WO2020259062A1 - 接水盘及空调器 - Google Patents

接水盘及空调器 Download PDF

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Publication number
WO2020259062A1
WO2020259062A1 PCT/CN2020/087288 CN2020087288W WO2020259062A1 WO 2020259062 A1 WO2020259062 A1 WO 2020259062A1 CN 2020087288 W CN2020087288 W CN 2020087288W WO 2020259062 A1 WO2020259062 A1 WO 2020259062A1
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WO
WIPO (PCT)
Prior art keywords
receiving
groove
water
receiving groove
mounting bracket
Prior art date
Application number
PCT/CN2020/087288
Other languages
English (en)
French (fr)
Inventor
秦立振
许壮
李松
王松
Original Assignee
宁波奥克斯电气股份有限公司
奥克斯空调股份有限公司
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 CN201910553867.2A external-priority patent/CN110173764A/zh
Priority claimed from CN201910557556.3A external-priority patent/CN110131877A/zh
Priority claimed from CN201910556914.9A external-priority patent/CN110131875A/zh
Application filed by 宁波奥克斯电气股份有限公司, 奥克斯空调股份有限公司 filed Critical 宁波奥克斯电气股份有限公司
Publication of WO2020259062A1 publication Critical patent/WO2020259062A1/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
    • 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
    • F24F13/22Means for preventing condensation or evacuating condensate

Definitions

  • the embodiment of the present disclosure relates to a water receiving tray and an air conditioner.
  • air conditioners have played an important role in life. With the development of science and technology, air-conditioning technology has gradually improved.
  • the air conditioner is not only the cooling effect in summer, but also the heating effect in winter is a function to improve people's quality of life.
  • At least one embodiment of the present disclosure provides a drain pan, which includes a drain pan main body, the drain pan main body includes a first receiving portion and a second receiving portion connected to each other, the first receiving portion is It is configured to be connected to the heat exchanger of the air conditioner, and the first receiving part is provided with a first receiving groove, and the first receiving groove is configured to receive the condensed water generated by the heat exchanger; the second receiving The second receiving portion is configured to be connected to the air outlet component, and the second receiving portion is provided with a second receiving groove, and the second receiving groove is configured to receive the condensed water generated by the air outlet component.
  • the first receiving part is located at the condensate discharge end of the heat exchanger, and the second receiving part is located at the condensate water of the air outlet assembly.
  • the discharge end, as well as the first receiving portion and the second receiving portion jointly enclose an annular shape and form an opening.
  • the first receiving groove and the second receiving groove are both arranged in an arc shape, and the heat exchanger is positioned on the water receiving tray.
  • the projection is located in the first receiving groove, and the arc formed by the inner peripheral wall of the air outlet assembly is adapted to the second receiving groove.
  • a water receiving tray is provided, wherein the first receiving portion and the second receiving portion are connected, and the first receiving groove is communicated with the second receiving groove.
  • a drip tray for example, in at least one embodiment of the present disclosure, there is provided a drip tray, the first receiving portion and the second receiving portion are integrally formed.
  • a water receiving tray wherein the first receiving portion and the second receiving portion are detachably connected.
  • both ends of the first receiving groove are respectively communicated with two ends of the second receiving groove and form a ring shape, and the second receiving groove
  • the ends communicating with the first receiving groove are stepped, and the first receiving portion and the second receiving portion are both arc-shaped.
  • the bottom surface of the second receiving groove facing the air outlet assembly is higher than the bottom surface of the first receiving groove facing the heat exchanger
  • the top surface of the first receiving portion is higher than the top surface of the second receiving portion, or the top surface of the second receiving portion is higher than the top surface of the first receiving portion.
  • a drain port is provided on the bottom surface of the first receiving groove of the first receiving portion, and the drain port is in communication with the first receiving groove , And/or a drain port is provided on the bottom surface of the second receiving groove of the second receiving portion, and the drain port is communicated with the second receiving groove.
  • the bottom of the water receiving tray is further provided with a connecting part, and the connecting part is used to connect the rear panel.
  • the water receiving tray further includes a mounting bracket; the mounting bracket is configured to install an electric auxiliary heating device, and at least one end of the mounting bracket is connected to the mounting bracket.
  • the drain pan body, and the mounting bracket is further configured to guide the condensed water generated by the electric auxiliary heating device to at least one of the first receiving groove and the second receiving groove.
  • the mounting bracket straddles a first receiving groove provided on the water receiving tray main body, the mounting bracket is provided with a diversion structure, the The diversion structure is used to guide the water generated on the electric auxiliary heating device to the first receiving groove, and the end of the mounting bracket extends into the first receiving groove and is installed inside the first receiving groove, And the diversion structure extends to the inside of the first receiving groove.
  • the mounting bracket includes a mounting portion and a plurality of supporting portions, and the mounting portion is disposed across the first receiving groove and used to install the electric
  • one end of the plurality of supporting parts is connected to the side of the mounting part, and the other end of the plurality of supporting parts is installed inside the first receiving groove.
  • a water receiving tray is provided, an arc-shaped groove inner wall is provided inside the water receiving tray body, and the outer side of the groove inner wall is used to form the first receiving groove and make The first receiving groove is arc-shaped; the mounting portion is located above the space enclosed by the inner wall of the groove, and the supporting portion is attached to the inner wall of the groove.
  • a water tray the supporting portion is bent to form a fitting portion and a resisting portion, one end of the resisting portion is connected to the mounting portion, and the resisting portion One end of the abutting portion close to the bonding portion abuts against the inner wall of the groove, and the bonding portion is bonded to the inner wall of the groove.
  • a water receiving tray the water receiving tray further includes a clamping structure, and the support portion is installed on the water receiving tray main body through the clamping structure, wherein the clamp
  • the holding structure includes a buckle and a buckle, the buckle is arranged on the bottom surface of the first receiving groove of the water tray main body, the buckle is arranged on the support portion, and the buckle is inserted into the groove internal.
  • the water receiving tray further includes a positioning structure, and the positioning structure is used for installation and positioning between the support portion and the water receiving tray main body,
  • the positioning structure includes a positioning hole and a positioning protrusion, the positioning hole is opened on the end surface of the support portion, and the positioning protrusion is provided on the bottom surface of the first receiving groove of the water receiving pan body.
  • the diversion structure includes a diversion groove opened on the mounting bracket, and the diversion groove is opened along the extension direction of the mounting bracket, And the diversion groove is communicated with the first receiving groove, wherein the diversion groove includes a diversion section and a receiving section communicating with each other, the receiving section is located in the middle of the mounting bracket, and the width of the receiving section Greater than the width of the diversion section.
  • the mounting bracket is further provided with a mounting structure, the mounting structure is used to install the electric auxiliary heating device, and the mounting structure is disposed at the In the receiving section of the diversion groove, a gap is formed between the outer side of the installation structure and the side wall of the diversion groove in a direction perpendicular to the extension direction of the diversion groove.
  • a water receiving tray is provided, the installation structure includes a clamping part and a fixing part, and the clamping part and the fixing part are both arranged inside the diversion groove and spaced apart It is provided that the electric auxiliary heating device is clamped on the clamping part, and the electric auxiliary heating device is detachably installed on the fixing part.
  • a water receiving tray is provided, the installation structure is protrudingly provided inside the diversion groove, and the installation structure is provided with an installation cavity, and the installation cavity is used for Install the electric auxiliary heating device.
  • At least one embodiment of the present disclosure further provides an air conditioner, the air conditioner comprising a heat exchanger, an air outlet assembly, and the water receiving tray as described in any one of the above, and the heat exchanger is installed on the first receiving part , The air outlet assembly is installed on the second receiving part.
  • At least one embodiment of the present disclosure further provides an air conditioner
  • the air conditioner includes an electric auxiliary heating device
  • the water receiving tray further includes a mounting bracket
  • at least one end of the mounting bracket is connected to the water receiving device.
  • the mounting bracket is further configured to guide the condensed water generated by the electric auxiliary heating device to at least one of the first receiving groove and the second receiving groove, and the electric auxiliary heating device is installed ⁇ The mounting bracket.
  • Fig. 1 is a schematic diagram of a partial exploded structure of an air conditioner provided in an embodiment of the present disclosure
  • FIG. 2 is a schematic structural diagram of a water receiving tray provided in an embodiment of the disclosure from a first perspective;
  • FIG. 3 is a schematic structural diagram of a water receiving tray provided in an embodiment of the present disclosure from a second perspective;
  • FIG. 4 is a schematic diagram of an exploded structure of a water receiving tray provided in another embodiment of the present disclosure.
  • FIG. 5 is a schematic structural diagram of a water receiving tray provided in another embodiment of the present disclosure.
  • Fig. 6 is a partial structural diagram of an air conditioner provided in still another embodiment of the present disclosure.
  • Fig. 7 is a schematic structural diagram of the water receiving tray provided in Fig. 6;
  • Figure 8 is an enlarged schematic diagram of a part of the water receiving tray provided in Figure 7;
  • FIG. 9 is a schematic diagram of an enlarged structure at IV in FIG. 6;
  • Fig. 10 is a partial structural diagram of an air conditioner provided in yet another embodiment of the present disclosure.
  • FIG. 11 is a schematic structural diagram from a first perspective of a mounting bracket provided in yet another embodiment of the present disclosure.
  • FIG. 12 is a schematic structural view of a second view angle of the mounting bracket provided in still another embodiment of the present disclosure.
  • FIG. 13 is a schematic diagram of an enlarged structure at VIII in FIG. 10.
  • FIG. 14 is a schematic structural diagram of a mounting block provided in an embodiment of the disclosure.
  • the air conditioner when the air conditioner performs heating effect on the room or a designated area in winter, it is usually unable to meet the needs of users due to various reasons, that is, the heating effect of the room cannot meet the expectations of users at this time.
  • the power of the air conditioner is increased to improve the indoor heating effect, the heating effect will not be improved significantly when the power is increased. On the contrary, it will cause unnecessary increase in power consumption. This caused a waste of electrical energy.
  • liquid leakage usually still occurs, which brings great inconvenience to users.
  • Liquid leakage from the air conditioner not only affects the environment in which the air conditioner is used, and makes the indoor floor moist, causing discomfort to users; at the same time, it may also affect the air conditioner itself, which may cause accumulation inside the air conditioner due to long-term leakage. Dirt and difficult to clean and maintain, affecting the use of air conditioners. After trying to increase the receiving volume of the drain pan, the air conditioner still leaks.
  • the water tray includes a water tray main body.
  • the water tray main body includes a first receiving part and a second receiving part that are connected to each other.
  • the first receiving part is configured to be connected to the heat exchanger of the air conditioner, and the first receiving part is provided with There is a first receiving groove, the first receiving groove is configured to receive the condensed water generated by the heat exchanger; the second receiving part is configured to be connected to the air outlet assembly, and the second receiving part is provided with a second receiving groove,
  • the receiving tank is configured to receive the condensed water generated by the air outlet component.
  • the above-mentioned water receiving tray can receive the condensed water generated on the heat exchanger through the first receiving groove opened on the first receiving portion, and receive the condensed water generated on the air outlet component through the second receiving groove opened on the second receiving portion, Furthermore, the condensed water generated on the heat exchanger and the air outlet assembly can be received at the same time, and the problem that the condensate water generated on the heat exchanger and the air outlet assembly cannot be received by the drain pan can be improved, and the leakage of the air conditioner can be improved.
  • the first receiving portion and the second receiving portion are jointly enclosed in a ring shape, so that a smooth flow of airflow inside the air conditioner can be realized through the opening in the middle of the water receiving tray.
  • the embodiment of the present disclosure further provides an air conditioner, the air conditioner includes a heat exchanger, a water outlet pan as described in any one of the above-mentioned air outlet components, the heat exchanger is installed in the first receiving part, and the The air outlet assembly is installed on the second receiving part.
  • Fig. 1 is a schematic diagram of a partial exploded structure of an air conditioner provided in an embodiment of the disclosure. Please refer to FIG. 1.
  • an air conditioner 11 is provided.
  • the air conditioner 11 can improve the problem of liquid leakage, thereby ensuring the user experience and improving the long-term liquid leakage caused by the air conditioner 11 The accumulation of stains is difficult to clean for maintenance purposes.
  • the air conditioner 11 includes a water receiving tray 110, a heat exchanger 111, an air outlet assembly 112 and a lower air outlet fan 113.
  • the heat exchanger 111 is used to heat or cool the airflow flowing through the heat exchanger 111.
  • the air outlet assembly 112 is used to guide the air flow through the heat exchanger 111.
  • the water receiving tray 110 is installed on the rear wall and located above the lower air outlet fan 113. It should be noted that the upper and lower positions refer to the upper and lower positions when the air conditioner 11 is normally placed and working normally.
  • the water receiving pan 110 is used to receive the condensate water generated on the heat exchanger 111 and the condensate water generated on the air outlet assembly 112.
  • the water receiving pan 110 is mostly used to receive the condensed water generated on the heat exchanger 111.
  • the air conditioner 11 still has the problem of condensate leakage, it is usually considered that the heat exchanger 111 The condensed water generated above is not sufficiently collected.
  • the water receiving pan 110 under the heat exchanger 111 is improved, but the problem of leakage of the air conditioner 11 cannot be further improved.
  • the water receiving pan 110 provided in this embodiment can receive the condensed water generated on the air outlet assembly 12 when receiving the heat exchanger 111, thereby preventing the leakage of the condensed water generated on the air outlet assembly 112 and improving the air conditioner.
  • the air outlet assembly 112 includes a housing (not marked in the figure) and a plurality of fans (not marked in the figure). When the fans are working, the air can be discharged from above the air conditioner and will Condensed water is formed on the inner peripheral wall of the housing.
  • the lower air outlet fan 113 is arranged below the water receiving tray 10, and when the lower air outlet fan 113 is operating, the air can be discharged from below the air conditioner 11. That is, the air outlet mode adopted by the air conditioner 11 provided in this embodiment is a vertical air outlet mode.
  • FIG. 2 is a schematic structural diagram of a water receiving tray provided in an embodiment of the present disclosure from a first perspective
  • FIG. 3 is a schematic structural diagram of a water receiving tray provided in an embodiment of the disclosure from a second perspective.
  • the water receiving tray 110 includes a water receiving tray main body 110a.
  • the drain pan body 110a includes a first receiving portion 1100 and a second receiving portion 1200, and the first receiving portion 1100 and the second receiving portion 1200 are connected to each other.
  • the first receiving portion 1100 is used to install the heat exchanger 111.
  • the heat exchanger 111 is installed on the first receiving part 1100, and the first receiving part 1100 is located below the heat exchanger 111.
  • the second receiving portion 1200 is configured to be disposed below the air outlet assembly 112, that is, when the air conditioner 11 is in normal use, the second receiving portion 1200 is located below the air outlet assembly 112.
