Floor air conditioner
By designing adjustable air guide and wind shield structures in vertical air conditioners, the problem of single air supply mode of air conditioners is solved, and flexible adjustment of air distance and air volume is achieved, improving user experience.
Patent Information
- Application Number
- CN202410009768.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-03
- Publication Date
- 2025-07-04
AI Technical Summary
The existing air conditioning indoor cabinets have a single air supply method and cannot meet the various needs of users.
A vertical air conditioner is designed to move in the axial direction of the air outlet through the air guide, so as to achieve adjustable air distance and air volume. The combined structure of air guide and air shield is adopted to change the area of the air inlet clearance to adjust the air supply distance and air volume.
The vertical air conditioner is adjusted in air distance and air volume, improving the user experience.
Smart Images

Figure CN120252157A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioners, and particularly to a vertical air conditioner. Background Art
[0002] At present, the indoor cabinet air conditioner generally can only realize the adjustment of up-and-down air swing and left-and-right air swing, and the air supply mode is relatively single. How to make the air supply mode of the indoor cabinet air conditioner more diverse to meet the various needs of users is an urgent problem to be solved currently. Summary of the Invention
[0003] An object of the present invention is to provide a vertical air conditioner with adjustable air distance.
[0004] A further object of the present invention is to provide a vertical air conditioner with adjustable air volume.
[0005] In particular, the present invention provides a vertical air conditioner, which includes:
[0006] A housing that defines an air outlet;
[0007] A wind guiding member disposed in the housing along the axial direction of the air outlet. The wind guiding member defines a first air duct that is coaxial with the air outlet and communicates with the internal air duct of the housing. The wind guiding member is configured to move along the axial direction of the air outlet to reach a first state in which a wind outlet gap communicating with the internal air duct is jointly enclosed between one end of the wind guiding member close to the air outlet and the air outlet side of the air outlet, or a second state in which the wind guiding member is fitted with the air outlet.
[0008] Optionally, a first extension portion extends inwardly at a position where the inner wall of the first air duct is close to the air outlet; and
[0009] The vertical air conditioner further includes a wind blocking member having a body portion disposed along the axial direction of the first air duct. One end of the body portion close to the air outlet extends outwardly to form a second extension portion. The body portion is configured to move along the first air duct toward the air outlet to push the first extension portion with the second extension portion to make the wind guiding member reach the first state.
[0010] Optionally, a third extension portion extends inwardly at an end of the wind guiding member away from the air outlet; and
[0011] The body portion is further configured to move along the first air duct away from the air outlet to drive the third extension portion with the second extension portion to make the wind guiding member reach the second state.
[0012] Optionally, the air guiding member includes a first part and a second part axially connected along the air outlet. The first part and the second part together define the first air duct. The first part is close to the air outlet. The second part is spaced apart along the axial direction of the first air duct to form a plurality of air inlet gaps communicating the internal air duct and the first air duct. The first extension part is formed in the first part; and
[0013] The body part is further configured to move along the axial direction of the first air duct when the air guiding member is in the first state or the second state, and change the air inflow rate of the air inlet gap of the second part by changing the corresponding area with the second part.
[0014] Optionally, the first part is horn-shaped, and the large-diameter end of the first part is the end of the air guiding member close to the air outlet.
[0015] Optionally, the second part includes a plurality of first sub-parts and a plurality of second sub-parts; wherein,
[0016] The first sub-parts are horn-shaped in the opposite direction to the first part. The plurality of first sub-parts are arranged at intervals along the axial direction of the first air duct. An air inlet gap is formed between any two adjacent first sub-parts and between the adjacent first sub-parts and the first part. The second sub-parts are plate-shaped fixing ribs, and the plurality of second sub-parts are evenly distributed along the outer periphery of the plurality of first sub-parts to connect the plurality of first sub-parts and the first part together.
[0017] Optionally, the body part is columnar, and a fourth extension part extends outward along the circumferential direction of the peripheral wall of the body part. The fourth extension part is farther from the air outlet than the second extension part; and
[0018] The vertical air conditioner further includes a stop wall located between the end of the wind deflector away from the air outlet and the end of the air guiding member away from the air outlet. The stop wall is configured to abut against the fourth extension part to prevent the body part from continuing to move in the direction close to the air outlet when the air guiding member is in the first state, or abut against the third extension part to prevent the air guiding member from continuing to move in the direction away from the air outlet when the air guiding member is in the second state.
