Air conditioning apparatus

By designing air guide plates and drive components in air conditioning equipment, the flow area between the mist outlet and the mist guide port is changed, solving the problem that the mist range and height are affected by the air outlet, thus improving the user experience and comfort.

CN120702041BActive Publication Date: 2025-11-25GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202511205470.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2025-11-25
Estimated Expiration
2045-08-27

AI Technical Summary

Technical Problem

The height and range of the fog output are easily affected by the air outlet, resulting in a poor user experience.

Method used

An air conditioning device was designed, comprising a housing, a mist outlet assembly, an air guide plate, and a drive assembly. The drive assembly drives the air guide plate to move, changing the flow area between the mist outlet and the mist guide port, thereby changing the mist outlet range and height.

Benefits of technology

It improves user experience and comfort, avoids the impact of air outlets on fogging, and allows for flexible adjustment of fogging range and height.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120702041B_ABST
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Abstract

The application relates to the technical field of air conditioning equipment, and discloses air conditioning equipment which comprises a shell, a mist outlet assembly, an air deflector and a driving assembly; the shell is provided with a mist outlet and an air outlet, and the mist outlet and the air outlet are arranged close to each other; the mist outlet assembly is arranged in the shell, the mist outlet assembly is provided with a mist guide opening, the mist guide opening is arranged opposite to the mist outlet and is in communication with the mist outlet; the air deflector is arranged in the shell and is movably arranged between the mist outlet and the mist guide opening so as to change the flow area between the mist outlet and the mist guide opening; and the driving assembly is movably connected to the shell and is used for driving the air deflector to move. The air conditioning equipment provided by the application can drive the air deflector to move through the driving assembly, change the flow area between the mist outlet and the mist guide opening, and further change the air outlet height or the mist outlet height of the mist outlet.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of air conditioning equipment, in particular to air conditioning equipment. BACKGROUND

[0002] In air conditioning equipment such as humidifiers, electric heaters or ventilation systems, a wind guide structure is usually provided to guide the air outlet or mist outlet. In some air conditioning equipment, an air outlet assembly and a mist outlet assembly are usually provided to operate independently. An air outlet and a mist outlet are usually provided on the shell to respectively guide the air outlet and the mist outlet. However, since the air outlet and the mist outlet are arranged adjacent to each other, the mist outlet height and the mist outlet range are easily affected by the air outlet. SUMMARY

[0003] Therefore, the present application provides an air conditioning equipment to solve the problem that the mist outlet height and the mist outlet range are easily affected by the air outlet.

[0004] The present application provides an air conditioning equipment, comprising:

[0005] A shell is provided with a mist outlet and an air outlet, and the mist outlet and the air outlet are arranged adjacent to each other;

[0006] A mist outlet assembly is arranged in the shell, and the mist outlet assembly is provided with a mist guide outlet, and the mist guide outlet is arranged opposite to the mist outlet and is in communication with the mist outlet;

[0007] A wind guide plate is arranged in the shell, and the wind guide plate is movably arranged between the mist outlet and the mist guide outlet to change the flow area between the mist outlet and the mist guide outlet and the second wind guide position overflowing from the mist outlet and the mist guide outlet;

[0008] A driving assembly is movably connected to the shell to drive the wind guide plate to move.

[0009] Beneficial effects: the driving assembly drives the wind guide plate to move, so that the wind guide plate moves between the mist outlet and the mist guide outlet to change the flow area between the mist outlet and the mist guide outlet, thereby changing the size of the actual flow area at the mist outlet, and further changing the mist outlet range and the mist outlet height of the mist outlet, improving user experience and comfort, and avoiding the influence of the mist outlet height and the mist outlet range of the mist outlet caused by the adjacent arrangement of the air outlet and the mist outlet.

[0010] In an alternative embodiment, the shell is further provided with a avoiding slot, and the driving assembly is movably connected in the shell; the driving assembly comprises a knob, the knob is arranged at the avoiding slot, and at least part of the knob extends to the outside of the shell through the avoiding slot; the driving assembly is connected with the wind guide plate.

[0011] Beneficial effects: due to the setting of the avoidance groove, at least part of the actuating part extends to the outside of the shell, so that the user can exert the actuating force through the part of the actuating part exposed outside the shell, and then control the air deflector inside the shell through the driving assembly, realizing the convenient control of the air deflector. The part of the actuating part extending to the outside of the shell exerts the actuating force, which is applied to the air deflector through the driving assembly to drive the air deflector to move, so as to change the flow area between the mist outlet and the mist guide, and then change the size of the actual flow area at the mist outlet, and then change the mist outlet range and mist outlet height, improve the user experience and comfort.

