Air conditioner
By exposing the humidification component through a cutout in the front panel, the air conditioner addresses the issue of user visibility, allowing for timely detection of dirt or damage and enhancing maintenance awareness.
Patent Information
- Application Number
- CN202422377436.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-27
AI Technical Summary
Existing air conditioners cannot enable users to intuitively perceive the dirt and damage of humidification components, making it difficult to grasp their status in a timely manner.
Set a notch on the front panel of the air conditioner to expose the humidification assembly from the notch. Users can intuitively observe the dirt and damage of the humidification assembly, and improve the ease of assembly operation and stability through the design of the support frame and bracket, and at the same time, a drainage system is set to prevent water dripping.
It improves users' perception of humidification components, promptly detects dirt and damage, ensures the stability and safety of humidification effects, and avoids short circuits of electrical components.
Smart Images

Figure CN223106181U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air conditioners, and more specifically, to an air conditioner. Background Art
[0002] An air conditioner is an electrical device commonly used to adjust the indoor environmental temperature. However, the long-term operation of the air conditioner will cause the relative humidity of the indoor air to drop, accelerating the loss of moisture on the surface of the human skin, resulting in poor user experience, and even posing potential health hazards to the human body. Therefore, many users will purchase an air humidifier to humidify the air in the room, but this will increase the user's burden and also take up additional space in the user's room. To address the above problems, in related technologies, a humidifying component is integrated into the air conditioner, which not only increases the functions of the air conditioner but also reduces the cost burden on users when using the air conditioner and reduces the occupation of indoor space.
[0003] However, for the air conditioner with a humidifying function provided by related technologies, users cannot intuitively perceive the humidifying component, and thus it is difficult to timely grasp the soiling and damage conditions of the humidifying component. Summary of the Utility Model
[0004] The problem solved by the utility model is how to improve the user's perception of the humidifying component, that is, how to enable the user to intuitively perceive the humidifying component, and thus timely grasp the soiling and damage conditions of the humidifying component.
[0005] To solve the above problems, the utility model provides an air conditioner, including:
[0006] A housing;
[0007] A front panel, which is connected to the housing and has a notch; and,
[0008] A humidifying component, which is assembled to at least one of the housing and the front panel and is exposed from the notch.
[0009] By providing a notch on the front panel to expose the humidifying component from the notch, the user can directly observe the soiling and damage conditions of the humidifying component through the notch, that is, the user can intuitively perceive the humidifying component through the notch, and thus timely grasp the soiling and damage conditions of the humidifying component, improving the user's perception of the humidifying component.
[0010] In an alternative embodiment, the front panel is assembled to the front side of the housing, and an installation position is provided on the front side of the housing. The humidifying component is configured to be inserted into the installation position from the front side of the housing.
[0011] Configuring the humidifying component to be inserted into the installation position from the front side of the housing can ensure that the operation of assembling the humidifying component to the housing is more convenient, that is, improve the ease of assembly of the humidifying component to the housing.
[0012] In an alternative embodiment, the humidifying assembly includes a support frame and a humidifying member. The humidifying member is assembled to the support frame, and the support frame is configured to be embedded in the installation position from the front side of the housing.
[0013] Configuring the support frame to be assembled to the installation position from the front side of the housing can ensure that the operation of assembling the support frame to the housing is simpler, that is, improve the ease of assembly of the humidifying member to the housing through the support frame.
[0014] In an alternative embodiment, the support frame is configured to be snap - connected to the housing from the front side of the housing.
[0015] Snap - connecting the support frame to the housing from the front side of the housing ensures, on the one hand, the ease of operation of assembling the support frame to the housing, and on the other hand, ensures the stability of the support frame assembled to the housing.
[0016] In an alternative embodiment, the support frame is provided with a groove, and the humidifying member is inserted into the groove from the front side of the support frame.