[0019] Optionally, the wind deflector further includes a rack part fixedly arranged along the axial direction of the body part at the bottom of the body part; and
[0020] The vertical air conditioner further includes a driving motor and a gear connected to the motor shaft of the driving motor. The driving motor and the gear are fixedly arranged on a side of the stop wall away from the air outlet. The gear meshes with the rack, and the driving motor is configured to drive the motor shaft to rotate so that the gear drives the wind deflector to move along the axial direction of the first air duct.
[0021] Optionally, the vertical air conditioner further includes:
[0022] A receiving device fixedly arranged on a side of an end of the air guiding member away from the air outlet. A side wall of the receiving device close to the air outlet is the stop wall, and the receiving device is configured to receive the driving motor, the gear and a part of the wind deflector.
[0023] Optionally, the interior of the main body portion is hollow.
[0024] The vertical air conditioner proposed by the present invention includes a housing and an air guiding member. Among them, the housing defines an air outlet. The air guiding member is arranged in the housing along the axial direction of the air outlet. The air guiding member defines a first air duct coaxial with the air outlet and communicating with the internal air duct of the housing. The air guiding member is configured to move along the axial direction of the air outlet to reach a first state in which a wind outlet gap communicating with the internal air duct is jointly formed between an end of the air guiding member close to the air outlet and the air outlet side of the air outlet, or a second state in which the air guiding member is fitted into the air outlet. When the air guiding member is in the first state, part or all of the internal air duct air flows out of the air conditioner through the wind outlet gap, and the air outlet is dispersed and the air outlet distance is short; when the air guiding member is in the second state, the internal air duct air flows through the first air duct to the air outlet and then to the outside of the air conditioner, and the air outlet is concentrated and the air outlet distance is long. The air distances of the vertical air conditioner in the two states are different, realizing adjustable air distance of the vertical air conditioner and improving the user experience.
[0025] Further, the air guiding member includes a first part and a second part connected along the axial direction of the air outlet. The first part and the second part jointly define the first air duct. Among them, the first part is close to the air outlet, and the second part is axially spaced along the first air duct to form a plurality of air inlet gaps communicating the internal air duct and the first air duct; and the vertical air conditioner further includes a wind deflector. The wind deflector includes a main body portion arranged along the axial direction of the first air duct. The main body portion is configured to move along the axial direction of the first air duct when the air guiding member is in the first state or the second state, and by changing the corresponding area with the second part, the air inflow amount of the air inlet gap of the second part is changed, realizing adjustable air distance and adjustable air volume of the vertical air conditioner at the same time, and further improving the user experience.
[0026] The above description is only an overview of the technical solution of the present invention. In order to understand the technical means of the present invention more clearly, it can be implemented according to the content of the specification. And in order to make the above and other objects, features and advantages of the present invention more obvious and understandable, the following specific embodiments of the present invention are specifically exemplified.
[0027] From the following detailed description of specific embodiments of the present invention in conjunction with the accompanying drawings, those skilled in the art will become more apparent about the above and other objects, advantages and features of the present invention. Brief Description of the Drawings
[0028] Some specific embodiments of the present invention will be described in detail hereinafter with reference to the accompanying drawings in an exemplary but not limiting manner. The same reference numerals in the drawings denote the same or similar components or parts. Those skilled in the art should understand that these drawings are not necessarily drawn to scale. In the drawings:
[0029] Figure 1 is a first overall structural schematic diagram of a vertical air conditioner according to an embodiment of the present invention;
[0030] Figure 2 is a second overall structural schematic diagram of a vertical air conditioner according to an embodiment of the present invention;
[0031] Figure 3 is Figure 1 a cross-sectional view taken along the A-A section;
[0032] Figure 4 is Figure 2 a cross-sectional view taken along the B-B section;
[0033] Figure 5 is a structural schematic diagram of a wind guiding member of a vertical air conditioner according to an embodiment of the present invention;
[0034] Figure 6 is a structural schematic diagram of a wind blocking member of a vertical air conditioner according to an embodiment of the present invention;
[0035] Figure 7 is an exploded view of an integrated housing device, fixing device and wind blocking device of a vertical air conditioner according to an embodiment of the present invention. Detailed Description of the Specific Embodiments
[0036] The following refers to Figures 1 to 7 to describe the vertical air conditioner 1 of the embodiment of the invention. Among them, the orientation or positional relationship indicated by "front", "rear", "upper", "lower", "top", "bottom", "inner", "outer", "lateral", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0037] The terms "first", "second", etc. are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first", "second", etc. may explicitly or implicitly include at least one such feature, that is, include one or more such features. In the description of the present invention, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise specifically defined. When a feature "includes or contains" a certain or certain features it covers, unless otherwise specifically described, this indicates that other features are not excluded and other features may be further included.