[0012] In an alternative embodiment, the driving assembly is rotatably connected to the shell.

[0013] Beneficial effects: the driving assembly is rotatably connected to the shell, which not only facilitates the driving of the air deflector, but also occupies less space.

[0014] In an alternative embodiment, the air conditioning device further comprises a transmission assembly, and the driving assembly and the air deflector are drivingly connected through the transmission assembly.

[0015] Beneficial effects: through the setting of the transmission assembly, the force exerted on the actuating part to the driving assembly can be transmitted to the air deflector, so as to drive the air deflector.

[0016] In an alternative embodiment, the transmission assembly comprises:

[0017] A gear is arranged on the driving assembly, and the gear and the actuating part are arranged staggered in the axial direction of the driving assembly.

[0018] A rack is arranged on the air deflector, and the gear and the rack are engaged.

[0019] Beneficial effects: through the engagement of the gear and the rack, the driving assembly and the air deflector are drivingly connected, so that the rotation of the driving assembly can drive the air deflector to rotate synchronously. The gear and the actuating part are arranged staggered, which can avoid motion interference. At the same time, the engagement of the gear and the rack can also limit the position of the air deflector, so that the air deflector can stay at different positions between the mist outlet and the mist guide.

[0020] In an alternative embodiment, the air conditioning device further comprises a limiting assembly connected between the shell and the driving assembly and limiting matched with the outer periphery of the driving assembly.

[0021] Beneficial effects: through the setting of the limiting assembly, the position and rotation of the driving assembly can be limited to a certain extent, so that when the actuating part is no longer subjected to the actuating force, the driving assembly can remain in the current position and will not continue to rotate, and then the driving assembly makes the air deflector also remain in the current position.

[0022] In an alternative embodiment, the limiting assembly comprises:

[0023] A limiting rod, both ends of which are a limiting end and a connecting end respectively, the outer periphery of the driving assembly is provided with a matching part, and the limiting end is in limiting cooperation with the matching part; in the axial direction of the driving assembly, the matching part and the actuating part are arranged staggered with each other;

[0024] An elastic member connected between the shell and the connecting end.

[0025] Beneficial effects: the matching part and the actuating part are arranged staggered with each other, which can avoid motion interference. When the actuating part is subjected to the actuating force, the limiting rod moves in the direction of compressing or stretching the elastic member, the limiting end is separated from the matching part, so that the driving assembly can rotate smoothly and drive the air deflector to rotate; when the air deflector rotates to the corresponding position, the actuating part is no longer subjected to the actuating force, the limiting rod is reset under the action of the elastic force, the limiting end is in limiting cooperation with the matching part, the driving assembly is limited and fixed, and then the air deflector is also limited and fixed.

[0026] In an alternative embodiment, the limiting assembly further comprises a limiting column protruding on the shell, a limiting cavity is arranged in the limiting column, a limiting opening is arranged at the end of the limiting column away from the shell, the connecting end is arranged in the limiting cavity through the limiting opening, and the elastic member is arranged between the connecting end and the limiting cavity.

[0027] Beneficial effects: the limiting cavity of the limiting column can limit the connecting end of the limiting rod, the connecting end can slide in the limiting cavity, the elastic member can be compressed to facilitate the rotation of the driving assembly and drive the air deflector to rotate, and the connecting end can reset and be limited at the limiting opening under the action of the elastic member, so that the limiting end can better limit and fix the driving assembly.

[0028] In an alternative embodiment, the matching part comprises at least two limiting grooves, and the at least two limiting grooves are arranged in sequence along the circumference of the driving assembly.

[0029] Beneficial effects: when the limiting end is in the limiting groove, the limiting end is in limiting cooperation with the limiting groove, which can limit the driving assembly; when the limiting end is away from the limiting groove, the limiting effect of the limiting end on the driving assembly decreases, and the driving assembly can rotate more easily.

[0030] In an alternative embodiment, the driving assembly further comprises a rotating shaft, the poking portion is protruded on the outer periphery of the rotating shaft; the housing is provided with two mounting seats, each of the two mounting seats is provided with a mounting hole, and the two ends of the rotating shaft are rotatably connected with the two mounting holes respectively.

[0031] Beneficial effects: the mounting seats are protruded, and the two ends of the rotating shaft are rotatably connected with the two mounting holes, so that the driving assembly and the housing are spaced apart, and the driving assembly is facilitated to rotate relative to the housing without interference or friction.