[0017] With such a setting, on the one hand, it can ensure the ease of operation of assembling the humidifying member to the support frame, and on the other hand, it can ensure the stability of the humidifying member assembled to the support frame; moreover, it can ensure that the humidifying member is exposed from the notch of the front panel, improving the visibility of the humidifying member, which is beneficial for users to timely grasp the dirt, damage, etc. of the humidifying member.
[0018] In an alternative embodiment, the humidifying assembly further includes a bracket, and the humidifying member is assembled to the groove through the bracket; wherein,
[0019] The bracket is provided with a plug - in space and a plug - in port communicating with the plug - in space, and the humidifying member is inserted into the plug - in space from the plug - in port; and / or,
[0020] The bracket is further provided with an air inlet and an air outlet, and the humidifying member is located between the air inlet and the air outlet.
[0021] Assembling the humidifying member to the support frame through the bracket ensures the ease of operation of assembling the humidifying member to the support frame. And setting a plug - in port on the bracket so that the humidifying member can be inserted into the plug - in space of the bracket ensures the ease of operation and stability of the humidifying member assembled to the bracket.
[0022] When the air inlet and the air outlet are arranged on the bracket opposite to the humidifying member, the wind blowing through the humidifying member from the air inlet can take the moisture on the humidifying member out from the air outlet, realizing the problem of increasing the environmental humidity.
[0023] In an alternative embodiment, the plug - in port is arranged at the upper end of the bracket; and / or,
[0024] The lower end of the bracket is also provided with a water outlet communicating with the insertion space, and the water outlet is used to make the liquid on the humidifying member drip onto the groove wall of the groove.
[0025] Setting the insertion port at the upper end of the bracket can, on the one hand, ensure the ease of assembling the humidifying member to the bracket, and on the other hand, ensure the stability of the humidifying member assembled to the bracket.
[0026] A water outlet is provided at the lower end of the bracket so that the water dripping from the humidifying member can drip onto the groove wall of the groove through the water outlet, which is beneficial to improving the problem that the excess water on the humidifying member flows randomly, and improving the problem that the excess water on the humidifying member causes the other electrical components of the air conditioner to short-circuit when encountering water.
[0027] In an alternative embodiment, the bracket is further provided with a water receiving groove located in the insertion space; the air conditioner further includes a drain pipe communicating with the water receiving groove to drain the liquid received in the water receiving groove and dripping from the humidifying member.
[0028] By providing a water receiving groove in the bracket and connecting the drain pipe to the water receiving groove, the excess water dripping from the humidifying member into the water receiving groove can be drained in time, so as to improve the problem that the excess water on the humidifying member flows randomly, and improve the problem that the excess water on the humidifying member causes the other electrical components of the air conditioner to short-circuit when encountering water.
[0029] In an alternative embodiment, a water receiving groove is provided on the groove wall of the groove, and the water receiving groove is used to receive the liquid dripping from the humidifying member.
[0030] By providing a water receiving groove on the groove wall of the groove to receive the excess water dripping from the humidifying member, the problem that the excess water on the humidifying member flows randomly can be improved, and the problem that the excess water on the humidifying member causes the other electrical components of the air conditioner to short-circuit when encountering water can be improved.
[0031] In an alternative embodiment, the air conditioner further includes a drain pipe connected to the support frame and communicating with the water receiving groove for draining the liquid in the water receiving groove.
[0032] Through the setting of the drain pipe, the water in the water receiving groove can be drained in time, which is beneficial to improving the problem that the water in the water receiving groove overflows and causes the other electrical components of the air conditioner to short-circuit when encountering water. Description of the Drawings
[0033] Figure 1 is a schematic structural diagram of the air conditioner in the embodiment of the present utility model;
[0034] Figure 2 is an exploded schematic diagram of the partial structure of the air conditioner in the embodiment of the present utility model;
[0035] Figure 3 is Figure 2 the enlarged view of part Ⅲ in
[0036] Figure 4 This is a schematic exploded view of the humidifying component in the embodiment of the present utility model.