  • the first receiving portion 1100 is provided with a first receiving groove 1110, and the first receiving groove 1110 is located below the heat exchanger 111, and can further receive the heat exchanger 111 through the first receiving groove 1110 Condensate generated on the
  • the second receiving portion 1200 is provided with a second receiving groove 1210, and the second receiving groove 1210 is located below the air outlet assembly 112, and can then receive the condensed water generated on the air outlet assembly 112 through the second receiving groove 1210 .
  • the purpose of collecting the condensed water generated on the heat exchanger 111 and the condensed water generated on the air outlet assembly 112 can be achieved, thereby achieving the purpose of improving the leakage problem of the air conditioner 11.
  • the first receiving part 1100 is located at the condensate discharge end 114 of the heat exchanger 111
  • the second receiving part 1200 is located at the condensate discharge end 115 of the air outlet assembly 112.
  • the first receiving portion 1100 and the second receiving portion 1200 jointly enclose an annular shape and form an opening.
  • the ring-shaped first receiving portion 1100 and the second receiving portion 1200 can be adapted to the shape of the heat exchanger 111 and the air outlet assembly 112, thereby making the first receiving portion 1100 and the second receiving portion 1200 sufficiently
  • the condensed water generated by the heat exchanger 111 and the air outlet assembly 112 is received, thereby improving the problem of liquid leakage of the air conditioner 11.
  • first receiving portion 1100 and the second receiving portion 1200 are integrally formed into a whole.
  • FIG. 4 is a schematic diagram of an exploded structure of a water receiving tray provided in another embodiment of the present disclosure.
  • the first receiving portion 1100 and the second receiving portion 1200 are connected to each other in a detachable manner That is, the first receiving portion 1100 and the second receiving portion 1200 can be detachably connected, which can facilitate the installation and disassembly of the first receiving portion 1100 and the second receiving portion 1200, and further facilitate the first receiving portion 1100 and the second receiving portion 1100. The maintenance and cleaning of the second receiving part 1200.
  • the detachable connection between the first receiving portion 1100 and the second receiving portion 1200 may be a slot connection, a snap connection, or a screw connection.
  • the first receiving groove 1110 and the second receiving groove 1210 may be The connected state facilitates the condensed water in the first receiving tank 1110 and the second receiving tank 1210 to gather together. It should be understood that the first receiving groove 1110 and the second receiving groove 1210 may also be disconnected, that is, the first receiving groove 1110 on the first receiving portion 1100 and the second receiving groove on the second receiving portion 1200 1210 can operate independently, that is, when the second receiving part 1200 is removed, the condensed water of the heat exchanger 111 can be received through the first receiving groove 1110; in the same way, the first receiving part 1100 can be removed.
  • the second receiving groove 1210 realizes receiving the condensed water on the air outlet assembly 112.
  • the first receiving groove and the second receiving groove are both arranged in an arc shape
  • the orthographic projection of the heat exchanger on the water receiving tray is located in the first receiving groove
  • the inside of the air outlet assembly The arc formed by the peripheral wall is adapted to the second receiving groove.
  • the first receiving portion 1100 and the second receiving portion 1200 are both arc-shaped, and the first receiving portion 1100 and the second receiving portion 1200 jointly surround a ring shape.
  • the orthographic projection of the heat exchanger 111 on the water receiving tray 110 is located in the first receiving groove 1110, and the arc formed by the inner peripheral wall 116 of the air outlet assembly 112 is adapted to the second receiving groove 1210.
  • the first receiving portion 1100 By setting the first receiving portion 1100 in an arc shape, it can be adapted to the shape of the heat exchanger 111, and thus can be adapted to the installation of the heat exchanger 111, and at the same time, a large amount of production cost of the water receiving tray 110 can be saved. That is, the first receiving part 1100 arranged in a ring shape can be adapted to the heat exchanger 111, thereby facilitating the installation of the heat exchanger 111, and at the same time saving the production cost of the water receiving tray 110; similarly, the second receiving part 1200 It is adapted to the air outlet assembly 112 through a ring arrangement. That is, in this embodiment, the side wall of the air outlet assembly 112 that generates condensed water is arc-shaped, which can facilitate the treatment of the condensation water generated on the air outlet assembly 112. The production cost of the drip tray 110 is saved at the same time.
  • first receiving portion 1100 and the second receiving portion 1200 are jointly enclosed in a ring shape, and an opening 1300 can be formed in the middle of the water receiving tray 110.
  • the opening 1300 can be adapted to the air circulation inside the air conditioner 11, thereby facilitating the air conditioner.
  • the internal air circulation is smooth. That is, the air inlet of the lower air outlet fan 113 arranged under the water receiving tray 110 is in communication with the opening 1300, so that the lower air outlet fan 113 can take in air from the opening 1300, that is, by setting the water receiving tray 110 in a ring shape, This can ensure the air intake of the lower outlet fan 113 and at the same time make the air flow inside the air conditioner 11 flow smoothly.
  • FIG. 5 is a schematic structural diagram of a water receiving tray provided in another embodiment of the present disclosure.
  • the bottom 117 of the water receiving tray 110 is also provided with a connecting part 1400, which is arranged below the water receiving tray 110 ,
  • the connecting portion 1400 can be installed stably, and thus the water receiving pan 110 can be stably collected for the heat exchanger 111 and the air outlet assembly 112. .
  • the connecting portion 1400 may not be provided, that is, the stable installation of the water tray 110 can be realized in other ways, such as a screw connection or a snap connection.
  • both ends of the first receiving groove are respectively communicated with two ends of the second receiving groove and form a ring shape, and the first receiving portion and the second receiving portion are both arc-shaped .
  • the first receiving groove 1110 and the second receiving groove 1210 are also arc-shaped, That is, it can be adapted to the heat exchanger 111 through the first receiving groove 1110 and at the same time adapted to the air outlet assembly 112 through the second receiving groove 1210.
  • the projection of the heat exchanger 111 on the water receiving tray 110 is located in the first receiving groove 1110, and the arc formed by the inner peripheral wall of the air outlet assembly 112 is adapted to the second receiving groove 1210.
  • the condensed water generated on the heat exchanger 111 can flow into the first receiving groove 1110, and the condensed water generated on the inner peripheral wall 116 (shown in FIG. 1) of the air outlet assembly 112 can flow into the second receiving groove 1210 in.
  • the first receiving groove 1110 receives the condensed water generated on the heat exchanger 111 and the second receiving groove 1210 receives the condensed water generated on the air outlet assembly 112, which can achieve the purpose of improving the leakage problem of the air conditioner 11.
  • the condensed water received by the first receiving groove 1110 and the condensed water received by the second receiving groove 1210 can be collected into Together, so that the condensed water inside the first receiving tank and the second receiving tank can be discharged together.
  • one end of the first receiving groove 1110 is communicated with the end of the second receiving groove 1210, so that the condensed water received by the first receiving groove 1110 is connected to the second receiving groove 1210.
  • the condensed water received by the receiving part 1200 can be collected together to facilitate the collection and discharge of the condensed water.
  • the first receiving groove 1110 and the second receiving groove 1210 are also surrounded in a ring shape, and one end of the first receiving groove 1110 is connected to both ends of the second receiving groove 1210, that is, the first receiving groove 1110
  • the two ends of the second receiving groove 1210 are respectively connected to the two ends of the second receiving groove 1210, so that the condensed water received by the second receiving groove 1210 can flow into the first receiving groove 1110 from both ends of the second receiving groove 1210 to realize the condensation water Collection.
  • the condensed water inside the first receiving groove 1110 can also flow into the second receiving groove 1210 from both ends of the first receiving groove 1110.
  • the width of the first receiving groove 1110 is greater than the width of the second receiving groove 1210, so as to receive more condensed water generated on the heat exchanger 111, and
  • the end of the second receiving groove 1210 and the first receiving groove 1110 sharing a side wall is located inside the first receiving groove 1110 so as to save the space occupied by the water receiving tray 110.
  • the bottom surface of the second receiving groove facing the air outlet assembly is higher than the bottom surface of the first receiving groove facing the heat exchanger; and the top surface of the first receiving portion is higher than The top surface of the second receiving portion, or the top surface of the second receiving portion is higher than the top surface of the first receiving portion. As shown in FIG.
  • the bottom wall 1212 (ie bottom surface) of the second receiving groove 1210 is higher than the bottom wall (ie bottom surface) 1112 of the first receiving groove 1110, so that the second receiving groove 1210 can be on the receiving air outlet assembly 112
  • the second receiving tank 1210 can divert the received condensate to the first receiving tank 1110, thereby facilitating the collection of the condensed water in the first receiving tank 1110 and the second receiving tank 1210 together, and facilitates Collection and discharge of condensate.
  • the top portion 1113 (ie, the top surface) of the first receiving portion 1100 and the top portion (ie, the top surface) 1213 of the second receiving portion 1200 have the same height. It should be noted that the height of the first receiving portion 1100 and the second receiving portion 1200 refers to that when the air conditioner is in the normal mode, the uppermost surface of the first receiving portion 1100 and the upper side of the second receiving portion 1200 are the highest Face contour.
  • the first receiving portion 1100 is higher than the second receiving portion 1200, or the second receiving portion 1200 is higher than the first receiving portion 1100.
  • that the first receiving portion 1100 is higher than the second receiving portion 1200 means that the top of the first receiving portion 1100 is higher than the top of the second receiving portion 1200 when the drip tray 110 is normally installed and placed.
  • the second The fact that the receiving portion 1200 is higher than the first receiving portion 1100 means that the top of the second receiving portion 1200 is higher than the top of the first receiving portion 1100 when the drain pan 110 is normally installed and placed.
  • the height of the first receiving portion 1100 and the second receiving portion 1200 can be designed according to the actual installation situation of the water receiving tray 110, the heat exchanger 111 and the air outlet assembly 112, so that the first receiving portion 1100 can be adapted In the heat exchanger 111, the second receiving portion 1200 is adapted to the air outlet assembly 112 to ensure that the first receiving portion 1100 can stably receive condensate from the heat exchanger 111, and at the same time, it can ensure that the second receiving portion 1200 can stably Condensate water is received for the air outlet assembly 112.
  • first receiving portion 1100 and the second receiving portion 1200 may also be arranged at the same height.
  • the second receiving groove 1210 and the communicating ends of the first receiving groove 1110 are stepped, that is, the plane of the bottom wall of the second receiving groove 1210 and the plane of the bottom wall of the first receiving groove 1110. They are connected by another plane and are stepped. It should be understood that in other embodiments, the second receiving groove 1210 and the first receiving groove 1110 may also be connected by an inclined surface, that is, the second receiving groove 1210 The condensate can be guided to the inside of the first receiving groove 1110 along the slope.
  • a drainage port is provided on the bottom surface of the first receiving groove of the first receiving portion, and the drainage port is communicated with the first receiving groove, and/or the second receiving portion of the second receiving portion
  • a drain port is arranged on the bottom surface of the tank, and the drain port is communicated with the second receiving tank.
  • the bottom surface 1112 of the first receiving portion 1100 is further provided with a drainage port 1120, and the drainage port 1120 is in communication with the first receiving groove 1110, so that the first receiving groove and/or the first receiving groove can be connected to the first receiving groove 1110 through the drainage port 1120.
  • the condensed water received in the receiving tank is led out, thereby facilitating the discharge of the condensed water.
  • the drain 1120 may also be provided on the second receiving portion 1200, and the drain 1120 is connected to the second receiving groove 1210, so as to realize the collection and discharge of the condensed water.
  • the first receiving portion 1100 and the second receiving portion 1200 are detachably connected, and the first receiving groove 1110 and the second receiving groove 1210 are disconnected, the first receiving portion 1100 and the second receiving portion 1200 are both
  • the drainage port 1120 is provided, so that the condensed water in the first receiving groove 1110 and the second receiving groove 1210 can be discharged through the corresponding drainage port 1120.
  • drainage ports 1120 may also be opened in the first receiving groove 1110 and the second receiving groove 1210 respectively.
  • the condensed water generated on the heat exchanger 111 can be received through the first receiving groove 1110 provided on the first receiving portion 1100, and at the same time, the second receiving groove 1210 opened on the second receiving portion 1200 can receive the condensed water. Condensation water generated on the wind assembly 112. Then, the condensed water inside the second receiving tank 1210 can flow to the inside of the first receiving tank 1110, so as to realize the collection of the condensed water. In addition, the condensed water collected in the first receiving tank 1110 can be discharged through the drain port 1120, and the condensed water of the air conditioner 11 can be collected and discharged. The problem of leakage of condensed water from the air conditioner 11 is improved.
  • the air conditioner 11 provided in the embodiment of the present disclosure can receive the condensed water generated on the heat exchanger 111 through the first receiving groove 1110 opened on the first receiving portion 1100, and through the second receiving portion 1200.
  • the second receiving groove 1210 receives the condensed water generated on the air outlet assembly 112, and can then simultaneously receive the condensed water generated on the heat exchanger 111 and the air outlet assembly 112, which can improve the heat exchanger 111 and the air outlet assembly 112.
  • the problem of leakage of the condensed water that cannot be received by the drain pan 10 has been achieved to improve the leakage of the air conditioner 11.
  • the water tray further includes a mounting bracket.
  • the mounting bracket is configured to install the electric auxiliary heating device, at least one end of the mounting bracket is connected to the main body of the drain pan, and the mounting bracket is also configured to guide the condensed water generated by the electric auxiliary heating device to the first receiving groove and the second receiving groove. At least one of the receiving slots.
  • the water receiving tray can facilitate the installation of the electric auxiliary heating device, thereby facilitating the effective improvement of the heating effect through the electric auxiliary heating device, and at the same time, it is convenient to reduce the size of the water receiving tray body without affecting the condensation of the water receiving tray body. Water capacity.
  • Fig. 6 is a partial structural diagram of an air conditioner provided in yet another embodiment of the present disclosure.
  • at least one embodiment of the present disclosure provides an air conditioner 21.
  • the air conditioner 21 can easily improve the heating effect for indoors or designated areas, and at the same time can prevent the air conditioner 21 from leaking, thereby improving the user's Use experience.
  • FIG. 10 is a partial structural diagram of an air conditioner provided in another embodiment of the present disclosure. Please refer to FIGS. 6 and 10 in combination.
  • the air conditioner 10 includes a water receiving tray 210 and an electric auxiliary heating device 300 (which may also include the one shown in FIG. 1 Heat exchanger and air outlet components).
  • the electric auxiliary heating device 300 is installed on the water receiving tray 210, and can then receive the condensed water generated on the electric auxiliary heating device 300 through the water receiving tray 210, and at the same time, it can also provide the electric auxiliary heating through the water receiving tray 210.
  • the device 300 provides an installation bearing function. In turn, the installation of the electric auxiliary heating device 300 is realized, thereby facilitating the purpose of auxiliary heating by the electric auxiliary heating device 300.
  • the purpose of receiving the condensed water generated by the electric auxiliary heating device 300 through the water receiving pan 210 can be achieved at the same time.