[0032] In an alternative embodiment, the driving assembly further comprises:

[0033] a first limiting protrusion, which is protruded on the poking portion in the radial direction of the driving assembly;

[0034] a second limiting protrusion, which is protruded on the poking portion in the axial direction of the driving assembly; and in the circumferential direction of the driving assembly, the poking portion is arranged between the first limiting protrusion and the second limiting protrusion.

[0035] Beneficial effects: the first limiting protrusion and the second limiting protrusion are arranged to limit the rotation angle of the poking portion and the driving assembly, so that at least part of the structure of the poking portion is always extended outside the housing through the avoiding slot, thereby facilitating the application of the poking force to the poking portion.

[0036] In an alternative embodiment, the driving assembly further comprises a rotating shaft, the driving assembly is rotatably connected with the housing through the rotating shaft, the poking portion is a fan-shaped structure protruded on the outer periphery of the rotating shaft, the end face of the poking portion away from the rotating shaft is provided with a friction protrusion, and the first limiting protrusion and the second limiting protrusion are both protruded on the poking portion.

[0037] Beneficial effects: the friction protrusion can increase the friction, and facilitate the application of the poking force to the poking portion; the fan-shaped structure can save the space occupied by the poking portion inside the housing.

[0038] In an alternative embodiment, the mist outlet assembly comprises a first air guide cover plate and a second air guide cover plate, the first air guide cover plate and the second air guide cover plate are connected and form a mist outlet channel, the first air guide cover plate is connected with the housing; along the mist outlet direction, the second air guide cover plate and the housing have an air guide gap, and the end of the second air guide cover plate close to the mist outlet forms the mist guide opening with the inner side wall of the first air guide cover plate; along the mist outlet direction, the mist outlet is arranged downstream of the mist guide opening, and the air guide plate can be moved to be arranged in the air guide gap.

[0039] Beneficial effects: The air deflector is movably arranged in the air deflection gap to change the flow area between the air deflector and the second air deflection cover plate, that is, to change the flow area between the mist outlet and the mist outlet, so as to change the flow area size of the mist outlet, and further change the mist outlet range and the mist outlet height of the mist outlet.

[0040] In an alternative embodiment, the two ends of the length direction of the second air deflection cover plate are respectively provided with two connecting plates, the connecting plates are provided with moving grooves, and the two ends of the length direction of the air deflector are respectively provided with connecting columns, and the two connecting columns are movably arranged in the moving grooves.

[0041] Beneficial effects: The two connecting plates and the moving grooves on the connecting plates are arranged to facilitate the movable positioning and connection of the air deflector, which not only ensures the movement of the air deflector and changes the flow area size of the mist outlet, but also limits and guides the movement of the air deflector.

[0042] In an alternative embodiment, the moving groove is an arc-shaped groove, and the arc-shaped groove is coaxially arranged with the driving assembly.

[0043] Beneficial effects: The arc-shaped groove better limits and guides the air deflector, and ensures smooth rotation of the air deflector.

[0044] In an alternative embodiment, the air conditioning device is a humidifier or an electric heater or a ventilation system. BRIEF DESCRIPTION OF DRAWINGS

[0045] In order to more clearly illustrate the technical solutions in the specific embodiments or related technologies of the present application, the following will briefly introduce the drawings needed to be used in the specific embodiments or related technology description. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.

[0046] Figure 1 is a partial structure sectional view of an air conditioning device (the air deflector is in one position) of an embodiment of the present application;

[0047] Figure 2 is a partial enlarged schematic view of Figure 1 ;

[0048] Figure 3 is a partial structure sectional view of an air conditioning device (the air deflector is in another position) of an embodiment of the present application;

[0049] Figure 4 is a partial enlarged schematic view of Figure 3 ;

[0050] Figure 5 A sectional view of a partial structure of an air conditioning apparatus (in another position of the air deflector) according to an embodiment of the present application;

[0051] Figure 6 A partial enlarged view of A in FIG. 1; Figure 5

[0052] Figure 7 A sectional view of an air conditioning apparatus according to an embodiment of the present application;

[0053] Figure 8 A schematic view of an air outlet assembly and a driving assembly of an air conditioning apparatus according to an embodiment of the present application;

[0054] Figure 9 A partial enlarged view of A in FIG. 2; Figure 8

[0055] Figure 10 A partial enlarged view of B in FIG. 2; Figure 8

[0056] A sectional view of an air outlet assembly and a driving assembly of an air conditioning apparatus according to an embodiment of the present application; Figure 11

[0057] A partial enlarged view of C in FIG. 2; Figure 12 Figure 11

[0058] A partial enlarged view of a housing according to an embodiment of the present application; Figure 13

[0059] Another sectional view of an air outlet assembly and a driving assembly of an air conditioning apparatus according to an embodiment of the present application; Figure 14