[0037] Explanation of the reference numerals in the drawings:
[0038] 010 - Air conditioner; 100 - Housing; 101 - Installation position; 102 - Buckle; 103 - Card interface; 110 - Middle frame; 121 - Top plate; 122 - Side plate; 200 - Front panel; 210 - Notch; 300 - Humidifying component; 310 - Support frame; 311 - Groove; 312 - Water receiving tank; 313 - Drain pipe; 314 - Assembly groove; 315 - Boss; 316 - Through hole; 320 - Humidifying element; 330 - Bracket; 332 - Insertion interface; 333 - Air inlet; 334 - Air outlet; 335 - Water falling port. Detailed implementation manners
[0039] An air conditioner is an electrical device commonly used to adjust the indoor environmental temperature; in order to expand the functions of the air conditioner, related technologies have also integrated a humidifying component on the air conditioner so that the air conditioner can also be used to increase the humidity of the air.
[0040] However, such air conditioners cannot enable users to intuitively perceive the humidifying component, and thus it is difficult to timely grasp the dirt and damage conditions of the humidifying component.
[0041] In order to improve the above problems, this embodiment discloses an air conditioner that enables users to intuitively perceive the humidifying component, and thus can timely grasp the dirt and damage conditions of the humidifying component.
[0042] To make the above objects, features, and advantages of the present utility model more obvious and understandable, the following detailed description of the specific embodiments of the present utility model will be given with reference to the accompanying drawings.
[0043] Please refer to Figure 1 , the air conditioner 010 in this embodiment refers to a wall-mounted indoor unit, which includes a housing 100, a fan (not shown in the figure), and a heat exchange component (not shown in the figure). The fan and the heat exchange component are both assembled in the housing 100, and the housing 100 is provided with a first air outlet; the fan can blow the gas that has passed through the heat exchange of the heat exchange component out from the first air outlet to achieve the purpose of adjusting the indoor environmental temperature. Of course, in other embodiments, the air conditioner 010 may also refer to a floor-standing indoor unit, which is not specifically limited herein.
[0044] Further, the air conditioner 010 further includes a first air deflector (not shown in the figure). The first air deflector is movably connected to the housing 100 and is located at the first air outlet. The first air deflector is used to block or open the first air outlet. When the first air deflector opens the first air outlet, the wind can blow out from the first air outlet, and by adjusting the angle of the first air deflector, the air outlet direction can be adjusted; when the first air deflector blocks the first air outlet, problems such as dust falling inside the housing 100 can be reduced, and the aesthetics of the air conditioner 010 can be improved.
[0045] Optionally, in order to reduce the problem that the wind blows directly at the human body when using the air conditioner 010, causing discomfort in the body feeling; the first air deflector is also provided with a first air outlet hole (not shown in the figure). When the first air deflector blocks the first air outlet, the wind can blow out through the first air outlet hole, so that the wind can be dispersed, thereby improving the problem that the wind blows directly at the user, and by preventing the wind from blowing directly at the user, the user's comfort in use is improved.
[0046] Optionally, the first air deflector can be an arc-shaped plate or a flat plate, and no specific limitation is made here.
[0047] It should be noted that the method of adjusting the air outlet direction using the first air deflector is similar to the related art and will not be elaborated here.
[0048] Optionally, the air conditioner 010 further includes a motor (not shown in the figure). The motor is assembled on the housing 100 and is in transmission connection with the first air deflector to drive the first air deflector to rotate by using the motor to block or open the first air outlet.
[0049] It should be understood that in some embodiments, the number of the first air deflectors can also be increased or decreased according to needs. For example: two first air deflectors are provided, or three first air deflectors are provided, etc., and no specific limitation is made here.
[0050] In some embodiments, the first air outlet hole may not be provided on the first air deflector, or the first air outlet hole may be provided only on one of the first air deflectors.
[0051] It should be understood that when using the air conditioner 010, the air conditioner 010 is also connected to an outdoor unit through a pipeline. The structure of the outdoor unit and the principle of cooperating with the air conditioner 010 to work are similar to the related art and will not be elaborated here.
