Air conditioner indoor unit and air conditioner
11555630 · 2023-01-17
Assignee
Inventors
- Qiang Qin (Foshan, CN)
- Xinchang Chen (Foshan, CN)
- Xiansong Wang (Foshan, CN)
- Zhenmin Cui (Foshan, CN)
- Tao Rao (Foshan, CN)
Cpc classification
F24F13/222
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/0209
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/084
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F1/0057
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F1/0007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/0245
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F2013/227
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F24F13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An air conditioner indoor unit includes an air outlet frame, a front water receiving tray, and a panel. The air outlet frame includes an upper enclosure plate, a lower enclosure plate, and a side enclosure plate located between and connecting the upper enclosure plate and the lower enclosure plate. The front water receiving tray is above the upper enclosure plate and includes a protrusion section protruding out of the side enclosure plate and a water outlet hose at the protrusion section. The water outlet hose is configured to be received in a receiving cavity formed below the protrusion section and opening forward. The panel includes a cover member configured to cover the receiving cavity when the panel is in a closed state.
Claims
1. An air conditioner indoor unit, comprising: an air outlet frame including: an upper enclosure plate; a lower enclosure plate; and a side enclosure plate located between and connecting the upper enclosure plate and the lower enclosure plate; a front water receiving tray above the upper enclosure plate and including: a protrusion section protruding out of the side enclosure plate; and a water outlet hose at the protrusion section, the water outlet hose being configured to be received in a receiving cavity formed below the protrusion section, and the receiving cavity opening forward; and a panel including a cover member configured to cover the receiving cavity when the panel is in a closed state.
2. The indoor unit of claim 1, further comprising: a chassis; and a face frame including: an upper support; a lower frame; and a side connector located between and connecting the upper support and the lower frame; wherein the panel includes: an upper panel, an upper end of the upper panel being connected to a front end of the upper support; and a lower panel cooperated with the upper panel to cover a front side of the face frame, a lower end of the lower panel being connected to a lower end of the chassis, the lower panel including an air outlet connected to the air outlet frame, and the cover member being arranged at the lower panel.
3. The indoor unit of claim 2, wherein: the cover member includes: a side board extending rearwards from a side of the air outlet; and a convex board protruding rearwards, an upper end edge of the convex board being tightly connected to an upper edge of the air outlet, a lower end edge of the convex board being tightly connected to a lower edge of the air outlet, and a first side end of the convex board being tightly connected to the side board; and a second side end of the convex board opposite to the first side end is configured to tightly abut against an outer board surface of the side enclosure plate when the lower panel is in a closed state.
4. The indoor unit of claim 3, wherein the side enclosure plate includes a support edge arranged on an outer panel surface of the side enclosure plate and configured to abut against a rear board surface of the convex board when the lower panel is in the closed state.
5. The indoor unit of claim 3, wherein a gap is formed between the convex board and the water outlet hose when the lower panel is in the closed state.
6. The indoor unit of claim 3, further comprising: an air guide assembly arranged at the lower panel and including: an air deflector provided at the air outlet; and a driving mechanism configured to drive the air deflector; wherein the convex board, the side board, and the side enclosure plate enclose to form an avoiding cavity opening forward opening, the air deflector being rotatably received in the avoiding cavity.
7. The indoor unit of claim 6, further comprising: an electric control box; wherein: the driving mechanism includes a connecting wire; the driving mechanism is arranged on an outside surface of the side board and connected to the electric control box through the connecting wire; and a length of the connecting wire is greater than a distance between a connection point of the connecting wire and the driving mechanism and a connection point of the connecting wire and the electric control box when the lower panel is in an open state.
8. The indoor unit of claim 7, further comprising: two connecting terminals arranged on the connecting wire and detachably connected with each other.
9. The indoor unit of claim 7, wherein: the cover member and the driving mechanism are both arranged at one end of the air outlet adjacent to the electric control box; and the connecting wire is accommodated in the receiving cavity when the lower panel is in the closed state.
10. The indoor unit of claim 2, wherein: the lower panel further includes a connecting plate extending backwards from an edge of the air outlet; and when the lower panel is in a closed state, the connecting plate is connected to an inner wall surface of an air duct of the air outlet frame.