[0060] A schematic view of an air outlet assembly according to an embodiment of the present application; Figure 15

[0061] A schematic view of an air deflector of an air conditioning apparatus according to an embodiment of the present application; Figure 16

[0062] Another schematic view of an air deflector of an air conditioning apparatus according to an embodiment of the present application; Figure 17

[0063] A schematic view of a driving assembly of an air conditioning apparatus according to an embodiment of the present application; Figure 18

[0064] Another schematic view of a driving assembly of an air conditioning apparatus according to an embodiment of the present application. Figure 19 ​​​​

[0065] BRIEF DESCRIPTION OF DRAWINGS

[0066] 1, housing; 11, mist outlet; 12, avoidance groove; 13, mounting seat; 14, mounting hole; 15, air outlet;

[0067] 2, air deflector; 21, connecting column;

[0068] 3, drive assembly; 31, actuating part; 32, matching part; 33, rotating shaft; 34, first limiting protrusion; 35, second limiting protrusion;

[0069] 4, transmission assembly; 41, gear; 42, rack;

[0070] 5, limiting assembly; 51, limiting rod; 52, elastic member; 53, limiting column;

[0071] 6, mist outlet assembly; 61, mist guide; 62, first air deflector; 63, second air deflector; 64, connecting plate; 65, moving groove;

[0072] 7, water guide groove; 8, fan; 9, atomizing plate. DETAILED DESCRIPTION

[0073] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the following will be combined with the drawings in the embodiments of the present application to make a clear and complete description of the technical solutions in the embodiments of the present application. Obviously, the described embodiments are some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0074] The embodiments of the present application will be described below in combination with Figures 1 to 19 .

[0075] According to the embodiments of the present application, in one aspect, an air conditioning device is provided, which comprises a housing 1, a mist outlet assembly 6, an air deflector 2, and a drive assembly 3. The housing 1 is provided with a mist outlet 11, an air outlet 15, and an avoidance groove 12, and the mist outlet 11 and the air outlet 15 are arranged adjacently. The mist outlet assembly 6 is arranged in the housing 1, and the mist outlet assembly 6 is provided with a mist guide 61 which is arranged oppositely to and communicates with the mist outlet 11. The air deflector 2 is arranged in the housing 1, and the air deflector 2 is movably arranged between the mist outlet 11 and the mist guide 61 to change the flow area between the mist outlet 11 and the mist guide 61. The drive assembly 3 is movably connected to the housing 1 to drive the air deflector 2 to move.

[0076] The air deflector 2 is driven to move by the driving assembly 3, so that the air deflector 2 moves between the mist outlet 11 and the mist guide outlet 61 to change the flow area between the mist outlet 11 and the mist guide outlet 61, and then change the actual flow area at the mist outlet 11, and then change the mist range and mist height of the mist outlet 11, thereby improving the user experience and comfort, and avoiding the influence of the mist range and mist height of the mist outlet 11 caused by the close arrangement of the mist outlet 11 and the air outlet 15.

[0077] In a specific embodiment, the air deflector 2 is movably arranged between the mist outlet 11 and the air outlet 15, which can reduce the influence of the air outlet 15 on the mist range and mist height of the mist outlet 11.

[0078] In an embodiment, the shell is further provided with a avoiding slot 12, and the driving assembly 3 is movably connected in the shell 1, the driving assembly 3 includes a knob 31, the knob 31 is arranged at the avoiding slot 12, and at least part of the knob 31 extends to the outside of the shell 1 through the avoiding slot 12; the driving assembly 3 is connected with the air deflector 2.

[0079] The part of the knob 31 extending to the outside of the shell 1 is applied with a knob action force, and the driving assembly 3 is applied with a force to drive the air deflector 2 to move, so as to change the flow area between the mist outlet 11 and the mist guide outlet 61, and then change the actual flow area at the mist outlet 11, and then change the mist range and mist height of the mist outlet 11, thereby improving the user experience and comfort. And due to the arrangement of the avoiding slot 12, at least part of the knob 31 extends to the outside of the shell 1, so that the user can apply the knob action force through the part of the knob 31 exposed outside the shell 1, and then control the air deflector 2 inside the shell 1 through the driving assembly 3, thereby achieving convenient control of the air deflector 2.

[0080] In a specific embodiment, when the air deflector 2 moves to the range where the mist outlet 11 is located, the flow area between the mist outlet 11 and the mist guide outlet 61 can be changed.

[0081] The flow area refers to the minimum cross-sectional area perpendicular to the flow direction when the fluid passes through the pipeline or valve, which is an important geometric parameter in fluid mechanics and hydraulic transmission.

