoor unit of this embodiment adopts the technical solution of the above-mentioned embodiment, it has at least the beneficial effects brought by the technical solution of the above-mentioned embodiment , I will not repeat them here.
  • the application also discloses an air conditioner, which includes an air conditioner outdoor unit and the air conditioner indoor unit of any of the above embodiments.
  • the indoor unit of the air conditioner includes:
  • the cleaning component 200 includes a cleaning module 210 and a filter mesh rail module 220.
  • the cleaning module 210 drives the filter mesh to move on the filter mesh rail module 220 to clean the filter mesh.
  • the cleaning module 210 is provided with There are wire connections (not shown in the figure); and
  • the electric wire A400 is arranged in the cleaning module 210 and the filter mesh track module 220, one end of the electric wire A400 is connected to the electric wire connection end, and the other end is connected to the electric control box.
  • the specific structure of the air conditioner indoor unit of this embodiment refers to the above embodiment. Since the structure of the air conditioner indoor unit of this embodiment adopts the technical solution of the above embodiment, it has at least the benefits brought by the technical solution of the above embodiment The effect will not be repeated here.
  • the circulation of the refrigerant is realized between the outdoor unit of the air conditioner and the indoor unit of the air conditioner.
  • the specific structure of the outdoor unit of the air conditioner can refer to the outdoor unit of the air conditioner in the current technology, and the details will not be repeated.

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

Abstract

一种空调器室内机和空调器,其中,所述空调器室内机包括:电控盒;清洁部件(200),所述清洁部件(200)包括清洁模块(210)和过滤网轨道模块(220),所述清洁模块(210)驱动过滤网运动于所述过滤网轨道模块(220)以清洁所述过滤网,所述清洁模块(210)设有电线连接端;以及电线(A400),所述电线(A400)布置于所述清洁模块(210)和所述过滤网轨道模块(220),所述电线(A400)的一端连接至所述电线连接端,另一端连接至所述电控盒。该技术方案将用于连接清洁部件和电控盒的电线(A400)布置在清洁模块(210)和过滤网轨道模块(220)上,从而不占用空调器室内机的底盘的布线空间,简化了清洁部件的电线部件。

Description

空调器室内机和空调器
相关申请