11. An air conditioner, comprising: an indoor unit an air outlet frame including: an upper enclosure plate; a lower enclosure plate; and a side enclosure plate located between and connecting the upper enclosure plate and the lower enclosure plate; a front water receiving tray above the upper enclosure plate and including: a protrusion section protruding out of the side enclosure plate; and a water outlet hose at the protrusion section, the water outlet hose being configured to be received in a receiving cavity formed below the protrusion section, and the receiving cavity opening forward; and a panel including a cover member configured to cover the receiving cavity when the panel is in a closed state.
12. The air conditioner of claim 11, wherein the indoor unit further includes: a chassis; and a face frame including: an upper support; a lower frame; and a side connector located between and connecting the upper support and the lower frame; wherein the panel includes: an upper panel, an upper end of the upper panel being connected to a front end of the upper support; and a lower panel cooperated with the upper panel to cover a front side of the face frame, a lower end of the lower panel being connected to a lower end of the chassis, the lower panel including an air outlet connected to the air outlet frame, and the cover member being arranged at the lower panel.
13. The air conditioner of claim 12, wherein: the cover member includes: a side board extending rearwards from a side of the air outlet; and a convex board protruding rearwards, an upper end edge of the convex board being tightly connected to an upper edge of the air outlet, a lower end edge of the convex board being tightly connected to a lower edge of the air outlet, and a first side end of the convex board being tightly connected to the side board; and a second side end of the convex board opposite to the first side end is configured to tightly abut against an outer board surface of the side enclosure plate when the lower panel is in a closed state.
14. The air conditioner of claim 13, wherein the side enclosure plate includes a support edge arranged on an outer panel surface of the side enclosure plate and configured to abut against a rear board surface of the convex board when the lower panel is in the closed state.
15. The air conditioner of claim 13, wherein a gap is formed between the convex board and the water outlet hose when the lower panel is in the closed state.
16. The air conditioner of claim 13, wherein: the indoor unit further includes an air guide assembly arranged at the lower panel and including: an air deflector provided at the air outlet; and a driving mechanism configured to drive the air deflector; and the convex board, the side board, and the side enclosure plate enclose to form an avoiding cavity opening forward opening, the air deflector being rotatably received in the avoiding cavity.
17. The air conditioner of claim 16, wherein: the indoor unit further includes an electric control box; the driving mechanism includes a connecting wire; the driving mechanism is arranged on an outside surface of the side board and connected to the electric control box through the connecting wire; and a length of the connecting wire is greater than a distance between a connection point of the connecting wire and the driving mechanism and a connection point of the connecting wire and the electric control box when the lower panel is in an open state.
18. The air conditioner of claim 17, wherein the indoor unit further includes two connecting terminals arranged on the connecting wire and detachably connected with each other.
19. The air conditioner of claim 17, wherein: the cover member and the driving mechanism are both arranged at one end of the air outlet adjacent to the electric control box; and the connecting wire is accommodated in the receiving cavity when the lower panel is in the closed state.
20. The air conditioner of claim 12, wherein: the lower panel further includes a connecting plate extending backwards from an edge of the air outlet; and when the lower panel is in a closed state, the connecting plate is connected to an inner wall surface of an air duct of the air outlet frame.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The technical solutions of the embodiments of the present disclosure will be clearly described in the following with reference to the accompanying drawings. It is obvious that the embodiments to be described are only some rather than all of the embodiments of the present disclosure. All other embodiments obtained by persons skilled in the art based on the embodiments of the present disclosure without creative efforts shall fall within the scope of the present disclosure.
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DESCRIPTION OF REFERENCE NUMERALS
(10) TABLE-US-00001 Refer- Refer- ence ence Numeral Name Numeral Name 11 Rear enclosure plate 111 Through hole 6 Electric control box 21 Side connector 3 Air outlet frame 31 Upper enclosure plate 32 Lower enclosure plate 33 Side enclosure plate 331 support edge 4 Front water receiving tray 41 Protrusion section 42 Receiving cavity 43 Water outlet hose 5 Panel 51 Air outlet 52 First cover member 53 Second cover member 54 Air deflector 55 Driving mechanism 56 Upper panel 57 Lower panel 571 Connecting plate 531 Convex board 532 Side board 551 Connecting wire 552 Connecting terminal
(11) The implementation, functional characteristics and advantages of the present disclosure will be further described with reference to the attached drawings in combination with embodiments.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(12) As following, the technical solution in the embodiments of the present disclosure will be described clearly with reference to the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only some of the embodiments of the present disclosure, not all of the embodiments. Based on the embodiments of the present disclosure, all other embodiments perceived by those ordinary skills in the art without creative effort should be fallen within the scope of the present disclosure.