  • the air conditioner 21 provided in this embodiment can facilitate the installation of the electric auxiliary heating device 300 by installing the electric auxiliary heating device 300 on the water receiving tray 210, and at the same time, it is convenient to improve the heating effect of the air conditioner 21.
  • the drain pan 210 can also receive the condensed water generated on the electric auxiliary heating device 300, thereby avoiding leakage of the condensed water generated on the electric auxiliary heating device 300, and the purpose of avoiding water leakage in the air conditioner 21 can be achieved.
  • the mounting bracket straddles the first receiving groove provided on the main body of the water receiving tray, and the mounting bracket is provided with a diversion structure, and the diversion structure is used to remove the water generated on the electric auxiliary heating device.
  • Guide the first receiving groove, the end of the mounting bracket extends into the first receiving groove and is installed inside the first receiving groove, and the diversion structure extends into the first receiving groove.
  • Fig. 7 is a schematic structural diagram of the water receiving tray provided in Fig. 6.
  • the water receiving tray 210 includes a water receiving tray main body 210 a and a mounting bracket 2120.
  • the mounting bracket 2120 is arranged across the drain pan main body 210a and is used to receive the condensed water of the heat exchanger and other components, the mounting bracket 2120 is installed on the drain pan main body 210a, and the mounting bracket 2120 is used for the installation of the electric auxiliary heating device 300 .
  • At least one end of the mounting bracket 2120 is connected to the drain pan main body 210a.
  • both ends of the mounting bracket 2120 are connected to the drain pan body 210a. It should be understood that the mounting bracket 2120 may also be connected to the drain pan body 210a at only one end.
  • the installation bracket 2120 is also provided with a diversion structure 212 to guide the condensed water generated by the electric auxiliary heating device 300 to the drain pan main body 210a through the diversion structure 212. That is, in this embodiment, the electric auxiliary heating device 300 can be provided with an installation bearing function through the mounting bracket 2120, and by arranging the installation bracket 2120 across the drain pan body 210a, the electric auxiliary heating device 300 and the installation bracket can be avoided 2120 affects the interior of the drain pan main body 210a, that is, it can ensure that the drain pan main body 210a can effectively complete the work of receiving condensed water.
  • the size of the drain pan main body 210a can be effectively reduced, thereby facilitating the installation of the drain pan 210a without affecting the volume of the drain pan main body 210a.
  • the diversion structure 212 provided on the mounting bracket 120 can also divert the condensed water generated on the electric auxiliary heating device 300, that is, the auxiliary heating function can be provided by installing the electric auxiliary heating device 300, and at the same time The purpose of avoiding leakage of condensed water generated on the electric auxiliary heating device 300 can be achieved.
  • the drain pan main body 210 a includes a first supporting portion 2100 and a second supporting portion 2200.
  • a first bearing slot 2110 is defined on the first bearing portion 2100, and a second bearing slot 2210 is opened on the second bearing portion 2200.
  • the structures of the first supporting groove 2110 and the second supporting groove 2210 can refer to the foregoing embodiment, and will not be described in detail.
  • FIG. 8 is an enlarged schematic view of a part of the water receiving tray provided in FIG. 7. Please refer to FIG. 6, FIG. 7 and FIG. 8.
  • the end of the mounting bracket 2120 extends into the water receiving tank 2110 (for example, the first carrying tank). And installed inside the water tank 2110.
  • the diversion structure 212 extends to the inside of the water receiving tank 2110.
  • the water receiving tank 2110 is used to collect the condensed water generated by the electrical auxiliary heating device 300 and the heat exchanger and other components.
  • the condensed water generated on the electric auxiliary heating device 300 flows into the water receiving tank 2110 through the diversion structure 212, so that the condensed water generated by the electric auxiliary heating device 300 and the condensed water generated by the heat exchanger and other parts can be collected together. , To facilitate the discharge of excess condensate.
  • the diversion structure 212 includes a diversion groove opened on the mounting bracket, the diversion groove is opened along the extension direction of the mounting bracket, and the diversion groove is communicated with the first receiving groove.
  • FIG. 9 is a schematic diagram of an enlarged structure at IV in FIG. 6. As shown in FIGS. 8 and 9, the diversion structure 212 includes a diversion groove 221 opened on the mounting bracket 2120, and the diversion groove 221 is in communication with the water receiving groove 2110.
  • the condensed water generated on the electric auxiliary heating device 300 can be received through the diversion groove 221, and the received condensed water can be introduced into the water receiving groove 2110 through the diversion groove 221, and the electric The purpose of receiving and collecting the condensed water generated by the auxiliary heating device 300.
  • the diversion structure 212 may also include other structures.
  • a diversion rod is provided on the mounting bracket 2120, and the diversion rod extends from the electric auxiliary heating device 300 and extends into To the inside of the water receiving tank 2110, and the guide rod is inclined, the condensed water generated on the electric auxiliary heating device 300 can flow along the guide rod to the inside of the water receiving tank 2110, which completes the guiding of the condensed water generated on the electric auxiliary heating device 300 And collect.
  • the diversion groove includes a diversion section and a receiving section communicating with each other, the receiving section is located in the middle of the mounting bracket, and the width of the receiving section is greater than the width of the diversion section.
  • FIG. 11 is a schematic structural diagram of a mounting bracket provided in still another embodiment of the present disclosure from a first perspective
  • FIG. 12 is a schematic structural diagram of a mounting bracket provided in still another embodiment of the disclosure from a second perspective.
  • the diversion groove 221 includes a receiving section 2211 and a diversion section 2212 that are communicated with each other.
  • the receiving section 2211 is located in the middle of the mounting bracket 2120, and there are two diversion sections 2212 and they are respectively arranged in the receiving section. On both sides of the section 2211, the diversion section 2212 extends from the receiving section 2211 to the water receiving tank 2110 and is connected to the water receiving tank 2110.
  • a mounting structure is further provided on the mounting bracket, and the mounting structure is used for mounting the electric auxiliary heating device, and the mounting structure is disposed in the receiving section of the diversion groove.
  • the mounting bracket 2120 is further provided with a mounting structure 222, the mounting structure 222 is used to install the electric auxiliary heating device 300, and the mounting structure 222 is disposed inside the diversion groove 221. That is, in the present embodiment, the electric auxiliary heating device 300 can be provided with a bearing function through the installation structure 222, and the installation of the electric auxiliary heating device 300 can be facilitated.
  • the condensed water left along the installation structure 222 can flow into the diversion groove 221, and the condensate water can be treated by the diversion groove 221. Undertake and collect and lead to the sink 2110.
  • the width of the receiving section 2211 is greater than the width of the diversion section 2212, and the mounting structure 222 is disposed inside the receiving section 2211, and at the same time, the receiving section 2211 The width of is greater than the width of the mounting structure 222.
  • the condensed water generated by the electric auxiliary heating device 300 on the installation structure 222 can flow into the receiving section 2211, and then the condensed water is received through the receiving section 2211, and then the condensed water is introduced to the receiving section through the guiding effect of the diversion section 2212. Inside the sink 2110.
  • the installation structure 222 can also have a sufficient width, thereby ensuring that the installation structure 222 provides sufficient bearing support for the electric auxiliary heating device 300 and ensuring that the electric auxiliary heating device 300 can be stably installed on the installation structure 222.
  • a gap is formed between the outer side of the installation structure and the side wall of the flow guiding groove in a direction perpendicular to the extending direction of the flow guiding groove.
  • a gap 2223 is formed between the outer side 2121 of the mounting structure 222 and the side wall 221 a of the guide groove 221.
  • the gap 2223 is formed on two sides of the mounting structure 222 in a direction perpendicular to the extending direction of the flow guiding groove 221.
  • the condensed water generated on the electric auxiliary heating device 300 can flow into the diversion groove 221 from the gap 2223 to prevent the condensation water from adhering to the outside of the mounting bracket 2120 and leak out of the diversion groove 221.
  • the arrangement of the gap 2223 is convenient for electric auxiliary Installation of thermal device 300. That is, it can be ensured that the condensed water generated on the electric auxiliary heating device 300 can flow along the electric auxiliary heating device 300 to the inside of the diversion groove 221.
  • the mounting structure includes a clamping part and a fixing part, the clamping part and the fixing part are both arranged inside the diversion groove and arranged at intervals, the electric auxiliary heating device is clamped to the clamping part, and The electric auxiliary heating device is detachably installed on the fixed part.
  • the mounting structure 222 includes a clamping portion 2224 and a fixing portion 2225, wherein the clamping portion 2224 and the fixing portion 2225 are both arranged inside the diversion groove 221, and the clamping portion 2224 and the fixing portion 2225 are arranged at intervals .
  • the electric auxiliary heating device 300 is installed in the installation structure, the electric auxiliary heating device 300 is clamped to the clamping portion 2224 and can be detachably installed on the fixing portion 2225, thereby achieving stable installation of the electric auxiliary heating device 300.
  • a clamping hole 2226 is opened at the bottom of the clamping portion 2224.
  • 14 is a schematic structural diagram of a mounting block provided in an embodiment of the present disclosure. As shown in FIGS. 6 and 14, correspondingly, the side of the electric auxiliary heating device 300 is provided with a latching protrusion corresponding to the latching hole 2226 310.
  • the clamping hole 2226 may also be opened on the electric auxiliary heating device 300, and the corresponding clamping protrusion 310 may be protrudingly provided on the side of the clamping portion 2224.
  • the side of the electric auxiliary heating device 300 opposite to the latching protrusion 310 is also provided with a mounting protrusion 320 for detaching and installing on the fixing portion 2225.
  • the mounting protrusion 320 is detachably installed by screws.
  • a through hole is opened on the fixing portion 2225, that is, the mounting protrusion 320, and a threaded hole corresponding to the through hole is opened on the corresponding fixing portion 2225.
  • the electric auxiliary can be realized by a screw passing through the through hole and screwing into the threaded hole. Installation of thermal device 300.
  • the electric auxiliary heating device 300 when installing the electric auxiliary heating device 300, first extend the latching protrusion 310 on the electric auxiliary heating device 300 into the latching hole 2226, and then clamp it
  • the convex block 310 is the center-rotating electric auxiliary heating device 300 so that the mounting convex block 320 is in contact with the fixing portion 2225, and the through hole corresponds to the screw hole.
  • the electric auxiliary heating device can be realized by screwing the screw in the through hole and the threaded hole. Installation of thermal device 300. When the electric auxiliary heating device 300 needs to be disassembled, the electric auxiliary heating device 300 can be disassembled by removing the screws.
  • the latching protrusion 310 and the mounting protrusion 320 provided on the electric auxiliary heating device 300 may be detachable components.
  • the electric auxiliary heating device 300 includes a mounting block 330. The upper part is provided with a cavity for holding the electric auxiliary heating device 300.
  • the mounting block 330 is provided with a holding protrusion 310 and a mounting protrusion 320 on the opposite sides respectively, that is, the mounting block 330 can be installed through the cavity At the bottom of the electric auxiliary heating device 300, the detachable installation of the electric auxiliary heating device 300 and the mounting structure 222 can be completed.
  • the installation structure is protruded inside the diversion groove, and an installation cavity is opened on the installation structure, and the installation cavity is used for installing the electric auxiliary heating device.
  • the installation structure 222 is a protrusion disposed inside the diversion groove 221, wherein the installation structure 222 is protrudingly provided on the bottom wall of the diversion groove 221, and the installation structure 222 is provided with an installation cavity 2221, the installation cavity 2221 can be inserted into the electric auxiliary heating device 300, that is, the installation of the electric auxiliary heating device 300 can be realized.
  • the peripheral wall of the mounting structure 222 is also provided with a mounting hole 2222, the mounting hole 2222 penetrates the side wall of the mounting cavity 2221 and communicates with the mounting cavity 2221.
  • the installation stability of the electric auxiliary heating device 300 can be improved by passing the screw through the installation hole 2222 and connecting it to the electric auxiliary heating device 300. It should be understood that in other embodiments, the setting of the mounting hole 2222 may also be eliminated.
  • an arc-shaped groove inner wall is provided inside the water tray main body, and the outer side of the groove inner wall is used to form a first receiving groove, and the first receiving groove is arc-shaped; Above the space enclosed by the inner side of the groove inner wall, the support part is attached to the groove inner wall.
  • the water receiving tank 2110 is provided with a tank inner wall 2115, the tank inner wall 2115 is arc-shaped, and the outer side 2116 of the tank inner wall 2115 is used to form a water receiving groove 2110, and make the water receiving groove 2110 curved.
  • the mounting bracket 2120 is arranged across the space enclosed by the inner side 2117 of the inner wall 2115 of the groove.
  • the groove inner wall 2115 encloses an annular space, which can be opened as an opening 2114, that is, in this embodiment, an opening 2114 opened in the middle of the drain pan main body 210a.
  • the mounting bracket 2120 is arranged across the opening 2114, and the two ends of the mounting bracket 2120 are connected to the drain pan body 2110. That is, in this embodiment, the mounting bracket 2120 is arched and spans the opening 2114.
  • the arch-shaped mounting bracket 2120 can increase the bearing capacity of the mounting bracket 2120 for the electric auxiliary heating device 300, improve the problem of deformation of the mounting bracket 2120, and reduce the size of the drain pan body 210a. In addition, it can also prevent the mounting bracket 2120 and the electric auxiliary heating device 300 from affecting the airflow through the opening 2114, thereby ensuring the smooth flow of the airflow inside the air conditioner 21, thereby avoiding the air intake of the fan installed under the water receiving tray 210a. influences.
  • the installation structure 222 and the diversion groove 221 can receive the condensed water flowing down the side wall of the installation structure 222, thereby preventing the condensed water from dripping down the side wall of the mounting bracket 2120 to the opening. 2114 caused condensate leakage. That is, the gap 2223 formed on the side wall of the installation structure 222 and the flow guide groove 221 can prevent the condensed water from flowing along the installation bracket 2120 and dripping into the opening 2114.
  • the mounting bracket includes a mounting portion and a plurality of support portions, the mounting portion is disposed across the first receiving groove and used to install the electric auxiliary heating device, and one end of the multiple support portions is connected to On the side of the installation part, the other ends of the multiple support parts are installed inside the first receiving groove.
  • the mounting bracket 2120 includes a mounting portion 2125 and a supporting portion 2126.
  • the mounting portion 2125 is used for the installation of the electric auxiliary heating device 300. That is, in this embodiment, the mounting structure 222 is mounted on the mounting portion 2125 .
  • One end of the plurality of supporting parts 2126 is connected to the side 2127 of the mounting part 2125, and the other end of the plurality of supporting parts 2126 is installed inside the water receiving groove 2110, and the diversion structure extends along the supporting part 2126 into the water receiving groove 2110.
  • the mounting portion 2125 and the supporting portion 2126 are both provided with grooves, and the grooves on the mounting portion 2125 and the supporting portion 2126 together form the diversion groove 221.