[0052] Please refer to Figure 1 and Figure 2, in order to integrate the humidifying function on the air conditioner 010; the air conditioner 010 further includes a front panel 200 and a humidifying component 300. The front panel 200 is connected to the housing 100, and an air duct (not shown in the figure) is formed between the front panel 200 and the housing 100. The wind blown by the fan can enter the air duct. The humidifying component 300 is assembled in the housing 100 and located in the air duct; wherein, the front panel 200 is provided with a notch 210, and the humidifying component 300 is exposed from the notch 210. The wind blown into the air duct will first blow through the humidifying component 300 and then blow out from the notch 210. Therefore, the wind blown out from the notch 210 can carry the moisture on the humidifying component 300 out, achieving the purpose of humidifying the environment.
[0053] By providing the notch 210 on the front panel 200 to expose the humidifying component 300 from the notch 210, users can directly observe the dirt and damage conditions of the humidifying component 300 through the notch 210, that is, users can directly perceive the humidifying component 300 through the notch 210, and then timely master the dirt and damage conditions of the humidifying component 300, improving the user's perception of the humidifying component 300.
[0054] It should be understood that in other embodiments, the humidifying component 300 can also be assembled on the front panel 200, which is not specifically limited here.
[0055] In other embodiments, no air duct is formed between the front panel 200 and the housing 100. When the air conditioner 010 cools or heats, the wind blown by the fan will not enter between the front panel 200 and the housing 100, and thus will not blow towards the humidifying component 300. The air conditioner 010 is additionally equipped with an auxiliary fan for the humidifying component 300 to blow air towards the humidifying component 300 to carry the moisture on the humidifying component 300 out from the notch 210, achieving the purpose of humidification.
[0056] Further, please refer to Figure 2 and Figure 3 , the front panel 200 is assembled on the front side of the housing 100. The front side of the housing 100 is provided with an installation position 101, and the humidifying component 300 is configured to be inserted into the installation position 101 from the front side of the housing 100. Configuring the humidifying component 300 to be inserted into the installation position 101 from the front side of the housing 100 can ensure that the operation of assembling the humidifying component 300 on the housing 100 is more convenient, that is, improving the easy assembly of the humidifying component 300 on the housing 100.
[0057] Optionally, the installation position 101 on the front side of the housing 100 is an inwardly concave installation space provided on the front side of the housing 100. Embedding the humidifying component 300 into the inwardly concave installation space from front to back can also ensure the structural compactness and stability after assembly.
[0058] The structure of the humidifying component 300 can be set as needed; please refer to Figure 2and Figure 3 In this embodiment, the humidifying component 300 includes a support frame 310 and a humidifying member 320. The humidifying member 320 is assembled to the support frame 310, and the support frame 310 is configured to be embedded in the installation position 101 from the front side of the housing 100. Configuring the support frame 310 to be assembled to the installation position 101 from the front side of the housing 100 can ensure that the operation of assembling the support frame 310 to the housing 100 is simpler, that is, it improves the ease of assembly of the humidifying member 320 to the housing 100 through the support frame 310.
[0059] Among them, the humidifying member 320 refers to sponges, foams, etc. that can absorb and store water, and no specific limitation is made here. The material of the humidifying member 320 is usually relatively soft. Assembling the humidifying member 320 to the installation position 101 through the support frame 310 can support the humidifying member 320 by using the support frame 310 to prevent the humidifying member 320 after absorbing water from wrinkling under the weight of water. Furthermore, the humidifying member 320 has a large windward area to utilize the wind blowing through the humidifying member 320 to efficiently and reliably carry out the moisture on the humidifying member 320, achieving a good humidifying effect.
[0060] The connection method between the support frame 310 and the housing 100 can be selected as needed; please refer to Figure 2 and Figure 3 In this embodiment, the support frame 310 is configured to be snap-connected to the housing 100 from the front side of the housing 100. Connecting the support frame 310 to the housing 100 by snap connection from the front side of the housing 100 ensures the ease of operation of assembling the support frame 310 to the housing 100 on the one hand, and ensures the stability of the support frame 310 assembled to the housing 100 on the other hand.