[0038] Figure 1 is a first overall structural schematic diagram of the vertical air conditioner 1 according to an embodiment of the present invention, Figure 1 In it, one end of the air guide member 20 close to the air outlet 110 extends out of the air outlet 110, and together with the air outlet side of the air outlet 110, an air outlet gap 220 communicating with the internal air duct 100 is enclosed, and the air guide member 20 is in the first state; Figure 2 is a second overall structural schematic diagram of the vertical air conditioner 1 according to an embodiment of the present invention, Figure 2 In it, one end of the air guide member 20 close to the air outlet 110 is fitted with the air outlet 110, and the air guide member 20 is in the second state; Figure 3 is Figure 1 a cross-sectional view along the A-A section; Figure 4 is Figure 2 a cross-sectional view along the B-B section.
[0039] See Figures 1 - 4 As shown, the vertical air conditioner 1 proposed by the present invention includes a housing 10, and the housing 10 includes a front housing 120 with an opening facing backward and a rear housing 130 with an opening facing forward. The openings of the front housing 120 and the rear housing 130 are assembled opposite to each other to form a complete housing 10.
[0040] An air outlet 110 with an opening facing forward is defined on the upper side of the front housing 120, and the air outlet 110 can be selected as a circular outlet air; a grid-shaped ventilation opening 140 communicating inside and outside the housing 10 is defined on the rear housing 130.
[0041] Optionally, the connection manner between the front housing 120 and the rear housing 130 includes but is not limited to a snap connection manner and a threaded connection manner.
[0042] The vertical air conditioner 1 further includes a wind guiding member 20 which is arranged in the housing 10 along the axial direction of the air outlet 110. The wind guiding member 20 defines a first air duct 210 that is coaxial with the air outlet 110 and communicates with the internal air duct 100 of the housing 10. The wind guiding member 20 is configured to move along the axial direction of the air outlet 110 to reach a first state in which a wind outlet gap 220 communicating with the internal air duct 100 is jointly defined between one end of the wind guiding member 20 close to the air outlet 110 and the air outlet side of the air outlet 110, or a second state in which it is fitted with the air outlet 110.
[0043] Wherein, the air outlet side of the air outlet 110 is the side where the air outlet 110 faces outside the housing 10.
[0044] Wherein, when the wind guiding member 20 is in the first state, part or all of the air flow in the internal air duct 100 flows through the wind outlet gap 220 to the outside of the air conditioner. The air outlet is dispersed and the air outlet distance is short, resulting in low efficiency in adjusting the indoor environmental temperature. When the wind guiding member 20 is in the second state, the air flow in the internal air duct 100 flows through the first air duct 210 to the air outlet 110 and then to the outside of the air conditioner. The air outlet is concentrated and the air outlet distance is long, resulting in high efficiency in adjusting the indoor environmental temperature. The air distances of the vertical air conditioner 1 in the two states are different. Overall, the air distance of the vertical air conditioner 1 is adjustable, improving the user experience of using the air conditioner.