  • the mounting part 2125 is located at the side of the opening 2114, that is, the mounting part 2125 is located above the space enclosed by the groove inner wall 2115, which can facilitate the installation of the electric auxiliary heating device 300 Location design.
  • the support portion 2126 is attached to the groove inner wall 2115.
  • the support portion 2126 can be provided through the groove inner wall 2115.
  • the limit function further ensures the position stability of the support portion 2126, and further ensures the stability of the mounting portion 2125, so as to achieve a stable installation function for the electric auxiliary heating device 300.
  • the number of support portions 2126 is three, and the three support portions 2126 are respectively provided on three sides of the mounting portion 2125, and all extend into To the inside of the water receiving tank 2110, at the same time, the three supporting parts 2126 are all attached to the inner wall 2115 of the tank.
  • a boss 2151 is also provided on the inner wall 2115 of the tank, and the boss 2151 protrudes from the bottom wall of the water receiving tank 2110.
  • the formation of the boss 2151 can also be regarded as the groove inner wall 2115 being away from the bottom wall of the water receiving groove 2110 recessed toward the opening 2114, and the groove inner wall 2115 is formed on the side close to the bottom wall of the water receiving groove 2110. Taiwan 2151. The end of one of the support portions 2126 is against the boss 2151 to provide support to the support portion 2126 through the boss 2151, which can ensure the overall balance of the mounting bracket 2120.
  • a part of the diversion groove 221 is opened in the support portion 2126, and a part of the diversion groove 221 is opened in the installation portion 2125.
  • the supporting portion 2126 and the mounting portion 2125 are formed by integral molding.
  • the supporting portion is bent to form a fitting portion and a resisting portion, one end of the resisting portion is connected to the mounting portion, and one end of the resisting portion close to the fitting portion resists the inner wall of the groove,
  • the fitting part is attached to the inner wall of the groove.
  • the supporting portion 2126 is bent to form a fitting portion 2262 and a resisting portion 2261, wherein one end of the resisting portion 2261 is connected to the mounting portion 2125, and an end of the resisting portion 2261 close to the fitting portion 2262 resists against The groove inner wall 2115 and the bonding portion 2262 are bonded to the groove inner wall 2115.
  • the resisting portion 2261 and the mounting portion 2125 are both located above the opening 2114, and the end of the resisting portion 2261 close to the fitting portion 2262 is resisted above the groove inner wall 2115 to further ensure the support portion
  • the stability of the 2126 can ensure the stability of the entire mounting bracket 2120.
  • the three supporting portions 2126 can provide a force for clamping on the inner wall 2115 of the groove, so that the mounting bracket 2120 can be stably installed on the drain pan main body 210.
  • the number of the supporting parts 2126 may not be limited.
  • the supporting parts 2126 may also be two or four or five.
  • the top of the mounting bracket 2120 is flush with the drain pan main body 210a.
  • that the top of the mounting bracket 2120 is flush with the drain pan main body 210a means that the mounting portion 2125 is substantially flush with the drain pan main body 210a.
  • the top of the mounting bracket 2120, that is, the mounting portion 2125 is higher than the water tray body 210a, that is, the bottom of the mounting portion 2125 is higher than the water tray body 210a.
  • the mounting portion 2125 can also be arranged flush with the drain pan main body 210a.
  • FIG. 13 is a schematic diagram of an enlarged structure at VIII in FIG. 10. Please refer to FIG. 10, FIG. 11, FIG. 12 and FIG. 13 in combination.
  • the mounting bracket 2120 includes a mounting portion 2125 and two supporting portions 2126.
  • the two supporting parts 2126 stand on the main body 210 a of the water receiving tray respectively, and the installation positions of the two supporting parts 2126 are connected through the opening 2114.
  • the two supporting portions 2126 are respectively supported on both sides of the mounting portion 2125 so that the mounting portion 2125 is arranged across the opening 2114.
  • the supporting section is substantially perpendicular to the water tray main body 210a, and the mounting bracket 2120 forms an inverted U shape.
  • the mounting bracket 2120 may also be set in a circular arc shape or the like.
  • the water receiving tray further includes a clamping structure
  • the support portion is installed on the main body of the water receiving tray through the clamping structure
  • the clamping structure includes a buckle and a clamping groove
  • the buckle is arranged in the On the bottom surface of the first receiving groove of the main body of the water receiving tray, the clamping groove is arranged on the supporting part, and the buckle is clamped into the inside of the clamping groove.
  • the water tray 210 also includes a clamping structure (not marked in the figure).
  • the clamping structure is used to provide a clamping effect when the supporting portion 2126 and the water tray main body 210a are installed, that is, support
  • the portion 2126 can be stably installed on the drain pan main body 210a through the clamping structure, and the installation stability of the supporting portion 2126 can be ensured by the arrangement of the clamping structure.
  • the bottom surface 2112a of the first receiving groove 2110 of the drain pan body 210a is provided with a buckle 2112
  • the mounting bracket 2120 is provided with a buckle 223, which can pass through the buckle 2112 and the groove 223. The cooperation therebetween achieves the purpose of installing the mounting bracket 2120 on the drain pan body 210a.
  • the installation and disassembly of the mounting bracket 2120 can be facilitated, thereby facilitating the maintenance and replacement of the mounting bracket 2120.
  • the card slot 223 is opened on the supporting portion 2126, and the card slot 223 penetrates through the side wall of the diversion slot 221 and communicates with the diversion slot 221.
  • the mounting bracket 2120 is provided with two buckles 223 on opposite sides of the end, and two buckles 2112 are provided on the drain pan body 210a.
  • the 2112 is respectively inserted into the two card slots 223 to complete the installation of the mounting bracket 2120.
  • the mounting bracket 2120 can be installed through the two opposite sides of the mounting bracket 2120, which can provide a stable support for the mounting bracket 2120, thereby ensuring the installation stability of the mounting bracket 2120.
  • the water tray further includes a positioning structure
  • the positioning structure is used for installation and positioning between the support portion and the main body of the water tray
  • the positioning structure includes a positioning hole and a positioning protrusion
  • the positioning hole is opened On the end surface of the supporting part
  • a positioning protrusion is provided on the bottom surface of the first receiving groove of the water tray body, and the positioning protrusion extends into the positioning hole when the mounting bracket is installed on the water tray body.
  • the water tray 210 also includes a positioning structure (not marked in the figure). The positioning structure is used for the installation and positioning of the supporting portion 2126 and the water tray body 210a during installation.
  • the support portion 2126 is provided with a positioning function to ensure that the support portion 2126 can be accurately installed at the designated position on the water tray main body 210a, which can reduce the installation difficulty of the support portion 2126 on the water tray main body 210a.
  • the end surface of the mounting bracket 2120 is further provided with a positioning hole 2124, and correspondingly, a positioning protrusion 2113 corresponding to the positioning hole 2124 is provided on the drain pan body 210a. When the mounting bracket 2120 is installed on the drain pan body 210a, the positioning protrusion 2113 extends into the positioning hole 2124.
  • the installation and positioning of the mounting bracket 2120 can be realized, and at the same time, the mounting bracket 2120 can be restricted after the installation is completed. This can facilitate the installation of the mounting bracket 2120 and at the same time ensure the installation stability of the mounting bracket 2120.
  • a plate is provided on the end of the mounting bracket 2120, and the plate is arranged in the extension direction of the diversion groove 221, and the positioning hole 2124 penetrates the plate and communicates with the diversion section 2212 of the diversion groove 221. .
  • the installation of the slot 223 and the positioning hole 2124 on the water tray main body 210a can also complete the installation of the mounting bracket 2120 and the water tray main body 210a.
  • the thickness requirement of the water tray main body 210a will be increased.
  • the problem of water accumulation in the card slot 223 and the positioning hole 2124 needs to be considered. Therefore, the above-mentioned method is not adopted in the preferred embodiment.
  • the receiving section 2211 is disposed in the middle of the mounting portion 2125.
  • both ends of the mounting section 2125 are provided with partial diversion sections 2212 connected to the receiving section 2211.
  • a partial diversion section 2212 is also provided on the supporting section. It should be understood that in other embodiments, all the diversion sections 2212 may be provided on the supporting section, while only the receiving section 2211 is provided on the mounting portion 2125.
  • At least one embodiment of the present disclosure further provides a water receiving tray, which includes a water receiving tray main body and a mounting bracket.
  • a receiving portion (for example, a first receiving portion) is provided in the main body of the drip tray.
  • the first receiving portion is configured to be connected to the heat exchanger of the air conditioner to receive the condensed water generated by the heat exchanger, but the embodiment of the present disclosure is not limited thereto.
  • the mounting bracket is used to install the electric auxiliary heating device, and is installed across the drain pan main body, and is also configured to guide the condensed water generated by the electric auxiliary heating device to the receiving part of the drain pan main body. As shown in FIG. 6 and FIG.
  • the water receiving tray 210 includes a water receiving tray main body 210 a and a mounting bracket 2120.
  • the mounting bracket 2120 is arranged across the drain pan main body 210a and is used to receive the condensed water of the heat exchanger and other components, the mounting bracket 2120 is installed on the drain pan main body 210a, and the mounting bracket 2120 is used for the installation of the electric auxiliary heating device 300 .
  • the water receiving tray provided by the present disclosure can be used to install an electric auxiliary heating device through a mounting bracket arranged across the main body of the water receiving tray, which can facilitate the installation of the electric auxiliary heating device. At the same time, it can also avoid the influence of the electric auxiliary heating device and the installation bracket on the inside of the water receiving tank, that is, it can ensure that the water receiving tank can effectively complete the work of receiving condensate. Moreover, by arranging the mounting bracket across the water receiving tray, the size of the water receiving tray can be effectively reduced, thereby facilitating the installation of the water receiving tray without affecting the volume of the water receiving tray.
  • the main body of the drain pan is not limited to the structure shown in FIGS. 6 and 10, and the structure of the main body of the drain pan can be used for the part where the bracket is installed and the part that receives the condensed water guided by the bracket.
  • the structures shown in FIGS. 6 and 10 are only examples of the main body of the drain pan, and the main body of the drain pan may be other structures that satisfy the above conditions.
  • the first receiving portion includes a first receiving groove
  • the mounting bracket straddles the first receiving groove provided on the main body of the water receiving tray
  • the mounting bracket is provided with a diversion structure
  • the diversion structure is used to remove the heat generated on the electric auxiliary heating device.
  • the water is guided to the first receiving groove
  • the end of the mounting bracket extends into the first receiving groove and is installed inside the first receiving groove
  • the diversion structure extends into the first receiving groove.
  • the installation bracket 2120 is also provided with a diversion structure 212 to guide the condensed water generated by the electric auxiliary heating device 300 to the drain pan main body 210a through the diversion structure 212.
  • the diversion structure 212 extends into the water receiving tank 2110 (for example, the first supporting tank). Among them, the water receiving tank 2110 is used to collect the condensed water generated by the electrical auxiliary heating device 300 and the heat exchanger and other components. The condensed water generated on the electric auxiliary heating device 300 flows into the water receiving tank 2110 through the diversion structure 212, so that the condensed water generated by the electric auxiliary heating device 300 and the condensed water generated by the heat exchanger and other parts can be collected together. , To facilitate the discharge of excess condensate.
  • the diversion structure 212 provided on the mounting bracket 120 can divert the condensed water generated on the electric auxiliary heating device 300, that is, the auxiliary heating function can be realized by installing the electric auxiliary heating device 300, and the electric auxiliary heating device 300 can be installed at the same time.
  • the purpose of the leakage of condensed water generated on the auxiliary heating device 300 is not limited to, the auxiliary heating device 300, the auxiliary heating function can be realized by installing the electric auxiliary heating device 300, and the electric auxiliary heating device 300 can be installed at the same time.
  • the mounting bracket includes a mounting part and a plurality of support parts, the mounting part is arranged across the first receiving groove and used to install the electric auxiliary heating device, one end of the plurality of support parts is connected to the side of the mounting part, and the plurality of support parts The other end is installed inside the first receiving groove.
  • the mounting bracket 2120 includes a mounting portion 2125 and a supporting portion 2126. The mounting portion 2125 is used for mounting the electric auxiliary heating device 300, and the mounting structure 222 is mounted on the mounting portion 2125.
  • One end of the plurality of supporting parts 2126 is connected to the side 2127 of the mounting part 2125, and the other end of the plurality of supporting parts 2126 is installed inside the water receiving groove 2110, and the diversion structure extends along the supporting part 2126 into the water receiving groove 2110.
  • an arc-shaped groove inner wall is provided inside the main body of the water receiving tray, and the outer side of the groove inner wall is used to form a first receiving groove, and the first receiving groove is curved.
  • the mounting part is located above the space enclosed by the inner side of the inner wall of the groove, and the supporting part is attached to the inner wall of the groove. For example, as shown in FIG.
  • a groove inner wall 2115 is provided inside the water receiving groove 2110, the groove inner wall 2115 is arc-shaped, and the outer side 2116 of the groove inner wall 2115 is used to form the water receiving groove 2110, and the water receiving groove 2110 is arc-shaped.
  • the support portion 2126 is attached to the groove inner wall 2115. By attaching the support portion 2126 to the groove inner wall 2115, the groove inner wall 2115 can provide a limit function to the support portion 2126, thereby ensuring the position stability of the support portion 2126, and further By ensuring the stability of the installation part 2125, a stable installation function for the electric auxiliary heating device 300 can be realized.
  • the water receiving tray further includes a clamping structure
  • the support part is installed on the water receiving tray main body through the clamping structure
  • the clamping structure includes a buckle and a clamping groove
  • the buckle is arranged on the bottom surface of the first receiving groove of the water receiving tray main body
  • the card slot is arranged on the support part, and the buckle is inserted into the card slot.
  • the water receiving tray 210 also includes a clamping structure (not marked in the figure), and the clamping structure is used to provide a clamping effect when the supporting portion 2126 and the water receiving tray main body 210a are installed.
  • the supporting portion 2126 can be stably installed on the water tray main body 210a through the clamping structure, and the installation stability of the supporting portion 2126 can be ensured by the arrangement of the clamping structure.
  • the bottom surface 2112a of the first receiving groove 2110 of the drain pan body 210a is provided with a buckle 2112, and the mounting bracket 2120 is provided with a groove 223, so that the mounting bracket 2120 can be installed through the cooperation between the buckle 2112 and the groove 223 For the purpose of the drain pan main body 210a.
  • the air conditioner 21 and the drain pan 210 provided in this embodiment can be provided with a mounting bracket 2120 on the drain pan body 210a to facilitate the installation of the electric auxiliary heating device 300 through the installation of the mounting bracket 2120.
  • the installation of the electric auxiliary heating device 300 can achieve the purpose of facilitating the improvement of the heating effect.
  • the mounting bracket 2120 can be arranged across the drain pan main body 210a to ensure the stability of the mounting bracket 2120 and at the same time prevent the mounting bracket 2120 from affecting the drain pan main body 210a to receive condensate water, and it is also convenient to reduce the water receiving
  • the size of the pan main body 210a reduces the influence on the air intake of the fan arranged under the water receiving pan main body 210a.