[0061] Optionally, the housing 100 is connected with a buckle 102, and the support frame 310 is provided with a snap-in port 103; the buckle 102 is inserted into the snap-in port 103 and is snap-connected to the support frame 310; specifically, the support frame 310 is inserted into the installation position 101 from front to back, and at the same time the buckle 102 is inserted into the snap-in port 103 from back to front and is snap-connected to the support frame 310. In this way, the ease of assembly of the support frame 310 and the stability after assembly can be ensured.
[0062] Of course, in other embodiments, the housing 100 is provided with a snap-in port 103, the support frame 310 is connected with a buckle 102, and the buckle 102 is inserted into the snap-in port 103 from front to back along with the support frame 310 and is snap-connected to the housing 100.
[0063] It should be understood that in other embodiments, the connection method between the housing 100 and the support frame 310 can also be connected by fasteners such as bolts, and no specific limitation is made here.
[0064] Optionally, please refer to Figure 2 and Figure 3, the housing 100 includes a middle frame 110. The middle frame 110 is provided with a first air outlet. Both the first air deflector and the front panel 200 are connected to the middle frame 110, and an air duct is formed between the front panel 200 and the middle frame 110. The middle frame 110 is provided with a mounting position 101 and a buckle 102.
[0065] Furthermore, the housing 100 further includes a top plate 121 and two side plates 122. Both the top plate 121 and the two side plates 122 are connected to the middle frame 110. The two side plates 122 are opposite and spaced apart at both ends in the length extension direction of the top plate 121. An installation position 101 is formed between the top plate 121 and the two side plates 122; both the top plate 121 and the two side plates 122 are connected with buckles 102, and the buckle 102 connected to the top plate 121 is located at one end of the top plate 121 away from the middle frame 110, and the buckle 102 connected to the side plate 122 is located at one end of the side plate 122 away from the middle frame 110; a card interface 103 is provided at the upper end of the support frame 310, and assembly grooves 314 are provided at both ends in the length extension direction of the support frame 310, and a card interface 103 is provided at the bottom of the assembly groove 314; the buckle 102 connected to the top plate 121 is inserted into and clamped with the card interface 103 at the upper end of the support frame 310; the buckle 102 connected to the side plate 122 is inserted into and clamped with the card interface 103 at the end in the length extension direction of the support frame 310, and the side plate 122 is inserted into the assembly groove 314. With such a setting, the stability of the support frame 310 assembled to the housing 100 can be improved, and further the stability of the humidifying member 320 assembled to the housing 100 can be ensured.
[0066] The connection manners of the top plate 121 and the side plates 122 to the middle frame 110 include but are not limited to integral molding, snap connection, and bonding.
[0067] Optionally, please refer to Figure 4 , the support frame 310 is provided with a groove 311, and the humidifying member 320 is inserted into the groove 311 from the front side of the support frame 310. With such a setting, on the one hand, the easy operation of the humidifying member 320 assembled to the support frame 310 can be ensured, and on the other hand, the stability of the humidifying member 320 assembled to the support frame 310 can be ensured; moreover, it can ensure that the humidifying member 320 is exposed from the notch 210 of the front panel 200, improving the visibility of the humidifying member 320, which is beneficial for users to timely master the dirt, damage and other conditions of the humidifying member 320.
[0068] It should be noted that the above "front" and "rear" refer to the relative positions of the air conditioner 010; specifically, the term "front" refers to the front side (i.e., the side away from the wall surface and other installation positions) after the air conditioner 010 is assembled to the wall surface and other installation positions, and the term "rear" refers to the rear side (i.e., the side facing the wall surface and other installation positions) after the air conditioner 010 is assembled to the wall surface and other installation positions.