本申请要求2019年1月31日申请的,申请号为201910100987.7名为“空调器室内机和空调器”的中国专利申请优先权,同时要求2019年1月31日申请的,申请号为201920179237.9名为“空调器室内机和空调器”的中国专利申请优先权,同时要求2019年3月13日申请的,申请号为201920321931.X名为“空调器室内机和空调器”的中国专利申请优先权,在此将其全文引入作为参考。
技术领域
本申请涉及空调器技术领域,特别涉及一种空调器室内机和空调器。
背景技术
空调器室内机中设置清洁部件实现过滤网的清洁,清洁部件的设置需要在空调器室内机内布置用于连接清洁部件和电控盒的电线,目前技术中这些电线需要布置在空调器室内机的底盘,但是底盘上布置有用于控制导风板运动的电线,两种电线布置在一起容易产生混乱,而且所需要的空间较大,对布线结构的设计要求较高。
这里的陈述仅提供与本申请有关的背景信息,而不必然地构成现有技术。
申请内容
本申请的主要目的是提出一种空调器室内机和空调器,旨在简化清洁部件的电线布置。
为实现上述目的,本申请公开了一种空调器室内机,所述空调器室内机包括:
电控盒;
清洁部件,所述清洁部件包括清洁模块和过滤网轨道模块,所述清洁模块驱动过滤网运动于所述过滤网轨道模块以清洁所述过滤网,所述清洁模块设有电线连接端;以及
电线,所述电线布置于所述清洁模块和所述过滤网轨道模块,所述电线的一端连接至所述电线连接端,另一端连接至所述电控盒。
在本申请的一实施例中,所述电线布置于所述清洁模块的为第一电线段,所述电线布置于所述过滤网轨道模块的为第二电线段;
所述第一电线段沿着所述清洁模块的高度方向布置;和/或,所述第二电线段沿着所述过滤网轨道模块的长度方向布置。
在本申请的一实施例中,所述电线布置于所述清洁模块的为第一电线段,所述电线布置于所述过滤网轨道模块的为第二电线段;
所述第一电线段布置于所述清洁模块的外侧和前侧,所述空调器室内机用于悬挂于墙体,所述清洁模块的前侧远离所述墙体,所述清洁模块的外侧远离所述空调器室内机的换热器。
在本申请的一实施例中,所述清洁模块的外侧设有第一卡线部,所述清洁模块的前侧设有第二卡线部,所述第一电线段穿过所述第一卡线部和所述第二卡线部。
在本申请的一实施例中,所述第二卡线部靠近所述过滤网轨道模块,以使所述第一电线段和所述第二电线段呈弯折设置。
在本申请的一实施例中,所述第一卡线部设有第一贯穿孔,所述第一电线段穿过所述第一贯穿孔;
和/或,所述第二卡线部设有第二贯穿孔,所述第一电线段穿过所述第二贯穿孔。
在本申请的一实施例中,所述清洁模块的前侧还设有第三卡线部,所述第二卡线部和所述第三卡线部沿着所述清洁模块的高度方向由上而下相间设置,所述第一电线段还穿过所述第三卡线部。
在本申请的一实施例中,所述第三卡线部设有过线腔和与所述过线腔连通的进线口,所述第一电线段的部分通过所述进线口嵌入所述过线腔。
在本申请的一实施例中,所述电线布置于所述清洁模块的为第一电线段,所述电线布置于所述过滤网轨道模块的为第二电线段;
所述第二电线段布置于所述过滤网轨道模块的前侧,所述空调器室内机用于悬挂于墙体,所述过滤网轨道模块的前侧远离所述墙体。
在本申请的一实施例中,所述过滤网轨道模块的前侧设有第四卡线部,所述第二电线段穿过所述第四卡线部。
在本申请的一实施例中,所述第四卡线部设有过线槽和与所述过线槽连通的入线口,所述过线槽沿着所述过滤网轨道模块的长度方向设置,所述第二电线段的至少部分通过所述入线口嵌入于所述过线槽。
在本申请的一实施例中,所述第四卡线部包括第一限位件和第二限位件,所述第一限位件的数量至少为两个,所述第一限位件和所述第二限位件交错且相间设置,所述第一限位件和所述第二限位件之间形成过线槽和与所述过线槽连通的入线口,所述第二电线段的至少部分通过所述入线口嵌入于所述过线槽。
在本申请的一实施例中,所述第二限位件沿着所述过滤网轨道模块的长度方向设置,所述第二电线段的至少部分承托于所述第二限位件。
在本申请的一实施例中,所述清洁模块连接于所述过滤网轨道模块的一端,所述电控盒靠近所述过滤网轨道模块的另一端;
和/或,所述空调器室内机还包括面框,所述面框罩设所述清洁部件,所述清洁部件相对于所述面框可分离。
本申请还公开了一种空调器,所述空调器包括空调器室外机和上述任一实施例的空调器室内机。
本申请技术方案将用于连接清洁部件和电控盒的电线布置在清洁模块和过滤网轨道模块上,也即电线沿着清洁模块和过滤网轨道模块布置,从而不占用空调器室内机的底盘的布线空间,简化了连接清洁部件的电线布置。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本申请一实施例中电线布置在清洁部件示意图;
图2为图中虚线所示放大图;
图3为本申请一实施例中布置在清洁部件的电线结构示意图;
图4为本申请一实施例中清洁部件结构示意图;
图5为图4中标记为A的放大图;
图6为图4中标记为B的放大图;
图7为本申请一实施例中第一电线和第二电线连接后固定于进风格栅结构示意图;
图8为图7中虚线所述放大图;
图9为本申请一实施例中第一电线、第二电线和进风格栅分解图;