  • the diversion structure 212 is provided on the mounting bracket 2120 to guide the condensed water generated on the electric auxiliary heating device 300 to the drain pan main body 210a through the diversion structure 212, thereby facilitating the condensation of water on the electric auxiliary heating device 300
  • the collection to prevent the impact of condensate leakage. It can improve the installation stability of the electric auxiliary heating device 300 installed on the drain pan 210a, and at the same time, it can facilitate the collection of condensate water generated on the electric auxiliary heating device 300, avoid the leakage of condensate water, and improve the user experience.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)

Abstract

一种接水盘(110)及空调器(11),接水盘(110)包括接水盘主体(110a),接水盘主体(110a)包括相互连接的第一承接部(1100)和第二承接部(1200),第一承接部(1100)被配置为与空调的换热器(111)相连,并且第一承接部(1100)上开设有第一承接槽(1110),第一承接槽(1110)被配置为承接换热器(111)产生的冷凝水;第二承接部(1200)被配置为与出风组件(112)相连,并且第二承接部(1200)上开设有第二承接槽(1210),第二承接槽(1210)被配置为承接出风组件(112)产生的冷凝水。

Description

接水盘及空调器
本申请要求于2019年6月25日递交的中国专利申请第201910553867.2、中国专利申请第201910557556.3号以及中国专利申请第201910556914.9号的优先权,在此全文引用上述中国专利申请公开的内容以作为本申请的一部分。
技术领域
本公开实施例涉及一种接水盘及空调器。
背景技术
在如今空调技术普及的生活中,空调器已经在生活中扮演了重要的角色。随着科技的发展,空调技术逐步提高完善。空调器不仅是在夏天的制冷作用,还是在冬天的制热效果都是改善人们生活质量的功能。
发明内容
本公开至少一实施例提供一种接水盘,该接水盘包括接水盘主体,所述接水盘主体包括相互连接的第一承接部和第二承接部,所述第一承接部被配置为与空调的换热器相连,并且所述第一承接部上开设有第一承接槽,所述第一承接槽被配置为承接所述换热器产生的冷凝水;所述第二承接部被配置为与出风组件相连,并且所述第二承接部上开设有第二承接槽,所述第二承接槽被配置为承接所述出风组件产生的冷凝水。
例如,在本公开至少一实施例提供一种接水盘中,所述第一承接部位于所述换热器的冷凝水排出端,所述第二承接部位于所述出风组件的冷凝水排出端,以及所述第一承接部和所述第二承接部共同围成环形并形成开口。
例如,在本公开至少一实施例提供一种接水盘中,所述第一承接槽和所述第二承接槽均呈弧形设置,所述换热器在所述接水盘上的正投影位于所述第一承接槽内,所述出风组件的内周壁形成的弧形与所述第二承接槽相适配。
例如,在本公开至少一实施例提供一种接水盘中,所述第一承接部和所述第二承接部相连,所述第一承接槽和所述第二承接槽相连通。
例如,在本公开至少一实施例提供一种接水盘中,所述第一承接部和所 述第二承接部一体成型。
例如,在本公开至少一实施例提供一种接水盘中,所述第一承接部和所述第二承接部可拆卸连接。
例如,在本公开至少一实施例提供一种接水盘中,所述第一承接槽的两端分别与所述第二承接槽的两端相连通,并形成环形,所述第二承接槽和所述第一承接槽相连通的端部之间为阶梯形,所述第一承接部和所述第二承接部均呈弧形。
例如,在本公开至少一实施例提供一种接水盘中,所述第二承接槽的面对所述出风组件的底面高于所述第一承接槽的面对所述换热器的底面;以及所述第一承接部的顶面高于所述第二承接部的顶面,或者,所述第二承接部的顶面高于所述第一承接部的顶面。
例如,在本公开至少一实施例提供一种接水盘中,所述第一承接部的所述第一承接槽的底面上设置排水口,所述排水口与所述第一承接槽相连通,和/或所述第二承接部的所述第二承接槽的底面上设置排水口,所述排水口与所述第二承接槽相连通。
例如,在本公开至少一实施例提供一种接水盘中,所述接水盘的底部还设置有连接部,所述连接部用于连接后围板。
例如,在本公开至少一实施例提供一种接水盘中,所述接水盘还包括安装支架;所述安装支架被配置为安装电辅热装置,所述安装支架的至少一端连接于所述接水盘主体,并且所述安装支架还被配置为将所述电辅热装置产生的冷凝水引导至所述第一承接槽和所述第二承接槽的至少之一。
例如,在本公开至少一实施例提供一种接水盘中,所述安装支架横跨设置于所述接水盘主体的第一承接槽,所述安装支架上设置有导流结构,所述导流结构用于将所述电辅热装置上产生的水导向所述第一承接槽,所述安装支架的端部伸入所述第一承接槽并安装于所述第一承接槽内部,并且所述导流结构延伸至所述第一承接槽内部。
例如,在本公开至少一实施例提供一种接水盘中,所述安装支架包括安装部和多个支撑部,所述安装部横跨设置于所述第一承接槽并用于安装所述电辅热装置,多个所述支撑部的一端均连接于所述安装部的侧边,多个所述支撑部的另一端安装于所述第一承接槽的内部。
例如,在本公开至少一实施例提供一种接水盘中,所述接水盘主体内部 设置有弧形的槽内壁,所述槽内壁的外侧用于形成所述第一承接槽,并使得所述第一承接槽呈弧形;所述安装部位于所述槽内壁的内侧围成的空间上方,所述支撑部贴合于所述槽内壁。
例如,在本公开至少一实施例提供一种接水盘中,所述支撑部弯曲形成贴合部和抵持部,所述抵持部的一端连接于所述安装部,并且所述抵持部靠近所述贴合部的一端抵持于所述槽内壁,所述贴合部贴合于所述槽内壁。
例如,在本公开至少一实施例提供一种接水盘中,所述接水盘还包括卡持结构,所述支撑部通过卡持结构安装于所述接水盘主体,其中,所述卡持结构包括卡扣和卡槽,所述卡扣设置于所述接水盘主体的第一承接槽的底面,所述卡槽设置于所述支撑部,所述卡扣卡入所述卡槽的内部。
例如,在本公开至少一实施例提供一种接水盘中,所述接水盘还包括定位结构,所述定位结构用于所述支撑部和所述接水盘主体之间的安装定位,其中,所述定位结构包括定位孔和定位凸起,所述定位孔开设于所述支撑部的端面,所述定位凸起设置于所述接水盘主体的第一承接槽的底面,当所述安装支架安装于所述接水盘主体时,所述定位凸起伸入所述定位孔中。
例如,在本公开至少一实施例提供一种接水盘中,所述导流结构包括开设于所述安装支架上的导流槽,所述导流槽沿所述安装支架的延伸方向开设,并且所述导流槽与所述第一承接槽连通,其中,所述导流槽包括相互连通导流段和承接段,所述承接段位于所述安装支架的中部,所述承接段的宽度大于所述导流段的宽度。
例如,在本公开至少一实施例提供一种接水盘中,所述安装支架上还设置有安装结构,所述安装结构用于安装所述电辅热装置,并且所述安装结构设置于所述导流槽的承接段内,其中,所述安装结构的外侧与所述导流槽的侧壁之间在垂直于所述导流槽延伸方向的方向上形成间隙。
例如,在本公开至少一实施例提供一种接水盘中,所述安装结构包括卡持部和固定部,所述卡持部和所述固定部均设置于所述导流槽内部并间隔设置,所述电辅热装置卡持于所述卡持部,并且所述电辅热装置可拆卸地安装于所述固定部。
例如,在本公开至少一实施例提供一种接水盘中,所述安装结构凸设于所述导流槽内部,并且所述安装结构上开设有安装空腔,所述安装空腔用于安装所述电辅热装置。
本公开至少一实施例还提供一种空调器,该空调器包括换热器、出风组件和如上述任一项所述的接水盘,所述换热器安装于所述第一承接部,所述出风组件安装于所述第二承接部。
例如,在本公开至少一实施例还提供一种空调器中,所述空调器包括电辅热装置,所述接水盘还包括安装支架,所述安装支架的至少一端连接于所述接水盘主体,并且所述安装支架还被配置为将所述电辅热装置产生的冷凝水引导至所述第一承接槽和所述第二承接槽的至少之一,所述电辅热装置安装于所述安装支架。
附图说明
为了更清楚地说明本公开实施例的技术方案,下面将对实施例的附图作简单地介绍,显而易见地,下面描述中的附图仅仅涉及本发明的一些实施例,而非对本发明的限制。
图1为本公开一实施例中提供的空调器局部的爆炸结构示意图;
图2为本公开一实施例中提供的接水盘第一视角的结构示意图;
图3为本公开一实施例中提供的接水盘第二视角的结构示意图;
图4为本公开另一实施例中提供的接水盘的爆炸结构示意图;
图5为本公开另一实施例中提供的接水盘的结构示意图;
图6为本公开再一实施例中提供的空调器局部的结构示意图;
图7为图6中提供的接水盘的结构示意图;
图8为图7中提供的接水盘局部的放大示意图;
图9为图6中IV处的放大结构示意图;
图10为本公开再一实施例中提供的空调器局部的结构示意图;
图11为本公开再一实施例中提供的安装支架第一视角的结构示意图;
图12为本公开再一实施例中提供的安装支架第二视角的结构示意图;
图13为图10中VIII处的放大结构示意图;以及
图14为本公开一实施例中提供的安装块的结构示意图。
具体实施方式
为使本公开实施例的目的、技术方案和优点更加清楚,下面将结合本公开实施例的附图,对本公开实施例的技术方案进行清楚、完整地描述。显然, 所描述的实施例是本公开的一部分实施例,而不是全部的实施例。基于所描述的本公开的实施例,本领域普通技术人员在无需创造性劳动的前提下所获得的所有其他实施例,都属于本公开保护的范围。
除非另作定义,此处使用的技术术语或者科学术语应当为本公开所属领域内具有一般技能的人士所理解的通常意义。本公开中使用的“第一”、“第二”以及类似的词语并不表示任何顺序、数量或者重要性,而只是用来区分不同的组成部分。同样,“包括”或者“包含”等类似的词语意指出现该词前面的元件或者物件涵盖出现在该词后面列举的元件或者物件及其等同,而不排除其他元件或者物件。“连接”或者“连通”等类似的词语并非限定于物理的或者机械的连接,而是可以包括电性的连接,不管是直接的还是间接的。“上”、“下”、等仅用于表示相对位置关系,当被描述对象的绝对位置改变后,则该相对位置关系也可能相应地改变。
在相关技术中,在冬天空调器对室内或者指定的区域进行制热效果时,通常由于多种原因无法满足使用者的需求,即此时对于室内的制热效果不能达到使用者的预期。而如果增大空调器的功率以对室内的制热效果进行提升,在提升了较大功率的情况下制热效果同样提升的不明显,反而造成了耗电量的无谓增大,极大的造成了电能浪费。对于立式的空调器通常还是会出现漏液的现象,给使用者带来了极大的不便。空调器产生漏液不仅对使用该空调器的环境造成了影响,使得室内地面潮湿,对使用者造成不适;同时还有可能对空调器自身造成影响,可能会由于长期漏液造成空调器内侧积存污渍,并且难以清洗维护,影响空调器的使用。而在尝试增大接水盘的承接容积之后,依然会出现空调器漏液的现象。
为了改善空调器漏液的问题,本公开至少一实施例提供一种接水盘。该接水盘包括接水盘主体,接水盘主体包括相互连接的第一承接部和第二承接部,第一承接部被配置为与空调的换热器相连,并且第一承接部上开设有第一承接槽,第一承接槽被配置为承接换热器产生的冷凝水;第二承接部被配置为与出风组件相连,并且第二承接部上开设有第二承接槽,第二承接槽被配置为承接出风组件产生的冷凝水。
上述接水盘能通过第一承接部上开设的第一承接槽承接换热器上产生的冷凝水,并通过第二承接部上开设的第二承接槽承接出风组件上产生的冷凝水,进而能同时承接换热器和出风组件上产生的冷凝水,便能改善换热器和 出风组件上产生的冷凝水不能通过接水盘承接而泄漏的问题,实现了改善空调器漏液的问题。并且,第一承接部和第二承接部共同围成环形,以使得能通过接水盘中部的开口实现空调器内部气流顺畅的流动。
本公开实施例还提供一种空调器,该空调器包括换热器、出风组件如上述任一项所述的接水盘,所述换热器安装于所述第一承接部,所述出风组件安装于所述第二承接部。
下面将通过几个示例对本公开的实施例提供的接水盘进行非限制性的说明,如下面所描述的,在不相互抵触的情况下,这些具体示例中不同特征可以相互组合,从而得到新的示例,这些新的示例也都属于本公开保护的范围。
图1为本公开一实施例中提供的空调器局部的爆炸结构示意图。请参阅图1,本实施例中提供了一种空调器11,该空调器11能改善其漏液的问题,进而能保证使用者的使用体验,同时还能改善由于空调器11长期漏液造成的污渍堆积难以清洗维护的目的。
例如,空调器11包括接水盘110、换热器111、出风组件112和下出风风机113。其中,换热器111用于对流经换热器111的气流进行制热或者制冷。出风组件112则用于引导气流流经换热器111。并且接水盘110安装于后围板并位于下出风风机113的上方。需要说明的是,上方以及下方指代的均为当空调器11正常放置并正常工作时的上下方位。接水盘110用于承接换热器111上产生的冷凝水和出风组件112上产生的冷凝水。
由于换热器111上产生的冷凝水较多,所以接水盘110大多用于承接换热器111上产生的冷凝水,当空调器11依然出现冷凝水漏出的问题,通常认为换热器111上产生的冷凝水没有得到充分的收集,此时便对于换热器111下方的接水盘110进行改进,然而依然无法进一步改善空调器11漏液的问题。本实施例中提供的接水盘110能在承接换热器111时,同时承接出风组件12上产生的冷凝水,进而能避免出风组件112上产生的冷凝水漏出,便能实现改善空调器11漏液问题的目的。
需要说明的是,在本实施例中,出风组件112包括壳体(图未标)以及多个风机(图未标),当风机工作时能从空调器的上方进行出风,并且同时会在壳体的内周壁上形成冷凝水。另外,下出风风机113则设置于接水盘10的下方,并且当下出风风机113运作时,能从空调器11的下方进行出风。即,本实施例中提供的空调器11采用的出风方式为上下出风的方式。