[0069] Optionally, please refer to Figure 4 , the humidifying component 300 further includes a bracket 330, and the humidifying member 320 is assembled in the groove 311 through the bracket 330. Assembling the humidifying member 320 to the support frame 310 through the bracket 330 can not only improve the ease of assembly of the humidifying member 320 to the support frame 310, but also further provide the support provided by the bracket 330 to the humidifying member 320, so as to improve the problem of the humidifying member 320 wrinkling under the weight of water, and further ensure that the humidifying member 320 has a larger wind-receiving surface, so as to utilize the wind blowing through the humidifying member 320 to efficiently and reliably carry out the water on the humidifying member 320, and achieve a good humidifying effect.
[0070] Furthermore, the bracket 330 is provided with a plugging space and a plugging port 332 communicating with the plugging space, and the humidifying member 320 is plugged into the plugging space from the plugging port 332; with such a setting, the ease of operation and stability of the humidifying member 320 assembled to the bracket 330 are ensured.
[0071] Still further, the plugging port 332 is provided at the upper end of the bracket 330; with such a setting, on the one hand, the ease of operation of the humidifying member 320 assembled to the bracket 330 can be ensured, and on the other hand, the humidifying member 320 can be prevented from detaching from the front side of the bracket 330, and further the stability of the humidifying member 320 assembled to the bracket 330 is ensured.
[0072] Optionally, please refer to Figure 4 , a water dropping port 335 communicating with the plugging space is further provided at the lower end of the bracket 330, and the water dropping port 335 is used to make the liquid on the humidifying member 320 drip onto the groove wall of the groove 311. By providing the water dropping port 335 at the lower end of the bracket 330, the water dripping from the humidifying member 320 can drip onto the groove wall of the groove 311 through the water dropping port 335, which is beneficial to improving the problem of the excess water on the humidifying member 320 flowing randomly, and improving the problem of the excess water on the humidifying member 320 causing the other electrical components of the air conditioner 010 to be short-circuited by water.
[0073] Furthermore, a water receiving groove 312 is provided on the groove wall of the groove 311, and the water receiving groove 312 is used to receive the liquid dripping from the humidifying member 320; specifically, the excess water flowing down from the humidifying member 320 can drip into the water receiving groove 312 through the water dropping port 335 of the bracket 330. By providing the water receiving groove 312 on the groove wall of the groove 311 to receive the excess water dripping from the humidifying member 320, the problem of the excess water on the humidifying member 320 flowing randomly can be improved, and the problem of the excess water on the humidifying member 320 causing the other electrical components of the air conditioner 010 to be short-circuited by water can be improved.
[0074] Furthermore, the air conditioner 010 further includes a drain pipe 313. The drain pipe 313 is connected to the support frame 310 and communicates with the water receiving tank 312, and is used to drain the liquid in the water receiving tank 312. Through the arrangement of the drain pipe 313, the water in the water receiving tank 312 can be drained in time, which is beneficial to improving the problem that the water in the water receiving tank 312 overflows and causes the other electrical components of the air conditioner 010 to short-circuit due to water.
[0075] It should be noted that the water receiving tank 312 and the drain pipe 313 are arranged on the support frame 310. When it is necessary to take out the humidifying member 320 for replacement and maintenance, it is not necessary to disassemble and assemble the water receiving tank 312 and the drain pipe 313, which is beneficial to reducing the disassembly and assembly procedures and improving the convenience.
[0076] Optionally, please refer to Figure 4 , a boss 315 is further connected to the bottom of the water receiving tank 312. The boss 315 is used to support the bracket 330, that is, when the bracket 330 is embedded in the groove 311, it is supported by the boss 315. The arrangement of the boss 315 can lift the bracket 330 so that the bottom of the bracket 330 is spaced from the bottom of the water receiving tank 312, thereby ensuring the receiving capacity of the water receiving tank 312 and improving the problem of liquid overflow in the water receiving tank 312.