图10为本申请一实施例中进风格栅与对接头分解图;
图11为图10中虚线所示放大图。
附图标号说明:
标号 名称 标号 名称
200 清洁部件 220 过滤网轨道模块
210 清洁模块 221 第四卡线部
211 第一卡线部 2211 第一限位件
2111 第一贯穿孔 2212 第二限位件
212 第二卡线部 2213 过线槽
2121 第二贯穿孔 2214 入线口
213 第三卡线部 A400 电线
2131 过线腔 A410 第一电线段
2132 进线口 A420 第二电线段
110 第一电线 4101 对接头限位件
120 第二电线 4102 非对接头限位件
B200 对接头 420 第二限位件
B210 第一连接端子 421 承托件
B220 第二连接端子 4211 第一承托部
300 进风格栅 4212 第二承托部
401 容纳腔 422 支撑件
402 入线口 4221 第一支撑部
410 第一限位件 4222 第二支撑部
411 限位挡筋
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,本申请实施例中所有方向性指示(诸如上、下、左、右、前、后……)仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
在本申请中,除非另有明确的规定和限定,术语“连接”、“固定”等应做广义理解,例如,“固定”可以是固定连接,也可以是可拆卸连接,或成一体;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或两个元件的相互作用关系,除非另有明确的限定。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
另外,在本申请中如涉及“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
本申请提出一种空调器室内机。
在本申请的一实施例中,如图1至图3所示,所述空调器室内机包括:
电控盒(图中未示出);
清洁部件200,所述清洁部件200包括清洁模块210和过滤网轨道模块220,所述清洁模块210驱动过滤网运动于所述过滤网轨道模块220以清洁所述过滤网,所述清洁模块210设有电线连接端(图中未标识);以及
电线A400,所述电线A400布置于所述清洁模块210和所述过滤网轨道模块220,所述电线A400的一端连接至所述电线连接端,另一端连接至所述电控盒。
在本实施例中,可以的理解的是,电控盒内具有电路板,为用于控制空调器室内机的重要模块。清洁部件200则为实现过滤网驱动和清洁的部件,即空调器室内机在运行过程中对空气实现循环,空气进入空调器室内机后且在通过换热器前,需要经过过滤网的过滤,空调器室内机长时间使用后,过滤网变脏,因此通过清洁部件200实现对过滤网的清洁。清洁部件200清洁过滤网的过程大概如下:先驱动过滤网在清洁部件200中运行,在运行过程中实现对过滤网的清洁,清洁部件200的具体结构可参照申请人在本申请的申请日前的其他专利申请。为了实现对清洁部件200的控制,需要通过电线A400连接电控盒和清洁部件200,电线A400用于传输电力和/或信号。
例如,清洁模块210具有具驱动过滤网运动的驱动机构、清洁过滤网的清扫机构、水泵和盛水腔等,水泵将空调器室内机产生的冷凝水抽至盛水腔,驱动机构驱动过滤网的运动以及对过滤网进行清洁,过滤网轨道模块220具有相应的轨道,过滤网可运动于轨道中。一般来说,电线A400需要连接至清洁模块210的水泵和驱动机构,因此电线A400分成两段,其中第一段A410布置在清洁模块210,另一段A420布置在过滤网轨道模块220。也即是电线A400沿着清洁模块210和过滤网轨道模块220设置,避免将电线A400布置在空调器室内机的底盘上挤占其他电线的空间,避免与其他电线布置在一起而过于杂乱,从而简化了连接清洁部件200的电线A400的布线。。
在本申请的一实施例中,如图3至图5所示,所述电线A400布置于所述清洁模块210的为第一电线段A410,所述电线A400布置于所述过滤网轨道模块220的为第二电线段A420;
所述第一电线段A410沿着所述清洁模块210的高度方向布置;和/或,所述第二电线段A420沿着所述过滤网轨道模块220的长度方向布置。
在本实施例中,一般来说,清洁模块210和过滤网轨道模块220呈相交设置,以充分利用空调器室内机的内部空间,如此将第一电线段A410沿着清洁模块210的高度方向设置,第二电线段A420沿着过滤网轨道模块220的长度方向设置,能使电线A400的长度最小化。
在本申请的一实施例中,继续如图3至图5所示,所述电线A400布置于所述清洁模块210的为第一电线段A410,所述电线A400布置于所述过滤网轨道模块220的为第二电线段A420;
所述第一电线段A410布置于所述清洁模块210的外侧和前侧,所述空调器室内机用于悬挂于墙体,所述清洁模块210的前侧远离所述墙体,所述清洁模块210的外侧远离所述空调器室内机的换热器。