(13) It should be noted that all directional indicators (such as upper, lower, left, right, front, rear, etc.) in the embodiments of the present disclosure are only used to explain the relative positional relationship, movement, etc., between various assemblies under a certain specific posture (as shown in the drawings). If the specific posture changes, the directional indicator will also change accordingly.
(14) In addition, descriptions related to “first,” “second,” etc., in the exemplary embodiments of present disclosure, can only be used for descriptive purposes, and cannot be understood as indicating or suggesting relative importance or impliedly indicating the number of the indicated technical character. Therefore, the character indicated by “first,” “second” can expressly or impliedly include at least one character. In addition, the technical solutions of various embodiments can be combined with each other as long as there is no conflict.
(15) The present disclosure proposes an air conditioner indoor unit.
(16) In some embodiments of the present disclosure, referring to
(17) For at least one receiving cavity 42, a through hole 111 is formed at a position of the rear enclosure plate 11 that corresponds to an opening of the water outlet hose 43. The drainage pipe (not shown) of the air conditioner indoor unit is passed through the through hole 111 to be detachably connected to the water outlet hose 43. That is, the connection portion of the water outlet hose 43 and the drainage pipe is accommodated in the receiving cavity 42. In addition, in some embodiments, an air guide vane of the air conditioner indoor unit may be arranged in the air outlet 51 of the panel 5.
(18) In the present embodiment, the air guide assembly can be opened together with the panel 5, and the front side of the cavity 42 containing the water outlet hose 43 can be exposed by opening the panel 5. Thus, when it needs to the drainage pipe needs to be mounted or dismounted, the drainage pipe and the water outlet hose 43 can be easily separated from each other in the receiving cavity 42 formed at the front of the air conditioner indoor unit. As such, it is more convenient to dismount or mount the water outlet hose 43 and the drainage pipe. Meanwhile, the panel 5 further includes the first cover member 52 and the second cover member 53, which are configured for covering the two containing cavities 42, respectively. When the panel 5 is in the closed state and the air conditioner indoor unit is in use, the internal assemblies exposed from the receiving cavity 42 are effectively blocked by the two cover members, thereby preventing cold wind outputted by the air conditioner indoor unit from entering the receiving cavities 42, further preventing the occurrence of condensation in the air conditioner indoor unit. In addition, in the technical solution of the present disclosure, as the air guide assembly can be opened together with the panel 5, it is convenient to remove the air duct assembly relevant to the air outlet frame 3, thereby providing a great convenience for maintaining and cleaning the relevant components.
(19) Specifically, referring to
(20) Specifically, referring to
(21) Further, referring to
(22) Referring to
(23) Further, when the lower panel 557 is in an open state, a distance between a connection point of the connecting wire 551 and the motor and a connection point of the connecting wire 551 and the electric control box 6 is L, and a length of the connecting wire 551 is greater than L. When the lower panel 57 is in the closed state, the connecting wire 551 is accommodated in the receiving cavity 42. The overlong setting of the connecting wire 551 can prevent the lower panel 57 from pulling and damaging the connecting wire 551 during the rotation of the lower panel 57. And the connecting wire does not interfere with the rotation of the lower panel 57. Further, referring to
(24) In addition, referring to
(25) The present disclosure also provides an air conditioner. The air conditioner includes an air conditioner indoor unit. For the specific structure of the air conditioner indoor unit, reference can be made to the above exemplary embodiments. As the air conditioner adopts all the technical solutions of the above exemplary embodiments, the air conditioner at least has all of the beneficial effects of the technical solutions of the above exemplary embodiments, and details thereof are not repeated.
(26) The foregoing description merely portrays some illustrative embodiments according to the disclosure and therefore is not intended to limit the scope of the disclosure. Any equivalent structural or flow transformations that are made taking advantage of the specification and accompanying drawings of the disclosure and any direct or indirect applications thereof in other related technical fields shall all fall in the scope of the disclosure.