[0082] In an embodiment, the driving assembly 3 is rotatably connected to the shell 1.

[0083] The driving assembly 3 is rotatably connected to the shell 1, which not only facilitates the driving of the air deflector 2, but also occupies less space.

[0084] As the transformable embodiment, the driving assembly 3 can be slidably connected to the shell 1, and the sliding direction is perpendicular to the length direction of the mist outlet 11, and the driving assembly 3 drives the air deflector 2 to slide synchronously.

[0085] In one embodiment, the air conditioning device further comprises a transmission assembly 4, the driving assembly 3 and the air deflector 2 are drivingly connected through the transmission assembly 4.

[0086] Through the transmission assembly 4, the force applied to the driving assembly 3 by the actuating part 31 can be transmitted to the air deflector 2, so as to drive the air deflector 2.

[0087] In one embodiment, the transmission assembly 4 comprises a gear 41 and a rack 42; the gear 41 is arranged on the driving assembly 3, and the gear 41 and the actuating part 31 are arranged staggered in the axial direction of the driving assembly 3; the rack 42 is arranged on the air deflector 2, and the gear 41 and the rack 42 are engaged.

[0088] Through the engagement of the gear 41 and the rack 42, the driving assembly 3 and the air deflector 2 are drivingly connected, so that the rotation of the driving assembly 3 can drive the air deflector 2 to rotate synchronously. The gear 41 and the actuating part 31 are arranged staggered, which can avoid motion interference. At the same time, the engagement of the gear 41 and the rack 42 can also limit the position of the air deflector 2 to a certain extent, so that the air deflector 2 can stay at different positions between the mist outlet 11 and the mist guide outlet 61.

[0089] In one embodiment, the air conditioning device further comprises a limiting assembly 5, the limiting assembly 5 is connected between the shell 1 and the driving assembly 3, and limits the outer periphery of the driving assembly 3.

[0090] Through the limiting assembly 5, the position and rotation of the driving assembly 3 can be limited to a certain extent, so that when the actuating part 31 is no longer subjected to the actuating force, the driving assembly 3 can remain at the current position and will not continue to rotate, and the air deflector 2 also remains at the current position through the driving assembly 3.

[0091] In one embodiment, the limiting assembly 5 comprises a limiting rod 51 and an elastic member 52; the limiting rod 51 has a limiting end and a connecting end at two ends respectively, the outer periphery of the driving assembly 3 is provided with a matching part 32, the limiting end is limitedly matched with the matching part 32, and the matching part 32 and the actuating part 31 are arranged staggered in the axial direction of the driving assembly 3; the elastic member 52 is connected between the shell 1 and the connecting end.

[0092] The matching portion 32 and the poking portion 31 are arranged staggered to each other, so as to avoid motion interference. When the poking portion 31 is subjected to a poking force, the limiting rod 51 moves towards the compression elastic member 52 or the stretching elastic member 52, the limiting end is separated from the matching portion 32, so that the driving assembly 3 can rotate smoothly and drive the air deflector 2 to rotate; when the air deflector 2 rotates to the corresponding position, the poking portion 31 is no longer subjected to the poking force, the limiting rod 51 is reset under the action of the elastic force, the limiting end is limited and matched with the matching portion 32, the driving assembly 3 is limited and fixed, and then the air deflector 2 is also limited and fixed.

[0093] In one embodiment, the limiting assembly 5 further comprises a limiting column 53 protruding on the shell 1, a limiting cavity is arranged in the limiting column 53, a limiting opening is arranged at one end of the limiting column 53 away from the shell 1, the connecting end is arranged in the limiting cavity through the limiting opening, and the elastic member 52 is arranged between the connecting end and the limiting cavity.

[0094] The limiting cavity of the limiting column 53 can limit the connecting end of the limiting rod 51, the connecting end can slide in the limiting cavity, the elastic member 52 can be compressed to facilitate the rotation of the driving assembly 3 and drive the air deflector 2 to rotate, and the connecting end can be reset and limited at the limiting opening under the action of the elastic member 52, so that the limiting end can better limit and fix the driving assembly 3.

[0095] In one embodiment, the matching portion 32 comprises at least two limiting grooves, and the at least two limiting grooves are arranged in sequence along the circumference of the driving assembly 3.

[0096] When the limiting end is in the limiting groove, the limiting end is limited and matched with the limiting groove, and the driving assembly 3 can be limited; when the limiting end is away from the limiting groove, the limiting effect of the limiting end on the driving assembly 3 decreases, and the driving assembly 3 can rotate more easily.