在本实施例中,为了实现清洁模块210中各部件的设置,将第一电线段A410的部分布置在外侧,剩余的部分布置在前侧,既便于清洁模块210中部件的设置,也方便电线A400整体的布置,清洁模块210远离墙体的一侧为前侧,靠近墙体的一侧为后侧,靠近空调器室内机的换热器的一侧为内侧,远离空调器室内机的换热器的一侧为外侧。并且,清洁模块210前侧对应的空间较为充裕,能充分利用清洁模块210的前侧空间。
具体地,如图4和图5所示,所述清洁模块210的外侧设有第一卡线部211,所述清洁模块210的前侧设有第二卡线部212,所述第一电线段A410穿过所述第一卡线部211和所述第二卡线部212。在本实施例中,第一卡线部211即为用于对第一电线段A410形成限位的结构,因此可以采用多种形式,例如采用空调器室内机中其他走线的限制形式。对于第二卡线部212亦是如此。通过第一卡线部211和第二卡线部212的设置,将第一电线段A410布置在清洁模块210的外侧和前侧。
在一实施例中,如图4和图5所示,所述第二卡线部212靠近所述过滤网轨道模块220,以使所述第一电线段A410和所述第二电线段A420呈弯折设置。在本实施例中,通过如此设置,第一电线段A410和第二电线段A420形成弯折与清洁模块210和过滤网轨道模块220的连接处相对应,如此,电线A400不会脱离清洁部件200呈悬空状态,从而避免电线A400在组装空调器室内机时被挤压。
具体地,如图4和图5所示,所述第一卡线部211设有第一贯穿孔2111,所述第一电线段A410穿过所述第一贯穿孔2111;
和/或,所述第二卡线部212设有第二贯穿孔2121,所述第一电线段A410穿过所述第二贯穿孔2121。
在本实施例中,第一卡线部211呈封闭状的环形结构,其具有第一贯穿孔2111,如此第一电线段A410穿过第一贯穿孔2111,也即第一电线段A410穿过第一卡线部211,第一电线段A410被限制在第一贯穿孔2111内,防止偏移。对于第二卡线部212亦是如此,不再重复赘述。第一电线段A410沿着清洁模块210的外侧和前侧设置,因此第一电线段A410存在弯折的状态,通过第一卡线部211和第二卡线部212的设置,防止第一电线段A410出现脱离。
进一步地,如图4和图5所示,所述清洁模块210的前侧还设有第三卡线部213,所述第二卡线部212和所述第三卡线213部沿着所述清洁模块210的高度方向由上而下相间设置,所述第一电线段A410还穿过所述第三卡线部213。在本实施例中,第三卡线部213即为用于对第一电线段A410形成限位的结构,因此可以采用多种形式。清洁模块210的高度方向,以空调器室内机悬挂于墙体的状态为例,清洁模块210具有一定的高度,如此通过第二卡线部212和第三卡线部213的相间设置,能有效固定位于清洁模块210的前侧的第一电线段A410,避免第一电线段A410出现局部悬空。
具体地,如图4和图5所示,所述第三卡线部213设有过线腔2131和与所述过线腔2131连通的进线口2132,所述第一电线段A410的部分通过所述进线口2132嵌入所述过线腔2131。在本实施例中,第三卡线部213并非呈封闭状的环形结构,其具有过线腔2131,第一电线段A410的部分通过进线口2132嵌入过线腔2131,如此第一电线段A410整体呈穿过第三卡线部213的状态。在第一电线段A410穿过第一卡线部211或第二卡线部212后,将第一电线段A410的部分嵌入第三卡线部213即可,如此提高第一电线段A410的组装效率。又由于在第一卡线部211和第二卡线部212呈封闭状的环形结构时,第一电线段A410不容易脱离第一卡线部211和第二卡线部212,在保证第一电线段A410的固定效果的前提下提高了第一电线段A410的布置效率。
在本申请的一实施例中,如图4和图6所示,所述电线A400布置于所述清洁模块210的为第一电线段A410,所述电线A400布置于所述过滤网轨道模块220的为第二电线段A420;
所述第二电线段A420布置于所述过滤网轨道模块220的前侧,所述空调器室内机用于悬挂于墙体,所述过滤网轨道模块220的前侧远离所述墙体。在本实施例中,如同第一电线段A410的部分布置在清洁模块210的前侧,第二电线段220布置在过滤网轨道模块220的前侧同样能提高空间的利用率,使得电线的长度最小化。
具体地,如图6所示,所述过滤网轨道模块220的前侧设有第四卡线部221,所述第二电线段A420穿过所述第四卡线部221。第四卡线部221即为用于对第二电线段A420形成限位的结构,因此可以采用多种形式。第二电线段A420穿过第四卡线部221时,第二电线段A420被限制于第四卡线部221,从而实现布置在过滤网轨道模块220。配合第一电线段A410的布置,通过如上结构,使得电线A400能快速布置在清洁部件200中。