[0077] It should be understood that in other embodiments, the lower end of the bracket 330 is not provided with a water outlet 335, and the water receiving tank 312 is arranged on the bracket 330, and the water receiving tank 312 is located in the insertion space; the drain pipe 313 connected to the support frame 310 communicates with the water receiving tank 312 to drain the liquid dripping from the humidifying member 320 received in the water receiving tank 312; specifically, the bracket 330 is further provided with a drain hole communicating with the water receiving tank 312, and the drain hole communicates with the drain pipe 313 connected to the support frame 310, so that the drain pipe 313 can communicate with the water receiving tank 312 arranged on the bracket 330. By arranging the water receiving tank 312 on the bracket 330 and connecting the drain pipe 313 and the water receiving tank 312, the excess water dripping from the humidifying member 320 into the water receiving tank 312 can be drained in time, so as to improve the problem that the excess water on the humidifying member 320 flows randomly, and improve the problem that the excess water on the humidifying member 320 causes the other electrical components of the air conditioner 010 to short-circuit due to water. Moreover, arranging the water receiving tank 312 on the bracket 330 can also synchronously disassemble the water receiving tank 312 when the humidifying member 320 needs to be taken out by synchronously disassembling the bracket 330. The water receiving tank 312 is always received below the humidifying member 320 to improve the problem of water droplets dripping from the humidifying member 320.
[0078] In this embodiment, please refer to Figure 4, the bracket 330 is further provided with an air inlet 333 and an air outlet 334. Both the air inlet 333 and the air outlet 334 are communicated with the insertion space. The humidifying member 320 is located between the air inlet 333 and the air outlet 334. The air inlet 333 is located in the air duct, and the air outlet 334 is distributed opposite to the notch 210. With such a setting, the wind blowing through the humidifying member 320 from the air inlet 333 can carry the moisture on the humidifying member 320 out from the air outlet 334, realizing the problem of increasing the environmental humidity.
[0079] Further, the air inlet 333 and the air outlet 334 are respectively located on both sides of the humidifying member 320, so that the wind entering the air duct can reliably blow from one side of the air inlet 333, pass through the humidifying member 320, and then blow out from the air outlet 334 and the notch 210, ensuring the reliability and efficiency of humidification.
[0080] Still further, the support frame 310 is further provided with a through hole 316. The through hole 316 penetrates the bottom of the groove 311 and is distributed opposite to the air inlet 333, so as to ensure that the wind in the air duct can pass through the through hole 316 and the air inlet 333 and blow towards the humidifying member 320, thereby ensuring the reliability of carrying out the moisture on the humidifying member 320.
[0081] Optionally, in some embodiments, the air conditioner 010 further includes a second air deflector (not shown in the figure). The second air deflector is movably connected to the middle frame 110 and is located at the entrance of the air duct to open or block the entrance of the air duct and can guide the wind into the air duct. Through the setting of the second air deflector, the wind can be more reliably guided into the air duct, and the wind entering the air duct can blow through the humidifying member 320 and then blow out from the notch 210, so as to stably and reliably carry out the moisture on the humidifying member 320, that is, ensure a stable and reliable humidifying effect.
[0082] Further, a second air outlet hole may be provided on the second air deflector. When the second air deflector blocks the entrance of the air duct, the second air outlet hole is used to allow at least part of the wind to enter the air duct. When the second air deflector opens the entrance of the air duct, the surface of the second air deflector can guide the wind into the air duct. When the second air deflector blocks the entrance of the air duct, the wind can enter the air duct through the second air outlet hole to reduce the air volume entering the air duct and the air volume blowing towards the humidifying member 320. When the second air deflector opens the entrance of the air duct, the surface of the second air deflector can be used to guide the wind into the air duct to increase the air volume entering the air duct and the air volume blowing towards the humidifying member 320. In this way, the air volume entering the air duct can be adjusted through the second air deflector, so as to realize the adjustment of the humidifying amount to meet more user needs.
[0083] It should be noted that the second air deflector can be driven by a motor assembled on the middle frame 110 to open or block the entrance of the air duct.
[0084] Of course, in some other embodiments, the second air guide plate may not be provided with the second air outlet holes.