[0097] In the specific embodiment, the limiting groove can have two or three or more, so as to limit the air deflector 2 at different positions between the mist outlet 11 and the mist guide outlet 61.

[0098] In the preferred embodiment, the limiting end is a spherical end, and the limiting groove is a circular groove.

[0099] In the further embodiment, a limiting groove wall is arranged between the two adjacent limiting grooves, and the height of the limiting groove wall is lower than the height of other groove walls.

[0100] In one embodiment, the driving assembly 3 further comprises a rotating shaft 33, the poking part 31 is protruded on the outer periphery of the rotating shaft 33; two mounting seats 13 are protruded on the shell 1, and each of the two mounting seats 13 is provided with a mounting hole 14, and the two ends of the rotating shaft 33 are rotatably connected with the two mounting holes 14 respectively.

[0101] The protruded mounting seat 13 and the rotatable connection of the two ends of the rotating shaft 33 with the two mounting holes 14 can ensure that the driving assembly 3 is spaced apart from the shell 1, so that the driving assembly 3 can rotate relative to the shell 1 without interference or friction.

[0102] In a further embodiment, an inlet is arranged on the hole wall of one of the mounting holes 14, and the rotating shaft 33 can enter the mounting hole 14 through the inlet.

[0103] In one embodiment, the driving assembly 3 further comprises a first limiting protrusion 34 and a second limiting protrusion 35; the first limiting protrusion 34 is protruded on the poking part 31 in the radial direction of the driving assembly 3; the second limiting protrusion 35 is protruded on the poking part 31 in the axial direction of the driving assembly 3; and the poking part 31 is arranged between the first limiting protrusion 34 and the second limiting protrusion 35 in the circumferential direction of the driving assembly 3.

[0104] The first limiting protrusion 34 and the second limiting protrusion 35 can limit the rotation angle of the poking part 31 and the driving assembly 3, so that at least part of the structure of the poking part 31 always extends outside the shell 1 through the avoiding slot, thereby facilitating the application of the poking force to the poking part 31.

[0105] In a further embodiment, when the first limiting protrusion 34 abuts against the shell 1, the second limiting protrusion 35 is spaced apart from the shell 1, which is one of the rotation limit positions of the poking part 31; when the second limiting protrusion 35 abuts against the shell 1, the first limiting protrusion 34 is spaced apart from the shell 1, which is the other rotation limit position of the poking part 31, and the rotation angle of the poking part 31 between the two rotation limit positions is the rotation angle range of the driving assembly 3 as a whole.

[0106] In one embodiment, the driving assembly 3 further comprises a rotating shaft 33, the driving assembly 3 is rotatably connected with the shell 1 through the rotating shaft 33, the poking part 31 is a fan-shaped structure protruded on the outer periphery of the rotating shaft 33, and a friction protrusion is arranged on the end face of the poking part 31 away from the rotating shaft 33; the first limiting protrusion 34 and the second limiting protrusion 35 are both protruded on the poking part 31.

[0107] The friction convex part can increase the friction, and facilitate to apply the poking force to the poking part 31; and the fan-shaped structure can save the space occupied by the poking part 31 inside the shell 1.

[0108] As a transformable embodiment, the poking part 31 can be a poking rod.

[0109] In the specific embodiment, the first limiting convex part 34 can be arranged on the poking part 31 or the rotating shaft 33; and the second limiting convex part 35 can be arranged on the poking part 31 or the rotating shaft 33.

[0110] In one embodiment, the mist outlet assembly comprises a first air guide cover plate 62 and a second air guide cover plate 63, the first air guide cover plate 62 and the second air guide cover plate 63 are connected and form a mist outlet channel, the first air guide cover plate 62 is connected with the shell 1; along the mist outlet direction, the second air guide cover plate 63 and the shell 1 have an air guide gap, and the end of the second air guide cover plate 63 close to the mist outlet 11 and the inner side wall of the first air guide cover plate 62 form the mist guide opening 61; along the mist outlet direction, the mist outlet 11 is arranged downstream of the mist guide opening 61, and the air guide plate 2 is movably arranged in the air guide gap. The first air guide cover plate 62 and the second air guide cover plate 63 are arranged at the slot opening of the water guide groove 7, and the mist outlet assembly 6 or the water guide groove 7 is communicated with the atomization assembly through the mist inlet.

[0111] The first air guide cover plate 62 and the second air guide cover plate 63 are arranged at the slot opening of the water guide groove 7, and form a containing cavity with the water guide groove 7, after the water mist of the atomization assembly enters the containing cavity, the water mist passes through the mist guide opening 61 and the mist outlet 11 in sequence and is discharged to the outside of the shell 1. The air guide plate 2 is movably arranged in the air guide gap, so as to change the flow area between the air guide plate 2 and the second air guide cover plate 63, that is, change the flow area between the mist guide opening 61 and the mist outlet 11, so as to change the flow area of the mist outlet 11, and then change the size of the mist outlet 11, the mist outlet range and the mist outlet height of the mist outlet 11.