在本申请的一实施例中,如图6所示,所述第四卡线部221设有过线槽2213和与所述过线槽2213连通的入线口2214,所述过线槽2213沿着所述过滤网轨道模块220的长度方向设置,所述第二电线段A420的至少部分通过所述入线口2214嵌入于所述过线槽2213。在本实施例中,过线槽2213即为用于容纳第二电线段A420的空间,过线槽2213沿着过滤网轨道模块220的长度方向设置,因此第二电线段A420一般不会存在弯折的情况,如此,将第二电线段A420通过入线口2214嵌入在过线槽2213中,第二电线段A420呈现穿过第四卡线部221的状态。若过线槽2213的长度较长,第二电线段A420几乎可以全部嵌入在过线槽2213中,第二电线段A420的末端连接至电控盒;若过线槽2213的长度较小,第二电线段A420的局部嵌入在过线槽中。
具体地,如图6所示,所述第四卡线部221包括第一限位件2211和第二限位件2212,所述第一限位件2211的数量至少为两个,所述第一限位件2211和所述第二限位件2212交错且相间设置,所述第一限位件2211和所述第二限位件2212之间形成过线槽2213和与所述过线槽2213连通的入线口2214,所述第二电线段A420的至少部分通过所述入线口2214嵌入于所述过线槽2213。
在本申请的一实施例中,如图6所示,所述第二限位件2212沿着所述过滤网轨道模块220的长度方向设置,所述第二电线段A420的至少部分承托于所述第二限位件2212。在本实施例中,第二电线段A420在重力的作用下具有向下掉落的趋势,将第二限位件2212沿着过滤网轨道模块220的长度方向设置,即第二限位件2212具有一定的长度,第二电线段A420的至少部分承托于第二限位件2212,如此使得第二电线段A420的布置更为稳固。
在本申请的一实施例中,如图1所示,所述清洁模块210连接于所述过滤网轨道模块220的一端,所述电控盒靠近所述过滤网轨道模块220的另一端。在本实施例中,清洁模块210位于过滤网轨道模块220的一端,电控盒靠近过滤网轨道模块220的另一端,位于清洁模块210和电控盒之间的则为换热器和风道组件,如此能充分利用空调器室内机的空间。
所述空调器室内机还包括面框(图中未示出),所述面框罩设所述清洁部件200,所述清洁部件200相对于所述面框可分离。
在本实施例中,面框设有进风口,过滤网轨道模块220位于进风口,空气穿过进风口即穿过过滤网轨道模块220,位于过滤网轨道模块内的过滤网对空气进行过滤。清洁部件相对于面框可分离,如此清洁部件200为一个独立的功能部件,在组装空调器室内机前可对清洁部件200的功能进行检测。此外,由于电线A400是布置在清洁部件200(清洁模块210和过滤网轨道模块220)上的,因此可以在组装空调器室内机前即可实现电线A400的布置,避免将清洁部件200安装在空调器室内机的底盘后才实现电线A400的布置,进一步提高了组装效率。
在本申请的另一些实施例中,如图7至图11所示,所述空调器室内机包括:
第一电线110,所述第一电线110的一端连接所述清洁模块,另一端设有第一连接端子B210;
第二电线120,所述第二电线120的一端连接所述电控盒,另一端设有第二连接端子B220;以及
进风格栅300,所述进风格栅300设于所述清洁模块和所述电控盒之间,所述第一电线110朝向所述电控盒延伸,所述第二电线120朝向所述清洁模块延伸,以使所述第一连接端子B210和所述第二连接端子B220连接成对接头B200,所述对接头B200固定于所述进风格栅300。
进风格栅300设置在空调器室内机的进风口,过滤网设置在进风格栅300上,空调器室内机在运行过程中对空气实现循环,空气穿过进风格栅300时被过滤网过滤,空调器室内机长时间使用后,过滤网上容易聚集灰尘、毛絮等赃物,因此通过设置清洁模块对过滤网进行清洁。
清洁模块位于进风格栅300的一端,清洁模块包括清洁盒子、清扫机构、驱动机构和电器件等,电器件包括电机、水泵和排水阀等,清洁盒子设有盛水腔,电机驱动驱动机构驱动过滤网运动,同时驱动清扫机构对过滤网进行清扫,过滤网上的脏物脱离过滤网掉落至盛水腔,水泵往盛水腔抽水与脏物混合成脏水,排水阀控制排水以将脏水排出。
为了实现对清洁模块的控制,清洁模块的电器件需要与电控盒电连接,因此需要设置第一电线110,第一电线100的一端与清洁模块的电器件连接,另一端设有第一连接端子B210。电控盒与清洁模块相间设置,电控盒设置在靠近进风格栅300的另一端。电控盒上设置有第二电线120,第二电线120的末端设置第二连接端子B220。第一电线110朝向电控盒延伸,第二电线120朝向清洁模块延伸,使得第一连接端子B210和第二连接端子B220连接成对接头B200,将对接头B200固定在进风格栅300上。由于控制盒作为空调器室内机的控制中枢,其需要与其他部件进行电连接,也即控制盒所在区域具有较多的连接端子,本实施例中第二电线120朝向清洁模块延伸,也即第二连接端子B220远离电控盒,第二连接端子B220和第一连接端子B210连接成对接头B200,也即第一连接端子B210也远离电控盒,如此减少了电控盒所在区域的连接端子的数量,从而避免了连接端子凌乱,从而更加便于理线,且由于减少了电控盒所在区域的连接端子的数量,也在一定程度上减少了电磁干扰。