图2为本公开一实施例中提供的接水盘第一视角的结构示意图;图3为本公开一实施例中提供的接水盘第二视角的结构示意图。请结合参阅图2和图3,接水盘110包括接水盘主体110a。接水盘主体110a包括第一承接部1100和第二承接部1200,第一承接部1100和第二承接部1200相互连接。并且,第一承接部1100用于安装换热器111。当空调器11正常使用时,换热器111安装于第一承接部1100,并且第一承接部1100位于换热器111的下方。另外,第二承接部1200用于设置于出风组件112的下方,即当空调器11正常使用时,第二承接部1200位于出风组件112的下方。进一步地,在本实施例中,第一承接部1100上开设有第一承接槽1110,并且第一承接槽1110位于换热器111的下方,进而能通过第一承接槽1110承接换热器111上产生的冷凝水。同理地,第二承接部1200上开设有第二承接槽1210,并且第二承接槽1210位于出风组件112的下方,进而能通过第二承接槽1210承接出风组件112上产生的冷凝水。并能实现对于换热器111上产生的冷凝水和出风组件112上产生的冷凝水进行收集的目的,进而实现改善空调器11漏液问题的目的。
例如,在本公开至少一实施例中,如图1所示,第一承接部1100位于换热器111的冷凝水排出端114,第二承接部1200位于出风组件112的冷凝水排出端115,以及第一承接部1100和第二承接部1200共同围成环形并形成开口。通过环形设置的第一承接部1100和第二承接部1200的设置,能适配于换热器111和出风组件112的形状,进而能使得第一承接部1100和第二承接部1200充分地对换热器111和出风组件112产生的冷凝水进行承接,进而改善空调器11漏液的问题。
需要说明的是,在公开的至少一实施例中,第一承接部1100和第二承接部1200采用一体成型的方式形成一个整体。
图4为本公开另一实施例中提供的接水盘的爆炸结构示意图,请参阅图4,在其它实施例中,第一承接部1100和第二承接部1200采用可拆卸连接的方式相互连接,即能通过将第一承接部1100和第二承接部1200设置为可拆卸连接,能便于第一承接部1100和第二承接部1200的安装以及拆卸,进而能便于第一承接部1100以及第二承接部1200的维护以及清洗。其中,第一承接部1100和第二承接部1200之间的可拆卸连接的方式可以为插槽连接的方式,也可以是卡扣连接的方式,或者是螺钉连接等方式。
另外,当第一承接部1100和第二承接部1200采用可拆卸连接的方式时,第一承接部1100和第二承接部1200相连接时,第一承接槽1110和第二承接槽1210可以为连通的状态,以便于第一承接槽1110和第二承接槽1210内部的冷凝水相汇集。应当理解,第一承接槽1110和第二承接槽1210也可以为相断开的情况,即,第一承接部1100上的第一承接槽1110以及第二承接部1200上的额第二承接槽1210均能独立运作,即在拆下第二承接部1200时,能通过第一承接槽1110承接换热器111的冷凝水;同理,可以在拆下第一承接部1100的情况下,能通过第二承接槽1210实现对于出风组件112上冷凝水的承接。
例如,在本公开的至少一实施例中,第一承接槽和第二承接槽均呈弧形设置,换热器在接水盘上的正投影位于第一承接槽内,出风组件的内周壁形成的弧形与第二承接槽相适配。如图2所示,第一承接部1100和第二承接部1200均呈弧形,并且第一承接部1100和第二承接部1200共同围成环形。换热器111在接水盘110上的正投影位于第一承接槽1110内,出风组件112的内周壁116形成的弧形与第二承接槽1210相适配。通过将第一承接部1100设置为弧形,能适配于换热器111的形状,进而能适应于换热器111的安装,同时能节省大量的接水盘110制作成本。即,能通过环形设置的第一承接部1100适配于换热器111,进而能便于换热器111的安装,并且同时能节省接水盘110的制作成本;同理,第二承接部1200通过环形设置的方式以适配于出风组件112,即在本实施例中,出风组件112中的产生冷凝水的侧壁为弧形,便能便于对于出风组件112上产生的冷凝水的承接,同时节省接水盘110的制作成本。
另外,第一承接部1100和第二承接部1200共同围成环形,便能在接水盘110的中部形成开口1300,能通过该开口1300适应于空调器11内部的气流循环,进而便于空调器11内部气流循环的顺畅。即,设置于接水盘110下方的下出风风机113的进风口与开口1300连通,进而使得下出风风机113能从开口1300进行进风,即,通过将接水盘110设置成环形,则能保证下出风风机113的进风,同时能使得空调器11内部的气流流动顺畅。
例如,在本公开的至少一实施例中,接水盘的底部还设置有连接部,连接部用于连接后围板。图5为本公开另一实施例中提供的接水盘的结构示意图,如图5所示,接水盘110的底部117还设置有连接部1400,连接部1400 设置于接水盘110的下方,进而能通过连接部1400和后围板的连接,进而使得接水盘110能稳定地安装,进而能保证接水盘110能稳定地对换热器111和出风组件112进行冷凝水的收集。
需要说明的是,在其他实施例中,可以不设置连接部1400,即能通过其他方式实现接水盘110稳定的安装,例如通过螺钉连接的方式或者卡扣连接的方式等。
例如,在本公开的至少一实施例中,第一承接槽的两端分别与第二承接槽的两端相连通,并形成环形,第一承接部和所述第二承接部均呈弧形。
如图2、图3以及图4所示,与第一承接部1100和第二承接部1200相对应的,在本实施例中,第一承接槽1110和第二承接槽1210同样呈弧形,即能通过第一承接槽1110适配于换热器111,同时通过第二承接槽1210适配于出风组件112。具体的,换热器111在接水盘110上的投影位于第一承接槽1110内,同时出风组件112的内周壁形成的弧形与第二承接槽1210相适配。进而能使得换热器111上产生的冷凝水能流入至第一承接槽1110中,并且出风组件112的内周壁116(图1所示)上产生的冷凝水能流入至第二承接槽1210中。通过第一承接槽1110对换热器111上产生冷凝水的接收,并通过第二承接槽1210对出风组件112上产生的冷凝水的接收,能实现改善空调器11漏液问题的目的。
进一步地,在本实施例中,通过将第一承接槽1110和第二承接槽1210相互连通,进而能使得第一承接槽1110承接的冷凝水能和第二承接槽1210承接的冷凝水汇集为一起,以便于第一承接槽和第二承接槽内部的冷凝水一起排出。具体地,在本实施例中,如图2所示,第一承接槽1110的其中一端与第二承接槽1210的端部相连通,进而能使得第一承接槽1110承接的冷凝水与第二承接部1200承接的冷凝水能汇集为一起,以便于冷凝水的汇集和排出。即在本实施例中,第一承接槽1110和第二承接槽1210同样围成环形,并且第一承接槽1110的其中一端和第二承接槽1210的两端相连通,即第一承接槽1110的两端分别与第二承接槽1210的两端相连通,便能使得第二承接槽1210承接的冷凝水能从第二承接槽1210的两端流入至第一承接槽1110内部进而实现冷凝水的汇集。
应当理解,在其他实施例中,也可以是第一承接槽1110内部的冷凝水能从第一承接槽1110的两端流入至第二承接槽1210内部。
例如,在本公开至少一实施例中,如图3所示,第一承接槽1110的宽度大于第二承接槽1210的宽度,以便于接收换热器111上产生的较多的冷凝水,并且第二承接槽1210和第一承接槽1110共用一侧壁的端部位于第一承接槽1110的内侧,以便于节省接水盘110占用的空间。
例如,在本公开至少一实施例中,第二承接槽的面对出风组件的底面高于第一承接槽的面对所述换热器的底面;以及第一承接部的顶面高于第二承接部的顶面,或者,第二承接部的顶面高于第一承接部的顶面。如图2所示,第二承接槽1210的底壁1212(即底面)高于第一承接槽1110的底壁(即底面)1112,进而能使得第二承接槽1210在承接出风组件112上产生的冷凝水之后,第二承接槽1210能将承接的冷凝水导流至第一承接槽1110,进而能便于第一承接槽1110和第二承接槽1210内部的冷凝水汇集为一起,并便于冷凝水的汇集和排出。另外,在本实施例中,第一承接部1100的顶部1113(即顶面)与第二承接部1200的顶部(即顶面)1213等高。需要说明的是,第一承接部1100和第二承接部1200等高指代的是,当空调器正常方式时,第一承接部1100的上侧最高面与第二承接部1200的上侧最高面等高。
例如,在本公开至少一实施例中,请参阅图5,第一承接部1100高于第二承接部1200,或者,第二承接部1200高于第一承接部1100。其中,第一承接部1100高于第二承接部1200指代的是,当接水盘110正常安装放置时第一承接部1100的顶部高于第二承接部1200的顶部,同理,第二承接部1200高于第一承接部1100指代的是,当接水盘110正常安装放置时第二承接部1200的顶部高于第一承接部1100的顶部。即,能按照接水盘110、换热器111以及出风组件112的实际安装情况对第一承接部1100以及第二承接部1200的高度进行设计,以便于使得第一承接部1100能适配于换热器111,使得第二承接部1200适配于出风组件112,保证第一承接部1100能稳定地对换热器111进行冷凝水承接,同时能保证第二承接部1200能稳定地对出风组件112进行冷凝水承接。
应当理解,在其他实施例中,第一承接部1100和第二承接部1200也可以等高设置。
例如,在本公开至少一实施例中,第二承接槽和第一承接槽相连通的端部之间为阶梯形。如图2所示,第二承接槽1210和第一承接槽1110相连通的端部之间为阶梯形,即第二承接槽1210的底壁所在平面和第一承接槽1110 的底壁所在平面之间通过另一平面相接并呈阶梯形,应当理解,在其他实施例中,第二承接槽1210和第一承接槽1110之间还可以通过斜面相接,即使得第二承接槽1210中的冷凝液能沿斜面导向至第一承接槽1110内部。
例如,在本公开至少一实施例中,第一承接部的第一承接槽的底面上设置排水口,排水口与第一承接槽相连通,和/或所述第二承接部的第二承接槽的底面上设置排水口,排水口与第二承接槽相连通。如图3所示,第一承接部1100的底面1112上还设置有排水口1120,排水口1120与第一承接槽1110相连通,以使得能通过排水口1120将第一承接槽和/或第二承接槽内部承接的冷凝水导出,进而便于冷凝水的排出。
应当理解,在其他实施例中,排水口1120也可以设置于第二承接部1200上,并使得排水口1120和第二承接槽1210相连通,便能实现对于冷凝水的汇集排出。另外,当第一承接部1100和第二承接部1200可拆卸连接,并且第一承接槽1110和第二承接槽1210相断开时,此时第一承接部1100和第二承接部1200上均开设有排水口1120,能使得第一承接槽1110和第二承接槽1210内部的冷凝水通过对应的排水口1120排出。当然,在第一承接槽1110和第二承接槽1210相连通时,也可以在第一承接槽1110和第二承接槽1210内部分别开设排水口1120。
在本公开实施例中,能通过第一承接部1100上设置的第一承接槽1110承接换热器111上产生的冷凝水,同时通过第二承接部1200上开设的第二承接槽1210承接出风组件112上产生的冷凝水。然后第二承接槽1210内部的冷凝水能流动至第一承接槽1110的内部,进而实现冷凝水的汇集。并且还能通过排水口1120将第一承接槽1110中汇集的冷凝水排出,进而能完成空调器11冷凝水的汇集和排出。实现改善空调器11冷凝水漏出的问题。
综上所述,本公开实施例中提供的空调器11能通过第一承接部1100上开设的第一承接槽1110承接换热器111上产生的冷凝水,并通过第二承接部1200上开设的第二承接槽1210承接出风组件112上产生的冷凝水,进而能同时承接换热器111和出风组件112上产生的冷凝水,便能改善换热器111和出风组件112上产生的冷凝水不能通过接水盘10承接而泄漏的问题,实现了改善空调器11漏液的问题。
例如,在本公开至少一实施例中,接水盘还包括安装支架。安装支架被配置为安装电辅热装置,安装支架的至少一端连接于接水盘主体,并且安装 支架还被配置为将电辅热装置产生的冷凝水引导至所述第一承接槽和第二承接槽的至少之一。由此,接水盘能够便于电辅热装置的安装,进而能便于通过电辅热装置对制热效果的有效提升,同时能便于降低接水盘主体的尺寸并不影响接水盘主体承接冷凝水的能力。
图6为本公开再一实施例中提供的空调器局部的结构示意图。请参阅图6,本公开至少一实施例提供了一种空调器21,该空调器21能便于提升对于室内或者指定区域的制热效果,同时还能避免空调器21出现漏水,进而提升用户的使用体验感。
图10为本公开再一实施例中提供的空调器局部的结构示意图,请结合参阅图6和图10,空调器10包括接水盘210和电辅热装置300(还可以包括图1中示出的换热器以及出风组件)。需要说明的是,该电辅热装置300安装于接水盘210上,进而能通过接水盘210承接电辅热装置300上产生的冷凝水,同时还能通过接水盘210向电辅热装置300提供安装承载作用。进而实现电辅热装置300的安装,进而便于电辅热装置300辅助制热的目的。另外,还能同时实现通过接水盘210承接电辅热装置300产生的冷凝水的目的。
即本实施例中提供的空调器21能通过将电辅热装置300安装于接水盘210,进而便于电辅热装置300的安装,同时能便于提升空调器21的制热效果。另外,还能通过接水盘210承接电辅热装置300上产生的冷凝水,进而避免电辅热装置300上产生的冷凝水泄漏,便能实现避免空调器21出现漏水情况的目的。
例如,在本公开至少一实施例中,安装支架横跨设置于接水盘主体的第一承接槽,安装支架上设置有导流结构,导流结构用于将电辅热装置上产生的水导向第一承接槽,安装支架的端部伸入第一承接槽并安装于第一承接槽内部,并且导流结构延伸至第一承接槽内部。图7为图6中提供的接水盘的结构示意图。如图6以及图7所示,接水盘210包括接水盘主体210a和安装支架2120。其中,安装支架2120横跨设置于接水盘主体210a并用于承接换热器等部件的冷凝水,安装支架2120安装于接水盘主体210a,并且安装支架2120用于电辅热装置300的安装。安装支架2120的至少一端连接于接水盘主体210a。在本实施例中,安装支架2120的两端均连接于接水盘主体210a,应当理解,安装支架2120也可以仅一端连接于接水盘主体210a。