[0045] Figure 5 It is a schematic structural diagram of the wind guiding member 20 of the vertical air conditioner 1 according to an embodiment of the present invention; Figure 6 It is a schematic structural diagram of the wind blocking member 30 of the vertical air conditioner 1 according to an embodiment of the present invention. Refer to Figures 3 - 6 As shown, in some preferred or alternative embodiments of the present invention, a first extension portion 211 is formed by inward extension of the inner wall of the first air duct 210 near the air outlet 110; and
[0046] The vertical air conditioner 1 further includes a wind blocking member 30 having a body portion 310. The body portion 310 is arranged along the axial direction of the first air duct 210. One end of the body portion 310 close to the air outlet 110 extends outward to form a second extension portion 311. The body portion 310 is configured to move along the first air duct 210 toward the direction close to the air outlet 110 so that the second extension portion 311 pushes the first extension portion 211 to make the wind guiding member 20 reach the first state.
[0047] In some preferred or alternative embodiments of the present invention, a third extension portion 230 is formed by inward extension of one end of the wind guiding member 20 away from the air outlet 110; and
[0048] The body portion 310 is further configured to move along the first air duct 210 toward the direction away from the air outlet 110 so that the second extension portion 311 drives the third extension portion 230 to make the wind guiding member 20 reach the second state.
[0049] In some preferred or alternative embodiments according to the present invention, the air guiding member 20 includes a first part 240 and a second part 250 connected along the axial direction of the air outlet 110. The first part 240 is disposed near the air outlet 110, and the first part 240 and the second part 250 jointly define a first air duct 210; wherein
[0050] The first part 240 is trumpet-shaped, and the large-diameter end of the first part 240 is the end of the air guiding member 20 close to the air outlet 110; the overall shape of the second part 250 is columnar, and the second part 250 forms a plurality of air inlet gaps 260 communicating the internal air duct 100 and the first air duct 210 at intervals along the axial direction of the first air duct 210.
[0051] In some preferred or alternative embodiments according to the present invention, the second part 250 includes a plurality of first sub-parts 251 and a plurality of second sub-parts 252; wherein, the first sub-parts 251 are trumpet-shaped in the opposite direction to the first part 240, and the plurality of first sub-parts 251 are arranged at intervals in the axial direction of the first air duct 210. An air inlet gap 260 is formed between any two adjacent first sub-parts 251 and between the adjacent first sub-part 251 and the first part 240; the second sub-parts 252 are plate-shaped fixing ribs, and the plurality of second sub-parts 252 are uniformly distributed along the outer periphery of the plurality of first sub-parts 251 to connect the plurality of first sub-parts 251 together.
[0052] In some preferred or alternative embodiments according to the present invention, the number of the first sub-parts 251 may be three, and the number of the second sub-parts 252 may be three. The three first sub-parts 251 form two air outlet gaps 220, and the first sub-part 251 close to the first part 240 and the first part 240 form an air inlet gap 220, for a total of three air inlet gaps.
[0053] It should be noted that the numbers of the first sub-parts 251 and the second sub-parts 252 can be set according to actual situations, and the present invention does not make excessive limitations thereon.
[0054] In some preferred or alternative embodiments according to the present invention, the inner wall of the first part 240 extends inward along the circumferential direction to form the above-mentioned first extension part 211; one end of the second part 250 far from the air outlet 110 extends inward to form a third extension part 230; one end of the main body part 310 close to the air outlet 110 extends outward to form a second extension part 311. The main body part 310 is configured to move along the first air duct 210 towards the air outlet 110 to make the second extension part 311 push the first extension part 211 to make the air guiding member 20 reach the first state or move away from the air outlet 110 to make the second extension part 311 push the third extension part 230 to make the air guiding member 20 reach the second state.
[0055] In some preferred or alternative embodiments according to the present invention, the first air duct 210 and the body portion 310 are adapted in shape, and the body portion 310 is further configured to move in the axial direction of the first air duct 210 when the air guiding member 20 is in the first state or the second state, so as to change the air intake amount of the air intake gap 260 of the second portion 250 by changing the corresponding area with the second portion 250.