将对接头B200固定在进风格栅300上,使得对接头B200得到有效的固定,但是对接头B200是由第一连接端子B210和第二连接端子B220连接而成(如相对插接实现第一电线110和第二电线120的电连接),为了使得第一电线110、第一连接端子B210、第二连接端子B220和第二电线120作为一个整体得到有效的固定,在本申请的一实施例中,如图1和图2所示,所述第一电线110的至少部分固定于所述进风格栅300,所述第二电线120的至少部分固定于所述进风格栅300。在本实施例中,将至少部分第一电线110固定于进风格栅300,将至少部分第二电线120固定于进风格栅300,从而使得第一电线110、第一连接端子B210、第二连接端子B220和第二电线120作为一个整体得到有效的固定。
例如,第一电线110包括第一电线段和第二电线段,第一电线110的第一电线段从清洁模块引出,第一电线110的第二电线段固定在进风格栅300。第二电线120包括第一电线段和第二电线段,第二电线120的第一电线段从电控盒引出,第二电线120的第二电线段固定在进风格栅300,第一电线110的第二电线段设置第一连接端子B210,第二电线120的第二电线段设置第二连接端子B220,第一连接端子B210和第二连接端子B220连接成对接头B200。
在本申请的一实施例中,如图1所示,所述对接头B200固定于所述进风格栅300的前侧,所述第一电线110的至少部分固定于所述进风格栅300的前侧,所述第二电线120的至少部分固定于所述进风格栅300的前侧;在所述空调器室内机悬挂于墙体时,所述进风格栅300的前侧远离所述墙体,所述进风格栅300的后侧靠近所述墙体。在本实施例中,空调器室内机在组装时,进风格栅300的后侧紧贴底盘,将对接头B200、第一电线110的至少部分和第二电线120的至少部分固定在进风格栅300的前侧,更加方便工人进行安装作业。
在本申请的一实施例中,如图2至图5所示,所述进风格栅300的前侧设有多个第一限位件410,多个所述第一限位件410沿所述进风格栅300的长度方向相间设置,相邻的所述第一限位件410之间设有第二限位件420,所述第一限位件410和所述第二限位件420限定出容纳腔401和与所述容纳腔401连通的入线口402,所述对接头B200通过所述入线口402嵌入所述容纳腔401,所述第一电线110的至少部分通过所述入线口402嵌入所述容纳腔401,所述第二电线120的至少部分通过所述入线口402嵌入所述容纳腔401。
在本实施例中,如图3所示,容纳腔401沿着进风格栅300的长度方向延伸设置,容纳腔401和入线口402为第一限位件410和第二限位件420限定出的空间,将对接头B200、第一电线110的至少部分和第二电线120的至少部分嵌入到容纳腔401后,第一限位件410和第二限位件420即对对接头B200、第一电线110的至少部分和第二电线120的至少部分形成限制以避免电线的掉落。由于第一电线110和第二电线120对接后整体较长,因此本实施例中设置入线口402,第一电线110和第二电线120作为一个整体,可通过入线口402嵌入到容纳腔401中,更加方便安装作业。
在本申请的一实施例中,如图8和图11所示,所述第一限位件410沿所述进风格栅300的厚度方向延伸设置,所述对接头B200设于所述第一限位件410的内侧,所述第一限位件410的内侧紧邻所述容纳腔401。在本实施例中,第一限位件410沿着进风格栅300的厚度方向延伸设置,在空调器室内机处于挂墙状态时,第一限位件410呈上下延伸设置,如此,可以防止第一电线110和第二电线120连接后的整体往空调器室内机的前后向运动。
在本申请的一实施例中,如图11所示,所述第一限位件410的内侧设有限位挡筋411,所述限位挡筋411的数量为至少两条,两条所述限位挡筋411沿所述进风格栅300的长度方向相间设置,所述对接头B200置于两个所述限位挡筋411之间。在本实施例中通过设置限位挡筋411,对接头B200置于两条限位挡筋411之间,可以防止对接头B200沿着进风格栅300的长度方向往复运动,从而对对接头B200进行更好的限位。
在本申请的一实施例中,如图7和图8所示,所述第一电线110的至少部分承托于所述第二限位件420,所述第二电线120的至少部分承托于所述第二限位件。在本实施例中,第二限位件420朝向进风格栅300的前方凸出,第二限位件420用于承托第一电线110和第二电线120,第一电线110和第二电线120对接后作为整体嵌入于容纳腔401中,在重力的作用下承托于第二限位件420。
在本申请的一实施例中,如图8和图9所示,定义内侧设置所述对接头B200的所述第一限位件410为对接头限位件4101,剩余的所述第一限位件410为非对接头限位件4102;
定义靠近所述对接头限位件4101的所述第二限位件420为承托件421,靠近所述非对接头限位件4102的所述第二限位件420为支撑件422;
所述承托件421包括相固定的第一承托部4211和第二承托部4212,所述第一承托部4211呈平板状且横向设置,所述第一电线110的至少部分和所述第二电线120的至少部分承托于所述第一承托部4211;