[0085] Optionally, the air conditioner 010 further includes a water tank (not shown in the figure) and a water pump (not shown in the figure) disposed in the water tank for delivering the water stored in the water tank to the humidifying member 320; the water tank is assembled to the housing 100. Among them, the position where the water tank is assembled to the housing 100, as well as the structure of the water tank and the position and structure where the water pump is assembled to the water tank, are similar to those in the related art and will not be elaborated here.
[0086] When the air conditioner 010 of this embodiment is cooling or heating, it can make the air blown by the fan enter the air duct between the front panel 200 and the housing 100, and make the air blow out from the notch 210 of the front panel 200 after passing through the humidifying member 320 of the humidifying assembly 300, so as to carry out the moisture on the humidifying member 320 and achieve the purpose of humidification.
[0087] To sum up, the humidifying assembly 300 of the air conditioner 010 of the present utility model is exposed from the notch 210 of the front panel 200, so that the user can directly observe the dirt and damage conditions of the humidifying assembly 300 through the notch 210, that is, the user can directly perceive the humidifying assembly 300 through the notch 210, and then timely master the dirt and damage conditions of the humidifying assembly 300, improving the user's perception of the humidifying assembly 300.
[0088] Although the present utility model is disclosed as above, the present utility model is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present utility model. Therefore, the protection scope of the present utility model should be subject to the scope defined by the claims.
Claims
1. An air conditioner, characterized in that, Comprising: A housing (100); A front panel (200), the front panel (200) is connected to the housing (100), and the front panel (200) is provided with a notch (210); And, A humidifying component (300), the humidifying component (300) is assembled to at least one of the housing (100) and the front panel (200), and is exposed from the notch (210).
2. The air conditioner according to claim 1, characterized in that, The front panel (200) is assembled to the front side of the housing (100), an installation position (101) is provided on the front side of the housing (100), and the humidifying component (300) is configured to be inserted into the installation position (101) from the front side of the housing (100).
3. The air conditioner according to claim 2, characterized in that, The humidifying component (300) includes a support frame (310) and a humidifying member (320), the humidifying member (320) is assembled to the support frame (310), and the support frame (310) is configured to be embedded in the installation position (101) from the front side of the housing (100).
4. The air conditioner according to claim 3, wherein The support frame (310) is configured to be snap-connected to the housing (100) from the front side of the housing (100).
5. The air conditioner according to claim 3, characterized in that The support frame (310) is provided with a groove (311), and the humidifying member (320) is inserted into the groove (311) from the front side of the support frame (310).
6. The air conditioner according to claim 5, characterized in that, The humidifying component (300) further includes a bracket (330), and the humidifying member (320) is assembled to the groove (311) through the bracket (330); wherein, The bracket (330) is provided with a plugging space and a plugging port (332) communicating with the plugging space, and the humidifying member (320) is plugged into the plugging space from the plugging port (332); and / or, The bracket (330) is further provided with an air inlet (333) and an air outlet (334), and the humidifying member (320) is located between the air inlet (333) and the air outlet (334).
7. The air conditioner according to claim 6, wherein, The plugging port (332) is provided at the upper end of the bracket (330); and / or, A water drainage port (335) communicating with the plugging space is further provided at the lower end of the bracket (330), and the water drainage port (335) is used for dripping the liquid on the humidifying member (320) onto the groove wall of the groove (311).
8. The air conditioner according to claim 6, wherein, The bracket (330) is further provided with a water receiving groove (312), and the water receiving groove (312) is located in the plugging space; the air conditioner further includes a drain pipe (313), and the drain pipe (313) communicates with the water receiving groove (312) to discharge the liquid received in the water receiving groove (312) and dripping from the humidifying member (320).
9. The air conditioner according to claim 5, characterized in that, A water receiving groove (312) is provided on the groove wall of the groove (311), and the water receiving groove (312) is used for receiving the liquid dripping from the humidifying member (320).
10. The air conditioner according to claim 9, characterized in that, The air conditioner further includes a drain pipe (313), and the drain pipe (313) is connected to the support frame (310) and communicates with the water receiving groove (312) for discharging the liquid in the water receiving groove (312).