[0056] Wherein, the first air duct 210 and the body portion 310 are preferably both cylindrical. When the air guiding member 20 is in the first state or the second state, the greater the distance that the body portion 310 moves towards the air outlet 110, the greater the corresponding area between the body portion 310 and the first air duct 210, the more the body portion 310 will block the air intake gap 260, and the less air will enter the air intake gap 260. Correspondingly, the more the body portion 310 moves away from the air outlet 110, the smaller the corresponding area between the body portion 310 and the first air duct 210, the less the body portion 310 blocks the air intake gap 260, and the more air enters the air intake gap 260.
[0057] Wherein, by adjusting the corresponding area between the body portion 310 and the second portion 250, the air intake amount of the air intake gap 260 can be adjusted, realizing that the wind distance of the vertical air conditioner 1 is adjustable and the air volume is also adjustable, further improving the user experience.
[0058] In some preferred or alternative embodiments according to the present invention, a fourth extension portion 312 is formed by circumferentially extending along the peripheral wall of the body portion 310 near the end of the body portion 310 away from the air outlet 110; and
[0059] The vertical air conditioner 1 further includes a stop wall 40. The stop wall 40 is arranged between the end of the wind blocking member 30 away from the air outlet 110 and the end of the air guiding member 20 away from the air outlet 110. The stop wall 40 is configured to abut against the fourth extension portion 312 to prevent the body portion 310 from continuing to move towards the air outlet 110 when the air guiding member 20 is in the first state, or to abut against the third extension portion 230 to prevent the air guiding member 20 from continuing to move away from the air outlet 110 when the air guiding member 20 is in the second state.
[0060] Wherein, the setting of the stop wall 40 can prevent the excessive movement displacement of the air guiding member 20 and ensure that the air guiding member 20 accurately reaches the first state or the second state.
[0061] In some preferred or alternative embodiments according to the present invention, the wind blocking member 30 further includes a rack portion 320, and the rack portion 320 is fixedly arranged along the axial direction of the body portion 310 at the bottom of the body portion 310; and
[0062] The vertical air conditioner 1 further includes a driving motor 50 and a gear 60 connected to the motor shaft of the driving motor 50. The driving motor 50 and the gear 60 are located on the side of the stop wall 40 away from the air outlet 110. The gear 60 meshes with the rack, and the driving motor 50 is configured to drive the rotation of the motor shaft of the driving motor 50 so that the gear 60 drives the wind deflector 30 to move along the axial direction of the first air duct 210.
[0063] Wherein, the gear 60 rotates along the axial direction of the first air duct 210 so that the wind deflector 30 moves along the axial direction of the first air duct 210.
[0064] In some preferred or alternative embodiments according to the present invention, the body portion 310 is hollow inside, and the weight of the body portion 310 is small, so as to ensure the stable cooperation between the rack portion 320 and the gear 60.
[0065] Figure 7 It is an exploded view of the integrated housing device 70, fixing device 80 and wind deflector device of the vertical air conditioner 1 according to an embodiment of the present invention. Refer to Figure 7 As shown, in some preferred or alternative embodiments according to the present invention, the vertical air conditioner 1 further includes a housing device 70. The housing device 70 may be rectangular in shape. The housing device 70 is fixedly arranged on one side of the end of the air guiding member 20 away from the air outlet 110. The side wall of the housing device 70 close to the air outlet 110 is the stop wall 40. The housing device 70 is configured to house the driving motor 50, the gear 60 and a part of the wind deflector 30.
[0066] Wherein, the driving motor 50 may be fixedly arranged on the bottom wall of the housing device 70.
[0067] In some preferred or alternative embodiments according to the present invention, the internal air duct 100 is located below the air guiding member 20. The internal air duct 100 supplies the air flow after heat exchange by the heat exchanger 200 to flow into the first air duct 210.
[0068] In addition, the vertical air conditioner 1 further includes a heat exchanger 200 arranged between the internal air duct 100 and the grid-shaped ventilation opening 140 of the rear housing 130. Heat exchange through holes 300 communicating with the heat exchanger 200 are arranged on the air duct wall of the internal air duct 100. A blower is arranged at the heat exchange through holes 300. The air flow flowing into the housing 10 from the grid-shaped ventilation opening 140 is cooled by the heat exchanger 200 and then flows into the internal air duct 100 under the action of the blower and then flows into the first air duct 210 or the air outlet gap 220.