如图6所示,安装支架2120上还设置有导流结构212,以通过导流结构 212将电辅热装置300产生的冷凝水导入至接水盘主体210a上。即,在本实施例中,能通过安装支架2120向电辅热装置300提供安装承载作用,并通过将安装支架2120横跨设置于接水盘主体210a,能避免电辅热装置300以及安装支架2120对接水盘主体210a内部造成影响,即能保证接水盘主体210a能有效地完成承接冷凝水的作业。并且,通过将安装支架2120横跨设置于接水盘主体210a,能有效缩小接水盘主体210a的尺寸,进而便于接水盘210a的设置,同时不影响接水盘主体210a的容积。另外,还能通过设置于安装支架120上的导流结构212对电辅热装置300上产生的冷凝水起到导流作用,即能实现通过安装电辅热装置300提供辅助加热作用,同时还能实现避免电辅热装置300上产生的冷凝水泄漏的目的。
如图6所示,接水盘主体210a包括第一承载部2100以及第二承载部2200。第一承载部2100上开设第一承载槽2110,第二承载2200部上开始第二承载槽2210。第一承载槽2110以及第二承载槽2210的结构可以参照前述实施例,不再详细赘述。
图8为图7中提供的接水盘局部的放大示意图,请结合参阅图6、图7和图8,安装支架2120的端部伸入至接水槽2110(例如,第一承载槽)内部,并安装于接水槽2110内部。并且同时,导流结构212延伸至接水槽2110内部。其中,接水槽2110用于收集容置电辅热装置300以及换热器等零部件产生的冷凝水。而电辅热装置300上产生的冷凝水则通过导流结构212流动至接水槽2110中,进而能将电辅热装置300产生的冷凝水和换热器等零部件产生的冷凝水汇集在一起,便于对多余的冷凝水进行排放。
例如,在本公开的至少一实施例中,导流结构212包括开设于安装支架上的导流槽,导流槽沿安装支架的延伸方向开设,并且导流槽与第一承接槽连通。图9为图6中IV处的放大结构示意图。如图8以及图9所示,导流结构212包括开设于安装支架2120上的导流槽221,并且导流槽221与接水槽2110相连通。即,在本实施例中,能通过导流槽221承接电辅热装置300上产生的冷凝水,并能通过导流槽221将承接的冷凝水导入至接水槽2110内部,便能实现对于电辅热装置300产生的冷凝水的承接与收集的目的。
需要说明的是,在其他实施例中,导流结构212还可以包括其他的结构,例如在安装支架2120上设置一导流杆,导流杆自电辅热装置300上延伸而出并伸入至接水槽2110内部,并且导流杆倾斜设置,电辅热装置300上产生的 冷凝水能沿导流杆流动至接水槽2110内部,即完成对于电辅热装置300上产生的冷凝水的导向与收集。
例如,在本公开至少一实施例中,导流槽包括相互连通导流段和承接段,承接段位于安装支架的中部,承接段的宽度大于导流段的宽度。图11为本公开再一实施例中提供的安装支架第一视角的结构示意图;图12为本公开再一实施例中提供的安装支架第二视角的结构示意图。如图11以及图12所示,导流槽221包括相互连通的承接段2211和导流段2212,其中,承接段2211位于安装支架2120的中部,导流段2212为两个并且分别设置于承接段2211的两侧,导流段2212自承接段2211延伸至接水槽2110并与接水槽2110连通。
例如,在本公开的至少一实施例中,安装支架上还设置有安装结构,安装结构用于安装所述电辅热装置,并且安装结构设置于导流槽的承接段内。如图7、图11以及图12所示,安装支架2120上还设置有安装结构222,安装结构222用于安装电辅热装置300,并且安装结构222设置于导流槽221内部。即在本实施例中,能通过安装结构222向电辅热装置300提供承载作用,进而能便于电辅热装置300的安装。另外,通过将安装结构222设置于导流槽221的内部,便能使得顺着安装结构222留下的冷凝水能流入至导流槽221的内部,进而能通过导流槽221对冷凝水进行承接和收集并导入至接水槽2110。
例如,在本公开的至少一实施例中,如图11以及图12所示,承接段2211的宽度大于导流段2212的宽度,安装结构222则设置于承接段2211的内部,同时承接段2211的宽度大于安装结构222的宽度。进而能保证安装结构222上电辅热装置300产生的冷凝水能流动至承接段2211中,便通过承接段2211对冷凝水进行承接,然后通过导流段2212的导向作用将冷凝水导入至接水槽2110内部。同时,还能使得安装结构222具有足够的宽度,进而保证安装结构222对于电辅热装置300提供足够的承载支撑作用,保证电辅热装置300能稳定的安装于安装结构222。
例如,在本公开的至少一实施例中,安装结构的外侧与导流槽的侧壁之间在垂直于导流槽延伸方向的方向上形成间隙。如图12所示,安装结构222的外侧2121与导流槽221的侧壁221a之间形成间隙2223。其中,该间隙2223形成于安装结构222上垂直于导流槽221延伸方向的方向上的两侧。进而使 得电辅热装置300上产生的冷凝水能自间隙2223流入至导流槽221,避免冷凝水附着于安装支架2120的外侧漏出导流槽221,同时也能通过间隙2223的设置便于电辅热装置300的安装。即能保证电辅热装置300上产生的冷凝水能沿电辅热装置300流动至导流槽221内部。
例如,在本公开至少一实施例中,安装结构包括卡持部和固定部,卡持部和固定部均设置于导流槽内部并间隔设置,电辅热装置卡持于卡持部,并且电辅热装置可拆卸地安装于固定部。如图8所示,安装结构222包括卡持部2224和固定部2225,其中,卡持部2224和固定部2225均设置于导流槽221的内部,并且卡持部2224和固定部2225间隔设置。当电辅热装置300安装于安装结构时,电辅热装置300卡持于卡持部2224并可拆卸的安装于固定部2225,进而实现电辅热装置300的稳定安装。
如图8所示,卡持部2224底部开设有卡持孔2226。图14为本公开一实施例中提供的安装块的结构示意图,如图6以及图14所示,对应的,电辅热装置300的侧面开设有与卡持孔2226相对应的卡持凸块310。
应当理解,在其他实施例中,也可以将卡持孔2226开设于电辅热装置300上,并在卡持部2224的侧面上凸设对应的卡持凸块310。另外,电辅热装置300上与卡持凸块310相对的一侧还设置有用于拆卸安装于固定部2225的安装凸块320,在本实施例中,安装凸块320通过螺钉可拆卸的安装于固定部2225,即安装凸块320上开设有通孔,对应的固定部2225上开设有与通孔相对应的螺纹孔,能通过螺钉穿过通孔并旋入螺纹孔的方式实现电辅热装置300的安装。
在本实施例中,如图8以及图14所示,安装电辅热装置300时,先将电辅热装置300上的卡持凸块310伸入至卡持孔2226中,然后以卡持凸块310为圆心转动电辅热装置300,以使得安装凸块320与固定部2225接触,同时使得通孔与螺钉孔相对应,便能通过在通孔和螺纹孔中旋入螺钉的方式实现电辅热装置300的安装。当需要拆卸电辅热装置300时,退出螺钉即可进行电辅热装置300的拆卸。
例如,如图14所示,电辅热装置300上设置的卡持凸块310和安装凸块320可以为可拆卸的部件,例如,电辅热装置300包括一安装块330,该安装块330上开设有用于卡持电辅热装置300的空腔,另外,安装块330上相对的侧面分别设置有卡持凸块310和安装凸块320,即能通过将安装块330通 过上述空腔安装于电辅热装置300的底部,便能完成电辅热装置300和安装结构222的可拆卸安装。
例如,在本公开至少一实施例中,安装结构凸设于导流槽内部,并且安装结构上开设有安装空腔,安装空腔用于安装电辅热装置。请结合参阅图10和图11,安装结构222为设置在导流槽221内部的凸块,其中安装结构222凸设于导流槽221的底壁上,并且安装结构222上开设有安装空腔2221,安装空腔2221能供于电辅热装置300插入,即能实现对于电辅热装置300的安装。并且,安装结构222的周壁上还开设有安装孔2222,安装孔2222贯穿安装空腔2221的侧壁并连通于安装空腔2221。能通过将螺钉穿过安装孔2222并连接于电辅热装置300以提高电辅热装置300的安装稳定性。应当理解,在其他实施例中,也可以取消安装孔2222的设置。
例如,在本公开的至少一实施例中,接水盘主体内部设置有弧形的槽内壁,槽内壁的外侧用于形成第一承接槽,并使得第一承接槽呈弧形;安装部位于槽内壁的内侧围成的空间上方,支撑部贴合于所述槽内壁。请继续参阅图6、图7、图8和图9,在本实施例中,接水槽2110内部设置有槽内壁2115,槽内壁2115呈弧形,并且槽内壁2115的外侧2116用于形成接水槽2110,并且使得接水槽2110呈弧形。其中,安装支架2120横跨设置于槽内壁2115内侧2117围成的空间。具体的,在本实施例中,槽内壁2115围成环形的空间,该空间可以开设为开口2114,即表现为在本实施例中接水盘主体210a的中部开设的开口2114。在本实施例中,安装支架2120横跨设置于开口2114的上方,并且安装支架2120的两端与接水盘主体2110连接。即,在本实施例中,安装支架2120呈拱形并横跨于开口2114上。通过拱形设置的安装支架2120,能提高安装支架2120对于电辅热装置300的承载能力,改善安装支架2120出现变形的问题,同时还能实现减小接水盘主体210a的尺寸的目的。另外,还能避免安装支架2120和电辅热装置300影响流经开口2114的气流,进而保证空调器21内部气流流动的顺畅,进而能避免对安装于接水盘210a下方的风机的进风造成影响。
需要说明的是,在本实施例中,安装结构222与导流槽221能接收安装结构222侧壁上流下的冷凝水,进而能避免冷凝水顺着安装支架2120的侧壁上滴落至开口2114中造成冷凝水泄漏的影响。即,通过安装结构222与导流槽221侧壁上形成的间隙2223能避免冷凝水顺着安装支架2120流动并滴落 至开口2114内。
例如,在本公开的至少一实施例中,安装支架包括安装部和多个支撑部,安装部横跨设置于第一承接槽并用于安装电辅热装置,多个支撑部的一端均连接于安装部的侧边,多个支撑部的另一端安装于第一承接槽的内部。如图9以及图11所示,安装支架2120包括安装部2125和支撑部2126,安装部2125用于电辅热装置300的安装,即在本实施例中,安装结构222安装于安装部2125上。多个支撑部2126的一端均连接于安装部2125的侧边2127,并且多个支撑部2126的另一端安装于接水槽2110内部,导流结构则沿支撑部2126延伸入接水槽2110内部。
例如,如图11所示,安装部2125和支撑部2126上均开设有槽,并且安装部2125上的槽和支撑部2126上的槽共同形成导流槽221。
例如,在本实施例中,在多个支撑部2126的支撑作用下,安装部2125位于开口2114的方,即安装部2125位于槽内壁2115围成的空间上方,能便于电辅热装置300的位置的设计。
例如,在本公开至少一实施例中,如图9所示,支撑部2126贴合于槽内壁2115,通过将支撑部2126贴合在槽内壁2115上,能通过槽内壁2115向支撑部2126提供限位作用,进而保证支撑部2126的位置稳定性,进一步地能保证安装部2125的稳定性,便能实现对于电辅热装置300稳定的安装作用。
例如,在本公开至少一实施例中,如图7以及图9所示,支撑部2126的数量为三个,三个支撑部2126分别设置于安装部2125的三个侧边,并且均伸入至接水槽2110内部,同时三个支撑部2126均贴合于槽内壁2115。其中,在本实施例中,槽内壁2115上还设置有凸台2151,凸台2151凸出于接水槽2110的底壁。并且,在本实施例中,凸台2151的形成还可以看作槽内壁2115远离接水槽2110底壁的一侧朝向开口2114凹陷,并在槽内壁2115靠近接水槽2110的底壁一侧形成凸台2151。其中一个支撑部2126的端部则抵持于凸台2151,以通过凸台2151向支撑部2126提供支撑,能保证安装支架2120整体的平衡。
需要说明的是,在本实施例中,部分导流槽221开设于支撑部2126,部分导流槽221则开设于安装部2125。并且在本实施例中,支撑部2126和安装部2125采用一体成型的方式形成。
例如,在本公开的至少一实施例中,支撑部弯曲形成贴合部和抵持部, 抵持部的一端连接于安装部,并且抵持部靠近贴合部的一端抵持于槽内壁,贴合部贴合于槽内壁。如图9所示,支撑部2126弯曲形成贴合部2262和抵持部2261,其中,抵持部2261的一端连接于安装部2125,并且抵持部2261靠近贴合部2262的一端抵持于槽内壁2115,贴合部2262贴合于槽内壁2115。具体的,在本实施例中,抵持部2261和安装部2125均位于开口2114上方,并且抵持部2261靠近贴合部2262的一端则抵持于槽内壁2115的上方,以进一步保证支撑部2126的稳定性,进而能保证整个安装支架2120的稳定性。
需要说明的是,在本实施例中,三个支撑部2126能提供夹持于槽内壁2115的作用力,以使得安装支架2120能稳定地安装于接水盘主体210。并且,在其他实施例中,支撑部2126的数量也可以不做限定,例如,支撑部2126还可以是两个或者四个或者五个等。
例如,在本公开至少一实施例中,如图6所示,安装支架2120的顶部与接水盘主体210a相平。其中,安装支架2120的顶部与接水盘主体210a相平指代的是,安装部2125大致与接水盘主体210a相平。并且,安装支架2120的顶部,即安装部2125,其高度高于接水盘主体210a,即安装部2125的底部高于接水盘主体210a。而在其他实施例中,安装部2125也可以设置与接水盘主体210a相齐平。
例如,在本公开至少一实施例中,图13为图10中VIII处的放大结构示意图。请结合参阅图10、图11、图12和图13,安装支架2120包括安装部2125和两个支撑部2126。两个支撑部2126分别立于接水盘主体210a上,同时两个支撑部2126的安装位置连线穿过开口2114。两个支撑部2126分别支撑于安装部2125的两侧,并使得安装部2125横跨设置于开口2114的上方。在本实施例中,支撑段大致垂直地立于接水盘主体210a上,并使得安装支架2120形成倒置的U形。应当理解,在其他实施例中,也可以将安装支架2120设置为圆弧形的拱形等。
例如,在本公开的至少一实施例中,接水盘还包括卡持结构,支撑部通过卡持结构安装于接水盘主体,卡持结构包括卡扣和卡槽,卡扣设置于所述接水盘主体的第一承接槽的底面,卡槽设置于所述支撑部,所卡扣卡入卡槽的内部。如图11、图12以及图13所示,接水盘210还包括卡持结构(图未标),卡持结构用于支撑部2126和接水盘主体210a安装时提供卡持作用,即支撑部2126能通过卡持结构稳定的安装于接水盘主体210a,通过卡持结构 的设置,能保证支撑部2126安装的稳定性。具体的,在本实施例中,接水盘主体210a的第一承接槽2110的底面2112a上设置有卡扣2112,安装支架2120上设置有卡槽223,便能通过卡扣2112和卡槽223之间的配合实现安装支架2120安装于接水盘主体210a的目的。通过卡扣2112和卡槽223的配合,能便于安装支架2120的安装和拆卸,进而便于安装支架2120的维护和更换。具体地,卡槽223开设于支撑部2126上,并且卡槽223贯穿导流槽221的侧壁与导流槽221连通。