[0112] As a transformable embodiment, the mist outlet assembly comprises a first air guide cover plate 62 and a second air guide cover plate 63, the first air guide cover plate 62 and the second air guide cover plate 63 are connected and form a mist outlet channel, the first air guide cover plate 62 is connected with the shell 1; the second air guide cover plate 63 is connected with the shell 1, and the end of the first air guide cover plate 62 close to the mist outlet 11 and the end of the second air guide cover plate close to the mist outlet 11 form the mist guide opening 61; the second air guide cover plate 63 is provided with an air avoiding groove, and the air guide plate 2 is movably arranged at the air avoiding groove.

[0113] In one embodiment, the second air deflector cover plate 63 is provided with two connecting plates 64 at both ends of the length direction, the connecting plates 64 are provided with moving grooves 65, and the air deflector 2 is provided with connecting columns 21 at both ends of the length direction, the two connecting columns 21 are movably arranged in the moving grooves 65.

[0114] The two connecting plates 64 and the moving grooves 65 on the connecting plates 64 can facilitate the movable positioning and connection of the air deflector 2, which can ensure the movement of the air deflector 2 and change the flow area of the mist outlet 11, and can also limit and guide the movement of the air deflector 2.

[0115] In one embodiment, the moving groove 65 is an arc-shaped groove, and the arc-shaped groove is coaxially arranged with the driving assembly 3.

[0116] The arc-shaped groove can better limit and guide the air deflector 2, and ensure the smooth rotation of the air deflector 2.

[0117] In one embodiment, the air conditioning device can be a humidifier, an electric heater or a ventilation system.

[0118] In one embodiment, the atomization assembly includes a fan 8 and an atomization plate 9, the fan 8 can drive the water mist generated at the atomization plate 9 to enter the mist outlet through the mist inlet, and then to be discharged through the mist guide 61 and the mist outlet 11.

[0119] In a further embodiment, the shell 1 includes an outer shell and a top air outlet grille, and the top air outlet grille is connected to the top of the outer shell. The driving assembly 3 is movably connected to the top air outlet grille. The avoidance groove 12, the air outlet 15 and the mist outlet 11 are all arranged on the top air outlet grille. The air outlet 15 can be used for discharging hot air.

[0120] In a specific embodiment, the width of the mist outlet 11 ranges from 1mm to 5mm. The mist outlet 11 has a mist outlet height ranging from 200mm to 500mm.

[0121] In one specific embodiment, the fitting part 32 has three, when the air deflector 2 is in a position between the mist outlet 11 and the mist guide 61, and blocks a part of the mist outlet 11, the width of the mist outlet 11 is L1, and the mist outlet height is H1; when the air deflector 2 is in another position between the mist outlet 11 and the mist guide 61, and blocks most of the mist outlet 11, the width of the mist outlet 11 is L2, and the mist outlet height is H2; when the air deflector 2 is in another position between the mist outlet 11 and the mist guide 61, and does not block the mist outlet 11, the width of the mist outlet 11 is L3, and the mist outlet height is H3. Wherein, the greater the width of the mist outlet 11, the lower the mist outlet height. Preferably, the width of the mist outlet 11 corresponds to L1=3mm or so, L2=1mm or so, and L3=5mm or so, respectively; and the mist outlet height corresponds to H1=350mm or so, H2=500mm or so, and H3=200mm or so.

[0122] Although the embodiments of the present application are described in conjunction with the drawings, various modifications and changes can be made by those skilled in the art without departing from the spirit and scope of the present application, and such modifications and changes fall within the scope defined by the present application.

Claims

1. An air conditioning device, characterized in that, include: The housing (1) is provided with a mist outlet (11) and an air outlet (15), and the mist outlet (11) and the air outlet (15) are arranged adjacent to each other; A mist outlet assembly (6) is disposed inside the housing (1). The mist outlet assembly (6) is provided with a mist guide port (61), which is disposed opposite to and connected to the mist outlet (11). A guide plate (2) is disposed inside the housing (1), and the guide plate (2) is movably disposed between the mist outlet (11) and the mist guide port (61) to change the flow area between the mist outlet (11) and the mist guide port (61); A drive assembly (3) is movably connected to the housing (1) for driving the air guide plate (2) to move; The housing (1) is also provided with a clearance groove (12). The drive assembly (3) is movably connected inside the housing (1). The drive assembly (3) includes a toggle part (31), which is disposed at the clearance groove (12), and at least part of the toggle part (31) extends to the outside of the housing (1) through the clearance groove (12). The drive assembly (3) is connected to the air guide plate (2). A limiting component (5) is connected between the housing (1) and the drive component (3) and is limited to the outer periphery of the drive component (3). The limiting component (5) includes a limiting rod (51) with a limiting end and a connecting end at its two ends. The outer periphery of the drive component (3) is provided with a mating part (32), and the limiting end is limited to the mating part (32). In the axial direction of the drive component (3), the mating part (32) and the actuating part (31) are staggered. An elastic element (52) is connected between the housing (1) and the connecting end.