[0069] In addition, a plurality of first through holes 3111 are circumferentially arranged on the second extension part 311, a plurality of second through holes 3121 corresponding to the positions of the plurality of first through holes 3111 are arranged on the fourth extension part 312, a plurality of third through holes 410 corresponding to the plurality of first through holes 3111 are arranged on the stop wall 40, a plurality of fourth through holes 710 corresponding to the plurality of third through holes 410 are arranged on the side wall of the receiving device 70 opposite to the stop wall 40, a plurality of fifth through holes 231 corresponding to the plurality of third through holes 410 are arranged on the third extension part 230, and a plurality of sixth through holes 2111 corresponding to the plurality of fifth through holes 231 are arranged on the first extension part 211. By sequentially passing a plurality of first link rods through the correspondingly positioned sixth through holes 2111, first through holes 3111, fifth through holes 231, third through holes 410, second through holes 3121, and fourth through holes 710, the wind shield 30, the receiving device 70, and the air guiding member 20 can be movably connected together. When the driving device drives the wind shield 30 to move, the wind shield 30 can drive the air guiding member 20 to stably slide along the link rod.
[0070] Among them, the number of each type of through hole among the first through hole 3111, the second through hole 3121, the third through hole 410, the fourth through hole 710, the fifth through hole 231, and the sixth through hole 2111 can be three, and the number of the first link rods is also three. The specific number of each type of through hole and the number of the second link rods can be determined according to the actual situation, and the present invention does not limit them too much.
[0071] In addition, the vertical air conditioner 1 further includes a fixing device 80. The fixing device 80 is arranged between the receiving device 70 and the air outlet 110. The fixing device 80 can be a rectangular shape with an open bottom, and the open bottom communicates with the internal air duct 100. The side wall of the fixing device 80 away from the air outlet 110 can be the stop wall 40. An opening corresponding to the air outlet 110 is arranged on the side wall of the fixing device 80 close to the air outlet 110. The second part 250 of the air guiding member 20 moves in the fixing device 80, and one end of the air guiding member 20 close to the air outlet 110 passes through the opening on the side wall of the fixing device 80 close to the air outlet 110 and faces the air outlet 110.
[0072] For the second part 250 of the air guiding member 20, the large-diameter end of the first sub-part 251 near the air outlet 110 extends outward to form a plurality of first connecting portions 2511. One end of the second part 250 away from the air outlet 110 extends outward to form a plurality of second connecting portions 2512 corresponding to the plurality of first connecting portions 2511 one by one. A seventh through-hole 2513 is provided on each first connecting portion 2511, and an eighth through-hole 2514 is provided on each second connecting portion 2512. A plurality of ninth through-holes 810 corresponding to the plurality of seventh through-holes 2513 one by one are provided on the side wall of the fixing device 80 near the air outlet 110. A plurality of tenth through-holes 420 corresponding to the plurality of ninth through-holes 810 one by one are provided on the stop wall 40. A plurality of eleventh through-holes 720 corresponding to the plurality of tenth through-holes 420 are provided on the side wall of the receiving device 70 away from the air outlet 110. The air guiding member 20 can be further movably connected to the receiving device 70 and the fixing device 80 by sequentially passing a plurality of second connecting rods through the ninth through-holes 810, seventh through-holes 2513, eighth through-holes 2514, tenth through-holes 420, and eleventh through-holes 720 at corresponding positions.
[0073] Among them, the number of each type of through-hole among the seventh through-hole 2513, the eighth through-hole 2514, the ninth through-hole 810, the tenth through-hole 420, and the eleventh through-hole 720 can be selected as three. The second connecting rods can be selected as three. The number of each type of through-hole and the number of the second connecting rods can be specifically determined according to the actual situation, and the present invention does not limit it too much.
[0074] In addition, on the stop wall 40, the plurality of tenth through-holes 420 are on the periphery of the plurality of third through-holes 410. Correspondingly, on the side wall of the receiving device 70 opposite to the stop wall 40, the plurality of eleventh through-holes 720 are on the periphery of the plurality of fourth through-holes 710.