所述支撑件422包括相固定的第一支撑部4221和第二支撑部4222,所述第一支撑部4221呈平板状且纵向设置,所述第一电线110的至少部分和所述第二电线120的至少部分承托于所述第一支撑部4221。
在本实施例中,对接头B200需要通过入线口402嵌入至对接头限位件4101的内侧,靠近对接头限位件4101设置承托件421,承托件421具有呈板状且横向设置的第一承托部4211,如此能增大与对接头B200附近的电线的接触面积,使得对接头B200的固定更为稳定。非对接头限位件4102不需要设置对接头B200,因此通过设置支撑件422,支撑件422包括第一支撑部4221和第二支撑部4222,第一支撑部4221呈平板状且纵向设置,如此能增加在嵌入电线时的操作空间,方便组装。
在本申请的一实施例中,所述空调器室内机包括面框(图中未示出),所述面框设有进风口,所述进风格栅300设于所述进风口,所述进风格栅300可相对于所述面框分离。在本实施例中,进风格栅300相对于面框可分离的,因此在空调器室内机组装前,可以单独对进风格栅300和过滤网进行组装,避免需要配合面框才能组装过滤网。
本申请还公开了一种空调器,所述空调器包括空调器室外机和上述任一实施例的空调器室内机。
所述空调器室内机包括:
第一电线110,所述第一电线110的一端连接所述清洁模块,另一端设有第一连接端子B210;
第二电线120,所述第二电线120的一端连接所述电控盒,另一端设有第二连接端子B220;以及
进风格栅300,所述进风格栅300设于所述清洁模块和所述电控盒之间,所述第一电线110朝向所述电控盒延伸,所述第二电线120朝向所述清洁模块延伸,以使所述第一连接端子B210和所述第二连接端子B220连接成对接头B200,所述对接头B200固定于所述进风格栅300。
所述空调器室外机可采用目前技术中的空调器室外机,其与空调器室内机构成冷媒循环。
本实施例的空调器室内机的结构参照上述实施例,由于本实施例的空调器室内机的结构采用了上述实施例的技术方案,因此至少具有上述实施例的技术方案所带来的有益效果,在此不再一一赘述。
本申请还公开了一种空调器,所述空调器包括空调器室外机和上述任一实施例的空调器室内机。
所述空调器室内机包括:
电控盒(图中未示出);
清洁部件200,所述清洁部件200包括清洁模块210和过滤网轨道模块220,所述清洁模块210驱动过滤网运动于所述过滤网轨道模块220以清洁所述过滤网,所述清洁模块210设有电线连接端(图中未标识);以及
电线A400,所述电线A400布置于所述清洁模块210和所述过滤网轨道模块220,所述电线A400的一端连接至所述电线连接端,另一端连接至所述电控盒。
本实施例的空调器室内机的具体结构参照上述实施例,由于本实施例的空调器室内机的结构采用了上述实施例的技术方案,因此至少具有上述实施例的技术方案所带来的有益效果,在此不再一一赘述。空调器室外机和空调器室内机之间实现冷媒的循环,空调器室外机的具体结构可参照目前技术中的空调器室外机,也不重复赘述。
以上所述仅为本申请的可选实施例,并非因此限制本申请的专利范围,凡是在本申请的构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。

Claims (24)

  1. 一种空调器室内机,其中,所述空调器室内机包括:
    电控盒;
    清洁部件,所述清洁部件包括清洁模块和过滤网轨道模块,所述清洁模块驱动过滤网运动于所述过滤网轨道模块以清洁所述过滤网,所述清洁模块设有电线连接端;以及
    电线,所述电线布置于所述清洁模块和所述过滤网轨道模块,所述电线的一端连接至所述电线连接端,另一端连接至所述电控盒。
  2. 如权利要求1所述的空调器室内机,其中,所述电线布置于所述清洁模块的为第一电线段,所述电线布置于所述过滤网轨道模块的为第二电线段;
    所述第一电线段沿着所述清洁模块的高度方向布置;和/或,所述第二电线段沿着所述过滤网轨道模块的长度方向布置。
  3. 如权利要求1所述的空调器室内机,其中,所述电线布置于所述清洁模块的为第一电线段,所述电线布置于所述过滤网轨道模块的为第二电线段;
    所述第一电线段布置于所述清洁模块的外侧和前侧,所述空调器室内机用于悬挂于墙体,所述清洁模块的前侧远离所述墙体,所述清洁模块的外侧远离所述空调器室内机的换热器。
  4. 如权利要求3所述的空调器室内机,其中,所述清洁模块的外侧设有第一卡线部,所述清洁模块的前侧设有第二卡线部,所述第一电线段穿过所述第一卡线部和所述第二卡线部。
  5. 如权利要求4所述的空调器室内机,其中,所述第二卡线部靠近所述过滤网轨道模块,以使所述第一电线段和所述第二电线段呈弯折设置。
  6. 如权利要求4所述的空调器室内机,其中,所述第一卡线部设有第一贯穿孔,所述第一电线段穿过所述第一贯穿孔;
    和/或,所述第二卡线部设有第二贯穿孔,所述第一电线段穿过所述第二贯穿孔。