2. The air conditioning device according to claim 1, characterized in that, The misting assembly (6) includes a first air guide cover (62) and a second air guide cover (63). The first air guide cover (62) and the second air guide cover (63) are connected to form a misting channel. The first air guide cover (62) is connected to the housing (1). Along the misting direction, there is an air guide gap between the second air guide cover (63) and the housing (1). The end of the second air guide cover (63) near the mist outlet forms the mist guide opening (61) between the end of the second air guide cover (63) and the inner sidewall of the first air guide cover (62). Along the misting direction, the mist outlet (11) is located downstream of the mist guide opening (61). The air guide plate (2) is movably disposed in the air guide gap.

3. The air conditioning device according to claim 2, characterized in that, The second air guide cover (63) has two connecting plates (64) protruding from both ends in the length direction. The connecting plates (64) are provided with moving grooves (65). The air guide plate (2) has two connecting columns (21) protruding from both ends in the length direction. The two connecting columns (21) are respectively movably arranged in the two moving grooves (65).

4. The air conditioning device according to claim 3, characterized in that, The moving groove (65) is an arc-shaped groove, and the arc-shaped groove is coaxially arranged with the driving component (3).

5. The air conditioning equipment according to any one of claims 1 to 4, characterized in that, The drive assembly (3) is rotatably connected to the housing (1).

6. The air conditioning device according to claim 5, characterized in that, It also includes a transmission assembly (4), and the drive assembly (3) and the air guide plate (2) are connected by transmission assembly (4).

7. The air conditioning device according to claim 6, characterized in that, The transmission assembly (4) includes: A gear (41) is disposed on the drive assembly (3), and in the axial direction of the drive assembly (3), the gear (41) is offset from the actuating part (31); A rack (42) is disposed on the air guide plate (2), and the gear (41) meshes with the rack (42).

8. The air conditioning equipment according to any one of claims 1 to 4, characterized in that, The limiting component (5) further includes a limiting post (53) which protrudes from the housing (1). The limiting post (53) has a limiting cavity inside. The end of the limiting post (53) away from the housing (1) has a limiting opening. The connecting end is limited and positioned in the limiting cavity through the limiting opening. The elastic element (52) is disposed between the connecting end and the limiting cavity. And / or, the mating part (32) includes at least two limiting grooves, and the at least two limiting grooves are arranged sequentially along the circumference of the drive assembly (3).

9. The air conditioning device according to any one of claims 1 to 4, characterized in that, The drive assembly (3) also includes a rotating shaft (33), and the actuating part (31) protrudes from the outer periphery of the rotating shaft (33); two mounting seats (13) protrude from the housing (1), and each of the two mounting seats (13) is provided with a mounting hole (14), and the two ends of the rotating shaft (33) are rotatably connected to the two mounting holes (14) respectively.

10. The air conditioning device according to any one of claims 1 to 4, characterized in that, The driving component (3) also includes: The first limiting protrusion (34) is provided to protrude from the actuating part (31) in the radial direction of the drive assembly (3); The second limiting protrusion (35) protrudes from the actuating part (31) in the axial direction of the drive assembly (3); in the circumferential direction of the drive assembly (3), the actuating part (31) is disposed between the first limiting protrusion (34) and the second limiting protrusion (35).

11. The air conditioning device according to claim 10, characterized in that, The drive assembly (3) also includes a rotating shaft (33), which is rotatably connected to the housing (1). The actuating part (31) is a fan-shaped structure protruding from the outer periphery of the rotating shaft (33). The actuating part (31) has a friction protrusion on the end face away from the rotating shaft (33). The first limiting protrusion (34) and the second limiting protrusion (35) both protrude from the actuating part (31).

12. The air conditioning apparatus according to any one of claims 1 to 4, 6, 7, or 11, characterized in that, The air conditioning equipment is a humidifier, an electric heater, or a ventilation system.

Citation Information

Patent Citations

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