[0075] In addition, the vertical air conditioner 1 further includes an air guiding device 90. The air guiding device 90 is disposed between the fixing device 80 and the air outlet 110. The air guiding device 90 can be selected as a columnar shape. One end of the air guiding device 90 is communicated with an opening on the side wall of the fixing device 80 near the air outlet 110. The other end of the air guiding device 90 faces the air outlet 110 and is attached to the air outlet 110. The entire air guiding member 20 is located in the fixing device 80 and the air guiding device 90. One end of the air guiding member 20 near the air outlet 110 passes through the air guiding device 90 and faces the air outlet 110.
[0076] The above-mentioned receiving device 70, fixing device 80, and air guiding device 90 can be integrally connected or separately connected, and the present invention does not specifically limit this.
[0077] See Figure 7As shown, when the above-mentioned housing device 70, fixing device 80 and air guiding device 90 are integrally connected, the whole is divided into an upper part and a lower part. The upper part has an opening facing downwards, and the lower part has an opening facing upwards. The openings of the upper part and the lower part are assembled relatively to form a complete housing device 70, fixing device 80 and air guiding device 90.
[0078] The present invention provides a vertical air conditioner 1, which includes a housing 10 and an air guiding member 20. Among them, the housing 10 defines an air outlet 110. The air guiding member 20 is arranged in the housing 10 along the axial direction of the air outlet 110. The air guiding member 20 defines a first air duct 210 that is coaxial with the air outlet 110 and communicates with the internal air duct 100 of the housing 10. The air guiding member 20 is configured to move along the axial direction of the air outlet 110 to reach a first state in which a blowing gap 220 that communicates with the internal air duct 100 is jointly defined between one end of the air guiding member 20 close to the air outlet 110 and the blowing side of the air outlet 110, or a second state in which it is fitted with the air outlet 110. Among them, when the air guiding member 20 is in the first state, part or all of the air flow in the internal air duct 100 flows out of the air conditioner through the blowing gap 220, the air outlet is dispersed, the blowing distance is short, and the efficiency of adjusting the indoor environmental temperature is low; when the air guiding member 20 is in the second state, the air flow in the internal air duct 100 flows through the first air duct 210 to the air outlet 110 and then flows to the outside of the air conditioner, the air outlet is concentrated, the blowing distance is long, and the efficiency of adjusting the indoor environmental temperature is high. The air distances of the vertical air conditioner 1 in the two states are different, and overall, the air distance of the vertical air conditioner 1 is adjustable, improving the user experience of using the air conditioner.
[0079] Furthermore, the air guiding member 20 includes a first part 240 and a second part 250 that are connected along the axial direction of the air outlet 110. The first part 240 and the second part 250 jointly define the first air duct 210. Among them, the first part 240 is close to the air outlet 110, and the second part 250 forms a plurality of air inlet gaps 260 that communicate the internal air duct 100 and the first air duct 210 at intervals along the axial direction of the first air duct 210; and, the vertical air conditioner 1 further includes a wind blocking member 30. The wind blocking member 30 includes a main body part 310. The main body part 310 is arranged along the axial direction of the first air duct 210. The main body part 310 is configured to move along the axial direction of the first air duct 210 when the air guiding member 20 is in the first state or the second state, and by changing the corresponding area with the second part 250, the air inlet volume of the air inlet gap 260 of the second part 250 is changed, thereby realizing the adjustable air distance of the vertical air conditioner 1. The vertical air conditioner 1 proposed by the present invention not only has an adjustable air distance, but also an adjustable air volume, further improving the user experience of using the vertical air conditioner 1.
[0080] Unless otherwise limited, all terms (including technical terms and scientific terms) used in the description of this embodiment have the same meaning as commonly understood by those of ordinary skill in the technical field to which this application belongs.
[0081] At this point, those skilled in the art should recognize that although numerous exemplary embodiments of the present invention have been shown and described in detail herein, many other variations or modifications that conform to the principles of the present invention can still be directly determined or derived from the disclosed content of the present invention without departing from the spirit and scope of the present invention. Therefore, the scope of the present invention should be understood and recognized as covering all such other variations or modifications.