  7. 如权利要求4所述的空调器室内机,其中,所述清洁模块的前侧还设有第三卡线部,所述第二卡线部和所述第三卡线部沿着所述清洁模块的高度方向由上而下相间设置,所述第一电线段还穿过所述第三卡线部。
  8. 如权利要求7所述的空调器室内机,其中,所述第三卡线部设有过线腔和与所述过线腔连通的进线口,所述第一电线段的部分通过所述进线口嵌入所述过线腔。
  9. 如权利要求1所述的空调器室内机,其中,所述电线布置于所述清洁模块的为第一电线段,所述电线布置于所述过滤网轨道模块的为第二电线段;
    所述第二电线段布置于所述过滤网轨道模块的前侧,所述空调器室内机用于悬挂于墙体,所述过滤网轨道模块的前侧远离所述墙体。
  10. 如权利要求9所述的空调器室内机,其中,所述过滤网轨道模块的前侧设有第四卡线部,所述第二电线段穿过所述第四卡线部。
  11. 如权利要求10所述的空调器室内机,其中,所述第四卡线部设有过线槽和与所述过线槽连通的入线口,所述过线槽沿着所述过滤网轨道模块的长度方向设置,所述第二电线段的至少部分通过所述入线口嵌入于所述过线槽。
  12. 如权利要求10所述的空调器室内机,其中,所述第四卡线部包括第一限位件和第二限位件,所述第一限位件的数量至少为两个,所述第一限位件和所述第二限位件交错且相间设置,所述第一限位件和所述第二限位件之间形成过线槽和与所述过线槽连通的入线口,所述第二电线段的至少部分通过所述入线口嵌入于所述过线槽。
  13. 如权利要求12所述的空调器室内机,其中,所述第二限位件沿着所述过滤网轨道模块的长度方向设置,所述第二电线段的至少部分承托于所述第二限位件。
  14. 如权利要求1所述的空调器室内机,其中,所述清洁模块连接于所述过滤网轨道模块的一端,所述电控盒靠近所述过滤网轨道模块的另一端;
    和/或,所述空调器室内机还包括面框,所述面框罩设所述清洁部件,所述清洁部件相对于所述面框可分离。
  15. 如权利要求1所述的空调器室内机,其中,所述空调器室内机还包括:
    第一电线,所述第一电线的一端连接所述清洁模块,另一端设有第一连接端子;
    第二电线,所述第二电线的一端连接所述电控盒,另一端设有第二连接端子;以及
    进风格栅,所述进风格栅设于所述清洁模块和所述电控盒之间,所述第一电线朝向所述电控盒延伸,所述第二电线朝向所述清洁模块延伸,以使所述第一连接端子和所述第二连接端子连接成对接头,所述对接头固定于所述进风格栅。
  16. 如权利要求15所述的空调器室内机,其中,所述第一电线的至少部分固定于所述进风格栅,所述第二电线的至少部分固定于所述进风格栅。
  17. 如权利要求16所述的空调器室内机,其中,所述对接头固定于所述进风格栅的前侧,所述第一电线的至少部分固定于所述进风格栅的前侧,所述第二电线的至少部分固定于所述进风格栅的前侧;在所述空调器室内机悬挂于墙体时,所述进风格栅的前侧远离所述墙体,所述进风格栅的后侧靠近所述墙体。
  18. 如权利要求17所述的空调器室内机,其中,所述进风格栅的前侧设有多个第一限位件,多个所述第一限位件沿所述进风格栅的长度方向相间设置,相邻的所述第一限位件之间设有第二限位件,所述第一限位件和所述第二限位件限定出容纳腔和与所述容纳腔连通的入线口,所述对接头通过所述入线口嵌入所述容纳腔,所述第一电线的至少部分通过所述入线口嵌入所述容纳腔,所述第二电线的至少部分通过所述入线口嵌入所述容纳腔。
  19. 如权利要求18所述的空调器室内机,其中,所述第一限位件沿所述进风格栅的厚度方向延伸设置,所述对接头设于所述第一限位件的内侧,所述第一限位件的内侧紧邻所述容纳腔。
  20. 如权利要求19所述的空调器室内机,其中,所述第一限位件的内侧设有限位挡筋,所述限位挡筋的数量为至少两条,两条所述限位挡筋沿所述进风格栅的长度方向相间设置,所述对接头置于两个所述限位挡筋之间。
  21. 如权利要求19所述的空调器室内机,其中,所述第一电线的至少部分承托于所述第二限位件,所述第二电线的至少部分承托于所述第二限位件。
  22. 如权利要求21所述的空调器室内机,其中,定义内侧设置所述对接头的所述第一限位件为对接头限位件,剩余的所述第一限位件为非对接头限位件;
    定义靠近所述对接头限位件的所述第二限位件为承托件,靠近所述非对接头限位件的所述第二限位件为支撑件;
    所述承托件包括相固定的第一承托部和第二承托部,所述第一承托部呈平板状且横向设置,所述第一电线的至少部分和所述第二电线的至少部分承托于所述第一承托部;
    所述支撑件包括相固定的第一支撑部和第二支撑部,所述第一支撑部呈平板状且纵向设置,所述第一电线的至少部分和所述第二电线的至少部分承托于所述第一支撑部。
  23. 如权利要求15所述的空调器室内机,其中,所述空调器室内机包括面框,所述面框设有进风口,所述进风格栅设于所述进风口,所述进风格栅可相对于所述面框分离。
  24. 一种空调器,其中,包括空调器室外机和权利要求1至23任一项所述的空调器室内机。
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