例如,如图11、图12以及图13所示,安装支架2120端部上相对的两侧均开设有卡槽223,接水盘主体210a上对应设置有两个卡扣2112,两个卡扣2112分别卡入至两个卡槽223内部,进而完成安装支架2120的安装。其中,能通过安装支架2120相对的两侧对安装支架2120进行安装,便能向安装支架2120提供稳定的支撑作用,进而保证安装支架2120的安装稳定性。
例如,在本公开的至少一实施例中,接水盘还包括定位结构,定位结构用于支撑部和接水盘主体之间的安装定位,定位结构包括定位孔和定位凸起,定位孔开设于所述支撑部的端面,定位凸起设置于接水盘主体的第一承接槽的底面,当安装支架安装于所述接水盘主体时定位凸起伸入所述定位孔中。如图11、图12以及图13所示,接水盘210还包括定位结构(图未标),定位结构用于支撑部2126和接水盘主体210a安装时的安装定位,即能通过定位结构向支撑部2126提供定位作用,保证支撑部2126能精准地安装于接水盘主体210a上指定的位置,能降低支撑部2126安装于接水盘主体210a的安装难度。具体的,在本实施例中,安装支架2120的端面上还开设有定位孔2124,相应的,接水盘主体210a上设置有与定位孔2124相对应的定位凸起2113。当安装支架2120安装于接水盘主体210a时,定位凸起2113伸入至定位孔2124中。即能通过定位凸起2113和定位孔2124之间的配合,便能实现对于安装支架2120的安装定位,同时能对安装支架2120安装完成之后形成限位作用。即能便于安装支架2120的安装,同时还能保证安装支架2120的安装稳定性。
需要说明的是,安装支架2120的端部上设置有一个板,该板设置于导流槽221的延伸方向上,同时定位孔2124贯穿该板并与导流槽221的导流段2212向连通。
另外,需要说明的是,卡槽223和定位孔2124设置于接水盘主体210a 上同样能完成对于安装支架2120和接水盘主体210a的安装。但是,将卡槽223和定位孔2124设置于接水盘主体210a上,对接水盘主体210a的厚度要求则会提高,同时还需要考虑卡槽223和定位孔2124中积水的问题。所以,在优选的实施例中不采用上述的方式。
另外,需要说明的是,承接段2211设置于安装部2125的中部,另外,在本实施例中,安装部2125的两端均设置有连通于承接段2211的部分导流段2212。支撑段上同样设置有部分导流段2212。应当理解,在其他实施例中,可以将导流段2212全部设置于支撑段上,同时安装部2125上则只设置有承接段2211。
例如,本公开的至少一实施例还提供一种接水盘,接水盘包括接水盘主体以及安装支架。接水盘主体内设置承接部(例如,第一承接部)。例如,第一承接部被配置为与空调的换热器相连,以承接换热器产生的冷凝水,但本公开实施例不限于此。安装支架用于安装电辅热装置,并且横跨安装于接水盘主体,还被配置为将电辅热装置产生的冷凝水引导至接水盘主体的承接部。如图6以及图10所示,接水盘210包括接水盘主体210a和安装支架2120。其中,安装支架2120横跨设置于接水盘主体210a并用于承接换热器等部件的冷凝水,安装支架2120安装于接水盘主体210a,并且安装支架2120用于电辅热装置300的安装。
本公开提供的接水盘能通过横跨设置于接水盘主体上方的安装支架用于对电辅热装置进行安装,能便于电辅热装置的安装。同时还能避免电辅热装置以及安装支架对接水槽内部造成影响,即能保证接水槽能有效地完成承接冷凝水的作业。并且,通过将安装支架横跨设置于接水盘,能有效缩小接水盘的尺寸,进而便于接水盘的设置,同时不影响接水盘的容积。
需要说明的是,接水盘主体不限于图6以及图10所示的结构,接水盘主体的结构可以用于安装支架的部分以及具有承接安装支架引导的冷凝水的部分即可。图6以及图10所示的结构仅是接水盘主体的示例,接水盘主体也可以是其它满足上述条件的结构。
例如,第一承接部包括第一承接槽,安装支架横跨设置于接水盘主体的第一承接槽,安装支架上设置有导流结构,导流结构用于将电辅热装置上产生的水导向第一承接槽,安装支架的端部伸入第一承接槽并安装于第一承接槽内部,并且导流结构延伸至第一承接槽内部。如图6所示,安装支架2120 上还设置有导流结构212,以通过导流结构212将电辅热装置300产生的冷凝水导入至接水盘主体210a上。导流结构212延伸至接水槽2110(例如,第一承载槽)内部。其中,接水槽2110用于收集容置电辅热装置300以及换热器等零部件产生的冷凝水。而电辅热装置300上产生的冷凝水则通过导流结构212流动至接水槽2110中,进而能将电辅热装置300产生的冷凝水和换热器等零部件产生的冷凝水汇集在一起,便于对多余的冷凝水进行排放。通过设置于安装支架120上的导流结构212对电辅热装置300上产生的冷凝水起到导流作用,即能实现通过安装电辅热装置300提供辅助加热作用,同时还能实现避免电辅热装置300上产生的冷凝水泄漏的目的。
例如,安装支架包括安装部和多个支撑部,安装部横跨设置于第一承接槽并用于安装电辅热装置,多个支撑部的一端均连接于安装部的侧边,多个支撑部的另一端安装于第一承接槽的内部。如图9以及图11所示,安装支架2120包括安装部2125和支撑部2126,安装部2125用于电辅热装置300的安装,安装结构222安装于安装部2125上。多个支撑部2126的一端均连接于安装部2125的侧边2127,并且多个支撑部2126的另一端安装于接水槽2110内部,导流结构则沿支撑部2126延伸入接水槽2110内部。例如,接水盘主体内部设置有弧形的槽内壁,槽内壁的外侧用于形成第一承接槽,并使得第一承接槽呈弧形。安装部位于槽内壁的内侧围成的空间上方,支撑部贴合于槽内壁。例如,如图9所示,接水槽2110内部设置有槽内壁2115,槽内壁2115呈弧形,并且槽内壁2115的外侧2116用于形成接水槽2110,并且使得接水槽2110呈弧形。支撑部2126贴合于槽内壁2115,通过将支撑部2126贴合在槽内壁2115上,能通过槽内壁2115向支撑部2126提供限位作用,进而保证支撑部2126的位置稳定性,进一步地能保证安装部2125的稳定性,便能实现对于电辅热装置300稳定的安装作用。
例如,接水盘还包括卡持结构,支撑部通过卡持结构安装于接水盘主体,卡持结构包括卡扣和卡槽,卡扣设置于接水盘主体的第一承接槽的底面,卡槽设置于支撑部,卡扣卡入卡槽的内部。例如,如图11、图12以及图13所示,接水盘210还包括卡持结构(图未标),卡持结构用于支撑部2126和接水盘主体210a安装时提供卡持作用,即支撑部2126能通过卡持结构稳定的安装于接水盘主体210a,通过卡持结构的设置,能保证支撑部2126安装的稳定性。接水盘主体210a的第一承接槽2110的底面2112a上设置有卡扣2112, 安装支架2120上设置有卡槽223,便能通过卡扣2112和卡槽223之间的配合实现安装支架2120安装于接水盘主体210a的目的。
综上所述,本实施例中提供的空调器21及接水盘210能通过在接水盘主体210a上设置安装支架2120,以通过安装支架2120的设置便于电辅热装置300的安装,进而能通过电辅热装置300的安装实现便于提高制热效果的目的。能通过安装支架2120横跨于接水盘主体210a设置,保证安装支架2120的稳定性,并且同时能避免安装支架2120影响接水盘主体210a对于冷凝水的承接,同时还能便于减小接水盘主体210a的尺寸,减小对于设置于接水盘主体210a下方风机进风的影响。并且通过在安装支架2120上设置导流结构212,以通过导流结构212将电辅热装置300上产生的冷凝水导向至接水盘主体210a上,进而能便于电辅热装置300上冷凝水的收集,防止冷凝水漏出造成的影响。其能提高电辅热装置300安装于接水盘210a的安装稳定性,同时能便于电辅热装置300上产生的冷凝水的收集,避免冷凝水的泄漏,同时能提高用户的使用体验感。
虽然本发明披露如上,但本发明并非限定于此。任何本领域技术人员,在不脱离本发明的精神和范围内,均可作各种更动与修改,因此本发明的保护范围应当以权利要求所限定的范围为准。

Claims (23)

  1. 一种接水盘,其中,所述接水盘包括接水盘主体,所述接水盘主体包括相互连接的第一承接部和第二承接部,
    所述第一承接部被配置为与空调的换热器相连,并且所述第一承接部上开设有第一承接槽,所述第一承接槽被配置为承接所述换热器产生的冷凝水;
    所述第二承接部被配置为与出风组件相连,并且所述第二承接部上开设有第二承接槽,所述第二承接槽被配置为承接所述出风组件产生的冷凝水。
  2. 根据权利要求1所述的接水盘,其中,所述第一承接部位于所述换热器的冷凝水排出端,所述第二承接部位于所述出风组件的冷凝水排出端,以及
    所述第一承接部和所述第二承接部共同围成环形并形成开口。
  3. 根据权利要求1或2所述的接水盘,其中,所述第一承接槽和所述第二承接槽均呈弧形设置,
    所述换热器在所述接水盘上的正投影位于所述第一承接槽内,所述出风组件的内周壁形成的弧形与所述第二承接槽相适配。
  4. 根据权利要求1-3中任一项所述的接水盘,其中,所述第一承接部和所述第二承接部相连,所述第一承接槽和所述第二承接槽相连通。
  5. 根据权利要求4所述的接水盘,其中,所述第一承接部和所述第二承接部一体成型。
  6. 根据权利要求4所述的接水盘,其中,
    所述第一承接部和所述第二承接部可拆卸连接。
  7. 根据权利要求4所述的接水盘,其中,所述第一承接槽的两端分别与所述第二承接槽的两端相连通,并形成环形,
    所述第二承接槽和所述第一承接槽相连通的端部之间为阶梯形,所述第一承接部和所述第二承接部均呈弧形。
  8. 根据权利要求1-7任一所述的接水盘,其中,所述第二承接槽的面对所述出风组件的底面高于所述第一承接槽的面对所述换热器的底面;以及
    所述第一承接部的顶面高于所述第二承接部的顶面,或者,所述第二承接部的顶面高于所述第一承接部的顶面。
  9. 根据权利要求1-8任一所述的接水盘,其中,所述第一承接部的所述 第一承接槽的底面上设置排水口,所述排水口与所述第一承接槽相连通,和/或所述第二承接部的所述第二承接槽的底面上设置排水口,所述排水口与所述第二承接槽相连通。
  10. 根据权利要求1-9任一所述的接水盘,其中,所述接水盘的底部还设置有连接部,所述连接部用于连接后围板。
  11. 根据权利要求1-7任一所述的接水盘,其中,所述接水盘还包括安装支架;
    所述安装支架被配置为安装电辅热装置,所述安装支架的至少一端连接于所述接水盘主体,并且所述安装支架还被配置为将所述电辅热装置产生的冷凝水引导至所述第一承接槽和所述第二承接槽的至少之一。
  12. 根据权利要求11所述的接水盘,其中,所述安装支架横跨设置于所述接水盘主体的第一承接槽,所述安装支架上设置有导流结构,所述导流结构用于将所述电辅热装置上产生的水导向所述第一承接槽,所述安装支架的端部伸入所述第一承接槽并安装于所述第一承接槽内部,并且所述导流结构延伸至所述第一承接槽内部。
  13. 根据权利要求12所述的接水盘,其中,所述安装支架包括安装部和多个支撑部,所述安装部横跨设置于所述第一承接槽并用于安装所述电辅热装置,多个所述支撑部的一端均连接于所述安装部的侧边,多个所述支撑部的另一端安装于所述第一承接槽的内部。
  14. 根据权利要求13所述的接水盘,其中,所述接水盘主体内部设置有弧形的槽内壁,所述槽内壁的外侧用于形成所述第一承接槽,并使得所述第一承接槽呈弧形;
    所述安装部位于所述槽内壁的内侧围成的空间上方,所述支撑部贴合于所述槽内壁。
  15. 根据权利要求14所述的接水盘,其中,所述支撑部弯曲形成贴合部和抵持部,所述抵持部的一端连接于所述安装部,并且所述抵持部靠近所述贴合部的一端抵持于所述槽内壁,所述贴合部贴合于所述槽内壁。
  16. 根据权利要求13-15中任一项所述的接水盘,其中,所述接水盘还包括卡持结构,所述支撑部通过卡持结构安装于所述接水盘主体,
    其中,所述卡持结构包括卡扣和卡槽,所述卡扣设置于所述接水盘主体的第一承接槽的底面,所述卡槽设置于所述支撑部,所述卡扣卡入所述卡槽 的内部。
  17. 根据权利要求13-16任一所述的接水盘,其中,所述接水盘还包括定位结构,所述定位结构用于所述支撑部和所述接水盘主体之间的安装定位,
    其中,所述定位结构包括定位孔和定位凸起,所述定位孔开设于所述支撑部的端面,所述定位凸起设置于所述接水盘主体的第一承接槽的底面,当所述安装支架安装于所述接水盘主体时,所述定位凸起伸入所述定位孔中。
  18. 根据权利要求12-17中任一项所述的接水盘,其中,所述导流结构包括开设于所述安装支架上的导流槽,所述导流槽沿所述安装支架的延伸方向开设,并且所述导流槽与所述第一承接槽连通,
    其中,所述导流槽包括相互连通导流段和承接段,所述承接段位于所述安装支架的中部,所述承接段的宽度大于所述导流段的宽度。
  19. 根据权利要求18所述的接水盘,其中,所述安装支架上还设置有安装结构,所述安装结构用于安装所述电辅热装置,并且所述安装结构设置于所述导流槽的承接段内,
    其中,所述安装结构的外侧与所述导流槽的侧壁之间在垂直于所述导流槽延伸方向的方向上形成间隙。
  20. 根据权利要求19所述的接水盘,其中,所述安装结构包括卡持部和固定部,所述卡持部和所述固定部均设置于所述导流槽内部并间隔设置,所述电辅热装置卡持于所述卡持部,并且所述电辅热装置可拆卸地安装于所述固定部。
  21. 根据权利要求19或20所述的接水盘,其中,所述安装结构凸设于所述导流槽内部,并且所述安装结构上开设有安装空腔,所述安装空腔用于安装所述电辅热装置。
  22. 一种空调器,其中,包括换热器、出风组件和如权利要求1-21任一所述的接水盘,所述换热器安装于所述第一承接部,所述出风组件安装于所述第二承接部。
  23. 根据权利要求22所述的空调器,其中,所述空调器包括电辅热装置,所述接水盘还包括安装支架,所述安装支架的至少一端连接于所述接水盘主体,并且所述安装支架还被配置为将所述电辅热装置产生的冷凝水引导至所述第一承接槽和所述第二承接槽的至少之一,
    所述电辅热装置安装于所述安装支架。
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