Claims
1. A vertical air conditioner, characterized in that, Comprising: A housing defining an air outlet; A wind guiding member disposed in the housing along the axial direction of the air outlet. The wind guiding member defines a first air duct coaxial with the air outlet and communicating with the internal air duct of the housing. The wind guiding member is configured to move along the axial direction of the air outlet to reach a first state in which a wind outlet gap communicating with the internal air duct is jointly defined between one end of the wind guiding member close to the air outlet and the air outlet side of the air outlet, or a second state in which the wind guiding member is fitted with the air outlet.
2. The vertical air conditioner according to claim 1, wherein A first extension portion extends inwardly at a position where the inner wall of the first air duct is close to the air outlet; and The vertical air conditioner further includes a wind blocking member having a body portion disposed along the axial direction of the first air duct. One end of the body portion close to the air outlet extends outwardly to form a second extension portion. The body portion is configured to move along the first air duct toward the air outlet to push the first extension portion with the second extension portion so that the wind guiding member reaches the first state.
3. The vertical air conditioner according to claim 2, wherein A third extension portion extends inwardly at one end of the wind guiding member away from the air outlet; and The body portion is further configured to move along the first air duct away from the air outlet to drive the third extension portion with the second extension portion so that the wind guiding member reaches the second state.
4. The vertical air conditioner according to claim 3, wherein The wind guiding member includes a first portion and a second portion connected axially along the air outlet. The first portion and the second portion jointly define the first air duct. The first portion is close to the air outlet, and the first extension portion is formed in the first portion; the second portion is provided with a plurality of air inlet gaps communicating the internal air duct and the first air duct at intervals along the axial direction of the first air duct; and The body portion is further configured to move along the axial direction of the first air duct when the wind guiding member is in the first state or the second state, and change the air inlet volume of the air inlet gap of the second portion by changing the corresponding area with the second portion.
5. The vertical air conditioner according to claim 4, wherein The first portion is in a horn shape, and the large-diameter end of the first portion is the end of the wind guiding member close to the air outlet.
6. The vertical air conditioner according to claim 5, wherein The second portion includes a plurality of first sub-portions and a plurality of second sub-portions; wherein The first sub-portions are in a horn shape opposite to the first portion, and the plurality of first sub-portions are arranged at intervals along the axial direction of the first air duct. The air inlet gaps are formed between any two adjacent first sub-portions and between the adjacent first sub-portions and the first portion; the second sub-portions are plate-shaped fixing ribs, and the plurality of second sub-portions are uniformly distributed along the outer periphery of the plurality of first sub-portions to connect the plurality of first sub-portions and the first portion together.
7. The vertical air conditioner according to claim 3, wherein, The main body part is columnar, and a fourth extension part extends outward along the circumferential direction of the peripheral wall of the main body part, and the fourth extension part is relatively far from the air outlet compared with the second extension part; and The floor-standing air conditioner further includes a stop wall, the stop wall is located between one end of the wind deflector away from the air outlet and one end of the air guide member away from the air outlet, and the stop wall is configured to abut against the fourth extension part to prevent the main body part from continuing to move towards the direction close to the air outlet when the air guide member is in the first state, or abut against the third extension part to prevent the air guide member from continuing to move away from the air outlet when the air guide member is in the second state.
8. The floor-standing air conditioner according to claim 7, wherein The wind deflector further includes a rack part, and the rack part is fixedly arranged along the axial direction of the main body part at the bottom of the main body part; and The floor-standing air conditioner further includes a driving motor and a gear connected to the motor shaft of the driving motor, the driving motor and the gear are fixedly arranged on the side of the stop wall away from the air outlet, the gear meshes with the rack, and the driving motor is configured to drive the motor shaft to rotate so that the gear drives the wind deflector to move along the axial direction of the first air duct.
9. The vertical air conditioner according to claim 8, characterized in that, It further includes: A housing device, the housing device is fixedly arranged on one side of one end of the air guide member away from the air outlet, the side wall of the housing device close to the air outlet is the stop wall, and the housing device is configured to house the driving motor, the gear and a part of the wind deflector.
10. The vertical air conditioner according to claim 2, wherein The inside of the main body part is hollow.